mirror of
https://github.com/verilator/verilator.git
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f0f68f42d1 |
@@ -108,4 +108,3 @@ Standard: Cpp11
|
||||
TabWidth: 8
|
||||
UseTab: Never
|
||||
...
|
||||
|
||||
|
||||
+71
-70
@@ -16,128 +16,129 @@ env:
|
||||
CI_COMMIT: ${{ github.sha }}
|
||||
CCACHE_COMPRESS: 1
|
||||
CCACHE_DIR: ${{ github.workspace }}/.ccache
|
||||
CCACHE_LIMIT_MULTIPLE: 0.95
|
||||
|
||||
defaults:
|
||||
run:
|
||||
shell: bash
|
||||
working-directory: repo
|
||||
|
||||
jobs:
|
||||
|
||||
|
||||
Matrix:
|
||||
runs-on: ubuntu-latest
|
||||
name: Generate Build matrix
|
||||
outputs:
|
||||
matrix: ${{ steps.generate.outputs.matrix }}
|
||||
steps:
|
||||
- uses: actions/checkout@v2
|
||||
- id: generate
|
||||
name: Run 'generate_matrix.sh'
|
||||
run: |
|
||||
if [ '${{ github.event_name }}' = 'pull_request' ]; then
|
||||
matrix='[ "ubuntu-20.04" ]'
|
||||
else
|
||||
matrix='[ "ubuntu-16.04", "ubuntu-18.04", "ubuntu-20.04" ]'
|
||||
fi
|
||||
echo "::set-output name=matrix::$matrix"
|
||||
|
||||
|
||||
Build:
|
||||
needs: Matrix
|
||||
build:
|
||||
strategy:
|
||||
fail-fast: false
|
||||
matrix:
|
||||
os: ${{ fromJson(needs.Matrix.outputs.matrix) }}
|
||||
debug: [ opt, dbg ]
|
||||
os: [ubuntu-20.04, ubuntu-18.04]
|
||||
compiler:
|
||||
- { cc: clang, cxx: clang++ }
|
||||
- { cc: gcc, cxx: g++ }
|
||||
m32: [0, 1]
|
||||
exclude:
|
||||
# Build pull requests only with ubuntu-20.04 and without m32
|
||||
- os: ${{ github.event_name == 'pull_request' && 'ubuntu-18.04' || 'do-not-exclude' }}
|
||||
- m32: ${{ github.event_name == 'pull_request' && 1 || 'do-not-exclude' }}
|
||||
# Build -m32 only on ubuntu-20.04
|
||||
- {os: ubuntu-18.04, m32: 1}
|
||||
runs-on: ${{ matrix.os }}
|
||||
name: Build | ${{ matrix.os }} | ${{ matrix.compiler.cc }} | ${{ matrix.debug }}
|
||||
name: Build | ${{ matrix.os }} | ${{ matrix.compiler.cc }} ${{ matrix.m32 && '| -m32' || '' }}
|
||||
env:
|
||||
CI_BUILD_STAGE_NAME: build
|
||||
CI_RUNS_ON: ${{ matrix.os }}
|
||||
CI_MAKE_SRC_TARGET: ${{ matrix.debug }}
|
||||
CI_M32: ${{ matrix.m32 }}
|
||||
CC: ${{ matrix.compiler.cc }}
|
||||
CXX: ${{ matrix.compiler.cxx }}
|
||||
CACHE_KEY: build-${{ matrix.os }}-${{ matrix.compiler.cc }}-${{ matrix.debug }}
|
||||
CCACHE_MAXSIZE: 256Mi # Per build matrix entry
|
||||
CACHE_BASE_KEY: build-${{ matrix.os }}-${{ matrix.compiler.cc }}-m32=${{ matrix.m32 }}
|
||||
CCACHE_MAXSIZE: 250M # Per build matrix entry (2000M in total)
|
||||
VERILATOR_ARCHIVE: verilator-${{ github.sha }}-${{ matrix.os }}-${{ matrix.compiler.cc }}${{ matrix.m32 && '-m32' || '' }}.tar.gz
|
||||
steps:
|
||||
|
||||
- name: Checkout
|
||||
uses: actions/checkout@v2
|
||||
with:
|
||||
path: repo
|
||||
|
||||
- name: Cache
|
||||
- name: Cache $CCACHE_DIR
|
||||
uses: actions/cache@v2
|
||||
env:
|
||||
cache-name: ccache
|
||||
CACHE_KEY: ${{ env.CACHE_BASE_KEY }}-ccache
|
||||
with:
|
||||
path: ${{ github.workspace }}/.ccache
|
||||
key: ${{ env.CACHE_KEY }}-${{ env.cache-name }}-${{ github.sha }}
|
||||
restore-keys: ${{ env.CACHE_KEY }}-${{ env.cache-name }}
|
||||
path: ${{ env.CCACHE_DIR }}
|
||||
key: ${{ env.CACHE_KEY }}-${{ github.sha }}
|
||||
restore-keys: |
|
||||
${{ env.CACHE_KEY }}-
|
||||
|
||||
- name: Install packages for build
|
||||
run: ./ci/ci-install.bash
|
||||
|
||||
- name: Build
|
||||
run: |
|
||||
ccache -z
|
||||
./ci/ci-script.bash
|
||||
ccache -s
|
||||
tar cvzf verilator-${{ matrix.os}}-${CI_COMMIT}-${{ matrix.compiler.cc }}-${{ matrix.debug }}.tgz ./bin
|
||||
run: ./ci/ci-script.bash
|
||||
|
||||
- uses: actions/upload-artifact@v2
|
||||
- name: Tar up repository
|
||||
working-directory: ${{ github.workspace }}
|
||||
run: tar --posix -c -z -f ${{ env.VERILATOR_ARCHIVE }} repo
|
||||
|
||||
- name: Upload tar archive
|
||||
uses: actions/upload-artifact@v2
|
||||
with:
|
||||
path: verilator-${{ matrix.os}}-${{ env.CI_COMMIT }}-${{ matrix.compiler.cc }}-${{ matrix.debug }}.tgz
|
||||
path: ${{ github.workspace }}/${{ env.VERILATOR_ARCHIVE }}
|
||||
name: ${{ env.VERILATOR_ARCHIVE }}
|
||||
|
||||
|
||||
Test:
|
||||
needs: [ Matrix, Build ]
|
||||
test:
|
||||
needs: build
|
||||
strategy:
|
||||
fail-fast: false
|
||||
matrix:
|
||||
os: ${{ fromJson(needs.Matrix.outputs.matrix) }}
|
||||
os: [ubuntu-20.04, ubuntu-18.04]
|
||||
compiler:
|
||||
- { cc: clang, cxx: clang++ }
|
||||
- { cc: gcc, cxx: g++ }
|
||||
suite:
|
||||
- dist-vlt-0
|
||||
- dist-vlt-1
|
||||
- dist-vlt-2
|
||||
- vltmt-0
|
||||
- vltmt-1
|
||||
m32: [0, 1]
|
||||
suite: [dist-vlt-0, dist-vlt-1, dist-vlt-2, vltmt-0, vltmt-1]
|
||||
exclude:
|
||||
# Build pull requests only with ubuntu-20.04 and without m32
|
||||
- os: ${{ github.event_name == 'pull_request' && 'ubuntu-18.04' || 'do-not-exclude' }}
|
||||
- m32: ${{ github.event_name == 'pull_request' && 1 || 'do-not-exclude' }}
|
||||
# Build -m32 only on ubuntu-20.04
|
||||
- {os: ubuntu-18.04, m32: 1}
|
||||
runs-on: ${{ matrix.os }}
|
||||
name: Test | ${{ matrix.os }} | ${{ matrix.compiler.cc }} | ${{ matrix.suite }}
|
||||
name: Test | ${{ matrix.os }} | ${{ matrix.compiler.cc }} | ${{ matrix.suite }} ${{ matrix.m32 && '| -m32' || '' }}
|
||||
env:
|
||||
CI_BUILD_STAGE_NAME: test
|
||||
CI_RUNS_ON: ${{ matrix.os }}
|
||||
CI_M32: ${{ matrix.m32 }}
|
||||
CC: ${{ matrix.compiler.cc }}
|
||||
CXX: ${{ matrix.compiler.cxx }}
|
||||
CACHE_KEY: test-${{ matrix.os }}-${{ matrix.compiler.cc }}-${{ matrix.suite }}
|
||||
CCACHE_MAXSIZE: 256Mi # Per build matrix entry
|
||||
CACHE_BASE_KEY: test-${{ matrix.os }}-${{ matrix.compiler.cc }}-m32=${{ matrix.m32 }}-${ matrix.suite }}
|
||||
CCACHE_MAXSIZE: 64M # Per build matrix entry (2160M in total)
|
||||
VERILATOR_ARCHIVE: verilator-${{ github.sha }}-${{ matrix.os }}-${{ matrix.compiler.cc }}${{ matrix.m32 && '-m32' || '' }}.tar.gz
|
||||
steps:
|
||||
|
||||
- name: Checkout
|
||||
uses: actions/checkout@v2
|
||||
- name: Download tar archive
|
||||
uses: actions/download-artifact@v2
|
||||
with:
|
||||
name: ${{ env.VERILATOR_ARCHIVE }}
|
||||
path: ${{ github.workspace }}
|
||||
|
||||
- name: Cache
|
||||
- name: Unpack tar archive
|
||||
working-directory: ${{ github.workspace }}
|
||||
run: tar -x -z -f ${{ env.VERILATOR_ARCHIVE }}
|
||||
|
||||
- name: Cache $CCACHE_DIR
|
||||
uses: actions/cache@v2
|
||||
env:
|
||||
cache-name: ccache
|
||||
CACHE_KEY: ${{ env.CACHE_BASE_KEY }}-ccache
|
||||
with:
|
||||
path: ${{ github.workspace }}/.ccache
|
||||
key: ${{ env.CACHE_KEY }}-${{ env.cache-name }}-${{ github.sha }}
|
||||
restore-keys: ${{ env.CACHE_KEY }}-${{ env.cache-name }}
|
||||
path: ${{ env.CCACHE_DIR }}
|
||||
key: ${{ env.CACHE_KEY }}-${{ github.sha }}
|
||||
restore-keys: |
|
||||
${{ env.CACHE_KEY }}-
|
||||
|
||||
- uses: actions/download-artifact@v2
|
||||
|
||||
- name: Install Verilator and test dependencies
|
||||
run: |
|
||||
tar xvzf artifact/verilator-${{ matrix.os}}-${CI_COMMIT}-${{ matrix.compiler.cc }}-opt.tgz
|
||||
tar xvzf artifact/verilator-${{ matrix.os}}-${CI_COMMIT}-${{ matrix.compiler.cc }}-dbg.tgz
|
||||
rm -rf artifact
|
||||
./ci/ci-install.bash
|
||||
- name: Install test dependencies
|
||||
run: ./ci/ci-install.bash
|
||||
|
||||
- name: Test
|
||||
env:
|
||||
TESTS: ${{ matrix.suite }}
|
||||
run: |
|
||||
ccache -z
|
||||
./ci/ci-script.bash
|
||||
ccache -s
|
||||
run: ./ci/ci-script.bash
|
||||
|
||||
@@ -11,9 +11,14 @@ on:
|
||||
env:
|
||||
CI_OS_NAME: linux
|
||||
CI_COMMIT: ${{ github.sha }}
|
||||
CCACHE_COMPRESS: 1
|
||||
CCACHE_DIR: ${{ github.workspace }}/.ccache
|
||||
CI_M32: 0
|
||||
COVERAGE: 1
|
||||
VERILATOR_ARCHIVE: verilator-coverage-${{ github.sha }}.tar.gz
|
||||
|
||||
defaults:
|
||||
run:
|
||||
shell: bash
|
||||
working-directory: repo
|
||||
|
||||
jobs:
|
||||
|
||||
@@ -23,37 +28,28 @@ jobs:
|
||||
env:
|
||||
CI_BUILD_STAGE_NAME: build
|
||||
CI_RUNS_ON: ubuntu-20.04
|
||||
CACHE_KEY: coverage-build
|
||||
CCACHE_MAXSIZE: 512Mi
|
||||
steps:
|
||||
|
||||
- name: Checkout
|
||||
uses: actions/checkout@v2
|
||||
|
||||
- name: Cache
|
||||
uses: actions/cache@v2
|
||||
env:
|
||||
cache-name: ccache
|
||||
with:
|
||||
path: ${{ github.workspace }}/.ccache
|
||||
key: ${{ env.CACHE_KEY }}-${{ env.cache-name }}-${{ github.sha }}
|
||||
restore-keys: ${{ env.CACHE_KEY }}-${{ env.cache-name }}
|
||||
path: repo
|
||||
|
||||
- name: Install packages for build
|
||||
env:
|
||||
CI_BUILD_STAGE_NAME: build
|
||||
run: ./ci/ci-install.bash
|
||||
|
||||
- name: Build
|
||||
run: |
|
||||
ccache -z
|
||||
./ci/ci-script.bash
|
||||
ccache -s
|
||||
tar cvzf verilator-${CI_COMMIT}-coverage.tgz bin src/obj*/*.o src/obj*/*.gcno
|
||||
run: ./ci/ci-script.bash
|
||||
|
||||
- uses: actions/upload-artifact@v2
|
||||
- name: Tar up repository
|
||||
working-directory: ${{ github.workspace }}
|
||||
run: tar --posix -c -z -f ${{ env.VERILATOR_ARCHIVE }} repo
|
||||
|
||||
- name: Upload tar archive
|
||||
uses: actions/upload-artifact@v2
|
||||
with:
|
||||
path: verilator-${{ env.CI_COMMIT }}-coverage.tgz
|
||||
path: ${{ github.workspace }}/${{ env.VERILATOR_ARCHIVE }}
|
||||
name: ${{ env.VERILATOR_ARCHIVE }}
|
||||
|
||||
|
||||
Test:
|
||||
@@ -82,34 +78,22 @@ jobs:
|
||||
env:
|
||||
CI_BUILD_STAGE_NAME: test
|
||||
CI_RUNS_ON: ubuntu-20.04
|
||||
CACHE_KEY: coverage-test-${{ matrix.test }}${{ matrix.num }}
|
||||
CCACHE_MAXSIZE: 512Mi # Per build matrix entry
|
||||
steps:
|
||||
|
||||
- name: Checkout
|
||||
uses: actions/checkout@v2
|
||||
|
||||
- name: Cache
|
||||
uses: actions/cache@v2
|
||||
env:
|
||||
cache-name: ccache
|
||||
- name: Download tar archive
|
||||
uses: actions/download-artifact@v2
|
||||
with:
|
||||
path: ${{ github.workspace }}/.ccache
|
||||
key: ${{ env.CACHE_KEY }}-${{ env.cache-name }}-${{ github.sha }}
|
||||
restore-keys: ${{ env.CACHE_KEY }}-${{ env.cache-name }}
|
||||
name: ${{ env.VERILATOR_ARCHIVE }}
|
||||
path: ${{ github.workspace }}
|
||||
|
||||
- uses: actions/download-artifact@v2
|
||||
- name: Unpack tar archive
|
||||
working-directory: ${{ github.workspace }}
|
||||
run: tar -x -z -f ${{ env.VERILATOR_ARCHIVE }}
|
||||
|
||||
- name: Install Verilator and test dependencies
|
||||
run: |
|
||||
tar xvzf artifact/verilator-${CI_COMMIT}-coverage.tgz
|
||||
touch src/obj*/*.o src/obj*/*.gcno
|
||||
./ci/ci-install.bash
|
||||
- name: Install test dependencies
|
||||
run: ./ci/ci-install.bash
|
||||
|
||||
- name: Test
|
||||
env:
|
||||
TESTS: coverage-${{ matrix.test }}${{ matrix.num }}
|
||||
run: |
|
||||
ccache -z
|
||||
./ci/ci-script.bash
|
||||
ccache -s
|
||||
run: ./ci/ci-script.bash
|
||||
|
||||
@@ -16,6 +16,7 @@ jobs:
|
||||
CI_OS_NAME: linux
|
||||
CI_RUNS_ON: ubuntu-20.04
|
||||
CI_COMMIT: ${{ github.sha }}
|
||||
CI_M32: 0
|
||||
steps:
|
||||
- name: Checkout
|
||||
uses: actions/checkout@v2
|
||||
@@ -26,14 +27,14 @@ jobs:
|
||||
CI_BUILD_STAGE_NAME: build
|
||||
run: |
|
||||
bash ci/ci-install.bash &&
|
||||
sudo apt-get install clang-10 yapf3 &&
|
||||
sudo apt-get install clang-format-11 yapf3 &&
|
||||
git config --global user.email "[email protected]" &&
|
||||
git config --global user.name "github action"
|
||||
- name: Format code
|
||||
run: |
|
||||
autoconf &&
|
||||
./configure &&
|
||||
make -j 2 format CLANGFORMAT=clang-format-10 &&
|
||||
make -j 2 format CLANGFORMAT=clang-format-11 &&
|
||||
git status
|
||||
- name: Push
|
||||
run: |
|
||||
|
||||
@@ -8,6 +8,83 @@ The changes in each Verilator version are described below. The
|
||||
contributors that suggested a given feature are shown in []. Thanks!
|
||||
|
||||
|
||||
Verilator 4.214 2021-10-17
|
||||
==========================
|
||||
|
||||
* Add profile-guided optmization of mtasks (#3150).
|
||||
* Verilator_gantt has removed the ASCII graphics, use the VCD output instead.
|
||||
* Verilator_gantt now shows the predicted mtask times, eval times, and additional statistics.
|
||||
* Verilator_gantt data files now include processor information, to allow later processing.
|
||||
* Support displaying x and z in $display task (#3107) (#3109). [Iru Cai]
|
||||
* Fix verilator_profcfunc profile accounting (#3115).
|
||||
* Fix display has no time units on class function (#3116). [Damien Pretet]
|
||||
* Fix removing if statement with side effect in condition (#3131). [Alexander Grobman]
|
||||
* Fix --waiver-output for multiline warnings (#2429) (#3141). [Keith Colbert]
|
||||
* Fix internal error on bad widths (#3140) (#3145). [Zhanglei Wang]
|
||||
* Fix crash on clang 12/13 (#3148). [Kouping Hsu]
|
||||
* Fix cygwin compile error due to missing -std=gnu++14 (#3149). [Sun Kim]
|
||||
* Fix $urandom_range when the range is 0 ... UINT_MAX (#3161). [Iru Cai]
|
||||
* Fix constructor-parameter argument comma-separation in C++ (#3162). [Matthew Ballance]
|
||||
* Fix missing install of vl_file_copy/vl_hier_graph (#3165). [Popolon]
|
||||
* Fix calling new with arguments in same class (#3166). [Matthew Ballance]
|
||||
* Fix false EOFNEWLINE warning when DOS carriage returns present (#3171).
|
||||
|
||||
|
||||
Verilator 4.212 2021-09-01
|
||||
==========================
|
||||
|
||||
**Minor:**
|
||||
|
||||
* Fix re-evaluation of logic dependent on state set in DPI exports (#3091). [Geza Lore]
|
||||
* Support unpacked array localparams in tasks/functions (#3078). [Geza Lore]
|
||||
* Support timeunit/timeprecision in $unit.
|
||||
* Support assignment patterns as children of pins (#3041). [Krzysztof Bieganski]
|
||||
* Add --instr-count-dpi to tune assumed DPI import cost for multithreaded
|
||||
model scheduling. Default value changed to 200 (#3068). [Yinan Xu]
|
||||
* Output files are split based on the set of headers required
|
||||
in order to aid incremental compilation via ccache (#3071). [Geza Lore]
|
||||
* Parameter values are now emitted as 'static constexpr' instead of enum.
|
||||
C++ direct references to parameters might require updating (#3077). [Geza Lore]
|
||||
* Refactored Verilated include files; include verilated.h not verilated_heavy.h.
|
||||
* Add header guards on Dpi.h generated files (#2979). [Tood Strader]
|
||||
* Add XML ccall, constpool, initarray, and if/while begins (#3080). [Steven Hugg]
|
||||
* Add error when constant function under a generate (#3103). [Don Owen]
|
||||
* Fix -G to treat simple integer literals as signed (#3060). [Anikin1610]
|
||||
* Fix emitted string array initializers (#2895). [Iztok Jeras]
|
||||
* Fix bitop tree optimization dropping necessary & operator (#3096). [Flavien Solt]
|
||||
* Fix internal error on wide -x-initial unique (#3106). [Alexandre Joannou]
|
||||
* Fix traces to show array instances with brackets (#3092) (#3095). [Pieter Kapsenberg]
|
||||
|
||||
|
||||
Verilator 4.210 2021-07-07
|
||||
==========================
|
||||
|
||||
**Major:**
|
||||
|
||||
* Generated code is now emitted as global functions rather than methods. '$c'
|
||||
contents might need to be updated, see the docs (#3006). [Geza Lore]
|
||||
* The generated model class instantiated by the user is now an interface
|
||||
object and no longer the TOP module instance. User code with direct
|
||||
C++ member access to model internals, including verilator public_flat
|
||||
items will likely need to be updated. See the manual for instructions:
|
||||
https://verilator.org/guide/latest/connecting.html#porting-from-pre-4-210
|
||||
(#3036). [Geza Lore]
|
||||
|
||||
**Minor:**
|
||||
|
||||
* Add --prof-c to pass profiling to compiler (#3059). [Alexander Grobman]
|
||||
* Optimize a lot more model variables into function locals (#3027). [Geza Lore]
|
||||
* Support middle-of-design nested topmodules (#3026). [Dan Petrisko]
|
||||
* Remove deprecated --no-relative-cfuncs option (#3024). [Geza Lore]
|
||||
* Remove deprecated --inhibit-sim option (#3035). [Geza Lore]
|
||||
* Merge const static data globally into a new constant pool (#3013). [Geza Lore]
|
||||
* Allow configure override of AR program (#2999). [ahouska]
|
||||
* In XML, show pinIndex information (#2877). [errae233]
|
||||
* Fix error on unsupported recursive functions (#2957). [Trefor Southwell]
|
||||
* Fix type parameter specialization when struct names are same (#3055). [7FM]
|
||||
* Improve speed of table optimization (-OA) pass. [Geza Lore]
|
||||
|
||||
|
||||
Verilator 4.204 2021-06-12
|
||||
==========================
|
||||
|
||||
|
||||
@@ -1,76 +0,0 @@
|
||||
\.ccache/
|
||||
\.clang-format
|
||||
\.clang-tidy
|
||||
\.git/
|
||||
\.git$
|
||||
\.github/
|
||||
\.svn/
|
||||
\.(bak|old)/
|
||||
\.(bak|old)$
|
||||
\.tar\.
|
||||
.*\.tgz
|
||||
.*\.log
|
||||
\..*\.swp
|
||||
.*\.tmp
|
||||
.*\.tidy
|
||||
.*\.tex
|
||||
.*\.key
|
||||
.*\.vcd
|
||||
.*\.1
|
||||
\.codacy\.yml
|
||||
\.travis\.yml
|
||||
/_build/
|
||||
/build/
|
||||
/obj_dbg/
|
||||
/obj_dir/
|
||||
/obj_dist/
|
||||
/obj_iv/
|
||||
/obj_ms/
|
||||
/obj_nc/
|
||||
/obj_opt/
|
||||
/obj_vcs/
|
||||
/obj_vlt/
|
||||
/obj_vltmt/
|
||||
INCA_libs/
|
||||
/cov_work/
|
||||
/logs/
|
||||
^Makefile$
|
||||
README.html
|
||||
bin/verilator_bin.*
|
||||
bin/verilator_coverage_bin.*
|
||||
docs/.*\.html$
|
||||
docs/_build/
|
||||
docs/clang-format.txt$
|
||||
docs/doxygen-doc/.*
|
||||
docs/spelling.txt
|
||||
examples/xml_py/copied/
|
||||
examples/xml_py/graph.*
|
||||
sonar-project.properties
|
||||
src/Makefile$
|
||||
src/Makefile_obj$
|
||||
include/verilated.mk$
|
||||
test_regress/.gdbinit$
|
||||
test_regress/transcript
|
||||
codecov.yml
|
||||
config.cache$
|
||||
config.status$
|
||||
verilator\.log
|
||||
verilator\.tex
|
||||
verilator-config.cmake$
|
||||
verilator-config-version.cmake$
|
||||
verilator.pc$
|
||||
verilator_bin.*
|
||||
verilator_coverage_bin.*
|
||||
.vcsmx_rebuild$
|
||||
ncverilog.history
|
||||
autom4te\.cache/
|
||||
nodist/
|
||||
ci/
|
||||
/simv$
|
||||
/simv.daidir/
|
||||
/vc_hdrs.h$
|
||||
/csrc/
|
||||
obj_dir.*
|
||||
TAGS
|
||||
gmon.out
|
||||
.*~
|
||||
+16
-171
@@ -118,98 +118,6 @@ INFOS = verilator.html verilator.pdf
|
||||
|
||||
INFOS_OLD = README README.html README.pdf
|
||||
|
||||
# Files that can be generated, but should be up to date for a distribution.
|
||||
DISTDEP = info Makefile
|
||||
|
||||
DISTFILES1 = $(INFOS) .gitignore \
|
||||
*.in *.ac \
|
||||
Artistic \
|
||||
Changes \
|
||||
LICENSE \
|
||||
MANIFEST.SKIP \
|
||||
README.rst \
|
||||
verilator-config.cmake.in \
|
||||
verilator-config-version.cmake.in \
|
||||
bin/verilator \
|
||||
bin/verilator_ccache_report \
|
||||
bin/verilator_coverage \
|
||||
bin/verilator_difftree \
|
||||
bin/verilator_gantt \
|
||||
bin/verilator_includer \
|
||||
bin/verilator_profcfunc \
|
||||
docs/.gitignore \
|
||||
docs/CONTRIBUTING.rst \
|
||||
docs/CONTRIBUTORS \
|
||||
docs/Makefile \
|
||||
docs/_static/*.png \
|
||||
docs/_static/css/* \
|
||||
docs/bin/* \
|
||||
docs/gen/* \
|
||||
docs/guide/*.py \
|
||||
docs/guide/*.rst \
|
||||
docs/guide/figures/* \
|
||||
docs/install.rst \
|
||||
docs/internals.rst \
|
||||
docs/internals.rst \
|
||||
docs/verilated.dox \
|
||||
docs/xml.rst \
|
||||
install-sh configure *.pod \
|
||||
include/*.[chv]* \
|
||||
include/*.in \
|
||||
include/.*ignore \
|
||||
include/gtkwave/*.[chv]* \
|
||||
include/vltstd/*.[chv]* \
|
||||
.*attributes */.*attributes */*/.*attributes \
|
||||
src/.*ignore src/*.in src/*.cpp src/*.[chly] \
|
||||
src/astgen src/bisonpre src/*fix src/cppcheck_filtered \
|
||||
src/config_rev \
|
||||
src/vlcovgen src/mkinstalldirs \
|
||||
src/.gdbinit \
|
||||
src/*.pl src/*.pod \
|
||||
examples/*/.*ignore examples/*/Makefile* \
|
||||
examples/*/*.[chv]* examples/*/vl_* \
|
||||
examples/*/CMakeLists.txt \
|
||||
|
||||
DISTFILES2 = \
|
||||
test_*/.*ignore test_*/Makefile* test_*/*.cpp \
|
||||
test_*/*.pl test_*/*.v test_*/*.vc test_*/*.vh \
|
||||
test_regress/*.pl \
|
||||
test_regress/Makefile \
|
||||
test_regress/Makefile_obj \
|
||||
test_regress/input.vc \
|
||||
test_regress/CMakeLists.txt \
|
||||
test_regress/t/t*/*.sv* \
|
||||
test_regress/t/t*/*.v* \
|
||||
test_regress/t/t*/*/*.sv* \
|
||||
test_regress/t/t*/*/*.v* \
|
||||
test_regress/t/t*/*.cpp \
|
||||
test_regress/t/t*/CMakeLists.txt \
|
||||
test_regress/t/*.cpp \
|
||||
test_regress/t/*.h \
|
||||
test_regress/t/*.dat \
|
||||
test_regress/t/*.mem \
|
||||
test_regress/t/*.out \
|
||||
test_regress/t/*.pl \
|
||||
test_regress/t/*.pf \
|
||||
test_regress/t/*.v* \
|
||||
|
||||
INST_PROJ_FILES = \
|
||||
bin/verilator \
|
||||
bin/verilator_ccache_report \
|
||||
bin/verilator_coverage \
|
||||
bin/verilator_gantt \
|
||||
bin/verilator_includer \
|
||||
bin/verilator_profcfunc \
|
||||
include/verilated.mk \
|
||||
include/*.[chv]* \
|
||||
include/gtkwave/*.[chv]* \
|
||||
include/vltstd/*.[chv]* \
|
||||
|
||||
INST_PROJ_BIN_FILES = \
|
||||
bin/verilator_bin$(EXEEXT) \
|
||||
bin/verilator_bin_dbg$(EXEEXT) \
|
||||
bin/verilator_coverage_bin_dbg$(EXEEXT) \
|
||||
|
||||
EXAMPLES_FIRST = \
|
||||
examples/make_hello_c \
|
||||
examples/make_hello_sc \
|
||||
@@ -217,7 +125,7 @@ EXAMPLES_FIRST = \
|
||||
EXAMPLES = $(EXAMPLES_FIRST) $(filter-out $(EXAMPLES_FIRST), $(sort $(wildcard examples/*)))
|
||||
|
||||
# See uninstall also - don't put wildcards in this variable, it might uninstall other stuff
|
||||
VL_INST_MAN_FILES = verilator.1 verilator_coverage.1 verilator_gantt.1 verilator_profcfunc.1
|
||||
VL_INST_MAN_FILES = verilator.1 verilator_coverage.1
|
||||
|
||||
default: all
|
||||
all: all_nomsg msg_test
|
||||
@@ -230,7 +138,7 @@ all_nomsg: verilator_exe $(VL_INST_MAN_FILES)
|
||||
verilator_exe verilator_bin$(EXEEXT) verilator_bin_dbg$(EXEEXT) verilator_coverage_bin_dbg$(EXEEXT):
|
||||
@echo ------------------------------------------------------------
|
||||
@echo "making verilator in src"
|
||||
$(MAKE) -C src $(OBJCACHE_JOBS) $(CI_MAKE_SRC_TARGET)
|
||||
$(MAKE) -C src $(OBJCACHE_JOBS)
|
||||
|
||||
.PHONY:msg_test
|
||||
msg_test: all_nomsg
|
||||
@@ -299,8 +207,10 @@ VL_INST_INC_SRCDIR_FILES = \
|
||||
include/vltstd/*.[chv]* \
|
||||
|
||||
VL_INST_DATA_SRCDIR_FILES = \
|
||||
examples/*/*.[chv]* examples/*/Makefile* \
|
||||
examples/*/CMakeLists.txt
|
||||
examples/*/*.[chv]* \
|
||||
examples/*/CMakeLists.txt \
|
||||
examples/*/Makefile* \
|
||||
examples/*/vl_* \
|
||||
|
||||
installbin:
|
||||
$(MKINSTALLDIRS) $(DESTDIR)$(bindir)
|
||||
@@ -386,44 +296,7 @@ uninstall:
|
||||
install: all_nomsg install-all
|
||||
install-all: installbin installman installdata install-msg
|
||||
|
||||
install-here: installman ftp
|
||||
|
||||
ifeq ($(VERILATOR_AUTHOR_SITE),1) # Local... Else don't burden users
|
||||
DISTNAMEREV = $(shell sed -e '/DTVERSION/!d' -e 's/.*verilator_\([^"]*\).*/\1/' -e q ${srcdir}/src/config_rev.h)
|
||||
|
||||
VERILATOR_CAD_DIR = $(CAD_DIR)/verilator/$(DISTNAMEREV)/$(DIRPROJECT_ARCH)
|
||||
INST_PROJ_CVS = cp_if_cvs_diff
|
||||
|
||||
install-cadtools: dist
|
||||
@echo "Install-project to $(CAD_DIR)"
|
||||
strip bin/verilator_bin*
|
||||
strip bin/verilator_coverage_bin*
|
||||
$(MAKE) install-cadtools-quick
|
||||
$(MKINSTALLDIRS) $(VERILATOR_CAD_DIR)/man/man1
|
||||
for p in $(VL_INST_MAN_FILES) ; do \
|
||||
$(INSTALL_DATA) $$p $(VERILATOR_CAD_DIR)/man/man1/$$p; \
|
||||
done
|
||||
$(INST_PROJ_CVS) $(DISTNAME).tgz $(VERILATOR_CAD_DIR)/verilator.tgz
|
||||
rm $(DISTNAME).tgz
|
||||
|
||||
install-cadtools-quick:
|
||||
ifeq ($(CFG_WITH_DEFENV),yes)
|
||||
@echo "%Error: Reconfigure with './configure --disable-defenv' to avoid hardcoded paths."
|
||||
false
|
||||
endif
|
||||
@echo "Install-cadtools-quick (no strip) to $(VERILATOR_CAD_DIR)"
|
||||
$(MKINSTALLDIRS) $(VERILATOR_CAD_DIR)/include/gtkwave
|
||||
$(MKINSTALLDIRS) $(VERILATOR_CAD_DIR)/include/vltstd
|
||||
$(MKINSTALLDIRS) $(VERILATOR_CAD_DIR)/bin
|
||||
for p in $(INST_PROJ_FILES) ; do \
|
||||
$(INST_PROJ_CVS) $$p $(VERILATOR_CAD_DIR)/$$p; \
|
||||
done
|
||||
for p in $(INST_PROJ_BIN_FILES) ; do \
|
||||
$(INST_PROJ_CVS) $$p $(VERILATOR_CAD_DIR)/$$p; \
|
||||
done
|
||||
|
||||
# VERILATOR_AUTHOR_SITE
|
||||
endif
|
||||
install-here: installman info
|
||||
|
||||
# Use --xml flag to see the cppcheck code to use for suppression
|
||||
CPPCHECK_CPP = $(wildcard \
|
||||
@@ -470,17 +343,20 @@ analyzer-include:
|
||||
|
||||
format: clang-format yapf format-pl-exec
|
||||
|
||||
CLANGFORMAT = clang-format
|
||||
CLANGFORMAT = clang-format-11
|
||||
CLANGFORMAT_FLAGS = -i
|
||||
CLANGFORMAT_FILES = $(CPPCHECK_CPP) $(CPPCHECK_H) $(CPPCHECK_YL) test_regress/t/*.c* test_regress/t/*.h
|
||||
|
||||
clang-format:
|
||||
@$(CLANGFORMAT) --version | egrep 10.0 > /dev/null \
|
||||
|| echo "*** You are not using clang-format 10.0, indents may differ from master's ***"
|
||||
@$(CLANGFORMAT) --version | egrep 11.0 > /dev/null \
|
||||
|| echo "*** You are not using clang-format 11.0, indents may differ from master's ***"
|
||||
$(CLANGFORMAT) $(CLANGFORMAT_FLAGS) $(CLANGFORMAT_FILES)
|
||||
|
||||
PY_PROGRAMS = \
|
||||
bin/verilator_ccache_report \
|
||||
bin/verilator_difftree \
|
||||
bin/verilator_gantt \
|
||||
bin/verilator_profcfunc \
|
||||
examples/xml_py/vl_file_copy \
|
||||
examples/xml_py/vl_hier_graph \
|
||||
docs/guide/conf.py \
|
||||
@@ -492,6 +368,7 @@ PY_PROGRAMS = \
|
||||
src/cppcheck_filtered \
|
||||
src/flexfix \
|
||||
src/vlcovgen \
|
||||
test_regress/t/*.pf \
|
||||
nodist/code_coverage \
|
||||
nodist/dot_importer \
|
||||
nodist/fuzzer/actual_fail \
|
||||
@@ -523,9 +400,6 @@ lint-py:
|
||||
format-pl-exec:
|
||||
-chmod a+x test_regress/t/*.pl
|
||||
|
||||
|
||||
ftp: info
|
||||
|
||||
install-msg:
|
||||
@echo
|
||||
@echo "Installed binaries to $(DESTDIR)$(bindir)/verilator"
|
||||
@@ -596,15 +470,6 @@ TAGS: $(TAGFILES)
|
||||
doxygen:
|
||||
$(MAKE) -C docs doxygen
|
||||
|
||||
######################################################################
|
||||
# Test targets
|
||||
|
||||
dist-file-list:
|
||||
@echo "begin-dist-file-list:"; # Scripts look for this
|
||||
@echo $(wildcard $(DISTFILES1))
|
||||
@echo $(wildcard $(DISTFILES2))
|
||||
@echo "end-dist-file-list:"; # Scripts look for this
|
||||
|
||||
######################################################################
|
||||
# Distributions
|
||||
|
||||
@@ -612,36 +477,16 @@ DISTTITLE := Verilator $(word 1,$(PACKAGE_VERSION))
|
||||
DISTNAME := verilator-$(word 1,$(PACKAGE_VERSION))
|
||||
DISTDATEPRE := $(word 2,$(PACKAGE_VERSION))
|
||||
DISTDATE := $(subst /,-,$(DISTDATEPRE))
|
||||
|
||||
DISTTAGNAME := $(subst .,_,$(subst -,_,$(DISTNAME)))
|
||||
|
||||
tag:
|
||||
svnorcvs tag $(DISTTAGNAME)
|
||||
|
||||
# Don't depend on DISTFILES because there's no rule for "standards.info*".
|
||||
dist: $(DISTDEP) maintainer-copy
|
||||
-rm -fr $(DISTNAME)
|
||||
for file in $(DISTFILES1); do \
|
||||
mkdir -p `dirname $(DISTNAME)/$$file` >/dev/null ; \
|
||||
ln $$file $(DISTNAME)/$$file \
|
||||
|| { echo copying $$file instead; cp -p $$file $(DISTNAME)/$$file;}; \
|
||||
done; true;
|
||||
for file in $(DISTFILES2); do \
|
||||
mkdir -p `dirname $(DISTNAME)/$$file` >/dev/null ; \
|
||||
ln $$file $(DISTNAME)/$$file \
|
||||
|| { echo copying $$file instead; cp -p $$file $(DISTNAME)/$$file;}; \
|
||||
done; true;
|
||||
chmod -R a+r $(DISTNAME)
|
||||
tar chf $(DISTNAME).tar $(DISTNAME)
|
||||
gzip --force --best $(DISTNAME).tar
|
||||
mv $(DISTNAME).tar.gz $(DISTNAME).tgz
|
||||
rm -fr $(DISTNAME)
|
||||
|
||||
maintainer-diff:
|
||||
svnorcvs diff $(DISTTAGNAME)
|
||||
|
||||
preexist:
|
||||
svnorcvs nexists $(DISTTAGNAME)
|
||||
|
||||
maintainer-dist: preexist dist tag
|
||||
svnorcvs release $(DISTNAME).tgz
|
||||
maintainer-dist: preexist tag
|
||||
svnorcvs release $(DISTTAGNAME)
|
||||
|
||||
@@ -5,6 +5,8 @@
|
||||
:target: https://www.gnu.org/licenses/lgpl-3.0]
|
||||
.. image:: https://img.shields.io/badge/License-Artistic%202.0-0298c3.svg
|
||||
:target: https://opensource.org/licenses/Artistic-2.0
|
||||
.. image:: https://repology.org/badge/tiny-repos/verilator.svg?header=distro%20packages
|
||||
:target: https://repology.org/project/verilator/versions
|
||||
.. image:: https://api.codacy.com/project/badge/Grade/fa78caa433c84a4ab9049c43e9debc6f
|
||||
:target: https://www.codacy.com/gh/verilator/verilator
|
||||
.. image:: https://codecov.io/gh/verilator/verilator/branch/master/graph/badge.svg
|
||||
@@ -12,6 +14,7 @@
|
||||
.. image:: https://github.com/verilator/verilator/workflows/build/badge.svg
|
||||
:target: https://github.com/verilator/verilator/actions?query=workflow%3Abuild
|
||||
|
||||
|
||||
Welcome to Verilator
|
||||
====================
|
||||
|
||||
|
||||
+37
-36
@@ -34,11 +34,11 @@ my $opt_quiet_exit;
|
||||
|
||||
# No arguments can't do anything useful. Give help
|
||||
if ($#ARGV < 0) {
|
||||
pod2usage(-exitstatus=>2, -verbose=>0);
|
||||
pod2usage(-exitstatus => 2, -verbose => 0);
|
||||
}
|
||||
|
||||
# Insert debugging options up front
|
||||
push @ARGV, (split ' ',$ENV{VERILATOR_TEST_FLAGS}||"");
|
||||
push @ARGV, (split ' ', $ENV{VERILATOR_TEST_FLAGS} || "");
|
||||
|
||||
# We sneak a look at the flags so we can do some pre-environment checks
|
||||
# All flags will hit verilator...
|
||||
@@ -46,7 +46,7 @@ foreach my $sw (@ARGV) {
|
||||
push @Opt_Verilator_Sw, $sw;
|
||||
}
|
||||
|
||||
Getopt::Long::config("no_auto_abbrev","pass_through");
|
||||
Getopt::Long::config("no_auto_abbrev", "pass_through");
|
||||
if (! GetOptions(
|
||||
# Major operating modes
|
||||
"help" => \&usage,
|
||||
@@ -60,7 +60,7 @@ if (! GetOptions(
|
||||
# Additional parameters
|
||||
"<>" => sub {}, # Ignored
|
||||
)) {
|
||||
pod2usage(-exitstatus=>2, -verbose=>0);
|
||||
pod2usage(-exitstatus => 2, -verbose => 0);
|
||||
}
|
||||
|
||||
if ($opt_gdbbt && !gdb_works()) {
|
||||
@@ -73,12 +73,12 @@ if ($opt_gdbbt && !gdb_works()) {
|
||||
# Starting with that, escape all special chars for the shell;
|
||||
# The shell will undo the escapes and the verilator binary should
|
||||
# then see exactly the contents of @Opt_Verilator_Sw.
|
||||
my @quoted_sw = map {sh_escape($_)} @Opt_Verilator_Sw;
|
||||
my @quoted_sw = map { sh_escape($_) } @Opt_Verilator_Sw;
|
||||
if ($opt_gdb) {
|
||||
# Generic GDB interactive
|
||||
run (aslr_off()
|
||||
.($ENV{VERILATOR_GDB}||"gdb")
|
||||
." ".verilator_bin()
|
||||
. ($ENV{VERILATOR_GDB} || "gdb")
|
||||
. " " . verilator_bin()
|
||||
# Note, uncomment to set breakpoints before running:
|
||||
# ." -ex 'break main'"
|
||||
|
||||
@@ -87,42 +87,41 @@ if ($opt_gdb) {
|
||||
# escapes as you would expect in a double-quoted string.
|
||||
# That's not true for a single-quoted string, where \'
|
||||
# actually terminates the string -- not what we want!
|
||||
." -ex \"run ".join(' ', @quoted_sw)."\""
|
||||
." -ex 'set width 0'"
|
||||
." -ex 'bt'");
|
||||
. " -ex \"run " . join(' ', @quoted_sw) . "\""
|
||||
. " -ex 'set width 0'"
|
||||
. " -ex 'bt'");
|
||||
} elsif ($opt_rr) {
|
||||
# Record with rr
|
||||
run (aslr_off()
|
||||
."rr record ".verilator_bin()
|
||||
." ".join(' ', @quoted_sw));
|
||||
. "rr record " . verilator_bin()
|
||||
. " " . join(' ', @quoted_sw));
|
||||
} elsif ($opt_gdbbt && $Debug) {
|
||||
# Run under GDB to get gdbbt
|
||||
run (aslr_off()
|
||||
."gdb"
|
||||
." ".verilator_bin()
|
||||
." --batch --quiet --return-child-result"
|
||||
." -ex \"run ".join(' ', @quoted_sw)."\""
|
||||
." -ex 'set width 0'"
|
||||
." -ex 'bt' -ex 'quit'");
|
||||
. "gdb"
|
||||
. " " . verilator_bin()
|
||||
. " --batch --quiet --return-child-result"
|
||||
. " -ex \"run " . join(' ', @quoted_sw)."\""
|
||||
. " -ex 'set width 0'"
|
||||
. " -ex 'bt' -ex 'quit'");
|
||||
} elsif ($Debug) {
|
||||
# Debug
|
||||
run(aslr_off()
|
||||
.verilator_bin()." ".join(' ',@quoted_sw));
|
||||
run(aslr_off() . verilator_bin() . " " . join(' ', @quoted_sw));
|
||||
} else {
|
||||
# Normal, non gdb
|
||||
run(verilator_bin()." ".join(' ',@quoted_sw));
|
||||
run(verilator_bin() . " " . join(' ', @quoted_sw));
|
||||
}
|
||||
|
||||
#----------------------------------------------------------------------
|
||||
|
||||
sub usage {
|
||||
pod2usage(-verbose=>2, -exitval=>0, -output=>\*STDOUT);
|
||||
pod2usage(-verbose => 2, -exitval => 0, -output => \*STDOUT);
|
||||
}
|
||||
|
||||
sub debug {
|
||||
shift;
|
||||
my $level = shift;
|
||||
$Debug = $level||3;
|
||||
$Debug = $level || 3;
|
||||
}
|
||||
|
||||
#######################################################################
|
||||
@@ -163,13 +162,13 @@ sub verilator_bin {
|
||||
sub gdb_works {
|
||||
$! = undef; # Cleanup -x
|
||||
system("gdb /bin/echo"
|
||||
." --batch-silent --quiet --return-child-result"
|
||||
." -ex 'run -n'" # `echo -n`
|
||||
." -ex 'set width 0'"
|
||||
." -ex 'bt'"
|
||||
." -ex 'quit'");
|
||||
. " --batch-silent --quiet --return-child-result"
|
||||
. " -ex 'run -n'" # `echo -n`
|
||||
. " -ex 'set width 0'"
|
||||
. " -ex 'bt'"
|
||||
. " -ex 'quit'");
|
||||
my $status = $?;
|
||||
return $status==0;
|
||||
return $status == 0;
|
||||
}
|
||||
|
||||
sub aslr_off {
|
||||
@@ -185,7 +184,7 @@ sub run {
|
||||
# Run command, check errors
|
||||
my $command = shift;
|
||||
$! = undef; # Cleanup -x
|
||||
print "\t$command\n" if $Debug>=3;
|
||||
print "\t$command\n" if $Debug >= 3;
|
||||
system($command);
|
||||
my $status = $?;
|
||||
if ($status) {
|
||||
@@ -193,7 +192,7 @@ sub run {
|
||||
warn "%Error: verilator: Misinstalled, or VERILATOR_ROOT might need to be in environment\n";
|
||||
}
|
||||
if ($Debug) { # For easy rerunning
|
||||
warn "%Error: export VERILATOR_ROOT=".($ENV{VERILATOR_ROOT}||"")."\n";
|
||||
warn "%Error: export VERILATOR_ROOT=" . ($ENV{VERILATOR_ROOT} || "") . "\n";
|
||||
warn "%Error: $command\n";
|
||||
}
|
||||
if ($status & 127) {
|
||||
@@ -201,13 +200,13 @@ sub run {
|
||||
|| ($status & 127) == 8 # SIGFPA
|
||||
|| ($status & 127) == 11) { # SIGSEGV
|
||||
warn "%Error: Verilator internal fault, sorry. "
|
||||
."Suggest trying --debug --gdbbt\n" if !$Debug;
|
||||
. "Suggest trying --debug --gdbbt\n" if !$Debug;
|
||||
} elsif (($status & 127) == 6) { # SIGABRT
|
||||
warn "%Error: Verilator aborted. "
|
||||
."Suggest trying --debug --gdbbt\n" if !$Debug;
|
||||
. "Suggest trying --debug --gdbbt\n" if !$Debug;
|
||||
} else {
|
||||
warn "%Error: Verilator threw signal $status. "
|
||||
."Suggest trying --debug --gdbbt\n" if !$Debug;
|
||||
. "Suggest trying --debug --gdbbt\n" if !$Debug;
|
||||
}
|
||||
}
|
||||
if (!$opt_quiet_exit && ($status != 256 || $Debug)) { # i.e. not normal exit(1)
|
||||
@@ -332,8 +331,8 @@ detailed descriptions of these arguments.
|
||||
--gate-stmts <value> Tune gate optimizer depth
|
||||
--if-depth <value> Tune IFDEPTH warning
|
||||
+incdir+<dir> Directory to search for includes
|
||||
--inhibit-sim Create function to turn off sim
|
||||
--inline-mult <value> Tune module inlining
|
||||
--instr-count-dpi <value> Assumed dynamic instruction count of DPI imports
|
||||
-LDFLAGS <flags> Linker pre-object arguments for makefile
|
||||
--l2-name <value> Verilog scope name of the top module
|
||||
--language <lang> Default language standard to parse
|
||||
@@ -344,6 +343,7 @@ detailed descriptions of these arguments.
|
||||
--MMD Create .d dependency files
|
||||
--MP Create phony dependency targets
|
||||
--Mdir <directory> Name of output object directory
|
||||
--no-merge-const-pool Disable merging of different types in const pool
|
||||
--mod-prefix <topname> Name to prepend to lower classes
|
||||
--no-clk <signal-name> Prevent marking specified signal as clock
|
||||
--no-decoration Disable comments and symbol decorations
|
||||
@@ -367,6 +367,7 @@ detailed descriptions of these arguments.
|
||||
--pipe-filter <command> Filter all input through a script
|
||||
--pp-comments Show preprocessor comments with -E
|
||||
--prefix <topname> Name of top level class
|
||||
--prof-c Compile C++ code with profiling
|
||||
--prof-cfuncs Name functions for profiling
|
||||
--prof-threads Enable generating gantt chart data for threads
|
||||
--protect-key <key> Key for symbol protection
|
||||
@@ -378,7 +379,6 @@ detailed descriptions of these arguments.
|
||||
-pvalue+<name>=<value> Overwrite toplevel parameter
|
||||
--quiet-exit Don't print the command on failure
|
||||
--relative-includes Resolve includes relative to current file
|
||||
--no-relative-cfuncs Disallow 'this->' in generated functions
|
||||
--reloop-limit Minimum iterations for forming loops
|
||||
--report-unoptflat Extra diagnostics for UNOPTFLAT
|
||||
--rr Run Verilator and record with rr
|
||||
@@ -447,6 +447,7 @@ description of these arguments.
|
||||
+verilator+prof+threads+file+<filename> Set profile filename
|
||||
+verilator+prof+threads+start+<value> Set profile starting point
|
||||
+verilator+prof+threads+window+<value> Set profile duration
|
||||
+verilator+prof+vlt+file+<filename> Set profile guided filename
|
||||
+verilator+rand+reset+<value> Set random reset technique
|
||||
+verilator+seed+<value> Set random seed
|
||||
+verilator+V Verbose version and config
|
||||
|
||||
@@ -88,6 +88,7 @@ else:
|
||||
args.o.write("{:{width}}| {}s\n".format(k,
|
||||
v.total_seconds(),
|
||||
width=wnames))
|
||||
if i > 4: break
|
||||
if i > 4:
|
||||
break
|
||||
|
||||
args.o.write("#" * 80 + "\n")
|
||||
|
||||
@@ -30,7 +30,7 @@ $Debug = 0;
|
||||
|
||||
# No arguments can't do anything useful. Give help
|
||||
if ($#ARGV < 0) {
|
||||
pod2usage(-exitstatus=>2, -verbose=>0);
|
||||
pod2usage(-exitstatus => 2, -verbose => 0);
|
||||
}
|
||||
|
||||
# We sneak a look at the flags so we can do some pre-environment checks
|
||||
@@ -40,7 +40,7 @@ foreach my $sw (@ARGV) {
|
||||
push @Opt_Verilator_Sw, $sw;
|
||||
}
|
||||
|
||||
Getopt::Long::config("no_auto_abbrev","pass_through");
|
||||
Getopt::Long::config("no_auto_abbrev", "pass_through");
|
||||
if (! GetOptions (
|
||||
# Major operating modes
|
||||
"help" => \&usage,
|
||||
@@ -49,23 +49,23 @@ if (! GetOptions (
|
||||
# Additional parameters
|
||||
"<>" => sub {}, # Ignored
|
||||
)) {
|
||||
pod2usage(-exitstatus=>2, -verbose=>0);
|
||||
pod2usage(-exitstatus => 2, -verbose => 0);
|
||||
}
|
||||
|
||||
# Normal, non gdb
|
||||
run(verilator_coverage_bin()
|
||||
." ".join(' ',@Opt_Verilator_Sw));
|
||||
. " " . join(' ', @Opt_Verilator_Sw));
|
||||
|
||||
#----------------------------------------------------------------------
|
||||
|
||||
sub usage {
|
||||
pod2usage(-verbose=>2, -exitval=>0, -output=>\*STDOUT);
|
||||
pod2usage(-verbose => 2, -exitval => 0, -output => \*STDOUT);
|
||||
}
|
||||
|
||||
sub debug {
|
||||
shift;
|
||||
my $level = shift;
|
||||
$Debug = $level||3;
|
||||
$Debug = $level || 3;
|
||||
}
|
||||
|
||||
#######################################################################
|
||||
@@ -107,7 +107,7 @@ sub run {
|
||||
# Run command, check errors
|
||||
my $command = shift;
|
||||
$! = undef; # Cleanup -x
|
||||
print "\t$command\n" if $Debug>=3;
|
||||
print "\t$command\n" if $Debug >= 3;
|
||||
system($command);
|
||||
my $status = $?;
|
||||
if ($status) {
|
||||
@@ -115,11 +115,11 @@ sub run {
|
||||
warn "%Error: verilator_coverage: Misinstalled, or VERILATOR_ROOT might need to be in environment\n";
|
||||
}
|
||||
if ($Debug) { # For easy rerunning
|
||||
warn "%Error: export VERILATOR_ROOT=".($ENV{VERILATOR_ROOT}||"")."\n";
|
||||
warn "%Error: export VERILATOR_ROOT=" . ($ENV{VERILATOR_ROOT} || "") . "\n";
|
||||
warn "%Error: $command\n";
|
||||
}
|
||||
if ($status & 127) {
|
||||
if (($status & 127) == 8 || ($status & 127) == 11) { # SIGFPA or SIGSEGV
|
||||
if (($status & 127) == 8 || ($status & 127) == 11) { # SIGFPA or SIGSEGV
|
||||
warn "%Error: Verilator_coverage internal fault, sorry.\n" if !$Debug;
|
||||
} elsif (($status & 127) == 6) { # SIGABRT
|
||||
warn "%Error: Verilator_coverage aborted.\n" if !$Debug;
|
||||
|
||||
+106
-200
@@ -1,233 +1,139 @@
|
||||
#!/usr/bin/env perl
|
||||
# See copyright, etc in below POD section.
|
||||
#!/usr/bin/env python3
|
||||
# pylint: disable=C0103,C0114,C0116
|
||||
######################################################################
|
||||
|
||||
use warnings;
|
||||
use Getopt::Long;
|
||||
use IO::File;
|
||||
use Pod::Usage;
|
||||
use strict;
|
||||
use vars qw($Debug);
|
||||
import argparse
|
||||
import collections
|
||||
import glob
|
||||
import os.path
|
||||
import re
|
||||
import sys
|
||||
|
||||
#======================================================================
|
||||
# main
|
||||
|
||||
$Debug = 0;
|
||||
my $Opt_A;
|
||||
my $Opt_B;
|
||||
my $Opt_Lineno = 1;
|
||||
autoflush STDOUT 1;
|
||||
autoflush STDERR 1;
|
||||
Getopt::Long::config("no_auto_abbrev");
|
||||
if (! GetOptions(
|
||||
"help" => \&usage,
|
||||
"debug" => \&debug,
|
||||
"<>" => \¶meter,
|
||||
"lineno!" => \$Opt_Lineno,
|
||||
)) {
|
||||
die "%Error: Bad usage, try 'verilator_difftree --help'\n";
|
||||
}
|
||||
def diff(a, b):
|
||||
|
||||
defined $Opt_A or die "%Error: No old diff filename\n";
|
||||
defined $Opt_B or die "%Error: No new diff filename\n";
|
||||
if not os.path.exists(a):
|
||||
sys.exit("%Error: No old diff filename found: " + a)
|
||||
if not os.path.exists(b):
|
||||
sys.exit("%Error: No new diff filename found: " + b)
|
||||
|
||||
-e $Opt_A or die "%Error: No old diff filename found: $Opt_A\n";
|
||||
-e $Opt_B or die "%Error: No new diff filename found: $Opt_B\n";
|
||||
if os.path.isdir(a) and os.path.isdir(b):
|
||||
diff_dir(a, b)
|
||||
elif os.path.isfile(a) and os.path.isfile(b):
|
||||
diff_file(a, b)
|
||||
else:
|
||||
sys.exit("%Error: Mix of files and dirs")
|
||||
|
||||
if (-d $Opt_A && -d $Opt_B) {
|
||||
diff_dir($Opt_A, $Opt_B);
|
||||
} elsif (-f $Opt_A && -f $Opt_B) {
|
||||
diff_file($Opt_A, $Opt_B);
|
||||
} else {
|
||||
die "%Error: Mix of files and dirs\n";
|
||||
}
|
||||
|
||||
sub diff_dir {
|
||||
my $a = shift;
|
||||
my $b = shift;
|
||||
def diff_dir(a, b):
|
||||
# Diff all files under two directories
|
||||
my %files;
|
||||
files = collections.defaultdict(lambda: {})
|
||||
|
||||
foreach my $fn (glob("$a/*.tree")) {
|
||||
(my $base = $fn) =~ s!.*/!!;
|
||||
$files{$base}{a} = $fn;
|
||||
}
|
||||
foreach my $fn (glob("$b/*.tree")) {
|
||||
(my $base = $fn) =~ s!.*/!!;
|
||||
$files{$base}{b} = $fn;
|
||||
}
|
||||
my $any;
|
||||
foreach my $base (sort (keys %files)) {
|
||||
my $a = $files{$base}{a};
|
||||
my $b = $files{$base}{b};
|
||||
next if !$a || !$b;
|
||||
print "="x70,"\n";
|
||||
print "= $a <-> $b\n";
|
||||
diff_file($a,$b);
|
||||
$any = 1;
|
||||
}
|
||||
$any or warn("%Warning: No .tree files found that have similar base names:\n "
|
||||
.join("\n ", sort keys %files),"\n");
|
||||
}
|
||||
for fn in glob.glob(a + "/*.tree"):
|
||||
base = re.sub(r'.*/', '', fn)
|
||||
files[base]['a'] = fn
|
||||
for fn in glob.glob(b + "/*.tree"):
|
||||
base = re.sub(r'.*/', '', fn)
|
||||
files[base]['b'] = fn
|
||||
|
||||
sub diff_file {
|
||||
my $a = shift;
|
||||
my $b = shift;
|
||||
anyfile = False
|
||||
for base in sorted(files.keys()):
|
||||
a = files[base]['a']
|
||||
b = files[base]['b']
|
||||
if not a or not b:
|
||||
continue
|
||||
print("=" * 70)
|
||||
print("= %s <-> %s" % (a, b))
|
||||
diff_file(a, b)
|
||||
anyfile = True
|
||||
if not anyfile:
|
||||
sys.stderr.write(
|
||||
"%Warning: No .tree files found that have similar base names\n")
|
||||
|
||||
|
||||
def diff_file(a, b):
|
||||
# Compare the two tree files
|
||||
(my $short_a = $a) =~ s/[^a-zA-Z0-9.]+/_/g;
|
||||
(my $short_b = $b) =~ s/[^a-zA-Z0-9.]+/_/g;
|
||||
my $tmp_a = "/tmp/${$}_${short_a}.a";
|
||||
my $tmp_b = "/tmp/${$}_${short_b}.b";
|
||||
short_a = re.sub(r'[^a-zA-Z0-9.]+', '_', a)
|
||||
short_b = re.sub(r'[^a-zA-Z0-9.]+', '_', b)
|
||||
tmp_a = "/tmp/%s_%s.a" % (os.getpid(), short_a)
|
||||
tmp_b = "/tmp/%s_%s.b" % (os.getpid(), short_b)
|
||||
|
||||
my $vera = version_from($a);
|
||||
my $verb = version_from($b);
|
||||
my $verCvt = (($vera < 0x3900 && $verb >= 0x3900)
|
||||
|| ($vera >= 0x3900 && $verb < 0x3900));
|
||||
# Version conversion deprecated, but for future...
|
||||
# vera = version_from(a)
|
||||
# verb = version_from(b)
|
||||
# verCvt = ((vera < 0x3900 and verb >= 0x3900)
|
||||
# or (vera >= 0x3900 and verb < 0x3900))
|
||||
|
||||
filter($a, $tmp_a, $verCvt);
|
||||
filter($b, $tmp_b, $verCvt);
|
||||
system("diff -u $tmp_a $tmp_b");
|
||||
unlink $tmp_a;
|
||||
unlink $tmp_b;
|
||||
}
|
||||
filterf(a, tmp_a)
|
||||
filterf(b, tmp_b)
|
||||
os.system("diff -u " + tmp_a + " " + tmp_b)
|
||||
os.unlink(tmp_a)
|
||||
os.unlink(tmp_b)
|
||||
|
||||
sub version_from {
|
||||
my $fn = shift;
|
||||
|
||||
def version_from(filename):
|
||||
# Return dump format
|
||||
my $f1 = IO::File->new ($fn) or die "%Error: $! $fn,";
|
||||
while (defined (my $line=$f1->getline())) {
|
||||
last if $. > 10;
|
||||
return hex $1 if $line =~ /\(format (0x[0-9.]+)\)/;
|
||||
}
|
||||
return 1.0;
|
||||
}
|
||||
with open(filename) as fh:
|
||||
lineno = 0
|
||||
for line in fh:
|
||||
if lineno > 10:
|
||||
break
|
||||
match = re.search(r'format (0x[0-9.]+)', line)
|
||||
if match:
|
||||
return hex(match.group(1))
|
||||
return 1.0
|
||||
|
||||
sub filter {
|
||||
my $fn1 = shift;
|
||||
my $fn2 = shift;
|
||||
my $verCvt = shift;
|
||||
|
||||
def filterf(fn1, fn2):
|
||||
# Remove hex numbers before diffing
|
||||
my $f1 = IO::File->new ($fn1) or die "%Error: $! $fn1,";
|
||||
my $f2 = IO::File->new ($fn2,"w") or die "%Error: $! $fn2,";
|
||||
while (defined (my $line=$f1->getline())) {
|
||||
same_line:
|
||||
next if $line =~ / This=/;
|
||||
$line =~ s/0x[a-f0-9]+/0x/g;
|
||||
$line =~ s/<e[0-9]+\#?>/<e>/g;
|
||||
$line =~ s/{[a-z]*\d+}/{}/g if !$Opt_Lineno;
|
||||
if ($verCvt) {
|
||||
next if $line =~ /^ NETLIST/;
|
||||
if ($line =~ /: ([A-Z]+) /) {
|
||||
my $type = $1;
|
||||
next if $type =~ 'DTYPE';
|
||||
if ($type eq 'TYPETABLE' || $type eq 'RANGE') {
|
||||
$line =~ /^(\s+\S+:) /; my $prefix = $1;
|
||||
while (defined ($line=$f1->getline())) {
|
||||
next if $line =~ /^\s+[a-z]/; # Table body
|
||||
next if $line =~ /^${prefix}[0-9]:/;
|
||||
goto same_line;
|
||||
}
|
||||
next;
|
||||
}
|
||||
}
|
||||
}
|
||||
print $f2 $line;
|
||||
}
|
||||
$f1->close;
|
||||
$f2->close;
|
||||
}
|
||||
with open(fn1) as fh1:
|
||||
with open(fn2, "w") as fh2:
|
||||
for line in fh1:
|
||||
if re.search(r' This=', line):
|
||||
continue
|
||||
line = re.sub(r'0x[a-f0-9]+', '0x', line)
|
||||
line = re.sub(r'<e[0-9]+\#?>', '<e>', line)
|
||||
if not Args.no_lineno:
|
||||
line = re.sub(r'{[a-z]*\d+}', '{}', line)
|
||||
fh2.write(line)
|
||||
|
||||
#----------------------------------------------------------------------
|
||||
|
||||
sub usage {
|
||||
pod2usage(-verbose=>2, -exitval=>0, -output=>\*STDOUT);
|
||||
exit(1); # Unreachable
|
||||
}
|
||||
######################################################################
|
||||
######################################################################
|
||||
|
||||
sub debug {
|
||||
$Debug = 1;
|
||||
}
|
||||
|
||||
sub parameter {
|
||||
my $param = shift;
|
||||
if (!defined $Opt_A) {
|
||||
$Opt_A = $param;
|
||||
} elsif (!defined $Opt_B) {
|
||||
$Opt_B = $param;
|
||||
} else {
|
||||
die "%Error: Unknown parameter: $param\n";
|
||||
}
|
||||
}
|
||||
|
||||
#######################################################################
|
||||
|
||||
sub run {
|
||||
# Run a system command, check errors
|
||||
my $command = shift;
|
||||
print "\t$command\n";
|
||||
system "$command";
|
||||
my $status = $?;
|
||||
($status == 0) or die "%Error: Command Failed $command, $status, stopped";
|
||||
}
|
||||
|
||||
#######################################################################
|
||||
__END__
|
||||
|
||||
=pod
|
||||
|
||||
=head1 NAME
|
||||
|
||||
verilator_difftree - Compare two Verilator debugging trees
|
||||
|
||||
=head1 SYNOPSIS
|
||||
|
||||
verilator_difftree .../a/a.tree .../b/a.tree
|
||||
verilator_difftree .../a .../b
|
||||
|
||||
=head1 DESCRIPTION
|
||||
|
||||
Verilator_difftree is used for debugging Verilator tree output files. It
|
||||
performs a diff between two files, or all files common between two
|
||||
parser = argparse.ArgumentParser(
|
||||
allow_abbrev=False,
|
||||
formatter_class=argparse.RawDescriptionHelpFormatter,
|
||||
description="""Compare two Verilator debugging trees""",
|
||||
epilog=
|
||||
"""Verilator_difftree is used for debugging Verilator tree output files.
|
||||
It performs a diff between two files, or all files common between two
|
||||
directories, ignoring irrelevant pointer differences.
|
||||
|
||||
=head1 ARGUMENTS
|
||||
|
||||
=over 4
|
||||
|
||||
=item --help
|
||||
|
||||
Displays this message and program version and exits.
|
||||
|
||||
=item --nolineno
|
||||
|
||||
Do not show differences in line numbering.
|
||||
|
||||
=back
|
||||
|
||||
=head1 DISTRIBUTION
|
||||
|
||||
The latest version is available from L<https://verilator.org>.
|
||||
For documentation see
|
||||
https://verilator.org/guide/latest/exe_verilator_difftree.html
|
||||
|
||||
Copyright 2005-2021 by Wilson Snyder. This program is free software; you
|
||||
can redistribute it and/or modify it under the terms of either the GNU
|
||||
Lesser General Public License Version 3 or the Perl Artistic License
|
||||
Version 2.0.
|
||||
|
||||
SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0""")
|
||||
|
||||
=head1 AUTHORS
|
||||
parser.add_argument('--debug',
|
||||
action='store_const',
|
||||
const=9,
|
||||
help='enable debug')
|
||||
parser.add_argument('--no-lineno',
|
||||
action='store_false',
|
||||
help='do not show differences in line numbering')
|
||||
parser.add_argument('filea', help='input file a to diff')
|
||||
parser.add_argument('fileb', help='input file b to diff')
|
||||
|
||||
Wilson Snyder <[email protected]>
|
||||
|
||||
=head1 SEE ALSO
|
||||
|
||||
C<verilator>
|
||||
|
||||
and L<https://verilator.org/verilator_doc.html> for detailed documentation.
|
||||
|
||||
=cut
|
||||
Args = parser.parse_args()
|
||||
diff(Args.filea, Args.fileb)
|
||||
|
||||
######################################################################
|
||||
### Local Variables:
|
||||
### compile-command: "$V4/bin/verilator_difftree {$V4D,$V4}/test_regress/obj_dir/t_EXAMPLE/V*_03_*.tree"
|
||||
### End:
|
||||
# Local Variables:
|
||||
# compile-command: "./verilator_difftree ../test_regress/t/t_difftree.{a,b}.tree"
|
||||
# End:
|
||||
|
||||
+428
-511
File diff suppressed because it is too large
Load Diff
@@ -10,11 +10,11 @@
|
||||
|
||||
require 5.005;
|
||||
use warnings;
|
||||
print "// DESCR"."IPTION: Generated by verilator_includer via makefile\n";
|
||||
print "// DESCR" . "IPTION: Generated by verilator_includer via makefile\n";
|
||||
foreach my $param (@ARGV) {
|
||||
if ($param =~ /^-D([^=]+)=(.*)/) {
|
||||
print "#define $1 $2\n"
|
||||
print "#define $1 $2\n";
|
||||
} else {
|
||||
print "#include \"$param\"\n"
|
||||
print "#include \"$param\"\n";
|
||||
}
|
||||
}
|
||||
|
||||
+173
-217
@@ -1,248 +1,204 @@
|
||||
#!/usr/bin/env perl
|
||||
# See copyright, etc in below POD section.
|
||||
#!/usr/bin/env python3
|
||||
# pylint: disable=C0103,C0114,C0116,R0914,R0912,R0915,eval-used
|
||||
######################################################################
|
||||
|
||||
require 5.006_001;
|
||||
use warnings;
|
||||
use Getopt::Long;
|
||||
use IO::File;
|
||||
use Pod::Usage;
|
||||
eval { use Data::Dumper; $Data::Dumper::Indent = 1; }; # Debug, ok if missing
|
||||
use strict;
|
||||
use vars qw($Debug);
|
||||
import argparse
|
||||
import collections
|
||||
import re
|
||||
# from pprint import pprint
|
||||
|
||||
#======================================================================
|
||||
######################################################################
|
||||
|
||||
|
||||
#======================================================================
|
||||
# main
|
||||
def profcfunc(filename):
|
||||
funcs = {}
|
||||
|
||||
$Debug = 0;
|
||||
my $Opt_File;
|
||||
autoflush STDOUT 1;
|
||||
autoflush STDERR 1;
|
||||
Getopt::Long::config("no_auto_abbrev");
|
||||
if (! GetOptions(
|
||||
"help" => \&usage,
|
||||
"debug" => \&debug,
|
||||
"<>" => \¶meter,
|
||||
)) {
|
||||
die "%Error: Bad usage, try 'verilator_profcfunc --help'\n";
|
||||
}
|
||||
with open(filename) as fh:
|
||||
|
||||
defined $Opt_File or die "%Error: No filename given\n";
|
||||
for line in fh:
|
||||
# %time cumesec selfsec calls {stuff} name
|
||||
match = re.match(
|
||||
r'^\s*([0-9.]+)\s+[0-9.]+\s+([0-9.]+)\s+([0-9.]+)\s+[^a-zA-Z_]*([a-zA-Z_].*)$',
|
||||
line)
|
||||
if match:
|
||||
pct = float(match.group(1))
|
||||
sec = float(match.group(2))
|
||||
calls = float(match.group(3))
|
||||
func = match.group(4)
|
||||
if func not in funcs:
|
||||
funcs[func] = {'pct': 0, 'sec': 0, 'calls': 0}
|
||||
funcs[func]['pct'] += pct
|
||||
funcs[func]['sec'] += sec
|
||||
funcs[func]['calls'] += calls
|
||||
continue
|
||||
|
||||
profcfunc($Opt_File);
|
||||
|
||||
#----------------------------------------------------------------------
|
||||
|
||||
sub usage {
|
||||
pod2usage(-verbose=>2, -exitval=>0, -output=>\*STDOUT);
|
||||
exit(1); # Unreachable
|
||||
}
|
||||
|
||||
sub debug {
|
||||
$Debug = 1;
|
||||
}
|
||||
|
||||
sub parameter {
|
||||
my $param = shift;
|
||||
if (!defined $Opt_File) {
|
||||
$Opt_File = $param;
|
||||
} else {
|
||||
die "%Error: Unknown parameter: $param\n";
|
||||
}
|
||||
}
|
||||
|
||||
#######################################################################
|
||||
|
||||
sub profcfunc {
|
||||
my $filename = shift;
|
||||
# Remove hex numbers before diffing
|
||||
my $fh = IO::File->new ($filename) or die "%Error: $! $filename,";
|
||||
|
||||
my %funcs;
|
||||
|
||||
while (defined (my $line=$fh->getline())) {
|
||||
# %time cumesec selfsec calls {stuff} name
|
||||
if ($line =~ /^\s*([0-9.]+)\s+[0-9.]+\s+([0-9.]+)\s+([0-9.]+)\s+[^a-zA-Z_]*([a-zA-Z_].*)$/) {
|
||||
my $pct=$1; my $sec=$2; my $calls=$3; my $func=$4;
|
||||
$funcs{$func}{pct} += $pct;
|
||||
$funcs{$func}{sec} += $sec;
|
||||
$funcs{$func}{calls} += $calls;
|
||||
}
|
||||
# Older gprofs have no call column for single-call functions
|
||||
# %time cumesec selfsec {stuff} name
|
||||
elsif ($line =~ /^\s*([0-9.]+)\s+[0-9.]+\s+([0-9.]+)\s+[^a-zA-Z_]*([a-zA-Z_].*)$/) {
|
||||
my $pct=$1; my $sec=$2; my $calls=1; my $func=$3;
|
||||
$funcs{$func}{pct} += $pct;
|
||||
$funcs{$func}{sec} += $sec;
|
||||
$funcs{$func}{calls} += $calls;
|
||||
}
|
||||
}
|
||||
$fh->close;
|
||||
# Older gprofs have no call column for single-call functions
|
||||
# %time cumesec selfsec {stuff} name
|
||||
match = re.match(
|
||||
r'^\s*([0-9.]+)\s+[0-9.]+\s+([0-9.]+)\s+[^a-zA-Z_]*([a-zA-Z_].*)$',
|
||||
line)
|
||||
if match:
|
||||
pct = float(match.group(1))
|
||||
sec = float(match.group(2))
|
||||
calls = 1
|
||||
func = match.group(3)
|
||||
if func not in funcs:
|
||||
funcs[func] = {'pct': 0, 'sec': 0, 'calls': 0}
|
||||
funcs[func]['pct'] += pct
|
||||
funcs[func]['sec'] += sec
|
||||
funcs[func]['calls'] += calls
|
||||
continue
|
||||
|
||||
# Find modules
|
||||
my %pointer_mods;
|
||||
my %verilated_mods;
|
||||
foreach my $func (keys %funcs) {
|
||||
if ($func =~ /(.*)::_eval\(([a-zA-Z_0-9]+__Syms).*\)$/) {
|
||||
$verilated_mods{$1} = qr/^$1/;
|
||||
$pointer_mods{$2} = $1;
|
||||
}
|
||||
}
|
||||
#print Dumper(\%pointer_mods, \%verilated_mods);
|
||||
verilated_mods = {}
|
||||
for func in funcs:
|
||||
match = re.search(r'(.*)::eval(_step)?\(', func)
|
||||
if match:
|
||||
prefix = match.group(1)
|
||||
if Args.debug:
|
||||
print("-got _eval %s prefix=%s" % (func, prefix))
|
||||
verilated_mods[prefix] = re.compile(r'^' + prefix)
|
||||
# pprint(verilated_mods)
|
||||
|
||||
# Resort by Verilog name
|
||||
my %vfuncs;
|
||||
my %groups;
|
||||
foreach my $func (keys %funcs) {
|
||||
my $pct = $funcs{$func}{pct};
|
||||
my $vfunc = $func;
|
||||
my $design;
|
||||
# Sort by Verilog name
|
||||
vfuncs = {}
|
||||
groups = {}
|
||||
groups['type'] = collections.defaultdict(lambda: 0)
|
||||
groups['design'] = collections.defaultdict(lambda: 0)
|
||||
groups['module'] = collections.defaultdict(lambda: 0)
|
||||
|
||||
if ($func =~ /\(([a-zA-Z_0-9]+__Syms)/) {
|
||||
$design = $pointer_mods{$1};
|
||||
}
|
||||
for func in funcs:
|
||||
pct = funcs[func]['pct']
|
||||
vfunc = func
|
||||
|
||||
foreach my $vde (keys %verilated_mods) {
|
||||
last if $design;
|
||||
if ($func =~ /$verilated_mods{$vde}/) {
|
||||
$design=$vde;
|
||||
last;
|
||||
}
|
||||
}
|
||||
funcarg = re.sub(r'^.*\(', '', func)
|
||||
|
||||
if ($vfunc =~ /__PROF__([a-zA-Z_0-9]+)__l?([0-9]+)\(/) {
|
||||
$vfunc = sprintf("VBlock %s:%d", $1, $2);
|
||||
$groups{type}{"Verilog Blocks under $design"} += $pct;
|
||||
$groups{design}{$design} += $pct;
|
||||
$groups{module}{$1} += $pct;
|
||||
} else {
|
||||
if ($design) {
|
||||
$vfunc = sprintf("VCommon %s", $func);
|
||||
$groups{type}{"Common code under $design"} += $pct;
|
||||
$groups{design}{$design} += $pct;
|
||||
$groups{module}{$design." common code"} += $pct;
|
||||
} elsif ($func =~ /^VL_[A-Z0-9_]+/
|
||||
|| $func =~ /^_?vl_[a-zA-Z0-9_]+/
|
||||
|| $func =~ /^verilated/i) {
|
||||
$vfunc = sprintf("VLib %s", $func);
|
||||
$groups{type}{'VLib'} += $pct;
|
||||
$groups{design}{'VLib'} += $pct;
|
||||
$groups{module}{'VLib'} += $pct;
|
||||
} elsif ($func =~ /^_mcount_private/) {
|
||||
$vfunc = sprintf("Prof %s", $func);
|
||||
$groups{type}{'Prof'} += $pct;
|
||||
$groups{design}{'Prof'} += $pct;
|
||||
$groups{module}{'Prof'} += $pct;
|
||||
} else {
|
||||
$vfunc = sprintf("C++ %s", $func);
|
||||
$groups{type}{'C++'} += $pct;
|
||||
$groups{design}{'C++'} += $pct;
|
||||
$groups{module}{'C++'} += $pct;
|
||||
}
|
||||
}
|
||||
$vfuncs{$vfunc} = $funcs{$func};
|
||||
}
|
||||
design = None
|
||||
for vde in verilated_mods:
|
||||
if verilated_mods[vde].match(func) or verilated_mods[vde].match(
|
||||
funcarg):
|
||||
design = vde
|
||||
break
|
||||
|
||||
vdesign = "-"
|
||||
|
||||
prof_match = re.search(r'__PROF__([a-zA-Z_0-9]+)__l?([0-9]+)\(', vfunc)
|
||||
if design and prof_match:
|
||||
linefunc = prof_match.group(1)
|
||||
lineno = int(prof_match.group(2))
|
||||
vfunc = "VBlock %s:%d" % (linefunc, lineno)
|
||||
vdesign = design
|
||||
groups['type']["Verilog Blocks under " + design] += pct
|
||||
groups['design'][design] += pct
|
||||
groups['module'][linefunc] += pct
|
||||
elif design:
|
||||
vfunc = "VCommon " + func
|
||||
vdesign = design
|
||||
groups['type']["Common code under " + design] += pct
|
||||
groups['design'][design] += pct
|
||||
groups['module'][design + " common code"] += pct
|
||||
elif re.match(r'(VL_[A-Z0-9_]+|_?vl_[a-zA-Z0-9_]+|Verilated)', vfunc):
|
||||
vfunc = "VLib " + func
|
||||
groups['type']['VLib'] += pct
|
||||
groups['design']['VLib'] += pct
|
||||
groups['module']['VLib'] += pct
|
||||
elif re.match(r'^_mcount_private', vfunc):
|
||||
vfunc = "Prof " + func
|
||||
groups['type']['Prof'] += pct
|
||||
groups['design']['Prof'] += pct
|
||||
groups['module']['Prof'] += pct
|
||||
else:
|
||||
vfunc = "C++ " + func
|
||||
groups['type']['C++'] += pct
|
||||
groups['design']['C++'] += pct
|
||||
groups['module']['C++'] += pct
|
||||
|
||||
if vfunc not in vfuncs:
|
||||
vfuncs[vfunc] = funcs[func]
|
||||
vfuncs[vfunc]['design'] = vdesign
|
||||
else:
|
||||
vfuncs[vfunc]['pct'] += funcs[func]['pct']
|
||||
vfuncs[vfunc]['calls'] += funcs[func]['calls']
|
||||
vfuncs[vfunc]['sec'] += funcs[func]['sec']
|
||||
|
||||
for ftype in ['type', 'design', 'module']:
|
||||
missing = 100
|
||||
for item in groups[ftype].keys():
|
||||
missing -= groups[ftype][item]
|
||||
groups[ftype]["\377Unaccounted for/rounding error"] = missing
|
||||
|
||||
print("Overall summary by %s:" % ftype)
|
||||
print(" %-6s %s" % ("% time", ftype))
|
||||
for what in sorted(groups[ftype].keys()):
|
||||
# \377 used to establish sort order
|
||||
pwhat = re.sub(r'^\377', '', what)
|
||||
print(" %6.2f %s" % (groups[ftype][what], pwhat))
|
||||
print()
|
||||
|
||||
design_width = 1
|
||||
for func in vfuncs:
|
||||
if design_width < len(vfuncs[func]['design']):
|
||||
design_width = len(vfuncs[func]['design'])
|
||||
|
||||
print("Verilog code profile:")
|
||||
print(" These are split into three categories:")
|
||||
print(" C++: Time in non-Verilated C++ code")
|
||||
print(" Prof: Time in profile overhead")
|
||||
print(" VBlock: Time attributable to a block in a" +
|
||||
" Verilog file and line")
|
||||
print(" VCommon: Time in a Verilated module," +
|
||||
" due to all parts of the design")
|
||||
print(" VLib: Time in Verilated common libraries," +
|
||||
" called by the Verilated code")
|
||||
print()
|
||||
|
||||
print(" % cumulative self ")
|
||||
print((" time seconds seconds calls %-" + str(design_width) +
|
||||
"s type filename and line number") % "design")
|
||||
|
||||
cume = 0
|
||||
for func in sorted(vfuncs.keys(),
|
||||
key=lambda f: vfuncs[f]['sec'],
|
||||
reverse=True):
|
||||
cume += vfuncs[func]['sec']
|
||||
print(("%6.2f %9.2f %8.2f %10d %-" + str(design_width) + "s %s") %
|
||||
(vfuncs[func]['pct'], cume, vfuncs[func]['sec'],
|
||||
vfuncs[func]['calls'], vfuncs[func]['design'], func))
|
||||
|
||||
|
||||
foreach my $type (qw(type design module)) {
|
||||
my $missing = 100;
|
||||
foreach (sort (keys %{$groups{$type}})) {
|
||||
$missing -= $groups{$type}{$_};
|
||||
}
|
||||
if ($missing) {
|
||||
$groups{$type}{"\377Unaccounted for/rounding error"} = $missing;
|
||||
}
|
||||
######################################################################
|
||||
######################################################################
|
||||
|
||||
print("Overall summary by $type:\n");
|
||||
printf(" %-6s %s\n","% time",$type);
|
||||
foreach my $what (sort (keys %{$groups{$type}})) {
|
||||
(my $pwhat = $what) =~ s/^\377//; # Just used to establish sort order
|
||||
printf(" %6.2f %s\n", $groups{$type}{$what}, $pwhat);
|
||||
}
|
||||
print("\n");
|
||||
}
|
||||
|
||||
print("Verilog code profile:\n");
|
||||
print(" These are split into three categories:\n");
|
||||
print(" C++: Time in non-Verilated C++ code\n");
|
||||
print(" Prof: Time in profile overhead\n");
|
||||
print(" VBlock: Time attributable to a block in a Verilog file and line\n");
|
||||
print(" VCommon: Time in a Verilated module, due to all parts of the design\n");
|
||||
print(" VLib: Time in Verilated common libraries, called by the Verilated code\n");
|
||||
print("\n");
|
||||
|
||||
print(" % cumulative self \n");
|
||||
print(" time seconds seconds calls type filename and line number\n");
|
||||
|
||||
my $cume = 0;
|
||||
foreach my $func (sort {$vfuncs{$b}{sec} <=> $vfuncs{$a}{sec}
|
||||
|| $a cmp $b}
|
||||
(keys %vfuncs)) {
|
||||
$cume += $vfuncs{$func}{sec};
|
||||
printf +("%6.2f %9.2f %8.2f %8d %s\n",
|
||||
$vfuncs{$func}{pct},
|
||||
$cume, $vfuncs{$func}{sec},
|
||||
$vfuncs{$func}{calls},
|
||||
$func);
|
||||
}
|
||||
}
|
||||
|
||||
#######################################################################
|
||||
__END__
|
||||
|
||||
=pod
|
||||
|
||||
=head1 NAME
|
||||
|
||||
verilator_profcfunc - Read gprof report created with --prof-cfuncs
|
||||
|
||||
=head1 SYNOPSIS
|
||||
|
||||
verilator --prof-cfuncs ....
|
||||
gcc --ggdb -pg ....
|
||||
{run executable}
|
||||
gprof
|
||||
verilator_profcfuncs gprof.out
|
||||
|
||||
=head1 DESCRIPTION
|
||||
|
||||
Verilator_profcfunc reads a profile report created by gprof. The names of
|
||||
parser = argparse.ArgumentParser(
|
||||
allow_abbrev=False,
|
||||
formatter_class=argparse.RawDescriptionHelpFormatter,
|
||||
description="""Read gprof report created with --prof-cfuncs""",
|
||||
epilog=
|
||||
"""Verilator_profcfunc reads a profile report created by gprof. The names of
|
||||
the functions are then transformed, assuming the user used Verilator's
|
||||
--prof-cfuncs, and a report printed showing the percentage of time, etc,
|
||||
in each Verilog block.
|
||||
|
||||
For documentation see
|
||||
L<https://verilator.org/guide/latest/exe_verilator_profcfuncs.html>.
|
||||
https://verilator.org/guide/latest/exe_verilator_profcfunc.html
|
||||
|
||||
=head1 ARGUMENT SUMMARY
|
||||
|
||||
<filename> Input file (gprof.out)
|
||||
--help Display this help
|
||||
|
||||
=head1 DISTRIBUTION
|
||||
|
||||
The latest version is available from L<https://verilator.org>.
|
||||
|
||||
Copyright 2007-2021 by Wilson Snyder. This program is free software; you
|
||||
Copyright 2002-2021 by Wilson Snyder. This program is free software; you
|
||||
can redistribute it and/or modify it under the terms of either the GNU
|
||||
Lesser General Public License Version 3 or the Perl Artistic License
|
||||
Version 2.0.
|
||||
|
||||
SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0""")
|
||||
|
||||
=head1 SEE ALSO
|
||||
parser.add_argument('--debug',
|
||||
action='store_const',
|
||||
const=9,
|
||||
help='enable debug')
|
||||
parser.add_argument('filename', help='input gprof output to process')
|
||||
|
||||
C<verilator>
|
||||
|
||||
and L<https://verilator.org/guide/latest/exe_verilator_profcfuncs.html> for
|
||||
detailed documentation.
|
||||
|
||||
=cut
|
||||
Args = parser.parse_args()
|
||||
profcfunc(Args.filename)
|
||||
|
||||
######################################################################
|
||||
### Local Variables:
|
||||
### compile-command: "$V4/bin/verilator_profcfunc $V4/test_c/obj_dir/V*_03_*.tree $V4N/test_c/obj_dir/V*_03_*.tree"
|
||||
### End:
|
||||
# Local Variables:
|
||||
# compile-command: "./verilator_profcfunc ../test_regress/t/t_profcfunc.gprof"
|
||||
# End:
|
||||
|
||||
+9
-6
@@ -23,6 +23,12 @@ fatal() {
|
||||
echo "ERROR: $(basename "$0"): $1" >&2; exit 1;
|
||||
}
|
||||
|
||||
if [ "$CI_M32" = "0" ]; then
|
||||
unset CI_M32
|
||||
elif [ "$CI_M32" != "1" ]; then
|
||||
fatal "\$CI_M32 must be '0' or '1'";
|
||||
fi
|
||||
|
||||
if [ "$CI_OS_NAME" = "linux" ]; then
|
||||
MAKE=make
|
||||
elif [ "$CI_OS_NAME" = "osx" ]; then
|
||||
@@ -36,7 +42,7 @@ fi
|
||||
install-vcddiff() {
|
||||
TMP_DIR="$(mktemp -d)"
|
||||
git clone https://github.com/veripool/vcddiff "$TMP_DIR"
|
||||
git -C "${TMP_DIR}" checkout 5112f88b7ba8818dce9dfb72619e64a1fc19542c
|
||||
git -C "${TMP_DIR}" checkout e5664be5fe39d353bf3fcb50aa05214ab7ed4ac4
|
||||
"$MAKE" -C "${TMP_DIR}"
|
||||
sudo cp "${TMP_DIR}/vcddiff" /usr/local/bin
|
||||
}
|
||||
@@ -55,7 +61,7 @@ if [ "$CI_BUILD_STAGE_NAME" = "build" ]; then
|
||||
if [ "$COVERAGE" = 1 ]; then
|
||||
yes yes | sudo cpan -fi Parallel::Forker
|
||||
fi
|
||||
if [ "$M32" = 1 ]; then
|
||||
if [ "$CI_M32" = 1 ]; then
|
||||
sudo apt-get install gcc-multilib g++-multilib
|
||||
fi
|
||||
elif [ "$CI_OS_NAME" = "osx" ]; then
|
||||
@@ -82,7 +88,7 @@ elif [ "$CI_BUILD_STAGE_NAME" = "test" ]; then
|
||||
if [ "$CI_RUNS_ON" = "ubuntu-20.04" ]; then
|
||||
sudo apt-get install libsystemc-dev
|
||||
fi
|
||||
if [ "$M32" = 1 ]; then
|
||||
if [ "$CI_M32" = 1 ]; then
|
||||
sudo apt-get install lib32z1-dev gcc-multilib g++-multilib
|
||||
fi
|
||||
elif [ "$CI_OS_NAME" = "osx" ]; then
|
||||
@@ -101,9 +107,6 @@ elif [ "$CI_BUILD_STAGE_NAME" = "test" ]; then
|
||||
fi
|
||||
yes yes | sudo cpan -M $CI_CPAN_REPO -fi Parallel::Forker
|
||||
install-vcddiff
|
||||
|
||||
autoconf
|
||||
./configure --enable-longtests --enable-ccwarn
|
||||
else
|
||||
##############################################################################
|
||||
# Unknown build stage
|
||||
|
||||
+15
-2
@@ -21,6 +21,12 @@ fatal() {
|
||||
echo "ERROR: $(basename "$0"): $1" >&2; exit 1;
|
||||
}
|
||||
|
||||
if [ "$CI_M32" = "0" ]; then
|
||||
unset CI_M32
|
||||
elif [ "$CI_M32" != "1" ]; then
|
||||
fatal "\$CI_M32 must be '0' or '1'";
|
||||
fi
|
||||
|
||||
if [ "$CI_OS_NAME" = "linux" ]; then
|
||||
export MAKE=make
|
||||
NPROC=$(nproc)
|
||||
@@ -40,8 +46,10 @@ if [ "$CI_BUILD_STAGE_NAME" = "build" ]; then
|
||||
|
||||
if [ "$COVERAGE" != 1 ]; then
|
||||
autoconf
|
||||
./configure --enable-longtests --enable-ccwarn
|
||||
./configure --enable-longtests --enable-ccwarn ${CI_M32:+--enable-m32}
|
||||
ccache -z
|
||||
"$MAKE" -j "$NPROC" -k
|
||||
ccache -s
|
||||
if [ "$CI_OS_NAME" = "osx" ]; then
|
||||
file bin/verilator_bin
|
||||
file bin/verilator_bin_dbg
|
||||
@@ -61,6 +69,7 @@ elif [ "$CI_BUILD_STAGE_NAME" = "test" ]; then
|
||||
|
||||
if [ "$CI_OS_NAME" = "osx" ]; then
|
||||
export VERILATOR_TEST_NO_GDB=1 # Pain to get GDB to work on OS X
|
||||
# TODO below may no longer be requried as configure checks for -pg
|
||||
export VERILATOR_TEST_NO_GPROF=1 # Apple Clang has no -pg
|
||||
# export PATH="/Applications/gtkwave.app/Contents/Resources/bin:$PATH" # fst2vcd
|
||||
file bin/verilator_bin
|
||||
@@ -76,13 +85,15 @@ elif [ "$CI_BUILD_STAGE_NAME" = "test" ]; then
|
||||
"$MAKE" -j "$NPROC" -k
|
||||
elif [ "$CI_OS_NAME" = "freebsd" ]; then
|
||||
export VERILATOR_TEST_NO_GDB=1 # Disable for now, ideally should run
|
||||
# TODO below may no longer be requried as configure checks for -pg
|
||||
export VERILATOR_TEST_NO_GPROF=1 # gprof is a bit different on FreeBSD, disable
|
||||
fi
|
||||
|
||||
# Run sanitize on Ubuntu 20.04 only
|
||||
[ "$CI_RUNS_ON" = 'ubuntu-20.04' ] && sanitize='--sanitize' || sanitize=''
|
||||
[ "$CI_RUNS_ON" = 'ubuntu-20.04' ] && [ "$CI_M32" = "" ] && sanitize='--sanitize' || sanitize=''
|
||||
|
||||
# Run the specified test
|
||||
ccache -z
|
||||
case $TESTS in
|
||||
dist-vlt-0)
|
||||
"$MAKE" -C test_regress SCENARIOS="--dist --vlt $sanitize" DRIVER_HASHSET=--hashset=0/3
|
||||
@@ -169,6 +180,8 @@ elif [ "$CI_BUILD_STAGE_NAME" = "test" ]; then
|
||||
fatal "Unknown test: $TESTS"
|
||||
;;
|
||||
esac
|
||||
ccache -s
|
||||
|
||||
# Upload coverage data
|
||||
if [[ $TESTS == coverage-* ]]; then
|
||||
bash <(cat ci/coverage-upload.sh) -f nodist/obj_dir/coverage/app_total.info
|
||||
|
||||
+108
-36
@@ -7,7 +7,7 @@
|
||||
|
||||
#AC_INIT([Verilator],[#.### YYYY-MM-DD])
|
||||
#AC_INIT([Verilator],[#.### devel])
|
||||
AC_INIT([Verilator],[4.204 2021-06-12],
|
||||
AC_INIT([Verilator],[4.214 2021-10-17],
|
||||
[https://verilator.org],
|
||||
[verilator],[https://verilator.org])
|
||||
# When releasing, also update header of Changes file
|
||||
@@ -35,7 +35,7 @@ AC_ARG_ENABLE([silent-rules],
|
||||
AC_MSG_CHECKING(whether to perform partial static linking of Verilator binary)
|
||||
AC_ARG_ENABLE([partial-static],
|
||||
[AS_HELP_STRING([--disable-partial-static],
|
||||
[By default, for Verilation peformance, Verilator
|
||||
[By default, for Verilation performance, Verilator
|
||||
is linked against some of its dependencies
|
||||
statically. Use this to link the Verilator binary
|
||||
fully dynamically.])],
|
||||
@@ -52,7 +52,7 @@ AC_MSG_CHECKING(whether to use tcmalloc)
|
||||
AC_ARG_ENABLE([tcmalloc],
|
||||
[AS_HELP_STRING([--enable-tcmalloc],
|
||||
[Use libtcmalloc_minimal for faster dynamic memory
|
||||
management in Verilator binary@<:@default=check@:>@])],
|
||||
management in Verilator binary @<:@default=check@:>@])],
|
||||
[case "${enableval}" in
|
||||
yes) CFG_WITH_TCMALLOC=yes ;;
|
||||
no) CFG_WITH_TCMALLOC=no ;;
|
||||
@@ -61,6 +61,34 @@ AC_ARG_ENABLE([tcmalloc],
|
||||
[CFG_WITH_TCMALLOC=check;])
|
||||
AC_MSG_RESULT($CFG_WITH_TCMALLOC)
|
||||
|
||||
# Flag to enable -m32 build
|
||||
AC_MSG_CHECKING(whether to use -m32)
|
||||
AC_ARG_ENABLE([m32],
|
||||
[AS_HELP_STRING([--enable-m32],
|
||||
[Use -m32 for all compilation and link,
|
||||
including Verialtor and generated models.])],
|
||||
[case "${enableval}" in
|
||||
yes) CFG_ENABLE_M32=yes ;;
|
||||
no) CFG_ENABLE_M32=no ;;
|
||||
*) AC_MSG_ERROR([bad value '${enableval}' for --enable-m32]) ;;
|
||||
esac],
|
||||
CFG_ENABLE_M32=no)
|
||||
AC_MSG_RESULT($CFG_ENABLE_M32)
|
||||
|
||||
# Flag to enable coverage build
|
||||
AC_MSG_CHECKING(whether to build for coverage collection)
|
||||
AC_ARG_ENABLE([coverage],
|
||||
[AS_HELP_STRING([--enable-coverage],
|
||||
[Build Verilator for code coverage collection.
|
||||
For developers only.])],
|
||||
[case "${enableval}" in
|
||||
yes) CFG_ENABLE_COVERAGE=yes ;;
|
||||
no) CFG_ENABLE_COVERAGE=no ;;
|
||||
*) AC_MSG_ERROR([bad value '${enableval}' for --enable-coverage]) ;;
|
||||
esac],
|
||||
CFG_ENABLE_COVERAGE=no)
|
||||
AC_MSG_RESULT($CFG_ENABLE_COVERAGE)
|
||||
|
||||
# Special Substitutions - CFG_WITH_DEFENV
|
||||
AC_MSG_CHECKING(whether to use hardcoded paths)
|
||||
AC_ARG_ENABLE([defenv],
|
||||
@@ -135,6 +163,11 @@ AC_RUN_IFELSE(
|
||||
AC_MSG_RESULT(no);AC_MSG_ERROR([a working C++ compiler is required]),
|
||||
AC_MSG_RESULT(yes))
|
||||
|
||||
AC_CHECK_PROG(AR,ar,ar)
|
||||
if test "x$AR" = "x" ; then
|
||||
AC_MSG_ERROR([Cannot find "ar" in your PATH, please install it])
|
||||
fi
|
||||
|
||||
AC_PATH_PROG(PERL,perl)
|
||||
if test "x$PERL" = "x" ; then
|
||||
AC_MSG_ERROR([Cannot find "perl" in your PATH, please install it])
|
||||
@@ -211,24 +244,34 @@ AC_DEFUN([_MY_CXX_CHECK_FLAG],
|
||||
CXXFLAGS="$ACO_SAVE_CXXFLAGS"
|
||||
])
|
||||
|
||||
AC_DEFUN([_MY_CXX_CHECK_IFELSE],
|
||||
[# _MY_CXX_CHECK_IFELSE(option,action-if-supported,action-if-not-supported)
|
||||
# Check if compiler supports specific option. If it does,
|
||||
# do action-if-supported, otherwise do action-if-not-supported
|
||||
_MY_CXX_CHECK_FLAG($1)
|
||||
if test "$_my_result" = "yes" ; then
|
||||
true
|
||||
$2
|
||||
else
|
||||
true
|
||||
$3
|
||||
fi
|
||||
])
|
||||
|
||||
AC_DEFUN([_MY_CXX_CHECK_SET],
|
||||
[# _MY_CXX_CHECK_SET(variable,flag) -- Check if compiler supports specific options
|
||||
# If it does, set variable to flag, only if not previously set
|
||||
[# _MY_CXX_CHECK_SET(variable,option)
|
||||
# Check if compiler supports specific option. If it does,
|
||||
# set variable to option, only if not previously set.
|
||||
if test "$$1" = ""; then
|
||||
_MY_CXX_CHECK_FLAG($2)
|
||||
if test "$_my_result" = "yes" ; then
|
||||
$1="$2"
|
||||
fi
|
||||
_MY_CXX_CHECK_IFELSE($2, $1="$2")
|
||||
fi
|
||||
])
|
||||
|
||||
AC_DEFUN([_MY_CXX_CHECK_OPT],
|
||||
[# _MY_CXX_CHECK_OPT(flag) -- Check if compiler supports specific options
|
||||
# If it does, append flag to variable
|
||||
_MY_CXX_CHECK_FLAG($2)
|
||||
if test "$_my_result" = "yes" ; then
|
||||
$1="$$1 $2"
|
||||
fi
|
||||
[# _MY_CXX_CHECK_OPT(variable,option)
|
||||
# Check if compiler supports specific option. If it does,
|
||||
# append option to variable
|
||||
_MY_CXX_CHECK_IFELSE($2, $1="$$1 $2")
|
||||
])
|
||||
|
||||
AC_DEFUN([_MY_LDLIBS_CHECK_FLAG],
|
||||
@@ -270,35 +313,52 @@ AC_DEFUN([_MY_LDLIBS_CHECK_OPT],
|
||||
_MY_LDLIBS_CHECK_IFELSE($2, $1="$$1 $2")
|
||||
])
|
||||
|
||||
# When using -m32. Check this first as later checks may fail with the -m32 flag.
|
||||
if test "$CFG_ENABLE_M32" = "yes"; then
|
||||
_MY_CXX_CHECK_IFELSE(
|
||||
-m32,
|
||||
[CXX="$CXX -m32"],
|
||||
[AC_MSG_ERROR([--enable-m32 was given but compiler does not support -m32])])
|
||||
fi
|
||||
|
||||
# Similarly, add the coverage flags early as they influence later checks.
|
||||
if test "$CFG_ENABLE_COVERAGE" = "yes"; then
|
||||
_MY_CXX_CHECK_OPT(CXX,--coverage)
|
||||
# Otherwise inline may not show as uncovered
|
||||
# If we use this then e.g. verilated.h functions properly show up
|
||||
# if unused.
|
||||
# However, VerilatedSerialize::write then changes from covered
|
||||
# to uncovered (in G++ 9.3.0) even with all inlining turned off.
|
||||
# Having false negative coverage is more effort then missing negatives.
|
||||
# Also this seems to explode the runtime (since a lot more data).
|
||||
# _MY_CXX_CHECK_OPT(CXX,-fkeep-inline-functions)
|
||||
# Otherwise static may not show as uncovered
|
||||
_MY_CXX_CHECK_OPT(CXX,-fkeep-static-functions)
|
||||
# Exceptions can pollute the branch coverage data
|
||||
_MY_CXX_CHECK_OPT(CXX,-fno-exceptions)
|
||||
# Define-out some impossible stuff
|
||||
_MY_CXX_CHECK_OPT(CXX,-DVL_GCOV)
|
||||
fi
|
||||
|
||||
# Compiler flags to enable profiling
|
||||
_MY_CXX_CHECK_OPT(CFG_CXXFLAGS_PROFILE,-pg)
|
||||
AC_SUBST(CFG_CXXFLAGS_PROFILE)
|
||||
|
||||
# Flag to select newest language standard supported
|
||||
# Macros work such that first option that passes is the one we take
|
||||
# Currently enabled gnu++14/c++14 due to packaged SystemC dependency
|
||||
# gnu++17 is the newest that Verilator supports
|
||||
# std++03 is the oldest that Verilator supports
|
||||
# Currently enabled c++14 due to packaged SystemC dependency
|
||||
# c++14 is the newest that Verilator is regressed to support
|
||||
# c++11 is the oldest that Verilator supports
|
||||
# gnu is requried for Cygwin to compile verilated.h successfully
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++20)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++17)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++14)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++11)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++03)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=c++20)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++17)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=c++17)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++14)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=c++14)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=gnu++11)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=c++11)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_NEWEST,-std=c++03)
|
||||
AC_SUBST(CFG_CXXFLAGS_STD_NEWEST)
|
||||
# And likewise oldest standard (same list above, backwards)
|
||||
# This is used for internal testing
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=c++03)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=c++11)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=c++14)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=c++17)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=c++20)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=gnu++03)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=gnu++11)
|
||||
_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=gnu++14)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=gnu++17)
|
||||
#_MY_CXX_CHECK_SET(CFG_CXXFLAGS_STD_OLDEST,-std=gnu++20)
|
||||
AC_SUBST(CFG_CXXFLAGS_STD_OLDEST)
|
||||
|
||||
# Flags for compiling Verilator internals including parser, and Verilated files
|
||||
# These turn on extra warnings and are only used with 'configure --enable-ccwarn'
|
||||
@@ -322,6 +382,18 @@ _MY_CXX_CHECK_OPT(CFG_CXXFLAGS_PARSER,-Wno-parentheses-equality)
|
||||
_MY_CXX_CHECK_OPT(CFG_CXXFLAGS_PARSER,-Wno-unused)
|
||||
AC_SUBST(CFG_CXXFLAGS_PARSER)
|
||||
|
||||
# Flags for compiling the debug version of Verilator (in addition to above CFG_CXXFLAGS_SRC)
|
||||
if test "$CFG_ENABLE_COVERAGE" = "no"; then # Do not optimize for the coverage build
|
||||
_MY_CXX_CHECK_OPT(CFG_CXXFLAGS_DEBUG,-Og)
|
||||
fi
|
||||
_MY_CXX_CHECK_OPT(CFG_CXXFLAGS_DEBUG,-ggdb)
|
||||
_MY_CXX_CHECK_OPT(CFG_CXXFLAGS_DEBUG,-gz)
|
||||
AC_SUBST(CFG_CXXFLAGS_DEBUG)
|
||||
|
||||
# Flags for linking the debug version of Verilator (in addition to above CFG_LDFLAGS_SRC)
|
||||
_MY_LDLIBS_CHECK_OPT(CFG_LDFLAGS_DEBUG,-gz)
|
||||
AC_SUBST(CFG_LDFLAGS_DEBUG)
|
||||
|
||||
# Flags for Verilated makefile
|
||||
# For example, -Wno-div-by-zero isn't in 4.1.2
|
||||
# Random code often does / 0. Unfortunately VL_DIV_I(0,0) will warn
|
||||
|
||||
@@ -11,6 +11,7 @@ Andreas Kuster
|
||||
Chris Randall
|
||||
Conor McCullough
|
||||
Dan Petrisko
|
||||
Daniel Bates
|
||||
David Horton
|
||||
David Metz
|
||||
David Stanford
|
||||
@@ -20,6 +21,7 @@ Driss Hafdi
|
||||
Edgar E. Iglesias
|
||||
Eric Rippey
|
||||
Fan Shupei
|
||||
Felix Yan
|
||||
Garrett Smith
|
||||
Geza Lore
|
||||
Gianfranco Costamagna
|
||||
@@ -29,6 +31,8 @@ Harald Heckmann
|
||||
Howard Su
|
||||
Huang Rui
|
||||
HyungKi Jeong
|
||||
Iru Cai
|
||||
Ivan Vnučec
|
||||
Iztok Jeras
|
||||
James Hanlon
|
||||
James Hutchinson
|
||||
@@ -44,6 +48,7 @@ Josh Redford
|
||||
Julien Margetts
|
||||
Kaleb Barrett
|
||||
Kanad Kanhere
|
||||
Keith Colbert
|
||||
Kevin Kiningham
|
||||
Krzysztof Bieganski
|
||||
Kuba Ober
|
||||
@@ -82,6 +87,7 @@ Sebastien Van Cauwenberghe
|
||||
Sergi Granell
|
||||
Stefan Wallentowitz
|
||||
Stephen Henry
|
||||
Steven Hugg
|
||||
Tim Snyder
|
||||
Tobias Rosenkranz
|
||||
Tobias Wölfel
|
||||
@@ -98,3 +104,4 @@ Yossi Nivin
|
||||
Yuri Victorovich
|
||||
Yutetsu TAKATSUKASA
|
||||
Yves Mathieu
|
||||
Zhanglei Wang
|
||||
|
||||
Vendored
+19
-10
@@ -1,16 +1,25 @@
|
||||
/*Verilator blue #008fd7; set in html*/
|
||||
/* Verilator blue #008fd7; set in html */
|
||||
|
||||
.wy-side-nav-search > div.version {
|
||||
color: #111;
|
||||
color: #111;
|
||||
}
|
||||
.fa-github::before, .icon-github::before {
|
||||
content: "";
|
||||
|
||||
.fa-github::before,
|
||||
.icon-github::before {
|
||||
content: "";
|
||||
}
|
||||
.fa-home::before, .icon-home::before {
|
||||
content: "";
|
||||
|
||||
.fa-home::before,
|
||||
.icon-home::before {
|
||||
content: "";
|
||||
}
|
||||
.fa-arrow-circle-right::before, .icon-circle-arrow-right::before {
|
||||
content: "";
|
||||
|
||||
.fa-arrow-circle-right::before,
|
||||
.icon-circle-arrow-right::before {
|
||||
content: "";
|
||||
}
|
||||
.fa-arrow-circle-left::before, .icon-circle-arrow-left::before {
|
||||
content: "";
|
||||
|
||||
.fa-arrow-circle-left::before,
|
||||
.icon-circle-arrow-left::before {
|
||||
content: "";
|
||||
}
|
||||
|
||||
@@ -0,0 +1,6 @@
|
||||
.. comment: generated by t_lint_didnotconverge_bad
|
||||
.. code-block:: sv
|
||||
:linenos:
|
||||
|
||||
always_comb b = ~a;
|
||||
always_comb a = b;
|
||||
@@ -0,0 +1,7 @@
|
||||
.. comment: generated by t_lint_didnotconverge_bad
|
||||
.. code-block::
|
||||
|
||||
-V{t#,#}+ Vt_lint_didnotconverge_bad___024root___change_request
|
||||
-V{t#,#}+ Vt_lint_didnotconverge_bad___024root___change_request_1
|
||||
-V{t#,#} CHANGE: t/t_lint_didnotconverge_bad.v:14: a
|
||||
%Error: t/t_lint_didnotconverge_bad.v:7: Verilated model didn't converge
|
||||
@@ -0,0 +1,4 @@
|
||||
.. comment: generated by t_lint_didnotconverge_nodbg_bad
|
||||
.. code-block::
|
||||
|
||||
%Error: t/t_lint_didnotconverge_bad.v:7: Verilated model didn't converge
|
||||
@@ -0,0 +1,5 @@
|
||||
.. comment: generated by t_lint_stmtdly_bad
|
||||
.. code-block:: sv
|
||||
:emphasize-lines: 1
|
||||
|
||||
#100 $finish; //<--- Warning
|
||||
@@ -0,0 +1,4 @@
|
||||
.. comment: generated by t_lint_stmtdly_bad
|
||||
.. code-block::
|
||||
|
||||
%Warning-STMTDLY: example.v:1:8 Unsupported: Ignoring delay on this delayed statement.
|
||||
+1
-1
@@ -1,4 +1,4 @@
|
||||
# pylint: disable=C0103,C0114,C0116,E0402,W0622
|
||||
# pylint: disable=C0103,C0114,C0116,C0301,E0402,W0622
|
||||
#
|
||||
# Configuration file for Verilator's Sphinx documentation builder.
|
||||
# SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
|
||||
+87
-22
@@ -7,22 +7,86 @@
|
||||
Connecting to Verilated Models
|
||||
******************************
|
||||
|
||||
Structure of the Verilated Model
|
||||
================================
|
||||
|
||||
Verilator outputs a :file:`{prefix}.h` header file which defines a class
|
||||
named :code:`{prefix}` which represents the generated model the user is
|
||||
supposed to instantiate. This model class defines the interface of the
|
||||
Verilated model.
|
||||
|
||||
Verilator will additionally create a :file:`{prefix}.cpp` file, together
|
||||
with additional .h and .cpp files for internals. See the :file:`examples`
|
||||
directory in the kit for examples. See :ref:`Files Read/Written` for
|
||||
information on all the files Verilator might output.
|
||||
|
||||
The output of Verilator will contain a :file:`{prefix}.mk` file that may be
|
||||
used with Make to build a :file:`{prefix}__ALL.a` library with all required
|
||||
objects in it.
|
||||
|
||||
The generated model class file manages all internal state required by the
|
||||
model, and exposes the following interface that allows interaction with the
|
||||
model:
|
||||
|
||||
* Top level IO ports are exposed as references to the appropriate internal
|
||||
equivalents.
|
||||
|
||||
* Public top level module instances are exposed as pointers to allow access
|
||||
to :code:`/* verilator public */` items.
|
||||
|
||||
* The root of the design hierarchy (as in SystemVerilog :code:`$root`) is
|
||||
exposed via the :code:`rootp` member pointer to allow access to model
|
||||
internals, including :code:`/* verilator public_flat */` items.
|
||||
|
||||
|
||||
.. _Porting from pre 4.210:
|
||||
|
||||
Model interface changes in version 4.210
|
||||
------------------------------------------
|
||||
|
||||
Starting from version 4.210, the model class is an interface object.
|
||||
|
||||
Up until Verilator version 4.204 inclusive, the generated model class was
|
||||
also the instance of the top level instance in the design hierarchy (what
|
||||
you would refer to with :code:`$root` in SystemVerilog). This meant that
|
||||
all internal variables that were implemented by Verilator in the root scope
|
||||
were accessible as members of the model class itself. Note there were often
|
||||
many such variable due to module inlining, including :code:`/* verilator
|
||||
public_flat */` items.
|
||||
|
||||
This means that user code that accesses internal signals in the model
|
||||
(likely including :code:`/* verilator public_flat */` signals, as they are
|
||||
often inlined into the root scope) will need to be updated as follows:
|
||||
|
||||
* No change required for accessing top level IO signals. These are directly
|
||||
accessible in the model class via references.
|
||||
|
||||
* No change required for accessing :code:`/* verilator public */` items.
|
||||
These are directly accessible via sub-module pointers in the model class.
|
||||
|
||||
* Accessing any other internal members, including
|
||||
:code:`/* verilator public_flat */` items requires the following changes:
|
||||
|
||||
* Additionally include :file:`{prefix}___024root.h`. This header defines
|
||||
type of the :code:`rootp` pointer within the model class. Note the
|
||||
:code:`__024` substring is the Verilator escape sequence for the
|
||||
:code:`$` character, i.e.: :code:`rootp` points to the Verilated
|
||||
SystemVerilog :code:`$root` scope.
|
||||
|
||||
* Replace :code:`modelp->internal->member->lookup` references with
|
||||
:code:`modelp->rootp->internal->member->lookup` references, which
|
||||
contain one additional indirection via the :code:`rootp` pointer.
|
||||
|
||||
|
||||
.. _Connecting to C++:
|
||||
|
||||
Connecting to C++
|
||||
=================
|
||||
|
||||
Verilator creates a :file:`{prefix}.h` and :file:`{prefix}.cpp` file for
|
||||
the top level module, together with additional .h and .cpp files for
|
||||
internals. See the :file:`examples` directory in the kit for examples. See
|
||||
:ref:`Files Read/Written` for information on all the files it writes.
|
||||
|
||||
After the model is created, there will be a :file:`{prefix}.mk` file that
|
||||
may be used with Make to produce a :file:`{prefix}__ALL.a` file with all
|
||||
required objects in it.
|
||||
|
||||
The user must write a C++ wrapper and main loop for the simulation, to link
|
||||
with the Verilated model. Here is a simple example:
|
||||
In C++ output mode (:vlopt:`--cc`), the Verilator generated model class is a
|
||||
simple C++ class. The user must write a C++ wrapper and main loop for the
|
||||
simulation, which instantiates the model class, and link with the Verilated
|
||||
model. Here is a simple example:
|
||||
|
||||
.. code-block:: C++
|
||||
|
||||
@@ -30,7 +94,7 @@ with the Verilated model. Here is a simple example:
|
||||
#include <iostream> // Need std::cout
|
||||
#include "Vtop.h" // From Verilating "top.v"
|
||||
|
||||
Vtop *top; // Instantiation of module
|
||||
Vtop *top; // Instantiation of model
|
||||
|
||||
vluint64_t main_time = 0; // Current simulation time
|
||||
// This is a 64-bit integer to reduce wrap over issues and
|
||||
@@ -45,7 +109,7 @@ with the Verilated model. Here is a simple example:
|
||||
int main(int argc, char** argv) {
|
||||
Verilated::commandArgs(argc, argv); // Remember args
|
||||
|
||||
top = new Vtop; // Create instance
|
||||
top = new Vtop; // Create model
|
||||
|
||||
top->reset_l = 0; // Set some inputs
|
||||
|
||||
@@ -70,17 +134,18 @@ with the Verilated model. Here is a simple example:
|
||||
}
|
||||
|
||||
|
||||
Note signals are read and written as member variables of the model. You
|
||||
call the :code:`eval()` method to evaluate the model. When the simulation
|
||||
is complete call the :code:`final()` method to execute any SystemVerilog
|
||||
final blocks, and complete any assertions. See :ref:`Evaluation Loop`.
|
||||
Note top level IO signals are read and written as members of the model. You
|
||||
call the :code:`eval()` method to evaluate the model. When the simulation is
|
||||
complete call the :code:`final()` method to execute any SystemVerilog final
|
||||
blocks, and complete any assertions. See :ref:`Evaluation Loop`.
|
||||
|
||||
|
||||
Connecting to SystemC
|
||||
=====================
|
||||
|
||||
Verilator will convert the top level module to a SC_MODULE. This module
|
||||
will attach directly into a SystemC netlist as an instantiation.
|
||||
In SystemC output mode (:vlopt:`--sc`), the Verilator generated model class
|
||||
is a SystemC SC_MODULE. This module will attach directly into a SystemC
|
||||
netlist as an instantiation.
|
||||
|
||||
The SC_MODULE gets the same pinout as the Verilog module, with the
|
||||
following type conversions: Pins of a single bit become bool. Pins 2-32
|
||||
@@ -88,9 +153,9 @@ bits wide become uint32_t's. Pins 33-64 bits wide become sc_bv's or
|
||||
vluint64_t's depending on the :vlopt:`--no-pins64` option. Wider pins
|
||||
become sc_bv's. (Uints simulate the fastest so are used where possible.)
|
||||
|
||||
Lower modules are not pure SystemC code. This is a feature, as using the
|
||||
SystemC pin interconnect scheme everywhere would reduce performance by an
|
||||
order of magnitude.
|
||||
Model internals, including lower level sub-modules are not pure SystemC
|
||||
code. This is a feature, as using the SystemC pin interconnect scheme
|
||||
everywhere would reduce performance by an order of magnitude.
|
||||
|
||||
|
||||
Direct Programming Interface (DPI)
|
||||
|
||||
@@ -13,7 +13,8 @@ When possible, please instead report bugs at `Verilator Issues
|
||||
|
||||
Primary author is Wilson Snyder <[email protected]>.
|
||||
|
||||
Major concepts by Paul Wasson, Duane Galbi, John Coiner and Jie Xu.
|
||||
Major concepts by Paul Wasson, Duane Galbi, John Coiner, Geza Lore, Yutetsu
|
||||
Takatsukasa, and Jie Xu.
|
||||
|
||||
|
||||
Contributors
|
||||
|
||||
@@ -11,13 +11,10 @@ C++11 compiler support
|
||||
require C++14 or newer compilers for both compiling Verilator and
|
||||
compiling Verilated models no sooner than January 2022.
|
||||
|
||||
No-Relative-Cfuncs Option
|
||||
The :vlopt:`--no-relative-cfuncs` option is not be required by any C++11
|
||||
compliant compiler and is planned for removal no sooner than July 2021.
|
||||
|
||||
Inhibit-Sim Option
|
||||
The :vlopt:`--inhibit-sim` option is planned for removal no sooner than
|
||||
July 2021.
|
||||
Verilated_heavy.h
|
||||
The legacy "verilated_heavy.h" include was replaced with just including
|
||||
"verilated.h". Verilated_heavy.h is planned for removal no sooner than
|
||||
July 2022.
|
||||
|
||||
Configuration File -msg
|
||||
The :vlopt:`lint_off` "-msg" option has been replaced with the "-rule"
|
||||
|
||||
@@ -62,6 +62,12 @@ Summary:
|
||||
makes sense for a single-clock-domain module where it's typical to want
|
||||
to capture one posedge eval() and one negedge eval().
|
||||
|
||||
.. option:: +verilator+prof+vlt+file+<filename>
|
||||
|
||||
When a model was Verilated using :vlopt:`--prof-threads`, sets the
|
||||
profile-guided optimization data runtime filename to dump to. Defaults
|
||||
to :file:`profile.vlt`.
|
||||
|
||||
.. option:: +verilator+rand+reset+<value>
|
||||
|
||||
When a model was Verilated using :vlopt:`--x-initial unique
|
||||
|
||||
@@ -527,14 +527,6 @@ Summary:
|
||||
|
||||
See :vlopt:`-y`.
|
||||
|
||||
.. option:: --inhibit-sim
|
||||
|
||||
Rarely needed and deprecated. Create a :code:`inhibitSim(bool)`
|
||||
function to enable and disable evaluation. This allows an upper level
|
||||
testbench to disable modules that are not important in a given
|
||||
simulation, without needing to recompile or change the SystemC modules
|
||||
instantiated.
|
||||
|
||||
.. option:: --inline-mult <value>
|
||||
|
||||
Tune the inlining of modules. The default value of 2000 specifies that up
|
||||
@@ -544,6 +536,14 @@ Summary:
|
||||
times, but potentially faster simulation speed. This setting is ignored
|
||||
for very small modules; they will always be inlined, if allowed.
|
||||
|
||||
.. option:: --instr-count-dpi <value>
|
||||
|
||||
Assumed dynamic instruction count of the average DPI import. This is used
|
||||
by the partitioning algorithm when creating a multithread model. The
|
||||
default value is 200. Adjusting this to an appropriate value can yield
|
||||
performance improvements in multithreaded models. Ignored when creating a
|
||||
single threaded model.
|
||||
|
||||
.. option:: -j [<value>]
|
||||
|
||||
Specify the level of parallelism for :vlopt:`--build`. The <value> must
|
||||
@@ -633,6 +633,13 @@ Summary:
|
||||
The directory is created if it does not exist and the parent directories
|
||||
exist; otherwise manually create the Mdir before calling Verilator.
|
||||
|
||||
.. option:: --no-merge-const-pool
|
||||
|
||||
Rarely needed. In order to minimize cache footprint, values of different
|
||||
data type, that are yet emitted identically in C++ are merged in the
|
||||
constant pool. This option disables this and causes every constant pool
|
||||
entry with a distinct data type to be emitted separately.
|
||||
|
||||
.. option:: --mod-prefix <topname>
|
||||
|
||||
Specifies the name to prepend to all lower level classes. Defaults to
|
||||
@@ -654,10 +661,6 @@ Summary:
|
||||
|
||||
Backward compatible alias for :vlopt:`--pins-bv 33 <--pins-bv>`.
|
||||
|
||||
.. option:: --no-relative-cfuncs
|
||||
|
||||
Deprecated.
|
||||
|
||||
.. option:: --no-skip-identical =item --skip-identical
|
||||
|
||||
Rarely needed. Disables or enables skipping execution of Verilator if
|
||||
@@ -808,6 +811,13 @@ Summary:
|
||||
prepended to the name of the :vlopt:`--top` option, or V prepended to
|
||||
the first Verilog filename passed on the command line.
|
||||
|
||||
.. option:: --prof-c
|
||||
|
||||
When compiling the C++ code, enable the compiler's profiling flag
|
||||
(e.g. :code:`g++ -pg`). See :ref:`Profiling`.
|
||||
|
||||
Using :vlopt:`--prof-cfuncs` also enables :vlopt:`--prof-c`.
|
||||
|
||||
.. option:: --prof-cfuncs
|
||||
|
||||
Modify the created C++ functions to support profiling. The functions
|
||||
@@ -818,10 +828,12 @@ Summary:
|
||||
came from. This allows gprof or oprofile reports to be correlated with
|
||||
the original Verilog source statements. See :ref:`Profiling`.
|
||||
|
||||
Using :vlopt:`--prof-cfuncs` also enables :vlopt:`--prof-c`.
|
||||
|
||||
.. option:: --prof-threads
|
||||
|
||||
Enable gantt chart data collection for threaded builds. See :ref:`Thread
|
||||
Profiling`.
|
||||
Profiling` and :ref:`Thread PGO`.
|
||||
|
||||
.. option:: --protect-key <key>
|
||||
|
||||
@@ -1040,6 +1052,8 @@ Summary:
|
||||
Verilator assumes DPI pure imports are threadsafe, but non-pure DPI
|
||||
imports are not.
|
||||
|
||||
See also :vlopt:`--instr-count-dpi` option.
|
||||
|
||||
.. option:: --threads-max-mtasks <value>
|
||||
|
||||
Rarely needed. When using :vlopt:`--threads`, specify the number of
|
||||
@@ -1598,6 +1612,12 @@ The grammar of configuration commands is as follows:
|
||||
:option:`/*verilator&32;public_flat*/`, etc, metacomments. See
|
||||
e.g. :ref:`VPI Example`.
|
||||
|
||||
.. option:: profile_data -mtask "<mtask_hash>" -cost <cost_value>
|
||||
|
||||
Feeds profile-guided optimization data into the Verilator algorithms in
|
||||
order to improve model runtime performance. This option is not expected
|
||||
to be used by users directly. See :ref:`Thread PGO`.
|
||||
|
||||
.. option:: sc_bv -module "<modulename>" [-task "<taskname>"] -var "<signame>"
|
||||
|
||||
.. option:: sc_bv -module "<modulename>" [-function "<funcname>"] -var "<signame>"
|
||||
|
||||
@@ -10,42 +10,60 @@ starts and ends, and showing when each thread is busy or idle.
|
||||
|
||||
For an overview of use of verilator_gantt, see :ref:`Profiling`.
|
||||
|
||||
Gantt Chart Contents
|
||||
--------------------
|
||||
Gantt Chart VCD
|
||||
---------------
|
||||
|
||||
The generated Gantt chart has time on the X-axis. Times shown are to the
|
||||
scale printed, i.e. a certain about of time for each character width. The
|
||||
Y-axis shows threads, each thread's execution is shown on one line. That
|
||||
line shows "[" at the position in time when it executes.
|
||||
Verilated_gnatt creates a value change dump (VCD) format dump file which
|
||||
may be viewed in a waveform viewer (e.g. C<GTKWave>):
|
||||
|
||||
Following the "[" is the CPU number the task executed on, followed by zero
|
||||
or more "-" to make the width of the characters match the scaled execution
|
||||
time, followed by a "]". If the scale is too small, the CPU number and
|
||||
mtask number will not be printed. If the scale is very small, a "&"
|
||||
indicates multiple mtasks started at that time position.
|
||||
.. figure:: figures/fig_gantt_min.png
|
||||
|
||||
Example verilator_gantt output, as viewed with GTKWave.
|
||||
|
||||
The viewed waveform chart has time on the X-axis, with one unit for each
|
||||
time tick of the system's high-performance counter.
|
||||
|
||||
Also creates a value change dump (VCD) format dump file which may be viewed
|
||||
in a waveform viewer (e.g. C<GTKWave>). See below.
|
||||
|
||||
Gantt Chart VCD Signals
|
||||
-----------------------
|
||||
|
||||
In waveforms there are the following signals. Most signals the "decimal"
|
||||
format will remove the leading zeros and make the traces easier to read.
|
||||
In waveforms there are the following signals. In GTKWave, using a data
|
||||
format of "decimal" will remove the leading zeros and make the traces
|
||||
easier to read.
|
||||
|
||||
parallelism
|
||||
evals
|
||||
Increments each time when eval_step was measured to be active. This
|
||||
allow visualization of how much time eval_step was active.
|
||||
|
||||
eval_loop
|
||||
Increments each time when the evaluation loop within eval_step was
|
||||
measured to be active. For best performance there is only a single
|
||||
evaluation loop within each eval_step call, that is the eval_loop
|
||||
waveform looks identical to the evals waveform.
|
||||
|
||||
measured_parallelism
|
||||
The number of mtasks active at this time, for best performance this will
|
||||
match the thread count. You may want to use an "analog step" format to
|
||||
match the thread count. In GTKWave, use a data format of "analog step" to
|
||||
view this signal.
|
||||
|
||||
predicted_parallelism
|
||||
The number of mtasks Verilator predicted would be active at this time,
|
||||
for best performance this will match the thread count. In GTKWave, use a
|
||||
data format of "analog step" to view this signal.
|
||||
|
||||
cpu#_thread
|
||||
For the given CPU number, the thread number executing.
|
||||
For the given CPU number, the thread number measured to be executing.
|
||||
|
||||
mtask#_cpu
|
||||
For the given mtask id, the CPU it is executing on.
|
||||
For the given mtask id, the CPU it was measured to execute on.
|
||||
|
||||
thread#_mtask
|
||||
For the given thread number, the mtask id executing.
|
||||
For the given thread number, the mtask id it was executing.
|
||||
|
||||
predicted_thread#_mtask
|
||||
For the given thread number, the mtask id Verilator predicted would be
|
||||
executing.
|
||||
|
||||
|
||||
verilator_gantt Arguments
|
||||
-------------------------
|
||||
@@ -60,13 +78,6 @@ The filename to read data from, defaults to "profile_threads.dat".
|
||||
|
||||
Displays a help summary, the program version, and exits.
|
||||
|
||||
.. option:: --scale <n>
|
||||
|
||||
Sets the number of time units per character on the X-axis of the generated
|
||||
Gantt chart. (On x86, time units are rdtsc ticks.) Defaults to 0, which
|
||||
will automatically compute a reasonable scale where no two mtasks need to
|
||||
fit into same character width's worth of scaled time.
|
||||
|
||||
.. option:: --no-vcd
|
||||
|
||||
Disables creating a .vcd file.
|
||||
|
||||
@@ -1,20 +1,24 @@
|
||||
.. Copyright 2003-2021 by Wilson Snyder.
|
||||
.. SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
|
||||
verilator_profcfuncs
|
||||
====================
|
||||
verilator_profcfunc
|
||||
===================
|
||||
|
||||
Verilator_profcfunc reads a profile report created by gprof. The names of
|
||||
the functions are then transformed, assuming the user used Verilator's
|
||||
--prof-cfuncs, and a report printed showing the percentage of time, etc, in
|
||||
each Verilog block.
|
||||
|
||||
For an overview of use of verilator_profcfuncs, see :ref:`Profiling`.
|
||||
Due to rounding errors in gprof reports, the input report's percentages may
|
||||
not total to 100%. In the verilator_profcfunc report this will get
|
||||
reported as a rounding error.
|
||||
|
||||
verilator_profcfuncs Arguments
|
||||
------------------------------
|
||||
For an overview of use of verilator_profcfunc, see :ref:`Profiling`.
|
||||
|
||||
.. program:: verilator_profcfuncs
|
||||
verilator_profcfunc Arguments
|
||||
-----------------------------
|
||||
|
||||
.. program:: verilator_profcfunc
|
||||
|
||||
.. option:: <filename>
|
||||
|
||||
@@ -15,5 +15,5 @@ options to each executable.
|
||||
exe_verilator.rst
|
||||
exe_verilator_coverage.rst
|
||||
exe_verilator_gantt.rst
|
||||
exe_verilator_profcfuncs.rst
|
||||
exe_verilator_profcfunc.rst
|
||||
exe_sim.rst
|
||||
|
||||
@@ -33,7 +33,12 @@ or "`ifdef`"'s may break other tools.
|
||||
that returns up to a 32-bit number (without a trailing ;). This can be
|
||||
used to call C++ functions from your Verilog code.
|
||||
|
||||
String arguments will be put directly into the output C++ code.
|
||||
String arguments will be put directly into the output C++ code, except
|
||||
the word 'this' (i.e.: the object pointer) might be replaced with a
|
||||
different pointer as Verilator might implement logic with non-member
|
||||
functions. For this reason, any references to class members must be made
|
||||
via an explicit 'this->' pointer dereference.
|
||||
|
||||
Expression arguments will have the code to evaluate the expression
|
||||
inserted. Thus to call a C++ function, :code:`$c("func(",a,")")` will
|
||||
result in :code:`func(a)` in the output C++ code. For input arguments,
|
||||
|
||||
Binary file not shown.
|
Before Width: | Height: | Size: 43 KiB After Width: | Height: | Size: 37 KiB |
+42
-16
@@ -54,32 +54,38 @@ For --cc/--sc, it creates:
|
||||
- Arguments for hierarchical Verilation (from --make gmake)
|
||||
* - *{prefix}*\ _hierCMakeArgs.f
|
||||
- Arguments for hierarchical Verilation (from --make cmake)
|
||||
* - *{prefix}*\ .cpp
|
||||
- Top level C++ file
|
||||
* - *{prefix}{__n}*\ .cpp
|
||||
- Additional top C++ files (from --output-split)
|
||||
* - *{prefix}*\ .h
|
||||
- Top level header
|
||||
* - *{prefix}*\ __Slow\ *{__n}*\ .cpp
|
||||
- Model header
|
||||
* - *{prefix}*\ .cpp
|
||||
- Model C++ file
|
||||
* - *{prefix}*\ ___024root.h
|
||||
- Top level (SystemVerilog $root) internal header file
|
||||
* - *{prefix}*\ ___024root.cpp
|
||||
- Top level (SystemVerilog $root) internal C++ file
|
||||
* - *{prefix}*___024root*{__n}*\ .cpp
|
||||
- Additional top level internal C++ files (from --output-split)
|
||||
* - *{prefix}*\ ___024root__Slow\ *{__n}*\ .cpp
|
||||
- Infrequent cold routines
|
||||
* - *{prefix}*\ __Dpi.cpp
|
||||
- DPI import and export wrappers (from --dpi)
|
||||
* - *{prefix}*\ ___024root__Trace{__n}*\ .cpp
|
||||
- Wave file generation code (from --trace)
|
||||
* - *{prefix}*\ ___024root__Trace__Slow{__n}*\ .cpp
|
||||
- Wave file generation code (from --trace)
|
||||
* - *{prefix}*\ __Dpi.h
|
||||
- DPI import and export declarations (from --dpi)
|
||||
* - *{prefix}*\ __Dpi.cpp
|
||||
- Global DPI export wrappers (from --dpi)
|
||||
* - *{prefix}*\ __Dpi_Export\ *{__n}*\ .cpp
|
||||
- DPI export wrappers scoped to this particular model (from --dpi)
|
||||
* - *{prefix}*\ __Inlines.h
|
||||
- Inline support functions
|
||||
* - *{prefix}*\ __Syms.cpp
|
||||
- Global symbol table C++
|
||||
* - *{prefix}*\ __Syms.h
|
||||
- Global symbol table header
|
||||
* - *{prefix}*\ __Trace{__n}*\ .cpp
|
||||
- Wave file generation code (from --trace)
|
||||
* - *{prefix}*\ __Trace__Slow{__n}*\ .cpp
|
||||
- Wave file generation code (from --trace)
|
||||
* - *{prefix}{each_verilog_module}*\ .cpp
|
||||
- Lower level internal C++ files
|
||||
* - *{prefix}*\ __Syms.cpp
|
||||
- Global symbol table C++
|
||||
* - *{prefix}{each_verilog_module}*\ .h
|
||||
- Lower level internal header files
|
||||
* - *{prefix}{each_verilog_module}*\ .cpp
|
||||
- Lower level internal C++ files
|
||||
* - *{prefix}{each_verilog_module}{__n}*\ .cpp
|
||||
- Additional lower C++ files (from --output-split)
|
||||
|
||||
@@ -139,3 +145,23 @@ After running Make, the C++ compiler may produce the following:
|
||||
- Intermediate dependencies
|
||||
* - *{prefix}{misc}*\ .o
|
||||
- Intermediate objects
|
||||
|
||||
The Verilated executable may produce the following:
|
||||
|
||||
.. list-table::
|
||||
|
||||
* - coverage.dat
|
||||
- Code coverage output, and default input filename for :command:`verilator_coverage`
|
||||
* - gmon.out
|
||||
- GCC/clang code profiler output, often fed into :command:`verilator_profcfunc`
|
||||
* - profile.vlt
|
||||
- -profile data file for :ref:`Thread PGO`
|
||||
* - profile_threads.dat
|
||||
- -profile-threads data file for :command:`verilator_gnatt`
|
||||
|
||||
Verilator_gantt may produce the following:
|
||||
|
||||
.. list-table::
|
||||
|
||||
* - profile_threads.vcd
|
||||
- Gantt report waveform output
|
||||
|
||||
@@ -23,6 +23,8 @@ package:
|
||||
|
||||
apt-get install verilator # On Ubuntu
|
||||
|
||||
For other distributions refer to `Repology Verilator Distro Packages
|
||||
<https://repology.org/project/verilator>`__.
|
||||
|
||||
.. _Git Install:
|
||||
|
||||
@@ -44,21 +46,20 @@ In brief, to install from git:
|
||||
#sudo apt-get install zlibc zlib1g zlib1g-dev # Ubuntu only (ignore if gives error)
|
||||
|
||||
git clone https://github.com/verilator/verilator # Only first time
|
||||
## Note the URL above is not a page you can see with a browser, it's for git only
|
||||
|
||||
# Every time you need to build:
|
||||
unsetenv VERILATOR_ROOT # For csh; ignore error if on bash
|
||||
unset VERILATOR_ROOT # For bash
|
||||
cd verilator
|
||||
git pull # Make sure git repository is up-to-date
|
||||
git tag # See what versions exist
|
||||
git pull # Make sure git repository is up-to-date
|
||||
git tag # See what versions exist
|
||||
#git checkout master # Use development branch (e.g. recent bug fixes)
|
||||
#git checkout stable # Use most recent stable release
|
||||
#git checkout v{version} # Switch to specified release version
|
||||
|
||||
autoconf # Create ./configure script
|
||||
./configure # Configure and create Makefile
|
||||
make -j # Build Verilator itself
|
||||
autoconf # Create ./configure script
|
||||
./configure # Configure and create Makefile
|
||||
make -j `nproc` # Build Verilator itself (if error, try just 'make')
|
||||
sudo make install
|
||||
|
||||
|
||||
@@ -116,7 +117,7 @@ Those developing Verilator itself may also want these (see internals.rst):
|
||||
|
||||
::
|
||||
|
||||
sudo apt-get install gdb graphviz cmake clang clang-format gprof lcov
|
||||
sudo apt-get install gdb graphviz cmake clang clang-format-11 gprof lcov
|
||||
sudo pip3 install sphinx sphinx_rtd_theme breathe
|
||||
cpan install Pod::Perldoc
|
||||
cpan install Parallel::Forker
|
||||
@@ -286,7 +287,7 @@ Compile Verilator:
|
||||
|
||||
::
|
||||
|
||||
make -j
|
||||
make -j `nproc` # Or if error on `nproc`, the number of CPUs in system
|
||||
|
||||
|
||||
Test
|
||||
|
||||
+126
-8
@@ -26,7 +26,8 @@ risk of reset bugs in trade for performance; see the above documentation
|
||||
for these options.
|
||||
|
||||
If using Verilated multithreaded, use ``numactl`` to ensure you are using
|
||||
non-conflicting hardware resources. See :ref:`Multithreading`.
|
||||
non-conflicting hardware resources. See :ref:`Multithreading`. Also
|
||||
consider using profile-guided optimization, see :ref:`Thread PGO`.
|
||||
|
||||
Minor Verilog code changes can also give big wins. You should not have any
|
||||
UNOPTFLAT warnings from Verilator. Fixing these warnings can result in
|
||||
@@ -93,9 +94,7 @@ cases, for example regressions, it is usually worth spending extra
|
||||
compilation time to reduce total CPU time.
|
||||
|
||||
If you will be running many simulations on a single model, you can
|
||||
investigate profile guided optimization. With GCC, using GCC's
|
||||
"-fprofile-arcs", then GCC's "-fbranch-probabilities" will yield another
|
||||
15% or so.
|
||||
investigate profile guided optimization. See :ref:`Compiler PGO`.
|
||||
|
||||
Modern compilers also support link-time optimization (LTO), which can help
|
||||
especially if you link in DPI code. To enable LTO on GCC, pass "-flto" in
|
||||
@@ -230,7 +229,7 @@ coverage point insertions into the model and collect the coverage data.
|
||||
|
||||
To get the coverage data from the model, in the user wrapper code,
|
||||
typically at the end once a test passes, call
|
||||
:code:`Verilated::coveragep()->write` with an argument of the filename for
|
||||
:code:`Verilated::threadContextp()->coveragep()->write` with an argument of the filename for
|
||||
the coverage data file to write coverage data to (typically
|
||||
"logs/coverage.dat").
|
||||
|
||||
@@ -272,8 +271,6 @@ profiled C++ code functions.
|
||||
To use profiling:
|
||||
|
||||
#. Use Verilator's :vlopt:`--prof-cfuncs`.
|
||||
#. Use Verilator's :vlopt:`-CFLAGS "-g -pg" <-CFLAGS>` to pass the
|
||||
profiling flags through to GCC/Clang.
|
||||
#. Build and run the simulation model.
|
||||
#. The model will create gmon.out.
|
||||
#. Run :command:`gprof` to see where in the C++ code the time is spent.
|
||||
@@ -300,6 +297,9 @@ With the :vlopt:`--prof-threads` option, Verilator will:
|
||||
* Add code to save profiling data in non-human-friendly form to the file
|
||||
specified with :vlopt:`+verilator+prof+threads+file+\<filename\>`.
|
||||
|
||||
* Add code to save profiling data for thread profile-guided
|
||||
optimization. See :ref:`Thread PGO`.
|
||||
|
||||
The :command:`verilator_gantt` program may then be run to transform the
|
||||
saved profiling file into a nicer visual format and produce some related
|
||||
statistics.
|
||||
@@ -308,7 +308,7 @@ statistics.
|
||||
|
||||
Example verilator_gantt output, as viewed with GTKWave.
|
||||
|
||||
The parallelism shows the number of CPUs being used at a given moment.
|
||||
The measured_parallelism shows the number of CPUs being used at a given moment.
|
||||
|
||||
The cpu_thread section shows which thread is executing on each of the physical CPUs.
|
||||
|
||||
@@ -316,6 +316,7 @@ statistics.
|
||||
|
||||
For more information see :command:`verilator_gantt`.
|
||||
|
||||
|
||||
.. _Profiling ccache efficiency:
|
||||
|
||||
Profiling ccache efficiency
|
||||
@@ -379,3 +380,120 @@ For example:
|
||||
os >> main_time;
|
||||
os >> *topp;
|
||||
}
|
||||
|
||||
|
||||
Profile-Guided Optimization
|
||||
===========================
|
||||
|
||||
Profile-guided optimization is the technique where profiling data is
|
||||
collected by running your simulation executable, then this information is
|
||||
used to guide the next Verilation or compilation.
|
||||
|
||||
There are two forms of profile-guided optimizations. Unfortunately for
|
||||
best results they must each be performed from the highest level code to the
|
||||
lowest, which means performing them separately and in this order:
|
||||
|
||||
* :ref:`Thread PGO`
|
||||
* :ref:`Compiler PGO`
|
||||
|
||||
Other forms of PGO may be supported in the future, such as clock and reset
|
||||
toggle rate PGO, branch prediction PGO, statement execution time PGO, or
|
||||
others as they prove beneficial.
|
||||
|
||||
|
||||
.. _Thread PGO:
|
||||
|
||||
Thread Profile-Guided Optimization
|
||||
----------------------------------
|
||||
|
||||
Verilator supports thread profile-guided optimization (Thread PGO) to
|
||||
improve multithreaded performance.
|
||||
|
||||
When using multithreading, Verilator computes how long macro tasks take and
|
||||
tries to balance those across threads. (What is a macro-task? See the
|
||||
Verilator internals document (:file:`docs/internals.rst` in the
|
||||
distribution.) If the estimations are incorrect, the threads will not be
|
||||
balanced, leading to decreased performance. Thread PGO allows collecting
|
||||
profiling data to replace the estimates and better optimize these
|
||||
decisions.
|
||||
|
||||
To use Thread PGO, Verilate the model with the :vlopt:`--prof-threads`
|
||||
option.
|
||||
|
||||
Run the model executable. When the executable exits, it will create a
|
||||
profile.vlt file.
|
||||
|
||||
Rerun Verilator, optionally omitting the :vlopt:`--prof-threads` option,
|
||||
and adding the profile.vlt generated earlier to the command line.
|
||||
|
||||
Note there is no Verilator equivalent to GCC's --fprofile-use. Verilator's
|
||||
profile data file (profile.vlt) can be placed on the verilator command line
|
||||
directly without any prefix.
|
||||
|
||||
If results from multiple simulations are to be used in generating the
|
||||
optimization, multiple simulation's profile.vlt may be concatenated
|
||||
externally, or each of the files may be fed as separate command line
|
||||
options into Verilator. Verilator will simply sum the profile results, so
|
||||
a longer running test will have proportionally more weight for optimization
|
||||
than a shorter running test.
|
||||
|
||||
If you provide any profile feedback data to Verilator, and it cannot use
|
||||
it, it will issue the :option:`PROFOUTOFDATE` warning that threads were
|
||||
scheduled using estimated costs. This usually indicates that the profile
|
||||
data was generated from different Verilog source code than Verilator is
|
||||
currently running against. Therefore, repeat the data collection phase to
|
||||
create new profiling data, then rerun Verilator with the same input source
|
||||
files and that new profiling data.
|
||||
|
||||
|
||||
.. _Compiler PGO:
|
||||
|
||||
Compiler Profile-Guided Optimization
|
||||
------------------------------------
|
||||
|
||||
GCC and Clang support compiler profile-guided optimization (PGO). This
|
||||
optimizes any C/C++ program including Verilated code. Using compiler PGO
|
||||
typically yields improvements of 5-15% on both single-threaded and
|
||||
multi-threaded models.
|
||||
|
||||
To use compiler PGO with GCC or Clang, please see the appropriate compiler
|
||||
documentation. The process in GCC 10 was as follows:
|
||||
|
||||
1. Compile the Verilated model with the compiler's "-fprofile-generate"
|
||||
flag:
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
verilator [whatever_flags] --make \
|
||||
-CFLAGS -fprofile-generate -LDFLAGS -fprofile-generate
|
||||
|
||||
or, if calling make yourself, add -fprofile-generate appropriately to your
|
||||
Makefile.
|
||||
|
||||
2. Run your simulation. This will create \*.gcda file(s) in the same
|
||||
directory as the source files.
|
||||
|
||||
3. Recompile the model with -fprofile-use. The compiler will read the
|
||||
\*.gcda file(s).
|
||||
|
||||
For GCC:
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
verilator [whatever_flags] --build \
|
||||
-CFLAGS "-fprofile-use -fprofile-correction"
|
||||
|
||||
For Clang:
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
llvm-profdata merge -output default.profdata *.profraw
|
||||
verilator [whatever_flags] --build \
|
||||
-CFLAGS "-fprofile-use -fprofile-correction"
|
||||
|
||||
or, if calling make yourself, add these CFLAGS switches appropriately to
|
||||
your Makefile.
|
||||
|
||||
Clang and GCC also support -fauto-profile which uses sample-based
|
||||
feedback-directed optimization. See the appropriate compiler
|
||||
documentation.
|
||||
|
||||
@@ -216,6 +216,12 @@ be done by a "main thread". In most cases the eval thread and main thread
|
||||
are the same thread (i.e. the user's top C++ testbench runs on a single
|
||||
thread), but this is not required.
|
||||
|
||||
When making frequent use of DPI imported functions in a multi-threaded
|
||||
model, it may be beneficial to performance to adjust the
|
||||
:vlopt:`--instr-count-dpi` option based on some experimentation. This
|
||||
influences the partitioning of the model by adjusting the assumed execution
|
||||
time of DPI imports.
|
||||
|
||||
The :vlopt:`--trace-threads` options can be used to produce trace dumps
|
||||
using multiple threads. If :vlopt:`--trace-threads` is set without
|
||||
:vlopt:`--threads`, then :vlopt:`--trace-threads` will imply
|
||||
|
||||
+85
-36
@@ -130,9 +130,10 @@ List Of Warnings
|
||||
|
||||
.. option:: BADSTDPRAGMA
|
||||
|
||||
Error that a pragma is badly formed, when that pragma is defined by IEEE1800-2017.
|
||||
For example, an empty `pragma line, or an incorrect specified '`pragma protect'.
|
||||
Note that 3rd party pragmas not defined by IEEE1800-2017 are ignored.
|
||||
Error that a pragma is badly formed, when that pragma is defined by IEEE
|
||||
1800-2017. For example, an empty pragma line, or an incorrect specified
|
||||
'pragma protect'. Note that 3rd party pragmas not defined by IEEE
|
||||
1800-2017 are ignored.
|
||||
|
||||
|
||||
.. option:: BLKANDNBLK
|
||||
@@ -481,39 +482,44 @@ List Of Warnings
|
||||
|
||||
Faulty example:
|
||||
|
||||
.. code-block:: sv
|
||||
.. include:: ../../docs/gen/ex_DIDNOTCONVERGE_faulty.rst
|
||||
|
||||
always_comb b = ~a;
|
||||
always_comb a = b
|
||||
Results in at runtime (not when Verilated):
|
||||
|
||||
This code will toggle forever, and thus to prevent an infinite loop, the
|
||||
executable will give the didn't converge error.
|
||||
.. include:: ../../docs/gen/ex_DIDNOTCONVERGE_nodbg_msg.rst
|
||||
|
||||
To debug this, first review any UNOPTFLAT warnings that were ignored.
|
||||
Though typically it is safe to ignore UNOPTFLAT (at a performance cost),
|
||||
at the time of issuing a UNOPTFLAT Verilator did not know if the logic
|
||||
would eventually converge and assumed it would.
|
||||
This is because the signals keep toggling even with out time
|
||||
passing. Thus to prevent an infinite loop, the Verilated executable
|
||||
gives the DIDNOTCONVERGE error.
|
||||
|
||||
To debug this, first review any UNOPT or UNOPTFLAT warnings that were
|
||||
ignored. Though typically it is safe to ignore UNOPTFLAT (at a
|
||||
performance cost), at the time of issuing a UNOPTFLAT Verilator did not
|
||||
know if the logic would eventually converge and assumed it would.
|
||||
|
||||
Next, run Verilator with :vlopt:`--prof-cfuncs -CFLAGS -DVL_DEBUG
|
||||
<--prof-cfuncs>`. Rerun the test. Now just before the convergence
|
||||
error you should see additional output similar to this:
|
||||
|
||||
.. code-block::
|
||||
.. include:: ../../docs/gen/ex_DIDNOTCONVERGE_msg.rst
|
||||
|
||||
CHANGE: filename.v:1: b
|
||||
CHANGE: filename.v:2: a
|
||||
|
||||
This means that signal b and signal a keep changing, inspect the code
|
||||
that modifies these signals. Note if many signals are getting printed
|
||||
then most likely all of them are oscillating. It may also be that
|
||||
e.g. "a" may be oscillating, then "a" feeds signal "c" which then is
|
||||
also reported as oscillating.
|
||||
The CHANGE line means that on the given filename and line number that
|
||||
drove a signal, the signal 'a' kept changing. Inspect the code that
|
||||
modifies these signals. Note if many signals are getting printed then
|
||||
most likely all of them are oscillating. It may also be that e.g. "a"
|
||||
may be oscillating, then "a" feeds signal "c" which then is also
|
||||
reported as oscillating.
|
||||
|
||||
One way DIDNOTCONVERGE may occur is flops are built out of gate
|
||||
primitives. error. Verilator does not support building flops or latches
|
||||
out of gate primitives, and any such code must change to use behavioral
|
||||
primitives. Verilator does not support building flops or latches out of
|
||||
gate primitives, and any such code must change to use behavioral
|
||||
constructs (e.g. always_ff and always_latch).
|
||||
|
||||
Another way DIDNOTCONVERGE may occur is if # delays are used to generate
|
||||
clocks. Verilator ignores the delays and gives an :option:`ASSIGNDLY`
|
||||
or :option:`STMTDLY` warning. If these were suppressed, due to the
|
||||
absense of the delay, the code may now oscillate.
|
||||
|
||||
Finally, rare, more difficult cases can be debugged like a C++ program;
|
||||
either enter :command:`gdb` and use its tracing facilities, or edit the
|
||||
generated C++ code to add appropriate prints to see what is going on.
|
||||
@@ -572,7 +578,7 @@ List Of Warnings
|
||||
must end in newline, as otherwise for example :command:`cat` with the
|
||||
file as an argument may produce undesirable results.
|
||||
|
||||
Repair by adding a newline to the end of the file.
|
||||
Repair by appending a newline to the end of the file.
|
||||
|
||||
Disabled by default as this is a code style warning; it will simulate
|
||||
correctly.
|
||||
@@ -792,8 +798,8 @@ List Of Warnings
|
||||
.. TODO better example
|
||||
|
||||
Warns that a module has multiple definitions. Generally this indicates
|
||||
a coding error, or a mistake in a library file and it's good practice to
|
||||
have one module per file (and only put each file once on the command
|
||||
a coding error, or a mistake in a library file, and it's good practice
|
||||
to have one module per file (and only put each file once on the command
|
||||
line) to avoid these issues. For some gate level netlists duplicates
|
||||
are sometimes unavoidable, and MODDUP should be disabled.
|
||||
|
||||
@@ -1005,9 +1011,25 @@ List Of Warnings
|
||||
a var/reg must be used as the target of procedural assignments.
|
||||
|
||||
|
||||
.. option:: PROFOUTOFDATE
|
||||
|
||||
Warns that threads were scheduled using estimated costs, despite the
|
||||
fact that data was provided from profile-guided optimization (see
|
||||
:ref:`Thread PGO`) as fed into Verilator using the
|
||||
:option:`profile_data` configuration file option. This usually
|
||||
indicates that the profile data was generated from different Verilog
|
||||
source code than Verilator is currently running against.
|
||||
|
||||
It is recommended to create new profiling data, then rerun Verilator
|
||||
with the same input source files and that new profiling data.
|
||||
|
||||
Ignoring this warning may only slow simulations, it will simulate
|
||||
correctly.
|
||||
|
||||
|
||||
.. option:: PROTECTED
|
||||
|
||||
Warning that a '`pragma protected' section was encountered. The code
|
||||
Warning that a 'pragma protected' section was encountered. The code
|
||||
inside the protected region will be partly checked for correctness, but is
|
||||
otherwise ignored.
|
||||
|
||||
@@ -1183,9 +1205,25 @@ List Of Warnings
|
||||
|
||||
Faulty example:
|
||||
|
||||
.. code-block:: sv
|
||||
.. include:: ../../docs/gen/ex_STMTDLY_faulty.rst
|
||||
|
||||
#100 $finish; //<--- Warning
|
||||
Results in:
|
||||
|
||||
.. include:: ../../docs/gen/ex_STMTDLY_msg.rst
|
||||
|
||||
This is a warning because Verilator does not support delayed statements.
|
||||
It will simply ignore all such delays. In many cases ignoring a delay
|
||||
might be harmless, but if the delayed statement is, as in this example,
|
||||
used to cause some important action at a later time, it might be an
|
||||
important difference.
|
||||
|
||||
Some possible work arounds:
|
||||
|
||||
* Move the delayed statement into the C++ wrapper file, where the
|
||||
stimulus and clock generation can be done in C++.
|
||||
|
||||
* Convert the statement into a FSM, or other statement that tests
|
||||
against $time.
|
||||
|
||||
|
||||
.. option:: SYMRSVDWORD
|
||||
@@ -1353,7 +1391,9 @@ List Of Warnings
|
||||
|
||||
Often UNOPTFLAT is caused by logic that isn't truly circular as viewed by
|
||||
synthesis which analyzes interconnection per-bit, but is circular to
|
||||
simulation which analyzes per-bus:
|
||||
simulation which analyzes per-bus.
|
||||
|
||||
Faulty example:
|
||||
|
||||
.. code-block:: sv
|
||||
|
||||
@@ -1466,9 +1506,16 @@ List Of Warnings
|
||||
Error that a construct might be legal according to IEEE but is not
|
||||
currently supported by Verilator.
|
||||
|
||||
A typical workaround is to recode the construct into a simpler and more
|
||||
common alternative language construct.
|
||||
|
||||
Alternatively, check if the construct is supported by other tools, and
|
||||
if so please consider submitting a github pull request against the
|
||||
Verilator sources to implement the missing unsupported feature.
|
||||
|
||||
This error may be ignored with :vlopt:`--bbox-unsup`, however this will
|
||||
make the design simulate incorrectly; see the details under
|
||||
:vlopt:`--bbox-unsup`.
|
||||
make the design simulate incorrectly and is only intended for lint
|
||||
usage; see the details under :vlopt:`--bbox-unsup`.
|
||||
|
||||
|
||||
.. option:: UNUSED
|
||||
@@ -1598,7 +1645,7 @@ List Of Warnings
|
||||
* A part select has a different size then needed to index into the
|
||||
packed or unpacked array (etc).
|
||||
|
||||
Verilator for attempts to track the minimum width of unsized constants
|
||||
Verilator attempts to track the minimum width of unsized constants
|
||||
and will suppress the warning when the minimum width is appropriate to
|
||||
fit the required size.
|
||||
|
||||
@@ -1607,11 +1654,13 @@ List Of Warnings
|
||||
|
||||
The recommendation is to fix these issues by:
|
||||
|
||||
* Resizing the variable or constant. E.g. :code:`2'd2` instead of :code:`3'd2`.
|
||||
* Resizing the variable or constant to match the needed size for the
|
||||
expression. E.g. :code:`2'd2` instead of :code:`3'd2`.
|
||||
|
||||
* Using :code:`'0` or :code:`'1`.
|
||||
* Using :code:`'0` or :code:`'1` which automatically resize in an
|
||||
expression.
|
||||
|
||||
* Using part select to narrow a variable. E.g. :code:`too_wide[1:0]`.
|
||||
* Using part selects to narrow a variable. E.g. :code:`too_wide[1:0]`.
|
||||
|
||||
* Using concatenate to widen a variable. E.g. :code:`{1'b1, too_narrow}`.
|
||||
|
||||
|
||||
+6
-3
@@ -405,6 +405,9 @@ routines in the sources to rely more heavily on randomness, and
|
||||
generally try harder not to keep input nodes together when we have the
|
||||
option to scramble things.
|
||||
|
||||
Profile-guided optimization make this a bit better, by adjusting mtask
|
||||
scheduling, but this does not yet guide the packing into mtasks.
|
||||
|
||||
|
||||
Performance Regression
|
||||
""""""""""""""""""""""
|
||||
@@ -502,7 +505,7 @@ Some of the code implementing passes is extremely repetitive, and must be
|
||||
implemented for each sub-class of ``AstNode``. However, while repetitive,
|
||||
there is more variability than can be handled in C++ macros.
|
||||
|
||||
In Verilator this is implemented by using a Perl script, ``astgen`` to
|
||||
In Verilator this is implemented by using a script, ``astgen`` to
|
||||
pre-process the C++ code. For example in ``V3Const.cpp`` this is used to
|
||||
implement the ``visit()`` functions for each binary operation using the
|
||||
``TREEOP`` macro.
|
||||
@@ -750,8 +753,8 @@ test. For run-time tests, this is followed by a call to the ``execute``
|
||||
subroutine. Both of these functions can optionally be provided with a hash
|
||||
table as argument specifying additional options.
|
||||
|
||||
The test driver assumes by default that the source Verilog file name
|
||||
matches the PERL driver name. So a test whose driver is
|
||||
The driver.pl script assumes by default that the source Verilog file name
|
||||
matches the test script name. So a test whose driver is
|
||||
``t/t_mytest.pl`` will expect a Verilog source file ``t/t_mytest.v``.
|
||||
This can be changed using the ``top_filename`` subroutine, for example
|
||||
|
||||
|
||||
@@ -676,7 +676,6 @@ prev
|
||||
printf
|
||||
printtimescale
|
||||
profcfunc
|
||||
profcfuncs
|
||||
prototyptes
|
||||
ps
|
||||
pthread
|
||||
|
||||
@@ -4989,9 +4989,7 @@ unsigned int secnum = 0;
|
||||
int blocks_skipped = 0;
|
||||
fst_off_t blkpos = 0;
|
||||
uint64_t seclen, beg_tim;
|
||||
#ifdef FST_DEBUG
|
||||
uint64_t end_tim;
|
||||
#endif
|
||||
uint64_t frame_uclen, frame_clen, frame_maxhandle, vc_maxhandle;
|
||||
fst_off_t vc_start;
|
||||
fst_off_t indx_pntr, indx_pos;
|
||||
@@ -5058,14 +5056,11 @@ for(;;)
|
||||
if(!seclen) break;
|
||||
|
||||
beg_tim = fstReaderUint64(xc->f);
|
||||
#ifdef FST_DEBUG
|
||||
end_tim =
|
||||
#endif
|
||||
fstReaderUint64(xc->f);
|
||||
end_tim = fstReaderUint64(xc->f);
|
||||
|
||||
if(xc->limit_range_valid)
|
||||
{
|
||||
if(beg_tim < xc->limit_range_start)
|
||||
if(end_tim < xc->limit_range_start)
|
||||
{
|
||||
blocks_skipped++;
|
||||
blkpos += seclen;
|
||||
|
||||
+241
-225
File diff suppressed because it is too large
Load Diff
+16
-2126
File diff suppressed because it is too large
Load Diff
+13
-6
@@ -9,21 +9,20 @@
|
||||
# SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
######################################################################
|
||||
|
||||
PERL = @PERL@
|
||||
PYTHON3 = @PYTHON3@
|
||||
AR = @AR@
|
||||
CXX = @CXX@
|
||||
LINK = @CXX@
|
||||
AR = ar
|
||||
RANLIB = ranlib
|
||||
OBJCACHE ?= @OBJCACHE@
|
||||
PERL = @PERL@
|
||||
PYTHON3 = @PYTHON3@
|
||||
|
||||
CFG_WITH_CCWARN = @CFG_WITH_CCWARN@
|
||||
CFG_WITH_LONGTESTS = @CFG_WITH_LONGTESTS@
|
||||
|
||||
# Compiler flags to enable profiling
|
||||
CFG_CXXFLAGS_PROFILE = @CFG_CXXFLAGS_PROFILE@
|
||||
# Select newest language
|
||||
CFG_CXXFLAGS_STD_NEWEST = @CFG_CXXFLAGS_STD_NEWEST@
|
||||
# Select oldest language (for Verilator internal testing only)
|
||||
CFG_CXXFLAGS_STD_OLDEST = @CFG_CXXFLAGS_STD_OLDEST@
|
||||
# Compiler flags to use to turn off unused and generated code warnings, such as -Wno-div-by-zero
|
||||
CFG_CXXFLAGS_NO_UNUSED = @CFG_CXXFLAGS_NO_UNUSED@
|
||||
# Compiler flags that turn on extra warnings
|
||||
@@ -104,6 +103,14 @@ OPT_FAST = -Os
|
||||
# to change this as the library is small, but can have significant speed impact.
|
||||
OPT_GLOBAL = -Os
|
||||
|
||||
#######################################################################
|
||||
##### Profile builds
|
||||
|
||||
ifeq ($(VM_PROFC),1)
|
||||
CPPFLAGS += $(CFG_CXXFLAGS_PROFILE)
|
||||
LDFLAGS += $(CFG_CXXFLAGS_PROFILE)
|
||||
endif
|
||||
|
||||
#######################################################################
|
||||
##### SystemC builds
|
||||
|
||||
|
||||
+35
-32
@@ -132,7 +132,7 @@ private:
|
||||
int valueIndex(const std::string& value) VL_REQUIRES(m_mutex) {
|
||||
const auto iter = m_valueIndexes.find(value);
|
||||
if (iter != m_valueIndexes.end()) return iter->second;
|
||||
m_nextIndex++;
|
||||
++m_nextIndex;
|
||||
assert(m_nextIndex > 0); // Didn't rollover
|
||||
m_valueIndexes.emplace(value, m_nextIndex);
|
||||
m_indexValues.emplace(m_nextIndex, value);
|
||||
@@ -143,8 +143,9 @@ private:
|
||||
std::string rtn;
|
||||
for (const char* pos = text.c_str(); *pos; ++pos) {
|
||||
if (!std::isprint(*pos) || *pos == '%' || *pos == '"') {
|
||||
char hex[10];
|
||||
VL_SNPRINTF(hex, 10, "%%%02X", pos[0]);
|
||||
constexpr size_t LEN_MAX_HEX = 20;
|
||||
char hex[LEN_MAX_HEX];
|
||||
VL_SNPRINTF(hex, LEN_MAX_HEX, "%%%02X", pos[0]);
|
||||
rtn += hex;
|
||||
} else {
|
||||
rtn += *pos;
|
||||
@@ -165,11 +166,11 @@ private:
|
||||
const std::string& value) VL_PURE {
|
||||
std::string name;
|
||||
if (key.length() == 1 && std::isalpha(key[0])) {
|
||||
name += std::string("\001") + key;
|
||||
name += std::string{"\001"} + key;
|
||||
} else {
|
||||
name += std::string("\001") + dequote(key);
|
||||
name += std::string{"\001"} + dequote(key);
|
||||
}
|
||||
name += std::string("\002") + dequote(value);
|
||||
name += std::string{"\002"} + dequote(value);
|
||||
return name;
|
||||
}
|
||||
static std::string combineHier(const std::string& old, const std::string& add) VL_PURE {
|
||||
@@ -180,31 +181,32 @@ private:
|
||||
if (old.empty()) return add;
|
||||
if (add.empty()) return old;
|
||||
|
||||
const char* a = old.c_str();
|
||||
const char* b = add.c_str();
|
||||
const char* const a = old.c_str();
|
||||
const char* const b = add.c_str();
|
||||
|
||||
// Scan forward to first mismatch
|
||||
const char* apre = a;
|
||||
const char* bpre = b;
|
||||
while (*apre == *bpre) {
|
||||
apre++;
|
||||
bpre++;
|
||||
++apre;
|
||||
++bpre;
|
||||
}
|
||||
|
||||
// We used to backup and split on only .'s but it seems better to be verbose
|
||||
// and not assume . is the separator
|
||||
std::string prefix = std::string(a, apre - a);
|
||||
const size_t prefix_len = apre - a;
|
||||
const std::string prefix = std::string{a, prefix_len};
|
||||
|
||||
// Scan backward to last mismatch
|
||||
const char* apost = a + std::strlen(a) - 1;
|
||||
const char* bpost = b + std::strlen(b) - 1;
|
||||
while (*apost == *bpost && apost > apre && bpost > bpre) {
|
||||
apost--;
|
||||
bpost--;
|
||||
--apost;
|
||||
--bpost;
|
||||
}
|
||||
|
||||
// Forward to . so we have a whole word
|
||||
std::string suffix = *bpost ? std::string(bpost + 1) : "";
|
||||
std::string suffix = *bpost ? std::string{bpost + 1} : "";
|
||||
|
||||
std::string out = prefix + "*" + suffix;
|
||||
|
||||
@@ -251,19 +253,19 @@ private:
|
||||
|
||||
public:
|
||||
// PUBLIC METHODS
|
||||
void forcePerInstance(bool flag) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
void forcePerInstance(const bool flag) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
Verilated::quiesce();
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_forcePerInstance = flag;
|
||||
}
|
||||
void clear() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
Verilated::quiesce();
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
clearGuts();
|
||||
}
|
||||
void clearNonMatch(const char* matchp) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
void clearNonMatch(const char* const matchp) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
Verilated::quiesce();
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
if (matchp && matchp[0]) {
|
||||
ItemList newlist;
|
||||
for (const auto& itemp : m_items) {
|
||||
@@ -278,24 +280,24 @@ public:
|
||||
}
|
||||
void zero() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
Verilated::quiesce();
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
for (const auto& itemp : m_items) itemp->zero();
|
||||
}
|
||||
|
||||
// We assume there's always call to i/f/p in that order
|
||||
void inserti(VerilatedCovImpItem* itemp) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
assert(!m_insertp);
|
||||
m_insertp = itemp;
|
||||
}
|
||||
void insertf(const char* filenamep, int lineno) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
void insertf(const char* const filenamep, const int lineno) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_insertFilenamep = filenamep;
|
||||
m_insertLineno = lineno;
|
||||
}
|
||||
void insertp(const char* ckeyps[VerilatedCovConst::MAX_KEYS],
|
||||
const char* valps[VerilatedCovConst::MAX_KEYS]) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
assert(m_insertp);
|
||||
// First two key/vals are filename
|
||||
ckeyps[0] = "filename";
|
||||
@@ -308,7 +310,8 @@ public:
|
||||
while (const char* foundp = std::strchr(fnstartp, '/')) fnstartp = foundp + 1;
|
||||
const char* fnendp = fnstartp;
|
||||
for (; *fnendp && *fnendp != '.'; fnendp++) {}
|
||||
std::string page_default = "sp_user/" + std::string(fnstartp, fnendp - fnstartp);
|
||||
const size_t page_len = fnendp - fnstartp;
|
||||
const std::string page_default = "sp_user/" + std::string{fnstartp, page_len};
|
||||
ckeyps[2] = "page";
|
||||
valps[2] = page_default.c_str();
|
||||
|
||||
@@ -337,7 +340,7 @@ public:
|
||||
// cout<<" "<<__FUNCTION__<<" "<<key<<" = "<<val<<endl;
|
||||
m_insertp->m_keys[addKeynum] = valueIndex(key);
|
||||
m_insertp->m_vals[addKeynum] = valueIndex(val);
|
||||
addKeynum++;
|
||||
++addKeynum;
|
||||
if (VL_UNCOVERABLE(!legalKey(key))) {
|
||||
std::string msg
|
||||
= ("%Error: Coverage keys of one character, or letter+digit are illegal: "
|
||||
@@ -353,15 +356,15 @@ public:
|
||||
|
||||
void write(const char* filename) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
Verilated::quiesce();
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
#ifndef VM_COVERAGE
|
||||
VL_FATAL_MT("", 0, "", "%Error: Called VerilatedCov::write when VM_COVERAGE disabled\n");
|
||||
#endif
|
||||
selftest();
|
||||
|
||||
std::ofstream os(filename);
|
||||
std::ofstream os{filename};
|
||||
if (os.fail()) {
|
||||
std::string msg = std::string("%Error: Can't write '") + filename + "'";
|
||||
const std::string msg = std::string{"%Error: Can't write '"} + filename + "'";
|
||||
VL_FATAL_MT("", 0, "", msg.c_str());
|
||||
return;
|
||||
}
|
||||
@@ -435,10 +438,10 @@ void VerilatedCovContext::clearNonMatch(const char* matchp) VL_MT_SAFE {
|
||||
void VerilatedCovContext::zero() VL_MT_SAFE { impp()->zero(); }
|
||||
void VerilatedCovContext::write(const char* filenamep) VL_MT_SAFE { impp()->write(filenamep); }
|
||||
void VerilatedCovContext::_inserti(vluint32_t* itemp) VL_MT_SAFE {
|
||||
impp()->inserti(new VerilatedCoverItemSpec<vluint32_t>(itemp));
|
||||
impp()->inserti(new VerilatedCoverItemSpec<vluint32_t>{itemp});
|
||||
}
|
||||
void VerilatedCovContext::_inserti(vluint64_t* itemp) VL_MT_SAFE {
|
||||
impp()->inserti(new VerilatedCoverItemSpec<vluint64_t>(itemp));
|
||||
impp()->inserti(new VerilatedCoverItemSpec<vluint64_t>{itemp});
|
||||
}
|
||||
void VerilatedCovContext::_insertf(const char* filename, int lineno) VL_MT_SAFE {
|
||||
impp()->insertf(filename, lineno);
|
||||
@@ -511,7 +514,7 @@ VerilatedCovContext* VerilatedCov::threadCovp() VL_MT_SAFE {
|
||||
VerilatedCovContext* VerilatedContext::coveragep() VL_MT_SAFE {
|
||||
static VerilatedMutex s_mutex;
|
||||
if (VL_UNLIKELY(!m_coveragep)) {
|
||||
const VerilatedLockGuard lock(s_mutex);
|
||||
const VerilatedLockGuard lock{s_mutex};
|
||||
if (VL_LIKELY(!m_coveragep)) { // Not redundant, prevents race
|
||||
m_coveragep.reset(new VerilatedCovImp);
|
||||
}
|
||||
|
||||
+86
-86
@@ -79,19 +79,19 @@ void svPutBitselLogic(svLogicVecVal* dp, int bit, svLogic s) {
|
||||
|
||||
void svGetPartselBit(svBitVecVal* dp, const svBitVecVal* sp, int lsb, int width) {
|
||||
// See also VL_SEL_WWI
|
||||
int msb = lsb + width - 1;
|
||||
int word_shift = VL_BITWORD_I(lsb);
|
||||
const int msb = lsb + width - 1;
|
||||
const int word_shift = VL_BITWORD_I(lsb);
|
||||
if (VL_BITBIT_I(lsb) == 0) {
|
||||
// Just a word extract
|
||||
for (int i = 0; i < VL_WORDS_I(width); ++i) dp[i] = sp[i + word_shift];
|
||||
} else {
|
||||
int loffset = lsb & VL_SIZEBITS_I;
|
||||
int nbitsfromlow = 32 - loffset; // bits that end up in lword (know loffset!=0)
|
||||
const int loffset = lsb & VL_SIZEBITS_I;
|
||||
const int nbitsfromlow = 32 - loffset; // bits that end up in lword (know loffset!=0)
|
||||
// Middle words
|
||||
int words = VL_WORDS_I(msb - lsb + 1);
|
||||
const int words = VL_WORDS_I(msb - lsb + 1);
|
||||
for (int i = 0; i < words; ++i) {
|
||||
dp[i] = sp[i + word_shift] >> loffset;
|
||||
int upperword = i + word_shift + 1;
|
||||
const int upperword = i + word_shift + 1;
|
||||
if (upperword <= static_cast<int>(VL_BITWORD_I(msb))) {
|
||||
dp[i] |= sp[upperword] << nbitsfromlow;
|
||||
}
|
||||
@@ -101,20 +101,20 @@ void svGetPartselBit(svBitVecVal* dp, const svBitVecVal* sp, int lsb, int width)
|
||||
dp[VL_WORDS_I(width) - 1] &= VL_MASK_I(width);
|
||||
}
|
||||
void svGetPartselLogic(svLogicVecVal* dp, const svLogicVecVal* sp, int lsb, int width) {
|
||||
int msb = lsb + width - 1;
|
||||
int word_shift = VL_BITWORD_I(lsb);
|
||||
const int msb = lsb + width - 1;
|
||||
const int word_shift = VL_BITWORD_I(lsb);
|
||||
if (VL_BITBIT_I(lsb) == 0) {
|
||||
// Just a word extract
|
||||
for (int i = 0; i < VL_WORDS_I(width); ++i) dp[i] = sp[i + word_shift];
|
||||
} else {
|
||||
int loffset = lsb & VL_SIZEBITS_I;
|
||||
int nbitsfromlow = 32 - loffset; // bits that end up in lword (know loffset!=0)
|
||||
const int loffset = lsb & VL_SIZEBITS_I;
|
||||
const int nbitsfromlow = 32 - loffset; // bits that end up in lword (know loffset!=0)
|
||||
// Middle words
|
||||
int words = VL_WORDS_I(msb - lsb + 1);
|
||||
const int words = VL_WORDS_I(msb - lsb + 1);
|
||||
for (int i = 0; i < words; ++i) {
|
||||
dp[i].aval = sp[i + word_shift].aval >> loffset;
|
||||
dp[i].bval = sp[i + word_shift].bval >> loffset;
|
||||
int upperword = i + word_shift + 1;
|
||||
const int upperword = i + word_shift + 1;
|
||||
if (upperword <= static_cast<int>(VL_BITWORD_I(msb))) {
|
||||
dp[i].aval |= sp[upperword].aval << nbitsfromlow;
|
||||
dp[i].bval |= sp[upperword].bval << nbitsfromlow;
|
||||
@@ -127,22 +127,22 @@ void svGetPartselLogic(svLogicVecVal* dp, const svLogicVecVal* sp, int lsb, int
|
||||
}
|
||||
void svPutPartselBit(svBitVecVal* dp, const svBitVecVal s, int lbit, int width) {
|
||||
// See also _vl_insert_WI
|
||||
int hbit = lbit + width - 1;
|
||||
int hoffset = VL_BITBIT_I(hbit);
|
||||
int loffset = VL_BITBIT_I(lbit);
|
||||
const int hbit = lbit + width - 1;
|
||||
const int hoffset = VL_BITBIT_I(hbit);
|
||||
const int loffset = VL_BITBIT_I(lbit);
|
||||
if (hoffset == VL_SIZEBITS_I && loffset == 0) {
|
||||
// Fast and common case, word based insertion
|
||||
dp[VL_BITWORD_I(lbit)] = s;
|
||||
} else {
|
||||
int hword = VL_BITWORD_I(hbit);
|
||||
int lword = VL_BITWORD_I(lbit);
|
||||
const int hword = VL_BITWORD_I(hbit);
|
||||
const int lword = VL_BITWORD_I(lbit);
|
||||
if (hword == lword) { // know < 32 bits because above checks it
|
||||
IData insmask = (VL_MASK_I(hoffset - loffset + 1)) << loffset;
|
||||
const IData insmask = (VL_MASK_I(hoffset - loffset + 1)) << loffset;
|
||||
dp[lword] = (dp[lword] & ~insmask) | ((s << loffset) & insmask);
|
||||
} else {
|
||||
IData hinsmask = (VL_MASK_I(hoffset - 0 + 1)) << 0;
|
||||
IData linsmask = (VL_MASK_I(31 - loffset + 1)) << loffset;
|
||||
int nbitsonright = 32 - loffset; // bits that end up in lword
|
||||
const IData hinsmask = (VL_MASK_I(hoffset - 0 + 1)) << 0;
|
||||
const IData linsmask = (VL_MASK_I(31 - loffset + 1)) << loffset;
|
||||
const int nbitsonright = 32 - loffset; // bits that end up in lword
|
||||
dp[lword] = (dp[lword] & ~linsmask) | ((s << loffset) & linsmask);
|
||||
dp[hword] = (dp[hword] & ~hinsmask) | ((s >> nbitsonright) & hinsmask);
|
||||
}
|
||||
@@ -150,24 +150,24 @@ void svPutPartselBit(svBitVecVal* dp, const svBitVecVal s, int lbit, int width)
|
||||
}
|
||||
// cppcheck-suppress passedByValue
|
||||
void svPutPartselLogic(svLogicVecVal* dp, const svLogicVecVal s, int lbit, int width) {
|
||||
int hbit = lbit + width - 1;
|
||||
int hoffset = VL_BITBIT_I(hbit);
|
||||
int loffset = VL_BITBIT_I(lbit);
|
||||
const int hbit = lbit + width - 1;
|
||||
const int hoffset = VL_BITBIT_I(hbit);
|
||||
const int loffset = VL_BITBIT_I(lbit);
|
||||
if (hoffset == VL_SIZEBITS_I && loffset == 0) {
|
||||
// Fast and common case, word based insertion
|
||||
dp[VL_BITWORD_I(lbit)].aval = s.aval;
|
||||
dp[VL_BITWORD_I(lbit)].bval = s.bval;
|
||||
} else {
|
||||
int hword = VL_BITWORD_I(hbit);
|
||||
int lword = VL_BITWORD_I(lbit);
|
||||
const int hword = VL_BITWORD_I(hbit);
|
||||
const int lword = VL_BITWORD_I(lbit);
|
||||
if (hword == lword) { // know < 32 bits because above checks it
|
||||
IData insmask = (VL_MASK_I(hoffset - loffset + 1)) << loffset;
|
||||
const IData insmask = (VL_MASK_I(hoffset - loffset + 1)) << loffset;
|
||||
dp[lword].aval = (dp[lword].aval & ~insmask) | ((s.aval << loffset) & insmask);
|
||||
dp[lword].bval = (dp[lword].bval & ~insmask) | ((s.bval << loffset) & insmask);
|
||||
} else {
|
||||
IData hinsmask = (VL_MASK_I(hoffset - 0 + 1)) << 0;
|
||||
IData linsmask = (VL_MASK_I(31 - loffset + 1)) << loffset;
|
||||
int nbitsonright = 32 - loffset; // bits that end up in lword
|
||||
const IData hinsmask = (VL_MASK_I(hoffset - 0 + 1)) << 0;
|
||||
const IData linsmask = (VL_MASK_I(31 - loffset + 1)) << loffset;
|
||||
const int nbitsonright = 32 - loffset; // bits that end up in lword
|
||||
dp[lword].aval = (dp[lword].aval & ~linsmask) | ((s.aval << loffset) & linsmask);
|
||||
dp[lword].bval = (dp[lword].bval & ~linsmask) | ((s.bval << loffset) & linsmask);
|
||||
dp[hword].aval = (dp[hword].aval & ~hinsmask) | ((s.aval >> nbitsonright) & hinsmask);
|
||||
@@ -184,7 +184,7 @@ static inline const VerilatedDpiOpenVar* _vl_openhandle_varp(const svOpenArrayHa
|
||||
VL_FATAL_MT(__FILE__, __LINE__, "",
|
||||
"%%Error: DPI svOpenArrayHandle function called with nullptr handle");
|
||||
}
|
||||
const VerilatedDpiOpenVar* varp = reinterpret_cast<const VerilatedDpiOpenVar*>(h);
|
||||
const VerilatedDpiOpenVar* const varp = reinterpret_cast<const VerilatedDpiOpenVar*>(h);
|
||||
if (VL_UNLIKELY(!varp->magicOk())) {
|
||||
VL_FATAL_MT(__FILE__, __LINE__, "",
|
||||
"%%Error: DPI svOpenArrayHandle function called with non-Verilator handle");
|
||||
@@ -205,13 +205,13 @@ int svDimensions(const svOpenArrayHandle h) { return _vl_openhandle_varp(h)->udi
|
||||
|
||||
// Return pointer to open array data, or nullptr if not in IEEE standard C layout
|
||||
void* svGetArrayPtr(const svOpenArrayHandle h) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(h);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(h);
|
||||
if (VL_UNLIKELY(!varp->isDpiStdLayout())) return nullptr;
|
||||
return varp->datap();
|
||||
}
|
||||
// Return size of open array, or 0 if not in IEEE standard C layout
|
||||
int svSizeOfArray(const svOpenArrayHandle h) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(h);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(h);
|
||||
if (VL_UNLIKELY(!varp->isDpiStdLayout())) return 0;
|
||||
// Truncate 64 bits to int; DPI is limited to 4GB
|
||||
return static_cast<int>(varp->totalSize());
|
||||
@@ -264,22 +264,22 @@ static void* _vl_svGetArrElemPtr(const svOpenArrayHandle h, int nargs, int indx1
|
||||
int indx3) VL_MT_SAFE {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(h);
|
||||
if (VL_UNLIKELY(!varp->isDpiStdLayout())) return nullptr;
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
return datap;
|
||||
}
|
||||
|
||||
// Copy to user bit array from simulator open array
|
||||
static void _vl_svGetBitArrElemVecVal(svBitVecVal* d, const svOpenArrayHandle s, int nargs,
|
||||
int indx1, int indx2, int indx3) VL_MT_SAFE {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
if (VL_UNLIKELY(!datap)) return;
|
||||
switch (varp->vltype()) { // LCOV_EXCL_BR_LINE
|
||||
case VLVT_UINT8: d[0] = *(reinterpret_cast<CData*>(datap)); return;
|
||||
case VLVT_UINT16: d[0] = *(reinterpret_cast<SData*>(datap)); return;
|
||||
case VLVT_UINT32: d[0] = *(reinterpret_cast<IData*>(datap)); return;
|
||||
case VLVT_UINT64: {
|
||||
WData lwp[2];
|
||||
VlWide<2> lwp;
|
||||
VL_SET_WQ(lwp, *(reinterpret_cast<QData*>(datap)));
|
||||
d[0] = lwp[0];
|
||||
d[1] = lwp[1];
|
||||
@@ -299,8 +299,8 @@ static void _vl_svGetBitArrElemVecVal(svBitVecVal* d, const svOpenArrayHandle s,
|
||||
// Copy to user logic array from simulator open array
|
||||
static void _vl_svGetLogicArrElemVecVal(svLogicVecVal* d, const svOpenArrayHandle s, int nargs,
|
||||
int indx1, int indx2, int indx3) VL_MT_SAFE {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
if (VL_UNLIKELY(!datap)) return;
|
||||
switch (varp->vltype()) { // LCOV_EXCL_BR_LINE
|
||||
case VLVT_UINT8:
|
||||
@@ -316,7 +316,7 @@ static void _vl_svGetLogicArrElemVecVal(svLogicVecVal* d, const svOpenArrayHandl
|
||||
d[0].bval = 0;
|
||||
return;
|
||||
case VLVT_UINT64: {
|
||||
WData lwp[2];
|
||||
VlWide<2> lwp;
|
||||
VL_SET_WQ(lwp, *(reinterpret_cast<QData*>(datap)));
|
||||
d[0].aval = lwp[0];
|
||||
d[0].bval = 0;
|
||||
@@ -342,8 +342,8 @@ static void _vl_svGetLogicArrElemVecVal(svLogicVecVal* d, const svOpenArrayHandl
|
||||
// Copy to simulator open array from from user bit array
|
||||
static void _vl_svPutBitArrElemVecVal(const svOpenArrayHandle d, const svBitVecVal* s, int nargs,
|
||||
int indx1, int indx2, int indx3) VL_MT_SAFE {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
if (VL_UNLIKELY(!datap)) return;
|
||||
switch (varp->vltype()) { // LCOV_EXCL_BR_LINE
|
||||
case VLVT_UINT8: *(reinterpret_cast<CData*>(datap)) = s[0]; return;
|
||||
@@ -364,8 +364,8 @@ static void _vl_svPutBitArrElemVecVal(const svOpenArrayHandle d, const svBitVecV
|
||||
// Copy to simulator open array from from user logic array
|
||||
static void _vl_svPutLogicArrElemVecVal(const svOpenArrayHandle d, const svLogicVecVal* s,
|
||||
int nargs, int indx1, int indx2, int indx3) VL_MT_SAFE {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
if (VL_UNLIKELY(!datap)) return;
|
||||
switch (varp->vltype()) { // LCOV_EXCL_BR_LINE
|
||||
case VLVT_UINT8: *(reinterpret_cast<CData*>(datap)) = s[0].aval; return;
|
||||
@@ -386,10 +386,10 @@ static void _vl_svPutLogicArrElemVecVal(const svOpenArrayHandle d, const svLogic
|
||||
|
||||
// Return bit from simulator open array
|
||||
static svBit _vl_svGetBitArrElem(const svOpenArrayHandle s, int nargs, int indx1, int indx2,
|
||||
int indx3, int indx4) VL_MT_SAFE {
|
||||
int indx3, int) VL_MT_SAFE {
|
||||
// One extra index supported, as need bit number
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
if (VL_UNLIKELY(!datap)) return 0;
|
||||
switch (varp->vltype()) { // LCOV_EXCL_BR_LINE
|
||||
case VLVT_UINT8: return (*(reinterpret_cast<CData*>(datap))) & 1;
|
||||
@@ -401,11 +401,11 @@ static svBit _vl_svGetBitArrElem(const svOpenArrayHandle s, int nargs, int indx1
|
||||
}
|
||||
// Update simulator open array from bit
|
||||
static void _vl_svPutBitArrElem(const svOpenArrayHandle d, svBit value, int nargs, int indx1,
|
||||
int indx2, int indx3, int indx4) VL_MT_SAFE {
|
||||
int indx2, int indx3, int) VL_MT_SAFE {
|
||||
// One extra index supported, as need bit number
|
||||
value &= 1; // Make sure clean
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
void* datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
void* const datap = _vl_sv_adjusted_datap(varp, nargs, indx1, indx2, indx3);
|
||||
if (VL_UNLIKELY(!datap)) return;
|
||||
switch (varp->vltype()) { // LCOV_EXCL_BR_LINE
|
||||
case VLVT_UINT8: *(reinterpret_cast<CData*>(datap)) = value; return;
|
||||
@@ -420,7 +420,7 @@ static void _vl_svPutBitArrElem(const svOpenArrayHandle d, svBit value, int narg
|
||||
// DPI accessors that simply call above functions
|
||||
|
||||
void* svGetArrElemPtr(const svOpenArrayHandle h, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(h);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(h);
|
||||
void* datap;
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
@@ -454,19 +454,19 @@ void* svGetArrElemPtr3(const svOpenArrayHandle h, int indx1, int indx2, int indx
|
||||
}
|
||||
|
||||
void svPutBitArrElemVecVal(const svOpenArrayHandle d, const svBitVecVal* s, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: _vl_svPutBitArrElemVecVal(d, s, 1, indx1, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
_vl_svPutBitArrElemVecVal(d, s, 2, indx1, indx2, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
_vl_svPutBitArrElemVecVal(d, s, 3, indx1, indx2, indx3);
|
||||
break;
|
||||
}
|
||||
@@ -486,19 +486,19 @@ void svPutBitArrElem3VecVal(const svOpenArrayHandle d, const svBitVecVal* s, int
|
||||
_vl_svPutBitArrElemVecVal(d, s, 3, indx1, indx2, indx3);
|
||||
}
|
||||
void svPutLogicArrElemVecVal(const svOpenArrayHandle d, const svLogicVecVal* s, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: _vl_svPutLogicArrElemVecVal(d, s, 1, indx1, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
_vl_svPutLogicArrElemVecVal(d, s, 2, indx1, indx2, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
_vl_svPutLogicArrElemVecVal(d, s, 3, indx1, indx2, indx3);
|
||||
break;
|
||||
}
|
||||
@@ -522,19 +522,19 @@ void svPutLogicArrElem3VecVal(const svOpenArrayHandle d, const svLogicVecVal* s,
|
||||
// From simulator storage into user space
|
||||
|
||||
void svGetBitArrElemVecVal(svBitVecVal* d, const svOpenArrayHandle s, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: _vl_svGetBitArrElemVecVal(d, s, 1, indx1, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
_vl_svGetBitArrElemVecVal(d, s, 2, indx1, indx2, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
_vl_svGetBitArrElemVecVal(d, s, 3, indx1, indx2, indx3);
|
||||
break;
|
||||
}
|
||||
@@ -553,19 +553,19 @@ void svGetBitArrElem3VecVal(svBitVecVal* d, const svOpenArrayHandle s, int indx1
|
||||
_vl_svGetBitArrElemVecVal(d, s, 3, indx1, indx2, indx3);
|
||||
}
|
||||
void svGetLogicArrElemVecVal(svLogicVecVal* d, const svOpenArrayHandle s, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: _vl_svGetLogicArrElemVecVal(d, s, 1, indx1, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
_vl_svGetLogicArrElemVecVal(d, s, 2, indx1, indx2, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
_vl_svGetLogicArrElemVecVal(d, s, 3, indx1, indx2, indx3);
|
||||
break;
|
||||
}
|
||||
@@ -585,20 +585,20 @@ void svGetLogicArrElem3VecVal(svLogicVecVal* d, const svOpenArrayHandle s, int i
|
||||
}
|
||||
|
||||
svBit svGetBitArrElem(const svOpenArrayHandle s, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
svBit out;
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: out = _vl_svGetBitArrElem(s, 1, indx1, 0, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
out = _vl_svGetBitArrElem(s, 2, indx1, indx2, 0, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
out = _vl_svGetBitArrElem(s, 3, indx1, indx2, indx3, 0);
|
||||
break;
|
||||
}
|
||||
@@ -618,20 +618,20 @@ svBit svGetBitArrElem3(const svOpenArrayHandle s, int indx1, int indx2, int indx
|
||||
}
|
||||
svLogic svGetLogicArrElem(const svOpenArrayHandle s, int indx1, ...) {
|
||||
// Verilator doesn't support X/Z so can just call Bit version
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(s);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(s);
|
||||
svBit out;
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: out = _vl_svGetBitArrElem(s, 1, indx1, 0, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
out = _vl_svGetBitArrElem(s, 2, indx1, indx2, 0, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
out = _vl_svGetBitArrElem(s, 3, indx1, indx2, indx3, 0);
|
||||
break;
|
||||
}
|
||||
@@ -654,19 +654,19 @@ svLogic svGetLogicArrElem3(const svOpenArrayHandle s, int indx1, int indx2, int
|
||||
}
|
||||
|
||||
void svPutBitArrElem(const svOpenArrayHandle d, svBit value, int indx1, ...) {
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: _vl_svPutBitArrElem(d, value, 1, indx1, 0, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
_vl_svPutBitArrElem(d, value, 2, indx1, indx2, 0, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
_vl_svPutBitArrElem(d, value, 3, indx1, indx2, indx3, 0);
|
||||
break;
|
||||
}
|
||||
@@ -685,19 +685,19 @@ void svPutBitArrElem3(const svOpenArrayHandle d, svBit value, int indx1, int ind
|
||||
}
|
||||
void svPutLogicArrElem(const svOpenArrayHandle d, svLogic value, int indx1, ...) {
|
||||
// Verilator doesn't support X/Z so can just call Bit version
|
||||
const VerilatedDpiOpenVar* varp = _vl_openhandle_varp(d);
|
||||
const VerilatedDpiOpenVar* const varp = _vl_openhandle_varp(d);
|
||||
va_list ap;
|
||||
va_start(ap, indx1);
|
||||
switch (varp->udims()) {
|
||||
case 1: _vl_svPutBitArrElem(d, value, 1, indx1, 0, 0, 0); break;
|
||||
case 2: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
_vl_svPutBitArrElem(d, value, 2, indx1, indx2, 0, 0);
|
||||
break;
|
||||
}
|
||||
case 3: {
|
||||
int indx2 = va_arg(ap, int);
|
||||
int indx3 = va_arg(ap, int);
|
||||
const int indx2 = va_arg(ap, int);
|
||||
const int indx3 = va_arg(ap, int);
|
||||
_vl_svPutBitArrElem(d, value, 3, indx1, indx2, indx3, 0);
|
||||
break;
|
||||
}
|
||||
@@ -732,15 +732,15 @@ svScope svGetScope() {
|
||||
}
|
||||
|
||||
svScope svSetScope(const svScope scope) {
|
||||
const VerilatedScope* prevScopep = Verilated::dpiScope();
|
||||
const VerilatedScope* vscopep = reinterpret_cast<const VerilatedScope*>(scope);
|
||||
const VerilatedScope* const prevScopep = Verilated::dpiScope();
|
||||
const VerilatedScope* const vscopep = reinterpret_cast<const VerilatedScope*>(scope);
|
||||
Verilated::dpiScope(vscopep);
|
||||
// NOLINTNEXTLINE(google-readability-casting)
|
||||
return (svScope)(prevScopep);
|
||||
}
|
||||
|
||||
const char* svGetNameFromScope(const svScope scope) {
|
||||
const VerilatedScope* vscopep = reinterpret_cast<const VerilatedScope*>(scope);
|
||||
const VerilatedScope* const vscopep = reinterpret_cast<const VerilatedScope*>(scope);
|
||||
return vscopep->name();
|
||||
}
|
||||
|
||||
|
||||
+11
-11
@@ -37,7 +37,7 @@
|
||||
|
||||
// Convert svBitVecVal to Verilator internal data
|
||||
static inline void VL_SET_W_SVBV(int obits, WDataOutP owp, const svBitVecVal* lwp) VL_MT_SAFE {
|
||||
int words = VL_WORDS_I(obits);
|
||||
const int words = VL_WORDS_I(obits);
|
||||
for (int i = 0; i < words - 1; ++i) owp[i] = lwp[i];
|
||||
owp[words - 1] = lwp[words - 1] & VL_MASK_I(obits);
|
||||
}
|
||||
@@ -47,20 +47,20 @@ static inline QData VL_SET_Q_SVBV(const svBitVecVal* lwp) VL_MT_SAFE {
|
||||
static inline IData VL_SET_I_SVBV(const svBitVecVal* lwp) VL_MT_SAFE { return lwp[0]; }
|
||||
|
||||
// Convert Verilator internal data to svBitVecVal
|
||||
static inline void VL_SET_SVBV_W(int obits, svBitVecVal* owp, WDataInP lwp) VL_MT_SAFE {
|
||||
int words = VL_WORDS_I(obits);
|
||||
static inline void VL_SET_SVBV_W(int obits, svBitVecVal* owp, const WDataInP lwp) VL_MT_SAFE {
|
||||
const int words = VL_WORDS_I(obits);
|
||||
for (int i = 0; i < words - 1; ++i) owp[i] = lwp[i];
|
||||
owp[words - 1] = lwp[words - 1] & VL_MASK_I(obits);
|
||||
}
|
||||
static inline void VL_SET_SVBV_I(int, svBitVecVal* owp, IData ld) VL_MT_SAFE { owp[0] = ld; }
|
||||
static inline void VL_SET_SVBV_Q(int, svBitVecVal* owp, QData ld) VL_MT_SAFE {
|
||||
static inline void VL_SET_SVBV_I(int, svBitVecVal* owp, const IData ld) VL_MT_SAFE { owp[0] = ld; }
|
||||
static inline void VL_SET_SVBV_Q(int, svBitVecVal* owp, const QData ld) VL_MT_SAFE {
|
||||
VL_SET_WQ(owp, ld);
|
||||
}
|
||||
|
||||
// Convert svLogicVecVal to Verilator internal data
|
||||
// Note these functions ignore X/Z in svLogicVecVal
|
||||
static inline void VL_SET_W_SVLV(int obits, WDataOutP owp, const svLogicVecVal* lwp) VL_MT_SAFE {
|
||||
int words = VL_WORDS_I(obits);
|
||||
const int words = VL_WORDS_I(obits);
|
||||
for (int i = 0; i < words - 1; ++i) owp[i] = lwp[i].aval;
|
||||
owp[words - 1] = lwp[words - 1].aval & VL_MASK_I(obits);
|
||||
}
|
||||
@@ -71,18 +71,18 @@ static inline IData VL_SET_I_SVLV(const svLogicVecVal* lwp) VL_MT_SAFE { return
|
||||
|
||||
// Convert Verilator internal data to svLogicVecVal
|
||||
// Note these functions never create X/Z in svLogicVecVal
|
||||
static inline void VL_SET_SVLV_W(int obits, svLogicVecVal* owp, WDataInP lwp) VL_MT_SAFE {
|
||||
int words = VL_WORDS_I(obits);
|
||||
static inline void VL_SET_SVLV_W(int obits, svLogicVecVal* owp, const WDataInP lwp) VL_MT_SAFE {
|
||||
const int words = VL_WORDS_I(obits);
|
||||
for (int i = 0; i < words; ++i) owp[i].bval = 0;
|
||||
for (int i = 0; i < words - 1; ++i) owp[i].aval = lwp[i];
|
||||
owp[words - 1].aval = lwp[words - 1] & VL_MASK_I(obits);
|
||||
}
|
||||
static inline void VL_SET_SVLV_I(int, svLogicVecVal* owp, IData ld) VL_MT_SAFE {
|
||||
static inline void VL_SET_SVLV_I(int, svLogicVecVal* owp, const IData ld) VL_MT_SAFE {
|
||||
owp[0].aval = ld;
|
||||
owp[0].bval = 0;
|
||||
}
|
||||
static inline void VL_SET_SVLV_Q(int, svLogicVecVal* owp, QData ld) VL_MT_SAFE {
|
||||
WData lwp[2];
|
||||
static inline void VL_SET_SVLV_Q(int, svLogicVecVal* owp, const QData ld) VL_MT_SAFE {
|
||||
VlWide<2> lwp;
|
||||
VL_SET_WQ(lwp, ld);
|
||||
owp[0].aval = lwp[0];
|
||||
owp[0].bval = 0;
|
||||
|
||||
+24
-22
@@ -53,29 +53,31 @@
|
||||
|
||||
//=============================================================================
|
||||
// Check that vltscope_t matches fstScopeType
|
||||
static_assert((int)FST_ST_VCD_MODULE == (int)VLT_TRACE_SCOPE_MODULE,
|
||||
|
||||
static_assert(static_cast<int>(FST_ST_VCD_MODULE) == static_cast<int>(VLT_TRACE_SCOPE_MODULE),
|
||||
"VLT_TRACE_SCOPE_MODULE mismatches");
|
||||
static_assert((int)FST_ST_VCD_TASK == (int)VLT_TRACE_SCOPE_TASK,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_TASK) == static_cast<int>(VLT_TRACE_SCOPE_TASK),
|
||||
"VLT_TRACE_SCOPE_TASK mismatches");
|
||||
static_assert((int)FST_ST_VCD_FUNCTION == (int)VLT_TRACE_SCOPE_FUNCTION,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_FUNCTION) == static_cast<int>(VLT_TRACE_SCOPE_FUNCTION),
|
||||
"VLT_TRACE_SCOPE_FUNCTION mismatches");
|
||||
static_assert((int)FST_ST_VCD_BEGIN == (int)VLT_TRACE_SCOPE_BEGIN,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_BEGIN) == static_cast<int>(VLT_TRACE_SCOPE_BEGIN),
|
||||
"VLT_TRACE_SCOPE_BEGIN mismatches");
|
||||
static_assert((int)FST_ST_VCD_FORK == (int)VLT_TRACE_SCOPE_FORK,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_FORK) == static_cast<int>(VLT_TRACE_SCOPE_FORK),
|
||||
"VLT_TRACE_SCOPE_FORK mismatches");
|
||||
static_assert((int)FST_ST_VCD_GENERATE == (int)VLT_TRACE_SCOPE_GENERATE,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_GENERATE) == static_cast<int>(VLT_TRACE_SCOPE_GENERATE),
|
||||
"VLT_TRACE_SCOPE_GENERATE mismatches");
|
||||
static_assert((int)FST_ST_VCD_STRUCT == (int)VLT_TRACE_SCOPE_STRUCT,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_STRUCT) == static_cast<int>(VLT_TRACE_SCOPE_STRUCT),
|
||||
"VLT_TRACE_SCOPE_STRUCT mismatches");
|
||||
static_assert((int)FST_ST_VCD_UNION == (int)VLT_TRACE_SCOPE_UNION,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_UNION) == static_cast<int>(VLT_TRACE_SCOPE_UNION),
|
||||
"VLT_TRACE_SCOPE_UNION mismatches");
|
||||
static_assert((int)FST_ST_VCD_CLASS == (int)VLT_TRACE_SCOPE_CLASS,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_CLASS) == static_cast<int>(VLT_TRACE_SCOPE_CLASS),
|
||||
"VLT_TRACE_SCOPE_CLASS mismatches");
|
||||
static_assert((int)FST_ST_VCD_INTERFACE == (int)VLT_TRACE_SCOPE_INTERFACE,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_INTERFACE)
|
||||
== static_cast<int>(VLT_TRACE_SCOPE_INTERFACE),
|
||||
"VLT_TRACE_SCOPE_INTERFACE mismatches");
|
||||
static_assert((int)FST_ST_VCD_PACKAGE == (int)VLT_TRACE_SCOPE_PACKAGE,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_PACKAGE) == static_cast<int>(VLT_TRACE_SCOPE_PACKAGE),
|
||||
"VLT_TRACE_SCOPE_PACKAGE mismatches");
|
||||
static_assert((int)FST_ST_VCD_PROGRAM == (int)VLT_TRACE_SCOPE_PROGRAM,
|
||||
static_assert(static_cast<int>(FST_ST_VCD_PROGRAM) == static_cast<int>(VLT_TRACE_SCOPE_PROGRAM),
|
||||
"VLT_TRACE_SCOPE_PROGRAM mismatches");
|
||||
|
||||
//=============================================================================
|
||||
@@ -98,7 +100,7 @@ VerilatedFst::~VerilatedFst() {
|
||||
}
|
||||
|
||||
void VerilatedFst::open(const char* filename) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_fst = fstWriterCreate(filename, 1);
|
||||
fstWriterSetPackType(m_fst, FST_WR_PT_LZ4);
|
||||
fstWriterSetTimescaleFromString(m_fst, timeResStr().c_str()); // lintok-begin-on-ref
|
||||
@@ -130,14 +132,14 @@ void VerilatedFst::open(const char* filename) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
}
|
||||
|
||||
void VerilatedFst::close() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
VerilatedTrace<VerilatedFst>::closeBase();
|
||||
fstWriterClose(m_fst);
|
||||
m_fst = nullptr;
|
||||
}
|
||||
|
||||
void VerilatedFst::flush() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
VerilatedTrace<VerilatedFst>::flushBase();
|
||||
fstWriterFlushContext(m_fst);
|
||||
}
|
||||
@@ -150,7 +152,7 @@ void VerilatedFst::emitTimeChange(vluint64_t timeui) { fstWriterEmitTimeChange(m
|
||||
void VerilatedFst::declDTypeEnum(int dtypenum, const char* name, vluint32_t elements,
|
||||
unsigned int minValbits, const char** itemNamesp,
|
||||
const char** itemValuesp) {
|
||||
fstEnumHandle enumNum
|
||||
const fstEnumHandle enumNum
|
||||
= fstWriterCreateEnumTable(m_fst, name, elements, minValbits, itemNamesp, itemValuesp);
|
||||
m_local2fstdtype[dtypenum] = enumNum;
|
||||
}
|
||||
@@ -161,11 +163,11 @@ void VerilatedFst::declare(vluint32_t code, const char* name, int dtypenum, fstV
|
||||
|
||||
VerilatedTrace<VerilatedFst>::declCode(code, bits, false);
|
||||
|
||||
std::istringstream nameiss(name);
|
||||
std::istringstream nameiss{name};
|
||||
std::istream_iterator<std::string> beg(nameiss);
|
||||
std::istream_iterator<std::string> end;
|
||||
std::list<std::string> tokens(beg, end); // Split name
|
||||
std::string symbol_name(tokens.back());
|
||||
std::string symbol_name{tokens.back()};
|
||||
tokens.pop_back(); // Remove symbol name from hierarchy
|
||||
tokens.insert(tokens.begin(), moduleName()); // Add current module to the hierarchy
|
||||
std::string tmpModName;
|
||||
@@ -191,8 +193,8 @@ void VerilatedFst::declare(vluint32_t code, const char* name, int dtypenum, fstV
|
||||
tmpModName = *new_it;
|
||||
tmpModName.pop_back();
|
||||
// If the scope ends with a non-ascii character, it will be 0x80 + fstScopeType
|
||||
fstWriterSetScope(m_fst, (fstScopeType)(new_it->back() & 0x7f), tmpModName.c_str(),
|
||||
nullptr);
|
||||
fstWriterSetScope(m_fst, static_cast<fstScopeType>(new_it->back() & 0x7f),
|
||||
tmpModName.c_str(), nullptr);
|
||||
} else
|
||||
fstWriterSetScope(m_fst, FST_ST_VCD_SCOPE, new_it->c_str(), nullptr);
|
||||
|
||||
@@ -202,11 +204,11 @@ void VerilatedFst::declare(vluint32_t code, const char* name, int dtypenum, fstV
|
||||
|
||||
std::stringstream name_ss;
|
||||
name_ss << symbol_name;
|
||||
if (array) name_ss << "(" << arraynum << ")";
|
||||
if (array) name_ss << "[" << arraynum << "]";
|
||||
std::string name_str = name_ss.str();
|
||||
|
||||
if (dtypenum > 0) {
|
||||
fstEnumHandle enumNum = m_local2fstdtype[dtypenum];
|
||||
const fstEnumHandle enumNum = m_local2fstdtype[dtypenum];
|
||||
fstWriterEmitEnumTableRef(m_fst, enumNum);
|
||||
}
|
||||
|
||||
|
||||
@@ -42,9 +42,9 @@ public:
|
||||
// We want to avoid a depreciated warning, but still be back compatible.
|
||||
// Turning off the message just for this still results in an
|
||||
// annoying "to turn off" message.
|
||||
sc_time t1sec(1, SC_SEC);
|
||||
const sc_time t1sec(1, SC_SEC);
|
||||
if (t1sec.to_default_time_units() != 0) {
|
||||
sc_time tunits(1.0 / t1sec.to_default_time_units(), SC_SEC);
|
||||
const sc_time tunits(1.0 / t1sec.to_default_time_units(), SC_SEC);
|
||||
spTrace()->set_time_unit(tunits.to_string());
|
||||
}
|
||||
spTrace()->set_time_resolution(sc_get_time_resolution().to_string());
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
+7
-957
@@ -12,970 +12,20 @@
|
||||
//*************************************************************************
|
||||
///
|
||||
/// \file
|
||||
/// \brief Verilated string and data-type header
|
||||
/// \brief Verilated old string and data-type header
|
||||
///
|
||||
/// This file is included automatically by Verilator at the top of
|
||||
/// all C++ files it generates. It is used when strings or other
|
||||
/// heavyweight types are required; these contents are not part of
|
||||
/// verilated.h to save compile time when such types aren't used.
|
||||
/// This file is deprecated, and provided for backwards compatibility.
|
||||
/// Include verilated.h instead.
|
||||
///
|
||||
//*************************************************************************
|
||||
|
||||
#ifndef VERILATOR_VERILATED_HEAVY_H_
|
||||
#define VERILATOR_VERILATED_HEAVY_H_
|
||||
|
||||
#ifdef VL_NO_LEGACY
|
||||
#error "Include <verilated.h> instead of <verilated_heavy.h>"
|
||||
#endif
|
||||
|
||||
#include "verilated.h"
|
||||
|
||||
#include <algorithm>
|
||||
#include <array>
|
||||
#include <deque>
|
||||
#include <map>
|
||||
#include <memory>
|
||||
#include <set>
|
||||
#include <string>
|
||||
#include <unordered_set>
|
||||
|
||||
//===================================================================
|
||||
// String formatters (required by below containers)
|
||||
|
||||
extern std::string VL_TO_STRING(CData lhs);
|
||||
extern std::string VL_TO_STRING(SData lhs);
|
||||
extern std::string VL_TO_STRING(IData lhs);
|
||||
extern std::string VL_TO_STRING(QData lhs);
|
||||
inline std::string VL_TO_STRING(const std::string& obj) { return "\"" + obj + "\""; }
|
||||
extern std::string VL_TO_STRING_W(int words, WDataInP obj);
|
||||
|
||||
//===================================================================
|
||||
// Shuffle RNG
|
||||
|
||||
class VlURNG final {
|
||||
public:
|
||||
using result_type = size_t;
|
||||
static constexpr size_t min() { return 0; }
|
||||
static constexpr size_t max() { return 1ULL << 31; }
|
||||
size_t operator()() { return VL_MASK_I(31) & VL_RANDOM_I(32); }
|
||||
};
|
||||
|
||||
//===================================================================
|
||||
// Readmem/Writemem operation classes
|
||||
|
||||
class VlReadMem final {
|
||||
bool m_hex; // Hex format
|
||||
int m_bits; // Bit width of values
|
||||
const std::string& m_filename; // Filename
|
||||
QData m_end; // End address (as specified by user)
|
||||
FILE* m_fp; // File handle for filename
|
||||
QData m_addr; // Next address to read
|
||||
int m_linenum; // Line number last read from file
|
||||
public:
|
||||
VlReadMem(bool hex, int bits, const std::string& filename, QData start, QData end);
|
||||
~VlReadMem();
|
||||
bool isOpen() const { return m_fp != nullptr; }
|
||||
int linenum() const { return m_linenum; }
|
||||
bool get(QData& addrr, std::string& valuer);
|
||||
void setData(void* valuep, const std::string& rhs);
|
||||
};
|
||||
|
||||
class VlWriteMem final {
|
||||
bool m_hex; // Hex format
|
||||
int m_bits; // Bit width of values
|
||||
FILE* m_fp; // File handle for filename
|
||||
QData m_addr; // Next address to write
|
||||
public:
|
||||
VlWriteMem(bool hex, int bits, const std::string& filename, QData start, QData end);
|
||||
~VlWriteMem();
|
||||
bool isOpen() const { return m_fp != nullptr; }
|
||||
void print(QData addr, bool addrstamp, const void* valuep);
|
||||
};
|
||||
|
||||
//===================================================================
|
||||
/// Verilog wide unpacked bit container.
|
||||
/// Similar to std::array<WData, N>, but lighter weight, only methods needed
|
||||
/// by Verilator, to help compile time.
|
||||
///
|
||||
/// For example a Verilog "bit [94:0]" will become a VlWide<3> because 3*32
|
||||
/// bits are needed to hold the 95 bits. The MSB (bit 96) must always be
|
||||
/// zero in memory, but during intermediate operations in the Verilated
|
||||
/// internals is unpredictable.
|
||||
|
||||
template <std::size_t T_Words> class VlWide final {
|
||||
EData m_storage[T_Words];
|
||||
|
||||
public:
|
||||
// cppcheck-suppress uninitVar
|
||||
VlWide() = default;
|
||||
~VlWide() = default;
|
||||
VlWide(const VlWide&) = default;
|
||||
VlWide(VlWide&&) = default;
|
||||
|
||||
// OPERATOR METHODS
|
||||
VlWide& operator=(const VlWide&) = default;
|
||||
VlWide& operator=(VlWide&&) = default;
|
||||
const EData& operator[](size_t index) const { return m_storage[index]; };
|
||||
EData& operator[](size_t index) { return m_storage[index]; };
|
||||
operator WDataOutP() { return &m_storage[0]; }
|
||||
operator WDataInP() const { return &m_storage[0]; }
|
||||
|
||||
// METHODS
|
||||
const EData& at(size_t index) const { return m_storage[index]; }
|
||||
EData& at(size_t index) { return m_storage[index]; }
|
||||
WData* data() { return &m_storage[0]; }
|
||||
const WData* data() const { return &m_storage[0]; }
|
||||
bool operator<(const VlWide<T_Words>& rhs) const {
|
||||
return VL_LT_W(T_Words, data(), rhs.data());
|
||||
}
|
||||
};
|
||||
|
||||
// Convert a C array to std::array reference by pointer magic, without copy.
|
||||
// Data type (second argument) is so the function template can automatically generate.
|
||||
template <std::size_t T_Words> VlWide<T_Words>& VL_CVT_W_A(WDataInP inp, const VlWide<T_Words>&) {
|
||||
return *((VlWide<T_Words>*)inp);
|
||||
}
|
||||
|
||||
template <std::size_t T_Words> std::string VL_TO_STRING(const VlWide<T_Words>& obj) {
|
||||
return VL_TO_STRING_W(T_Words, obj.data());
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
// Verilog queue and dynamic array container
|
||||
// There are no multithreaded locks on this; the base variable must
|
||||
// be protected by other means
|
||||
//
|
||||
// Bound here is the maximum size() allowed, e.g. 1 + SystemVerilog bound
|
||||
// For dynamic arrays it is always zero
|
||||
template <class T_Value, size_t T_MaxSize = 0> class VlQueue final {
|
||||
private:
|
||||
// TYPES
|
||||
using Deque = std::deque<T_Value>;
|
||||
|
||||
public:
|
||||
using const_iterator = typename Deque::const_iterator;
|
||||
|
||||
private:
|
||||
// MEMBERS
|
||||
Deque m_deque; // State of the assoc array
|
||||
T_Value m_defaultValue; // Default value
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
// m_defaultValue isn't defaulted. Caller's constructor must do it.
|
||||
VlQueue() = default;
|
||||
~VlQueue() = default;
|
||||
VlQueue(const VlQueue&) = default;
|
||||
VlQueue(VlQueue&&) = default;
|
||||
VlQueue& operator=(const VlQueue&) = default;
|
||||
VlQueue& operator=(VlQueue&&) = default;
|
||||
|
||||
// Standard copy constructor works. Verilog: assoca = assocb
|
||||
// Also must allow conversion from a different T_MaxSize queue
|
||||
template <size_t U_MaxSize = 0> VlQueue operator=(const VlQueue<T_Value, U_MaxSize>& rhs) {
|
||||
m_deque = rhs.privateDeque();
|
||||
if (VL_UNLIKELY(T_MaxSize && T_MaxSize < m_deque.size())) m_deque.resize(T_MaxSize - 1);
|
||||
return *this;
|
||||
}
|
||||
|
||||
static VlQueue cons(const T_Value& lhs) {
|
||||
VlQueue out;
|
||||
out.push_back(lhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const T_Value& lhs, const T_Value& rhs) {
|
||||
VlQueue out;
|
||||
out.push_back(rhs);
|
||||
out.push_back(lhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const VlQueue& lhs, const T_Value& rhs) {
|
||||
VlQueue out = lhs;
|
||||
out.push_front(rhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const T_Value& lhs, const VlQueue& rhs) {
|
||||
VlQueue out = rhs;
|
||||
out.push_back(lhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const VlQueue& lhs, const VlQueue& rhs) {
|
||||
VlQueue out = rhs;
|
||||
for (const auto& i : lhs.m_deque) out.push_back(i);
|
||||
return out;
|
||||
}
|
||||
|
||||
// METHODS
|
||||
T_Value& atDefault() { return m_defaultValue; }
|
||||
const T_Value& atDefault() const { return m_defaultValue; }
|
||||
const Deque& privateDeque() const { return m_deque; }
|
||||
|
||||
// Size. Verilog: function int size(), or int num()
|
||||
int size() const { return m_deque.size(); }
|
||||
// Clear array. Verilog: function void delete([input index])
|
||||
void clear() { m_deque.clear(); }
|
||||
void erase(vlsint32_t index) {
|
||||
if (VL_LIKELY(index >= 0 && index < m_deque.size()))
|
||||
m_deque.erase(m_deque.begin() + index);
|
||||
}
|
||||
|
||||
// Dynamic array new[] becomes a renew()
|
||||
void renew(size_t size) {
|
||||
clear();
|
||||
m_deque.resize(size, atDefault());
|
||||
}
|
||||
// Dynamic array new[]() becomes a renew_copy()
|
||||
void renew_copy(size_t size, const VlQueue<T_Value, T_MaxSize>& rhs) {
|
||||
if (size == 0) {
|
||||
clear();
|
||||
} else {
|
||||
*this = rhs;
|
||||
m_deque.resize(size, atDefault());
|
||||
}
|
||||
}
|
||||
|
||||
// function void q.push_front(value)
|
||||
void push_front(const T_Value& value) {
|
||||
m_deque.push_front(value);
|
||||
if (VL_UNLIKELY(T_MaxSize != 0 && m_deque.size() > T_MaxSize)) m_deque.pop_back();
|
||||
}
|
||||
// function void q.push_back(value)
|
||||
void push_back(const T_Value& value) {
|
||||
if (VL_LIKELY(T_MaxSize == 0 || m_deque.size() < T_MaxSize)) m_deque.push_back(value);
|
||||
}
|
||||
// function value_t q.pop_front();
|
||||
T_Value pop_front() {
|
||||
if (m_deque.empty()) return m_defaultValue;
|
||||
T_Value v = m_deque.front();
|
||||
m_deque.pop_front();
|
||||
return v;
|
||||
}
|
||||
// function value_t q.pop_back();
|
||||
T_Value pop_back() {
|
||||
if (m_deque.empty()) return m_defaultValue;
|
||||
T_Value v = m_deque.back();
|
||||
m_deque.pop_back();
|
||||
return v;
|
||||
}
|
||||
|
||||
// Setting. Verilog: assoc[index] = v
|
||||
// Can't just overload operator[] or provide a "at" reference to set,
|
||||
// because we need to be able to insert only when the value is set
|
||||
T_Value& at(vlsint32_t index) {
|
||||
static T_Value s_throwAway;
|
||||
// Needs to work for dynamic arrays, so does not use T_MaxSize
|
||||
if (VL_UNLIKELY(index < 0 || index >= m_deque.size())) {
|
||||
s_throwAway = atDefault();
|
||||
return s_throwAway;
|
||||
} else {
|
||||
return m_deque[index];
|
||||
}
|
||||
}
|
||||
// Accessing. Verilog: v = assoc[index]
|
||||
const T_Value& at(vlsint32_t index) const {
|
||||
static T_Value s_throwAway;
|
||||
// Needs to work for dynamic arrays, so does not use T_MaxSize
|
||||
if (VL_UNLIKELY(index < 0 || index >= m_deque.size())) {
|
||||
return atDefault();
|
||||
} else {
|
||||
return m_deque[index];
|
||||
}
|
||||
}
|
||||
// function void q.insert(index, value);
|
||||
void insert(vlsint32_t index, const T_Value& value) {
|
||||
if (VL_UNLIKELY(index < 0 || index >= m_deque.size())) return;
|
||||
m_deque.insert(m_deque.begin() + index, value);
|
||||
}
|
||||
|
||||
// Return slice q[lsb:msb]
|
||||
VlQueue slice(vlsint32_t lsb, vlsint32_t msb) const {
|
||||
VlQueue out;
|
||||
if (VL_UNLIKELY(lsb < 0)) lsb = 0;
|
||||
if (VL_UNLIKELY(lsb >= m_deque.size())) lsb = m_deque.size() - 1;
|
||||
if (VL_UNLIKELY(msb >= m_deque.size())) msb = m_deque.size() - 1;
|
||||
for (vlsint32_t i = lsb; i <= msb; ++i) out.push_back(m_deque[i]);
|
||||
return out;
|
||||
}
|
||||
|
||||
// For save/restore
|
||||
const_iterator begin() const { return m_deque.begin(); }
|
||||
const_iterator end() const { return m_deque.end(); }
|
||||
|
||||
// Methods
|
||||
void sort() { std::sort(m_deque.begin(), m_deque.end()); }
|
||||
template <typename Func> void sort(Func with_func) {
|
||||
// with_func returns arbitrary type to use for the sort comparison
|
||||
std::sort(m_deque.begin(), m_deque.end(), [=](const T_Value& a, const T_Value& b) {
|
||||
// index number is meaninless with sort, as it changes
|
||||
return with_func(0, a) < with_func(0, b);
|
||||
});
|
||||
}
|
||||
void rsort() { std::sort(m_deque.rbegin(), m_deque.rend()); }
|
||||
template <typename Func> void rsort(Func with_func) {
|
||||
// with_func returns arbitrary type to use for the sort comparison
|
||||
std::sort(m_deque.rbegin(), m_deque.rend(), [=](const T_Value& a, const T_Value& b) {
|
||||
// index number is meaninless with sort, as it changes
|
||||
return with_func(0, a) < with_func(0, b);
|
||||
});
|
||||
}
|
||||
void reverse() { std::reverse(m_deque.begin(), m_deque.end()); }
|
||||
void shuffle() { std::shuffle(m_deque.begin(), m_deque.end(), VlURNG()); }
|
||||
VlQueue unique() const {
|
||||
VlQueue out;
|
||||
std::unordered_set<T_Value> saw;
|
||||
for (const auto& i : m_deque) {
|
||||
auto it = saw.find(i);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i);
|
||||
out.push_back(i);
|
||||
}
|
||||
}
|
||||
return out;
|
||||
}
|
||||
VlQueue<IData> unique_index() const {
|
||||
VlQueue<IData> out;
|
||||
IData index = 0;
|
||||
std::unordered_set<T_Value> saw;
|
||||
for (const auto& i : m_deque) {
|
||||
auto it = saw.find(i);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i);
|
||||
out.push_back(index);
|
||||
}
|
||||
++index;
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue find(Func with_func) const {
|
||||
VlQueue out;
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) out.push_back(i);
|
||||
++index;
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<IData> find_index(Func with_func) const {
|
||||
VlQueue<IData> out;
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) out.push_back(index);
|
||||
++index;
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue find_first(Func with_func) const {
|
||||
// Can't use std::find_if as need index number
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) return VlQueue::cons(i);
|
||||
++index;
|
||||
}
|
||||
return VlQueue{};
|
||||
}
|
||||
template <typename Func> VlQueue<IData> find_first_index(Func with_func) const {
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) return VlQueue<IData>::cons(index);
|
||||
++index;
|
||||
}
|
||||
return VlQueue<IData>{};
|
||||
}
|
||||
template <typename Func> VlQueue find_last(Func with_func) const {
|
||||
IData index = m_deque.size() - 1;
|
||||
for (auto it = m_deque.rbegin(); it != m_deque.rend(); ++it) {
|
||||
if (with_func(index, *it)) return VlQueue::cons(*it);
|
||||
--index;
|
||||
}
|
||||
return VlQueue{};
|
||||
}
|
||||
template <typename Func> VlQueue<IData> find_last_index(Func with_func) const {
|
||||
IData index = m_deque.size() - 1;
|
||||
for (auto it = m_deque.rbegin(); it != m_deque.rend(); ++it) {
|
||||
if (with_func(index, *it)) return VlQueue<IData>::cons(index);
|
||||
--index;
|
||||
}
|
||||
return VlQueue<IData>{};
|
||||
}
|
||||
|
||||
// Reduction operators
|
||||
VlQueue min() const {
|
||||
if (m_deque.empty()) return VlQueue();
|
||||
const auto it = std::min_element(m_deque.begin(), m_deque.end());
|
||||
return VlQueue::cons(*it);
|
||||
}
|
||||
VlQueue max() const {
|
||||
if (m_deque.empty()) return VlQueue();
|
||||
const auto it = std::max_element(m_deque.begin(), m_deque.end());
|
||||
return VlQueue::cons(*it);
|
||||
}
|
||||
|
||||
T_Value r_sum() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_deque) out += i;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_sum(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) out += with_func(index++, i);
|
||||
return out;
|
||||
}
|
||||
T_Value r_product() const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
T_Value out{*it};
|
||||
++it;
|
||||
for (; it != m_deque.end(); ++it) out *= *it;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_product(Func with_func) const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
IData index = 0;
|
||||
T_Value out{with_func(index, *it)};
|
||||
++it;
|
||||
++index;
|
||||
for (; it != m_deque.end(); ++it) out *= with_func(index++, *it);
|
||||
return out;
|
||||
}
|
||||
T_Value r_and() const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
T_Value out{*it};
|
||||
++it;
|
||||
for (; it != m_deque.end(); ++it) out &= *it;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_and(Func with_func) const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
IData index = 0;
|
||||
T_Value out{with_func(index, *it)};
|
||||
++it;
|
||||
++index;
|
||||
for (; it != m_deque.end(); ++it) out &= with_func(index, *it);
|
||||
return out;
|
||||
}
|
||||
T_Value r_or() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_deque) out |= i;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_or(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) out |= with_func(index++, i);
|
||||
return out;
|
||||
}
|
||||
T_Value r_xor() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_deque) out ^= i;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_xor(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) out ^= with_func(index++, i);
|
||||
return out;
|
||||
}
|
||||
|
||||
// Dumping. Verilog: str = $sformatf("%p", assoc)
|
||||
std::string to_string() const {
|
||||
if (m_deque.empty()) return "'{}"; // No trailing space
|
||||
std::string out = "'{";
|
||||
std::string comma;
|
||||
for (const auto& i : m_deque) {
|
||||
out += comma + VL_TO_STRING(i);
|
||||
comma = ", ";
|
||||
}
|
||||
return out + "} ";
|
||||
}
|
||||
};
|
||||
|
||||
template <class T_Value> std::string VL_TO_STRING(const VlQueue<T_Value>& obj) {
|
||||
return obj.to_string();
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
// Verilog associative array container
|
||||
// There are no multithreaded locks on this; the base variable must
|
||||
// be protected by other means
|
||||
//
|
||||
template <class T_Key, class T_Value> class VlAssocArray final {
|
||||
private:
|
||||
// TYPES
|
||||
using Map = std::map<T_Key, T_Value>;
|
||||
|
||||
public:
|
||||
using const_iterator = typename Map::const_iterator;
|
||||
|
||||
private:
|
||||
// MEMBERS
|
||||
Map m_map; // State of the assoc array
|
||||
T_Value m_defaultValue; // Default value
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
// m_defaultValue isn't defaulted. Caller's constructor must do it.
|
||||
VlAssocArray() = default;
|
||||
~VlAssocArray() = default;
|
||||
VlAssocArray(const VlAssocArray&) = default;
|
||||
VlAssocArray(VlAssocArray&&) = default;
|
||||
VlAssocArray& operator=(const VlAssocArray&) = default;
|
||||
VlAssocArray& operator=(VlAssocArray&&) = default;
|
||||
|
||||
// METHODS
|
||||
T_Value& atDefault() { return m_defaultValue; }
|
||||
const T_Value& atDefault() const { return m_defaultValue; }
|
||||
|
||||
// Size of array. Verilog: function int size(), or int num()
|
||||
int size() const { return m_map.size(); }
|
||||
// Clear array. Verilog: function void delete([input index])
|
||||
void clear() { m_map.clear(); }
|
||||
void erase(const T_Key& index) { m_map.erase(index); }
|
||||
// Return 0/1 if element exists. Verilog: function int exists(input index)
|
||||
int exists(const T_Key& index) const { return m_map.find(index) != m_map.end(); }
|
||||
// Return first element. Verilog: function int first(ref index);
|
||||
int first(T_Key& indexr) const {
|
||||
const auto it = m_map.cbegin();
|
||||
if (it == m_map.end()) return 0;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Return last element. Verilog: function int last(ref index)
|
||||
int last(T_Key& indexr) const {
|
||||
const auto it = m_map.crbegin();
|
||||
if (it == m_map.rend()) return 0;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Return next element. Verilog: function int next(ref index)
|
||||
int next(T_Key& indexr) const {
|
||||
auto it = m_map.find(indexr);
|
||||
if (VL_UNLIKELY(it == m_map.end())) return 0;
|
||||
++it;
|
||||
if (VL_UNLIKELY(it == m_map.end())) return 0;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Return prev element. Verilog: function int prev(ref index)
|
||||
int prev(T_Key& indexr) const {
|
||||
auto it = m_map.find(indexr);
|
||||
if (VL_UNLIKELY(it == m_map.end())) return 0;
|
||||
if (VL_UNLIKELY(it == m_map.begin())) return 0;
|
||||
--it;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Setting. Verilog: assoc[index] = v
|
||||
// Can't just overload operator[] or provide a "at" reference to set,
|
||||
// because we need to be able to insert only when the value is set
|
||||
T_Value& at(const T_Key& index) {
|
||||
const auto it = m_map.find(index);
|
||||
if (it == m_map.end()) {
|
||||
std::pair<typename Map::iterator, bool> pit = m_map.emplace(index, m_defaultValue);
|
||||
return pit.first->second;
|
||||
}
|
||||
return it->second;
|
||||
}
|
||||
// Accessing. Verilog: v = assoc[index]
|
||||
const T_Value& at(const T_Key& index) const {
|
||||
const auto it = m_map.find(index);
|
||||
if (it == m_map.end()) {
|
||||
return m_defaultValue;
|
||||
} else {
|
||||
return it->second;
|
||||
}
|
||||
}
|
||||
// Setting as a chained operation
|
||||
VlAssocArray& set(const T_Key& index, const T_Value& value) {
|
||||
at(index) = value;
|
||||
return *this;
|
||||
}
|
||||
VlAssocArray& setDefault(const T_Value& value) {
|
||||
atDefault() = value;
|
||||
return *this;
|
||||
}
|
||||
|
||||
// For save/restore
|
||||
const_iterator begin() const { return m_map.begin(); }
|
||||
const_iterator end() const { return m_map.end(); }
|
||||
|
||||
// Methods
|
||||
VlQueue<T_Value> unique() const {
|
||||
VlQueue<T_Value> out;
|
||||
std::set<T_Value> saw;
|
||||
for (const auto& i : m_map) {
|
||||
auto it = saw.find(i.second);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i.second);
|
||||
out.push_back(i.second);
|
||||
}
|
||||
}
|
||||
return out;
|
||||
}
|
||||
VlQueue<T_Key> unique_index() const {
|
||||
VlQueue<T_Key> out;
|
||||
std::set<T_Key> saw;
|
||||
for (const auto& i : m_map) {
|
||||
auto it = saw.find(i.second);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i.second);
|
||||
out.push_back(i.first);
|
||||
}
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<T_Value> find(Func with_func) const {
|
||||
VlQueue<T_Value> out;
|
||||
for (const auto& i : m_map)
|
||||
if (with_func(i.first, i.second)) out.push_back(i.second);
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<T_Key> find_index(Func with_func) const {
|
||||
VlQueue<T_Key> out;
|
||||
for (const auto& i : m_map)
|
||||
if (with_func(i.first, i.second)) out.push_back(i.first);
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<T_Value> find_first(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.begin(), m_map.end(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.end()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
template <typename Func> VlQueue<T_Key> find_first_index(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.begin(), m_map.end(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.end()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Key>::cons(it->first);
|
||||
}
|
||||
template <typename Func> VlQueue<T_Value> find_last(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.rbegin(), m_map.rend(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.rend()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
template <typename Func> VlQueue<T_Key> find_last_index(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.rbegin(), m_map.rend(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.rend()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Key>::cons(it->first);
|
||||
}
|
||||
|
||||
// Reduction operators
|
||||
VlQueue<T_Value> min() const {
|
||||
if (m_map.empty()) return VlQueue<T_Value>();
|
||||
const auto it = std::min_element(
|
||||
m_map.begin(), m_map.end(),
|
||||
[](const std::pair<T_Key, T_Value>& a, const std::pair<T_Key, T_Value>& b) {
|
||||
return a.second < b.second;
|
||||
});
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
VlQueue<T_Value> max() const {
|
||||
if (m_map.empty()) return VlQueue<T_Value>();
|
||||
const auto it = std::max_element(
|
||||
m_map.begin(), m_map.end(),
|
||||
[](const std::pair<T_Key, T_Value>& a, const std::pair<T_Key, T_Value>& b) {
|
||||
return a.second < b.second;
|
||||
});
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
|
||||
T_Value r_sum() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out += i.second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_sum(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out += with_func(i.first, i.second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_product() const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{it->second};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out *= it->second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_product(Func with_func) const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{with_func(it->first, it->second)};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out *= with_func(it->first, it->second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_and() const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{it->second};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out &= it->second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_and(Func with_func) const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{with_func(it->first, it->second)};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out &= with_func(it->first, it->second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_or() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out |= i.second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_or(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out |= with_func(i.first, i.second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_xor() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out ^= i.second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_xor(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out ^= with_func(i.first, i.second);
|
||||
return out;
|
||||
}
|
||||
|
||||
// Dumping. Verilog: str = $sformatf("%p", assoc)
|
||||
std::string to_string() const {
|
||||
if (m_map.empty()) return "'{}"; // No trailing space
|
||||
std::string out = "'{";
|
||||
std::string comma;
|
||||
for (const auto& i : m_map) {
|
||||
out += comma + VL_TO_STRING(i.first) + ":" + VL_TO_STRING(i.second);
|
||||
comma = ", ";
|
||||
}
|
||||
// Default not printed - maybe random init data
|
||||
return out + "} ";
|
||||
}
|
||||
};
|
||||
|
||||
template <class T_Key, class T_Value>
|
||||
std::string VL_TO_STRING(const VlAssocArray<T_Key, T_Value>& obj) {
|
||||
return obj.to_string();
|
||||
}
|
||||
|
||||
template <class T_Key, class T_Value>
|
||||
void VL_READMEM_N(bool hex, int bits, const std::string& filename,
|
||||
VlAssocArray<T_Key, T_Value>& obj, QData start, QData end) VL_MT_SAFE {
|
||||
VlReadMem rmem(hex, bits, filename, start, end);
|
||||
if (VL_UNLIKELY(!rmem.isOpen())) return;
|
||||
while (true) {
|
||||
QData addr;
|
||||
std::string data;
|
||||
if (rmem.get(addr /*ref*/, data /*ref*/)) {
|
||||
rmem.setData(&(obj.at(addr)), data);
|
||||
} else {
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
template <class T_Key, class T_Value>
|
||||
void VL_WRITEMEM_N(bool hex, int bits, const std::string& filename,
|
||||
const VlAssocArray<T_Key, T_Value>& obj, QData start, QData end) VL_MT_SAFE {
|
||||
VlWriteMem wmem(hex, bits, filename, start, end);
|
||||
if (VL_UNLIKELY(!wmem.isOpen())) return;
|
||||
for (const auto& i : obj) {
|
||||
QData addr = i.first;
|
||||
if (addr >= start && addr <= end) wmem.print(addr, true, &(i.second));
|
||||
}
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
/// Verilog packed array container
|
||||
/// For when a standard C++[] array is not sufficient, e.g. an
|
||||
/// array under a queue, or methods operating on the array.
|
||||
///
|
||||
/// This class may get exposed to a Verilated Model's top I/O, if the top
|
||||
/// IO has an unpacked array.
|
||||
|
||||
template <class T_Value, std::size_t T_Depth> class VlUnpacked final {
|
||||
private:
|
||||
// TYPES
|
||||
using Array = std::array<T_Value, T_Depth>;
|
||||
|
||||
public:
|
||||
using const_iterator = typename Array::const_iterator;
|
||||
|
||||
private:
|
||||
// MEMBERS
|
||||
Array m_array; // Contents of the packed array
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
VlUnpacked() = default;
|
||||
~VlUnpacked() = default;
|
||||
VlUnpacked(const VlUnpacked&) = default;
|
||||
VlUnpacked(VlUnpacked&&) = default;
|
||||
VlUnpacked& operator=(const VlUnpacked&) = default;
|
||||
VlUnpacked& operator=(VlUnpacked&&) = default;
|
||||
|
||||
// METHODS
|
||||
// Raw access
|
||||
WData* data() { return &m_array[0]; }
|
||||
const WData* data() const { return &m_array[0]; }
|
||||
|
||||
T_Value& operator[](size_t index) { return m_array[index]; };
|
||||
const T_Value& operator[](size_t index) const { return m_array[index]; };
|
||||
|
||||
// Dumping. Verilog: str = $sformatf("%p", assoc)
|
||||
std::string to_string() const {
|
||||
std::string out = "'{";
|
||||
std::string comma;
|
||||
for (int i = 0; i < T_Depth; ++i) {
|
||||
out += comma + VL_TO_STRING(m_array[i]);
|
||||
comma = ", ";
|
||||
}
|
||||
return out + "} ";
|
||||
}
|
||||
};
|
||||
|
||||
template <class T_Value, std::size_t T_Depth>
|
||||
std::string VL_TO_STRING(const VlUnpacked<T_Value, T_Depth>& obj) {
|
||||
return obj.to_string();
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
// Verilog class reference container
|
||||
// There are no multithreaded locks on this; the base variable must
|
||||
// be protected by other means
|
||||
|
||||
#define VlClassRef std::shared_ptr
|
||||
|
||||
template <class T> // T typically of type VlClassRef<x>
|
||||
inline T VL_NULL_CHECK(T t, const char* filename, int linenum) {
|
||||
if (VL_UNLIKELY(!t)) Verilated::nullPointerError(filename, linenum);
|
||||
return t;
|
||||
}
|
||||
|
||||
template <typename T, typename U>
|
||||
static inline bool VL_CAST_DYNAMIC(VlClassRef<T> in, VlClassRef<U>& outr) {
|
||||
VlClassRef<U> casted = std::dynamic_pointer_cast<U>(in);
|
||||
if (VL_LIKELY(casted)) {
|
||||
outr = casted;
|
||||
return true;
|
||||
} else {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
//======================================================================
|
||||
// Conversion functions
|
||||
|
||||
extern std::string VL_CVT_PACK_STR_NW(int lwords, WDataInP lwp) VL_MT_SAFE;
|
||||
inline std::string VL_CVT_PACK_STR_NQ(QData lhs) VL_PURE {
|
||||
WData lw[VL_WQ_WORDS_E];
|
||||
VL_SET_WQ(lw, lhs);
|
||||
return VL_CVT_PACK_STR_NW(VL_WQ_WORDS_E, lw);
|
||||
}
|
||||
inline std::string VL_CVT_PACK_STR_NN(const std::string& lhs) VL_PURE { return lhs; }
|
||||
inline std::string& VL_CVT_PACK_STR_NN(std::string& lhs) VL_PURE { return lhs; }
|
||||
inline std::string VL_CVT_PACK_STR_NI(IData lhs) VL_PURE {
|
||||
WData lw[VL_WQ_WORDS_E];
|
||||
VL_SET_WI(lw, lhs);
|
||||
return VL_CVT_PACK_STR_NW(1, lw);
|
||||
}
|
||||
inline std::string VL_CONCATN_NNN(const std::string& lhs, const std::string& rhs) VL_PURE {
|
||||
return lhs + rhs;
|
||||
}
|
||||
inline std::string VL_REPLICATEN_NNQ(int, int, int, const std::string& lhs, IData rep) VL_PURE {
|
||||
std::string out;
|
||||
out.reserve(lhs.length() * rep);
|
||||
for (unsigned times = 0; times < rep; ++times) out += lhs;
|
||||
return out;
|
||||
}
|
||||
inline std::string VL_REPLICATEN_NNI(int obits, int lbits, int rbits, const std::string& lhs,
|
||||
IData rep) VL_PURE {
|
||||
return VL_REPLICATEN_NNQ(obits, lbits, rbits, lhs, rep);
|
||||
}
|
||||
|
||||
inline IData VL_LEN_IN(const std::string& ld) { return ld.length(); }
|
||||
extern std::string VL_TOLOWER_NN(const std::string& ld);
|
||||
extern std::string VL_TOUPPER_NN(const std::string& ld);
|
||||
|
||||
extern IData VL_FERROR_IN(IData fpi, std::string& outputr) VL_MT_SAFE;
|
||||
extern IData VL_FOPEN_NN(const std::string& filename, const std::string& mode) VL_MT_SAFE;
|
||||
extern IData VL_FOPEN_MCD_N(const std::string& filename) VL_MT_SAFE;
|
||||
extern void VL_READMEM_N(bool hex, int bits, QData depth, int array_lsb,
|
||||
const std::string& filename, void* memp, QData start,
|
||||
QData end) VL_MT_SAFE;
|
||||
extern void VL_WRITEMEM_N(bool hex, int bits, QData depth, int array_lsb,
|
||||
const std::string& filename, const void* memp, QData start,
|
||||
QData end) VL_MT_SAFE;
|
||||
extern IData VL_SSCANF_INX(int lbits, const std::string& ld, const char* formatp, ...) VL_MT_SAFE;
|
||||
extern void VL_SFORMAT_X(int obits_ignored, std::string& output, const char* formatp,
|
||||
...) VL_MT_SAFE;
|
||||
extern std::string VL_SFORMATF_NX(const char* formatp, ...) VL_MT_SAFE;
|
||||
extern void VL_TIMEFORMAT_IINI(int units, int precision, const std::string& suffix, int width,
|
||||
VerilatedContext* contextp) VL_MT_SAFE;
|
||||
extern IData VL_VALUEPLUSARGS_INW(int rbits, const std::string& ld, WDataOutP rwp) VL_MT_SAFE;
|
||||
inline IData VL_VALUEPLUSARGS_INI(int rbits, const std::string& ld, CData& rdr) VL_MT_SAFE {
|
||||
WData rwp[2]; // WData must always be at least 2
|
||||
IData got = VL_VALUEPLUSARGS_INW(rbits, ld, rwp);
|
||||
if (got) rdr = rwp[0];
|
||||
return got;
|
||||
}
|
||||
inline IData VL_VALUEPLUSARGS_INI(int rbits, const std::string& ld, SData& rdr) VL_MT_SAFE {
|
||||
WData rwp[2]; // WData must always be at least 2
|
||||
IData got = VL_VALUEPLUSARGS_INW(rbits, ld, rwp);
|
||||
if (got) rdr = rwp[0];
|
||||
return got;
|
||||
}
|
||||
inline IData VL_VALUEPLUSARGS_INI(int rbits, const std::string& ld, IData& rdr) VL_MT_SAFE {
|
||||
WData rwp[2];
|
||||
IData got = VL_VALUEPLUSARGS_INW(rbits, ld, rwp);
|
||||
if (got) rdr = rwp[0];
|
||||
return got;
|
||||
}
|
||||
inline IData VL_VALUEPLUSARGS_INQ(int rbits, const std::string& ld, QData& rdr) VL_MT_SAFE {
|
||||
WData rwp[2];
|
||||
IData got = VL_VALUEPLUSARGS_INW(rbits, ld, rwp);
|
||||
if (got) rdr = VL_SET_QW(rwp);
|
||||
return got;
|
||||
}
|
||||
inline IData VL_VALUEPLUSARGS_INQ(int rbits, const std::string& ld, double& rdr) VL_MT_SAFE {
|
||||
WData rwp[2];
|
||||
IData got = VL_VALUEPLUSARGS_INW(rbits, ld, rwp);
|
||||
if (got) rdr = VL_CVT_D_Q(VL_SET_QW(rwp));
|
||||
return got;
|
||||
}
|
||||
extern IData VL_VALUEPLUSARGS_INN(int, const std::string& ld, std::string& rdr) VL_MT_SAFE;
|
||||
|
||||
//======================================================================
|
||||
// Strings
|
||||
|
||||
extern std::string VL_PUTC_N(const std::string& lhs, IData rhs, CData ths) VL_PURE;
|
||||
extern CData VL_GETC_N(const std::string& lhs, IData rhs) VL_PURE;
|
||||
extern std::string VL_SUBSTR_N(const std::string& lhs, IData rhs, IData ths) VL_PURE;
|
||||
|
||||
inline IData VL_CMP_NN(const std::string& lhs, const std::string& rhs, bool ignoreCase) VL_PURE {
|
||||
// SystemVerilog does not allow a string variable to contain '\0'.
|
||||
// So C functions such as strcmp() can correctly compare strings.
|
||||
if (ignoreCase) {
|
||||
return VL_STRCASECMP(lhs.c_str(), rhs.c_str());
|
||||
} else {
|
||||
return std::strcmp(lhs.c_str(), rhs.c_str());
|
||||
}
|
||||
}
|
||||
|
||||
extern IData VL_ATOI_N(const std::string& str, int base) VL_PURE;
|
||||
|
||||
extern IData VL_FGETS_NI(std::string& dest, IData fpi);
|
||||
|
||||
#endif // Guard
|
||||
|
||||
+26
-27
@@ -30,7 +30,6 @@
|
||||
|
||||
#include "verilatedos.h"
|
||||
#include "verilated.h"
|
||||
#include "verilated_heavy.h"
|
||||
#include "verilated_syms.h"
|
||||
|
||||
#include <deque>
|
||||
@@ -104,7 +103,7 @@ public:
|
||||
// METHODS
|
||||
// Add message to queue (called by producer)
|
||||
void post(const VerilatedMsg& msg) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_queue.insert(msg); // Pass by value to copy the message into queue
|
||||
++m_depth;
|
||||
}
|
||||
@@ -124,7 +123,7 @@ public:
|
||||
const VerilatedMsg msg = *(it);
|
||||
m_queue.erase(it);
|
||||
m_mutex.unlock();
|
||||
m_depth--; // Ok if outside critical section as only this code checks the value
|
||||
--m_depth; // Ok if outside critical section as only this code checks the value
|
||||
{
|
||||
VL_DEBUG_IF(VL_DBG_MSGF("Executing callback from mtaskId=%d\n", msg.mtaskId()););
|
||||
msg.run();
|
||||
@@ -179,7 +178,7 @@ public:
|
||||
|
||||
// FILE* list constructed from a file-descriptor
|
||||
class VerilatedFpList final {
|
||||
FILE* m_fp[31];
|
||||
FILE* m_fp[31] = {};
|
||||
std::size_t m_sz = 0;
|
||||
|
||||
public:
|
||||
@@ -256,11 +255,11 @@ public: // But only for verilated*.cpp
|
||||
int timeFormatWidth() const VL_MT_SAFE { return m_s.m_timeFormatWidth; }
|
||||
void timeFormatWidth(int value) VL_MT_SAFE { m_s.m_timeFormatWidth = value; }
|
||||
std::string timeFormatSuffix() const VL_MT_SAFE_EXCLUDES(m_timeDumpMutex) {
|
||||
const VerilatedLockGuard lock(m_timeDumpMutex);
|
||||
const VerilatedLockGuard lock{m_timeDumpMutex};
|
||||
return m_timeFormatSuffix;
|
||||
}
|
||||
void timeFormatSuffix(const std::string& value) VL_MT_SAFE_EXCLUDES(m_timeDumpMutex) {
|
||||
const VerilatedLockGuard lock(m_timeDumpMutex);
|
||||
const VerilatedLockGuard lock{m_timeDumpMutex};
|
||||
m_timeFormatSuffix = value;
|
||||
}
|
||||
|
||||
@@ -276,7 +275,7 @@ public: // But only for verilated*.cpp
|
||||
public: // But only for verilated*.cpp
|
||||
// METHODS - file IO
|
||||
IData fdNewMcd(const char* filenamep) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
if (m_fdFreeMct.empty()) return 0;
|
||||
IData idx = m_fdFreeMct.back();
|
||||
m_fdFreeMct.pop_back();
|
||||
@@ -285,10 +284,10 @@ public: // But only for verilated*.cpp
|
||||
return (1 << idx);
|
||||
}
|
||||
IData fdNew(const char* filenamep, const char* modep) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
FILE* fp = std::fopen(filenamep, modep);
|
||||
FILE* const fp = std::fopen(filenamep, modep);
|
||||
if (VL_UNLIKELY(!fp)) return 0;
|
||||
// Bit 31 indicates it's a descriptor not a MCD
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
if (m_fdFree.empty()) {
|
||||
// Need to create more space in m_fdps and m_fdFree
|
||||
const std::size_t start = std::max<std::size_t>(31UL + 1UL + 3UL, m_fdps.size());
|
||||
@@ -306,25 +305,25 @@ public: // But only for verilated*.cpp
|
||||
return (idx | (1UL << 31)); // bit 31 indicates not MCD
|
||||
}
|
||||
void fdFlush(IData fdi) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
const VerilatedFpList fdlist = fdToFpList(fdi);
|
||||
for (const auto& i : fdlist) std::fflush(i);
|
||||
}
|
||||
IData fdSeek(IData fdi, IData offset, IData origin) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
const VerilatedFpList fdlist = fdToFpList(fdi);
|
||||
if (VL_UNLIKELY(fdlist.size() != 1)) return 0;
|
||||
return static_cast<IData>(
|
||||
std::fseek(*fdlist.begin(), static_cast<long>(offset), static_cast<int>(origin)));
|
||||
}
|
||||
IData fdTell(IData fdi) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
const VerilatedFpList fdlist = fdToFpList(fdi);
|
||||
if (VL_UNLIKELY(fdlist.size() != 1)) return 0;
|
||||
return static_cast<IData>(std::ftell(*fdlist.begin()));
|
||||
}
|
||||
void fdWrite(IData fdi, const std::string& output) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
const VerilatedFpList fdlist = fdToFpList(fdi);
|
||||
for (const auto& i : fdlist) {
|
||||
if (VL_UNLIKELY(!i)) continue;
|
||||
@@ -332,7 +331,7 @@ public: // But only for verilated*.cpp
|
||||
}
|
||||
}
|
||||
void fdClose(IData fdi) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
if (VL_BITISSET_I(fdi, 31)) {
|
||||
// Non-MCD case
|
||||
IData idx = VL_MASK_I(31) & fdi;
|
||||
@@ -356,7 +355,7 @@ public: // But only for verilated*.cpp
|
||||
}
|
||||
}
|
||||
inline FILE* fdToFp(IData fdi) VL_MT_SAFE_EXCLUDES(m_fdMutex) {
|
||||
const VerilatedLockGuard lock(m_fdMutex);
|
||||
const VerilatedLockGuard lock{m_fdMutex};
|
||||
const VerilatedFpList fdlist = fdToFpList(fdi);
|
||||
if (VL_UNLIKELY(fdlist.size() != 1)) return nullptr;
|
||||
return *fdlist.begin();
|
||||
@@ -463,7 +462,7 @@ public:
|
||||
// per map overhead * N scopes would take much more space and cache thrashing.
|
||||
// As scopep's are pointers, this implicitly handles multiple Context's
|
||||
static inline void userInsert(const void* scopep, void* userKey, void* userData) VL_MT_SAFE {
|
||||
const VerilatedLockGuard lock(s().m_userMapMutex);
|
||||
const VerilatedLockGuard lock{s().m_userMapMutex};
|
||||
const auto it = s().m_userMap.find(std::make_pair(scopep, userKey));
|
||||
if (it != s().m_userMap.end()) {
|
||||
it->second = userData;
|
||||
@@ -472,7 +471,7 @@ public:
|
||||
}
|
||||
}
|
||||
static inline void* userFind(const void* scopep, void* userKey) VL_MT_SAFE {
|
||||
const VerilatedLockGuard lock(s().m_userMapMutex);
|
||||
const VerilatedLockGuard lock{s().m_userMapMutex};
|
||||
const auto& it = vlstd::as_const(s().m_userMap).find(std::make_pair(scopep, userKey));
|
||||
if (VL_UNLIKELY(it == s().m_userMap.end())) return nullptr;
|
||||
return it->second;
|
||||
@@ -482,7 +481,7 @@ public: // But only for verilated.cpp
|
||||
// Symbol table destruction cleans up the entries for each scope.
|
||||
static void userEraseScope(const VerilatedScope* scopep) VL_MT_SAFE {
|
||||
// Slow ok - called once/scope on destruction, so we simply iterate.
|
||||
const VerilatedLockGuard lock(s().m_userMapMutex);
|
||||
const VerilatedLockGuard lock{s().m_userMapMutex};
|
||||
for (auto it = s().m_userMap.begin(); it != s().m_userMap.end();) {
|
||||
if (it->first.first == scopep) {
|
||||
s().m_userMap.erase(it++);
|
||||
@@ -492,7 +491,7 @@ public: // But only for verilated.cpp
|
||||
}
|
||||
}
|
||||
static void userDump() VL_MT_SAFE {
|
||||
const VerilatedLockGuard lock(s().m_userMapMutex); // Avoid it changing in middle of dump
|
||||
const VerilatedLockGuard lock{s().m_userMapMutex}; // Avoid it changing in middle of dump
|
||||
bool first = true;
|
||||
for (const auto& i : s().m_userMap) {
|
||||
if (first) {
|
||||
@@ -508,13 +507,13 @@ public: // But only for verilated*.cpp
|
||||
// METHODS - hierarchy
|
||||
static void hierarchyAdd(const VerilatedScope* fromp, const VerilatedScope* top) VL_MT_SAFE {
|
||||
// Slow ok - called at construction for VPI accessible elements
|
||||
const VerilatedLockGuard lock(s().m_hierMapMutex);
|
||||
const VerilatedLockGuard lock{s().m_hierMapMutex};
|
||||
s().m_hierMap[fromp].push_back(top);
|
||||
}
|
||||
static void hierarchyRemove(const VerilatedScope* fromp,
|
||||
const VerilatedScope* top) VL_MT_SAFE {
|
||||
// Slow ok - called at destruction for VPI accessible elements
|
||||
const VerilatedLockGuard lock(s().m_hierMapMutex);
|
||||
const VerilatedLockGuard lock{s().m_hierMapMutex};
|
||||
VerilatedHierarchyMap& map = s().m_hierMap;
|
||||
if (map.find(fromp) == map.end()) return;
|
||||
auto& scopes = map[fromp];
|
||||
@@ -537,7 +536,7 @@ public: // But only for verilated*.cpp
|
||||
// miss at the cost of a multiply, and all lookups move to slowpath.
|
||||
static int exportInsert(const char* namep) VL_MT_SAFE {
|
||||
// Slow ok - called once/function at creation
|
||||
const VerilatedLockGuard lock(s().m_exportMutex);
|
||||
const VerilatedLockGuard lock{s().m_exportMutex};
|
||||
const auto it = s().m_exportMap.find(namep);
|
||||
if (it == s().m_exportMap.end()) {
|
||||
s().m_exportMap.emplace(namep, s().m_exportNext++);
|
||||
@@ -547,24 +546,24 @@ public: // But only for verilated*.cpp
|
||||
}
|
||||
}
|
||||
static int exportFind(const char* namep) VL_MT_SAFE {
|
||||
const VerilatedLockGuard lock(s().m_exportMutex);
|
||||
const VerilatedLockGuard lock{s().m_exportMutex};
|
||||
const auto& it = s().m_exportMap.find(namep);
|
||||
if (VL_LIKELY(it != s().m_exportMap.end())) return it->second;
|
||||
std::string msg = (std::string("%Error: Testbench C called ") + namep
|
||||
+ " but no such DPI export function name exists in ANY model");
|
||||
const std::string msg = (std::string{"%Error: Testbench C called "} + namep
|
||||
+ " but no such DPI export function name exists in ANY model");
|
||||
VL_FATAL_MT("unknown", 0, "", msg.c_str());
|
||||
return -1;
|
||||
}
|
||||
static const char* exportName(int funcnum) VL_MT_SAFE {
|
||||
// Slowpath; find name for given export; errors only so no map to reverse-map it
|
||||
const VerilatedLockGuard lock(s().m_exportMutex);
|
||||
const VerilatedLockGuard lock{s().m_exportMutex};
|
||||
for (const auto& i : s().m_exportMap) {
|
||||
if (i.second == funcnum) return i.first;
|
||||
}
|
||||
return "*UNKNOWN*";
|
||||
}
|
||||
static void exportsDump() VL_MT_SAFE {
|
||||
const VerilatedLockGuard lock(s().m_exportMutex);
|
||||
const VerilatedLockGuard lock{s().m_exportMutex};
|
||||
bool first = true;
|
||||
for (const auto& i : s().m_exportMap) {
|
||||
if (first) {
|
||||
|
||||
@@ -0,0 +1,113 @@
|
||||
// -*- mode: C++; c-file-style: "cc-mode" -*-
|
||||
//=============================================================================
|
||||
//
|
||||
// Code available from: https://verilator.org
|
||||
//
|
||||
// Copyright 2012-2021 by Wilson Snyder. This program is free software; you
|
||||
// can redistribute it and/or modify it under the terms of either the GNU
|
||||
// Lesser General Public License Version 3 or the Perl Artistic License
|
||||
// Version 2.0.
|
||||
// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
//
|
||||
//=============================================================================
|
||||
///
|
||||
/// \file
|
||||
/// \brief Verilated general profiling header
|
||||
///
|
||||
/// This file is not part of the Verilated public-facing API.
|
||||
/// It is only for internal use by Verilated library routines.
|
||||
///
|
||||
//=============================================================================
|
||||
|
||||
#ifndef VERILATOR_VERILATED_PROFILER_H_
|
||||
#define VERILATOR_VERILATED_PROFILER_H_
|
||||
|
||||
#include "verilatedos.h"
|
||||
#include "verilated.h" // for VerilatedMutex and clang annotations
|
||||
|
||||
// Profile record, private class used only by this header
|
||||
class VerilatedProfilerRec final {
|
||||
std::string m_name; // Hashed name of mtask/etc
|
||||
size_t m_counterNumber = 0; // Which counter has data
|
||||
public:
|
||||
// METHODS
|
||||
VerilatedProfilerRec(size_t counterNumber, const std::string& name)
|
||||
: m_name{name}
|
||||
, m_counterNumber{counterNumber} {}
|
||||
VerilatedProfilerRec() = default;
|
||||
size_t counterNumber() const { return m_counterNumber; }
|
||||
std::string name() const { return m_name; }
|
||||
};
|
||||
|
||||
// Create some number of bucketed profilers
|
||||
template <std::size_t T_Entries> class VerilatedProfiler final {
|
||||
// Counters are stored packed, all together, versus in VerilatedProfilerRec to
|
||||
// reduce cache effects
|
||||
std::array<vluint64_t, T_Entries> m_counters{}; // Time spent on this record
|
||||
std::deque<VerilatedProfilerRec> m_records; // Record information
|
||||
|
||||
public:
|
||||
// METHODS
|
||||
VerilatedProfiler() = default;
|
||||
~VerilatedProfiler() = default;
|
||||
void write(const char* modelp, const std::string& filename) VL_MT_SAFE;
|
||||
void addCounter(size_t counter, const std::string& name) {
|
||||
VL_DEBUG_IF(assert(counter < T_Entries););
|
||||
m_records.emplace_back(VerilatedProfilerRec{counter, name});
|
||||
}
|
||||
void startCounter(size_t counter) {
|
||||
vluint64_t val;
|
||||
VL_RDTSC(val);
|
||||
// -= so when we add end time in stopCounter, we already subtracted
|
||||
// out, without needing to hold another temporary
|
||||
m_counters[counter] -= val;
|
||||
}
|
||||
void stopCounter(size_t counter) {
|
||||
vluint64_t val;
|
||||
VL_RDTSC(val);
|
||||
m_counters[counter] += val;
|
||||
}
|
||||
};
|
||||
|
||||
template <std::size_t T_Entries>
|
||||
void VerilatedProfiler<T_Entries>::write(const char* modelp,
|
||||
const std::string& filename) VL_MT_SAFE {
|
||||
static VerilatedMutex s_mutex;
|
||||
const VerilatedLockGuard lock{s_mutex};
|
||||
|
||||
// On the first call we create the file. On later calls we append.
|
||||
// So when we have multiple models in an executable, possibly even
|
||||
// running on different threads, each will have a different symtab so
|
||||
// each will collect is own data correctly. However when each is
|
||||
// destroid we need to get all the data, not keep overwriting and only
|
||||
// get the last model's data.
|
||||
static bool s_firstCall = true;
|
||||
|
||||
VL_DEBUG_IF(VL_DBG_MSGF("+prof+vlt+file writing to '%s'\n", filename.c_str()););
|
||||
|
||||
FILE* fp = nullptr;
|
||||
if (!s_firstCall) fp = std::fopen(filename.c_str(), "a");
|
||||
if (VL_UNLIKELY(!fp))
|
||||
fp = std::fopen(filename.c_str(), "w"); // firstCall, or doesn't exist yet
|
||||
if (VL_UNLIKELY(!fp)) {
|
||||
VL_FATAL_MT(filename.c_str(), 0, "", "+prof+vlt+file file not writable");
|
||||
// cppcheck-suppress resourceLeak // bug, doesn't realize fp is nullptr
|
||||
return; // LCOV_EXCL_LINE
|
||||
}
|
||||
s_firstCall = false;
|
||||
|
||||
// TODO Perhaps merge with verilated_coverage output format, so can
|
||||
// have a common merging and reporting tool, etc.
|
||||
fprintf(fp, "// Verilated model profile-guided optimization data dump file\n");
|
||||
fprintf(fp, "`verilator_config\n");
|
||||
|
||||
for (const auto& it : m_records) {
|
||||
const std::string& name = it.name();
|
||||
fprintf(fp, "profile_data -model \"%s\" -mtask \"%s\" -cost 64'd%" VL_PRI64 "u\n", modelp,
|
||||
name.c_str(), m_counters[it.counterNumber()]);
|
||||
}
|
||||
|
||||
std::fclose(fp);
|
||||
}
|
||||
|
||||
#endif
|
||||
+18
-16
@@ -72,9 +72,10 @@ bool VerilatedDeserialize::readDiffers(const void* __restrict datap,
|
||||
VerilatedDeserialize& VerilatedDeserialize::readAssert(const void* __restrict datap,
|
||||
size_t size) VL_MT_UNSAFE_ONE {
|
||||
if (VL_UNLIKELY(readDiffers(datap, size))) {
|
||||
std::string fn = filename();
|
||||
std::string msg = "Can't deserialize save-restore file as was made from different model: "
|
||||
+ filename();
|
||||
const std::string fn = filename();
|
||||
const std::string msg
|
||||
= "Can't deserialize save-restore file as was made from different model: "
|
||||
+ filename();
|
||||
VL_FATAL_MT(fn.c_str(), 0, "", msg.c_str());
|
||||
// Die before we close() as close would infinite loop
|
||||
}
|
||||
@@ -90,10 +91,10 @@ void VerilatedSerialize::header() VL_MT_UNSAFE_ONE {
|
||||
void VerilatedDeserialize::header() VL_MT_UNSAFE_ONE {
|
||||
VerilatedDeserialize& os = *this; // So can cut and paste standard >> code below
|
||||
if (VL_UNLIKELY(os.readDiffers(VLTSAVE_HEADER_STR, std::strlen(VLTSAVE_HEADER_STR)))) {
|
||||
std::string fn = filename();
|
||||
std::string msg
|
||||
= std::string(
|
||||
"Can't deserialize; file has wrong header signature, or file not found: ")
|
||||
const std::string fn = filename();
|
||||
const std::string msg
|
||||
= std::
|
||||
string{"Can't deserialize; file has wrong header signature, or file not found: "}
|
||||
+ filename();
|
||||
VL_FATAL_MT(fn.c_str(), 0, "", msg.c_str());
|
||||
// Die before we close() as close would infinite loop
|
||||
@@ -109,9 +110,10 @@ void VerilatedSerialize::trailer() VL_MT_UNSAFE_ONE {
|
||||
void VerilatedDeserialize::trailer() VL_MT_UNSAFE_ONE {
|
||||
VerilatedDeserialize& os = *this; // So can cut and paste standard >> code below
|
||||
if (VL_UNLIKELY(os.readDiffers(VLTSAVE_TRAILER_STR, std::strlen(VLTSAVE_TRAILER_STR)))) {
|
||||
std::string fn = filename();
|
||||
std::string msg = std::string("Can't deserialize; file has wrong end-of-file signature: ")
|
||||
+ filename();
|
||||
const std::string fn = filename();
|
||||
const std::string msg
|
||||
= std::string{"Can't deserialize; file has wrong end-of-file signature: "}
|
||||
+ filename();
|
||||
VL_FATAL_MT(fn.c_str(), 0, "", msg.c_str());
|
||||
// Die before we close() as close would infinite loop
|
||||
}
|
||||
@@ -192,17 +194,17 @@ void VerilatedSave::flush() VL_MT_UNSAFE_ONE {
|
||||
if (VL_UNLIKELY(!isOpen())) return;
|
||||
vluint8_t* wp = m_bufp;
|
||||
while (true) {
|
||||
ssize_t remaining = (m_cp - wp);
|
||||
const ssize_t remaining = (m_cp - wp);
|
||||
if (remaining == 0) break;
|
||||
errno = 0;
|
||||
ssize_t got = ::write(m_fd, wp, remaining);
|
||||
const ssize_t got = ::write(m_fd, wp, remaining);
|
||||
if (got > 0) {
|
||||
wp += got;
|
||||
} else if (VL_UNCOVERABLE(got < 0)) {
|
||||
if (VL_UNCOVERABLE(errno != EAGAIN && errno != EINTR)) {
|
||||
// LCOV_EXCL_START
|
||||
// write failed, presume error (perhaps out of disk space)
|
||||
std::string msg = std::string(__FUNCTION__) + ": " + std::strerror(errno);
|
||||
const std::string msg = std::string{__FUNCTION__} + ": " + std::strerror(errno);
|
||||
VL_FATAL_MT("", 0, "", msg.c_str());
|
||||
close();
|
||||
break;
|
||||
@@ -223,17 +225,17 @@ void VerilatedRestore::fill() VL_MT_UNSAFE_ONE {
|
||||
m_cp = m_bufp; // Reset buffer
|
||||
// Read into buffer starting at m_endp
|
||||
while (true) {
|
||||
ssize_t remaining = (m_bufp + bufferSize() - m_endp);
|
||||
const ssize_t remaining = (m_bufp + bufferSize() - m_endp);
|
||||
if (remaining == 0) break;
|
||||
errno = 0;
|
||||
ssize_t got = ::read(m_fd, m_endp, remaining);
|
||||
const ssize_t got = ::read(m_fd, m_endp, remaining);
|
||||
if (got > 0) {
|
||||
m_endp += got;
|
||||
} else if (VL_UNCOVERABLE(got < 0)) {
|
||||
if (VL_UNCOVERABLE(errno != EAGAIN && errno != EINTR)) {
|
||||
// LCOV_EXCL_START
|
||||
// write failed, presume error (perhaps out of disk space)
|
||||
std::string msg = std::string(__FUNCTION__) + ": " + std::strerror(errno);
|
||||
const std::string msg = std::string{__FUNCTION__} + ": " + std::strerror(errno);
|
||||
VL_FATAL_MT("", 0, "", msg.c_str());
|
||||
close();
|
||||
break;
|
||||
|
||||
+11
-11
@@ -23,7 +23,7 @@
|
||||
#define VERILATOR_VERILATED_SAVE_C_H_
|
||||
|
||||
#include "verilatedos.h"
|
||||
#include "verilated_heavy.h"
|
||||
#include "verilated.h"
|
||||
|
||||
#include <string>
|
||||
|
||||
@@ -236,43 +236,43 @@ public:
|
||||
|
||||
//=============================================================================
|
||||
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, vluint64_t& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const vluint64_t& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, vluint64_t& rhs) {
|
||||
return os.read(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, vluint32_t& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const vluint32_t& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, vluint32_t& rhs) {
|
||||
return os.read(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, vluint16_t& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const vluint16_t& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, vluint16_t& rhs) {
|
||||
return os.read(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, vluint8_t& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const vluint8_t& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, vluint8_t& rhs) {
|
||||
return os.read(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, bool& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const bool& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, bool& rhs) {
|
||||
return os.read(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, double& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const double& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, double& rhs) {
|
||||
return os.read(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, float& rhs) {
|
||||
inline VerilatedSerialize& operator<<(VerilatedSerialize& os, const float& rhs) {
|
||||
return os.write(&rhs, sizeof(rhs));
|
||||
}
|
||||
inline VerilatedDeserialize& operator>>(VerilatedDeserialize& os, float& rhs) {
|
||||
@@ -295,11 +295,11 @@ VerilatedDeserialize& operator>>(VerilatedDeserialize& os, VerilatedContext* rhs
|
||||
template <class T_Key, class T_Value>
|
||||
VerilatedSerialize& operator<<(VerilatedSerialize& os, VlAssocArray<T_Key, T_Value>& rhs) {
|
||||
os << rhs.atDefault();
|
||||
vluint32_t len = rhs.size();
|
||||
const vluint32_t len = rhs.size();
|
||||
os << len;
|
||||
for (const auto& i : rhs) {
|
||||
T_Key index = i.first; // Copy to get around const_iterator
|
||||
T_Value value = i.second;
|
||||
const T_Key index = i.first; // Copy to get around const_iterator
|
||||
const T_Value value = i.second;
|
||||
os << index << value;
|
||||
}
|
||||
return os;
|
||||
|
||||
@@ -152,30 +152,34 @@ public:
|
||||
const VerilatedRange& unpacked() const { return m_unpacked[0]; }
|
||||
// DPI accessors
|
||||
int left(int dim) const {
|
||||
return dim == 0 ? m_packed.left()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].left() : 0;
|
||||
return dim == 0 ? m_packed.left()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].left()
|
||||
: 0;
|
||||
}
|
||||
int right(int dim) const {
|
||||
return dim == 0 ? m_packed.right()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].right() : 0;
|
||||
return dim == 0 ? m_packed.right()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].right()
|
||||
: 0;
|
||||
}
|
||||
int low(int dim) const {
|
||||
return dim == 0 ? m_packed.low()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].low() : 0;
|
||||
return dim == 0 ? m_packed.low()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].low()
|
||||
: 0;
|
||||
}
|
||||
int high(int dim) const {
|
||||
return dim == 0 ? m_packed.high()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].high() : 0;
|
||||
return dim == 0 ? m_packed.high()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].high()
|
||||
: 0;
|
||||
}
|
||||
int increment(int dim) const {
|
||||
return dim == 0
|
||||
? m_packed.increment()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].increment() : 0;
|
||||
return dim == 0 ? m_packed.increment()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].increment()
|
||||
: 0;
|
||||
}
|
||||
int elements(int dim) const {
|
||||
return dim == 0
|
||||
? m_packed.elements()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].elements() : 0;
|
||||
return dim == 0 ? m_packed.elements()
|
||||
: VL_LIKELY(dim >= 1 && dim <= udims()) ? m_unpacked[dim - 1].elements()
|
||||
: 0;
|
||||
}
|
||||
// Total size in bytes (note DPI limited to 4GB)
|
||||
size_t totalSize() const;
|
||||
|
||||
@@ -30,7 +30,7 @@
|
||||
#define VERILATOR_VERILATED_SYMS_H_
|
||||
|
||||
#include "verilatedos.h"
|
||||
#include "verilated_heavy.h"
|
||||
#include "verilated.h"
|
||||
#include "verilated_sym_props.h"
|
||||
|
||||
#include <map>
|
||||
|
||||
@@ -25,6 +25,7 @@
|
||||
#include "verilated_threads.h"
|
||||
|
||||
#include <cstdio>
|
||||
#include <fstream>
|
||||
|
||||
//=============================================================================
|
||||
// Globals
|
||||
@@ -48,7 +49,8 @@ VlMTaskVertex::VlMTaskVertex(vluint32_t upstreamDepCount)
|
||||
// VlWorkerThread
|
||||
|
||||
VlWorkerThread::VlWorkerThread(VlThreadPool* poolp, VerilatedContext* contextp, bool profiling)
|
||||
: m_poolp{poolp}
|
||||
: m_ready_size{0}
|
||||
, m_poolp{poolp}
|
||||
, m_profiling{profiling} // Must init this last -- after setting up fields that it might read:
|
||||
, m_exiting{false}
|
||||
, m_cthread{startWorker, this}
|
||||
@@ -74,7 +76,7 @@ void VlWorkerThread::workerLoop() {
|
||||
if (VL_UNLIKELY(m_exiting.load(std::memory_order_acquire))) break;
|
||||
|
||||
if (VL_LIKELY(work.m_fnp)) {
|
||||
work.m_fnp(work.m_evenCycle, work.m_sym);
|
||||
work.m_fnp(work.m_selfp, work.m_evenCycle);
|
||||
work.m_fnp = nullptr;
|
||||
}
|
||||
}
|
||||
@@ -93,7 +95,7 @@ void VlWorkerThread::startWorker(VlWorkerThread* workerp) {
|
||||
VlThreadPool::VlThreadPool(VerilatedContext* contextp, int nThreads, bool profiling)
|
||||
: m_profiling{profiling} {
|
||||
// --threads N passes nThreads=N-1, as the "main" threads counts as 1
|
||||
unsigned cpus = std::thread::hardware_concurrency();
|
||||
const unsigned cpus = std::thread::hardware_concurrency();
|
||||
if (cpus < nThreads + 1) {
|
||||
static int warnedOnce = 0;
|
||||
if (!warnedOnce++) {
|
||||
@@ -104,7 +106,7 @@ VlThreadPool::VlThreadPool(VerilatedContext* contextp, int nThreads, bool profil
|
||||
}
|
||||
// Create'em
|
||||
for (int i = 0; i < nThreads; ++i) {
|
||||
m_workers.push_back(new VlWorkerThread(this, contextp, profiling));
|
||||
m_workers.push_back(new VlWorkerThread{this, contextp, profiling});
|
||||
}
|
||||
// Set up a profile buffer for the current thread too -- on the
|
||||
// assumption that it's the same thread that calls eval and may be
|
||||
@@ -131,25 +133,25 @@ void VlThreadPool::setupProfilingClientThread() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
// try not to malloc while collecting profiling.
|
||||
t_profilep->reserve(4096);
|
||||
{
|
||||
const VerilatedLockGuard lk(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_allProfiles.insert(t_profilep);
|
||||
}
|
||||
}
|
||||
|
||||
void VlThreadPool::profileAppendAll(const VlProfileRec& rec) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lk(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
for (const auto& profilep : m_allProfiles) {
|
||||
// Every thread's profile trace gets a copy of rec.
|
||||
profilep->emplace_back(rec);
|
||||
}
|
||||
}
|
||||
|
||||
void VlThreadPool::profileDump(const char* filenamep, vluint64_t ticksElapsed)
|
||||
void VlThreadPool::profileDump(const char* filenamep, vluint64_t tickStart, vluint64_t tickEnd)
|
||||
VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lk(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
VL_DEBUG_IF(VL_DBG_MSGF("+prof+threads writing to '%s'\n", filenamep););
|
||||
|
||||
FILE* fp = std::fopen(filenamep, "w");
|
||||
FILE* const fp = std::fopen(filenamep, "w");
|
||||
if (VL_UNLIKELY(!fp)) {
|
||||
VL_FATAL_MT(filenamep, 0, "", "+prof+threads+file file not writable");
|
||||
// cppcheck-suppress resourceLeak // bug, doesn't realize fp is nullptr
|
||||
@@ -158,7 +160,7 @@ void VlThreadPool::profileDump(const char* filenamep, vluint64_t ticksElapsed)
|
||||
|
||||
// TODO Perhaps merge with verilated_coverage output format, so can
|
||||
// have a common merging and reporting tool, etc.
|
||||
fprintf(fp, "VLPROFTHREAD 1.0 # Verilator thread profile dump version 1.0\n");
|
||||
fprintf(fp, "VLPROFTHREAD 1.1 # Verilator thread profile dump version 1.1\n");
|
||||
fprintf(fp, "VLPROF arg --threads %" VL_PRI64 "u\n", vluint64_t(m_workers.size() + 1));
|
||||
fprintf(fp, "VLPROF arg +verilator+prof+threads+start+%" VL_PRI64 "u\n",
|
||||
Verilated::threadContextp()->profThreadsStart());
|
||||
@@ -166,6 +168,16 @@ void VlThreadPool::profileDump(const char* filenamep, vluint64_t ticksElapsed)
|
||||
Verilated::threadContextp()->profThreadsWindow());
|
||||
fprintf(fp, "VLPROF stat yields %" VL_PRI64 "u\n", VlMTaskVertex::yields());
|
||||
|
||||
// Copy /proc/cpuinfo into this output so verilator_gantt can be run on
|
||||
// a different machine
|
||||
{
|
||||
const std::unique_ptr<std::ifstream> ifp{new std::ifstream("/proc/cpuinfo")};
|
||||
if (!ifp->fail()) {
|
||||
std::string line;
|
||||
while (std::getline(*ifp, line)) { fprintf(fp, "VLPROFPROC %s\n", line.c_str()); }
|
||||
}
|
||||
}
|
||||
|
||||
vluint32_t thread_id = 0;
|
||||
for (const auto& pi : m_allProfiles) {
|
||||
++thread_id;
|
||||
@@ -176,20 +188,36 @@ void VlThreadPool::profileDump(const char* filenamep, vluint64_t ticksElapsed)
|
||||
case VlProfileRec::TYPE_BARRIER: //
|
||||
printing = true;
|
||||
break;
|
||||
case VlProfileRec::TYPE_EVAL:
|
||||
if (!printing) break;
|
||||
fprintf(fp,
|
||||
"VLPROF eval start %" VL_PRI64 "u elapsed %" VL_PRI64 "u"
|
||||
" cpu %u on thread %u\n",
|
||||
ei.m_startTime - tickStart, (ei.m_endTime - ei.m_startTime), ei.m_cpu,
|
||||
thread_id);
|
||||
break;
|
||||
case VlProfileRec::TYPE_EVAL_LOOP:
|
||||
if (!printing) break;
|
||||
fprintf(fp,
|
||||
"VLPROF eval_loop start %" VL_PRI64 "u elapsed %" VL_PRI64 "u"
|
||||
" cpu %u on thread %u\n",
|
||||
ei.m_startTime - tickStart, (ei.m_endTime - ei.m_startTime), ei.m_cpu,
|
||||
thread_id);
|
||||
break;
|
||||
case VlProfileRec::TYPE_MTASK_RUN:
|
||||
if (!printing) break;
|
||||
fprintf(fp,
|
||||
"VLPROF mtask %d"
|
||||
" start %" VL_PRI64 "u end %" VL_PRI64 "u elapsed %" VL_PRI64 "u"
|
||||
" predict_time %u cpu %u on thread %u\n",
|
||||
ei.m_mtaskId, ei.m_startTime, ei.m_endTime,
|
||||
(ei.m_endTime - ei.m_startTime), ei.m_predictTime, ei.m_cpu, thread_id);
|
||||
" start %" VL_PRI64 "u elapsed %" VL_PRI64 "u"
|
||||
" predict_start %u predict_cost %u cpu %u on thread %u\n",
|
||||
ei.m_mtaskId, ei.m_startTime - tickStart, (ei.m_endTime - ei.m_startTime),
|
||||
ei.m_predictStart, ei.m_predictCost, ei.m_cpu, thread_id);
|
||||
break;
|
||||
default: assert(false); break; // LCOV_EXCL_LINE
|
||||
}
|
||||
}
|
||||
}
|
||||
fprintf(fp, "VLPROF stat ticks %" VL_PRI64 "u\n", ticksElapsed);
|
||||
fprintf(fp, "VLPROF stat ticks %" VL_PRI64 "u\n", tickEnd - tickStart);
|
||||
|
||||
std::fclose(fp);
|
||||
}
|
||||
|
||||
+40
-24
@@ -48,12 +48,12 @@
|
||||
#endif
|
||||
// clang-format on
|
||||
|
||||
// VlMTaskVertex and VlThreadpool will work with multiple symbol table types.
|
||||
// VlMTaskVertex and VlThreadpool will work with multiple model class types.
|
||||
// Since the type is opaque to VlMTaskVertex and VlThreadPool, represent it
|
||||
// as a void* here.
|
||||
using VlThrSymTab = void*;
|
||||
using VlSelfP = void*;
|
||||
|
||||
using VlExecFnp = void (*)(bool, VlThrSymTab);
|
||||
using VlExecFnp = void (*)(VlSelfP, bool);
|
||||
|
||||
// Track dependencies for a single MTask.
|
||||
class VlMTaskVertex final {
|
||||
@@ -99,19 +99,19 @@ public:
|
||||
// false while it's still waiting on more dependencies.
|
||||
inline bool signalUpstreamDone(bool evenCycle) {
|
||||
if (evenCycle) {
|
||||
vluint32_t upstreamDepsDone
|
||||
const vluint32_t upstreamDepsDone
|
||||
= 1 + m_upstreamDepsDone.fetch_add(1, std::memory_order_release);
|
||||
assert(upstreamDepsDone <= m_upstreamDepCount);
|
||||
return (upstreamDepsDone == m_upstreamDepCount);
|
||||
} else {
|
||||
vluint32_t upstreamDepsDone_prev
|
||||
const vluint32_t upstreamDepsDone_prev
|
||||
= m_upstreamDepsDone.fetch_sub(1, std::memory_order_release);
|
||||
assert(upstreamDepsDone_prev > 0);
|
||||
return (upstreamDepsDone_prev == 1);
|
||||
}
|
||||
}
|
||||
inline bool areUpstreamDepsDone(bool evenCycle) const {
|
||||
vluint32_t target = evenCycle ? m_upstreamDepCount : 0;
|
||||
const vluint32_t target = evenCycle ? m_upstreamDepCount : 0;
|
||||
return m_upstreamDepsDone.load(std::memory_order_acquire) == target;
|
||||
}
|
||||
inline void waitUntilUpstreamDone(bool evenCycle) const {
|
||||
@@ -131,21 +131,36 @@ public:
|
||||
class VlProfileRec final {
|
||||
protected:
|
||||
friend class VlThreadPool;
|
||||
enum VlProfileE { TYPE_MTASK_RUN, TYPE_BARRIER };
|
||||
VlProfileE m_type = TYPE_BARRIER; // Record type
|
||||
vluint32_t m_mtaskId = 0; // Mtask we're logging
|
||||
vluint32_t m_predictTime = 0; // How long scheduler predicted would take
|
||||
vluint64_t m_startTime = 0; // Tick at start of execution
|
||||
enum VlProfileE { TYPE_MTASK_RUN, TYPE_EVAL, TYPE_EVAL_LOOP, TYPE_BARRIER };
|
||||
// Layout below allows efficient packing.
|
||||
// Leave endTime first, so no math needed to calculate address in endRecord
|
||||
vluint64_t m_endTime = 0; // Tick at end of execution
|
||||
vluint64_t m_startTime = 0; // Tick at start of execution
|
||||
vluint32_t m_mtaskId = 0; // Mtask we're logging
|
||||
vluint32_t m_predictStart = 0; // Time scheduler predicted would start
|
||||
vluint32_t m_predictCost = 0; // How long scheduler predicted would take
|
||||
VlProfileE m_type = TYPE_BARRIER; // Record type
|
||||
unsigned m_cpu; // Execution CPU number (at start anyways)
|
||||
public:
|
||||
class Barrier {};
|
||||
VlProfileRec() = default;
|
||||
explicit VlProfileRec(Barrier) { m_cpu = getcpu(); }
|
||||
void startRecord(vluint64_t time, uint32_t mtask, uint32_t predict) {
|
||||
void startEval(vluint64_t time) {
|
||||
m_type = VlProfileRec::TYPE_EVAL;
|
||||
m_startTime = time;
|
||||
m_cpu = getcpu();
|
||||
}
|
||||
void startEvalLoop(vluint64_t time) {
|
||||
m_type = VlProfileRec::TYPE_EVAL_LOOP;
|
||||
m_startTime = time;
|
||||
m_cpu = getcpu();
|
||||
}
|
||||
void startRecord(vluint64_t time, vluint32_t mtask, vluint32_t predictStart,
|
||||
vluint32_t predictCost) {
|
||||
m_type = VlProfileRec::TYPE_MTASK_RUN;
|
||||
m_mtaskId = mtask;
|
||||
m_predictTime = predict;
|
||||
m_predictStart = predictStart;
|
||||
m_predictCost = predictCost;
|
||||
m_startTime = time;
|
||||
m_cpu = getcpu();
|
||||
}
|
||||
@@ -177,15 +192,15 @@ private:
|
||||
// TYPES
|
||||
struct ExecRec {
|
||||
VlExecFnp m_fnp; // Function to execute
|
||||
VlThrSymTab m_sym; // Symbol table to execute
|
||||
VlSelfP m_selfp; // Symbol table to execute
|
||||
bool m_evenCycle; // Even/odd for flag alternation
|
||||
ExecRec()
|
||||
: m_fnp{nullptr}
|
||||
, m_sym{nullptr}
|
||||
, m_selfp{nullptr}
|
||||
, m_evenCycle{false} {}
|
||||
ExecRec(VlExecFnp fnp, bool evenCycle, VlThrSymTab sym)
|
||||
ExecRec(VlExecFnp fnp, VlSelfP selfp, bool evenCycle)
|
||||
: m_fnp{fnp}
|
||||
, m_sym{sym}
|
||||
, m_selfp{selfp}
|
||||
, m_evenCycle{evenCycle} {}
|
||||
};
|
||||
|
||||
@@ -225,10 +240,10 @@ public:
|
||||
}
|
||||
VL_CPU_RELAX();
|
||||
}
|
||||
VerilatedLockGuard lk(m_mutex);
|
||||
VerilatedLockGuard lock{m_mutex};
|
||||
while (m_ready.empty()) {
|
||||
m_waiting = true;
|
||||
m_cv.wait(lk);
|
||||
m_cv.wait(lock);
|
||||
}
|
||||
m_waiting = false;
|
||||
// As noted above this is inefficient if our ready list is ever
|
||||
@@ -237,13 +252,13 @@ public:
|
||||
m_ready.erase(m_ready.begin());
|
||||
m_ready_size.fetch_sub(1, std::memory_order_relaxed);
|
||||
}
|
||||
inline void wakeUp() { addTask(nullptr, false, nullptr); }
|
||||
inline void addTask(VlExecFnp fnp, bool evenCycle, VlThrSymTab sym)
|
||||
inline void wakeUp() { addTask(nullptr, nullptr, false); }
|
||||
inline void addTask(VlExecFnp fnp, VlSelfP selfp, bool evenCycle)
|
||||
VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
bool notify;
|
||||
{
|
||||
const VerilatedLockGuard lk(m_mutex);
|
||||
m_ready.emplace_back(fnp, evenCycle, sym);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_ready.emplace_back(fnp, selfp, evenCycle);
|
||||
m_ready_size.fetch_add(1, std::memory_order_relaxed);
|
||||
notify = m_waiting;
|
||||
}
|
||||
@@ -292,7 +307,8 @@ public:
|
||||
return &(t_profilep->back());
|
||||
}
|
||||
void profileAppendAll(const VlProfileRec& rec) VL_MT_SAFE_EXCLUDES(m_mutex);
|
||||
void profileDump(const char* filenamep, vluint64_t ticksElapsed) VL_MT_SAFE_EXCLUDES(m_mutex);
|
||||
void profileDump(const char* filenamep, vluint64_t tickStart, vluint64_t tickEnd)
|
||||
VL_MT_SAFE_EXCLUDES(m_mutex);
|
||||
// In profiling mode, each executing thread must call
|
||||
// this once to setup profiling state:
|
||||
void setupProfilingClientThread() VL_MT_SAFE_EXCLUDES(m_mutex);
|
||||
|
||||
@@ -52,21 +52,21 @@ private:
|
||||
public:
|
||||
// Put an element at the back of the queue
|
||||
void put(T value) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_queue.push_back(value);
|
||||
m_cv.notify_one();
|
||||
}
|
||||
|
||||
// Put an element at the front of the queue
|
||||
void put_front(T value) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
m_queue.push_front(value);
|
||||
m_cv.notify_one();
|
||||
}
|
||||
|
||||
// Get an element from the front of the queue. Blocks if none available
|
||||
T get() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
VerilatedLockGuard lock(m_mutex);
|
||||
VerilatedLockGuard lock{m_mutex};
|
||||
m_cv.wait(lock, [this]() VL_REQUIRES(m_mutex) { return !m_queue.empty(); });
|
||||
assert(!m_queue.empty());
|
||||
T value = m_queue.front();
|
||||
@@ -76,7 +76,7 @@ public:
|
||||
|
||||
// Non blocking get
|
||||
bool tryGet(T& result) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lockGuard(m_mutex);
|
||||
const VerilatedLockGuard lockGuard{m_mutex};
|
||||
if (m_queue.empty()) return false;
|
||||
result = m_queue.front();
|
||||
m_queue.pop_front();
|
||||
|
||||
@@ -246,7 +246,7 @@ template <> void VerilatedTrace<VL_DERIVED_T>::closeBase() {
|
||||
shutdownWorker();
|
||||
while (m_numTraceBuffers) {
|
||||
delete[] m_buffersFromWorker.get();
|
||||
m_numTraceBuffers--;
|
||||
--m_numTraceBuffers;
|
||||
}
|
||||
#endif
|
||||
}
|
||||
@@ -351,7 +351,7 @@ template <> void VerilatedTrace<VL_DERIVED_T>::traceInit() VL_MT_UNSAFE {
|
||||
m_traceBufferSize = nextCode() + numSignals() * 2 + 4;
|
||||
|
||||
// Start the worker thread
|
||||
m_workerThread.reset(new std::thread(&VerilatedTrace<VL_DERIVED_T>::workerThreadMain, this));
|
||||
m_workerThread.reset(new std::thread{&VerilatedTrace<VL_DERIVED_T>::workerThreadMain, this});
|
||||
#endif
|
||||
}
|
||||
|
||||
@@ -398,7 +398,7 @@ void VerilatedTrace<VL_DERIVED_T>::dump(vluint64_t timeui) VL_MT_SAFE_EXCLUDES(m
|
||||
// Not really VL_MT_SAFE but more VL_MT_UNSAFE_ONE.
|
||||
// This does get the mutex, but if multiple threads are trying to dump
|
||||
// chances are the data being dumped will have other problems
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
if (VL_UNCOVERABLE(m_timeLastDump && timeui <= m_timeLastDump)) { // LCOV_EXCL_START
|
||||
VL_PRINTF_MT("%%Warning: previous dump at t=%" VL_PRI64 "u, requesting t=%" VL_PRI64
|
||||
"u, dump call ignored\n",
|
||||
@@ -479,29 +479,29 @@ template <>
|
||||
void VerilatedTrace<VL_DERIVED_T>::addCallbackRecord(std::vector<CallbackRecord>& cbVec,
|
||||
CallbackRecord& cbRec)
|
||||
VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
if (VL_UNCOVERABLE(timeLastDump() != 0)) { // LCOV_EXCL_START
|
||||
std::string msg = (std::string("Internal: ") + __FILE__ + "::" + __FUNCTION__
|
||||
+ " called with already open file");
|
||||
const std::string msg = (std::string{"Internal: "} + __FILE__ + "::" + __FUNCTION__
|
||||
+ " called with already open file");
|
||||
VL_FATAL_MT(__FILE__, __LINE__, "", msg.c_str());
|
||||
} // LCOV_EXCL_STOP
|
||||
cbVec.push_back(cbRec);
|
||||
}
|
||||
|
||||
template <> void VerilatedTrace<VL_DERIVED_T>::addInitCb(initCb_t cb, void* userp) VL_MT_SAFE {
|
||||
CallbackRecord cbr(cb, userp);
|
||||
CallbackRecord cbr{cb, userp};
|
||||
addCallbackRecord(m_initCbs, cbr);
|
||||
}
|
||||
template <> void VerilatedTrace<VL_DERIVED_T>::addFullCb(dumpCb_t cb, void* userp) VL_MT_SAFE {
|
||||
CallbackRecord cbr(cb, userp);
|
||||
CallbackRecord cbr{cb, userp};
|
||||
addCallbackRecord(m_fullCbs, cbr);
|
||||
}
|
||||
template <> void VerilatedTrace<VL_DERIVED_T>::addChgCb(dumpCb_t cb, void* userp) VL_MT_SAFE {
|
||||
CallbackRecord cbr(cb, userp);
|
||||
CallbackRecord cbr{cb, userp};
|
||||
addCallbackRecord(m_chgCbs, cbr);
|
||||
}
|
||||
template <> void VerilatedTrace<VL_DERIVED_T>::addCleanupCb(dumpCb_t cb, void* userp) VL_MT_SAFE {
|
||||
CallbackRecord cbr(cb, userp);
|
||||
CallbackRecord cbr{cb, userp};
|
||||
addCallbackRecord(m_cleanupCbs, cbr);
|
||||
}
|
||||
template <> void VerilatedTrace<VL_DERIVED_T>::module(const std::string& name) VL_MT_UNSAFE {
|
||||
|
||||
@@ -0,0 +1,897 @@
|
||||
// -*- mode: C++; c-file-style: "cc-mode" -*-
|
||||
//*************************************************************************
|
||||
//
|
||||
// Code available from: https://verilator.org
|
||||
//
|
||||
// Copyright 2003-2021 by Wilson Snyder. This program is free software; you can
|
||||
// redistribute it and/or modify it under the terms of either the GNU
|
||||
// Lesser General Public License Version 3 or the Perl Artistic License
|
||||
// Version 2.0.
|
||||
// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
//
|
||||
//*************************************************************************
|
||||
///
|
||||
/// \file
|
||||
/// \brief Verilated common data type containers
|
||||
///
|
||||
/// verilated.h should be included instead of this file.
|
||||
///
|
||||
/// Those macro/function/variable starting or ending in _ are internal,
|
||||
/// however many of the other function/macros here are also internal.
|
||||
///
|
||||
//*************************************************************************
|
||||
|
||||
#ifndef VERILATOR_VERILATED_TYPES_H_
|
||||
#define VERILATOR_VERILATED_TYPES_H_
|
||||
|
||||
#ifndef VERILATOR_VERILATED_H_INTERNAL_
|
||||
#error "verilated_types.h should only be included by verilated.h"
|
||||
#endif
|
||||
|
||||
//===================================================================
|
||||
// String formatters (required by below containers)
|
||||
|
||||
extern std::string VL_TO_STRING(CData lhs);
|
||||
extern std::string VL_TO_STRING(SData lhs);
|
||||
extern std::string VL_TO_STRING(IData lhs);
|
||||
extern std::string VL_TO_STRING(QData lhs);
|
||||
inline std::string VL_TO_STRING(const std::string& obj) { return "\"" + obj + "\""; }
|
||||
extern std::string VL_TO_STRING_W(int words, const WDataInP obj);
|
||||
|
||||
//=========================================================================
|
||||
// Declare net data types
|
||||
|
||||
#define VL_SIG8(name, msb, lsb) CData name ///< Declare signal, 1-8 bits
|
||||
#define VL_SIG16(name, msb, lsb) SData name ///< Declare signal, 9-16 bits
|
||||
#define VL_SIG64(name, msb, lsb) QData name ///< Declare signal, 33-64 bits
|
||||
#define VL_SIG(name, msb, lsb) IData name ///< Declare signal, 17-32 bits
|
||||
#define VL_SIGW(name, msb, lsb, words) WData name[words] ///< Declare signal, 65+ bits
|
||||
#define VL_IN8(name, msb, lsb) CData name ///< Declare input signal, 1-8 bits
|
||||
#define VL_IN16(name, msb, lsb) SData name ///< Declare input signal, 9-16 bits
|
||||
#define VL_IN64(name, msb, lsb) QData name ///< Declare input signal, 33-64 bits
|
||||
#define VL_IN(name, msb, lsb) IData name ///< Declare input signal, 17-32 bits
|
||||
#define VL_INW(name, msb, lsb, words) WData name[words] ///< Declare input signal, 65+ bits
|
||||
#define VL_INOUT8(name, msb, lsb) CData name ///< Declare bidir signal, 1-8 bits
|
||||
#define VL_INOUT16(name, msb, lsb) SData name ///< Declare bidir signal, 9-16 bits
|
||||
#define VL_INOUT64(name, msb, lsb) QData name ///< Declare bidir signal, 33-64 bits
|
||||
#define VL_INOUT(name, msb, lsb) IData name ///< Declare bidir signal, 17-32 bits
|
||||
#define VL_INOUTW(name, msb, lsb, words) WData name[words] ///< Declare bidir signal, 65+ bits
|
||||
#define VL_OUT8(name, msb, lsb) CData name ///< Declare output signal, 1-8 bits
|
||||
#define VL_OUT16(name, msb, lsb) SData name ///< Declare output signal, 9-16 bits
|
||||
#define VL_OUT64(name, msb, lsb) QData name ///< Declare output signal, 33-64bits
|
||||
#define VL_OUT(name, msb, lsb) IData name ///< Declare output signal, 17-32 bits
|
||||
#define VL_OUTW(name, msb, lsb, words) WData name[words] ///< Declare output signal, 65+ bits
|
||||
|
||||
//===================================================================
|
||||
// Shuffle RNG
|
||||
|
||||
extern vluint64_t vl_rand64() VL_MT_SAFE;
|
||||
|
||||
class VlURNG final {
|
||||
public:
|
||||
using result_type = size_t;
|
||||
static constexpr size_t min() { return 0; }
|
||||
static constexpr size_t max() { return 1ULL << 31; }
|
||||
size_t operator()() { return VL_MASK_I(31) & vl_rand64(); }
|
||||
};
|
||||
|
||||
//===================================================================
|
||||
// Readmem/Writemem operation classes
|
||||
|
||||
class VlReadMem final {
|
||||
bool m_hex; // Hex format
|
||||
int m_bits; // Bit width of values
|
||||
const std::string& m_filename; // Filename
|
||||
QData m_end; // End address (as specified by user)
|
||||
FILE* m_fp; // File handle for filename
|
||||
QData m_addr; // Next address to read
|
||||
int m_linenum; // Line number last read from file
|
||||
public:
|
||||
VlReadMem(bool hex, int bits, const std::string& filename, QData start, QData end);
|
||||
~VlReadMem();
|
||||
bool isOpen() const { return m_fp != nullptr; }
|
||||
int linenum() const { return m_linenum; }
|
||||
bool get(QData& addrr, std::string& valuer);
|
||||
void setData(void* valuep, const std::string& rhs);
|
||||
};
|
||||
|
||||
class VlWriteMem final {
|
||||
bool m_hex; // Hex format
|
||||
int m_bits; // Bit width of values
|
||||
FILE* m_fp; // File handle for filename
|
||||
QData m_addr; // Next address to write
|
||||
public:
|
||||
VlWriteMem(bool hex, int bits, const std::string& filename, QData start, QData end);
|
||||
~VlWriteMem();
|
||||
bool isOpen() const { return m_fp != nullptr; }
|
||||
void print(QData addr, bool addrstamp, const void* valuep);
|
||||
};
|
||||
|
||||
//===================================================================
|
||||
/// Verilog wide packed bit container.
|
||||
/// Similar to std::array<WData, N>, but lighter weight, only methods needed
|
||||
/// by Verilator, to help compile time.
|
||||
///
|
||||
/// A 'struct' as we want this to be an aggregate type that allows
|
||||
/// static aggregate initialization. Consider data members private.
|
||||
///
|
||||
/// For example a Verilog "bit [94:0]" will become a VlWide<3> because 3*32
|
||||
/// bits are needed to hold the 95 bits. The MSB (bit 96) must always be
|
||||
/// zero in memory, but during intermediate operations in the Verilated
|
||||
/// internals is unpredictable.
|
||||
|
||||
static int _vl_cmp_w(int words, WDataInP const lwp, WDataInP const rwp) VL_MT_SAFE;
|
||||
|
||||
template <std::size_t T_Words> struct VlWide final {
|
||||
// MEMBERS
|
||||
// This should be the only data member, otherwise generated static initializers need updating
|
||||
EData m_storage[T_Words]; // Contents of the packed array
|
||||
|
||||
// CONSTRUCTORS
|
||||
// Default constructors and destructor are used. Note however that C++20 requires that
|
||||
// aggregate types do not have a user declared constructor, not even an explicitly defaulted
|
||||
// one.
|
||||
|
||||
// OPERATOR METHODS
|
||||
// Default copy assignment operators are used.
|
||||
operator WDataOutP() { return &m_storage[0]; } // This also allows []
|
||||
operator WDataInP() const { return &m_storage[0]; } // This also allows []
|
||||
|
||||
// METHODS
|
||||
const EData& at(size_t index) const { return m_storage[index]; }
|
||||
EData& at(size_t index) { return m_storage[index]; }
|
||||
WData* data() { return &m_storage[0]; }
|
||||
const WData* data() const { return &m_storage[0]; }
|
||||
bool operator<(const VlWide<T_Words>& rhs) const {
|
||||
return _vl_cmp_w(T_Words, data(), rhs.data()) < 0;
|
||||
}
|
||||
};
|
||||
|
||||
// Convert a C array to std::array reference by pointer magic, without copy.
|
||||
// Data type (second argument) is so the function template can automatically generate.
|
||||
template <std::size_t T_Words>
|
||||
VlWide<T_Words>& VL_CVT_W_A(const WDataInP inp, const VlWide<T_Words>&) {
|
||||
return *((VlWide<T_Words>*)inp);
|
||||
}
|
||||
|
||||
template <std::size_t T_Words> std::string VL_TO_STRING(const VlWide<T_Words>& obj) {
|
||||
return VL_TO_STRING_W(T_Words, obj.data());
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
// Verilog queue and dynamic array container
|
||||
// There are no multithreaded locks on this; the base variable must
|
||||
// be protected by other means
|
||||
//
|
||||
// Bound here is the maximum size() allowed, e.g. 1 + SystemVerilog bound
|
||||
// For dynamic arrays it is always zero
|
||||
template <class T_Value, size_t T_MaxSize = 0> class VlQueue final {
|
||||
private:
|
||||
// TYPES
|
||||
using Deque = std::deque<T_Value>;
|
||||
|
||||
public:
|
||||
using const_iterator = typename Deque::const_iterator;
|
||||
|
||||
private:
|
||||
// MEMBERS
|
||||
Deque m_deque; // State of the assoc array
|
||||
T_Value m_defaultValue; // Default value
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
// m_defaultValue isn't defaulted. Caller's constructor must do it.
|
||||
VlQueue() = default;
|
||||
~VlQueue() = default;
|
||||
VlQueue(const VlQueue&) = default;
|
||||
VlQueue(VlQueue&&) = default;
|
||||
VlQueue& operator=(const VlQueue&) = default;
|
||||
VlQueue& operator=(VlQueue&&) = default;
|
||||
|
||||
// Standard copy constructor works. Verilog: assoca = assocb
|
||||
// Also must allow conversion from a different T_MaxSize queue
|
||||
template <size_t U_MaxSize = 0> VlQueue operator=(const VlQueue<T_Value, U_MaxSize>& rhs) {
|
||||
m_deque = rhs.privateDeque();
|
||||
if (VL_UNLIKELY(T_MaxSize && T_MaxSize < m_deque.size())) m_deque.resize(T_MaxSize - 1);
|
||||
return *this;
|
||||
}
|
||||
|
||||
static VlQueue cons(const T_Value& lhs) {
|
||||
VlQueue out;
|
||||
out.push_back(lhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const T_Value& lhs, const T_Value& rhs) {
|
||||
VlQueue out;
|
||||
out.push_back(rhs);
|
||||
out.push_back(lhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const VlQueue& lhs, const T_Value& rhs) {
|
||||
VlQueue out = lhs;
|
||||
out.push_front(rhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const T_Value& lhs, const VlQueue& rhs) {
|
||||
VlQueue out = rhs;
|
||||
out.push_back(lhs);
|
||||
return out;
|
||||
}
|
||||
static VlQueue cons(const VlQueue& lhs, const VlQueue& rhs) {
|
||||
VlQueue out = rhs;
|
||||
for (const auto& i : lhs.m_deque) out.push_back(i);
|
||||
return out;
|
||||
}
|
||||
|
||||
// METHODS
|
||||
T_Value& atDefault() { return m_defaultValue; }
|
||||
const T_Value& atDefault() const { return m_defaultValue; }
|
||||
const Deque& privateDeque() const { return m_deque; }
|
||||
|
||||
// Size. Verilog: function int size(), or int num()
|
||||
int size() const { return m_deque.size(); }
|
||||
// Clear array. Verilog: function void delete([input index])
|
||||
void clear() { m_deque.clear(); }
|
||||
void erase(vlsint32_t index) {
|
||||
if (VL_LIKELY(index >= 0 && index < m_deque.size()))
|
||||
m_deque.erase(m_deque.begin() + index);
|
||||
}
|
||||
|
||||
// Dynamic array new[] becomes a renew()
|
||||
void renew(size_t size) {
|
||||
clear();
|
||||
m_deque.resize(size, atDefault());
|
||||
}
|
||||
// Dynamic array new[]() becomes a renew_copy()
|
||||
void renew_copy(size_t size, const VlQueue<T_Value, T_MaxSize>& rhs) {
|
||||
if (size == 0) {
|
||||
clear();
|
||||
} else {
|
||||
*this = rhs;
|
||||
m_deque.resize(size, atDefault());
|
||||
}
|
||||
}
|
||||
|
||||
// function void q.push_front(value)
|
||||
void push_front(const T_Value& value) {
|
||||
m_deque.push_front(value);
|
||||
if (VL_UNLIKELY(T_MaxSize != 0 && m_deque.size() > T_MaxSize)) m_deque.pop_back();
|
||||
}
|
||||
// function void q.push_back(value)
|
||||
void push_back(const T_Value& value) {
|
||||
if (VL_LIKELY(T_MaxSize == 0 || m_deque.size() < T_MaxSize)) m_deque.push_back(value);
|
||||
}
|
||||
// function value_t q.pop_front();
|
||||
T_Value pop_front() {
|
||||
if (m_deque.empty()) return m_defaultValue;
|
||||
T_Value v = m_deque.front();
|
||||
m_deque.pop_front();
|
||||
return v;
|
||||
}
|
||||
// function value_t q.pop_back();
|
||||
T_Value pop_back() {
|
||||
if (m_deque.empty()) return m_defaultValue;
|
||||
T_Value v = m_deque.back();
|
||||
m_deque.pop_back();
|
||||
return v;
|
||||
}
|
||||
|
||||
// Setting. Verilog: assoc[index] = v
|
||||
// Can't just overload operator[] or provide a "at" reference to set,
|
||||
// because we need to be able to insert only when the value is set
|
||||
T_Value& at(vlsint32_t index) {
|
||||
static T_Value s_throwAway;
|
||||
// Needs to work for dynamic arrays, so does not use T_MaxSize
|
||||
if (VL_UNLIKELY(index < 0 || index >= m_deque.size())) {
|
||||
s_throwAway = atDefault();
|
||||
return s_throwAway;
|
||||
} else {
|
||||
return m_deque[index];
|
||||
}
|
||||
}
|
||||
// Accessing. Verilog: v = assoc[index]
|
||||
const T_Value& at(vlsint32_t index) const {
|
||||
static T_Value s_throwAway;
|
||||
// Needs to work for dynamic arrays, so does not use T_MaxSize
|
||||
if (VL_UNLIKELY(index < 0 || index >= m_deque.size())) {
|
||||
return atDefault();
|
||||
} else {
|
||||
return m_deque[index];
|
||||
}
|
||||
}
|
||||
// function void q.insert(index, value);
|
||||
void insert(vlsint32_t index, const T_Value& value) {
|
||||
if (VL_UNLIKELY(index < 0 || index >= m_deque.size())) return;
|
||||
m_deque.insert(m_deque.begin() + index, value);
|
||||
}
|
||||
|
||||
// Return slice q[lsb:msb]
|
||||
VlQueue slice(vlsint32_t lsb, vlsint32_t msb) const {
|
||||
VlQueue out;
|
||||
if (VL_UNLIKELY(lsb < 0)) lsb = 0;
|
||||
if (VL_UNLIKELY(lsb >= m_deque.size())) lsb = m_deque.size() - 1;
|
||||
if (VL_UNLIKELY(msb >= m_deque.size())) msb = m_deque.size() - 1;
|
||||
for (vlsint32_t i = lsb; i <= msb; ++i) out.push_back(m_deque[i]);
|
||||
return out;
|
||||
}
|
||||
|
||||
// For save/restore
|
||||
const_iterator begin() const { return m_deque.begin(); }
|
||||
const_iterator end() const { return m_deque.end(); }
|
||||
|
||||
// Methods
|
||||
void sort() { std::sort(m_deque.begin(), m_deque.end()); }
|
||||
template <typename Func> void sort(Func with_func) {
|
||||
// with_func returns arbitrary type to use for the sort comparison
|
||||
std::sort(m_deque.begin(), m_deque.end(), [=](const T_Value& a, const T_Value& b) {
|
||||
// index number is meaninless with sort, as it changes
|
||||
return with_func(0, a) < with_func(0, b);
|
||||
});
|
||||
}
|
||||
void rsort() { std::sort(m_deque.rbegin(), m_deque.rend()); }
|
||||
template <typename Func> void rsort(Func with_func) {
|
||||
// with_func returns arbitrary type to use for the sort comparison
|
||||
std::sort(m_deque.rbegin(), m_deque.rend(), [=](const T_Value& a, const T_Value& b) {
|
||||
// index number is meaninless with sort, as it changes
|
||||
return with_func(0, a) < with_func(0, b);
|
||||
});
|
||||
}
|
||||
void reverse() { std::reverse(m_deque.begin(), m_deque.end()); }
|
||||
void shuffle() { std::shuffle(m_deque.begin(), m_deque.end(), VlURNG{}); }
|
||||
VlQueue unique() const {
|
||||
VlQueue out;
|
||||
std::unordered_set<T_Value> saw;
|
||||
for (const auto& i : m_deque) {
|
||||
auto it = saw.find(i);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i);
|
||||
out.push_back(i);
|
||||
}
|
||||
}
|
||||
return out;
|
||||
}
|
||||
VlQueue<IData> unique_index() const {
|
||||
VlQueue<IData> out;
|
||||
IData index = 0;
|
||||
std::unordered_set<T_Value> saw;
|
||||
for (const auto& i : m_deque) {
|
||||
auto it = saw.find(i);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i);
|
||||
out.push_back(index);
|
||||
}
|
||||
++index;
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue find(Func with_func) const {
|
||||
VlQueue out;
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) out.push_back(i);
|
||||
++index;
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<IData> find_index(Func with_func) const {
|
||||
VlQueue<IData> out;
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) out.push_back(index);
|
||||
++index;
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue find_first(Func with_func) const {
|
||||
// Can't use std::find_if as need index number
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) return VlQueue::cons(i);
|
||||
++index;
|
||||
}
|
||||
return VlQueue{};
|
||||
}
|
||||
template <typename Func> VlQueue<IData> find_first_index(Func with_func) const {
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) {
|
||||
if (with_func(index, i)) return VlQueue<IData>::cons(index);
|
||||
++index;
|
||||
}
|
||||
return VlQueue<IData>{};
|
||||
}
|
||||
template <typename Func> VlQueue find_last(Func with_func) const {
|
||||
IData index = m_deque.size() - 1;
|
||||
for (auto it = m_deque.rbegin(); it != m_deque.rend(); ++it) {
|
||||
if (with_func(index, *it)) return VlQueue::cons(*it);
|
||||
--index;
|
||||
}
|
||||
return VlQueue{};
|
||||
}
|
||||
template <typename Func> VlQueue<IData> find_last_index(Func with_func) const {
|
||||
IData index = m_deque.size() - 1;
|
||||
for (auto it = m_deque.rbegin(); it != m_deque.rend(); ++it) {
|
||||
if (with_func(index, *it)) return VlQueue<IData>::cons(index);
|
||||
--index;
|
||||
}
|
||||
return VlQueue<IData>{};
|
||||
}
|
||||
|
||||
// Reduction operators
|
||||
VlQueue min() const {
|
||||
if (m_deque.empty()) return VlQueue{};
|
||||
const auto it = std::min_element(m_deque.begin(), m_deque.end());
|
||||
return VlQueue::cons(*it);
|
||||
}
|
||||
VlQueue max() const {
|
||||
if (m_deque.empty()) return VlQueue{};
|
||||
const auto it = std::max_element(m_deque.begin(), m_deque.end());
|
||||
return VlQueue::cons(*it);
|
||||
}
|
||||
|
||||
T_Value r_sum() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_deque) out += i;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_sum(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) out += with_func(index++, i);
|
||||
return out;
|
||||
}
|
||||
T_Value r_product() const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
T_Value out{*it};
|
||||
++it;
|
||||
for (; it != m_deque.end(); ++it) out *= *it;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_product(Func with_func) const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
IData index = 0;
|
||||
T_Value out{with_func(index, *it)};
|
||||
++it;
|
||||
++index;
|
||||
for (; it != m_deque.end(); ++it) out *= with_func(index++, *it);
|
||||
return out;
|
||||
}
|
||||
T_Value r_and() const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
T_Value out{*it};
|
||||
++it;
|
||||
for (; it != m_deque.end(); ++it) out &= *it;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_and(Func with_func) const {
|
||||
if (m_deque.empty()) return T_Value(0);
|
||||
auto it = m_deque.begin();
|
||||
IData index = 0;
|
||||
T_Value out{with_func(index, *it)};
|
||||
++it;
|
||||
++index;
|
||||
for (; it != m_deque.end(); ++it) out &= with_func(index, *it);
|
||||
return out;
|
||||
}
|
||||
T_Value r_or() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_deque) out |= i;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_or(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) out |= with_func(index++, i);
|
||||
return out;
|
||||
}
|
||||
T_Value r_xor() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_deque) out ^= i;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_xor(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
IData index = 0;
|
||||
for (const auto& i : m_deque) out ^= with_func(index++, i);
|
||||
return out;
|
||||
}
|
||||
|
||||
// Dumping. Verilog: str = $sformatf("%p", assoc)
|
||||
std::string to_string() const {
|
||||
if (m_deque.empty()) return "'{}"; // No trailing space
|
||||
std::string out = "'{";
|
||||
std::string comma;
|
||||
for (const auto& i : m_deque) {
|
||||
out += comma + VL_TO_STRING(i);
|
||||
comma = ", ";
|
||||
}
|
||||
return out + "} ";
|
||||
}
|
||||
};
|
||||
|
||||
template <class T_Value> std::string VL_TO_STRING(const VlQueue<T_Value>& obj) {
|
||||
return obj.to_string();
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
// Verilog associative array container
|
||||
// There are no multithreaded locks on this; the base variable must
|
||||
// be protected by other means
|
||||
//
|
||||
template <class T_Key, class T_Value> class VlAssocArray final {
|
||||
private:
|
||||
// TYPES
|
||||
using Map = std::map<T_Key, T_Value>;
|
||||
|
||||
public:
|
||||
using const_iterator = typename Map::const_iterator;
|
||||
|
||||
private:
|
||||
// MEMBERS
|
||||
Map m_map; // State of the assoc array
|
||||
T_Value m_defaultValue; // Default value
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
// m_defaultValue isn't defaulted. Caller's constructor must do it.
|
||||
VlAssocArray() = default;
|
||||
~VlAssocArray() = default;
|
||||
VlAssocArray(const VlAssocArray&) = default;
|
||||
VlAssocArray(VlAssocArray&&) = default;
|
||||
VlAssocArray& operator=(const VlAssocArray&) = default;
|
||||
VlAssocArray& operator=(VlAssocArray&&) = default;
|
||||
|
||||
// METHODS
|
||||
T_Value& atDefault() { return m_defaultValue; }
|
||||
const T_Value& atDefault() const { return m_defaultValue; }
|
||||
|
||||
// Size of array. Verilog: function int size(), or int num()
|
||||
int size() const { return m_map.size(); }
|
||||
// Clear array. Verilog: function void delete([input index])
|
||||
void clear() { m_map.clear(); }
|
||||
void erase(const T_Key& index) { m_map.erase(index); }
|
||||
// Return 0/1 if element exists. Verilog: function int exists(input index)
|
||||
int exists(const T_Key& index) const { return m_map.find(index) != m_map.end(); }
|
||||
// Return first element. Verilog: function int first(ref index);
|
||||
int first(T_Key& indexr) const {
|
||||
const auto it = m_map.cbegin();
|
||||
if (it == m_map.end()) return 0;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Return last element. Verilog: function int last(ref index)
|
||||
int last(T_Key& indexr) const {
|
||||
const auto it = m_map.crbegin();
|
||||
if (it == m_map.rend()) return 0;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Return next element. Verilog: function int next(ref index)
|
||||
int next(T_Key& indexr) const {
|
||||
auto it = m_map.find(indexr);
|
||||
if (VL_UNLIKELY(it == m_map.end())) return 0;
|
||||
++it;
|
||||
if (VL_UNLIKELY(it == m_map.end())) return 0;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Return prev element. Verilog: function int prev(ref index)
|
||||
int prev(T_Key& indexr) const {
|
||||
auto it = m_map.find(indexr);
|
||||
if (VL_UNLIKELY(it == m_map.end())) return 0;
|
||||
if (VL_UNLIKELY(it == m_map.begin())) return 0;
|
||||
--it;
|
||||
indexr = it->first;
|
||||
return 1;
|
||||
}
|
||||
// Setting. Verilog: assoc[index] = v
|
||||
// Can't just overload operator[] or provide a "at" reference to set,
|
||||
// because we need to be able to insert only when the value is set
|
||||
T_Value& at(const T_Key& index) {
|
||||
const auto it = m_map.find(index);
|
||||
if (it == m_map.end()) {
|
||||
std::pair<typename Map::iterator, bool> pit = m_map.emplace(index, m_defaultValue);
|
||||
return pit.first->second;
|
||||
}
|
||||
return it->second;
|
||||
}
|
||||
// Accessing. Verilog: v = assoc[index]
|
||||
const T_Value& at(const T_Key& index) const {
|
||||
const auto it = m_map.find(index);
|
||||
if (it == m_map.end()) {
|
||||
return m_defaultValue;
|
||||
} else {
|
||||
return it->second;
|
||||
}
|
||||
}
|
||||
// Setting as a chained operation
|
||||
VlAssocArray& set(const T_Key& index, const T_Value& value) {
|
||||
at(index) = value;
|
||||
return *this;
|
||||
}
|
||||
VlAssocArray& setDefault(const T_Value& value) {
|
||||
atDefault() = value;
|
||||
return *this;
|
||||
}
|
||||
|
||||
// For save/restore
|
||||
const_iterator begin() const { return m_map.begin(); }
|
||||
const_iterator end() const { return m_map.end(); }
|
||||
|
||||
// Methods
|
||||
VlQueue<T_Value> unique() const {
|
||||
VlQueue<T_Value> out;
|
||||
std::set<T_Value> saw;
|
||||
for (const auto& i : m_map) {
|
||||
auto it = saw.find(i.second);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i.second);
|
||||
out.push_back(i.second);
|
||||
}
|
||||
}
|
||||
return out;
|
||||
}
|
||||
VlQueue<T_Key> unique_index() const {
|
||||
VlQueue<T_Key> out;
|
||||
std::set<T_Key> saw;
|
||||
for (const auto& i : m_map) {
|
||||
auto it = saw.find(i.second);
|
||||
if (it == saw.end()) {
|
||||
saw.insert(it, i.second);
|
||||
out.push_back(i.first);
|
||||
}
|
||||
}
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<T_Value> find(Func with_func) const {
|
||||
VlQueue<T_Value> out;
|
||||
for (const auto& i : m_map)
|
||||
if (with_func(i.first, i.second)) out.push_back(i.second);
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<T_Key> find_index(Func with_func) const {
|
||||
VlQueue<T_Key> out;
|
||||
for (const auto& i : m_map)
|
||||
if (with_func(i.first, i.second)) out.push_back(i.first);
|
||||
return out;
|
||||
}
|
||||
template <typename Func> VlQueue<T_Value> find_first(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.begin(), m_map.end(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.end()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
template <typename Func> VlQueue<T_Key> find_first_index(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.begin(), m_map.end(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.end()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Key>::cons(it->first);
|
||||
}
|
||||
template <typename Func> VlQueue<T_Value> find_last(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.rbegin(), m_map.rend(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.rend()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
template <typename Func> VlQueue<T_Key> find_last_index(Func with_func) const {
|
||||
const auto it
|
||||
= std::find_if(m_map.rbegin(), m_map.rend(), [=](const std::pair<T_Key, T_Value>& i) {
|
||||
return with_func(i.first, i.second);
|
||||
});
|
||||
if (it == m_map.rend()) return VlQueue<T_Value>{};
|
||||
return VlQueue<T_Key>::cons(it->first);
|
||||
}
|
||||
|
||||
// Reduction operators
|
||||
VlQueue<T_Value> min() const {
|
||||
if (m_map.empty()) return VlQueue<T_Value>();
|
||||
const auto it = std::min_element(
|
||||
m_map.begin(), m_map.end(),
|
||||
[](const std::pair<T_Key, T_Value>& a, const std::pair<T_Key, T_Value>& b) {
|
||||
return a.second < b.second;
|
||||
});
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
VlQueue<T_Value> max() const {
|
||||
if (m_map.empty()) return VlQueue<T_Value>();
|
||||
const auto it = std::max_element(
|
||||
m_map.begin(), m_map.end(),
|
||||
[](const std::pair<T_Key, T_Value>& a, const std::pair<T_Key, T_Value>& b) {
|
||||
return a.second < b.second;
|
||||
});
|
||||
return VlQueue<T_Value>::cons(it->second);
|
||||
}
|
||||
|
||||
T_Value r_sum() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out += i.second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_sum(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out += with_func(i.first, i.second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_product() const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{it->second};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out *= it->second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_product(Func with_func) const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{with_func(it->first, it->second)};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out *= with_func(it->first, it->second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_and() const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{it->second};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out &= it->second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_and(Func with_func) const {
|
||||
if (m_map.empty()) return T_Value(0);
|
||||
auto it = m_map.begin();
|
||||
T_Value out{with_func(it->first, it->second)};
|
||||
++it;
|
||||
for (; it != m_map.end(); ++it) out &= with_func(it->first, it->second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_or() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out |= i.second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_or(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out |= with_func(i.first, i.second);
|
||||
return out;
|
||||
}
|
||||
T_Value r_xor() const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out ^= i.second;
|
||||
return out;
|
||||
}
|
||||
template <typename Func> T_Value r_xor(Func with_func) const {
|
||||
T_Value out(0); // Type must have assignment operator
|
||||
for (const auto& i : m_map) out ^= with_func(i.first, i.second);
|
||||
return out;
|
||||
}
|
||||
|
||||
// Dumping. Verilog: str = $sformatf("%p", assoc)
|
||||
std::string to_string() const {
|
||||
if (m_map.empty()) return "'{}"; // No trailing space
|
||||
std::string out = "'{";
|
||||
std::string comma;
|
||||
for (const auto& i : m_map) {
|
||||
out += comma + VL_TO_STRING(i.first) + ":" + VL_TO_STRING(i.second);
|
||||
comma = ", ";
|
||||
}
|
||||
// Default not printed - maybe random init data
|
||||
return out + "} ";
|
||||
}
|
||||
};
|
||||
|
||||
template <class T_Key, class T_Value>
|
||||
std::string VL_TO_STRING(const VlAssocArray<T_Key, T_Value>& obj) {
|
||||
return obj.to_string();
|
||||
}
|
||||
|
||||
template <class T_Key, class T_Value>
|
||||
void VL_READMEM_N(bool hex, int bits, const std::string& filename,
|
||||
VlAssocArray<T_Key, T_Value>& obj, QData start, QData end) VL_MT_SAFE {
|
||||
VlReadMem rmem{hex, bits, filename, start, end};
|
||||
if (VL_UNLIKELY(!rmem.isOpen())) return;
|
||||
while (true) {
|
||||
QData addr;
|
||||
std::string data;
|
||||
if (rmem.get(addr /*ref*/, data /*ref*/)) {
|
||||
rmem.setData(&(obj.at(addr)), data);
|
||||
} else {
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
template <class T_Key, class T_Value>
|
||||
void VL_WRITEMEM_N(bool hex, int bits, const std::string& filename,
|
||||
const VlAssocArray<T_Key, T_Value>& obj, QData start, QData end) VL_MT_SAFE {
|
||||
VlWriteMem wmem{hex, bits, filename, start, end};
|
||||
if (VL_UNLIKELY(!wmem.isOpen())) return;
|
||||
for (const auto& i : obj) {
|
||||
const QData addr = i.first;
|
||||
if (addr >= start && addr <= end) wmem.print(addr, true, &(i.second));
|
||||
}
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
/// Verilog unpacked array container
|
||||
/// For when a standard C++[] array is not sufficient, e.g. an
|
||||
/// array under a queue, or methods operating on the array.
|
||||
///
|
||||
/// A 'struct' as we want this to be an aggregate type that allows
|
||||
/// static aggregate initialization. Consider data members private.
|
||||
///
|
||||
/// This class may get exposed to a Verilated Model's top I/O, if the top
|
||||
/// IO has an unpacked array.
|
||||
|
||||
template <class T_Value, std::size_t T_Depth> struct VlUnpacked final {
|
||||
// MEMBERS
|
||||
// This should be the only data member, otherwise generated static initializers need updating
|
||||
T_Value m_storage[T_Depth]; // Contents of the unpacked array
|
||||
|
||||
// CONSTRUCTORS
|
||||
// Default constructors and destructor are used. Note however that C++20 requires that
|
||||
// aggregate types do not have a user declared constructor, not even an explicitly defaulted
|
||||
// one.
|
||||
|
||||
// OPERATOR METHODS
|
||||
// Default copy assignment operators are used.
|
||||
|
||||
// METHODS
|
||||
// Raw access
|
||||
WData* data() { return &m_storage[0]; }
|
||||
const WData* data() const { return &m_storage[0]; }
|
||||
|
||||
T_Value& operator[](size_t index) { return m_storage[index]; };
|
||||
const T_Value& operator[](size_t index) const { return m_storage[index]; };
|
||||
|
||||
// Dumping. Verilog: str = $sformatf("%p", assoc)
|
||||
std::string to_string() const {
|
||||
std::string out = "'{";
|
||||
std::string comma;
|
||||
for (int i = 0; i < T_Depth; ++i) {
|
||||
out += comma + VL_TO_STRING(m_storage[i]);
|
||||
comma = ", ";
|
||||
}
|
||||
return out + "} ";
|
||||
}
|
||||
};
|
||||
|
||||
template <class T_Value, std::size_t T_Depth>
|
||||
std::string VL_TO_STRING(const VlUnpacked<T_Value, T_Depth>& obj) {
|
||||
return obj.to_string();
|
||||
}
|
||||
|
||||
//===================================================================
|
||||
// Verilog class reference container
|
||||
// There are no multithreaded locks on this; the base variable must
|
||||
// be protected by other means
|
||||
|
||||
#define VlClassRef std::shared_ptr
|
||||
|
||||
template <class T> // T typically of type VlClassRef<x>
|
||||
inline T VL_NULL_CHECK(T t, const char* filename, int linenum) {
|
||||
if (VL_UNLIKELY(!t)) Verilated::nullPointerError(filename, linenum);
|
||||
return t;
|
||||
}
|
||||
|
||||
template <typename T, typename U>
|
||||
static inline bool VL_CAST_DYNAMIC(VlClassRef<T> in, VlClassRef<U>& outr) {
|
||||
VlClassRef<U> casted = std::dynamic_pointer_cast<U>(in);
|
||||
if (VL_LIKELY(casted)) {
|
||||
outr = casted;
|
||||
return true;
|
||||
} else {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
//======================================================================
|
||||
|
||||
#endif // Guard
|
||||
+26
-25
@@ -102,7 +102,7 @@ VerilatedVcd::VerilatedVcd(VerilatedVcdFile* filep) {
|
||||
}
|
||||
|
||||
void VerilatedVcd::open(const char* filename) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
if (isOpen()) return;
|
||||
|
||||
// Set member variables
|
||||
@@ -120,7 +120,7 @@ void VerilatedVcd::open(const char* filename) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
void VerilatedVcd::openNext(bool incFilename) VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
// Open next filename in concat sequence, mangle filename if
|
||||
// incFilename is true.
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
openNextImp(incFilename);
|
||||
}
|
||||
|
||||
@@ -129,7 +129,7 @@ void VerilatedVcd::openNextImp(bool incFilename) {
|
||||
if (incFilename) {
|
||||
// Find _0000.{ext} in filename
|
||||
std::string name = m_filename;
|
||||
size_t pos = name.rfind('.');
|
||||
const size_t pos = name.rfind('.');
|
||||
if (pos > 8 && 0 == std::strncmp("_cat", name.c_str() + pos - 8, 4)
|
||||
&& std::isdigit(name.c_str()[pos - 4]) && std::isdigit(name.c_str()[pos - 3])
|
||||
&& std::isdigit(name.c_str()[pos - 2]) && std::isdigit(name.c_str()[pos - 1])) {
|
||||
@@ -195,11 +195,11 @@ void VerilatedVcd::makeNameMap() {
|
||||
if (!hiername.empty() && hiername[0] == '\t') nullScope = true;
|
||||
}
|
||||
if (nullScope) {
|
||||
NameMap* newmapp = new NameMap;
|
||||
NameMap* const newmapp = new NameMap;
|
||||
for (const auto& i : *m_namemapp) {
|
||||
const std::string& hiername = i.first;
|
||||
const std::string& decl = i.second;
|
||||
std::string newname = std::string("top");
|
||||
std::string newname{"top"};
|
||||
if (hiername[0] != '\t') newname += ' ';
|
||||
newname += hiername;
|
||||
newmapp->emplace(newname, decl);
|
||||
@@ -243,7 +243,7 @@ void VerilatedVcd::closeErr() {
|
||||
|
||||
void VerilatedVcd::close() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
// This function is on the flush() call path
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
if (!isOpen()) return;
|
||||
if (m_evcd) {
|
||||
printStr("$vcdclose ");
|
||||
@@ -257,7 +257,7 @@ void VerilatedVcd::close() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
}
|
||||
|
||||
void VerilatedVcd::flush() VL_MT_SAFE_EXCLUDES(m_mutex) {
|
||||
const VerilatedLockGuard lock(m_mutex);
|
||||
const VerilatedLockGuard lock{m_mutex};
|
||||
VerilatedTrace<VerilatedVcd>::flushBase();
|
||||
bufferFlush();
|
||||
}
|
||||
@@ -271,8 +271,9 @@ void VerilatedVcd::printStr(const char* str) {
|
||||
}
|
||||
|
||||
void VerilatedVcd::printQuad(vluint64_t n) {
|
||||
char buf[100];
|
||||
VL_SNPRINTF(buf, 100, "%" VL_PRI64 "u", n);
|
||||
constexpr size_t LEN_STR_QUAD = 40;
|
||||
char buf[LEN_STR_QUAD];
|
||||
VL_SNPRINTF(buf, LEN_STR_QUAD, "%" VL_PRI64 "u", n);
|
||||
printStr(buf);
|
||||
}
|
||||
|
||||
@@ -299,10 +300,10 @@ void VerilatedVcd::bufferFlush() VL_MT_UNSAFE_ONE {
|
||||
if (VL_UNLIKELY(!isOpen())) return;
|
||||
char* wp = m_wrBufp;
|
||||
while (true) {
|
||||
ssize_t remaining = (m_writep - wp);
|
||||
const ssize_t remaining = (m_writep - wp);
|
||||
if (remaining == 0) break;
|
||||
errno = 0;
|
||||
ssize_t got = m_filep->write(wp, remaining);
|
||||
const ssize_t got = m_filep->write(wp, remaining);
|
||||
if (got > 0) {
|
||||
wp += got;
|
||||
m_wroteBytes += got;
|
||||
@@ -311,7 +312,7 @@ void VerilatedVcd::bufferFlush() VL_MT_UNSAFE_ONE {
|
||||
// LCOV_EXCL_START
|
||||
// write failed, presume error (perhaps out of disk space)
|
||||
std::string msg
|
||||
= std::string("VerilatedVcd::bufferFlush: ") + std::strerror(errno);
|
||||
= std::string{"VerilatedVcd::bufferFlush: "} + std::strerror(errno);
|
||||
VL_FATAL_MT("", 0, "", msg.c_str());
|
||||
closeErr();
|
||||
break;
|
||||
@@ -331,7 +332,7 @@ char* VerilatedVcd::writeCode(char* writep, vluint32_t code) {
|
||||
*writep++ = static_cast<char>('!' + code % 94);
|
||||
code /= 94;
|
||||
while (code) {
|
||||
code--;
|
||||
--code;
|
||||
*writep++ = static_cast<char>('!' + code % 94);
|
||||
code /= 94;
|
||||
}
|
||||
@@ -352,12 +353,12 @@ void VerilatedVcd::dumpHeader() {
|
||||
printStr("$version Generated by VerilatedVcd $end\n");
|
||||
printStr("$date ");
|
||||
{
|
||||
time_t tick = time(nullptr);
|
||||
const time_t tick = time(nullptr);
|
||||
tm ticktm;
|
||||
VL_LOCALTIME_R(&tick, &ticktm);
|
||||
constexpr int bufsize = 50;
|
||||
char buf[bufsize];
|
||||
std::strftime(buf, bufsize, "%c", &ticktm);
|
||||
constexpr size_t LEN_BUF = 50;
|
||||
char buf[LEN_BUF];
|
||||
std::strftime(buf, LEN_BUF, "%c", &ticktm);
|
||||
printStr(buf);
|
||||
}
|
||||
printStr(" $end\n");
|
||||
@@ -393,8 +394,8 @@ void VerilatedVcd::dumpHeader() {
|
||||
// Skip common prefix, it must break at a space or tab
|
||||
for (; *np && (*np == *lp); np++, lp++) {}
|
||||
while (np != hiername && *np && *np != ' ' && *np != '\t') {
|
||||
np--;
|
||||
lp--;
|
||||
--np;
|
||||
--lp;
|
||||
}
|
||||
// printf("hier %s\n lp=%s\n np=%s\n",hiername,lp,np);
|
||||
|
||||
@@ -430,9 +431,9 @@ void VerilatedVcd::dumpHeader() {
|
||||
|
||||
for (; *np && *np != ' ' && *np != '\t'; np++) {
|
||||
if (*np == '[') {
|
||||
printStr("(");
|
||||
printStr("[");
|
||||
} else if (*np == ']') {
|
||||
printStr(")");
|
||||
printStr("]");
|
||||
} else if (!(*np & '\x80')) {
|
||||
*m_writep++ = *np;
|
||||
}
|
||||
@@ -531,7 +532,7 @@ void VerilatedVcd::declare(vluint32_t code, const char* name, const char* wirep,
|
||||
decl += " ";
|
||||
decl += basename;
|
||||
if (array) {
|
||||
VL_SNPRINTF(buf, bufsize, "(%d)", arraynum);
|
||||
VL_SNPRINTF(buf, bufsize, "[%d]", arraynum);
|
||||
decl += buf;
|
||||
hiername += buf;
|
||||
}
|
||||
@@ -896,9 +897,9 @@ void vcdTestMain(const char* filenamep) {
|
||||
VerilatedVcdC* vcdp = new VerilatedVcdC;
|
||||
vcdp->evcd(true);
|
||||
vcdp->set_time_unit("1ms");
|
||||
vcdp->set_time_unit(std::string("1ms"));
|
||||
vcdp->set_time_unit(std::string{"1ms"});
|
||||
vcdp->set_time_resolution("1ns");
|
||||
vcdp->set_time_resolution(std::string("1ns"));
|
||||
vcdp->set_time_resolution(std::string{"1ns"});
|
||||
vcdp->spTrace()->addInitCb(&vcdInit, 0);
|
||||
vcdp->spTrace()->addFullCb(&vcdFull, 0);
|
||||
vcdp->spTrace()->addChgCb(&vcdChange, 0);
|
||||
@@ -927,7 +928,7 @@ void vcdTestMain(const char* filenamep) {
|
||||
vcdp->dump(++timestamp);
|
||||
vcdp->dump(++timestamp);
|
||||
# ifdef VERILATED_VCD_TEST_64BIT
|
||||
vluint64_t bytesPerDump = 15ULL;
|
||||
const vluint64_t bytesPerDump = 15ULL;
|
||||
for (vluint64_t i = 0; i < ((1ULL << 32) / bytesPerDump); i++) {
|
||||
v1 = i;
|
||||
vcdp->dump(++timestamp);
|
||||
|
||||
@@ -233,11 +233,11 @@ public:
|
||||
// Inside dumping routines, dump one signal if it has changed.
|
||||
// We do want to inline these to avoid calls when the value did not change.
|
||||
inline void chgBit(vluint32_t code, const vluint32_t newval) {
|
||||
vluint32_t diff = oldp(code)[0] ^ newval;
|
||||
const vluint32_t diff = oldp(code)[0] ^ newval;
|
||||
if (VL_UNLIKELY(diff)) fullBit(code, newval);
|
||||
}
|
||||
inline void chgBus(vluint32_t code, const vluint32_t newval, int bits) {
|
||||
vluint32_t diff = oldp(code)[0] ^ newval;
|
||||
const vluint32_t diff = oldp(code)[0] ^ newval;
|
||||
if (VL_UNLIKELY(diff)) {
|
||||
if (VL_UNLIKELY(bits == 32 || (diff & ((1U << bits) - 1)))) {
|
||||
fullBus(code, newval, bits);
|
||||
@@ -245,7 +245,7 @@ public:
|
||||
}
|
||||
}
|
||||
inline void chgQuad(vluint32_t code, const vluint64_t newval, int bits) {
|
||||
vluint64_t diff = (*(reinterpret_cast<vluint64_t*>(oldp(code)))) ^ newval;
|
||||
const vluint64_t diff = (*(reinterpret_cast<vluint64_t*>(oldp(code)))) ^ newval;
|
||||
if (VL_UNLIKELY(diff)) {
|
||||
if (VL_UNLIKELY(bits == 64 || (diff & ((1ULL << bits) - 1)))) {
|
||||
fullQuad(code, newval, bits);
|
||||
@@ -270,7 +270,7 @@ public:
|
||||
}
|
||||
}
|
||||
inline void chgTriBit(vluint32_t code, const vluint32_t newval, const vluint32_t newtri) {
|
||||
vluint32_t diff = ((oldp(code)[0] ^ newval) | (oldp(code)[1] ^ newtri));
|
||||
const vluint32_t diff = ((oldp(code)[0] ^ newval) | (oldp(code)[1] ^ newtri));
|
||||
if (VL_UNLIKELY(diff)) {
|
||||
// Verilator 3.510 and newer provide clean input, so the below
|
||||
// is only for back compatibility
|
||||
@@ -281,7 +281,7 @@ public:
|
||||
}
|
||||
inline void chgTriBus(vluint32_t code, const vluint32_t newval, const vluint32_t newtri,
|
||||
int bits) {
|
||||
vluint32_t diff = ((oldp(code)[0] ^ newval) | (oldp(code)[1] ^ newtri));
|
||||
const vluint32_t diff = ((oldp(code)[0] ^ newval) | (oldp(code)[1] ^ newtri));
|
||||
if (VL_UNLIKELY(diff)) {
|
||||
if (VL_UNLIKELY(bits == 32 || (diff & ((1U << bits) - 1)))) {
|
||||
fullTriBus(code, newval, newtri, bits);
|
||||
@@ -290,8 +290,8 @@ public:
|
||||
}
|
||||
inline void chgTriQuad(vluint32_t code, const vluint64_t newval, const vluint64_t newtri,
|
||||
int bits) {
|
||||
vluint64_t diff = (((*(reinterpret_cast<vluint64_t*>(oldp(code)))) ^ newval)
|
||||
| ((*(reinterpret_cast<vluint64_t*>(oldp(code + 1)))) ^ newtri));
|
||||
const vluint64_t diff = (((*(reinterpret_cast<vluint64_t*>(oldp(code)))) ^ newval)
|
||||
| ((*(reinterpret_cast<vluint64_t*>(oldp(code + 1)))) ^ newtri));
|
||||
if (VL_UNLIKELY(diff)) {
|
||||
if (VL_UNLIKELY(bits == 64 || (diff & ((1ULL << bits) - 1)))) {
|
||||
fullTriQuad(code, newval, newtri, bits);
|
||||
|
||||
@@ -44,9 +44,9 @@ public:
|
||||
// We want to avoid a depreciated warning, but still be back compatible.
|
||||
// Turning off the message just for this still results in an
|
||||
// annoying "to turn off" message.
|
||||
sc_time t1sec(1, SC_SEC);
|
||||
const sc_time t1sec{1, SC_SEC};
|
||||
if (t1sec.to_default_time_units() != 0) {
|
||||
sc_time tunits(1.0 / t1sec.to_default_time_units(), SC_SEC);
|
||||
const sc_time tunits{1.0 / t1sec.to_default_time_units(), SC_SEC};
|
||||
spTrace()->set_time_unit(tunits.to_string());
|
||||
}
|
||||
spTrace()->set_time_resolution(sc_get_time_resolution().to_string());
|
||||
|
||||
+145
-139
@@ -80,7 +80,7 @@ public:
|
||||
static const size_t chunk = 96;
|
||||
if (VL_UNCOVERABLE(size > chunk)) VL_FATAL_MT(__FILE__, __LINE__, "", "increase chunk");
|
||||
if (VL_LIKELY(t_freeHead)) {
|
||||
vluint8_t* newp = t_freeHead;
|
||||
vluint8_t* const newp = t_freeHead;
|
||||
t_freeHead = *(reinterpret_cast<vluint8_t**>(newp));
|
||||
*(reinterpret_cast<vluint32_t*>(newp)) = activeMagic();
|
||||
return newp + 8;
|
||||
@@ -91,7 +91,7 @@ public:
|
||||
return newp + 8;
|
||||
}
|
||||
static void operator delete(void* obj, size_t /*size*/)VL_MT_SAFE {
|
||||
vluint8_t* oldp = (static_cast<vluint8_t*>(obj)) - 8;
|
||||
vluint8_t* const oldp = (static_cast<vluint8_t*>(obj)) - 8;
|
||||
if (VL_UNLIKELY(*(reinterpret_cast<vluint32_t*>(oldp)) != activeMagic())) {
|
||||
VL_FATAL_MT(__FILE__, __LINE__, "",
|
||||
"vpi_release_handle() called on same object twice, or on non-Verilator "
|
||||
@@ -128,7 +128,7 @@ class VerilatedVpioTimedCb final : public VerilatedVpio {
|
||||
|
||||
public:
|
||||
VerilatedVpioTimedCb(vluint64_t id, QData time)
|
||||
: m_id(id)
|
||||
: m_id{id}
|
||||
, m_time{time} {}
|
||||
virtual ~VerilatedVpioTimedCb() override = default;
|
||||
static VerilatedVpioTimedCb* castp(vpiHandle h) {
|
||||
@@ -147,7 +147,7 @@ class VerilatedVpioReasonCb final : public VerilatedVpio {
|
||||
public:
|
||||
// cppcheck-suppress uninitVar // m_value
|
||||
VerilatedVpioReasonCb(vluint64_t id, PLI_INT32 reason)
|
||||
: m_id(id)
|
||||
: m_id{id}
|
||||
, m_reason{reason} {}
|
||||
virtual ~VerilatedVpioReasonCb() override = default;
|
||||
static VerilatedVpioReasonCb* castp(vpiHandle h) {
|
||||
@@ -200,7 +200,7 @@ public:
|
||||
virtual const char* name() const override { return m_varp->name(); }
|
||||
virtual const char* fullname() const override {
|
||||
static VL_THREAD_LOCAL std::string t_out;
|
||||
t_out = std::string(m_scopep->name()) + "." + name();
|
||||
t_out = std::string{m_scopep->name()} + "." + name();
|
||||
return t_out.c_str();
|
||||
}
|
||||
};
|
||||
@@ -208,7 +208,7 @@ public:
|
||||
class VerilatedVpioParam final : public VerilatedVpioVarBase {
|
||||
public:
|
||||
VerilatedVpioParam(const VerilatedVar* varp, const VerilatedScope* scopep)
|
||||
: VerilatedVpioVarBase(varp, scopep) {}
|
||||
: VerilatedVpioVarBase{varp, scopep} {}
|
||||
virtual ~VerilatedVpioParam() override = default;
|
||||
|
||||
static VerilatedVpioParam* castp(vpiHandle h) {
|
||||
@@ -252,7 +252,7 @@ public:
|
||||
return nullptr;
|
||||
}
|
||||
m_done = true;
|
||||
return ((new VerilatedVpioRange(m_range))->castVpiHandle());
|
||||
return ((new VerilatedVpioRange{m_range})->castVpiHandle());
|
||||
}
|
||||
};
|
||||
|
||||
@@ -286,13 +286,13 @@ protected:
|
||||
|
||||
public:
|
||||
VerilatedVpioVar(const VerilatedVar* varp, const VerilatedScope* scopep)
|
||||
: VerilatedVpioVarBase(varp, scopep) {
|
||||
: VerilatedVpioVarBase{varp, scopep} {
|
||||
m_mask.u32 = VL_MASK_I(varp->packed().elements());
|
||||
m_entSize = varp->entSize();
|
||||
m_varDatap = varp->datap();
|
||||
}
|
||||
explicit VerilatedVpioVar(const VerilatedVpioVar* varp)
|
||||
: VerilatedVpioVarBase(varp) {
|
||||
: VerilatedVpioVarBase{varp} {
|
||||
if (varp) {
|
||||
m_mask.u32 = varp->m_mask.u32;
|
||||
m_entSize = varp->m_entSize;
|
||||
@@ -310,7 +310,7 @@ public:
|
||||
return dynamic_cast<VerilatedVpioVar*>(reinterpret_cast<VerilatedVpio*>(h));
|
||||
}
|
||||
vluint32_t mask() const { return m_mask.u32; }
|
||||
vluint8_t mask_byte(int idx) { return m_mask.u8[idx & 3]; }
|
||||
vluint8_t mask_byte(int idx) const { return m_mask.u8[idx & 3]; }
|
||||
vluint32_t entSize() const { return m_entSize; }
|
||||
vluint32_t index() const { return m_index; }
|
||||
virtual vluint32_t type() const override {
|
||||
@@ -343,9 +343,10 @@ public:
|
||||
virtual const VerilatedRange* rangep() const override { return &(varp()->packed()); }
|
||||
virtual const char* fullname() const override {
|
||||
static VL_THREAD_LOCAL std::string t_out;
|
||||
char num[25];
|
||||
VL_SNPRINTF(num, 25, "%d", m_index);
|
||||
t_out = std::string(scopep()->name()) + "." + name() + "[" + num + "]";
|
||||
constexpr size_t LEN_MAX_INDEX = 25;
|
||||
char num[LEN_MAX_INDEX];
|
||||
VL_SNPRINTF(num, LEN_MAX_INDEX, "%d", m_index);
|
||||
t_out = std::string{scopep()->name()} + "." + name() + "[" + num + "]";
|
||||
return t_out.c_str();
|
||||
}
|
||||
};
|
||||
@@ -365,7 +366,7 @@ public:
|
||||
virtual vluint32_t type() const override { return vpiIterator; }
|
||||
virtual vpiHandle dovpi_scan() override {
|
||||
if (VL_LIKELY(m_scopep->varsp())) {
|
||||
VerilatedVarNameMap* varsp = m_scopep->varsp();
|
||||
const VerilatedVarNameMap* const varsp = m_scopep->varsp();
|
||||
if (VL_UNLIKELY(!m_started)) {
|
||||
m_it = varsp->begin();
|
||||
m_started = true;
|
||||
@@ -379,7 +380,7 @@ public:
|
||||
delete this; // IEEE 37.2.2 vpi_scan at end does a vpi_release_handle
|
||||
return nullptr;
|
||||
}
|
||||
return ((new VerilatedVpioVar(&(m_it->second), m_scopep))->castVpiHandle());
|
||||
return ((new VerilatedVpioVar{&(m_it->second), m_scopep})->castVpiHandle());
|
||||
}
|
||||
delete this; // IEEE 37.2.2 vpi_scan at end does a vpi_release_handle
|
||||
return nullptr; // End of list - only one deep
|
||||
@@ -457,7 +458,7 @@ public:
|
||||
return nullptr;
|
||||
}
|
||||
const VerilatedScope* modp = *m_it++;
|
||||
return (new VerilatedVpioModule(modp))->castVpiHandle();
|
||||
return (new VerilatedVpioModule{modp})->castVpiHandle();
|
||||
}
|
||||
};
|
||||
|
||||
@@ -475,16 +476,16 @@ class VerilatedVpiCbHolder final {
|
||||
public:
|
||||
// cppcheck-suppress uninitVar // m_value
|
||||
VerilatedVpiCbHolder(vluint64_t id, const s_cb_data* cbDatap, const VerilatedVpioVar* varop)
|
||||
: m_id(id)
|
||||
, m_cbData(*cbDatap)
|
||||
, m_varo(varop) {
|
||||
: m_id{id}
|
||||
, m_cbData{*cbDatap}
|
||||
, m_varo{varop} {
|
||||
m_value.format = cbDatap->value ? cbDatap->value->format : vpiSuppressVal;
|
||||
m_cbData.value = &m_value;
|
||||
if (varop) {
|
||||
m_cbData.obj = m_varo.castVpiHandle();
|
||||
m_varo.createPrevDatap();
|
||||
} else {
|
||||
m_cbData.obj = NULL;
|
||||
m_cbData.obj = nullptr;
|
||||
}
|
||||
}
|
||||
~VerilatedVpiCbHolder() = default;
|
||||
@@ -564,7 +565,7 @@ public:
|
||||
}
|
||||
static void callTimedCbs() VL_MT_UNSAFE_ONE {
|
||||
assertOneCheck();
|
||||
QData time = VL_TIME_Q();
|
||||
const QData time = VL_TIME_Q();
|
||||
for (auto it = s().m_timedCbs.begin(); it != s().m_timedCbs.end();) {
|
||||
if (VL_UNLIKELY(it->first.first <= time)) {
|
||||
VerilatedVpiCbHolder& ho = it->second;
|
||||
@@ -587,7 +588,7 @@ public:
|
||||
if (VL_LIKELY(it != s().m_timedCbs.cend())) return it->first.first;
|
||||
return ~0ULL; // maxquad
|
||||
}
|
||||
static bool callCbs(vluint32_t reason) VL_MT_UNSAFE_ONE {
|
||||
static bool callCbs(const vluint32_t reason) VL_MT_UNSAFE_ONE {
|
||||
VpioCbList& cbObjList = s().m_cbObjLists[reason];
|
||||
bool called = false;
|
||||
if (cbObjList.empty()) return called;
|
||||
@@ -619,23 +620,25 @@ public:
|
||||
const auto last = std::prev(cbObjList.end()); // prevent looping over newly added elements
|
||||
for (auto it = cbObjList.begin(); true;) {
|
||||
// cbReasonRemove sets to nullptr, so we know on removal the old end() will still exist
|
||||
bool was_last = it == last;
|
||||
const bool was_last = it == last;
|
||||
if (VL_UNLIKELY(it->invalid())) { // Deleted earlier, cleanup
|
||||
it = cbObjList.erase(it);
|
||||
if (was_last) break;
|
||||
continue;
|
||||
}
|
||||
VerilatedVpiCbHolder& ho = *it++;
|
||||
if (VerilatedVpioVar* varop = VerilatedVpioVar::castp(ho.cb_datap()->obj)) {
|
||||
void* newDatap = varop->varDatap();
|
||||
void* prevDatap = varop->prevDatap(); // Was malloced when we added the callback
|
||||
if (VerilatedVpioVar* const varop = VerilatedVpioVar::castp(ho.cb_datap()->obj)) {
|
||||
void* const newDatap = varop->varDatap();
|
||||
void* const prevDatap
|
||||
= varop->prevDatap(); // Was malloced when we added the callback
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: value_test %s v[0]=%d/%d %p %p\n",
|
||||
varop->fullname(), *((CData*)newDatap),
|
||||
*((CData*)prevDatap), newDatap, prevDatap););
|
||||
varop->fullname(), *(static_cast<CData*>(newDatap)),
|
||||
*(static_cast<CData*>(prevDatap)), newDatap,
|
||||
prevDatap););
|
||||
if (std::memcmp(prevDatap, newDatap, varop->entSize()) != 0) {
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: value_callback %" VL_PRI64
|
||||
"d %s v[0]=%d\n",
|
||||
ho.id(), varop->fullname(), *((CData*)newDatap)););
|
||||
VL_DEBUG_IF_PLI(
|
||||
VL_DBG_MSGF("- vpi: value_callback %" VL_PRI64 "d %s v[0]=%d\n", ho.id(),
|
||||
varop->fullname(), *(static_cast<CData*>(newDatap))););
|
||||
update.insert(varop);
|
||||
vpi_get_value(ho.cb_datap()->obj, ho.cb_datap()->value);
|
||||
(ho.cb_rtnp())(ho.cb_datap());
|
||||
@@ -706,7 +709,8 @@ public:
|
||||
va_end(args);
|
||||
m_errorInfo.state = vpiPLI;
|
||||
t_filehold = file;
|
||||
setError((PLI_BYTE8*)m_buff, nullptr, const_cast<PLI_BYTE8*>(t_filehold.c_str()), line);
|
||||
setError(static_cast<PLI_BYTE8*>(m_buff), nullptr,
|
||||
const_cast<PLI_BYTE8*>(t_filehold.c_str()), line);
|
||||
}
|
||||
p_vpi_error_info getError() {
|
||||
if (m_flag) return &m_errorInfo;
|
||||
@@ -715,7 +719,7 @@ public:
|
||||
void resetError() { m_flag = false; }
|
||||
static void vpi_unsupported() {
|
||||
// Not supported yet
|
||||
p_vpi_error_info error_info_p = VerilatedVpiImp::error_info()->getError();
|
||||
const p_vpi_error_info error_info_p = VerilatedVpiImp::error_info()->getError();
|
||||
if (error_info_p) {
|
||||
VL_FATAL_MT(error_info_p->file, error_info_p->line, "", error_info_p->message);
|
||||
return;
|
||||
@@ -758,7 +762,7 @@ PLI_INT32 VerilatedVpioReasonCb::dovpi_remove_cb() {
|
||||
|
||||
VerilatedVpiError* VerilatedVpiImp::error_info() VL_MT_UNSAFE_ONE {
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
if (VL_UNLIKELY(!s().m_errorInfop)) s().m_errorInfop = new VerilatedVpiError();
|
||||
if (VL_UNLIKELY(!s().m_errorInfop)) s().m_errorInfop = new VerilatedVpiError;
|
||||
return s().m_errorInfop;
|
||||
}
|
||||
|
||||
@@ -1108,13 +1112,13 @@ const char* VerilatedVpiError::strFromVpiProp(PLI_INT32 vpiVal) VL_MT_SAFE {
|
||||
#define SELF_CHECK_RESULT_CSTR(got, exp) \
|
||||
if (0 != std::strcmp((got), (exp))) { \
|
||||
std::string msg \
|
||||
= std::string("%Error: ") + "GOT = '" + got + "'" + " EXP = '" + exp + "'"; \
|
||||
= std::string{"%Error: "} + "GOT = '" + (got) + "'" + " EXP = '" + (exp) + "'"; \
|
||||
VL_FATAL_MT(__FILE__, __LINE__, "", msg.c_str()); \
|
||||
}
|
||||
|
||||
#define SELF_CHECK_ENUM_STR(fn, enumn) \
|
||||
do { \
|
||||
const char* strVal = VerilatedVpiError::fn(enumn); \
|
||||
const char* const strVal = VerilatedVpiError::fn(enumn); \
|
||||
SELF_CHECK_RESULT_CSTR(strVal, #enumn); \
|
||||
} while (0)
|
||||
|
||||
@@ -1300,9 +1304,9 @@ vpiHandle vpi_register_cb(p_cb_data cb_data_p) {
|
||||
case cbAfterDelay: {
|
||||
QData time = 0;
|
||||
if (cb_data_p->time) time = VL_SET_QII(cb_data_p->time->high, cb_data_p->time->low);
|
||||
QData abstime = VL_TIME_Q() + time;
|
||||
const QData abstime = VL_TIME_Q() + time;
|
||||
vluint64_t id = VerilatedVpiImp::nextCallbackId();
|
||||
VerilatedVpioTimedCb* vop = new VerilatedVpioTimedCb{id, abstime};
|
||||
VerilatedVpioTimedCb* const vop = new VerilatedVpioTimedCb{id, abstime};
|
||||
VerilatedVpiImp::cbTimedAdd(id, cb_data_p, abstime);
|
||||
return vop->castVpiHandle();
|
||||
}
|
||||
@@ -1316,8 +1320,8 @@ vpiHandle vpi_register_cb(p_cb_data cb_data_p) {
|
||||
case cbEnterInteractive: // FALLTHRU // NOP, but need to return handle, so make object
|
||||
case cbExitInteractive: // FALLTHRU // NOP, but need to return handle, so make object
|
||||
case cbInteractiveScopeChange: { // FALLTHRU // NOP, but need to return handle, so make object
|
||||
vluint64_t id = VerilatedVpiImp::nextCallbackId();
|
||||
VerilatedVpioReasonCb* vop = new VerilatedVpioReasonCb{id, cb_data_p->reason};
|
||||
const vluint64_t id = VerilatedVpiImp::nextCallbackId();
|
||||
VerilatedVpioReasonCb* const vop = new VerilatedVpioReasonCb{id, cb_data_p->reason};
|
||||
VerilatedVpiImp::cbReasonAdd(id, cb_data_p);
|
||||
return vop->castVpiHandle();
|
||||
}
|
||||
@@ -1332,7 +1336,7 @@ PLI_INT32 vpi_remove_cb(vpiHandle cb_obj) {
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: vpi_remove_cb %p\n", cb_obj););
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
VL_VPI_ERROR_RESET_();
|
||||
VerilatedVpio* vop = VerilatedVpio::castp(cb_obj);
|
||||
VerilatedVpio* const vop = VerilatedVpio::castp(cb_obj);
|
||||
if (VL_UNLIKELY(!vop)) return 0;
|
||||
return vop->dovpi_remove_cb();
|
||||
}
|
||||
@@ -1355,10 +1359,10 @@ vpiHandle vpi_handle_by_name(PLI_BYTE8* namep, vpiHandle scope) {
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: vpi_handle_by_name %s %p\n", namep, scope););
|
||||
const VerilatedVar* varp = nullptr;
|
||||
const VerilatedScope* scopep;
|
||||
VerilatedVpioScope* voScopep = VerilatedVpioScope::castp(scope);
|
||||
const VerilatedVpioScope* const voScopep = VerilatedVpioScope::castp(scope);
|
||||
std::string scopeAndName = namep;
|
||||
if (voScopep) {
|
||||
scopeAndName = std::string(voScopep->fullname()) + "." + namep;
|
||||
scopeAndName = std::string{voScopep->fullname()} + "." + namep;
|
||||
namep = const_cast<PLI_BYTE8*>(scopeAndName.c_str());
|
||||
}
|
||||
{
|
||||
@@ -1366,17 +1370,18 @@ vpiHandle vpi_handle_by_name(PLI_BYTE8* namep, vpiHandle scope) {
|
||||
scopep = Verilated::threadContextp()->scopeFind(namep);
|
||||
if (scopep) { // Whole thing found as a scope
|
||||
if (scopep->type() == VerilatedScope::SCOPE_MODULE) {
|
||||
return (new VerilatedVpioModule(scopep))->castVpiHandle();
|
||||
return (new VerilatedVpioModule{scopep})->castVpiHandle();
|
||||
} else {
|
||||
return (new VerilatedVpioScope(scopep))->castVpiHandle();
|
||||
return (new VerilatedVpioScope{scopep})->castVpiHandle();
|
||||
}
|
||||
}
|
||||
const char* baseNamep = scopeAndName.c_str();
|
||||
std::string scopename;
|
||||
const char* dotp = std::strrchr(namep, '.');
|
||||
const char* const dotp = std::strrchr(namep, '.');
|
||||
if (VL_LIKELY(dotp)) {
|
||||
baseNamep = dotp + 1;
|
||||
scopename = std::string(namep, dotp - namep);
|
||||
const size_t len = dotp - namep;
|
||||
scopename = std::string{namep, len};
|
||||
}
|
||||
|
||||
if (scopename.find('.') == std::string::npos) {
|
||||
@@ -1393,9 +1398,9 @@ vpiHandle vpi_handle_by_name(PLI_BYTE8* namep, vpiHandle scope) {
|
||||
if (!varp) return nullptr;
|
||||
|
||||
if (varp->isParam()) {
|
||||
return (new VerilatedVpioParam(varp, scopep))->castVpiHandle();
|
||||
return (new VerilatedVpioParam{varp, scopep})->castVpiHandle();
|
||||
} else {
|
||||
return (new VerilatedVpioVar(varp, scopep))->castVpiHandle();
|
||||
return (new VerilatedVpioVar{varp, scopep})->castVpiHandle();
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1405,24 +1410,24 @@ vpiHandle vpi_handle_by_index(vpiHandle object, PLI_INT32 indx) {
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
VL_VPI_ERROR_RESET_();
|
||||
// Memory words are not indexable
|
||||
VerilatedVpioMemoryWord* vop = VerilatedVpioMemoryWord::castp(object);
|
||||
VerilatedVpioMemoryWord* const vop = VerilatedVpioMemoryWord::castp(object);
|
||||
if (VL_UNLIKELY(vop)) return nullptr;
|
||||
VerilatedVpioVar* varop = VerilatedVpioVar::castp(object);
|
||||
const VerilatedVpioVar* const varop = VerilatedVpioVar::castp(object);
|
||||
if (VL_LIKELY(varop)) {
|
||||
if (varop->varp()->dims() < 2) return nullptr;
|
||||
if (VL_LIKELY(varop->varp()->unpacked().left() >= varop->varp()->unpacked().right())) {
|
||||
if (VL_UNLIKELY(indx > varop->varp()->unpacked().left()
|
||||
|| indx < varop->varp()->unpacked().right()))
|
||||
return nullptr;
|
||||
return (new VerilatedVpioMemoryWord(varop->varp(), varop->scopep(), indx,
|
||||
indx - varop->varp()->unpacked().right()))
|
||||
return (new VerilatedVpioMemoryWord{varop->varp(), varop->scopep(), indx,
|
||||
indx - varop->varp()->unpacked().right()})
|
||||
->castVpiHandle();
|
||||
}
|
||||
if (VL_UNLIKELY(indx < varop->varp()->unpacked().left()
|
||||
|| indx > varop->varp()->unpacked().right()))
|
||||
return nullptr;
|
||||
return (new VerilatedVpioMemoryWord(varop->varp(), varop->scopep(), indx,
|
||||
indx - varop->varp()->unpacked().left()))
|
||||
return (new VerilatedVpioMemoryWord{varop->varp(), varop->scopep(), indx,
|
||||
indx - varop->varp()->unpacked().left()})
|
||||
->castVpiHandle();
|
||||
}
|
||||
VL_VPI_INTERNAL_(__FILE__, __LINE__, "%s : can't resolve handle", __func__);
|
||||
@@ -1437,12 +1442,12 @@ vpiHandle vpi_handle(PLI_INT32 type, vpiHandle object) {
|
||||
VL_VPI_ERROR_RESET_();
|
||||
switch (type) {
|
||||
case vpiLeftRange: {
|
||||
if (VerilatedVpioVarBase* vop = VerilatedVpioVarBase::castp(object)) {
|
||||
if (VerilatedVpioVarBase* const vop = VerilatedVpioVarBase::castp(object)) {
|
||||
if (VL_UNLIKELY(!vop->rangep())) return nullptr;
|
||||
return (new VerilatedVpioConst(vop->rangep()->left()))->castVpiHandle();
|
||||
} else if (VerilatedVpioRange* vop = VerilatedVpioRange::castp(object)) {
|
||||
return (new VerilatedVpioConst{vop->rangep()->left()})->castVpiHandle();
|
||||
} else if (VerilatedVpioRange* const vop = VerilatedVpioRange::castp(object)) {
|
||||
if (VL_UNLIKELY(!vop->rangep())) return nullptr;
|
||||
return (new VerilatedVpioConst(vop->rangep()->left()))->castVpiHandle();
|
||||
return (new VerilatedVpioConst{vop->rangep()->left()})->castVpiHandle();
|
||||
}
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__,
|
||||
"%s: Unsupported vpiHandle (%p) for type %s, nothing will be returned",
|
||||
@@ -1450,12 +1455,12 @@ vpiHandle vpi_handle(PLI_INT32 type, vpiHandle object) {
|
||||
return nullptr;
|
||||
}
|
||||
case vpiRightRange: {
|
||||
if (VerilatedVpioVarBase* vop = VerilatedVpioVarBase::castp(object)) {
|
||||
if (VerilatedVpioVarBase* const vop = VerilatedVpioVarBase::castp(object)) {
|
||||
if (VL_UNLIKELY(!vop->rangep())) return nullptr;
|
||||
return (new VerilatedVpioConst(vop->rangep()->right()))->castVpiHandle();
|
||||
} else if (VerilatedVpioRange* vop = VerilatedVpioRange::castp(object)) {
|
||||
return (new VerilatedVpioConst{vop->rangep()->right()})->castVpiHandle();
|
||||
} else if (VerilatedVpioRange* const vop = VerilatedVpioRange::castp(object)) {
|
||||
if (VL_UNLIKELY(!vop->rangep())) return nullptr;
|
||||
return (new VerilatedVpioConst(vop->rangep()->right()))->castVpiHandle();
|
||||
return (new VerilatedVpioConst{vop->rangep()->right()})->castVpiHandle();
|
||||
}
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__,
|
||||
"%s: Unsupported vpiHandle (%p) for type %s, nothing will be returned",
|
||||
@@ -1463,19 +1468,20 @@ vpiHandle vpi_handle(PLI_INT32 type, vpiHandle object) {
|
||||
return nullptr;
|
||||
}
|
||||
case vpiIndex: {
|
||||
VerilatedVpioVar* vop = VerilatedVpioVar::castp(object);
|
||||
VerilatedVpioVar* const vop = VerilatedVpioVar::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
return (new VerilatedVpioConst(vop->index()))->castVpiHandle();
|
||||
const vlsint32_t val = vop->index();
|
||||
return (new VerilatedVpioConst{val})->castVpiHandle();
|
||||
}
|
||||
case vpiScope: {
|
||||
VerilatedVpioVarBase* vop = VerilatedVpioVarBase::castp(object);
|
||||
VerilatedVpioVarBase* const vop = VerilatedVpioVarBase::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
return (new VerilatedVpioScope(vop->scopep()))->castVpiHandle();
|
||||
return (new VerilatedVpioScope{vop->scopep()})->castVpiHandle();
|
||||
}
|
||||
case vpiParent: {
|
||||
VerilatedVpioMemoryWord* vop = VerilatedVpioMemoryWord::castp(object);
|
||||
VerilatedVpioMemoryWord* const vop = VerilatedVpioMemoryWord::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
return (new VerilatedVpioVar(vop->varp(), vop->scopep()))->castVpiHandle();
|
||||
return (new VerilatedVpioVar{vop->varp(), vop->scopep()})->castVpiHandle();
|
||||
}
|
||||
default:
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__, "%s: Unsupported type %s, nothing will be returned",
|
||||
@@ -1496,7 +1502,7 @@ vpiHandle vpi_iterate(PLI_INT32 type, vpiHandle object) {
|
||||
VL_VPI_ERROR_RESET_();
|
||||
switch (type) {
|
||||
case vpiMemoryWord: {
|
||||
VerilatedVpioVar* vop = VerilatedVpioVar::castp(object);
|
||||
const VerilatedVpioVar* const vop = VerilatedVpioVar::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
if (vop->varp()->dims() < 2) return nullptr;
|
||||
if (vop->varp()->dims() > 2) {
|
||||
@@ -1505,10 +1511,10 @@ vpiHandle vpi_iterate(PLI_INT32 type, vpiHandle object) {
|
||||
VerilatedVpiError::strFromVpiMethod(type), vop->fullname(),
|
||||
vop->varp()->dims());
|
||||
}
|
||||
return (new VerilatedVpioMemoryWordIter(object, vop->varp()))->castVpiHandle();
|
||||
return (new VerilatedVpioMemoryWordIter{object, vop->varp()})->castVpiHandle();
|
||||
}
|
||||
case vpiRange: {
|
||||
VerilatedVpioVar* vop = VerilatedVpioVar::castp(object);
|
||||
const VerilatedVpioVar* const vop = VerilatedVpioVar::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
if (vop->varp()->dims() < 2) return nullptr;
|
||||
// Unsupported is multidim list
|
||||
@@ -1518,20 +1524,20 @@ vpiHandle vpi_iterate(PLI_INT32 type, vpiHandle object) {
|
||||
VerilatedVpiError::strFromVpiMethod(type), vop->fullname(),
|
||||
vop->varp()->dims());
|
||||
}
|
||||
return ((new VerilatedVpioRangeIter(vop->rangep()))->castVpiHandle());
|
||||
return ((new VerilatedVpioRangeIter{vop->rangep()})->castVpiHandle());
|
||||
}
|
||||
case vpiReg: {
|
||||
VerilatedVpioScope* vop = VerilatedVpioScope::castp(object);
|
||||
const VerilatedVpioScope* const vop = VerilatedVpioScope::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
return ((new VerilatedVpioVarIter(vop->scopep()))->castVpiHandle());
|
||||
return ((new VerilatedVpioVarIter{vop->scopep()})->castVpiHandle());
|
||||
}
|
||||
case vpiModule: {
|
||||
VerilatedVpioModule* vop = VerilatedVpioModule::castp(object);
|
||||
const VerilatedHierarchyMap* map = VerilatedImp::hierarchyMap();
|
||||
const VerilatedScope* mod = vop ? vop->scopep() : nullptr;
|
||||
const auto it = vlstd::as_const(map)->find(const_cast<VerilatedScope*>(mod));
|
||||
const VerilatedVpioModule* const vop = VerilatedVpioModule::castp(object);
|
||||
const VerilatedHierarchyMap* const map = VerilatedImp::hierarchyMap();
|
||||
const VerilatedScope* const modp = vop ? vop->scopep() : nullptr;
|
||||
const auto it = vlstd::as_const(map)->find(const_cast<VerilatedScope*>(modp));
|
||||
if (it == map->end()) return nullptr;
|
||||
return ((new VerilatedVpioModuleIter(it->second))->castVpiHandle());
|
||||
return ((new VerilatedVpioModuleIter{it->second})->castVpiHandle());
|
||||
}
|
||||
default:
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__, "%s: Unsupported type %s, nothing will be returned",
|
||||
@@ -1543,7 +1549,7 @@ vpiHandle vpi_scan(vpiHandle object) {
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: vpi_scan %p\n", object););
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
VL_VPI_ERROR_RESET_();
|
||||
VerilatedVpio* vop = VerilatedVpio::castp(object);
|
||||
VerilatedVpio* const vop = VerilatedVpio::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
return vop->dovpi_scan();
|
||||
}
|
||||
@@ -1560,30 +1566,30 @@ PLI_INT32 vpi_get(PLI_INT32 property, vpiHandle object) {
|
||||
return Verilated::threadContextp()->timeprecision();
|
||||
}
|
||||
case vpiTimeUnit: {
|
||||
VerilatedVpioScope* vop = VerilatedVpioScope::castp(object);
|
||||
const VerilatedVpioScope* const vop = VerilatedVpioScope::castp(object);
|
||||
if (!vop)
|
||||
return Verilated::threadContextp()->timeunit(); // Null asks for global, not unlikely
|
||||
return vop->scopep()->timeunit();
|
||||
}
|
||||
case vpiType: {
|
||||
VerilatedVpio* vop = VerilatedVpio::castp(object);
|
||||
const VerilatedVpio* const vop = VerilatedVpio::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return 0;
|
||||
return vop->type();
|
||||
}
|
||||
case vpiDirection: {
|
||||
// By forthought, the directions already are vpi enumerated
|
||||
VerilatedVpioVarBase* vop = VerilatedVpioVarBase::castp(object);
|
||||
const VerilatedVpioVarBase* const vop = VerilatedVpioVarBase::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return 0;
|
||||
return vop->varp()->vldir();
|
||||
}
|
||||
case vpiScalar: // FALLTHRU
|
||||
case vpiVector: {
|
||||
VerilatedVpioVarBase* vop = VerilatedVpioVarBase::castp(object);
|
||||
const VerilatedVpioVarBase* const vop = VerilatedVpioVarBase::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return 0;
|
||||
return (property == vpiVector) ^ (vop->varp()->dims() == 0);
|
||||
}
|
||||
case vpiSize: {
|
||||
VerilatedVpioVarBase* vop = VerilatedVpioVarBase::castp(object);
|
||||
const VerilatedVpioVarBase* const vop = VerilatedVpioVarBase::castp(object);
|
||||
if (VL_UNLIKELY(!vop)) return 0;
|
||||
return vop->size();
|
||||
}
|
||||
@@ -1602,7 +1608,7 @@ PLI_INT64 vpi_get64(PLI_INT32 /*property*/, vpiHandle /*object*/) {
|
||||
PLI_BYTE8* vpi_get_str(PLI_INT32 property, vpiHandle object) {
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: vpi_get_str %d %p\n", property, object););
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
VerilatedVpio* vop = VerilatedVpio::castp(object);
|
||||
const VerilatedVpio* const vop = VerilatedVpio::castp(object);
|
||||
VL_VPI_ERROR_RESET_();
|
||||
if (VL_UNLIKELY(!vop)) return nullptr;
|
||||
switch (property) {
|
||||
@@ -1689,7 +1695,7 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
const char* fullname) {
|
||||
if (!vl_check_format(varp, valuep, fullname, true)) return;
|
||||
// Maximum required size is for binary string, one byte per bit plus null termination
|
||||
static VL_THREAD_LOCAL char t_outStr[1 + VL_MULS_MAX_WORDS * 32];
|
||||
static VL_THREAD_LOCAL char t_outStr[VL_VALUE_STRING_MAX_WORDS * VL_EDATASIZE + 1];
|
||||
// cppcheck-suppress variableScope
|
||||
static VL_THREAD_LOCAL int t_outStrSz = sizeof(t_outStr) - 1;
|
||||
// We used to presume vpiValue.format = vpiIntVal or if single bit vpiScalarVal
|
||||
@@ -1697,7 +1703,7 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
if (valuep->format == vpiVectorVal) {
|
||||
// Vector pointer must come from our memory pool
|
||||
// It only needs to persist until the next vpi_get_value
|
||||
static VL_THREAD_LOCAL t_vpi_vecval t_out[VL_MULS_MAX_WORDS * 2];
|
||||
static VL_THREAD_LOCAL t_vpi_vecval t_out[VL_VALUE_STRING_MAX_WORDS * 2];
|
||||
valuep->value.vector = t_out;
|
||||
if (varp->vltype() == VLVT_UINT8) {
|
||||
t_out[0].aval = *(reinterpret_cast<CData*>(varDatap));
|
||||
@@ -1720,12 +1726,12 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
return;
|
||||
} else if (varp->vltype() == VLVT_WDATA) {
|
||||
int words = VL_WORDS_I(varp->packed().elements());
|
||||
if (VL_UNCOVERABLE(words >= VL_MULS_MAX_WORDS)) {
|
||||
VL_FATAL_MT(
|
||||
__FILE__, __LINE__, "",
|
||||
"vpi_get_value with more than VL_MULS_MAX_WORDS; increase and recompile");
|
||||
if (VL_UNCOVERABLE(words >= VL_VALUE_STRING_MAX_WORDS)) {
|
||||
VL_FATAL_MT(__FILE__, __LINE__, "",
|
||||
"vpi_get_value with more than VL_VALUE_STRING_MAX_WORDS; increase and "
|
||||
"recompile");
|
||||
}
|
||||
WDataInP datap = (reinterpret_cast<EData*>(varDatap));
|
||||
const WDataInP datap = (reinterpret_cast<EData*>(varDatap));
|
||||
for (int i = 0; i < words; ++i) {
|
||||
t_out[i].aval = datap[i];
|
||||
t_out[i].bval = 0;
|
||||
@@ -1743,9 +1749,9 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
VL_VPI_WARNING_(
|
||||
__FILE__, __LINE__,
|
||||
"%s: Truncating string value of %s for %s"
|
||||
" as buffer size (%d, VL_MULS_MAX_WORDS=%d) is less than required (%d)",
|
||||
" as buffer size (%d, VL_VALUE_STRING_MAX_WORDS=%d) is less than required (%d)",
|
||||
__func__, VerilatedVpiError::strFromVpiVal(valuep->format), fullname, t_outStrSz,
|
||||
VL_MULS_MAX_WORDS, bits);
|
||||
VL_VALUE_STRING_MAX_WORDS, bits);
|
||||
}
|
||||
for (i = 0; i < bits; ++i) {
|
||||
char val = (datap[i >> 3] >> (i & 7)) & 1;
|
||||
@@ -1756,7 +1762,7 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
} else if (valuep->format == vpiOctStrVal) {
|
||||
valuep->value.str = t_outStr;
|
||||
int chars = (varp->packed().elements() + 2) / 3;
|
||||
int bytes = VL_BYTES_I(varp->packed().elements());
|
||||
const int bytes = VL_BYTES_I(varp->packed().elements());
|
||||
CData* datap = (reinterpret_cast<CData*>(varDatap));
|
||||
int i;
|
||||
if (chars > t_outStrSz) {
|
||||
@@ -1764,13 +1770,13 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
VL_VPI_WARNING_(
|
||||
__FILE__, __LINE__,
|
||||
"%s: Truncating string value of %s for %s"
|
||||
" as buffer size (%d, VL_MULS_MAX_WORDS=%d) is less than required (%d)",
|
||||
" as buffer size (%d, VL_VALUE_STRING_MAX_WORDS=%d) is less than required (%d)",
|
||||
__func__, VerilatedVpiError::strFromVpiVal(valuep->format), fullname, t_outStrSz,
|
||||
VL_MULS_MAX_WORDS, chars);
|
||||
VL_VALUE_STRING_MAX_WORDS, chars);
|
||||
chars = t_outStrSz;
|
||||
}
|
||||
for (i = 0; i < chars; ++i) {
|
||||
div_t idx = div(i * 3, 8);
|
||||
const div_t idx = div(i * 3, 8);
|
||||
int val = datap[idx.quot];
|
||||
if ((idx.quot + 1) < bytes) {
|
||||
// if the next byte is valid or that in
|
||||
@@ -1822,9 +1828,9 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
VL_VPI_WARNING_(
|
||||
__FILE__, __LINE__,
|
||||
"%s: Truncating string value of %s for %s"
|
||||
" as buffer size (%d, VL_MULS_MAX_WORDS=%d) is less than required (%d)",
|
||||
" as buffer size (%d, VL_VALUE_STRING_MAX_WORDS=%d) is less than required (%d)",
|
||||
__func__, VerilatedVpiError::strFromVpiVal(valuep->format), fullname, t_outStrSz,
|
||||
VL_MULS_MAX_WORDS, chars);
|
||||
VL_VALUE_STRING_MAX_WORDS, chars);
|
||||
chars = t_outStrSz;
|
||||
}
|
||||
for (i = 0; i < chars; ++i) {
|
||||
@@ -1832,7 +1838,7 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
if (i == (chars - 1)) {
|
||||
// most signifcant char, mask off non existant bits when vector
|
||||
// size is not a multiple of 4
|
||||
unsigned int rem = varp->packed().elements() & 3;
|
||||
const unsigned int rem = varp->packed().elements() & 3;
|
||||
if (rem) {
|
||||
// generate bit mask & zero non existant bits
|
||||
val &= (1 << rem) - 1;
|
||||
@@ -1853,16 +1859,16 @@ void vl_get_value(const VerilatedVar* varp, void* varDatap, p_vpi_value valuep,
|
||||
int i;
|
||||
if (bytes > t_outStrSz) {
|
||||
// limit maximum size of output to size of buffer to prevent overrun.
|
||||
VL_VPI_WARNING_(
|
||||
__FILE__, __LINE__,
|
||||
"%s: Truncating string value of %s for %s"
|
||||
" as buffer size (%d, VL_MULS_MAX_WORDS=%d) is less than required (%d)",
|
||||
__func__, VerilatedVpiError::strFromVpiVal(valuep->format), fullname,
|
||||
t_outStrSz, VL_MULS_MAX_WORDS, bytes);
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__,
|
||||
"%s: Truncating string value of %s for %s"
|
||||
" as buffer size (%d, VL_VALUE_STRING_MAX_WORDS=%d) is less than "
|
||||
"required (%d)",
|
||||
__func__, VerilatedVpiError::strFromVpiVal(valuep->format),
|
||||
fullname, t_outStrSz, VL_VALUE_STRING_MAX_WORDS, bytes);
|
||||
bytes = t_outStrSz;
|
||||
}
|
||||
for (i = 0; i < bytes; ++i) {
|
||||
char val = datap[bytes - i - 1];
|
||||
const char val = datap[bytes - i - 1];
|
||||
// other simulators replace [leading?] zero chars with spaces, replicate here.
|
||||
t_outStr[i] = val ? val : ' ';
|
||||
}
|
||||
@@ -1893,13 +1899,13 @@ void vpi_get_value(vpiHandle object, p_vpi_value valuep) {
|
||||
VL_VPI_ERROR_RESET_();
|
||||
if (VL_UNLIKELY(!valuep)) return;
|
||||
|
||||
if (VerilatedVpioVar* vop = VerilatedVpioVar::castp(object)) {
|
||||
if (VerilatedVpioVar* const vop = VerilatedVpioVar::castp(object)) {
|
||||
vl_get_value(vop->varp(), vop->varDatap(), valuep, vop->fullname());
|
||||
return;
|
||||
} else if (VerilatedVpioParam* vop = VerilatedVpioParam::castp(object)) {
|
||||
} else if (const VerilatedVpioParam* const vop = VerilatedVpioParam::castp(object)) {
|
||||
vl_get_value(vop->varp(), vop->varDatap(), valuep, vop->fullname());
|
||||
return;
|
||||
} else if (VerilatedVpioConst* vop = VerilatedVpioConst::castp(object)) {
|
||||
} else if (VerilatedVpioConst* const vop = VerilatedVpioConst::castp(object)) {
|
||||
if (valuep->format == vpiIntVal) {
|
||||
valuep->value.integer = vop->num();
|
||||
return;
|
||||
@@ -1920,7 +1926,7 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__, "Ignoring vpi_put_value with nullptr value pointer");
|
||||
return nullptr;
|
||||
}
|
||||
if (VerilatedVpioVar* vop = VerilatedVpioVar::castp(object)) {
|
||||
if (const VerilatedVpioVar* const vop = VerilatedVpioVar::castp(object)) {
|
||||
VL_DEBUG_IF_PLI(
|
||||
VL_DBG_MSGF("- vpi: vpi_put_value name=%s fmt=%d vali=%d\n", vop->fullname(),
|
||||
valuep->format, valuep->value.integer);
|
||||
@@ -1953,7 +1959,7 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
valuep->value.vector[1].aval & vop->mask(), valuep->value.vector[0].aval);
|
||||
return object;
|
||||
} else if (vop->varp()->vltype() == VLVT_WDATA) {
|
||||
int words = VL_WORDS_I(vop->varp()->packed().elements());
|
||||
const int words = VL_WORDS_I(vop->varp()->packed().elements());
|
||||
WDataOutP datap = (reinterpret_cast<EData*>(vop->varDatap()));
|
||||
for (int i = 0; i < words; ++i) {
|
||||
datap[i] = valuep->value.vector[i].aval;
|
||||
@@ -1962,8 +1968,8 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
return object;
|
||||
}
|
||||
} else if (valuep->format == vpiBinStrVal) {
|
||||
int bits = vop->varp()->packed().elements();
|
||||
int len = std::strlen(valuep->value.str);
|
||||
const int bits = vop->varp()->packed().elements();
|
||||
const int len = std::strlen(valuep->value.str);
|
||||
CData* datap = (reinterpret_cast<CData*>(vop->varDatap()));
|
||||
for (int i = 0; i < bits; ++i) {
|
||||
char set = (i < len) ? (valuep->value.str[len - i - 1] == '1') : 0;
|
||||
@@ -1977,9 +1983,9 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
}
|
||||
return object;
|
||||
} else if (valuep->format == vpiOctStrVal) {
|
||||
int chars = (vop->varp()->packed().elements() + 2) / 3;
|
||||
int bytes = VL_BYTES_I(vop->varp()->packed().elements());
|
||||
int len = std::strlen(valuep->value.str);
|
||||
const int chars = (vop->varp()->packed().elements() + 2) / 3;
|
||||
const int bytes = VL_BYTES_I(vop->varp()->packed().elements());
|
||||
const int len = std::strlen(valuep->value.str);
|
||||
CData* datap = (reinterpret_cast<CData*>(vop->varDatap()));
|
||||
div_t idx;
|
||||
datap[0] = 0; // reset zero'th byte
|
||||
@@ -2029,7 +2035,7 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
} else if (valuep->format == vpiDecStrVal) {
|
||||
char remainder[16];
|
||||
unsigned long long val;
|
||||
int success = std::sscanf(valuep->value.str, "%30llu%15s", &val, remainder);
|
||||
const int success = std::sscanf(valuep->value.str, "%30llu%15s", &val, remainder);
|
||||
if (success < 1) {
|
||||
VL_VPI_ERROR_(__FILE__, __LINE__, "%s: Parsing failed for '%s' as value %s for %s",
|
||||
__func__, valuep->value.str,
|
||||
@@ -2057,12 +2063,12 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
return object;
|
||||
}
|
||||
} else if (valuep->format == vpiHexStrVal) {
|
||||
int chars = (vop->varp()->packed().elements() + 3) >> 2;
|
||||
const int chars = (vop->varp()->packed().elements() + 3) >> 2;
|
||||
CData* datap = (reinterpret_cast<CData*>(vop->varDatap()));
|
||||
char* val = valuep->value.str;
|
||||
// skip hex ident if one is detected at the start of the string
|
||||
if (val[0] == '0' && (val[1] == 'x' || val[1] == 'X')) val += 2;
|
||||
int len = std::strlen(val);
|
||||
const int len = std::strlen(val);
|
||||
for (int i = 0; i < chars; ++i) {
|
||||
char hex;
|
||||
// compute hex digit value
|
||||
@@ -2097,8 +2103,8 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
datap[(chars - 1) >> 1] &= vop->mask_byte((chars - 1) >> 1);
|
||||
return object;
|
||||
} else if (valuep->format == vpiStringVal) {
|
||||
int bytes = VL_BYTES_I(vop->varp()->packed().elements());
|
||||
int len = std::strlen(valuep->value.str);
|
||||
const int bytes = VL_BYTES_I(vop->varp()->packed().elements());
|
||||
const int len = std::strlen(valuep->value.str);
|
||||
CData* datap = (reinterpret_cast<CData*>(vop->varDatap()));
|
||||
for (int i = 0; i < bytes; ++i) {
|
||||
// prepend with 0 values before placing string the least significant bytes
|
||||
@@ -2120,11 +2126,11 @@ vpiHandle vpi_put_value(vpiHandle object, p_vpi_value valuep, p_vpi_time /*time_
|
||||
VL_VPI_ERROR_(__FILE__, __LINE__, "%s: Unsupported format (%s) as requested for %s",
|
||||
__func__, VerilatedVpiError::strFromVpiVal(valuep->format), vop->fullname());
|
||||
return nullptr;
|
||||
} else if (VerilatedVpioParam* vop = VerilatedVpioParam::castp(object)) {
|
||||
} else if (const VerilatedVpioParam* const vop = VerilatedVpioParam::castp(object)) {
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__, "%s: Ignoring vpi_put_value to vpiParameter: %s",
|
||||
__func__, vop->fullname());
|
||||
return nullptr;
|
||||
} else if (VerilatedVpioConst* vop = VerilatedVpioConst::castp(object)) {
|
||||
} else if (const VerilatedVpioConst* const vop = VerilatedVpioConst::castp(object)) {
|
||||
VL_VPI_WARNING_(__FILE__, __LINE__, "%s: Ignoring vpi_put_value to vpiConstant: %s",
|
||||
__func__, vop->fullname());
|
||||
return nullptr;
|
||||
@@ -2153,18 +2159,18 @@ void vpi_get_time(vpiHandle object, p_vpi_time time_p) {
|
||||
return;
|
||||
}
|
||||
if (time_p->type == vpiSimTime) {
|
||||
QData qtime = VL_TIME_Q();
|
||||
WData itime[2];
|
||||
const QData qtime = VL_TIME_Q();
|
||||
VlWide<2> itime;
|
||||
VL_SET_WQ(itime, qtime);
|
||||
time_p->low = itime[0];
|
||||
time_p->high = itime[1];
|
||||
return;
|
||||
} else if (time_p->type == vpiScaledRealTime) {
|
||||
double dtime = VL_TIME_D();
|
||||
if (VerilatedVpioScope* vop = VerilatedVpioScope::castp(object)) {
|
||||
int scalePow10
|
||||
if (VerilatedVpioScope* const vop = VerilatedVpioScope::castp(object)) {
|
||||
const int scalePow10
|
||||
= Verilated::threadContextp()->timeprecision() - vop->scopep()->timeunit();
|
||||
double scale = vl_time_multiplier(scalePow10); // e.g. 0.0001
|
||||
const double scale = vl_time_multiplier(scalePow10); // e.g. 0.0001
|
||||
dtime *= scale;
|
||||
}
|
||||
time_p->real = dtime;
|
||||
@@ -2198,7 +2204,7 @@ PLI_INT32 vpi_mcd_printf(PLI_UINT32 mcd, PLI_BYTE8* formatp, ...) {
|
||||
VL_VPI_ERROR_RESET_();
|
||||
va_list ap;
|
||||
va_start(ap, formatp);
|
||||
int chars = vpi_mcd_vprintf(mcd, formatp, ap);
|
||||
const int chars = vpi_mcd_vprintf(mcd, formatp, ap);
|
||||
va_end(ap);
|
||||
return chars;
|
||||
}
|
||||
@@ -2208,7 +2214,7 @@ PLI_INT32 vpi_printf(PLI_BYTE8* formatp, ...) {
|
||||
VL_VPI_ERROR_RESET_();
|
||||
va_list ap;
|
||||
va_start(ap, formatp);
|
||||
int chars = vpi_vprintf(formatp, ap);
|
||||
const int chars = vpi_vprintf(formatp, ap);
|
||||
va_end(ap);
|
||||
return chars;
|
||||
}
|
||||
@@ -2221,11 +2227,11 @@ PLI_INT32 vpi_vprintf(PLI_BYTE8* formatp, va_list ap) {
|
||||
|
||||
PLI_INT32 vpi_mcd_vprintf(PLI_UINT32 mcd, PLI_BYTE8* format, va_list ap) {
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
FILE* fp = VL_CVT_I_FP(mcd);
|
||||
FILE* const fp = VL_CVT_I_FP(mcd);
|
||||
VL_VPI_ERROR_RESET_();
|
||||
// cppcheck-suppress nullPointer
|
||||
if (VL_UNLIKELY(!fp)) return 0;
|
||||
int chars = vfprintf(fp, format, ap);
|
||||
const int chars = vfprintf(fp, format, ap);
|
||||
return chars;
|
||||
}
|
||||
|
||||
@@ -2238,7 +2244,7 @@ PLI_INT32 vpi_flush(void) {
|
||||
|
||||
PLI_INT32 vpi_mcd_flush(PLI_UINT32 mcd) {
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
FILE* fp = VL_CVT_I_FP(mcd);
|
||||
FILE* const fp = VL_CVT_I_FP(mcd);
|
||||
VL_VPI_ERROR_RESET_();
|
||||
if (VL_UNLIKELY(!fp)) return 1;
|
||||
std::fflush(fp);
|
||||
@@ -2255,7 +2261,7 @@ PLI_INT32 vpi_chk_error(p_vpi_error_info error_info_p) {
|
||||
// executing vpi_chk_error does not reset error
|
||||
// error_info_p can be nullptr, so only return level in that case
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
p_vpi_error_info _error_info_p = VerilatedVpiImp::error_info()->getError();
|
||||
p_vpi_error_info const _error_info_p = VerilatedVpiImp::error_info()->getError();
|
||||
if (error_info_p && _error_info_p) *error_info_p = *_error_info_p;
|
||||
if (!_error_info_p) return 0; // no error occured
|
||||
return _error_info_p->level; // return error severity level
|
||||
@@ -2271,7 +2277,7 @@ PLI_INT32 vpi_free_object(vpiHandle object) {
|
||||
PLI_INT32 vpi_release_handle(vpiHandle object) {
|
||||
VL_DEBUG_IF_PLI(VL_DBG_MSGF("- vpi: vpi_release_handle %p\n", object););
|
||||
VerilatedVpiImp::assertOneCheck();
|
||||
VerilatedVpio* vop = VerilatedVpio::castp(object);
|
||||
VerilatedVpio* const vop = VerilatedVpio::castp(object);
|
||||
VL_VPI_ERROR_RESET_();
|
||||
if (VL_UNLIKELY(!vop)) return 0;
|
||||
VL_DO_DANGLING(delete vop, vop);
|
||||
|
||||
@@ -47,7 +47,7 @@ public:
|
||||
static bool callValueCbs() VL_MT_UNSAFE_ONE;
|
||||
/// Call callbacks of arbitrary types.
|
||||
/// User wrapper code should call this from their main loops.
|
||||
static bool callCbs(vluint32_t reason) VL_MT_UNSAFE_ONE;
|
||||
static bool callCbs(const vluint32_t reason) VL_MT_UNSAFE_ONE;
|
||||
/// Returns time of the next registered VPI callback, or
|
||||
/// ~(0ULL) if none are registered
|
||||
static QData cbNextDeadline() VL_MT_UNSAFE_ONE;
|
||||
|
||||
@@ -421,7 +421,8 @@ typedef unsigned long long vluint64_t; ///< 64-bit unsigned type
|
||||
// Verilated function size macros
|
||||
|
||||
#define VL_MULS_MAX_WORDS 16 ///< Max size in words of MULS operation
|
||||
#define VL_TO_STRING_MAX_WORDS 64 ///< Max size in words of String conversion operation
|
||||
#define VL_VALUE_STRING_MAX_WORDS 64 ///< Max size in words of String conversion operation
|
||||
#define VL_VALUE_STRING_MAX_CHARS (VL_VALUE_STRING_MAX_WORDS * VL_EDATASIZE / VL_BYTESIZE)
|
||||
|
||||
//=========================================================================
|
||||
// Base macros
|
||||
@@ -471,7 +472,12 @@ typedef unsigned long long vluint64_t; ///< 64-bit unsigned type
|
||||
(val) = ((vluint64_t)lo) | (((vluint64_t)hi) << 32); \
|
||||
}
|
||||
#elif defined(__aarch64__)
|
||||
# define VL_RDTSC(val) asm volatile("mrs %[rt],PMCCNTR_EL0" : [rt] "=r"(val));
|
||||
// 1 GHz virtual system timer on SBSA level 5 compliant systems, else often 100 MHz
|
||||
# define VL_RDTSC(val) \
|
||||
{ \
|
||||
asm volatile("isb" : : : "memory"); \
|
||||
asm volatile("mrs %[rt],CNTVCT_EL0" : [rt] "=r"(val)); \
|
||||
}
|
||||
#else
|
||||
// We just silently ignore unknown OSes, as only leads to missing statistics
|
||||
# define VL_RDTSC(val) (val) = 0;
|
||||
|
||||
+1
-17
@@ -38,23 +38,7 @@ def test():
|
||||
ci_fold_start("configure")
|
||||
print("Stage 1: configure (coverage on)")
|
||||
run("autoconf")
|
||||
cxx_flags = (
|
||||
"--coverage"
|
||||
# Otherwise inline may not show as uncovered
|
||||
# If we use this then e.g. verilated.h functions properly show up
|
||||
# if unused.
|
||||
# However, VerilatedSerialize::write then changes from covered
|
||||
# to uncovered (in G++ 9.3.0) even with all inlining turned off.
|
||||
# Having false negative coverage is more effort then missing negatives.
|
||||
# Also this seems to explode the runtime (since a lot more data).
|
||||
# + " -fkeep-inline-functions"
|
||||
# Otherwise static may not show as uncovered
|
||||
+ " -fkeep-static-functions"
|
||||
# Exceptions can pollute the branch coverage data
|
||||
+ " -fno-exceptions"
|
||||
# Define-out some impossible stuff
|
||||
+ " -DVL_GCOV")
|
||||
run("./configure --enable-longtests CXX='g++ " + cxx_flags + "'")
|
||||
run("./configure --enable-longtests --enable-coverage CXX=g++")
|
||||
ci_fold_end()
|
||||
|
||||
if Args.stage_enabled[2]:
|
||||
|
||||
+2
-2
@@ -66,11 +66,11 @@ def cwrite(filename):
|
||||
fh.write(" auto* gp = &m_graph;\n")
|
||||
for ver in sorted(Vertexes, key=lambda ver: ver['num']):
|
||||
fh.write(
|
||||
" auto* %s = new V3GraphTestVertex(gp, \"%s\"); if (%s) {}\n"
|
||||
" auto* %s = new V3GraphTestVertex{gp, \"%s\"}; if (%s) {}\n"
|
||||
% (ver['name'], ver['name'], ver['name']))
|
||||
fh.write("\n")
|
||||
for edge in Edges:
|
||||
fh.write(" new V3GraphEdge(gp, %s, %s, %s, %s);\n" %
|
||||
fh.write(" new V3GraphEdge{gp, %s, %s, %s, %s};\n" %
|
||||
(edge['from'], edge['to'], edge['weight'],
|
||||
"true" if edge['cutable'] else "false"))
|
||||
fh.write("}\n")
|
||||
|
||||
+13
-9
@@ -77,13 +77,11 @@ TGT = ../../verilator_bin$(EXEEXT)
|
||||
#################
|
||||
ifeq ($(VL_DEBUG),)
|
||||
# Optimize
|
||||
COPT = -O2
|
||||
CPPFLAGS += -O2
|
||||
else
|
||||
# Debug
|
||||
COPT = -ggdb -DVL_DEBUG -D_GLIBCXX_DEBUG
|
||||
# Debug & Profile:
|
||||
#LDFLAGS += -pg -g
|
||||
#COPT = -ggdb -pg -g
|
||||
CPPFLAGS += @CFG_CXXFLAGS_DEBUG@ -DVL_DEBUG -D_GLIBCXX_DEBUG
|
||||
LDFLAGS += @CFG_LDFLAGS_DEBUG@
|
||||
endif
|
||||
#################
|
||||
|
||||
@@ -96,7 +94,6 @@ LIBS = $(CFG_LIBS) -lm
|
||||
CPPFLAGS += -MMD
|
||||
CPPFLAGS += -I. -I$(bldsrc) -I$(srcdir) -I$(incdir) -I../../include
|
||||
#CPPFLAGS += -DVL_LEAK_CHECKS # If running valgrind or other hunting tool
|
||||
CPPFLAGS += $(COPT)
|
||||
CPPFLAGS += -MP # Only works on recent GCC versions
|
||||
ifeq ($(CFG_WITH_CCWARN),yes) # Local... Else don't burden users
|
||||
CPPFLAGS += -W -Wall $(CFG_CXXFLAGS_WEXTRA) $(CFG_CXXFLAGS_SRC) -Werror
|
||||
@@ -172,6 +169,7 @@ RAW_OBJS = \
|
||||
V3Clean.o \
|
||||
V3Clock.o \
|
||||
V3Combine.o \
|
||||
V3Common.o \
|
||||
V3Config.o \
|
||||
V3Const__gen.o \
|
||||
V3Coverage.o \
|
||||
@@ -182,11 +180,16 @@ RAW_OBJS = \
|
||||
V3DepthBlock.o \
|
||||
V3Descope.o \
|
||||
V3DupFinder.o \
|
||||
V3EmitC.o \
|
||||
V3EmitCBase.o \
|
||||
V3EmitCConstPool.o \
|
||||
V3EmitCFunc.o \
|
||||
V3EmitCHeaders.o \
|
||||
V3EmitCImp.o \
|
||||
V3EmitCInlines.o \
|
||||
V3EmitCSyms.o \
|
||||
V3EmitCMake.o \
|
||||
V3EmitCMain.o \
|
||||
V3EmitCMake.o \
|
||||
V3EmitCModel.o \
|
||||
V3EmitCSyms.o \
|
||||
V3EmitMk.o \
|
||||
V3EmitV.o \
|
||||
V3EmitXml.o \
|
||||
@@ -253,6 +256,7 @@ RAW_OBJS = \
|
||||
V3Undriven.o \
|
||||
V3Unknown.o \
|
||||
V3Unroll.o \
|
||||
V3VariableOrder.o \
|
||||
V3Waiver.o \
|
||||
V3Width.o \
|
||||
V3WidthSel.o \
|
||||
|
||||
+19
-20
@@ -64,11 +64,11 @@ private:
|
||||
|
||||
public:
|
||||
LatchDetectGraphVertex(V3Graph* graphp, const string& name, VertexType type = VT_BLOCK)
|
||||
: V3GraphVertex(graphp)
|
||||
, m_name(name)
|
||||
, m_type(type) {}
|
||||
virtual string name() const { return m_name + " " + typestr(); }
|
||||
virtual string dotColor() const { return user() ? "green" : "black"; }
|
||||
: V3GraphVertex{graphp}
|
||||
, m_name{name}
|
||||
, m_type{type} {}
|
||||
virtual string name() const override { return m_name + " " + typestr(); }
|
||||
virtual string dotColor() const override { return user() ? "green" : "black"; }
|
||||
virtual int type() const { return m_type; }
|
||||
};
|
||||
|
||||
@@ -120,7 +120,7 @@ protected:
|
||||
|
||||
public:
|
||||
LatchDetectGraph() { clear(); }
|
||||
~LatchDetectGraph() { clear(); }
|
||||
virtual ~LatchDetectGraph() override { clear(); }
|
||||
// ACCESSORS
|
||||
LatchDetectGraphVertex* currentp() { return m_curVertexp; }
|
||||
void currentp(LatchDetectGraphVertex* vertex) { m_curVertexp = vertex; }
|
||||
@@ -142,17 +142,17 @@ public:
|
||||
// Add a new control path and connect it to its parent
|
||||
LatchDetectGraphVertex* addPathVertex(LatchDetectGraphVertex* parent, const string& name,
|
||||
bool branch = false) {
|
||||
m_curVertexp = new LatchDetectGraphVertex(this, name,
|
||||
m_curVertexp = new LatchDetectGraphVertex{this, name,
|
||||
branch ? LatchDetectGraphVertex::VT_BRANCH
|
||||
: LatchDetectGraphVertex::VT_BLOCK);
|
||||
new V3GraphEdge(this, parent, m_curVertexp, 1);
|
||||
: LatchDetectGraphVertex::VT_BLOCK};
|
||||
new V3GraphEdge{this, parent, m_curVertexp, 1};
|
||||
return m_curVertexp;
|
||||
}
|
||||
// Add a new output variable vertex and store a pointer to it in the user1 field of the
|
||||
// variables AstNode
|
||||
LatchDetectGraphVertex* addOutputVertex(AstVarRef* nodep) {
|
||||
LatchDetectGraphVertex* outVertexp
|
||||
= new LatchDetectGraphVertex(this, nodep->name(), LatchDetectGraphVertex::VT_OUTPUT);
|
||||
= new LatchDetectGraphVertex{this, nodep->name(), LatchDetectGraphVertex::VT_OUTPUT};
|
||||
nodep->varp()->user1p(outVertexp);
|
||||
m_outputs.push_back(nodep);
|
||||
return outVertexp;
|
||||
@@ -437,7 +437,7 @@ private:
|
||||
virtual void visit(AstInitial* nodep) override {
|
||||
// Relink to IACTIVE, unless already under it
|
||||
UINFO(4, " INITIAL " << nodep << endl);
|
||||
ActiveDlyVisitor dlyvisitor(nodep, ActiveDlyVisitor::CT_INITIAL);
|
||||
ActiveDlyVisitor dlyvisitor{nodep, ActiveDlyVisitor::CT_INITIAL};
|
||||
AstActive* wantactivep = m_namer.getIActive(nodep->fileline());
|
||||
nodep->unlinkFrBack();
|
||||
wantactivep->addStmtsp(nodep);
|
||||
@@ -470,15 +470,14 @@ private:
|
||||
VL_DO_DANGLING(nodep->unlinkFrBack()->deleteTree(), nodep);
|
||||
return;
|
||||
}
|
||||
ActiveDlyVisitor dlyvisitor(nodep, ActiveDlyVisitor::CT_INITIAL);
|
||||
ActiveDlyVisitor dlyvisitor{nodep, ActiveDlyVisitor::CT_INITIAL};
|
||||
if (!m_scopeFinalp) {
|
||||
m_scopeFinalp = new AstCFunc(
|
||||
nodep->fileline(), "_final_" + m_namer.scopep()->nameDotless(), m_namer.scopep());
|
||||
m_scopeFinalp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
m_scopeFinalp->addInitsp(
|
||||
new AstCStmt(nodep->fileline(), EmitCBaseVisitor::symTopAssign() + "\n"));
|
||||
m_scopeFinalp->dontCombine(true);
|
||||
m_scopeFinalp->formCallTree(true);
|
||||
m_scopeFinalp->isStatic(false);
|
||||
m_scopeFinalp->isLoose(true);
|
||||
m_scopeFinalp->slow(true);
|
||||
m_namer.scopep()->addActivep(m_scopeFinalp);
|
||||
}
|
||||
@@ -541,14 +540,14 @@ private:
|
||||
|
||||
// Warn and/or convert any delayed assignments
|
||||
if (combo && !sequent) {
|
||||
ActiveLatchCheckVisitor latchvisitor(nodep, kwd);
|
||||
ActiveLatchCheckVisitor latchvisitor{nodep, kwd};
|
||||
if (kwd == VAlwaysKwd::ALWAYS_LATCH) {
|
||||
ActiveDlyVisitor dlyvisitor(nodep, ActiveDlyVisitor::CT_LATCH);
|
||||
ActiveDlyVisitor dlyvisitor{nodep, ActiveDlyVisitor::CT_LATCH};
|
||||
} else {
|
||||
ActiveDlyVisitor dlyvisitor(nodep, ActiveDlyVisitor::CT_COMBO);
|
||||
ActiveDlyVisitor dlyvisitor{nodep, ActiveDlyVisitor::CT_COMBO};
|
||||
}
|
||||
} else if (!combo && sequent) {
|
||||
ActiveDlyVisitor dlyvisitor(nodep, ActiveDlyVisitor::CT_SEQ);
|
||||
ActiveDlyVisitor dlyvisitor{nodep, ActiveDlyVisitor::CT_SEQ};
|
||||
}
|
||||
}
|
||||
virtual void visit(AstAlways* nodep) override {
|
||||
@@ -621,6 +620,6 @@ public:
|
||||
|
||||
void V3Active::activeAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ ActiveVisitor visitor(nodep); } // Destruct before checking
|
||||
{ ActiveVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("active", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+1
-1
@@ -136,6 +136,6 @@ public:
|
||||
|
||||
void V3ActiveTop::activeTopAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ ActiveTopVisitor visitor(nodep); } // Destruct before checking
|
||||
{ ActiveTopVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("activetop", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+4
-4
@@ -163,7 +163,7 @@ private:
|
||||
} else {
|
||||
++m_statAsNotImm;
|
||||
}
|
||||
bool force = VN_IS(nodep, AssertIntrinsic);
|
||||
const bool force = VN_IS(nodep, AssertIntrinsic);
|
||||
if (passsp) passsp = newIfAssertOn(passsp, force);
|
||||
if (failsp) failsp = newIfAssertOn(failsp, force);
|
||||
if (!failsp) failsp = newFireAssertUnchecked(nodep, "'assert' failed.");
|
||||
@@ -231,7 +231,7 @@ private:
|
||||
} while (ifp);
|
||||
|
||||
AstNode* newifp = nodep->cloneTree(false);
|
||||
bool allow_none = nodep->unique0Pragma();
|
||||
const bool allow_none = nodep->unique0Pragma();
|
||||
|
||||
// Empty case means no property
|
||||
if (!propp) propp = new AstConst(nodep->fileline(), AstConst::BitFalse());
|
||||
@@ -305,7 +305,7 @@ private:
|
||||
// Empty case means no property
|
||||
if (!propp) propp = new AstConst(nodep->fileline(), AstConst::BitFalse());
|
||||
|
||||
bool allow_none = has_default || nodep->unique0Pragma();
|
||||
const bool allow_none = has_default || nodep->unique0Pragma();
|
||||
AstNode* ohot
|
||||
= (allow_none
|
||||
? static_cast<AstNode*>(new AstOneHot0(nodep->fileline(), propp))
|
||||
@@ -474,6 +474,6 @@ public:
|
||||
|
||||
void V3Assert::assertAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ AssertVisitor visitor(nodep); } // Destruct before checking
|
||||
{ AssertVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("assert", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+1
-1
@@ -205,6 +205,6 @@ public:
|
||||
|
||||
void V3AssertPre::assertPreAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ AssertPreVisitor visitor(nodep); } // Destruct before checking
|
||||
{ AssertPreVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("assertpre", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+46
-39
@@ -74,9 +74,10 @@ AstNode::AstNode(AstType t, FileLine* fl)
|
||||
m_clonep = nullptr;
|
||||
m_cloneCnt = 0;
|
||||
// Attributes
|
||||
m_didWidth = false;
|
||||
m_doingWidth = false;
|
||||
m_protect = true;
|
||||
m_flags.didWidth = false;
|
||||
m_flags.doingWidth = false;
|
||||
m_flags.protect = true;
|
||||
m_flags.unused = 0; // Initializing this avoids a read-modify-write on construction
|
||||
m_user1u = VNUser(0);
|
||||
m_user1Cnt = 0;
|
||||
m_user2u = VNUser(0);
|
||||
@@ -119,7 +120,7 @@ string AstNode::encodeName(const string& namein) {
|
||||
// a user identifier nor a temp we create in Verilator.
|
||||
// We also do *NOT* use __DOT__ etc, as we search for those
|
||||
// in some replacements, and don't want to mangle the user's names.
|
||||
unsigned val = pos[0] & 0xff; // Mask to avoid sign extension
|
||||
const unsigned val = pos[0] & 0xff; // Mask to avoid sign extension
|
||||
std::stringstream hex;
|
||||
hex << std::setfill('0') << std::setw(2) << std::hex << val;
|
||||
out += "__0" + hex.str();
|
||||
@@ -229,7 +230,8 @@ string AstNode::prettyTypeName() const {
|
||||
//######################################################################
|
||||
// Insertion
|
||||
|
||||
inline void AstNode::debugTreeChange(const char* prefix, int lineno, bool next){
|
||||
inline void AstNode::debugTreeChange(const AstNode* nodep, const char* prefix, int lineno,
|
||||
bool next){
|
||||
#ifdef VL_DEBUG
|
||||
// Called on all major tree changers.
|
||||
// Only for use for those really nasty bugs relating to internals
|
||||
@@ -253,8 +255,8 @@ inline void AstNode::debugTreeChange(const char* prefix, int lineno, bool next){
|
||||
AstNode* AstNode::addNext(AstNode* nodep, AstNode* newp) {
|
||||
// Add to m_nextp, returns this
|
||||
UDEBUGONLY(UASSERT_OBJ(newp, nodep, "Null item passed to addNext"););
|
||||
nodep->debugTreeChange("-addNextThs: ", __LINE__, false);
|
||||
newp->debugTreeChange("-addNextNew: ", __LINE__, true);
|
||||
debugTreeChange(nodep, "-addNextThs: ", __LINE__, false);
|
||||
debugTreeChange(newp, "-addNextNew: ", __LINE__, true);
|
||||
if (!nodep) { // verilog.y and lots of other places assume this
|
||||
return newp;
|
||||
} else {
|
||||
@@ -284,7 +286,7 @@ AstNode* AstNode::addNext(AstNode* nodep, AstNode* newp) {
|
||||
newp->editCountInc();
|
||||
if (oldtailp->m_iterpp) *(oldtailp->m_iterpp) = newp; // Iterate on new item
|
||||
}
|
||||
nodep->debugTreeChange("-addNextOut:", __LINE__, true);
|
||||
debugTreeChange(nodep, "-addNextOut:", __LINE__, true);
|
||||
return nodep;
|
||||
}
|
||||
|
||||
@@ -299,8 +301,8 @@ void AstNode::addNextHere(AstNode* newp) {
|
||||
// New could be head of single node, or list
|
||||
UASSERT(newp, "Null item passed to addNext");
|
||||
UASSERT(!newp->backp(), "New node (back) already assigned?");
|
||||
this->debugTreeChange("-addHereThs: ", __LINE__, false);
|
||||
newp->debugTreeChange("-addHereNew: ", __LINE__, true);
|
||||
debugTreeChange(this, "-addHereThs: ", __LINE__, false);
|
||||
debugTreeChange(newp, "-addHereNew: ", __LINE__, true);
|
||||
newp->editCountInc();
|
||||
|
||||
AstNode* addlastp = newp->m_headtailp; // Last node in list to be added
|
||||
@@ -338,7 +340,7 @@ void AstNode::addNextHere(AstNode* newp) {
|
||||
}
|
||||
|
||||
if (this->m_iterpp) *(this->m_iterpp) = newp; // Iterate on new item
|
||||
this->debugTreeChange("-addHereOut: ", __LINE__, true);
|
||||
debugTreeChange(this, "-addHereOut: ", __LINE__, true);
|
||||
}
|
||||
|
||||
void AstNode::setOp1p(AstNode* newp) {
|
||||
@@ -346,12 +348,12 @@ void AstNode::setOp1p(AstNode* newp) {
|
||||
UDEBUGONLY(UASSERT_OBJ(!m_op1p, this, "Adding to non-empty, non-list op1"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_backp, newp, "Adding already linked node"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_nextp, newp, "Adding list to non-list op1"););
|
||||
this->debugTreeChange("-setOp1pThs: ", __LINE__, false);
|
||||
newp->debugTreeChange("-setOp1pNew: ", __LINE__, true);
|
||||
debugTreeChange(this, "-setOp1pThs: ", __LINE__, false);
|
||||
debugTreeChange(newp, "-setOp1pNew: ", __LINE__, true);
|
||||
m_op1p = newp;
|
||||
newp->editCountInc();
|
||||
newp->m_backp = this;
|
||||
this->debugTreeChange("-setOp1pOut: ", __LINE__, false);
|
||||
debugTreeChange(this, "-setOp1pOut: ", __LINE__, false);
|
||||
}
|
||||
|
||||
void AstNode::setOp2p(AstNode* newp) {
|
||||
@@ -359,12 +361,12 @@ void AstNode::setOp2p(AstNode* newp) {
|
||||
UDEBUGONLY(UASSERT_OBJ(!m_op2p, this, "Adding to non-empty, non-list op2"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_backp, newp, "Adding already linked node"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_nextp, newp, "Adding list to non-list op2"););
|
||||
this->debugTreeChange("-setOp2pThs: ", __LINE__, false);
|
||||
newp->debugTreeChange("-setOp2pNew: ", __LINE__, true);
|
||||
debugTreeChange(this, "-setOp2pThs: ", __LINE__, false);
|
||||
debugTreeChange(newp, "-setOp2pNew: ", __LINE__, true);
|
||||
m_op2p = newp;
|
||||
newp->editCountInc();
|
||||
newp->m_backp = this;
|
||||
this->debugTreeChange("-setOp2pOut: ", __LINE__, false);
|
||||
debugTreeChange(this, "-setOp2pOut: ", __LINE__, false);
|
||||
}
|
||||
|
||||
void AstNode::setOp3p(AstNode* newp) {
|
||||
@@ -372,12 +374,12 @@ void AstNode::setOp3p(AstNode* newp) {
|
||||
UDEBUGONLY(UASSERT_OBJ(!m_op3p, this, "Adding to non-empty, non-list op3"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_backp, newp, "Adding already linked node"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_nextp, newp, "Adding list to non-list op3"););
|
||||
this->debugTreeChange("-setOp3pThs: ", __LINE__, false);
|
||||
newp->debugTreeChange("-setOp3pNew: ", __LINE__, true);
|
||||
debugTreeChange(this, "-setOp3pThs: ", __LINE__, false);
|
||||
debugTreeChange(newp, "-setOp3pNew: ", __LINE__, true);
|
||||
m_op3p = newp;
|
||||
newp->editCountInc();
|
||||
newp->m_backp = this;
|
||||
this->debugTreeChange("-setOp3pOut: ", __LINE__, false);
|
||||
debugTreeChange(this, "-setOp3pOut: ", __LINE__, false);
|
||||
}
|
||||
|
||||
void AstNode::setOp4p(AstNode* newp) {
|
||||
@@ -385,12 +387,12 @@ void AstNode::setOp4p(AstNode* newp) {
|
||||
UDEBUGONLY(UASSERT_OBJ(!m_op4p, this, "Adding to non-empty, non-list op4"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_backp, newp, "Adding already linked node"););
|
||||
UDEBUGONLY(UASSERT_OBJ(!newp->m_nextp, newp, "Adding list to non-list op4"););
|
||||
this->debugTreeChange("-setOp4pThs: ", __LINE__, false);
|
||||
newp->debugTreeChange("-setOp4pNew: ", __LINE__, true);
|
||||
debugTreeChange(this, "-setOp4pThs: ", __LINE__, false);
|
||||
debugTreeChange(newp, "-setOp4pNew: ", __LINE__, true);
|
||||
m_op4p = newp;
|
||||
newp->editCountInc();
|
||||
newp->m_backp = this;
|
||||
this->debugTreeChange("-setOp4pOut: ", __LINE__, false);
|
||||
debugTreeChange(this, "-setOp4pOut: ", __LINE__, false);
|
||||
}
|
||||
|
||||
void AstNode::addOp1p(AstNode* newp) {
|
||||
@@ -452,7 +454,7 @@ void AstNRelinker::dump(std::ostream& str) const {
|
||||
}
|
||||
|
||||
AstNode* AstNode::unlinkFrBackWithNext(AstNRelinker* linkerp) {
|
||||
this->debugTreeChange("-unlinkWNextThs: ", __LINE__, true);
|
||||
debugTreeChange(this, "-unlinkWNextThs: ", __LINE__, true);
|
||||
AstNode* oldp = this;
|
||||
UASSERT(oldp->m_backp, "Node has no back, already unlinked?");
|
||||
oldp->editCountInc();
|
||||
@@ -507,12 +509,12 @@ AstNode* AstNode::unlinkFrBackWithNext(AstNRelinker* linkerp) {
|
||||
// Iterator fixup
|
||||
if (oldp->m_iterpp) *(oldp->m_iterpp) = nullptr;
|
||||
oldp->m_iterpp = nullptr;
|
||||
oldp->debugTreeChange("-unlinkWNextOut: ", __LINE__, true);
|
||||
debugTreeChange(oldp, "-unlinkWNextOut: ", __LINE__, true);
|
||||
return oldp;
|
||||
}
|
||||
|
||||
AstNode* AstNode::unlinkFrBack(AstNRelinker* linkerp) {
|
||||
this->debugTreeChange("-unlinkFrBkThs: ", __LINE__, true);
|
||||
debugTreeChange(this, "-unlinkFrBkThs: ", __LINE__, true);
|
||||
AstNode* oldp = this;
|
||||
UASSERT(oldp->m_backp, "Node has no back, already unlinked?");
|
||||
oldp->editCountInc();
|
||||
@@ -571,7 +573,7 @@ AstNode* AstNode::unlinkFrBack(AstNRelinker* linkerp) {
|
||||
oldp->m_backp = nullptr;
|
||||
oldp->m_headtailp = this;
|
||||
oldp->m_iterpp = nullptr;
|
||||
oldp->debugTreeChange("-unlinkFrBkOut: ", __LINE__, true);
|
||||
debugTreeChange(oldp, "-unlinkFrBkOut: ", __LINE__, true);
|
||||
return oldp;
|
||||
}
|
||||
|
||||
@@ -591,8 +593,8 @@ void AstNode::relink(AstNRelinker* linkerp) {
|
||||
}
|
||||
|
||||
AstNode* backp = linkerp->m_backp;
|
||||
this->debugTreeChange("-relinkNew: ", __LINE__, true);
|
||||
backp->debugTreeChange("-relinkTre: ", __LINE__, true);
|
||||
debugTreeChange(this, "-relinkNew: ", __LINE__, true);
|
||||
debugTreeChange(backp, "-relinkTre: ", __LINE__, true);
|
||||
|
||||
switch (linkerp->m_chg) {
|
||||
case AstNRelinker::RELINK_NEXT: backp->addNextHere(newp); break;
|
||||
@@ -617,7 +619,7 @@ void AstNode::relink(AstNRelinker* linkerp) {
|
||||
}
|
||||
// Empty the linker so not used twice accidentally
|
||||
linkerp->m_backp = nullptr;
|
||||
this->debugTreeChange("-relinkOut: ", __LINE__, true);
|
||||
debugTreeChange(this, "-relinkOut: ", __LINE__, true);
|
||||
}
|
||||
|
||||
void AstNode::relinkOneLink(AstNode*& pointpr, // Ref to pointer that gets set to newp
|
||||
@@ -699,7 +701,7 @@ AstNode* AstNode::cloneTreeIterList() {
|
||||
}
|
||||
|
||||
AstNode* AstNode::cloneTree(bool cloneNextLink) {
|
||||
this->debugTreeChange("-cloneThs: ", __LINE__, cloneNextLink);
|
||||
debugTreeChange(this, "-cloneThs: ", __LINE__, cloneNextLink);
|
||||
cloneClearTree();
|
||||
AstNode* newp;
|
||||
if (cloneNextLink && this->m_nextp) {
|
||||
@@ -711,7 +713,7 @@ AstNode* AstNode::cloneTree(bool cloneNextLink) {
|
||||
}
|
||||
newp->m_backp = nullptr;
|
||||
newp->cloneRelinkTree();
|
||||
newp->debugTreeChange("-cloneOut: ", __LINE__, true);
|
||||
debugTreeChange(newp, "-cloneOut: ", __LINE__, true);
|
||||
return newp;
|
||||
}
|
||||
|
||||
@@ -763,7 +765,7 @@ void AstNode::deleteTree() {
|
||||
// deleteTree always deletes the next link, because you must have called
|
||||
// unlinkFromBack or unlinkFromBackWithNext as appropriate before calling this.
|
||||
UASSERT(!m_backp, "Delete called on node with backlink still set");
|
||||
this->debugTreeChange("-delTree: ", __LINE__, true);
|
||||
debugTreeChange(this, "-delTree: ", __LINE__, true);
|
||||
this->editCountInc();
|
||||
// MUST be depth first!
|
||||
deleteTreeIter();
|
||||
@@ -932,7 +934,9 @@ AstNode* AstNode::iterateSubtreeReturnEdits(AstNVisitor& v) {
|
||||
void AstNode::cloneRelinkTree() {
|
||||
// private: Cleanup clone() operation on whole tree. Publicly call cloneTree() instead.
|
||||
for (AstNode* nodep = this; nodep; nodep = nodep->m_nextp) {
|
||||
if (m_dtypep && m_dtypep->clonep()) m_dtypep = m_dtypep->clonep();
|
||||
if (nodep->m_dtypep && nodep->m_dtypep->clonep()) {
|
||||
nodep->m_dtypep = nodep->m_dtypep->clonep();
|
||||
}
|
||||
nodep->cloneRelink();
|
||||
if (nodep->m_op1p) nodep->m_op1p->cloneRelinkTree();
|
||||
if (nodep->m_op2p) nodep->m_op2p->cloneRelinkTree();
|
||||
@@ -1045,7 +1049,7 @@ void AstNode::dumpTreeFileGdb(const AstNode* nodep, // LCOV_EXCL_START
|
||||
cout << "<nullptr>" << endl;
|
||||
return;
|
||||
}
|
||||
string filename = filenamep ? filenamep : v3Global.debugFilename("debug.tree", 98);
|
||||
const string filename = filenamep ? filenamep : v3Global.debugFilename("debug.tree", 98);
|
||||
v3Global.rootp()->dumpTreeFile(filename);
|
||||
} // LCOV_EXCL_STOP
|
||||
|
||||
@@ -1121,7 +1125,7 @@ void AstNode::dumpTreeFile(const string& filename, bool append, bool doDump, boo
|
||||
if (doDump) {
|
||||
{ // Write log & close
|
||||
UINFO(2, "Dumping " << filename << endl);
|
||||
const std::unique_ptr<std::ofstream> logsp(V3File::new_ofstream(filename, append));
|
||||
const std::unique_ptr<std::ofstream> logsp{V3File::new_ofstream(filename, append)};
|
||||
if (logsp->fail()) v3fatal("Can't write " << filename);
|
||||
*logsp << "Verilator Tree Dump (format 0x3900) from <e" << std::dec << editCountLast();
|
||||
*logsp << "> to <e" << std::dec << editCountGbl() << ">\n";
|
||||
@@ -1178,7 +1182,7 @@ string AstNode::locationStr() const {
|
||||
str += modp->hierName();
|
||||
return str;
|
||||
} else if ((nvrp = VN_CAST_CONST(backp, NodeVarRef))) {
|
||||
string prettyName = nvrp->prettyName();
|
||||
const string prettyName = nvrp->prettyName();
|
||||
// VarRefs have not been flattened yet and do not contain location information
|
||||
if (prettyName != nvrp->name()) {
|
||||
str += prettyName;
|
||||
@@ -1261,12 +1265,15 @@ AstNodeDType* AstNode::findBitRangeDType(const VNumRange& range, int widthMin,
|
||||
AstBasicDType* AstNode::findInsertSameDType(AstBasicDType* nodep) {
|
||||
return v3Global.rootp()->typeTablep()->findInsertSameDType(nodep);
|
||||
}
|
||||
AstNodeDType* AstNode::findVoidDType() const {
|
||||
return v3Global.rootp()->typeTablep()->findVoidDType(fileline());
|
||||
AstNodeDType* AstNode::findEmptyQueueDType() const {
|
||||
return v3Global.rootp()->typeTablep()->findEmptyQueueDType(fileline());
|
||||
}
|
||||
AstNodeDType* AstNode::findQueueIndexDType() const {
|
||||
return v3Global.rootp()->typeTablep()->findQueueIndexDType(fileline());
|
||||
}
|
||||
AstNodeDType* AstNode::findVoidDType() const {
|
||||
return v3Global.rootp()->typeTablep()->findVoidDType(fileline());
|
||||
}
|
||||
|
||||
//######################################################################
|
||||
// AstNVisitor
|
||||
|
||||
+159
-122
@@ -24,8 +24,10 @@
|
||||
#include "V3FileLine.h"
|
||||
#include "V3Number.h"
|
||||
#include "V3Global.h"
|
||||
#include "V3Broken.h"
|
||||
|
||||
#include <cmath>
|
||||
#include <type_traits>
|
||||
#include <unordered_set>
|
||||
|
||||
#include "V3Ast__gen_classes.h" // From ./astgen
|
||||
@@ -49,7 +51,7 @@ using MTaskIdSet = std::set<int>; // Set of mtaskIds for Var sorting
|
||||
// For broken() function, return error string if have a match
|
||||
#define BROKEN_RTN(test) \
|
||||
do { \
|
||||
if (VL_UNCOVERABLE(test)) return #test; \
|
||||
if (VL_UNCOVERABLE(test)) return "'" #test "' @ " __FILE__ ":" VL_STRINGIFY(__LINE__); \
|
||||
} while (false)
|
||||
// For broken() function, return error string if a base of this class has a match
|
||||
#define BROKEN_BASE_RTN(test) \
|
||||
@@ -58,15 +60,21 @@ using MTaskIdSet = std::set<int>; // Set of mtaskIds for Var sorting
|
||||
if (VL_UNCOVERABLE(reasonp)) return reasonp; \
|
||||
} while (false)
|
||||
|
||||
// (V)erilator (N)ode is: True if AstNode is of a a given AstType
|
||||
// (V)erilator (N)ode is: Returns true iff AstNode is of the given AstNode subtype, and not
|
||||
// nullptr.
|
||||
#define VN_IS(nodep, nodetypename) (AstNode::privateIs<Ast##nodetypename>(nodep))
|
||||
|
||||
// (V)erilator (N)ode cast: Cast to given type if can; effectively
|
||||
// dynamic_cast<nodetypename>(nodep)
|
||||
// (V)erilator (N)ode cast: More efficient but otherwise same as dynamic_cast, use this instead.
|
||||
// Cast to given type if node is of such type, otherwise returns nullptr.
|
||||
#define VN_CAST(nodep, nodetypename) (AstNode::privateCast<Ast##nodetypename>(nodep))
|
||||
#define VN_CAST_CONST(nodep, nodetypename) (AstNode::privateConstCast<Ast##nodetypename>(nodep))
|
||||
#define VN_CAST_CONST(nodep, nodetypename) (AstNode::privateCastConst<Ast##nodetypename>(nodep))
|
||||
|
||||
// (V)erilator (N)ode deleted: Reference to deleted child (for assertions only)
|
||||
// (V)erilator (N)ode as: Assert node is of given type then cast to that type. Node can be nullptr.
|
||||
// Use this to downcast instead of VN_CAST when you know the true type of the node.
|
||||
#define VN_AS(nodep, nodetypename) (AstNode::privateAs<Ast##nodetypename>(nodep))
|
||||
#define VN_AS_CONST(nodep, nodetypename) (AstNode::privateAsConst<Ast##nodetypename>(nodep))
|
||||
|
||||
// (V)erilator (N)ode deleted: Pointer to deleted AstNode (for assertions only)
|
||||
#define VN_DELETED(nodep) VL_UNLIKELY((vluint64_t)(nodep) == 0x1)
|
||||
|
||||
//######################################################################
|
||||
@@ -155,6 +163,7 @@ public:
|
||||
return (m_e == READWRITE) ? VAccess(m_e) : (m_e == WRITE ? VAccess(READ) : VAccess(WRITE));
|
||||
}
|
||||
bool isReadOnly() const { return m_e == READ; } // False with READWRITE
|
||||
bool isWriteOnly() const { return m_e == WRITE; } // False with READWRITE
|
||||
bool isReadOrRW() const { return m_e == READ || m_e == READWRITE; }
|
||||
bool isWriteOrRW() const { return m_e == WRITE || m_e == READWRITE; }
|
||||
bool isRW() const { return m_e == READWRITE; }
|
||||
@@ -236,39 +245,6 @@ inline bool operator==(AstPragmaType::en lhs, const AstPragmaType& rhs) { return
|
||||
|
||||
//######################################################################
|
||||
|
||||
class AstCFuncType final {
|
||||
public:
|
||||
enum en : uint8_t {
|
||||
FT_NORMAL,
|
||||
TRACE_REGISTER,
|
||||
TRACE_INIT,
|
||||
TRACE_INIT_SUB,
|
||||
TRACE_FULL,
|
||||
TRACE_FULL_SUB,
|
||||
TRACE_CHANGE,
|
||||
TRACE_CHANGE_SUB,
|
||||
TRACE_CLEANUP
|
||||
};
|
||||
enum en m_e;
|
||||
inline AstCFuncType()
|
||||
: m_e{FT_NORMAL} {}
|
||||
// cppcheck-suppress noExplicitConstructor
|
||||
inline AstCFuncType(en _e)
|
||||
: m_e{_e} {}
|
||||
explicit inline AstCFuncType(int _e)
|
||||
: m_e(static_cast<en>(_e)) {} // Need () or GCC 4.8 false warning
|
||||
operator en() const { return m_e; }
|
||||
// METHODS
|
||||
bool isTrace() const { return m_e != FT_NORMAL; }
|
||||
};
|
||||
inline bool operator==(const AstCFuncType& lhs, const AstCFuncType& rhs) {
|
||||
return lhs.m_e == rhs.m_e;
|
||||
}
|
||||
inline bool operator==(const AstCFuncType& lhs, AstCFuncType::en rhs) { return lhs.m_e == rhs; }
|
||||
inline bool operator==(AstCFuncType::en lhs, const AstCFuncType& rhs) { return lhs == rhs.m_e; }
|
||||
|
||||
//######################################################################
|
||||
|
||||
class VEdgeType final {
|
||||
public:
|
||||
// REMEMBER to edit the strings below too
|
||||
@@ -457,6 +433,7 @@ public:
|
||||
// Internal types for mid-steps
|
||||
SCOPEPTR,
|
||||
CHARPTR,
|
||||
MTASKSTATE,
|
||||
// Unsigned and two state; fundamental types
|
||||
UINT32,
|
||||
UINT64,
|
||||
@@ -467,18 +444,19 @@ public:
|
||||
};
|
||||
enum en m_e;
|
||||
const char* ascii() const {
|
||||
static const char* const names[] = {
|
||||
"%E-unk", "bit", "byte", "chandle", "event", "int", "integer",
|
||||
"logic", "longint", "real", "shortint", "time", "string", "VerilatedScope*",
|
||||
"char*", "IData", "QData", "LOGIC_IMPLICIT", " MAX"};
|
||||
static const char* const names[]
|
||||
= {"%E-unk", "bit", "byte", "chandle", "event",
|
||||
"int", "integer", "logic", "longint", "real",
|
||||
"shortint", "time", "string", "VerilatedScope*", "char*",
|
||||
"VlMTaskState", "IData", "QData", "LOGIC_IMPLICIT", " MAX"};
|
||||
return names[m_e];
|
||||
}
|
||||
const char* dpiType() const {
|
||||
static const char* const names[]
|
||||
= {"%E-unk", "svBit", "char", "void*", "char", "int",
|
||||
"%E-integer", "svLogic", "long long", "double", "short", "%E-time",
|
||||
"const char*", "dpiScope", "const char*", "IData", "QData", "%E-logic-implicit",
|
||||
" MAX"};
|
||||
= {"%E-unk", "svBit", "char", "void*", "char",
|
||||
"int", "%E-integer", "svLogic", "long long", "double",
|
||||
"short", "%E-time", "const char*", "dpiScope", "const char*",
|
||||
"%E-mtaskstate", "IData", "QData", "%E-logic-implct", " MAX"};
|
||||
return names[m_e];
|
||||
}
|
||||
static void selfTest() {
|
||||
@@ -511,6 +489,7 @@ public:
|
||||
case STRING: return 64; // opaque // Just the pointer, for today
|
||||
case SCOPEPTR: return 0; // opaque
|
||||
case CHARPTR: return 0; // opaque
|
||||
case MTASKSTATE: return 0; // opaque
|
||||
case UINT32: return 32;
|
||||
case UINT64: return 64;
|
||||
default: return 0;
|
||||
@@ -549,11 +528,32 @@ public:
|
||||
|| m_e == DOUBLE || m_e == SHORTINT || m_e == UINT32 || m_e == UINT64);
|
||||
}
|
||||
bool isOpaque() const { // IE not a simple number we can bit optimize
|
||||
return (m_e == STRING || m_e == SCOPEPTR || m_e == CHARPTR || m_e == DOUBLE);
|
||||
return (m_e == STRING || m_e == SCOPEPTR || m_e == CHARPTR || m_e == MTASKSTATE
|
||||
|| m_e == DOUBLE);
|
||||
}
|
||||
bool isDouble() const { return m_e == DOUBLE; }
|
||||
bool isEventValue() const { return m_e == EVENTVALUE; }
|
||||
bool isString() const { return m_e == STRING; }
|
||||
bool isMTaskState() const { return m_e == MTASKSTATE; }
|
||||
// Does this represent a C++ LiteralType? (can be constexpr)
|
||||
bool isLiteralType() const {
|
||||
switch (m_e) {
|
||||
case BIT:
|
||||
case BYTE:
|
||||
case CHANDLE:
|
||||
case INT:
|
||||
case INTEGER:
|
||||
case LOGIC:
|
||||
case LONGINT:
|
||||
case DOUBLE:
|
||||
case SHORTINT:
|
||||
case SCOPEPTR:
|
||||
case CHARPTR:
|
||||
case UINT32:
|
||||
case UINT64: return true;
|
||||
default: return false;
|
||||
}
|
||||
}
|
||||
};
|
||||
inline bool operator==(const AstBasicDTypeKwd& lhs, const AstBasicDTypeKwd& rhs) {
|
||||
return lhs.m_e == rhs.m_e;
|
||||
@@ -1136,10 +1136,14 @@ public:
|
||||
explicit VNUser(void* p) { m_u.up = p; }
|
||||
~VNUser() = default;
|
||||
// Casters
|
||||
WidthVP* c() const { return reinterpret_cast<WidthVP*>(m_u.up); }
|
||||
VSymEnt* toSymEnt() const { return reinterpret_cast<VSymEnt*>(m_u.up); }
|
||||
AstNode* toNodep() const { return reinterpret_cast<AstNode*>(m_u.up); }
|
||||
V3GraphVertex* toGraphVertex() const { return reinterpret_cast<V3GraphVertex*>(m_u.up); }
|
||||
template <class T> //
|
||||
typename std::enable_if<std::is_pointer<T>::value, T>::type to() const {
|
||||
return reinterpret_cast<T>(m_u.up);
|
||||
}
|
||||
WidthVP* c() const { return to<WidthVP*>(); }
|
||||
VSymEnt* toSymEnt() const { return to<VSymEnt*>(); }
|
||||
AstNode* toNodep() const { return to<AstNode*>(); }
|
||||
V3GraphVertex* toGraphVertex() const { return to<V3GraphVertex*>(); }
|
||||
int toInt() const { return m_u.ui; }
|
||||
static VNUser fromInt(int i) { return VNUser(i); }
|
||||
};
|
||||
@@ -1356,8 +1360,32 @@ class AstNode VL_NOT_FINAL {
|
||||
const AstType m_type; // Node sub-type identifier
|
||||
// ^ ASTNODE_PREFETCH depends on above ordering of members
|
||||
|
||||
// padding - 2 extra bytes here after m_type
|
||||
int m_cloneCnt; // Mark of when userp was set
|
||||
// AstType is 2 bytes, so we can stick another 6 bytes after it to utilize what would
|
||||
// otherwise be padding (on a 64-bit system). We stick the attribute flags, broken state,
|
||||
// and the clone count here.
|
||||
|
||||
struct {
|
||||
bool didWidth : 1; // Did V3Width computation
|
||||
bool doingWidth : 1; // Inside V3Width
|
||||
bool protect : 1; // Protect name if protection is on
|
||||
// Space for more flags here (there must be 8 bits in total)
|
||||
uint8_t unused : 5;
|
||||
} m_flags; // Attribute flags
|
||||
|
||||
// State variable used by V3Broken for consistency checking. The top bit of this is byte is a
|
||||
// flag, representing V3Broken is currently proceeding under this node. The bottom 7 bits are
|
||||
// a generation number. This is hot when --debug-checks so we access as a whole to avoid bit
|
||||
// field masking resulting in unnecessary read-modify-write ops.
|
||||
uint8_t m_brokenState = 0;
|
||||
|
||||
int m_cloneCnt; // Sequence number for when last clone was made
|
||||
|
||||
#if defined(__x86_64__) && defined(__gnu_linux__)
|
||||
// Only assert this on known platforms, as it only affects performance, not correctness
|
||||
static_assert(sizeof(m_type) + sizeof(m_flags) + sizeof(m_brokenState) + sizeof(m_cloneCnt)
|
||||
<= sizeof(void*),
|
||||
"packing requires padding");
|
||||
#endif
|
||||
|
||||
AstNodeDType* m_dtypep; // Data type of output or assignment (etc)
|
||||
AstNode* m_headtailp; // When at begin/end of list, the opposite end of the list
|
||||
@@ -1370,12 +1398,6 @@ class AstNode VL_NOT_FINAL {
|
||||
AstNode* m_clonep; // Pointer to clone of/ source of this module (for *LAST* cloneTree() ONLY)
|
||||
static int s_cloneCntGbl; // Count of which userp is set
|
||||
|
||||
// Attributes
|
||||
bool m_didWidth : 1; // Did V3Width computation
|
||||
bool m_doingWidth : 1; // Inside V3Width
|
||||
bool m_protect : 1; // Protect name if protection is on
|
||||
// // Space for more bools here
|
||||
|
||||
// This member ordering both allows 64 bit alignment and puts associated data together
|
||||
VNUser m_user1u; // Contains any information the user iteration routine wants
|
||||
uint32_t m_user1Cnt; // Mark of when userp was set
|
||||
@@ -1421,7 +1443,7 @@ private:
|
||||
public:
|
||||
static void relinkOneLink(AstNode*& pointpr, AstNode* newp);
|
||||
// cppcheck-suppress functionConst
|
||||
void debugTreeChange(const char* prefix, int lineno, bool next);
|
||||
static void debugTreeChange(const AstNode* nodep, const char* prefix, int lineno, bool next);
|
||||
|
||||
protected:
|
||||
// CONSTRUCTORS
|
||||
@@ -1478,9 +1500,14 @@ public:
|
||||
AstNode* firstAbovep() const { // Returns nullptr when second or later in list
|
||||
return ((backp() && backp()->nextp() != this) ? backp() : nullptr);
|
||||
}
|
||||
bool brokeExists() const;
|
||||
bool brokeExistsAbove() const;
|
||||
bool brokeExistsBelow() const;
|
||||
uint8_t brokenState() const { return m_brokenState; }
|
||||
void brokenState(uint8_t value) { m_brokenState = value; }
|
||||
|
||||
// Used by AstNode::broken()
|
||||
bool brokeExists() const { return V3Broken::isLinkable(this); }
|
||||
bool brokeExistsAbove() const { return brokeExists() && (m_brokenState >> 7); }
|
||||
bool brokeExistsBelow() const { return brokeExists() && !(m_brokenState >> 7); }
|
||||
// Note: brokeExistsBelow is not quite precise, as it is true for sibling nodes as well
|
||||
|
||||
// CONSTRUCTORS
|
||||
virtual ~AstNode() = default;
|
||||
@@ -1489,21 +1516,20 @@ public:
|
||||
static void operator delete(void* obj, size_t size);
|
||||
#endif
|
||||
|
||||
// CONSTANT ACCESSORS
|
||||
static int instrCountBranch() { return 4; } ///< Instruction cycles to branch
|
||||
static int instrCountDiv() { return 10; } ///< Instruction cycles to divide
|
||||
static int instrCountDpi() { return 1000; } ///< Instruction cycles to call user function
|
||||
static int instrCountLd() { return 2; } ///< Instruction cycles to load memory
|
||||
static int instrCountMul() { return 3; } ///< Instruction cycles to multiply integers
|
||||
static int instrCountPli() { return 20; } ///< Instruction cycles to call pli routines
|
||||
static int instrCountDouble() { return 8; } ///< Instruction cycles to convert or do floats
|
||||
static int instrCountDoubleDiv() { return 40; } ///< Instruction cycles to divide floats
|
||||
static int instrCountDoubleTrig() { return 200; } ///< Instruction cycles to do trigonomics
|
||||
static int instrCountString() { return 100; } ///< Instruction cycles to do string ops
|
||||
/// Instruction cycles to call subroutine
|
||||
static int instrCountCall() { return instrCountBranch() + 10; }
|
||||
/// Instruction cycles to determine simulation time
|
||||
static int instrCountTime() { return instrCountCall() + 5; }
|
||||
// CONSTANTS
|
||||
// The following are relative dynamic costs (~ execution cycle count) of various operations.
|
||||
// They are used by V3InstCount to estimate the relative execution time of code fragments.
|
||||
static constexpr int INSTR_COUNT_BRANCH = 4; // Branch
|
||||
static constexpr int INSTR_COUNT_CALL = INSTR_COUNT_BRANCH + 10; // Subroutine call
|
||||
static constexpr int INSTR_COUNT_LD = 2; // Load memory
|
||||
static constexpr int INSTR_COUNT_INT_MUL = 3; // Integer multiply
|
||||
static constexpr int INSTR_COUNT_INT_DIV = 10; // Integer divide
|
||||
static constexpr int INSTR_COUNT_DBL = 8; // Convert or do float ops
|
||||
static constexpr int INSTR_COUNT_DBL_DIV = 40; // Double divide
|
||||
static constexpr int INSTR_COUNT_DBL_TRIG = 200; // Double trigonometric ops
|
||||
static constexpr int INSTR_COUNT_STR = 100; // String ops
|
||||
static constexpr int INSTR_COUNT_TIME = INSTR_COUNT_CALL + 5; // Determine simulation time
|
||||
static constexpr int INSTR_COUNT_PLI = 20; // PLI routines
|
||||
|
||||
// ACCESSORS
|
||||
virtual string name() const { return ""; }
|
||||
@@ -1534,17 +1560,17 @@ public:
|
||||
void fileline(FileLine* fl) { m_fileline = fl; }
|
||||
bool width1() const;
|
||||
int widthInstrs() const;
|
||||
void didWidth(bool flag) { m_didWidth = flag; }
|
||||
bool didWidth() const { return m_didWidth; }
|
||||
void didWidth(bool flag) { m_flags.didWidth = flag; }
|
||||
bool didWidth() const { return m_flags.didWidth; }
|
||||
bool didWidthAndSet() {
|
||||
if (didWidth()) return true;
|
||||
didWidth(true);
|
||||
return false;
|
||||
}
|
||||
bool doingWidth() const { return m_doingWidth; }
|
||||
void doingWidth(bool flag) { m_doingWidth = flag; }
|
||||
bool protect() const { return m_protect; }
|
||||
void protect(bool flag) { m_protect = flag; }
|
||||
bool doingWidth() const { return m_flags.doingWidth; }
|
||||
void doingWidth(bool flag) { m_flags.doingWidth = flag; }
|
||||
bool protect() const { return m_flags.protect; }
|
||||
void protect(bool flag) { m_flags.protect = flag; }
|
||||
|
||||
// TODO stomp these width functions out, and call via dtypep() instead
|
||||
int width() const;
|
||||
@@ -1678,6 +1704,7 @@ public:
|
||||
void dtypeSetSigned32() { dtypep(findSigned32DType()); }
|
||||
void dtypeSetUInt32() { dtypep(findUInt32DType()); } // Twostate
|
||||
void dtypeSetUInt64() { dtypep(findUInt64DType()); } // Twostate
|
||||
void dtypeSetEmptyQueue() { dtypep(findEmptyQueueDType()); }
|
||||
void dtypeSetVoid() { dtypep(findVoidDType()); }
|
||||
|
||||
// Data type locators
|
||||
@@ -1687,6 +1714,8 @@ public:
|
||||
AstNodeDType* findSigned32DType() { return findBasicDType(AstBasicDTypeKwd::INTEGER); }
|
||||
AstNodeDType* findUInt32DType() { return findBasicDType(AstBasicDTypeKwd::UINT32); }
|
||||
AstNodeDType* findUInt64DType() { return findBasicDType(AstBasicDTypeKwd::UINT64); }
|
||||
AstNodeDType* findCHandleDType() { return findBasicDType(AstBasicDTypeKwd::CHANDLE); }
|
||||
AstNodeDType* findEmptyQueueDType() const;
|
||||
AstNodeDType* findVoidDType() const;
|
||||
AstNodeDType* findQueueIndexDType() const;
|
||||
AstNodeDType* findBitDType(int width, int widthMin, VSigning numeric) const;
|
||||
@@ -1695,7 +1724,7 @@ public:
|
||||
VSigning numeric) const;
|
||||
AstNodeDType* findBitRangeDType(const VNumRange& range, int widthMin, VSigning numeric) const;
|
||||
AstNodeDType* findBasicDType(AstBasicDTypeKwd kwd) const;
|
||||
AstBasicDType* findInsertSameDType(AstBasicDType* nodep);
|
||||
static AstBasicDType* findInsertSameDType(AstBasicDType* nodep);
|
||||
|
||||
// METHODS - dump and error
|
||||
void v3errorEnd(std::ostringstream& str) const;
|
||||
@@ -1770,8 +1799,6 @@ public:
|
||||
virtual bool isGateOptimizable() const { return true; }
|
||||
// GateDedupable is a slightly larger superset of GateOptimzable (eg, AstNodeIf)
|
||||
virtual bool isGateDedupable() const { return isGateOptimizable(); }
|
||||
// Needs verilated_heavy.h (uses std::string or some others)
|
||||
virtual bool isHeavy() const { return false; }
|
||||
// Else creates output or exits, etc, not unconsumed
|
||||
virtual bool isOutputter() const { return false; }
|
||||
// Else a AstTime etc which output can't be predicted from input
|
||||
@@ -1817,16 +1844,36 @@ protected:
|
||||
private:
|
||||
void iterateListBackwards(AstNVisitor& v);
|
||||
|
||||
// CONVERSION
|
||||
// For internal use only.
|
||||
template <typename T> inline static bool privateTypeTest(const AstNode* nodep);
|
||||
|
||||
public:
|
||||
// These for use by VN_IS macro only
|
||||
template <class T> static bool privateIs(const AstNode* nodep);
|
||||
|
||||
// These for use by VN_CAST macro only
|
||||
template <class T> static T* privateCast(AstNode* nodep);
|
||||
|
||||
// These for use by VN_CAST_CONST macro only
|
||||
template <class T> static const T* privateConstCast(const AstNode* nodep);
|
||||
// For use via the VN_IS macro only
|
||||
template <typename T> inline static bool privateIs(const AstNode* nodep) {
|
||||
return nodep && privateTypeTest<T>(nodep);
|
||||
}
|
||||
// For use via the VN_CAST macro only
|
||||
template <typename T> inline static T* privateCast(AstNode* nodep) {
|
||||
return privateIs<T>(nodep) ? reinterpret_cast<T*>(nodep) : nullptr;
|
||||
}
|
||||
// For use via the VN_CAST_CONST macro only
|
||||
template <typename T> inline static const T* privateCastConst(const AstNode* nodep) {
|
||||
return privateIs<T>(nodep) ? reinterpret_cast<const T*>(nodep) : nullptr;
|
||||
}
|
||||
// For use via the VN_AS macro only
|
||||
template <typename T> inline static T* privateAs(AstNode* nodep) {
|
||||
UASSERT_OBJ(!nodep || privateTypeTest<T>(nodep), nodep,
|
||||
"AstNode is not of expected type, but instead has type '" << nodep->typeName()
|
||||
<< "'");
|
||||
return reinterpret_cast<T*>(nodep);
|
||||
}
|
||||
// For use via the VN_AS_CONST macro only
|
||||
template <typename T> inline static const T* privateAsConst(const AstNode* nodep) {
|
||||
UASSERT_OBJ(!nodep || privateTypeTest<T>(nodep), nodep,
|
||||
"AstNode is not of expected type, but instead has type '" << nodep->typeName()
|
||||
<< "'");
|
||||
return reinterpret_cast<const T*>(nodep);
|
||||
}
|
||||
};
|
||||
|
||||
// Specialisations of privateIs/privateCast
|
||||
@@ -1868,7 +1915,7 @@ public:
|
||||
virtual void dump(std::ostream& str) const override;
|
||||
virtual bool hasDType() const override { return true; }
|
||||
virtual string emitVerilog() = 0; /// Format string for verilog writing; see V3EmitV
|
||||
// For documentation on emitC format see EmitCStmts::emitOpName
|
||||
// For documentation on emitC format see EmitCFunc::emitOpName
|
||||
virtual string emitC() = 0;
|
||||
virtual string emitSimpleOperator() { return ""; } // "" means not ok to use
|
||||
virtual bool emitCheckMaxWords() { return false; } // Check VL_MULS_MAX_WORDS
|
||||
@@ -2074,7 +2121,7 @@ public:
|
||||
virtual bool sizeMattersLhs() const override { return false; }
|
||||
virtual bool sizeMattersRhs() const override { return false; }
|
||||
virtual bool sizeMattersThs() const override { return false; }
|
||||
virtual int instrCount() const override { return instrCountBranch(); }
|
||||
virtual int instrCount() const override { return INSTR_COUNT_BRANCH; }
|
||||
virtual AstNode* cloneType(AstNode* condp, AstNode* expr1p, AstNode* expr2p) = 0;
|
||||
};
|
||||
|
||||
@@ -2209,7 +2256,7 @@ public:
|
||||
AstNode* incsp() const { return op3p(); } // op3 = increment statements
|
||||
AstNode* bodysp() const { return op4p(); } // op4 = body of loop
|
||||
virtual bool isGateOptimizable() const override { return false; }
|
||||
virtual int instrCount() const override { return instrCountBranch(); }
|
||||
virtual int instrCount() const override { return INSTR_COUNT_BRANCH; }
|
||||
virtual bool same(const AstNode* samep) const override { return true; }
|
||||
};
|
||||
|
||||
@@ -2236,7 +2283,7 @@ public:
|
||||
void addElsesp(AstNode* newp) { addOp3p(newp); }
|
||||
virtual bool isGateOptimizable() const override { return false; }
|
||||
virtual bool isGateDedupable() const override { return true; }
|
||||
virtual int instrCount() const override { return instrCountBranch(); }
|
||||
virtual int instrCount() const override { return INSTR_COUNT_BRANCH; }
|
||||
virtual bool same(const AstNode* samep) const override { return true; }
|
||||
void branchPred(VBranchPred flag) { m_branchPred = flag; }
|
||||
VBranchPred branchPred() const { return m_branchPred; }
|
||||
@@ -2254,7 +2301,7 @@ protected:
|
||||
|
||||
public:
|
||||
ASTNODE_BASE_FUNCS(NodeCase)
|
||||
virtual int instrCount() const override { return instrCountBranch(); }
|
||||
virtual int instrCount() const override { return INSTR_COUNT_BRANCH; }
|
||||
AstNode* exprp() const { return op1p(); } // op1 = case condition <expression>
|
||||
AstCaseItem* itemsp() const {
|
||||
return VN_CAST(op2p(), CaseItem);
|
||||
@@ -2272,9 +2319,7 @@ private:
|
||||
AstVarScope* m_varScopep = nullptr; // Varscope for hierarchy
|
||||
AstNodeModule* m_classOrPackagep = nullptr; // Package hierarchy
|
||||
string m_name; // Name of variable
|
||||
string m_hiernameToProt; // Scope converted into name-> for emitting
|
||||
string m_hiernameToUnprot; // Scope converted into name-> for emitting
|
||||
bool m_hierThis = false; // Hiername points to "this" function
|
||||
string m_selfPointer; // Output code object pointer (e.g.: 'this')
|
||||
|
||||
protected:
|
||||
AstNodeVarRef(AstType t, FileLine* fl, const string& name, const VAccess& access)
|
||||
@@ -2306,13 +2351,9 @@ public:
|
||||
void varp(AstVar* varp);
|
||||
AstVarScope* varScopep() const { return m_varScopep; }
|
||||
void varScopep(AstVarScope* varscp) { m_varScopep = varscp; }
|
||||
string hiernameToProt() const { return m_hiernameToProt; }
|
||||
void hiernameToProt(const string& hn) { m_hiernameToProt = hn; }
|
||||
string hiernameToUnprot() const { return m_hiernameToUnprot; }
|
||||
void hiernameToUnprot(const string& hn) { m_hiernameToUnprot = hn; }
|
||||
string hiernameProtect() const;
|
||||
bool hierThis() const { return m_hierThis; }
|
||||
void hierThis(bool flag) { m_hierThis = flag; }
|
||||
string selfPointer() const { return m_selfPointer; }
|
||||
void selfPointer(const string& value) { m_selfPointer = value; }
|
||||
string selfPointerProtect(bool useSelfForThis) const;
|
||||
AstNodeModule* classOrPackagep() const { return m_classOrPackagep; }
|
||||
void classOrPackagep(AstNodeModule* nodep) { m_classOrPackagep = nodep; }
|
||||
// Know no children, and hot function, so skip iterator for speed
|
||||
@@ -2439,6 +2480,7 @@ public:
|
||||
return (isString() ? "N" : isWide() ? "W" : isQuad() ? "Q" : "I");
|
||||
}
|
||||
string cType(const string& name, bool forFunc, bool isRef) const;
|
||||
bool isLiteralType() const; // Does this represent a C++ LiteralType? (can be constexpr)
|
||||
|
||||
private:
|
||||
class CTypeRecursed;
|
||||
@@ -2615,8 +2657,6 @@ class AstNodeCCall VL_NOT_FINAL : public AstNodeStmt {
|
||||
// A call of a C++ function, perhaps a AstCFunc or perhaps globally named
|
||||
// Functions are not statements, while tasks are. AstNodeStmt needs isStatement() to deal.
|
||||
AstCFunc* m_funcp;
|
||||
string m_hiernameToProt;
|
||||
string m_hiernameToUnprot;
|
||||
string m_argTypes;
|
||||
|
||||
protected:
|
||||
@@ -2631,7 +2671,7 @@ public:
|
||||
virtual void dump(std::ostream& str = std::cout) const override;
|
||||
virtual void cloneRelink() override;
|
||||
virtual const char* broken() const override;
|
||||
virtual int instrCount() const override { return instrCountCall(); }
|
||||
virtual int instrCount() const override { return INSTR_COUNT_CALL; }
|
||||
virtual bool same(const AstNode* samep) const override {
|
||||
const AstNodeCCall* asamep = static_cast<const AstNodeCCall*>(samep);
|
||||
return (funcp() == asamep->funcp() && argTypes() == asamep->argTypes());
|
||||
@@ -2642,11 +2682,6 @@ public:
|
||||
virtual bool isPure() const override;
|
||||
virtual bool isOutputter() const override { return !isPure(); }
|
||||
AstCFunc* funcp() const { return m_funcp; }
|
||||
string hiernameToProt() const { return m_hiernameToProt; }
|
||||
void hiernameToProt(const string& hn) { m_hiernameToProt = hn; }
|
||||
string hiernameToUnprot() const { return m_hiernameToUnprot; }
|
||||
void hiernameToUnprot(const string& hn) { m_hiernameToUnprot = hn; }
|
||||
string hiernameProtect() const;
|
||||
void argTypes(const string& str) { m_argTypes = str; }
|
||||
string argTypes() const { return m_argTypes; }
|
||||
// op1p reserved for AstCMethodCall
|
||||
@@ -2675,6 +2710,7 @@ private:
|
||||
bool m_isHideProtected : 1; // Verilog protected
|
||||
bool m_pure : 1; // DPI import pure (vs. virtual pure)
|
||||
bool m_pureVirtual : 1; // Pure virtual
|
||||
bool m_underGenerate : 1; // Under generate (for warning)
|
||||
bool m_virtual : 1; // Virtual method in class
|
||||
VLifetime m_lifetime; // Lifetime
|
||||
protected:
|
||||
@@ -2697,6 +2733,7 @@ protected:
|
||||
, m_isHideProtected{false}
|
||||
, m_pure{false}
|
||||
, m_pureVirtual{false}
|
||||
, m_underGenerate{false}
|
||||
, m_virtual{false} {
|
||||
addNOp3p(stmtsp);
|
||||
cname(name); // Might be overridden by dpi import/export
|
||||
@@ -2763,6 +2800,8 @@ public:
|
||||
bool pure() const { return m_pure; }
|
||||
void pureVirtual(bool flag) { m_pureVirtual = flag; }
|
||||
bool pureVirtual() const { return m_pureVirtual; }
|
||||
void underGenerate(bool flag) { m_underGenerate = flag; }
|
||||
bool underGenerate() const { return m_underGenerate; }
|
||||
void isVirtual(bool flag) { m_virtual = flag; }
|
||||
bool isVirtual() const { return m_virtual; }
|
||||
void lifetime(const VLifetime& flag) { m_lifetime = flag; }
|
||||
@@ -2842,7 +2881,6 @@ private:
|
||||
bool m_recursive : 1; // Recursive module
|
||||
bool m_recursiveClone : 1; // If recursive, what module it clones, otherwise nullptr
|
||||
int m_level = 0; // 1=top module, 2=cell off top module, ...
|
||||
int m_varNum = 0; // Incrementing variable number
|
||||
int m_typeNum = 0; // Incrementing implicit type number
|
||||
VLifetime m_lifetime; // Lifetime
|
||||
VTimescale m_timeunit; // Global time unit
|
||||
@@ -2883,7 +2921,6 @@ public:
|
||||
void level(int level) { m_level = level; }
|
||||
int level() const { return m_level; }
|
||||
bool isTop() const { return level() == 1; }
|
||||
int varNumGetInc() { return ++m_varNum; }
|
||||
int typeNumGetInc() { return ++m_typeNum; }
|
||||
void modPublic(bool flag) { m_modPublic = flag; }
|
||||
bool modPublic() const { return m_modPublic; }
|
||||
|
||||
+211
-42
@@ -18,16 +18,18 @@
|
||||
#include "verilatedos.h"
|
||||
|
||||
#include "V3Ast.h"
|
||||
#include "V3EmitCBase.h"
|
||||
#include "V3File.h"
|
||||
#include "V3Global.h"
|
||||
#include "V3Graph.h"
|
||||
#include "V3Hasher.h"
|
||||
#include "V3PartitionGraph.h" // Just for mtask dumping
|
||||
#include "V3String.h"
|
||||
#include "V3EmitCBase.h"
|
||||
|
||||
#include "V3AstNodes__gen_macros.h" // Generated by 'astgen'
|
||||
|
||||
#include <iomanip>
|
||||
#include <iterator>
|
||||
#include <vector>
|
||||
|
||||
//======================================================================
|
||||
@@ -55,8 +57,19 @@ void AstNodeVarRef::cloneRelink() {
|
||||
if (m_varp && m_varp->clonep()) m_varp = m_varp->clonep();
|
||||
}
|
||||
|
||||
string AstNodeVarRef::hiernameProtect() const {
|
||||
return hiernameToUnprot() + VIdProtect::protectWordsIf(hiernameToProt(), protect());
|
||||
string AstNodeVarRef::selfPointerProtect(bool useSelfForThis) const {
|
||||
const string& sp
|
||||
= useSelfForThis ? VString::replaceWord(selfPointer(), "this", "vlSelf") : selfPointer();
|
||||
return VIdProtect::protectWordsIf(sp, protect());
|
||||
}
|
||||
|
||||
void AstAddrOfCFunc::cloneRelink() {
|
||||
if (m_funcp && m_funcp->clonep()) m_funcp = m_funcp->clonep();
|
||||
}
|
||||
|
||||
const char* AstAddrOfCFunc::broken() const {
|
||||
BROKEN_RTN(m_funcp && !m_funcp->brokeExists());
|
||||
return nullptr;
|
||||
}
|
||||
|
||||
int AstNodeSel::bitConst() const {
|
||||
@@ -108,8 +121,11 @@ const char* AstNodeCCall::broken() const {
|
||||
return nullptr;
|
||||
}
|
||||
bool AstNodeCCall::isPure() const { return funcp()->pure(); }
|
||||
string AstNodeCCall::hiernameProtect() const {
|
||||
return hiernameToUnprot() + VIdProtect::protectWordsIf(hiernameToProt(), protect());
|
||||
|
||||
string AstCCall::selfPointerProtect(bool useSelfForThis) const {
|
||||
const string& sp
|
||||
= useSelfForThis ? VString::replaceWord(selfPointer(), "this", "vlSelf") : selfPointer();
|
||||
return VIdProtect::protectWordsIf(sp, protect());
|
||||
}
|
||||
|
||||
void AstNodeCond::numberOperate(V3Number& out, const V3Number& lhs, const V3Number& rhs,
|
||||
@@ -216,9 +232,9 @@ AstNodeBiop* AstEqWild::newTyped(FileLine* fl, AstNode* lhsp, AstNode* rhsp) {
|
||||
}
|
||||
|
||||
AstExecGraph::AstExecGraph(FileLine* fileline)
|
||||
: ASTGEN_SUPER_ExecGraph(fileline) {
|
||||
m_depGraphp = new V3Graph;
|
||||
}
|
||||
: ASTGEN_SUPER_ExecGraph(fileline)
|
||||
, m_depGraphp{new V3Graph} {}
|
||||
|
||||
AstExecGraph::~AstExecGraph() { VL_DO_DANGLING(delete m_depGraphp, m_depGraphp); }
|
||||
|
||||
AstNode* AstInsideRange::newAndFromInside(AstNode* exprp, AstNode* lhsp, AstNode* rhsp) {
|
||||
@@ -252,7 +268,7 @@ AstConst* AstConst::parseParamLiteral(FileLine* fl, const string& literal) {
|
||||
char* endp;
|
||||
int v = strtol(literal.c_str(), &endp, 0);
|
||||
if ((v != 0) && (endp[0] == 0)) { // C literal
|
||||
return new AstConst(fl, AstConst::WidthedValue(), 32, v);
|
||||
return new AstConst(fl, AstConst::Signed32(), v);
|
||||
} else { // Try a Verilog literal (fatals if not)
|
||||
return new AstConst(fl, AstConst::StringToParse(), literal.c_str());
|
||||
}
|
||||
@@ -260,8 +276,16 @@ AstConst* AstConst::parseParamLiteral(FileLine* fl, const string& literal) {
|
||||
return nullptr;
|
||||
}
|
||||
|
||||
AstNetlist::AstNetlist()
|
||||
: ASTGEN_SUPER_Netlist(new FileLine(FileLine::builtInFilename()))
|
||||
, m_typeTablep{new AstTypeTable(fileline())}
|
||||
, m_constPoolp{new AstConstPool(fileline())} {
|
||||
addMiscsp(m_typeTablep);
|
||||
addMiscsp(m_constPoolp);
|
||||
}
|
||||
|
||||
void AstNetlist::timeprecisionMerge(FileLine*, const VTimescale& value) {
|
||||
VTimescale prec = v3Global.opt.timeComputePrec(value);
|
||||
const VTimescale prec = v3Global.opt.timeComputePrec(value);
|
||||
if (prec.isNone() || prec == m_timeprecision) {
|
||||
} else if (m_timeprecision.isNone()) {
|
||||
m_timeprecision = prec;
|
||||
@@ -314,13 +338,15 @@ string AstVar::verilogKwd() const {
|
||||
}
|
||||
}
|
||||
|
||||
string AstVar::vlArgType(bool named, bool forReturn, bool forFunc, const string& namespc) const {
|
||||
string AstVar::vlArgType(bool named, bool forReturn, bool forFunc, const string& namespc,
|
||||
bool asRef) const {
|
||||
UASSERT_OBJ(!forReturn, this,
|
||||
"Internal data is never passed as return, but as first argument");
|
||||
string ostatic;
|
||||
if (isStatic() && namespc.empty()) ostatic = "static ";
|
||||
|
||||
bool isRef = isDpiOpenArray() || (forFunc && (isWritable() || direction().isRefOrConstRef()));
|
||||
const bool isRef = isDpiOpenArray()
|
||||
|| (forFunc && (isWritable() || direction().isRefOrConstRef())) || asRef;
|
||||
|
||||
if (forFunc && isReadOnly() && isRef) ostatic = ostatic + "const ";
|
||||
|
||||
@@ -335,7 +361,7 @@ string AstVar::vlArgType(bool named, bool forReturn, bool forFunc, const string&
|
||||
string AstVar::vlEnumType() const {
|
||||
string arg;
|
||||
AstBasicDType* bdtypep = basicp();
|
||||
bool strtype = bdtypep && bdtypep->keyword() == AstBasicDTypeKwd::STRING;
|
||||
const bool strtype = bdtypep && bdtypep->keyword() == AstBasicDTypeKwd::STRING;
|
||||
if (bdtypep && bdtypep->keyword() == AstBasicDTypeKwd::CHARPTR) {
|
||||
return "VLVT_PTR";
|
||||
} else if (bdtypep && bdtypep->keyword() == AstBasicDTypeKwd::SCOPEPTR) {
|
||||
@@ -610,13 +636,6 @@ AstVar* AstVar::scVarRecurse(AstNode* nodep) {
|
||||
return nullptr;
|
||||
}
|
||||
|
||||
string AstVar::mtasksString() const {
|
||||
std::ostringstream os;
|
||||
os << "all: ";
|
||||
for (const auto& id : m_mtaskIds) os << id << " ";
|
||||
return os.str();
|
||||
}
|
||||
|
||||
class AstNodeDType::CTypeRecursed final {
|
||||
public:
|
||||
string m_type; // The base type, e.g.: "Foo_t"s
|
||||
@@ -624,15 +643,22 @@ public:
|
||||
string render(const string& name, bool isRef) const {
|
||||
string out;
|
||||
out += m_type;
|
||||
if (name != "") out += " ";
|
||||
out += isRef ? "(&" + name + ")" : name;
|
||||
if (!name.empty()) out += " ";
|
||||
if (isRef) {
|
||||
if (!m_dims.empty()) out += "(";
|
||||
out += "&";
|
||||
out += name;
|
||||
if (!m_dims.empty()) out += ")";
|
||||
} else {
|
||||
out += name;
|
||||
}
|
||||
out += m_dims;
|
||||
return out;
|
||||
}
|
||||
};
|
||||
|
||||
string AstNodeDType::cType(const string& name, bool forFunc, bool isRef) const {
|
||||
CTypeRecursed info = cTypeRecurse(false);
|
||||
const CTypeRecursed info = cTypeRecurse(false);
|
||||
return info.render(name, isRef);
|
||||
}
|
||||
|
||||
@@ -672,10 +698,12 @@ AstNodeDType::CTypeRecursed AstNodeDType::cTypeRecurse(bool compound) const {
|
||||
info.m_type = "const char*";
|
||||
} else if (bdtypep->keyword() == AstBasicDTypeKwd::SCOPEPTR) {
|
||||
info.m_type = "const VerilatedScope*";
|
||||
} else if (bdtypep->keyword() == AstBasicDTypeKwd::DOUBLE) {
|
||||
} else if (bdtypep->keyword().isDouble()) {
|
||||
info.m_type = "double";
|
||||
} else if (bdtypep->keyword() == AstBasicDTypeKwd::STRING) {
|
||||
} else if (bdtypep->keyword().isString()) {
|
||||
info.m_type = "std::string";
|
||||
} else if (bdtypep->keyword().isMTaskState()) {
|
||||
info.m_type = "VlMTaskVertex";
|
||||
} else if (dtypep->widthMin() <= 8) { // Handle unpacked arrays; not bdtypep->width
|
||||
info.m_type = "CData" + bitvec;
|
||||
} else if (dtypep->widthMin() <= 16) {
|
||||
@@ -748,6 +776,20 @@ int AstNodeDType::widthPow2() const {
|
||||
return 1;
|
||||
}
|
||||
|
||||
bool AstNodeDType::isLiteralType() const {
|
||||
if (auto* const dtypep = VN_CAST_CONST(skipRefp(), BasicDType)) {
|
||||
return dtypep->keyword().isLiteralType();
|
||||
} else if (auto* const dtypep = VN_CAST_CONST(skipRefp(), UnpackArrayDType)) {
|
||||
return dtypep->basicp()->isLiteralType();
|
||||
} else if (auto* const dtypep = VN_CAST_CONST(skipRefp(), StructDType)) {
|
||||
// Currently all structs are packed, later this can be expanded to
|
||||
// 'forall members _.isLiteralType()'
|
||||
return dtypep->packed();
|
||||
} else {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
/// What is the base variable (or const) this dereferences?
|
||||
AstNode* AstArraySel::baseFromp(AstNode* nodep, bool overMembers) {
|
||||
// Else AstArraySel etc; search for the base
|
||||
@@ -864,6 +906,11 @@ bool AstSenTree::hasCombo() const {
|
||||
return false;
|
||||
}
|
||||
|
||||
AstTypeTable::AstTypeTable(FileLine* fl)
|
||||
: ASTGEN_SUPER_TypeTable(fl) {
|
||||
for (int i = 0; i < AstBasicDTypeKwd::_ENUM_MAX; ++i) m_basicps[i] = nullptr;
|
||||
}
|
||||
|
||||
void AstTypeTable::clearCache() {
|
||||
// When we mass-change widthMin in V3WidthCommit, we need to correct the table.
|
||||
// Just clear out the maps; the search functions will be used to rebuild the map
|
||||
@@ -885,9 +932,18 @@ void AstTypeTable::repairCache() {
|
||||
}
|
||||
}
|
||||
|
||||
AstEmptyQueueDType* AstTypeTable::findEmptyQueueDType(FileLine* fl) {
|
||||
if (VL_UNLIKELY(!m_emptyQueuep)) {
|
||||
AstEmptyQueueDType* newp = new AstEmptyQueueDType{fl};
|
||||
addTypesp(newp);
|
||||
m_emptyQueuep = newp;
|
||||
}
|
||||
return m_emptyQueuep;
|
||||
}
|
||||
|
||||
AstVoidDType* AstTypeTable::findVoidDType(FileLine* fl) {
|
||||
if (VL_UNLIKELY(!m_voidp)) {
|
||||
AstVoidDType* newp = new AstVoidDType(fl);
|
||||
AstVoidDType* newp = new AstVoidDType{fl};
|
||||
addTypesp(newp);
|
||||
m_voidp = newp;
|
||||
}
|
||||
@@ -958,6 +1014,115 @@ AstBasicDType* AstTypeTable::findInsertSameDType(AstBasicDType* nodep) {
|
||||
return nodep;
|
||||
}
|
||||
|
||||
AstConstPool::AstConstPool(FileLine* fl)
|
||||
: ASTGEN_SUPER_ConstPool(fl)
|
||||
, m_modp{new AstModule(fl, "@CONST-POOL@")}
|
||||
, m_scopep{new AstScope(fl, m_modp, "@CONST-POOL@", nullptr, nullptr)} {
|
||||
addOp1p(m_modp);
|
||||
m_modp->addStmtp(m_scopep);
|
||||
}
|
||||
|
||||
AstVarScope* AstConstPool::createNewEntry(const string& name, AstNode* initp) {
|
||||
FileLine* const fl = initp->fileline();
|
||||
AstVar* const varp = new AstVar(fl, AstVarType::MODULETEMP, name, initp->dtypep());
|
||||
varp->isConst(true);
|
||||
varp->isStatic(true);
|
||||
varp->valuep(initp->cloneTree(false));
|
||||
m_modp->addStmtp(varp);
|
||||
AstVarScope* const varScopep = new AstVarScope(fl, m_scopep, varp);
|
||||
m_scopep->addVarp(varScopep);
|
||||
return varScopep;
|
||||
}
|
||||
|
||||
static bool sameInit(const AstInitArray* ap, const AstInitArray* bp) {
|
||||
// Unpacked array initializers must have equivalent values
|
||||
// Note, sadly we can't just call ap->sameTree(pb), because both:
|
||||
// - the dtypes might be different instances
|
||||
// - the default/inititem children might be in different order yet still yield the same table
|
||||
// See note in AstInitArray::same about the same. This function instead compares by initializer
|
||||
// value, rather than by tree structure.
|
||||
const AstUnpackArrayDType* const aDTypep = VN_CAST(ap->dtypep(), UnpackArrayDType);
|
||||
const AstUnpackArrayDType* const bDTypep = VN_CAST(bp->dtypep(), UnpackArrayDType);
|
||||
UASSERT_STATIC(aDTypep, "Bad type in array initializer");
|
||||
UASSERT_STATIC(bDTypep, "Bad type in array initializer");
|
||||
if (!aDTypep->subDTypep()->sameTree(bDTypep->subDTypep())) { // Element types differ
|
||||
return false;
|
||||
}
|
||||
if (!aDTypep->rangep()->sameTree(bDTypep->rangep())) { // Ranges differ
|
||||
return false;
|
||||
}
|
||||
// Compare initializer arrays by value. Note this is only called when they hash the same,
|
||||
// so they likely run at most once per call to 'AstConstPool::findTable'.
|
||||
const uint32_t size = aDTypep->elementsConst();
|
||||
for (uint32_t n = 0; n < size; ++n) {
|
||||
const AstNode* const valAp = ap->getIndexDefaultedValuep(n);
|
||||
const AstNode* const valBp = bp->getIndexDefaultedValuep(n);
|
||||
if (!valAp->sameTree(valBp)) { return false; }
|
||||
}
|
||||
return true;
|
||||
}
|
||||
|
||||
AstVarScope* AstConstPool::findTable(AstInitArray* initp) {
|
||||
AstNode* const defaultp = initp->defaultp();
|
||||
// Verify initializer is well formed
|
||||
UASSERT_OBJ(VN_IS(initp->dtypep(), UnpackArrayDType), initp,
|
||||
"Const pool table must have AstUnpackArrayDType dtype");
|
||||
UASSERT_OBJ(!defaultp || VN_IS(defaultp, Const), initp,
|
||||
"Const pool table default must be Const");
|
||||
for (AstNode* nodep = initp->initsp(); nodep; nodep = nodep->nextp()) {
|
||||
AstNode* const valuep = VN_CAST(nodep, InitItem)->valuep();
|
||||
UASSERT_OBJ(VN_IS(valuep, Const), valuep, "Const pool table entry must be Const");
|
||||
}
|
||||
// Try to find an existing table with the same content
|
||||
const V3Hash hash = V3Hasher::uncachedHash(initp);
|
||||
const auto& er = m_tables.equal_range(hash.value());
|
||||
for (auto it = er.first; it != er.second; ++it) {
|
||||
AstVarScope* const varScopep = it->second;
|
||||
const AstInitArray* const init2p = VN_CAST(varScopep->varp()->valuep(), InitArray);
|
||||
if (sameInit(initp, init2p)) {
|
||||
return varScopep; // Found identical table
|
||||
}
|
||||
}
|
||||
// No such table yet, create it.
|
||||
string name = "TABLE_";
|
||||
name += hash.toString();
|
||||
name += "_";
|
||||
name += cvtToStr(std::distance(er.first, er.second));
|
||||
AstVarScope* const varScopep = createNewEntry(name, initp);
|
||||
m_tables.emplace(hash.value(), varScopep);
|
||||
return varScopep;
|
||||
}
|
||||
|
||||
static bool sameInit(const AstConst* ap, const AstConst* bp) {
|
||||
// Similarly to the AstInitArray comparison, we ignore the dtype instance, so long as they
|
||||
// are compatible. For now, we assume the dtype is not relevant, as we only call this from
|
||||
// V3Prelim which is a late pass.
|
||||
// Compare initializers by value. This checks widths as well.
|
||||
return ap->num().isCaseEq(bp->num());
|
||||
}
|
||||
|
||||
AstVarScope* AstConstPool::findConst(AstConst* initp, bool mergeDType) {
|
||||
// Try to find an existing constant with the same value
|
||||
const V3Hash hash = initp->num().toHash();
|
||||
const auto& er = m_consts.equal_range(hash.value());
|
||||
for (auto it = er.first; it != er.second; ++it) {
|
||||
AstVarScope* const varScopep = it->second;
|
||||
const AstConst* const init2p = VN_CAST(varScopep->varp()->valuep(), Const);
|
||||
if (sameInit(initp, init2p)
|
||||
&& (mergeDType || varScopep->dtypep()->sameTree(initp->dtypep()))) {
|
||||
return varScopep; // Found identical constant
|
||||
}
|
||||
}
|
||||
// No such constant yet, create it.
|
||||
string name = "CONST_";
|
||||
name += hash.toString();
|
||||
name += "_";
|
||||
name += cvtToStr(std::distance(er.first, er.second));
|
||||
AstVarScope* const varScopep = createNewEntry(name, initp);
|
||||
m_consts.emplace(hash.value(), varScopep);
|
||||
return varScopep;
|
||||
}
|
||||
|
||||
//======================================================================
|
||||
// Special walking tree inserters
|
||||
|
||||
@@ -1119,8 +1284,9 @@ const char* AstClassPackage::broken() const {
|
||||
return nullptr;
|
||||
}
|
||||
void AstClass::insertCache(AstNode* nodep) {
|
||||
bool doit = (VN_IS(nodep, Var) || VN_IS(nodep, EnumItemRef)
|
||||
|| (VN_IS(nodep, NodeFTask) && !VN_CAST(nodep, NodeFTask)->isExternProto()));
|
||||
const bool doit
|
||||
= (VN_IS(nodep, Var) || VN_IS(nodep, EnumItemRef)
|
||||
|| (VN_IS(nodep, NodeFTask) && !VN_CAST(nodep, NodeFTask)->isExternProto()));
|
||||
if (doit) {
|
||||
if (m_members.find(nodep->name()) != m_members.end()) {
|
||||
nodep->v3error("Duplicate declaration of member name: " << nodep->prettyNameQ());
|
||||
@@ -1172,7 +1338,7 @@ void AstNodeCoverOrAssert::dump(std::ostream& str) const {
|
||||
}
|
||||
void AstDisplay::dump(std::ostream& str) const {
|
||||
this->AstNodeStmt::dump(str);
|
||||
// str<<" "<<displayType().ascii();
|
||||
// str << " " << displayType().ascii();
|
||||
}
|
||||
void AstEnumItemRef::dump(std::ostream& str) const {
|
||||
this->AstNodeMath::dump(str);
|
||||
@@ -1316,10 +1482,10 @@ void AstRefDType::dump(std::ostream& str) const {
|
||||
if (!s_recursing) { // Prevent infinite dump if circular typedefs
|
||||
s_recursing = true;
|
||||
str << " -> ";
|
||||
if (typedefp()) {
|
||||
typedefp()->dump(str);
|
||||
} else if (subDTypep()) {
|
||||
subDTypep()->dump(str);
|
||||
if (const auto subp = typedefp()) {
|
||||
subp->dump(str);
|
||||
} else if (const auto subp = subDTypep()) {
|
||||
subp->dump(str);
|
||||
}
|
||||
s_recursing = false;
|
||||
}
|
||||
@@ -1364,7 +1530,8 @@ void AstNodeArrayDType::dump(std::ostream& str) const {
|
||||
}
|
||||
string AstPackArrayDType::prettyDTypeName() const {
|
||||
std::ostringstream os;
|
||||
os << subDTypep()->prettyDTypeName() << declRange();
|
||||
if (const auto subp = subDTypep()) os << subp->prettyDTypeName();
|
||||
os << declRange();
|
||||
return os.str();
|
||||
}
|
||||
string AstUnpackArrayDType::prettyDTypeName() const {
|
||||
@@ -1484,6 +1651,10 @@ void AstUnsizedArrayDType::dumpSmall(std::ostream& str) const {
|
||||
this->AstNodeDType::dumpSmall(str);
|
||||
str << "[]";
|
||||
}
|
||||
void AstEmptyQueueDType::dumpSmall(std::ostream& str) const {
|
||||
this->AstNodeDType::dumpSmall(str);
|
||||
str << "emptyq";
|
||||
}
|
||||
void AstVoidDType::dumpSmall(std::ostream& str) const {
|
||||
this->AstNodeDType::dumpSmall(str);
|
||||
str << "void";
|
||||
@@ -1679,14 +1850,12 @@ void AstCFunc::dump(std::ostream& str) const {
|
||||
this->AstNode::dump(str);
|
||||
if (slow()) str << " [SLOW]";
|
||||
if (pure()) str << " [PURE]";
|
||||
if (isStatic().unknown()) {
|
||||
str << " [STATICU]";
|
||||
} else if (isStatic().trueUnknown()) {
|
||||
str << " [STATIC]";
|
||||
}
|
||||
if (dpiImport()) str << " [DPII]";
|
||||
if (dpiExport()) str << " [DPIX]";
|
||||
if (dpiExportWrapper()) str << " [DPIXWR]";
|
||||
if (isStatic()) str << " [STATIC]";
|
||||
if (dpiExportDispatcher()) str << " [DPIED]";
|
||||
if (dpiExportImpl()) str << " [DPIEI]";
|
||||
if (dpiImportPrototype()) str << " [DPIIP]";
|
||||
if (dpiImportWrapper()) str << " [DPIIW]";
|
||||
if (dpiContext()) str << " [DPICTX]";
|
||||
if (isConstructor()) str << " [CTOR]";
|
||||
if (isDestructor()) str << " [DTOR]";
|
||||
if (isVirtual()) str << " [VIRT]";
|
||||
|
||||
+263
-160
File diff suppressed because it is too large
Load Diff
@@ -0,0 +1,126 @@
|
||||
// -*- mode: C++; c-file-style: "cc-mode" -*-
|
||||
//*************************************************************************
|
||||
// DESCRIPTION: Verilator: Utility to hang advanced data structures of
|
||||
// AstNode::user*p() pointers with automatic memory management.
|
||||
//
|
||||
// Code available from: https://verilator.org
|
||||
//
|
||||
//*************************************************************************
|
||||
//
|
||||
// Copyright 2003-2021 by Wilson Snyder. This program is free software; you
|
||||
// can redistribute it and/or modify it under the terms of either the GNU
|
||||
// Lesser General Public License Version 3 or the Perl Artistic License
|
||||
// Version 2.0.
|
||||
// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
//
|
||||
//*************************************************************************
|
||||
|
||||
#ifndef VERILATOR_V3ASTUSERALLOCATOR_H_
|
||||
#define VERILATOR_V3ASTUSERALLOCATOR_H_
|
||||
|
||||
#include "config_build.h"
|
||||
#include "verilatedos.h"
|
||||
|
||||
#include "V3Ast.h"
|
||||
|
||||
#include <type_traits>
|
||||
#include <vector>
|
||||
|
||||
template <class T_Node, class T_Data, int T_UserN> class AstUserAllocatorBase VL_NOT_FINAL {
|
||||
static_assert(1 <= T_UserN && T_UserN <= 5, "Wrong user pointer number");
|
||||
static_assert(std::is_base_of<AstNode, T_Node>::value, "T_Node must be an AstNode type");
|
||||
|
||||
private:
|
||||
std::vector<T_Data*> m_allocated;
|
||||
|
||||
inline T_Data* getUserp(const T_Node* nodep) const {
|
||||
// This simplifies statically as T_UserN is constant. In C++17, use 'if constexpr'.
|
||||
if (T_UserN == 1) {
|
||||
const VNUser user = nodep->user1u();
|
||||
return user.to<T_Data*>();
|
||||
} else if (T_UserN == 2) {
|
||||
const VNUser user = nodep->user2u();
|
||||
return user.to<T_Data*>();
|
||||
} else if (T_UserN == 3) {
|
||||
const VNUser user = nodep->user3u();
|
||||
return user.to<T_Data*>();
|
||||
} else if (T_UserN == 4) {
|
||||
const VNUser user = nodep->user4u();
|
||||
return user.to<T_Data*>();
|
||||
} else {
|
||||
const VNUser user = nodep->user5u();
|
||||
return user.to<T_Data*>();
|
||||
}
|
||||
}
|
||||
|
||||
inline void setUserp(T_Node* nodep, T_Data* userp) const {
|
||||
// This simplifies statically as T_UserN is constant. In C++17, use 'if constexpr'.
|
||||
if (T_UserN == 1) {
|
||||
nodep->user1u(VNUser(userp));
|
||||
} else if (T_UserN == 2) {
|
||||
nodep->user2u(VNUser(userp));
|
||||
} else if (T_UserN == 3) {
|
||||
nodep->user3u(VNUser(userp));
|
||||
} else if (T_UserN == 4) {
|
||||
nodep->user4u(VNUser(userp));
|
||||
} else {
|
||||
nodep->user5u(VNUser(userp));
|
||||
}
|
||||
}
|
||||
|
||||
protected:
|
||||
AstUserAllocatorBase() {
|
||||
// This simplifies statically as T_UserN is constant. In C++17, use 'if constexpr'.
|
||||
if (T_UserN == 1) {
|
||||
AstUser1InUse::check();
|
||||
} else if (T_UserN == 2) {
|
||||
AstUser2InUse::check();
|
||||
} else if (T_UserN == 3) {
|
||||
AstUser3InUse::check();
|
||||
} else if (T_UserN == 4) {
|
||||
AstUser4InUse::check();
|
||||
} else {
|
||||
AstUser5InUse::check();
|
||||
}
|
||||
}
|
||||
|
||||
virtual ~AstUserAllocatorBase() {
|
||||
// Delete all allocated data structures
|
||||
for (T_Data* const p : m_allocated) { delete p; }
|
||||
}
|
||||
|
||||
public:
|
||||
// Get a reference to the user data
|
||||
T_Data& operator()(T_Node* nodep) {
|
||||
T_Data* userp = getUserp(nodep);
|
||||
if (!userp) {
|
||||
userp = new T_Data;
|
||||
m_allocated.push_back(userp);
|
||||
setUserp(nodep, userp);
|
||||
}
|
||||
return *userp;
|
||||
}
|
||||
|
||||
// Get a reference to the user data
|
||||
T_Data& operator()(const T_Node* nodep) {
|
||||
T_Data* userp = getUserp(nodep);
|
||||
UASSERT_OBJ(userp, nodep, "Missing User data on const AstNode");
|
||||
return *userp;
|
||||
}
|
||||
};
|
||||
|
||||
// User pointer allocator classes. T_Node is the type of node the allocator should be applied to
|
||||
// and is simply there for a bit of extra type safety. T_Data is the type of the data structure
|
||||
// managed by the allocator.
|
||||
template <class T_Node, class T_Data>
|
||||
class AstUser1Allocator final : public AstUserAllocatorBase<T_Node, T_Data, 1> {};
|
||||
template <class T_Node, class T_Data>
|
||||
class AstUser2Allocator final : public AstUserAllocatorBase<T_Node, T_Data, 2> {};
|
||||
template <class T_Node, class T_Data>
|
||||
class AstUser3Allocator final : public AstUserAllocatorBase<T_Node, T_Data, 3> {};
|
||||
template <class T_Node, class T_Data>
|
||||
class AstUser4Allocator final : public AstUserAllocatorBase<T_Node, T_Data, 4> {};
|
||||
template <class T_Node, class T_Data>
|
||||
class AstUser5Allocator final : public AstUserAllocatorBase<T_Node, T_Data, 5> {};
|
||||
|
||||
#endif // Guard
|
||||
+32
-17
@@ -62,6 +62,7 @@ private:
|
||||
BeginState* m_statep; // Current global state
|
||||
AstNodeModule* m_modp = nullptr; // Current module
|
||||
AstNodeFTask* m_ftaskp = nullptr; // Current function/task
|
||||
AstNode* m_liftedp = nullptr; // Local nodes we are lifting into m_ftaskp
|
||||
string m_namedScope; // Name of begin blocks above us
|
||||
string m_unnamedScope; // Name of begin blocks, including unnamed blocks
|
||||
int m_ifDepth = 0; // Current if depth
|
||||
@@ -74,6 +75,21 @@ private:
|
||||
return a + "__DOT__" + b;
|
||||
}
|
||||
|
||||
void liftNode(AstNode* nodep) {
|
||||
nodep->unlinkFrBack();
|
||||
if (m_ftaskp) {
|
||||
// AstBegin under ftask, just move into the ftask
|
||||
if (!m_liftedp) {
|
||||
m_liftedp = nodep;
|
||||
} else {
|
||||
m_liftedp->addNext(nodep);
|
||||
}
|
||||
} else {
|
||||
// Move to module
|
||||
m_modp->addStmtp(nodep);
|
||||
}
|
||||
}
|
||||
|
||||
// VISITORS
|
||||
virtual void visit(AstNodeModule* nodep) override {
|
||||
VL_RESTORER(m_modp);
|
||||
@@ -101,7 +117,17 @@ private:
|
||||
m_namedScope = "";
|
||||
m_unnamedScope = "";
|
||||
m_ftaskp = nodep;
|
||||
m_liftedp = nullptr;
|
||||
iterateChildren(nodep);
|
||||
if (m_liftedp) {
|
||||
// Place lifted nodes at beginning of stmtsp, so Var nodes appear before referenced
|
||||
if (AstNode* const stmtsp = nodep->stmtsp()) {
|
||||
stmtsp->unlinkFrBackWithNext();
|
||||
m_liftedp->addNext(stmtsp);
|
||||
}
|
||||
nodep->addStmtsp(m_liftedp);
|
||||
m_liftedp = nullptr;
|
||||
}
|
||||
m_ftaskp = nullptr;
|
||||
}
|
||||
}
|
||||
@@ -117,7 +143,7 @@ private:
|
||||
string dottedname = nodep->name() + "__DOT__"; // So always found
|
||||
string::size_type pos;
|
||||
while ((pos = dottedname.find("__DOT__")) != string::npos) {
|
||||
string ident = dottedname.substr(0, pos);
|
||||
const string ident = dottedname.substr(0, pos);
|
||||
dottedname = dottedname.substr(pos + strlen("__DOT__"));
|
||||
if (nodep->name() != "") m_namedScope = dot(m_namedScope, ident);
|
||||
m_unnamedScope = dot(m_unnamedScope, ident);
|
||||
@@ -157,13 +183,8 @@ private:
|
||||
// Rename it
|
||||
nodep->name(dot(m_unnamedScope, nodep->name()));
|
||||
m_statep->userMarkChanged(nodep);
|
||||
// Move to module
|
||||
nodep->unlinkFrBack();
|
||||
if (m_ftaskp) {
|
||||
m_ftaskp->addStmtsp(nodep); // Begins under funcs just move into the func
|
||||
} else {
|
||||
m_modp->addStmtp(nodep);
|
||||
}
|
||||
// Move it under enclosing tree
|
||||
liftNode(nodep);
|
||||
}
|
||||
}
|
||||
virtual void visit(AstTypedef* nodep) override {
|
||||
@@ -171,14 +192,8 @@ private:
|
||||
// Rename it
|
||||
nodep->name(dot(m_unnamedScope, nodep->name()));
|
||||
m_statep->userMarkChanged(nodep);
|
||||
// Move to module
|
||||
nodep->unlinkFrBack();
|
||||
// Begins under funcs just move into the func
|
||||
if (m_ftaskp) {
|
||||
m_ftaskp->addStmtsp(nodep);
|
||||
} else {
|
||||
m_modp->addStmtp(nodep);
|
||||
}
|
||||
// Move it under enclosing tree
|
||||
liftNode(nodep);
|
||||
}
|
||||
}
|
||||
virtual void visit(AstCell* nodep) override {
|
||||
@@ -293,7 +308,7 @@ void V3Begin::debeginAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{
|
||||
BeginState state;
|
||||
{ BeginVisitor bvisitor(nodep, &state); }
|
||||
{ BeginVisitor bvisitor{nodep, &state}; }
|
||||
if (state.anyFuncInBegin()) { BeginRelinkVisitor brvisitor(nodep, &state); }
|
||||
} // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("begin", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
|
||||
+8
-8
@@ -43,8 +43,8 @@ private:
|
||||
AstUser1InUse m_inuser1;
|
||||
|
||||
// STATE
|
||||
int m_likely; // Excuses for branch likely taken
|
||||
int m_unlikely; // Excuses for branch likely not taken
|
||||
int m_likely = false; // Excuses for branch likely taken
|
||||
int m_unlikely = false; // Excuses for branch likely not taken
|
||||
std::vector<AstCFunc*> m_cfuncsp; // List of all tasks
|
||||
|
||||
// METHODS
|
||||
@@ -70,15 +70,15 @@ private:
|
||||
// Do if
|
||||
reset();
|
||||
iterateAndNextNull(nodep->ifsp());
|
||||
int ifLikely = m_likely;
|
||||
int ifUnlikely = m_unlikely;
|
||||
const int ifLikely = m_likely;
|
||||
const int ifUnlikely = m_unlikely;
|
||||
// Do else
|
||||
reset();
|
||||
iterateAndNextNull(nodep->elsesp());
|
||||
int elseLikely = m_likely;
|
||||
int elseUnlikely = m_unlikely;
|
||||
const int elseLikely = m_likely;
|
||||
const int elseUnlikely = m_unlikely;
|
||||
// Compute
|
||||
int likeness = ifLikely - ifUnlikely - (elseLikely - elseUnlikely);
|
||||
const int likeness = ifLikely - ifUnlikely - (elseLikely - elseUnlikely);
|
||||
if (likeness > 0) {
|
||||
nodep->branchPred(VBranchPred::BP_LIKELY);
|
||||
} else if (likeness < 0) {
|
||||
@@ -123,5 +123,5 @@ public:
|
||||
|
||||
void V3Branch::branchAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
BranchVisitor visitor(nodep);
|
||||
BranchVisitor visitor{nodep};
|
||||
}
|
||||
|
||||
+205
-182
@@ -18,6 +18,7 @@
|
||||
// Entire netlist
|
||||
// Mark all nodes
|
||||
// Check all links point to marked nodes
|
||||
// Check local variables in CFuncs appear before they are referenced
|
||||
//
|
||||
//*************************************************************************
|
||||
|
||||
@@ -31,201 +32,129 @@
|
||||
// This visitor does not edit nodes, and is called at error-exit, so should use constant iterators
|
||||
#include "V3AstConstOnly.h"
|
||||
|
||||
#include <algorithm>
|
||||
#include <unordered_map>
|
||||
#include <unordered_set>
|
||||
|
||||
//######################################################################
|
||||
// Generation counter for AstNode::m_brokenState
|
||||
|
||||
class BrokenTable VL_NOT_FINAL : public AstNVisitor {
|
||||
// Table of brokenExists node pointers
|
||||
static class BrokenCntGlobal {
|
||||
// This is a 7 bit generation counter, stored in the bottom 7 bits of AstNode::m_brokenState,
|
||||
// used to mark a node as being present under the root AstNetlist in the current traversal. A
|
||||
// value 0 is invalid, as the AstNode constructor uses that to initialize m_brokenState
|
||||
static constexpr uint8_t MIN_VALUE = 1;
|
||||
static constexpr uint8_t MAX_VALUE = 127;
|
||||
|
||||
uint8_t m_count = MIN_VALUE;
|
||||
|
||||
public:
|
||||
uint8_t get() {
|
||||
UASSERT(MIN_VALUE <= m_count && m_count <= MAX_VALUE, "Invalid generation number");
|
||||
return m_count;
|
||||
}
|
||||
|
||||
void inc() {
|
||||
++m_count;
|
||||
if (m_count > MAX_VALUE) m_count = MIN_VALUE;
|
||||
}
|
||||
} s_brokenCntGlobal;
|
||||
|
||||
//######################################################################
|
||||
// Table of allocated AstNode pointers
|
||||
|
||||
static class AllocTable final {
|
||||
private:
|
||||
// MEMBERS
|
||||
// For each node, we keep if it exists or not.
|
||||
using NodeMap = std::unordered_map<const AstNode*, int>; // Performance matters (when --debug)
|
||||
static NodeMap s_nodes; // Set of all nodes that exist
|
||||
// BITMASK
|
||||
enum { FLAG_ALLOCATED = 0x01 }; // new() and not delete()ed
|
||||
enum { FLAG_IN_TREE = 0x02 }; // Is in netlist tree
|
||||
enum { FLAG_LINKABLE = 0x04 }; // Is in netlist tree, can be linked to
|
||||
enum { FLAG_LEAKED = 0x08 }; // Known to have been leaked
|
||||
enum { FLAG_UNDER_NOW = 0x10 }; // Is in tree as parent of current node
|
||||
std::unordered_set<const AstNode*> m_allocated; // Set of all nodes allocated but not freed
|
||||
|
||||
public:
|
||||
// METHODS
|
||||
static void deleted(const AstNode* nodep) {
|
||||
// Called by operator delete on any node - only if VL_LEAK_CHECKS
|
||||
if (debug() >= 9) cout << "-nodeDel: " << cvtToHex(nodep) << endl;
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
UASSERT_OBJ(!(iter == s_nodes.end() || !(iter->second & FLAG_ALLOCATED)),
|
||||
reinterpret_cast<const AstNode*>(nodep),
|
||||
"Deleting AstNode object that was never tracked or already deleted");
|
||||
if (iter != s_nodes.end()) s_nodes.erase(iter);
|
||||
}
|
||||
#if defined(__GNUC__) && __GNUC__ == 4 && __GNUC_MINOR__ == 4
|
||||
// GCC 4.4.* compiler warning bug, https://gcc.gnu.org/bugzilla/show_bug.cgi?id=39390
|
||||
#pragma GCC diagnostic ignored "-Wstrict-aliasing"
|
||||
#endif
|
||||
static void addNewed(const AstNode* nodep) {
|
||||
void addNewed(const AstNode* nodep) {
|
||||
// Called by operator new on any node - only if VL_LEAK_CHECKS
|
||||
if (debug() >= 9) cout << "-nodeNew: " << cvtToHex(nodep) << endl;
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
UASSERT_OBJ(!(iter != s_nodes.end() && (iter->second & FLAG_ALLOCATED)), nodep,
|
||||
"Newing AstNode object that is already allocated");
|
||||
if (iter == s_nodes.end()) {
|
||||
int flags = FLAG_ALLOCATED; // This int needed to appease GCC 4.1.2
|
||||
s_nodes.emplace(nodep, flags);
|
||||
// LCOV_EXCL_START
|
||||
if (VL_UNCOVERABLE(!m_allocated.emplace(nodep).second)) {
|
||||
nodep->v3fatalSrc("Newing AstNode object that is already allocated");
|
||||
}
|
||||
// LCOV_EXCL_STOP
|
||||
}
|
||||
static void setUnder(const AstNode* nodep, bool flag) {
|
||||
// Called by BrokenCheckVisitor when each node entered/exited
|
||||
if (!okIfLinkedTo(nodep)) return;
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
if (iter != s_nodes.end()) {
|
||||
iter->second &= ~FLAG_UNDER_NOW;
|
||||
if (flag) iter->second |= FLAG_UNDER_NOW;
|
||||
void deleted(const AstNode* nodep) {
|
||||
// Called by operator delete on any node - only if VL_LEAK_CHECKS
|
||||
// LCOV_EXCL_START
|
||||
if (VL_UNCOVERABLE(m_allocated.erase(nodep) == 0)) {
|
||||
nodep->v3fatalSrc("Deleting AstNode object that was not allocated or already freed");
|
||||
}
|
||||
// LCOV_EXCL_STOP
|
||||
}
|
||||
static void addInTree(AstNode* nodep, bool linkable) {
|
||||
#ifndef VL_LEAK_CHECKS
|
||||
// cppcheck-suppress knownConditionTrueFalse
|
||||
if (!linkable) return; // save some time, else the map will get huge!
|
||||
#endif
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
if (VL_UNCOVERABLE(iter == s_nodes.end())) {
|
||||
#ifdef VL_LEAK_CHECKS
|
||||
nodep->v3fatalSrc("AstNode is in tree, but not allocated");
|
||||
#endif
|
||||
} else {
|
||||
#ifdef VL_LEAK_CHECKS
|
||||
UASSERT_OBJ(iter->second & FLAG_ALLOCATED, nodep,
|
||||
"AstNode is in tree, but not allocated");
|
||||
#endif
|
||||
UASSERT_OBJ(!(iter->second & FLAG_IN_TREE), nodep,
|
||||
"AstNode is already in tree at another location");
|
||||
}
|
||||
int or_flags = FLAG_IN_TREE | (linkable ? FLAG_LINKABLE : 0);
|
||||
if (iter == s_nodes.end()) {
|
||||
s_nodes.emplace(nodep, or_flags);
|
||||
} else {
|
||||
iter->second |= or_flags;
|
||||
}
|
||||
}
|
||||
static bool isAllocated(const AstNode* nodep) {
|
||||
// Some generic node has a pointer to this node. Is it allocated?
|
||||
// Use this when might not be in tree; otherwise use okIfLinkedTo().
|
||||
#ifdef VL_LEAK_CHECKS
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
if (iter == s_nodes.end()) return false;
|
||||
if (!(iter->second & FLAG_ALLOCATED)) return false;
|
||||
#endif
|
||||
return true;
|
||||
}
|
||||
static bool okIfLinkedTo(const AstNode* nodep) {
|
||||
// Some node in tree has a pointer to this node. Is it kosher?
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
if (iter == s_nodes.end()) return false;
|
||||
#ifdef VL_LEAK_CHECKS
|
||||
if (!(iter->second & FLAG_ALLOCATED)) return false;
|
||||
#endif
|
||||
if (!(iter->second & FLAG_IN_TREE)) return false;
|
||||
if (!(iter->second & FLAG_LINKABLE)) return false;
|
||||
return true;
|
||||
}
|
||||
static bool okIfAbove(const AstNode* nodep) {
|
||||
// Must be linked to and below current node
|
||||
if (!okIfLinkedTo(nodep)) return false;
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
if (iter == s_nodes.end()) return false;
|
||||
if ((iter->second & FLAG_UNDER_NOW)) return false;
|
||||
return true;
|
||||
}
|
||||
static bool okIfBelow(const AstNode* nodep) {
|
||||
// Must be linked to and below current node
|
||||
if (!okIfLinkedTo(nodep)) return false;
|
||||
const auto iter = s_nodes.find(nodep);
|
||||
if (iter == s_nodes.end()) return false;
|
||||
if (!(iter->second & FLAG_UNDER_NOW)) return false;
|
||||
return true;
|
||||
}
|
||||
static void prepForTree() {
|
||||
#ifndef VL_LEAK_CHECKS
|
||||
s_nodes.clear();
|
||||
#else
|
||||
for (NodeMap::iterator it = s_nodes.begin(); it != s_nodes.end(); ++it) {
|
||||
it->second &= ~FLAG_IN_TREE;
|
||||
it->second &= ~FLAG_LINKABLE;
|
||||
}
|
||||
#endif
|
||||
}
|
||||
static void doneWithTree() {
|
||||
for (int backs = 0; backs < 2;
|
||||
backs++) { // Those with backp() are probably under one leaking without
|
||||
for (NodeMap::iterator it = s_nodes.begin(); it != s_nodes.end(); ++it) {
|
||||
// LCOV_EXCL_START
|
||||
if (VL_UNCOVERABLE((it->second & FLAG_ALLOCATED) && !(it->second & FLAG_IN_TREE)
|
||||
&& !(it->second & FLAG_LEAKED)
|
||||
&& (it->first->backp() ? backs == 1 : backs == 0))) {
|
||||
bool isAllocated(const AstNode* nodep) const { return m_allocated.count(nodep) != 0; }
|
||||
void checkForLeaks() {
|
||||
if (!v3Global.opt.debugCheck()) return;
|
||||
|
||||
const uint8_t brokenCntCurrent = s_brokenCntGlobal.get();
|
||||
|
||||
// Those with backp() are probably under a parent that was leaked and has no backp()
|
||||
for (const bool withBack : {false, true}) {
|
||||
for (const AstNode* const nodep : m_allocated) {
|
||||
// LCOV_EXCL_START
|
||||
// Most likely not leaked, so check that first
|
||||
if (VL_UNCOVERABLE(nodep->brokenState() != brokenCntCurrent)) {
|
||||
const bool hasBack = nodep->backp() != nullptr;
|
||||
if (hasBack != withBack) continue;
|
||||
// Use only AstNode::dump instead of the virtual one, as there
|
||||
// may be varp() and other cross links that are bad.
|
||||
if (v3Global.opt.debugCheck()) {
|
||||
// When get this message, find what forgot to delete the
|
||||
// node by running GDB, where for node "<e###>" use:
|
||||
// watch AstNode::s_editCntGbl==####
|
||||
// run
|
||||
// bt
|
||||
std::cerr << "%Error: LeakedNode"
|
||||
<< (it->first->backp() ? "Back: " : ": ");
|
||||
AstNode* rawp
|
||||
= const_cast<AstNode*>(static_cast<const AstNode*>(it->first));
|
||||
rawp->AstNode::dump(std::cerr);
|
||||
std::cerr << endl;
|
||||
V3Error::incErrors();
|
||||
}
|
||||
it->second |= FLAG_LEAKED;
|
||||
// When get this message, find what forgot to delete the
|
||||
// node by running GDB, where for node "<e###>" use:
|
||||
// watch AstNode::s_editCntGbl==####
|
||||
// run
|
||||
// bt
|
||||
std::cerr << "%Error: LeakedNode" << (withBack ? "with back pointer: " : ": ");
|
||||
nodep->AstNode::dump(std::cerr);
|
||||
std::cerr << endl;
|
||||
V3Error::incErrors();
|
||||
}
|
||||
// LCOV_EXCL_STOP
|
||||
}
|
||||
}
|
||||
}
|
||||
} s_allocTable;
|
||||
|
||||
// CONSTRUCTORS
|
||||
BrokenTable() = default;
|
||||
virtual ~BrokenTable() override = default;
|
||||
};
|
||||
|
||||
BrokenTable::NodeMap BrokenTable::s_nodes;
|
||||
|
||||
bool AstNode::brokeExists() const {
|
||||
// Called by node->broken() routines to do table lookup
|
||||
return BrokenTable::okIfLinkedTo(this);
|
||||
}
|
||||
bool AstNode::brokeExistsAbove() const {
|
||||
// Called by node->broken() routines to do table lookup
|
||||
return BrokenTable::okIfBelow(this);
|
||||
}
|
||||
bool AstNode::brokeExistsBelow() const {
|
||||
// Called by node->broken() routines to do table lookup
|
||||
return BrokenTable::okIfAbove(this);
|
||||
}
|
||||
void V3Broken::addNewed(const AstNode* nodep) { s_allocTable.addNewed(nodep); }
|
||||
void V3Broken::deleted(const AstNode* nodep) { s_allocTable.deleted(nodep); }
|
||||
|
||||
//######################################################################
|
||||
// Table of AstNode pointers that can be linked to via member pointers
|
||||
|
||||
static class LinkableTable final {
|
||||
private:
|
||||
// MEMBERS
|
||||
std::unordered_set<const AstNode*> m_linkable; // Set of all nodes allocated but not freed
|
||||
|
||||
public:
|
||||
// METHODS
|
||||
void clear() { m_linkable.clear(); }
|
||||
inline void addLinkable(const AstNode* nodep) { m_linkable.emplace(nodep); }
|
||||
inline bool isLinkable(const AstNode* nodep) const { return m_linkable.count(nodep) != 0; }
|
||||
} s_linkableTable;
|
||||
|
||||
bool V3Broken::isLinkable(const AstNode* nodep) { return s_linkableTable.isLinkable(nodep); }
|
||||
|
||||
//######################################################################
|
||||
// Mark every node in the tree
|
||||
|
||||
class BrokenMarkVisitor final : public AstNVisitor {
|
||||
// Mark every node in the tree
|
||||
private:
|
||||
// NODE STATE
|
||||
// Nothing! // This may be called deep inside other routines
|
||||
// // so userp and friends may not be used
|
||||
// METHODS
|
||||
void processAndIterate(AstNode* nodep) {
|
||||
BrokenTable::addInTree(nodep, nodep->maybePointedTo());
|
||||
iterateChildrenConst(nodep);
|
||||
}
|
||||
const uint8_t m_brokenCntCurrent = s_brokenCntGlobal.get();
|
||||
|
||||
// VISITORS
|
||||
virtual void visit(AstNode* nodep) override {
|
||||
// Process not just iterate
|
||||
processAndIterate(nodep);
|
||||
#ifdef VL_LEAK_CHECKS
|
||||
UASSERT_OBJ(s_allocTable.isAllocated(nodep), nodep,
|
||||
"AstNode is in tree, but not allocated");
|
||||
#endif
|
||||
UASSERT_OBJ(nodep->brokenState() != m_brokenCntCurrent, nodep,
|
||||
"AstNode is already in tree at another location");
|
||||
if (nodep->maybePointedTo()) s_linkableTable.addLinkable(nodep);
|
||||
nodep->brokenState(m_brokenCntCurrent);
|
||||
iterateChildrenConst(nodep);
|
||||
}
|
||||
|
||||
public:
|
||||
@@ -235,19 +164,33 @@ public:
|
||||
};
|
||||
|
||||
//######################################################################
|
||||
// Broken state, as a visitor of each AstNode
|
||||
// Check every node in tree
|
||||
|
||||
class BrokenCheckVisitor final : public AstNVisitor {
|
||||
bool m_inScope = false; // Under AstScope
|
||||
|
||||
// Constants for marking we are under/not under a node
|
||||
const uint8_t m_brokenCntCurrentNotUnder = s_brokenCntGlobal.get(); // Top bit is clear
|
||||
const uint8_t m_brokenCntCurrentUnder = m_brokenCntCurrentNotUnder | 0x80; // Top bit is set
|
||||
|
||||
// Current CFunc, if any
|
||||
const AstCFunc* m_cfuncp = nullptr;
|
||||
// All local variables declared in current function
|
||||
std::unordered_set<const AstVar*> m_localVars;
|
||||
// Variable references in current function that do not reference an in-scope local
|
||||
std::unordered_map<const AstVar*, const AstNodeVarRef*> m_suspectRefs;
|
||||
// Local variables declared in the scope of the current statement
|
||||
std::vector<std::unordered_set<const AstVar*>> m_localsStack;
|
||||
|
||||
private:
|
||||
static void checkWidthMin(const AstNode* nodep) {
|
||||
UASSERT_OBJ(nodep->width() == nodep->widthMin()
|
||||
|| v3Global.widthMinUsage() != VWidthMinUsage::MATCHES_WIDTH,
|
||||
nodep, "Width != WidthMin");
|
||||
}
|
||||
void processAndIterate(AstNode* nodep) {
|
||||
BrokenTable::setUnder(nodep, true);
|
||||
|
||||
void processEnter(AstNode* nodep) {
|
||||
nodep->brokenState(m_brokenCntCurrentUnder);
|
||||
const char* whyp = nodep->broken();
|
||||
UASSERT_OBJ(!whyp, nodep,
|
||||
"Broken link in node (or something without maybePointedTo): " << whyp);
|
||||
@@ -270,8 +213,30 @@ private:
|
||||
if (const AstNodeDType* dnodep = VN_CAST(nodep, NodeDType)) checkWidthMin(dnodep);
|
||||
}
|
||||
checkWidthMin(nodep);
|
||||
}
|
||||
void processExit(AstNode* nodep) { nodep->brokenState(m_brokenCntCurrentNotUnder); }
|
||||
void processAndIterate(AstNode* nodep) {
|
||||
processEnter(nodep);
|
||||
iterateChildrenConst(nodep);
|
||||
BrokenTable::setUnder(nodep, false);
|
||||
processExit(nodep);
|
||||
}
|
||||
void processAndIterateList(AstNode* nodep) {
|
||||
while (nodep) {
|
||||
processAndIterate(nodep);
|
||||
nodep = nodep->nextp();
|
||||
};
|
||||
}
|
||||
void pushLocalScope() {
|
||||
if (m_cfuncp) m_localsStack.emplace_back();
|
||||
}
|
||||
void popLocalScope() {
|
||||
if (m_cfuncp) m_localsStack.pop_back();
|
||||
}
|
||||
bool isInScopeLocal(const AstVar* varp) const {
|
||||
for (const auto& set : m_localsStack) {
|
||||
if (set.count(varp)) return true;
|
||||
}
|
||||
return false;
|
||||
}
|
||||
virtual void visit(AstNodeAssign* nodep) override {
|
||||
processAndIterate(nodep);
|
||||
@@ -295,6 +260,65 @@ private:
|
||||
UASSERT_OBJ(
|
||||
!(v3Global.assertScoped() && m_inScope && nodep->varp() && !nodep->varScopep()), nodep,
|
||||
"VarRef missing VarScope pointer");
|
||||
if (m_cfuncp) {
|
||||
// Check if variable is an in-scope local, otherwise mark as suspect
|
||||
if (const AstVar* const varp = nodep->varp()) {
|
||||
if (!isInScopeLocal(varp)) {
|
||||
// This only stores the first ref for each Var, which is what we want
|
||||
m_suspectRefs.emplace(varp, nodep);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
virtual void visit(AstCFunc* nodep) override {
|
||||
UASSERT_OBJ(!m_cfuncp, nodep, "Nested AstCFunc");
|
||||
m_cfuncp = nodep;
|
||||
m_localVars.clear();
|
||||
m_suspectRefs.clear();
|
||||
m_localsStack.clear();
|
||||
pushLocalScope();
|
||||
|
||||
processAndIterate(nodep);
|
||||
|
||||
// Check suspect references are all to non-locals
|
||||
for (const auto& pair : m_suspectRefs) {
|
||||
UASSERT_OBJ(m_localVars.count(pair.first) == 0, pair.second,
|
||||
"Local variable not in scope where referenced: " << pair.first);
|
||||
}
|
||||
|
||||
m_cfuncp = nullptr;
|
||||
}
|
||||
virtual void visit(AstNodeIf* nodep) override {
|
||||
// Each branch is a separate local variable scope
|
||||
pushLocalScope();
|
||||
processEnter(nodep);
|
||||
processAndIterate(nodep->condp());
|
||||
if (AstNode* const ifsp = nodep->ifsp()) {
|
||||
pushLocalScope();
|
||||
processAndIterateList(ifsp);
|
||||
popLocalScope();
|
||||
}
|
||||
if (AstNode* const elsesp = nodep->elsesp()) {
|
||||
pushLocalScope();
|
||||
processAndIterateList(elsesp);
|
||||
popLocalScope();
|
||||
}
|
||||
processExit(nodep);
|
||||
popLocalScope();
|
||||
}
|
||||
virtual void visit(AstNodeStmt* nodep) override {
|
||||
// For local variable checking act as if any statement introduces a new scope.
|
||||
// This is aggressive but conservatively correct.
|
||||
pushLocalScope();
|
||||
processAndIterate(nodep);
|
||||
popLocalScope();
|
||||
}
|
||||
virtual void visit(AstVar* nodep) override {
|
||||
processAndIterate(nodep);
|
||||
if (m_cfuncp) {
|
||||
m_localVars.insert(nodep);
|
||||
m_localsStack.back().insert(nodep);
|
||||
}
|
||||
}
|
||||
virtual void visit(AstNode* nodep) override {
|
||||
// Process not just iterate
|
||||
@@ -308,7 +332,7 @@ public:
|
||||
};
|
||||
|
||||
//######################################################################
|
||||
// Broken class functions
|
||||
// Broken check entry point
|
||||
|
||||
void V3Broken::brokenAll(AstNetlist* nodep) {
|
||||
// UINFO(9, __FUNCTION__ << ": " << endl);
|
||||
@@ -318,24 +342,23 @@ void V3Broken::brokenAll(AstNetlist* nodep) {
|
||||
UINFO(1, "Broken called under broken, skipping recursion.\n"); // LCOV_EXCL_LINE
|
||||
} else {
|
||||
inBroken = true;
|
||||
BrokenTable::prepForTree();
|
||||
BrokenMarkVisitor mvisitor(nodep);
|
||||
BrokenCheckVisitor cvisitor(nodep);
|
||||
BrokenTable::doneWithTree();
|
||||
BrokenMarkVisitor mvisitor{nodep};
|
||||
BrokenCheckVisitor cvisitor{nodep};
|
||||
s_allocTable.checkForLeaks();
|
||||
s_linkableTable.clear();
|
||||
s_brokenCntGlobal.inc();
|
||||
inBroken = false;
|
||||
}
|
||||
}
|
||||
|
||||
void V3Broken::addNewed(AstNode* nodep) { BrokenTable::addNewed(nodep); }
|
||||
void V3Broken::deleted(AstNode* nodep) { BrokenTable::deleted(nodep); }
|
||||
bool V3Broken::isAllocated(AstNode* nodep) { return BrokenTable::isAllocated(nodep); }
|
||||
//######################################################################
|
||||
// Self test
|
||||
|
||||
void V3Broken::selfTest() {
|
||||
// Warmup addNewed and deleted for coverage, as otherwise only with VL_LEAK_CHECKS
|
||||
FileLine* fl = new FileLine(FileLine::commandLineFilename());
|
||||
auto* newp = new AstBegin(fl, "[EditWrapper]", nullptr);
|
||||
#ifndef VL_LEAK_CHECKS
|
||||
// Exercise addNewed and deleted for coverage, as otherwise only used with VL_LEAK_CHECKS
|
||||
FileLine* const fl = new FileLine(FileLine::commandLineFilename());
|
||||
const AstNode* const newp = new AstBegin(fl, "[EditWrapper]", nullptr);
|
||||
addNewed(newp);
|
||||
deleted(newp);
|
||||
#endif
|
||||
VL_DO_DANGLING(delete newp, newp);
|
||||
}
|
||||
|
||||
+7
-6
@@ -20,17 +20,18 @@
|
||||
#include "config_build.h"
|
||||
#include "verilatedos.h"
|
||||
|
||||
#include "V3Error.h"
|
||||
#include "V3Ast.h"
|
||||
|
||||
//============================================================================
|
||||
|
||||
// Forward declare so we can include this in V3Ast.h
|
||||
class AstNode;
|
||||
class AstNetlist;
|
||||
|
||||
class V3Broken final {
|
||||
public:
|
||||
static void brokenAll(AstNetlist* nodep);
|
||||
static void addNewed(AstNode* nodep);
|
||||
static void deleted(AstNode* nodep);
|
||||
static bool isAllocated(AstNode* nodep);
|
||||
static bool isLinkable(const AstNode* nodep);
|
||||
static void addNewed(const AstNode* nodep);
|
||||
static void deleted(const AstNode* nodep);
|
||||
static void selfTest();
|
||||
};
|
||||
|
||||
|
||||
+43
-40
@@ -60,24 +60,22 @@ private:
|
||||
AstCFunc* makeNewFunc() {
|
||||
const int funcNum = m_newFunctions.size();
|
||||
const string funcName = m_basename + "_" + cvtToStr(funcNum);
|
||||
AstCFunc* const funcp = new AstCFunc(m_modp->fileline(), funcName, nullptr, "void");
|
||||
funcp->isStatic(!m_type.isClass()); // Class constructors are non static
|
||||
AstCFunc* const funcp = new AstCFunc{m_modp->fileline(), funcName, nullptr, "void"};
|
||||
funcp->isStatic(false);
|
||||
funcp->isLoose(!m_type.isClass());
|
||||
funcp->declPrivate(true);
|
||||
funcp->slow(!m_type.isClass()); // Only classes construct on fast path
|
||||
string preventUnusedStmt;
|
||||
if (m_type.isClass()) {
|
||||
funcp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
preventUnusedStmt = "if (false && vlSymsp) {}";
|
||||
preventUnusedStmt = "if (false && vlSymsp) {} // Prevent unused\n";
|
||||
} else if (m_type.isCoverage()) {
|
||||
funcp->argTypes(EmitCBaseVisitor::prefixNameProtect(m_modp) + "* self, "
|
||||
+ EmitCBaseVisitor::symClassVar() + ", bool first");
|
||||
preventUnusedStmt = "if (false && self && vlSymsp && first) {}";
|
||||
} else { // Module
|
||||
funcp->argTypes(EmitCBaseVisitor::prefixNameProtect(m_modp) + "* self");
|
||||
preventUnusedStmt = "if (false && self) {}";
|
||||
funcp->argTypes("bool first");
|
||||
preventUnusedStmt = "if (false && first) {} // Prevent unused\n";
|
||||
}
|
||||
if (!preventUnusedStmt.empty()) {
|
||||
funcp->addStmtsp(new AstCStmt{m_modp->fileline(), preventUnusedStmt});
|
||||
}
|
||||
preventUnusedStmt += " // Prevent unused\n";
|
||||
funcp->addStmtsp(new AstCStmt(m_modp->fileline(), preventUnusedStmt));
|
||||
m_modp->addStmtp(funcp);
|
||||
m_numStmts = 0;
|
||||
return funcp;
|
||||
@@ -93,9 +91,9 @@ public:
|
||||
}
|
||||
|
||||
V3CCtorsBuilder(AstNodeModule* nodep, const string& basename, VCtorType type)
|
||||
: m_modp(nodep)
|
||||
: m_modp{nodep}
|
||||
, m_basename{basename}
|
||||
, m_type(type) {
|
||||
, m_type{type} {
|
||||
// Note: The constructor is always called, even if empty, so we must always create at least
|
||||
// one.
|
||||
m_newFunctions.push_back(makeNewFunc());
|
||||
@@ -110,13 +108,12 @@ public:
|
||||
AstCFunc* const rootFuncp = makeNewFunc();
|
||||
rootFuncp->name(m_basename);
|
||||
for (AstCFunc* const funcp : m_newFunctions) {
|
||||
AstCCall* const callp = new AstCCall(m_modp->fileline(), funcp);
|
||||
AstCCall* const callp = new AstCCall{m_modp->fileline(), funcp};
|
||||
if (m_type.isClass()) {
|
||||
callp->argTypes("vlSymsp");
|
||||
} else if (m_type.isCoverage()) {
|
||||
callp->argTypes("self, vlSymsp, first");
|
||||
} else { // Module
|
||||
callp->argTypes("self");
|
||||
} else {
|
||||
if (m_type.isCoverage()) callp->argTypes("first");
|
||||
callp->selfPointer("this");
|
||||
}
|
||||
rootFuncp->addStmtsp(callp);
|
||||
}
|
||||
@@ -130,35 +127,40 @@ private:
|
||||
//######################################################################
|
||||
|
||||
void V3CCtors::evalAsserts() {
|
||||
AstNodeModule* modp = v3Global.rootp()->modulesp(); // Top module wrapper
|
||||
AstCFunc* funcp = new AstCFunc(modp->fileline(), "_eval_debug_assertions", nullptr, "void");
|
||||
AstNodeModule* const modp = v3Global.rootp()->modulesp(); // Top module wrapper
|
||||
AstCFunc* const funcp
|
||||
= new AstCFunc{modp->fileline(), "_eval_debug_assertions", nullptr, "void"};
|
||||
funcp->declPrivate(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->isLoose(true);
|
||||
funcp->slow(false);
|
||||
funcp->ifdef("VL_DEBUG");
|
||||
modp->addStmtp(funcp);
|
||||
for (AstNode* np = modp->stmtsp(); np; np = np->nextp()) {
|
||||
if (AstVar* varp = VN_CAST(np, Var)) {
|
||||
if (AstVar* const varp = VN_CAST(np, Var)) {
|
||||
if (varp->isPrimaryInish() && !varp->isSc()) {
|
||||
if (AstBasicDType* basicp = VN_CAST(varp->dtypeSkipRefp(), BasicDType)) {
|
||||
int storedWidth = basicp->widthAlignBytes() * 8;
|
||||
int lastWordWidth = varp->width() % storedWidth;
|
||||
const int storedWidth = basicp->widthAlignBytes() * 8;
|
||||
const int lastWordWidth = varp->width() % storedWidth;
|
||||
if (lastWordWidth != 0) {
|
||||
// if (signal & CONST(upper_non_clean_mask)) { fail; }
|
||||
AstNode* newp = new AstVarRef(varp->fileline(), varp, VAccess::READ);
|
||||
AstVarRef* const vrefp
|
||||
= new AstVarRef{varp->fileline(), varp, VAccess::READ};
|
||||
vrefp->selfPointer("this");
|
||||
AstNode* newp = vrefp;
|
||||
if (varp->isWide()) {
|
||||
newp = new AstWordSel(
|
||||
newp = new AstWordSel{
|
||||
varp->fileline(), newp,
|
||||
new AstConst(varp->fileline(), varp->widthWords() - 1));
|
||||
new AstConst(varp->fileline(), varp->widthWords() - 1)};
|
||||
}
|
||||
uint64_t value = VL_MASK_Q(storedWidth) & ~VL_MASK_Q(lastWordWidth);
|
||||
newp = new AstAnd(varp->fileline(), newp,
|
||||
const uint64_t value = VL_MASK_Q(storedWidth) & ~VL_MASK_Q(lastWordWidth);
|
||||
newp = new AstAnd{varp->fileline(), newp,
|
||||
new AstConst(varp->fileline(), AstConst::WidthedValue(),
|
||||
storedWidth, value));
|
||||
AstNodeIf* ifp = new AstIf(
|
||||
storedWidth, value)};
|
||||
AstNodeIf* const ifp = new AstIf{
|
||||
varp->fileline(), newp,
|
||||
new AstCStmt(varp->fileline(), "Verilated::overWidthError(\""
|
||||
+ varp->prettyName() + "\");"));
|
||||
new AstCStmt{varp->fileline(), "Verilated::overWidthError(\""
|
||||
+ varp->prettyName() + "\");"}};
|
||||
ifp->branchPred(VBranchPred::BP_UNLIKELY);
|
||||
newp = ifp;
|
||||
funcp->addStmtsp(newp);
|
||||
@@ -176,20 +178,21 @@ void V3CCtors::cctorsAll() {
|
||||
modp = VN_CAST(modp->nextp(), NodeModule)) {
|
||||
// Process each module in turn
|
||||
{
|
||||
V3CCtorsBuilder var_reset(modp, "_ctor_var_reset",
|
||||
VN_IS(modp, Class) ? VCtorType::CLASS : VCtorType::MODULE);
|
||||
V3CCtorsBuilder var_reset{modp, "_ctor_var_reset",
|
||||
VN_IS(modp, Class) ? VCtorType::CLASS : VCtorType::MODULE};
|
||||
|
||||
for (AstNode* np = modp->stmtsp(); np; np = np->nextp()) {
|
||||
if (AstVar* const varp = VN_CAST(np, Var)) {
|
||||
if (!varp->isIfaceParent() && !varp->isIfaceRef() && !varp->noReset()) {
|
||||
const auto vrefp = new AstVarRef(varp->fileline(), varp, VAccess::WRITE);
|
||||
var_reset.add(new AstCReset(varp->fileline(), vrefp));
|
||||
if (!varp->isIfaceParent() && !varp->isIfaceRef() && !varp->noReset()
|
||||
&& !varp->isParam()) {
|
||||
const auto vrefp = new AstVarRef{varp->fileline(), varp, VAccess::WRITE};
|
||||
var_reset.add(new AstCReset{varp->fileline(), vrefp});
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
if (v3Global.opt.coverage()) {
|
||||
V3CCtorsBuilder configure_coverage(modp, "_configure_coverage", VCtorType::COVERAGE);
|
||||
V3CCtorsBuilder configure_coverage{modp, "_configure_coverage", VCtorType::COVERAGE};
|
||||
for (AstNode* np = modp->stmtsp(); np; np = np->nextp()) {
|
||||
if (AstCoverDecl* const coverp = VN_CAST(np, CoverDecl)) {
|
||||
np = coverp->backp();
|
||||
@@ -197,8 +200,8 @@ void V3CCtors::cctorsAll() {
|
||||
}
|
||||
}
|
||||
}
|
||||
if (AstClass* classp = VN_CAST(modp, Class)) {
|
||||
AstCFunc* funcp = new AstCFunc(modp->fileline(), "~", nullptr, "");
|
||||
if (AstClass* const classp = VN_CAST(modp, Class)) {
|
||||
AstCFunc* const funcp = new AstCFunc{modp->fileline(), "~", nullptr, ""};
|
||||
funcp->isDestructor(true);
|
||||
funcp->isStatic(false);
|
||||
// If can be referred to by base pointer, need virtual delete
|
||||
|
||||
+35
-165
@@ -13,14 +13,12 @@
|
||||
// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
//
|
||||
//*************************************************************************
|
||||
// V3Class's Transformations:
|
||||
// V3CUse's Transformations:
|
||||
//
|
||||
// Each module:
|
||||
// Each cell:
|
||||
// Create CUse for cell forward declaration
|
||||
// Each class:
|
||||
// Create string access functions
|
||||
// Search for dtypes referencing class, and create CUse for forward declaraion
|
||||
// Search for dtypes referencing class, and create CUse for forward declaration
|
||||
//
|
||||
//*************************************************************************
|
||||
|
||||
@@ -30,61 +28,37 @@
|
||||
#include "V3Global.h"
|
||||
#include "V3CUse.h"
|
||||
#include "V3Ast.h"
|
||||
#include "V3EmitCBase.h"
|
||||
|
||||
#include <unordered_map>
|
||||
#include <set>
|
||||
|
||||
//######################################################################
|
||||
|
||||
class CUseState final {
|
||||
private:
|
||||
// MEMBERS
|
||||
AstNodeModule* m_modInsertp; // Current module to insert AstCUse under
|
||||
using UseString = std::pair<VUseType, std::string>;
|
||||
std::map<const UseString, AstCUse*> m_didUse; // What we already used
|
||||
|
||||
// NODE STATE
|
||||
// Entire netlist:
|
||||
// AstClass::user1() -> bool. True if class needs to_string dumper
|
||||
AstUser1InUse m_inuser1;
|
||||
// AstClass::user2() -> bool. True if iterated
|
||||
AstUser2InUse m_inuser2;
|
||||
|
||||
// METHODS
|
||||
VL_DEBUG_FUNC; // Declare debug()
|
||||
|
||||
public:
|
||||
AstCUse* newUse(AstNode* nodep, VUseType useType, const string& name) {
|
||||
UseString key(useType, name);
|
||||
if (m_didUse.find(key) == m_didUse.end()) {
|
||||
AstCUse* newp = new AstCUse(nodep->fileline(), useType, name);
|
||||
m_modInsertp->addStmtp(newp);
|
||||
UINFO(8, "Insert " << newp << endl);
|
||||
m_didUse[key] = newp;
|
||||
}
|
||||
return m_didUse[key];
|
||||
}
|
||||
|
||||
// CONSTRUCTORS
|
||||
explicit CUseState(AstNodeModule* nodep)
|
||||
: m_modInsertp{nodep} {}
|
||||
virtual ~CUseState() = default;
|
||||
VL_UNCOPYABLE(CUseState);
|
||||
};
|
||||
|
||||
// Visit within a module all nodes and data types they reference, finding
|
||||
// any classes so we can make sure they are defined when Verilated code
|
||||
// compiles
|
||||
class CUseDTypeVisitor final : public AstNVisitor {
|
||||
class CUseVisitor final : public AstNVisitor {
|
||||
// NODE STATE
|
||||
// AstNode::user1() -> bool. True if already visited
|
||||
AstUser1InUse m_inuser1;
|
||||
|
||||
// MEMBERS
|
||||
CUseState& m_stater; // State for inserter
|
||||
bool m_impOnly = false; // In details needed only for implementation
|
||||
AstNodeModule* const m_modp; // Current module
|
||||
std::set<std::pair<VUseType, std::string>> m_didUse; // What we already used
|
||||
|
||||
// METHODS
|
||||
void addNewUse(AstNode* nodep, VUseType useType, const string& name) {
|
||||
if (m_didUse.emplace(useType, name).second) {
|
||||
AstCUse* const newp = new AstCUse{nodep->fileline(), useType, name};
|
||||
m_modp->addStmtp(newp);
|
||||
UINFO(8, "Insert " << newp << endl);
|
||||
}
|
||||
}
|
||||
|
||||
// VISITORS
|
||||
virtual void visit(AstClassRefDType* nodep) override {
|
||||
if (nodep->user2SetOnce()) return; // Process once
|
||||
if (!m_impOnly) m_stater.newUse(nodep, VUseType::INT_FWD_CLASS, nodep->classp()->name());
|
||||
// No class.h, it's inside the class package's h file
|
||||
m_stater.newUse(nodep, VUseType::IMP_INCLUDE, nodep->classp()->classOrPackagep()->name());
|
||||
if (nodep->user1SetOnce()) return; // Process once
|
||||
if (!m_impOnly) addNewUse(nodep, VUseType::INT_FWD_CLASS, nodep->classp()->name());
|
||||
// Need to include extends() when we implement, but no need for pointers to know
|
||||
VL_RESTORER(m_impOnly);
|
||||
{
|
||||
@@ -93,131 +67,27 @@ class CUseDTypeVisitor final : public AstNVisitor {
|
||||
}
|
||||
}
|
||||
virtual void visit(AstNodeDType* nodep) override {
|
||||
if (nodep->user2SetOnce()) return; // Process once
|
||||
if (nodep->user1SetOnce()) return; // Process once
|
||||
if (nodep->virtRefDTypep()) iterate(nodep->virtRefDTypep());
|
||||
if (nodep->virtRefDType2p()) iterate(nodep->virtRefDType2p());
|
||||
}
|
||||
virtual void visit(AstNode* nodep) override {
|
||||
if (nodep->user2SetOnce()) return; // Process once
|
||||
if (nodep->dtypep() && !nodep->dtypep()->user2()) iterate(nodep->dtypep());
|
||||
if (nodep->user1SetOnce()) return; // Process once
|
||||
if (nodep->dtypep() && !nodep->dtypep()->user1()) iterate(nodep->dtypep());
|
||||
iterateChildren(nodep);
|
||||
}
|
||||
virtual void visit(AstCell* nodep) override {
|
||||
if (nodep->user1SetOnce()) return; // Process once
|
||||
// Currently no IMP_INCLUDE because we include __Syms which has them all
|
||||
addNewUse(nodep, VUseType::INT_FWD_CLASS, nodep->modp()->name());
|
||||
iterateChildren(nodep);
|
||||
}
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
explicit CUseDTypeVisitor(AstNodeModule* nodep, CUseState& stater)
|
||||
: m_stater(stater) { // Need () or GCC 4.8 false warning
|
||||
iterate(nodep);
|
||||
}
|
||||
virtual ~CUseDTypeVisitor() override = default;
|
||||
VL_UNCOPYABLE(CUseDTypeVisitor);
|
||||
};
|
||||
|
||||
class CUseVisitor final : public AstNVisitor {
|
||||
// MEMBERS
|
||||
CUseState m_state; // Inserter state
|
||||
|
||||
// METHODS
|
||||
VL_DEBUG_FUNC; // Declare debug()
|
||||
|
||||
// Module use builders
|
||||
void makeUseCells(AstNodeModule* nodep) {
|
||||
for (AstNode* itemp = nodep->stmtsp(); itemp; itemp = itemp->nextp()) {
|
||||
if (AstCell* cellp = VN_CAST(itemp, Cell)) {
|
||||
// Currently no include because we include __Syms which has them all
|
||||
m_state.newUse(nodep, VUseType::INT_FWD_CLASS, cellp->modp()->name());
|
||||
}
|
||||
}
|
||||
}
|
||||
void makeVlToString(AstClass* nodep) {
|
||||
AstCFunc* funcp = new AstCFunc(nodep->fileline(), "VL_TO_STRING", nullptr, "std::string");
|
||||
funcp->argTypes("const VlClassRef<" + EmitCBaseVisitor::prefixNameProtect(nodep)
|
||||
+ ">& obj");
|
||||
funcp->isMethod(false);
|
||||
funcp->isConst(false);
|
||||
funcp->isStatic(false);
|
||||
funcp->protect(false);
|
||||
AstNode* exprp = new AstCMath(nodep->fileline(), "obj ? obj->to_string() : \"null\"", 0);
|
||||
exprp->dtypeSetString();
|
||||
funcp->addStmtsp(new AstCReturn(nodep->fileline(), exprp));
|
||||
nodep->addStmtp(funcp);
|
||||
}
|
||||
void makeToString(AstClass* nodep) {
|
||||
AstCFunc* funcp = new AstCFunc(nodep->fileline(), "to_string", nullptr, "std::string");
|
||||
funcp->isConst(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->protect(false);
|
||||
AstNode* exprp = new AstCMath(nodep->fileline(),
|
||||
R"(std::string("'{") + to_string_middle() + "}")", 0);
|
||||
exprp->dtypeSetString();
|
||||
funcp->addStmtsp(new AstCReturn(nodep->fileline(), exprp));
|
||||
nodep->addStmtp(funcp);
|
||||
}
|
||||
void makeToStringMiddle(AstClass* nodep) {
|
||||
AstCFunc* funcp
|
||||
= new AstCFunc(nodep->fileline(), "to_string_middle", nullptr, "std::string");
|
||||
funcp->isConst(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->protect(false);
|
||||
funcp->addStmtsp(new AstCStmt(nodep->fileline(), "std::string out;\n"));
|
||||
std::string comma;
|
||||
for (AstNode* itemp = nodep->membersp(); itemp; itemp = itemp->nextp()) {
|
||||
if (auto* varp = VN_CAST(itemp, Var)) {
|
||||
if (!varp->isParam()) {
|
||||
string stmt = "out += \"";
|
||||
stmt += comma;
|
||||
comma = ", ";
|
||||
stmt += itemp->origNameProtect();
|
||||
stmt += ":\" + ";
|
||||
if (itemp->isWide()) {
|
||||
stmt += "VL_TO_STRING_W(";
|
||||
stmt += cvtToStr(itemp->widthWords());
|
||||
stmt += ", ";
|
||||
} else {
|
||||
stmt += "VL_TO_STRING(";
|
||||
}
|
||||
stmt += itemp->nameProtect();
|
||||
stmt += ");\n";
|
||||
nodep->user1(true); // So what we extend dumps this
|
||||
funcp->addStmtsp(new AstCStmt(nodep->fileline(), stmt));
|
||||
}
|
||||
}
|
||||
}
|
||||
if (nodep->extendsp() && nodep->extendsp()->classp()->user1()) {
|
||||
string stmt = "out += \"";
|
||||
if (!comma.empty()) stmt += "\", \"+ ";
|
||||
// comma = ", "; // Nothing further so not needed
|
||||
stmt += nodep->extendsp()->dtypep()->nameProtect();
|
||||
stmt += "::to_string_middle();\n";
|
||||
nodep->user1(true); // So what we extend dumps this
|
||||
funcp->addStmtsp(new AstCStmt(nodep->fileline(), stmt));
|
||||
}
|
||||
funcp->addStmtsp(new AstCStmt(nodep->fileline(), "return out;\n"));
|
||||
nodep->addStmtp(funcp);
|
||||
}
|
||||
|
||||
// VISITORS
|
||||
virtual void visit(AstNodeModule* nodep) override {
|
||||
if (v3Global.opt.trace()) {
|
||||
AstCUse* usep
|
||||
= m_state.newUse(nodep, VUseType::INT_FWD_CLASS, v3Global.opt.traceClassBase());
|
||||
usep->protect(false);
|
||||
}
|
||||
makeUseCells(nodep);
|
||||
{ CUseDTypeVisitor dtypeVisitor(nodep, m_state); }
|
||||
if (AstClass* classp = VN_CAST(nodep, Class)) {
|
||||
makeVlToString(classp);
|
||||
makeToString(classp);
|
||||
makeToStringMiddle(classp);
|
||||
}
|
||||
}
|
||||
virtual void visit(AstNode*) override {} // All in AstNodeModule
|
||||
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
explicit CUseVisitor(AstNodeModule* nodep)
|
||||
: m_state{nodep} {
|
||||
iterate(nodep);
|
||||
explicit CUseVisitor(AstNodeModule* modp)
|
||||
: m_modp(modp) {
|
||||
iterate(modp);
|
||||
}
|
||||
virtual ~CUseVisitor() override = default;
|
||||
VL_UNCOPYABLE(CUseVisitor);
|
||||
@@ -233,7 +103,7 @@ void V3CUse::cUseAll() {
|
||||
modp = VN_CAST(modp->nextp(), NodeModule)) {
|
||||
// Insert under this module; someday we should e.g. make Ast
|
||||
// for each output file and put under that
|
||||
CUseVisitor visitor(modp);
|
||||
CUseVisitor{modp};
|
||||
}
|
||||
V3Global::dumpCheckGlobalTree("cuse", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+2
-2
@@ -530,10 +530,10 @@ public:
|
||||
|
||||
void V3Case::caseAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ CaseVisitor visitor(nodep); } // Destruct before checking
|
||||
{ CaseVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("case", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
void V3Case::caseLint(AstNodeCase* nodep) {
|
||||
UINFO(4, __FUNCTION__ << ": " << endl);
|
||||
CaseLintVisitor visitor(nodep);
|
||||
CaseLintVisitor visitor{nodep};
|
||||
}
|
||||
|
||||
+8
-6
@@ -66,7 +66,8 @@ private:
|
||||
AstNRelinker relinkHandle;
|
||||
nodep->unlinkFrBack(&relinkHandle);
|
||||
//
|
||||
AstCCast* castp = new AstCCast(nodep->fileline(), nodep, needsize, nodep->widthMin());
|
||||
AstCCast* const castp
|
||||
= new AstCCast{nodep->fileline(), nodep, needsize, nodep->widthMin()};
|
||||
relinkHandle.relink(castp);
|
||||
// if (debug() > 8) castp->dumpTree(cout, "-castins: ");
|
||||
//
|
||||
@@ -103,7 +104,7 @@ private:
|
||||
if (!VN_IS(nodep->backp(), NullCheck)) {
|
||||
AstNRelinker relinkHandle;
|
||||
nodep->unlinkFrBack(&relinkHandle);
|
||||
AstNode* newp = new AstNullCheck(nodep->fileline(), nodep);
|
||||
AstNode* const newp = new AstNullCheck{nodep->fileline(), nodep};
|
||||
relinkHandle.relink(newp);
|
||||
}
|
||||
}
|
||||
@@ -154,9 +155,10 @@ private:
|
||||
}
|
||||
}
|
||||
virtual void visit(AstVarRef* nodep) override {
|
||||
if (nodep->access().isReadOnly() && !VN_IS(nodep->backp(), CCast)
|
||||
&& VN_IS(nodep->backp(), NodeMath) && !VN_IS(nodep->backp(), ArraySel)
|
||||
&& nodep->backp()->width() && castSize(nodep) != castSize(nodep->varp())) {
|
||||
AstNode* const backp = nodep->backp();
|
||||
if (nodep->access().isReadOnly() && !VN_IS(backp, CCast) && VN_IS(backp, NodeMath)
|
||||
&& !VN_IS(backp, ArraySel) && !VN_IS(backp, RedXor) && backp->width()
|
||||
&& castSize(nodep) != castSize(nodep->varp())) {
|
||||
// Cast vars to IData first, else below has upper bits wrongly set
|
||||
// CData x=3; out = (QData)(x<<30);
|
||||
insertCast(nodep, castSize(nodep));
|
||||
@@ -201,6 +203,6 @@ public:
|
||||
|
||||
void V3Cast::castAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ CastVisitor visitor(nodep); } // Destruct before checking
|
||||
{ CastVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("cast", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+10
-9
@@ -151,7 +151,7 @@ private:
|
||||
*m_ofp << " ";
|
||||
}
|
||||
*m_ofp << nodep->prettyTypeName() << "\n";
|
||||
string lastPrefix = m_prefix;
|
||||
const string lastPrefix = m_prefix;
|
||||
m_prefix = lastPrefix + "1:";
|
||||
iterateAndNextNull(nodep->op1p());
|
||||
m_prefix = lastPrefix + "2:";
|
||||
@@ -337,7 +337,7 @@ private:
|
||||
|
||||
int filelineWidth() {
|
||||
if (!m_filelineWidth) {
|
||||
CdcWidthVisitor visitor(v3Global.rootp());
|
||||
CdcWidthVisitor visitor{v3Global.rootp()};
|
||||
m_filelineWidth = visitor.maxWidth();
|
||||
}
|
||||
return m_filelineWidth;
|
||||
@@ -449,7 +449,7 @@ private:
|
||||
if (!vertexp->asyncPath() && level != 0) return false; // Not part of path
|
||||
|
||||
// Other logic in the path
|
||||
string cont = prefix + sep;
|
||||
const string cont = prefix + sep;
|
||||
string nextsep = " ";
|
||||
for (V3GraphEdge* edgep = vertexp->inBeginp(); edgep; edgep = edgep->inNextp()) {
|
||||
CdcEitherVertex* eFromVertexp = static_cast<CdcEitherVertex*>(edgep->fromp());
|
||||
@@ -495,7 +495,7 @@ private:
|
||||
UINFO(3, __FUNCTION__ << ": " << endl);
|
||||
|
||||
// Trace all sources and sinks
|
||||
for (int traceDests = 0; traceDests < 2; ++traceDests) {
|
||||
for (const bool& traceDests : {false, true}) {
|
||||
UINFO(9, " Trace Direction " << (traceDests ? "dst" : "src") << endl);
|
||||
m_graph.userClearVertices(); // user1: bool - was analyzed
|
||||
for (V3GraphVertex* itp = m_graph.verticesBeginp(); itp; itp = itp->verticesNextp()) {
|
||||
@@ -506,8 +506,9 @@ private:
|
||||
}
|
||||
}
|
||||
|
||||
string filename = v3Global.opt.makeDir() + "/" + v3Global.opt.prefix() + "__cdc_edges.txt";
|
||||
const std::unique_ptr<std::ofstream> ofp(V3File::new_ofstream(filename));
|
||||
const string filename
|
||||
= v3Global.opt.makeDir() + "/" + v3Global.opt.prefix() + "__cdc_edges.txt";
|
||||
const std::unique_ptr<std::ofstream> ofp{V3File::new_ofstream(filename)};
|
||||
if (ofp->fail()) v3fatal("Can't write " << filename);
|
||||
*ofp << "Edge Report for " << v3Global.opt.prefix() << '\n';
|
||||
|
||||
@@ -523,7 +524,7 @@ private:
|
||||
os.setf(std::ios::left);
|
||||
// Module name - doesn't work due to flattening having lost the original
|
||||
// so we assume the modulename matches the filebasename
|
||||
string fname = vvertexp->varScp()->fileline()->filebasename() + ":";
|
||||
const string fname = vvertexp->varScp()->fileline()->filebasename() + ":";
|
||||
os << " " << std::setw(20) << fname;
|
||||
os << " " << std::setw(8) << what;
|
||||
os << " " << std::setw(40) << vvertexp->varScp()->prettyName();
|
||||
@@ -727,7 +728,7 @@ public:
|
||||
// CONSTRUCTORS
|
||||
explicit CdcVisitor(AstNode* nodep) {
|
||||
// Make report of all signal names and what clock edges they have
|
||||
string filename = v3Global.opt.makeDir() + "/" + v3Global.opt.prefix() + "__cdc.txt";
|
||||
const string filename = v3Global.opt.makeDir() + "/" + v3Global.opt.prefix() + "__cdc.txt";
|
||||
m_ofp = V3File::new_ofstream(filename);
|
||||
if (m_ofp->fail()) v3fatal("Can't write " << filename);
|
||||
m_ofFilename = filename;
|
||||
@@ -757,5 +758,5 @@ public:
|
||||
|
||||
void V3Cdc::cdcAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
CdcVisitor visitor(nodep);
|
||||
CdcVisitor visitor{nodep};
|
||||
}
|
||||
|
||||
+60
-45
@@ -47,11 +47,33 @@ public:
|
||||
AstCFunc* m_tlChgFuncp = nullptr; // Top level change function we're building
|
||||
int m_numStmts = 0; // Number of statements added to m_chgFuncp
|
||||
int m_funcNum = 0; // Number of change functions emitted
|
||||
bool m_madeTopChg = false;
|
||||
|
||||
ChangedState() = default;
|
||||
~ChangedState() = default;
|
||||
|
||||
void maybeCreateChgFuncp() {
|
||||
maybeCreateTopChg();
|
||||
maybeCreateMidChg();
|
||||
}
|
||||
void maybeCreateTopChg() {
|
||||
if (m_madeTopChg) return;
|
||||
m_madeTopChg = true;
|
||||
v3Global.rootp()->changeRequest(true);
|
||||
|
||||
// Create a wrapper change detection function that calls each change detection function
|
||||
m_tlChgFuncp
|
||||
= new AstCFunc{m_scopetopp->fileline(), "_change_request", m_scopetopp, "QData"};
|
||||
m_tlChgFuncp->isStatic(false);
|
||||
m_tlChgFuncp->isLoose(true);
|
||||
m_tlChgFuncp->declPrivate(true);
|
||||
m_scopetopp->addActivep(m_tlChgFuncp);
|
||||
// Each change detection function needs at least one AstChangeDet
|
||||
// to ensure that V3EmitC outputs the necessary code.
|
||||
maybeCreateMidChg();
|
||||
m_chgFuncp->addStmtsp(new AstChangeDet{m_scopetopp->fileline(), nullptr, nullptr, false});
|
||||
}
|
||||
void maybeCreateMidChg() {
|
||||
// Don't create an extra function call if splitting is disabled
|
||||
if (!v3Global.opt.outputSplitCFuncs()) {
|
||||
m_chgFuncp = m_tlChgFuncp;
|
||||
@@ -59,30 +81,29 @@ public:
|
||||
}
|
||||
if (!m_chgFuncp || v3Global.opt.outputSplitCFuncs() < m_numStmts) {
|
||||
m_chgFuncp
|
||||
= new AstCFunc(m_scopetopp->fileline(), "_change_request_" + cvtToStr(++m_funcNum),
|
||||
m_scopetopp, "QData");
|
||||
m_chgFuncp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
m_chgFuncp->symProlog(true);
|
||||
= new AstCFunc{m_scopetopp->fileline(), "_change_request_" + cvtToStr(++m_funcNum),
|
||||
m_scopetopp, "QData"};
|
||||
m_chgFuncp->isStatic(false);
|
||||
m_chgFuncp->isLoose(true);
|
||||
m_chgFuncp->declPrivate(true);
|
||||
m_scopetopp->addActivep(m_chgFuncp);
|
||||
|
||||
// Add a top call to it
|
||||
AstCCall* callp = new AstCCall(m_scopetopp->fileline(), m_chgFuncp);
|
||||
callp->argTypes("vlSymsp");
|
||||
AstCCall* const callp = new AstCCall{m_scopetopp->fileline(), m_chgFuncp};
|
||||
|
||||
if (!m_tlChgFuncp->stmtsp()) {
|
||||
m_tlChgFuncp->addStmtsp(new AstCReturn(m_scopetopp->fileline(), callp));
|
||||
m_tlChgFuncp->addStmtsp(new AstCReturn{m_scopetopp->fileline(), callp});
|
||||
} else {
|
||||
AstCReturn* returnp = VN_CAST(m_tlChgFuncp->stmtsp(), CReturn);
|
||||
AstCReturn* const returnp = VN_CAST(m_tlChgFuncp->stmtsp(), CReturn);
|
||||
UASSERT_OBJ(returnp, m_scopetopp, "Lost CReturn in top change function");
|
||||
// This is currently using AstLogOr which will shortcut the
|
||||
// evaluation if any function returns true. This is likely what
|
||||
// we want and is similar to the logic already in use inside
|
||||
// V3EmitC, however, it also means that verbose logging may
|
||||
// miss to print change detect variables.
|
||||
AstNode* newp = new AstCReturn(
|
||||
AstNode* const newp = new AstCReturn{
|
||||
m_scopetopp->fileline(),
|
||||
new AstLogOr(m_scopetopp->fileline(), callp, returnp->lhsp()->unlinkFrBack()));
|
||||
new AstLogOr{m_scopetopp->fileline(), callp, returnp->lhsp()->unlinkFrBack()}};
|
||||
returnp->replaceWith(newp);
|
||||
VL_DO_DANGLING(returnp->deleteTree(), returnp);
|
||||
}
|
||||
@@ -124,14 +145,17 @@ private:
|
||||
}
|
||||
m_statep->maybeCreateChgFuncp();
|
||||
|
||||
AstChangeDet* changep = new AstChangeDet(m_vscp->fileline(), m_varEqnp->cloneTree(true),
|
||||
m_newRvEqnp->cloneTree(true), false);
|
||||
AstChangeDet* const changep = new AstChangeDet{
|
||||
m_vscp->fileline(), m_varEqnp->cloneTree(true), m_newRvEqnp->cloneTree(true), false};
|
||||
m_statep->m_chgFuncp->addStmtsp(changep);
|
||||
AstAssign* initp = new AstAssign(m_vscp->fileline(), m_newLvEqnp->cloneTree(true),
|
||||
m_varEqnp->cloneTree(true));
|
||||
AstAssign* const initp = new AstAssign{m_vscp->fileline(), m_newLvEqnp->cloneTree(true),
|
||||
m_varEqnp->cloneTree(true)};
|
||||
m_statep->m_chgFuncp->addFinalsp(initp);
|
||||
EmitCBaseCounterVisitor visitor(initp);
|
||||
m_statep->m_numStmts += visitor.count();
|
||||
|
||||
// Later code will expand words which adds to GCC compile time,
|
||||
// so add penalty based on word width also
|
||||
EmitCBaseCounterVisitor visitor{initp};
|
||||
m_statep->m_numStmts += visitor.count() + m_varEqnp->widthWords();
|
||||
}
|
||||
|
||||
virtual void visit(AstBasicDType*) override { //
|
||||
@@ -146,11 +170,11 @@ private:
|
||||
VL_RESTORER(m_newLvEqnp);
|
||||
VL_RESTORER(m_newRvEqnp);
|
||||
{
|
||||
m_varEqnp = new AstArraySel(nodep->fileline(), m_varEqnp->cloneTree(true), index);
|
||||
m_varEqnp = new AstArraySel{nodep->fileline(), m_varEqnp->cloneTree(true), index};
|
||||
m_newLvEqnp
|
||||
= new AstArraySel(nodep->fileline(), m_newLvEqnp->cloneTree(true), index);
|
||||
= new AstArraySel{nodep->fileline(), m_newLvEqnp->cloneTree(true), index};
|
||||
m_newRvEqnp
|
||||
= new AstArraySel(nodep->fileline(), m_newRvEqnp->cloneTree(true), index);
|
||||
= new AstArraySel{nodep->fileline(), m_newRvEqnp->cloneTree(true), index};
|
||||
|
||||
iterate(nodep->subDTypep()->skipRefp());
|
||||
|
||||
@@ -181,26 +205,30 @@ private:
|
||||
public:
|
||||
// CONSTRUCTORS
|
||||
ChangedInsertVisitor(AstVarScope* vscp, ChangedState* statep) {
|
||||
// DPI export trigger should never need change detect. See similar assertions in V3Order
|
||||
// (OrderVisitor::nodeMarkCircular), and V3GenClk (GenClkRenameVisitor::genInpClk).
|
||||
UASSERT_OBJ(vscp != v3Global.rootp()->dpiExportTriggerp(), vscp,
|
||||
"DPI export trigger should not need change detect");
|
||||
m_statep = statep;
|
||||
m_vscp = vscp;
|
||||
m_detects = 0;
|
||||
{
|
||||
AstVar* varp = m_vscp->varp();
|
||||
string newvarname
|
||||
= ("__Vchglast__" + m_vscp->scopep()->nameDotless() + "__" + varp->shortName());
|
||||
AstVar* const varp = m_vscp->varp();
|
||||
string newvarname{"__Vchglast__" + m_vscp->scopep()->nameDotless() + "__"
|
||||
+ varp->shortName()};
|
||||
// Create: VARREF(_last)
|
||||
// ASSIGN(VARREF(_last), VARREF(var))
|
||||
// ...
|
||||
// CHANGEDET(VARREF(_last), VARREF(var))
|
||||
AstVar* newvarp
|
||||
= new AstVar(varp->fileline(), AstVarType::MODULETEMP, newvarname, varp);
|
||||
AstVar* const newvarp
|
||||
= new AstVar{varp->fileline(), AstVarType::MODULETEMP, newvarname, varp};
|
||||
m_statep->m_topModp->addStmtp(newvarp);
|
||||
m_newvscp = new AstVarScope(m_vscp->fileline(), m_statep->m_scopetopp, newvarp);
|
||||
m_newvscp = new AstVarScope{m_vscp->fileline(), m_statep->m_scopetopp, newvarp};
|
||||
m_statep->m_scopetopp->addVarp(m_newvscp);
|
||||
|
||||
m_varEqnp = new AstVarRef(m_vscp->fileline(), m_vscp, VAccess::READ);
|
||||
m_newLvEqnp = new AstVarRef(m_vscp->fileline(), m_newvscp, VAccess::WRITE);
|
||||
m_newRvEqnp = new AstVarRef(m_vscp->fileline(), m_newvscp, VAccess::READ);
|
||||
m_varEqnp = new AstVarRef{m_vscp->fileline(), m_vscp, VAccess::READ};
|
||||
m_newLvEqnp = new AstVarRef{m_vscp->fileline(), m_newvscp, VAccess::WRITE};
|
||||
m_newRvEqnp = new AstVarRef{m_vscp->fileline(), m_newvscp, VAccess::READ};
|
||||
}
|
||||
iterate(vscp->dtypep()->skipRefp());
|
||||
m_varEqnp->deleteTree();
|
||||
@@ -229,7 +257,7 @@ private:
|
||||
|
||||
void genChangeDet(AstVarScope* vscp) {
|
||||
vscp->v3warn(IMPERFECTSCH, "Imperfect scheduling of variable: " << vscp->prettyNameQ());
|
||||
ChangedInsertVisitor visitor(vscp, m_statep);
|
||||
ChangedInsertVisitor visitor{vscp, m_statep};
|
||||
}
|
||||
|
||||
// VISITORS
|
||||
@@ -243,24 +271,11 @@ private:
|
||||
UINFO(4, " TS " << nodep << endl);
|
||||
// Clearing
|
||||
AstNode::user1ClearTree();
|
||||
// Create the change detection function
|
||||
AstScope* scopep = nodep->scopep();
|
||||
// Prep for if make change detection function
|
||||
AstScope* const scopep = nodep->scopep();
|
||||
UASSERT_OBJ(scopep, nodep, "No scope found on top level, perhaps you have no statements?");
|
||||
m_statep->m_scopetopp = scopep;
|
||||
|
||||
// Create a wrapper change detection function that calls each change detection function
|
||||
m_statep->m_tlChgFuncp
|
||||
= new AstCFunc(nodep->fileline(), "_change_request", scopep, "QData");
|
||||
m_statep->m_tlChgFuncp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
m_statep->m_tlChgFuncp->symProlog(true);
|
||||
m_statep->m_tlChgFuncp->declPrivate(true);
|
||||
m_statep->m_scopetopp->addActivep(m_statep->m_tlChgFuncp);
|
||||
// Each change detection function needs at least one AstChangeDet
|
||||
// to ensure that V3EmitC outputs the necessary code.
|
||||
m_statep->maybeCreateChgFuncp();
|
||||
m_statep->m_chgFuncp->addStmtsp(
|
||||
new AstChangeDet(nodep->fileline(), nullptr, nullptr, false));
|
||||
|
||||
iterateChildren(nodep);
|
||||
}
|
||||
virtual void visit(AstVarScope* nodep) override {
|
||||
@@ -289,7 +304,7 @@ void V3Changed::changedAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{
|
||||
ChangedState state;
|
||||
ChangedVisitor visitor(nodep, &state);
|
||||
ChangedVisitor visitor{nodep, &state};
|
||||
} // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("changed", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+1
-1
@@ -153,6 +153,6 @@ public:
|
||||
|
||||
void V3Class::classAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ ClassVisitor visitor(nodep); } // Destruct before checking
|
||||
{ ClassVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("class", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+6
-5
@@ -68,7 +68,7 @@ private:
|
||||
void setCppWidth(AstNode* nodep) {
|
||||
nodep->user2(true); // Don't resize it again
|
||||
AstNodeDType* old_dtypep = nodep->dtypep();
|
||||
int width = cppWidth(nodep); // widthMin is unchanged
|
||||
const int width = cppWidth(nodep); // widthMin is unchanged
|
||||
if (old_dtypep->width() != width) {
|
||||
// Since any given dtype's cppWidth() is the same, we can just
|
||||
// remember one conversion for each, and reuse it
|
||||
@@ -103,7 +103,7 @@ private:
|
||||
void setCleanState(AstNode* nodep, CleanState clean) { nodep->user1(clean); }
|
||||
CleanState getCleanState(AstNode* nodep) { return static_cast<CleanState>(nodep->user1()); }
|
||||
bool isClean(AstNode* nodep) {
|
||||
CleanState clstate = getCleanState(nodep);
|
||||
const CleanState clstate = getCleanState(nodep);
|
||||
if (clstate == CS_CLEAN) return true;
|
||||
if (clstate == CS_DIRTY) return false;
|
||||
nodep->v3fatalSrc("Unknown clean state on node: " + nodep->prettyTypeName());
|
||||
@@ -111,8 +111,9 @@ private:
|
||||
}
|
||||
void setClean(AstNode* nodep, bool isClean) {
|
||||
computeCppWidth(nodep); // Just to be sure it's in widthMin
|
||||
bool wholeUint = (nodep->widthMin() == VL_IDATASIZE || nodep->widthMin() == VL_QUADSIZE
|
||||
|| (nodep->widthMin() % VL_EDATASIZE) == 0);
|
||||
const bool wholeUint
|
||||
= (nodep->widthMin() == VL_IDATASIZE || nodep->widthMin() == VL_QUADSIZE
|
||||
|| (nodep->widthMin() % VL_EDATASIZE) == 0);
|
||||
setCleanState(nodep, ((isClean || wholeUint) ? CS_CLEAN : CS_DIRTY));
|
||||
}
|
||||
|
||||
@@ -313,6 +314,6 @@ public:
|
||||
|
||||
void V3Clean::cleanAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ CleanVisitor visitor(nodep); } // Destruct before checking
|
||||
{ CleanVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("clean", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+61
-60
@@ -37,6 +37,34 @@
|
||||
|
||||
#include <algorithm>
|
||||
|
||||
//######################################################################
|
||||
// Convert every WRITE AstVarRef to a READ ref
|
||||
|
||||
class ConvertWriteRefsToRead final : public AstNVisitor {
|
||||
private:
|
||||
// MEMBERS
|
||||
AstNode* m_result = nullptr;
|
||||
|
||||
// CONSTRUCTORS
|
||||
explicit ConvertWriteRefsToRead(AstNode* nodep) {
|
||||
m_result = iterateSubtreeReturnEdits(nodep);
|
||||
}
|
||||
|
||||
// VISITORS
|
||||
void visit(AstVarRef* nodep) override {
|
||||
UASSERT_OBJ(!nodep->access().isRW(), nodep, "Cannot handle a READWRITE reference");
|
||||
if (nodep->access().isWriteOnly()) {
|
||||
nodep->replaceWith(
|
||||
new AstVarRef(nodep->fileline(), nodep->varScopep(), VAccess::READ));
|
||||
}
|
||||
}
|
||||
|
||||
void visit(AstNode* nodep) override { iterateChildren(nodep); }
|
||||
|
||||
public:
|
||||
static AstNode* main(AstNode* nodep) { return ConvertWriteRefsToRead(nodep).m_result; }
|
||||
};
|
||||
|
||||
//######################################################################
|
||||
// Clock state, as a visitor of each AstNode
|
||||
|
||||
@@ -108,6 +136,7 @@ private:
|
||||
"Unsupported: Complicated event expression in sensitive activity list");
|
||||
return nullptr;
|
||||
}
|
||||
UASSERT_OBJ(nodep->varrefp(), nodep, "No clock found on sense item");
|
||||
AstVarScope* clkvscp = nodep->varrefp()->varScopep();
|
||||
if (nodep->edgeType() == VEdgeType::ET_POSEDGE) {
|
||||
AstVarScope* lastVscp = getCreateLastClk(clkvscp);
|
||||
@@ -164,6 +193,18 @@ private:
|
||||
m_lastSenp = nullptr;
|
||||
m_lastIfp = nullptr;
|
||||
}
|
||||
AstCFunc* makeTopFunction(const string& name, bool slow = false) {
|
||||
AstCFunc* const funcp = new AstCFunc{m_topScopep->fileline(), name, m_topScopep->scopep()};
|
||||
funcp->dontCombine(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->isLoose(true);
|
||||
funcp->entryPoint(true);
|
||||
funcp->slow(slow);
|
||||
funcp->isConst(false);
|
||||
funcp->declPrivate(true);
|
||||
m_topScopep->scopep()->addActivep(funcp);
|
||||
return funcp;
|
||||
}
|
||||
void splitCheck(AstCFunc* ofuncp) {
|
||||
if (!v3Global.opt.outputSplitCFuncs() || !ofuncp->stmtsp()) return;
|
||||
if (EmitCBaseCounterVisitor(ofuncp->stmtsp()).count() < v3Global.opt.outputSplitCFuncs())
|
||||
@@ -179,20 +220,18 @@ private:
|
||||
if (ofuncp->finalsp()) tempp->addStmtsp(ofuncp->finalsp()->unlinkFrBackWithNext());
|
||||
while (tempp->stmtsp()) {
|
||||
AstNode* itemp = tempp->stmtsp()->unlinkFrBack();
|
||||
int stmts = EmitCBaseCounterVisitor(itemp).count();
|
||||
const int stmts = EmitCBaseCounterVisitor(itemp).count();
|
||||
if (!funcp || (func_stmts + stmts) > v3Global.opt.outputSplitCFuncs()) {
|
||||
// Make a new function
|
||||
funcp = new AstCFunc{ofuncp->fileline(), ofuncp->name() + cvtToStr(++funcnum),
|
||||
m_topScopep->scopep()};
|
||||
funcp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
funcp->dontCombine(true);
|
||||
funcp->symProlog(true);
|
||||
funcp->isStatic(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->isLoose(true);
|
||||
funcp->slow(ofuncp->slow());
|
||||
m_topScopep->scopep()->addActivep(funcp);
|
||||
//
|
||||
AstCCall* callp = new AstCCall{funcp->fileline(), funcp};
|
||||
callp->argTypes("vlSymsp");
|
||||
ofuncp->addStmtsp(callp);
|
||||
func_stmts = 0;
|
||||
}
|
||||
@@ -212,58 +251,21 @@ private:
|
||||
// VV***** We reset all user1p()
|
||||
AstNode::user1ClearTree();
|
||||
// Make top functions
|
||||
{
|
||||
AstCFunc* funcp = new AstCFunc{nodep->fileline(), "_eval", m_topScopep->scopep()};
|
||||
funcp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
funcp->dontCombine(true);
|
||||
funcp->symProlog(true);
|
||||
funcp->isStatic(true);
|
||||
funcp->entryPoint(true);
|
||||
m_topScopep->scopep()->addActivep(funcp);
|
||||
m_evalFuncp = funcp;
|
||||
}
|
||||
{
|
||||
AstCFunc* funcp
|
||||
= new AstCFunc{nodep->fileline(), "_eval_initial", m_topScopep->scopep()};
|
||||
funcp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
funcp->dontCombine(true);
|
||||
funcp->slow(true);
|
||||
funcp->symProlog(true);
|
||||
funcp->isStatic(true);
|
||||
funcp->entryPoint(true);
|
||||
m_topScopep->scopep()->addActivep(funcp);
|
||||
m_initFuncp = funcp;
|
||||
}
|
||||
{
|
||||
AstCFunc* funcp = new AstCFunc{nodep->fileline(), "final", m_topScopep->scopep()};
|
||||
funcp->skipDecl(true);
|
||||
funcp->dontCombine(true);
|
||||
funcp->slow(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->entryPoint(true);
|
||||
funcp->protect(false);
|
||||
funcp->addInitsp(new AstCStmt(nodep->fileline(), EmitCBaseVisitor::symClassVar()
|
||||
+ " = this->__VlSymsp;\n"));
|
||||
funcp->addInitsp(
|
||||
new AstCStmt(nodep->fileline(), EmitCBaseVisitor::symTopAssign() + "\n"));
|
||||
m_topScopep->scopep()->addActivep(funcp);
|
||||
m_finalFuncp = funcp;
|
||||
}
|
||||
{
|
||||
AstCFunc* funcp
|
||||
= new AstCFunc{nodep->fileline(), "_eval_settle", m_topScopep->scopep()};
|
||||
funcp->argTypes(EmitCBaseVisitor::symClassVar());
|
||||
funcp->dontCombine(true);
|
||||
funcp->slow(true);
|
||||
funcp->isStatic(true);
|
||||
funcp->symProlog(true);
|
||||
funcp->entryPoint(true);
|
||||
m_topScopep->scopep()->addActivep(funcp);
|
||||
m_settleFuncp = funcp;
|
||||
}
|
||||
m_evalFuncp = makeTopFunction("_eval");
|
||||
m_initFuncp = makeTopFunction("_eval_initial", /* slow: */ true);
|
||||
m_settleFuncp = makeTopFunction("_eval_settle", /* slow: */ true);
|
||||
m_finalFuncp = makeTopFunction("_final", /* slow: */ true);
|
||||
// Process the activates
|
||||
iterateChildren(nodep);
|
||||
UINFO(4, " TOPSCOPE iter done " << nodep << endl);
|
||||
// Clear the DPI export trigger flag at the end of eval
|
||||
if (AstVarScope* const dpiExportTriggerp = v3Global.rootp()->dpiExportTriggerp()) {
|
||||
FileLine* const fl = dpiExportTriggerp->fileline();
|
||||
AstAssign* const assignp
|
||||
= new AstAssign{fl, new AstVarRef{fl, dpiExportTriggerp, VAccess::WRITE},
|
||||
new AstConst{fl, AstConst::BitFalse{}}};
|
||||
m_evalFuncp->addFinalsp(assignp);
|
||||
}
|
||||
// Split large functions
|
||||
splitCheck(m_evalFuncp);
|
||||
splitCheck(m_initFuncp);
|
||||
@@ -307,14 +309,14 @@ private:
|
||||
// IF(ORIG ^ CHANGE) { INC; CHANGE = ORIG; }
|
||||
AstNode* incp = nodep->incp()->unlinkFrBack();
|
||||
AstNode* origp = nodep->origp()->unlinkFrBack();
|
||||
AstNode* changep = nodep->changep()->unlinkFrBack();
|
||||
AstIf* newp = new AstIf(nodep->fileline(), new AstXor(nodep->fileline(), origp, changep),
|
||||
AstNode* changeWrp = nodep->changep()->unlinkFrBack();
|
||||
AstNode* changeRdp = ConvertWriteRefsToRead::main(changeWrp->cloneTree(false));
|
||||
AstIf* newp = new AstIf(nodep->fileline(), new AstXor(nodep->fileline(), origp, changeRdp),
|
||||
incp, nullptr);
|
||||
// We could add another IF to detect posedges, and only increment if so.
|
||||
// It's another whole branch though versus a potential memory miss.
|
||||
// We'll go with the miss.
|
||||
newp->addIfsp(
|
||||
new AstAssign(nodep->fileline(), changep->cloneTree(false), origp->cloneTree(false)));
|
||||
newp->addIfsp(new AstAssign(nodep->fileline(), changeWrp, origp->cloneTree(false)));
|
||||
nodep->replaceWith(newp);
|
||||
VL_DO_DANGLING(nodep->deleteTree(), nodep);
|
||||
}
|
||||
@@ -324,7 +326,6 @@ private:
|
||||
if (nodep->formCallTree()) {
|
||||
UINFO(4, " formCallTree " << nodep << endl);
|
||||
AstCCall* callp = new AstCCall(nodep->fileline(), nodep);
|
||||
callp->argTypes("vlSymsp");
|
||||
m_finalFuncp->addStmtsp(callp);
|
||||
}
|
||||
}
|
||||
@@ -443,6 +444,6 @@ public:
|
||||
|
||||
void V3Clock::clockAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ ClockVisitor visitor(nodep); } // Destruct before checking
|
||||
{ ClockVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("clock", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
+16
-8
@@ -72,8 +72,7 @@ public:
|
||||
AstNode* const argsp
|
||||
= oldp->argsp() ? oldp->argsp()->unlinkFrBackWithNext() : nullptr;
|
||||
AstCCall* const newp = new AstCCall(oldp->fileline(), newfuncp, argsp);
|
||||
newp->hiernameToProt(oldp->hiernameToProt());
|
||||
newp->hiernameToUnprot(oldp->hiernameToUnprot());
|
||||
newp->selfPointer(oldp->selfPointer());
|
||||
newp->argTypes(oldp->argTypes());
|
||||
addCall(newp); // Fix the table, in case the newfuncp itself gets replaced
|
||||
oldp->replaceWith(newp);
|
||||
@@ -86,14 +85,23 @@ public:
|
||||
}
|
||||
}
|
||||
// METHODS
|
||||
void addCall(AstCCall* nodep) {
|
||||
if (nodep->funcp()->dontCombine()) return;
|
||||
m_callMmap.emplace(nodep->funcp(), nodep);
|
||||
}
|
||||
void addCall(AstCCall* nodep) { m_callMmap.emplace(nodep->funcp(), nodep); }
|
||||
|
||||
private:
|
||||
// VISITORS
|
||||
virtual void visit(AstCCall* nodep) override { addCall(nodep); }
|
||||
virtual void visit(AstCCall* nodep) override {
|
||||
if (nodep->funcp()->dontCombine()) return;
|
||||
addCall(nodep);
|
||||
}
|
||||
// LCOV_EXCL_START
|
||||
virtual void visit(AstAddrOfCFunc* nodep) override {
|
||||
// We cannot yet handle references via AstAddrOfCFunc, but currently those are
|
||||
// only used in tracing functions, which are not combined. Blow up in case this changes.
|
||||
if (nodep->funcp()->dontCombine()) return;
|
||||
nodep->v3fatalSrc(
|
||||
"Don't know how to combine functions that are referenced via AstAddrOfCFunc");
|
||||
}
|
||||
// LCOV_EXCL_END
|
||||
// Speed things up
|
||||
virtual void visit(AstNodeAssign*) override {}
|
||||
virtual void visit(AstNodeMath*) override {}
|
||||
@@ -215,6 +223,6 @@ public:
|
||||
|
||||
void V3Combine::combineAll(AstNetlist* nodep) {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
{ CombineVisitor visitor(nodep); } // Destruct before checking
|
||||
{ CombineVisitor visitor{nodep}; } // Destruct before checking
|
||||
V3Global::dumpCheckGlobalTree("combine", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
|
||||
@@ -0,0 +1,120 @@
|
||||
// -*- mode: C++; c-file-style: "cc-mode" -*-
|
||||
//*************************************************************************
|
||||
// DESCRIPTION: Verilator: Add common contents to modules
|
||||
//
|
||||
// Code available from: https://verilator.org
|
||||
//
|
||||
//*************************************************************************
|
||||
//
|
||||
// Copyright 2003-2021 by Wilson Snyder. This program is free software; you
|
||||
// can redistribute it and/or modify it under the terms of either the GNU
|
||||
// Lesser General Public License Version 3 or the Perl Artistic License
|
||||
// Version 2.0.
|
||||
// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
//
|
||||
//*************************************************************************
|
||||
// V3Common's Transformations:
|
||||
//
|
||||
// Each class:
|
||||
// Create string access functions
|
||||
//
|
||||
//*************************************************************************
|
||||
|
||||
#include "config_build.h"
|
||||
#include "verilatedos.h"
|
||||
|
||||
#include "V3Common.h"
|
||||
#include "V3Ast.h"
|
||||
#include "V3Global.h"
|
||||
#include "V3EmitCBase.h"
|
||||
|
||||
//######################################################################
|
||||
// Common component builders
|
||||
|
||||
static void makeVlToString(AstClass* nodep) {
|
||||
AstCFunc* const funcp
|
||||
= new AstCFunc{nodep->fileline(), "VL_TO_STRING", nullptr, "std::string"};
|
||||
funcp->argTypes("const VlClassRef<" + EmitCBaseVisitor::prefixNameProtect(nodep) + ">& obj");
|
||||
funcp->isMethod(false);
|
||||
funcp->isConst(false);
|
||||
funcp->isStatic(false);
|
||||
funcp->protect(false);
|
||||
AstNode* const exprp = new AstCMath{nodep->fileline(), "obj ? obj->to_string() : \"null\"", 0};
|
||||
exprp->dtypeSetString();
|
||||
funcp->addStmtsp(new AstCReturn{nodep->fileline(), exprp});
|
||||
nodep->addStmtp(funcp);
|
||||
}
|
||||
static void makeToString(AstClass* nodep) {
|
||||
AstCFunc* const funcp = new AstCFunc{nodep->fileline(), "to_string", nullptr, "std::string"};
|
||||
funcp->isConst(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->protect(false);
|
||||
AstNode* const exprp
|
||||
= new AstCMath{nodep->fileline(), R"(std::string("'{") + to_string_middle() + "}")", 0};
|
||||
exprp->dtypeSetString();
|
||||
funcp->addStmtsp(new AstCReturn{nodep->fileline(), exprp});
|
||||
nodep->addStmtp(funcp);
|
||||
}
|
||||
static void makeToStringMiddle(AstClass* nodep) {
|
||||
AstCFunc* const funcp
|
||||
= new AstCFunc{nodep->fileline(), "to_string_middle", nullptr, "std::string"};
|
||||
funcp->isConst(true);
|
||||
funcp->isStatic(false);
|
||||
funcp->protect(false);
|
||||
funcp->addStmtsp(new AstCStmt{nodep->fileline(), "std::string out;\n"});
|
||||
std::string comma;
|
||||
for (AstNode* itemp = nodep->membersp(); itemp; itemp = itemp->nextp()) {
|
||||
if (auto* const varp = VN_CAST(itemp, Var)) {
|
||||
if (!varp->isParam()) {
|
||||
string stmt = "out += \"";
|
||||
stmt += comma;
|
||||
comma = ", ";
|
||||
stmt += itemp->origNameProtect();
|
||||
stmt += ":\" + ";
|
||||
if (itemp->isWide()) {
|
||||
stmt += "VL_TO_STRING_W(";
|
||||
stmt += cvtToStr(itemp->widthWords());
|
||||
stmt += ", ";
|
||||
} else {
|
||||
stmt += "VL_TO_STRING(";
|
||||
}
|
||||
stmt += itemp->nameProtect();
|
||||
stmt += ");\n";
|
||||
nodep->user1(true); // So what we extend dumps this
|
||||
funcp->addStmtsp(new AstCStmt{nodep->fileline(), stmt});
|
||||
}
|
||||
}
|
||||
}
|
||||
if (nodep->extendsp() && nodep->extendsp()->classp()->user1()) {
|
||||
string stmt = "out += \"";
|
||||
if (!comma.empty()) stmt += "\", \"+ ";
|
||||
// comma = ", "; // Nothing further so not needed
|
||||
stmt += nodep->extendsp()->dtypep()->nameProtect();
|
||||
stmt += "::to_string_middle();\n";
|
||||
nodep->user1(true); // So what we extend dumps this
|
||||
funcp->addStmtsp(new AstCStmt{nodep->fileline(), stmt});
|
||||
}
|
||||
funcp->addStmtsp(new AstCStmt{nodep->fileline(), "return out;\n"});
|
||||
nodep->addStmtp(funcp);
|
||||
}
|
||||
|
||||
//######################################################################
|
||||
// V3Common class functions
|
||||
|
||||
void V3Common::commonAll() {
|
||||
UINFO(2, __FUNCTION__ << ": " << endl);
|
||||
// Create common contents for each module
|
||||
for (AstNode* nodep = v3Global.rootp()->modulesp(); nodep; nodep = nodep->nextp()) {
|
||||
if (AstClass* const classp = VN_CAST(nodep, Class)) {
|
||||
// NODE STATE
|
||||
// Entire netlist:
|
||||
// AstClass::user1() -> bool. True if class needs to_string dumper
|
||||
AstUser1InUse m_inuser1;
|
||||
// Create ToString methods
|
||||
makeVlToString(classp);
|
||||
makeToString(classp);
|
||||
makeToStringMiddle(classp);
|
||||
}
|
||||
}
|
||||
V3Global::dumpCheckGlobalTree("common", 0, v3Global.opt.dumpTreeLevel(__FILE__) >= 3);
|
||||
}
|
||||
@@ -0,0 +1,30 @@
|
||||
// -*- mode: C++; c-file-style: "cc-mode" -*-
|
||||
//*************************************************************************
|
||||
// DESCRIPTION: Verilator: Add common contents to modules
|
||||
//
|
||||
// Code available from: https://verilator.org
|
||||
//
|
||||
//*************************************************************************
|
||||
//
|
||||
// Copyright 2003-2021 by Wilson Snyder. This program is free software; you
|
||||
// can redistribute it and/or modify it under the terms of either the GNU
|
||||
// Lesser General Public License Version 3 or the Perl Artistic License
|
||||
// Version 2.0.
|
||||
// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
|
||||
//
|
||||
//*************************************************************************
|
||||
|
||||
#ifndef VERILATOR_V3COMMON_H_
|
||||
#define VERILATOR_V3COMMON_H_
|
||||
|
||||
#include "config_build.h"
|
||||
#include "verilatedos.h"
|
||||
|
||||
//============================================================================
|
||||
|
||||
class V3Common final {
|
||||
public:
|
||||
static void commonAll();
|
||||
};
|
||||
|
||||
#endif // Guard
|
||||
+38
-8
@@ -24,6 +24,7 @@
|
||||
#include <map>
|
||||
#include <set>
|
||||
#include <string>
|
||||
#include <unordered_map>
|
||||
|
||||
//######################################################################
|
||||
// Resolve wildcards in files, modules, ftasks or variables
|
||||
@@ -201,7 +202,7 @@ public:
|
||||
}
|
||||
|
||||
void applyBlock(AstNodeBlock* nodep) {
|
||||
AstPragmaType pragma = AstPragmaType::COVERAGE_BLOCK_OFF;
|
||||
const AstPragmaType pragma = AstPragmaType::COVERAGE_BLOCK_OFF;
|
||||
if (!nodep->unnamed()) {
|
||||
for (const string& i : m_coverageOffBlocks) {
|
||||
if (VString::wildmatch(nodep->name(), i)) {
|
||||
@@ -297,14 +298,14 @@ public:
|
||||
|
||||
void applyBlock(AstNodeBlock* nodep) {
|
||||
// Apply to block at this line
|
||||
AstPragmaType pragma = AstPragmaType::COVERAGE_BLOCK_OFF;
|
||||
const AstPragmaType pragma = AstPragmaType::COVERAGE_BLOCK_OFF;
|
||||
if (lineMatch(nodep->fileline()->lineno(), pragma)) {
|
||||
nodep->addStmtsp(new AstPragma(nodep->fileline(), pragma));
|
||||
}
|
||||
}
|
||||
void applyCase(AstCase* nodep) {
|
||||
// Apply to this case at this line
|
||||
int lineno = nodep->fileline()->lineno();
|
||||
const int lineno = nodep->fileline()->lineno();
|
||||
if (lineMatch(lineno, AstPragmaType::FULL_CASE)) nodep->fullPragma(true);
|
||||
if (lineMatch(lineno, AstPragmaType::PARALLEL_CASE)) nodep->parallelPragma(true);
|
||||
}
|
||||
@@ -313,7 +314,7 @@ public:
|
||||
if (m_lastIgnore.lineno != filelinep->lineno()) {
|
||||
// UINFO(9, " ApplyIgnores for " << filelinep->ascii() << endl);
|
||||
// Process all on/offs for lines up to and including the current line
|
||||
int curlineno = filelinep->lastLineno();
|
||||
const int curlineno = filelinep->lastLineno();
|
||||
for (; m_lastIgnore.it != m_ignLines.end(); ++m_lastIgnore.it) {
|
||||
if (m_lastIgnore.it->m_lineno > curlineno) break;
|
||||
// UINFO(9, " Hit " << *m_lastIt << endl);
|
||||
@@ -346,6 +347,9 @@ using V3ConfigFileResolver = V3ConfigWildcardResolver<V3ConfigFile>;
|
||||
class V3ConfigResolver final {
|
||||
V3ConfigModuleResolver m_modules; // Access to module names (with wildcards)
|
||||
V3ConfigFileResolver m_files; // Access to file names (with wildcards)
|
||||
std::unordered_map<string, std::unordered_map<string, vluint64_t>>
|
||||
m_profileData; // Access to profile_data records
|
||||
FileLine* m_profileFileLine = nullptr;
|
||||
|
||||
static V3ConfigResolver s_singleton; // Singleton (not via local static, as that's slow)
|
||||
V3ConfigResolver() = default;
|
||||
@@ -356,6 +360,20 @@ public:
|
||||
|
||||
V3ConfigModuleResolver& modules() { return m_modules; }
|
||||
V3ConfigFileResolver& files() { return m_files; }
|
||||
|
||||
void addProfileData(FileLine* fl, const string& model, const string& key, vluint64_t cost) {
|
||||
if (!m_profileFileLine) m_profileFileLine = fl;
|
||||
if (cost == 0) cost = 1; // Cost 0 means delete (or no data)
|
||||
m_profileData[model][key] += cost;
|
||||
}
|
||||
vluint64_t getProfileData(const string& model, const string& key) const {
|
||||
const auto mit = m_profileData.find(model);
|
||||
if (mit == m_profileData.cend()) return 0;
|
||||
const auto it = mit->second.find(key);
|
||||
if (it == mit->second.cend()) return 0;
|
||||
return it->second;
|
||||
}
|
||||
FileLine* getProfileDataFileLine() const { return m_profileFileLine; } // Maybe null
|
||||
};
|
||||
|
||||
V3ConfigResolver V3ConfigResolver::s_singleton;
|
||||
@@ -392,10 +410,6 @@ void V3Config::addIgnore(V3ErrorCode code, bool on, const string& filename, int
|
||||
}
|
||||
}
|
||||
|
||||
void V3Config::addModulePragma(const string& module, AstPragmaType pragma) {
|
||||
V3ConfigResolver::s().modules().at(module).addModulePragma(pragma);
|
||||
}
|
||||
|
||||
void V3Config::addInline(FileLine* fl, const string& module, const string& ftask, bool on) {
|
||||
if (ftask.empty()) {
|
||||
V3ConfigResolver::s().modules().at(module).setInline(on);
|
||||
@@ -408,6 +422,15 @@ void V3Config::addInline(FileLine* fl, const string& module, const string& ftask
|
||||
}
|
||||
}
|
||||
|
||||
void V3Config::addModulePragma(const string& module, AstPragmaType pragma) {
|
||||
V3ConfigResolver::s().modules().at(module).addModulePragma(pragma);
|
||||
}
|
||||
|
||||
void V3Config::addProfileData(FileLine* fl, const string& model, const string& key,
|
||||
vluint64_t cost) {
|
||||
V3ConfigResolver::s().addProfileData(fl, model, key, cost);
|
||||
}
|
||||
|
||||
void V3Config::addVarAttr(FileLine* fl, const string& module, const string& ftask,
|
||||
const string& var, AstAttrType attr, AstSenTree* sensep) {
|
||||
// Semantics: sensep only if public_flat_rw
|
||||
@@ -497,6 +520,13 @@ void V3Config::applyVarAttr(AstNodeModule* modulep, AstNodeFTask* ftaskp, AstVar
|
||||
if (vp) vp->apply(varp);
|
||||
}
|
||||
|
||||
vluint64_t V3Config::getProfileData(const string& model, const string& key) {
|
||||
return V3ConfigResolver::s().getProfileData(model, key);
|
||||
}
|
||||
FileLine* V3Config::getProfileDataFileLine() {
|
||||
return V3ConfigResolver::s().getProfileDataFileLine();
|
||||
}
|
||||
|
||||
bool V3Config::waive(FileLine* filelinep, V3ErrorCode code, const string& message) {
|
||||
V3ConfigFile* filep = V3ConfigResolver::s().files().resolve(filelinep->filename());
|
||||
if (!filep) return false;
|
||||
|
||||
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user