Files
OpenSTA/search/Bfs.cc
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James Cherry 2c866d5f2d bfs update kahns prep
commit 4075953c9798444b9d5275f8fa0320f74b9bf1ef
Author: James Cherry <[email protected]>
Date:   Sat Jul 4 09:00:48 2026 -0700

    bfs resort hasNext

    Signed-off-by: James Cherry <[email protected]>

commit 4fb0dd19e479f507935129fe940bcd1cf93b29d0
Author: James Cherry <[email protected]>
Date:   Thu Jul 2 12:23:54 2026 -0700

    ApiChanges

    Signed-off-by: James Cherry <[email protected]>

commit 510afbc1403c9fd2b764b4f3a71dddabd696f052
Author: James Cherry <[email protected]>
Date:   Thu Jul 2 11:07:44 2026 -0700

    bfs enqueueFanin/out

    Signed-off-by: James Cherry <[email protected]>

commit 9a5aa570e910c289b276a519bdf532dfa2e28c5f
Author: James Cherry <[email protected]>
Date:   Thu Jul 2 10:41:27 2026 -0700

    Revert "bfs continueFrom/enqueueFanin/out"

    This reverts commit d18498c947a7df2b615fafda38fbdbe8033eca9d.

commit 02a253ab252f6637cfea29bdd788cb25da16813d
Author: James Cherry <[email protected]>
Date:   Thu Jul 2 08:21:49 2026 -0700

    Revert "Bfs rm search_pred"

    This reverts commit d858b3380b5e1d81ff6162b6378672a6099a246f.

commit 0adf03613d91c5774545d12cba1dc52052ca732a
Author: James Cherry <[email protected]>
Date:   Thu Jul 2 08:08:04 2026 -0700

    Genclks::ensureMaster

    Signed-off-by: James Cherry <[email protected]>

commit 089b373c548b77f9189a2617c3168867de620dfe
Author: James Cherry <[email protected]>
Date:   Wed Jul 1 17:50:43 2026 -0700

    Search::ensureDownstreamClkPins() use dfs

    Signed-off-by: James Cherry <[email protected]>

commit 000ca16adb9bdcb92266e5f242629bc3e8612658
Author: James Cherry <[email protected]>
Date:   Wed Jul 1 10:03:57 2026 -0700

    ApiChangeLog

    Signed-off-by: James Cherry <[email protected]>

commit d858b3380b5e1d81ff6162b6378672a6099a246f
Author: James Cherry <[email protected]>
Date:   Wed Jul 1 09:56:53 2026 -0700

    Bfs rm search_pred

    Signed-off-by: James Cherry <[email protected]>

commit d18498c947a7df2b615fafda38fbdbe8033eca9d
Author: James Cherry <[email protected]>
Date:   Wed Jul 1 08:07:15 2026 -0700

    bfs continueFrom/enqueueFanin/out

    Signed-off-by: James Cherry <[email protected]>

commit a8c55b12b3ad7a1041766775727ad758ae8c6d18
Author: James Cherry <[email protected]>
Date:   Tue Jun 30 10:07:46 2026 -0700

    bfs continue

    Signed-off-by: James Cherry <[email protected]>

commit 8530dcd86b7ee736f1858143c3b2cee57cdbc991
Author: James Cherry <[email protected]>
Date:   Tue Jun 30 07:15:28 2026 -0700

    Graph::visitFanin/out uninline edge iter

    Signed-off-by: James Cherry <[email protected]>

commit 1ba1f4576f4b72c64db742369a63dcf8726ba002
Author: James Cherry <[email protected]>
Date:   Mon Jun 29 21:09:17 2026 -0700

    BfsIterator rm Iterator<Vector> subclass

    Signed-off-by: James Cherry <[email protected]>

commit b3ddd2580298958ad6da8225ecac0d255315504c
Author: James Cherry <[email protected]>
Date:   Mon Jun 29 20:15:23 2026 -0700

    ClkNetwork::findClkPins use VertexQueue instead of bfs

    Signed-off-by: James Cherry <[email protected]>

commit 9e73154db48a7301be4039a25aec1fef589ef18a
Author: James Cherry <[email protected]>
Date:   Mon Jun 29 18:39:39 2026 -0700

    Search::ensureDownstreamClkPins use VertexQueue

    Signed-off-by: James Cherry <[email protected]>

commit 9cd1b160e126ccacc47375ef508fdbb580bfa162
Author: James Cherry <[email protected]>
Date:   Mon Jun 29 11:18:03 2026 -0700

    comment

    Signed-off-by: James Cherry <[email protected]>

commit 0baf3838e2b8faa5fea560b0c95431b277631fea
Author: James Cherry <[email protected]>
Date:   Mon Jun 29 10:57:39 2026 -0700

    findClkArrivals use invalid for clk fringe

    Signed-off-by: James Cherry <[email protected]>

commit e82ccd10a5e4bd69e41ce889685d7a130ae79ed6
Author: James Cherry <[email protected]>
Date:   Sun Jun 28 20:36:48 2026 -0700

    Search::findClkArrivals

    Signed-off-by: James Cherry <[email protected]>

commit cb66a72686c8728141c72ceb593b8a4b895ff696
Author: James Cherry <[email protected]>
Date:   Sun Jun 28 10:11:55 2026 -0700

    rm Search::postponeClkFanouts

    Signed-off-by: James Cherry <[email protected]>

Signed-off-by: James Cherry <[email protected]>
2026-07-04 09:04:31 -07:00

535 lines
14 KiB
C++

// OpenSTA, Static Timing Analyzer
// Copyright (c) 2026, Parallax Software, Inc.
//
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with this program. If not, see <https://www.gnu.org/licenses/>.
//
// The origin of this software must not be misrepresented; you must not
// claim that you wrote the original software.
//
// Altered source versions must be plainly marked as such, and must not be
// misrepresented as being the original software.
//
// This notice may not be removed or altered from any source distribution.
#include "Bfs.hh"
#include "Debug.hh"
#include "DispatchQueue.hh"
#include "Graph.hh"
#include "Levelize.hh"
#include "Mutex.hh"
#include "Network.hh"
#include "Report.hh"
#include "Sdc.hh"
#include "SearchPred.hh"
namespace sta {
BfsIterator::BfsIterator(BfsIndex bfs_index,
Level level_min,
Level level_max,
SearchPred *search_pred,
StaState *sta) :
StaState(sta),
bfs_index_(bfs_index),
level_min_(level_min),
level_max_(level_max),
search_pred_(search_pred)
{
init();
}
void
BfsIterator::init()
{
first_level_ = level_max_;
last_level_ = level_min_;
ensureSize();
}
void
BfsIterator::ensureSize()
{
if (levelize_->levelized()) {
unsigned max_level_1 = levelize_->maxLevel() + 1;
if (queue_.size() < max_level_1)
queue_.resize(max_level_1);
}
}
void
BfsIterator::clear()
{
clear([] (Vertex *) {});
}
void
BfsIterator::clear(const VertexFn &fn)
{
Level level = first_level_;
while (levelLessOrEqual(level, last_level_)) {
VertexSeq &level_vertices = queue_[level];
for (Vertex *vertex : level_vertices) {
if (vertex) {
vertex->setBfsInQueue(bfs_index_, false);
fn(vertex);
}
}
level_vertices.clear();
incrLevel(level);
}
init();
}
void
BfsIterator::reportEntries() const
{
for (Level level = first_level_; levelLessOrEqual(level, last_level_);
incrLevel(level)) {
const VertexSeq &level_vertices = queue_[level];
if (!level_vertices.empty()) {
report_->report("Level {}", level);
for (Vertex *vertex : level_vertices)
report_->report(" {}", vertex ? vertex->to_string(this) : "NULL");
}
}
}
void
BfsIterator::deleteEntries(Level level)
{
VertexSeq &level_vertices = queue_[level];
for (Vertex *vertex : level_vertices) {
if (vertex)
vertex->setBfsInQueue(bfs_index_, false);
}
level_vertices.clear();
}
bool
BfsIterator::empty() const
{
return levelLess(last_level_, first_level_);
}
int
BfsIterator::visit(Level to_level,
VertexVisitor *visitor)
{
int visit_count = 0;
while (levelLessOrEqual(first_level_, last_level_)
&& levelLessOrEqual(first_level_, to_level)) {
Level level = first_level_;
VertexSeq &level_vertices = queue_[level];
incrLevel(first_level_);
// Note that ArrivalVisitor::enqueueRefPinInputDelays may enqueue
// vertices at this level so range iteration fails if the vector grows.
while (!level_vertices.empty()) {
Vertex *vertex = level_vertices.back();
level_vertices.pop_back();
if (vertex) {
checkLevel(vertex, level);
vertex->setBfsInQueue(bfs_index_, false);
visitor->visit(vertex);
visit_count++;
}
}
level_vertices.clear();
}
return visit_count;
}
int
BfsIterator::visitParallel(Level to_level,
VertexVisitor *visitor)
{
size_t thread_count = thread_count_;
int visit_count = 0;
if (!empty()) {
if (thread_count == 1)
visit_count = visit(to_level, visitor);
else {
std::vector<VertexVisitor *> visitors;
visitors.reserve(thread_count_);
for (int k = 0; k < thread_count_; k++)
visitors.push_back(visitor->copy());
while (levelLessOrEqual(first_level_, last_level_)
&& levelLessOrEqual(first_level_, to_level)) {
VertexSeq &level_vertices = queue_[first_level_];
Level level = first_level_;
incrLevel(first_level_);
if (!level_vertices.empty()) {
size_t vertex_count = level_vertices.size();
if (vertex_count < thread_count) {
for (Vertex *vertex : level_vertices) {
if (vertex) {
checkLevel(vertex, level);
vertex->setBfsInQueue(bfs_index_, false);
visitor->visit(vertex);
}
}
}
else {
size_t from = 0;
size_t chunk_size = vertex_count / thread_count;
BfsIndex bfs_index = bfs_index_;
for (size_t k = 0; k < thread_count; k++) {
// Last thread gets the left overs.
size_t to = (k == thread_count - 1) ? vertex_count : from + chunk_size;
dispatch_queue_->dispatch([=, this](size_t) {
for (size_t i = from; i < to; i++) {
Vertex *vertex = level_vertices[i];
if (vertex) {
checkLevel(vertex, level);
vertex->setBfsInQueue(bfs_index, false);
visitors[k]->visit(vertex);
}
}
});
from = to;
}
dispatch_queue_->finishTasks();
}
level_vertices.clear();
visit_count += vertex_count;
}
}
for (VertexVisitor *visitor : visitors)
delete visitor;
}
}
return visit_count;
}
void
BfsIterator::enqueue(Vertex *vertex)
{
debugPrint(debug_, "bfs", 2, "enqueue {}", vertex->to_string(this));
if (!vertex->bfsInQueue(bfs_index_)) {
Level level = vertex->level();
LockGuard lock(queue_lock_);
if (!vertex->bfsInQueue(bfs_index_)) {
vertex->setBfsInQueue(bfs_index_, true);
queue_[level].push_back(vertex);
if (levelLess(last_level_, level))
last_level_ = level;
if (levelLess(level, first_level_))
first_level_ = level;
}
}
}
bool
BfsIterator::inQueue(Vertex *vertex)
{
// checkInQueue(vertex);
return vertex->bfsInQueue(bfs_index_);
}
void
BfsIterator::checkInQueue(Vertex *vertex)
{
Level level = vertex->level();
if (std::cmp_greater(queue_.size(), level)) {
for (Vertex *v : queue_[level]) {
if (v == vertex) {
if (vertex->bfsInQueue(bfs_index_))
return;
else
debugPrint(debug_, "bfs", 1, "extra {}", vertex->to_string(this));
}
}
}
if (vertex->bfsInQueue(bfs_index_))
debugPrint(debug_, "brs", 1, "missing {}", vertex->to_string(this));
}
void
BfsIterator::checkLevel(Vertex *vertex,
Level level)
{
if (vertex->level() != level)
report_->error(2300, "vertex {} level {} != bfs level {}",
vertex->to_string(this), vertex->level(), level);
}
void
BfsIterator::deleteVertexBefore(Vertex *vertex)
{
remove(vertex);
}
// Remove by inserting null vertex pointer.
void
BfsIterator::remove(Vertex *vertex)
{
// If the iterator has not been inited the queue will be empty.
Level level = vertex->level();
if (vertex->bfsInQueue(bfs_index_) && std::cmp_greater(queue_.size(), level)) {
debugPrint(debug_, "bfs", 2, "remove {}", vertex->to_string(this));
for (Vertex *&v : queue_[level]) {
if (v == vertex) {
v = nullptr;
vertex->setBfsInQueue(bfs_index_, false);
break;
}
}
}
}
////////////////////////////////////////////////////////////////
bool
BfsIterator::hasNext()
{
return hasNext(last_level_);
}
bool
BfsIterator::hasNext(Level to_level)
{
findNext(to_level);
return levelLessOrEqual(first_level_, last_level_)
&& !queue_[first_level_].empty();
}
Vertex *
BfsIterator::next()
{
VertexSeq &level_vertices = queue_[first_level_];
Vertex *vertex = level_vertices.back();
level_vertices.pop_back();
vertex->setBfsInQueue(bfs_index_, false);
return vertex;
}
void
BfsIterator::findNext(Level to_level)
{
while (levelLessOrEqual(first_level_, last_level_)
&& levelLessOrEqual(first_level_, to_level)) {
VertexSeq &level_vertices = queue_[first_level_];
// Skip null entries from deleted vertices.
while (!level_vertices.empty()) {
Vertex *vertex = level_vertices.back();
if (vertex == nullptr)
level_vertices.pop_back();
else {
checkLevel(vertex, first_level_);
return;
}
}
incrLevel(first_level_);
}
}
////////////////////////////////////////////////////////////////
BfsFwdIterator::BfsFwdIterator(BfsIndex bfs_index,
SearchPred *search_pred,
StaState *sta) :
BfsIterator(bfs_index, 0, Graph::vertex_level_max, search_pred, sta)
{
}
// clear() without saving lists to list_free_.
BfsFwdIterator::~BfsFwdIterator()
{
for (Level level = first_level_; level <= last_level_; level++)
deleteEntries(level);
}
void
BfsFwdIterator::incrLevel(Level &level) const
{
level++;
}
bool
BfsFwdIterator::levelLessOrEqual(Level level1,
Level level2) const
{
return level1 <= level2;
}
bool
BfsFwdIterator::levelLess(Level level1,
Level level2) const
{
return level1 < level2;
}
void
BfsFwdIterator::enqueueFanout(Vertex *vertex)
{
if (search_pred_->searchFrom(vertex)) {
VertexOutEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *to_vertex = edge->to(graph_);
if (search_pred_->searchThru(edge)
&& search_pred_->searchTo(to_vertex))
enqueue(to_vertex);
}
}
}
void
BfsFwdIterator::enqueueFanout(Vertex *vertex,
const Mode *mode)
{
if (search_pred_->searchFrom(vertex, mode)) {
VertexOutEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *to_vertex = edge->to(graph_);
if (search_pred_->searchThru(edge, mode)
&& search_pred_->searchTo(to_vertex, mode))
enqueue(to_vertex);
}
}
}
void
BfsFwdIterator::enqueueAdjacentVertices(Vertex *vertex)
{
if (search_pred_->searchFrom(vertex)) {
VertexOutEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *to_vertex = edge->to(graph_);
if (search_pred_->searchThru(edge)
&& search_pred_->searchTo(to_vertex))
enqueue(to_vertex);
}
}
}
void
BfsFwdIterator::enqueueAdjacentVertices(Vertex *vertex,
const Mode *mode)
{
if (search_pred_->searchFrom(vertex, mode)) {
VertexOutEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *to_vertex = edge->to(graph_);
if (search_pred_->searchThru(edge, mode)
&& search_pred_->searchTo(to_vertex, mode))
enqueue(to_vertex);
}
}
}
////////////////////////////////////////////////////////////////
BfsBkwdIterator::BfsBkwdIterator(BfsIndex bfs_index,
SearchPred *search_pred,
StaState *sta) :
BfsIterator(bfs_index, Graph::vertex_level_max, 0, search_pred, sta)
{
}
// clear() without saving lists to list_free_.
BfsBkwdIterator::~BfsBkwdIterator()
{
for (Level level = first_level_; level >= last_level_; level--)
deleteEntries(level);
}
void
BfsBkwdIterator::incrLevel(Level &level) const
{
level--;
}
bool
BfsBkwdIterator::levelLessOrEqual(Level level1,
Level level2) const
{
return level1 >= level2;
}
bool
BfsBkwdIterator::levelLess(Level level1,
Level level2) const
{
return level1 > level2;
}
void
BfsBkwdIterator::enqueueAdjacentVertices(Vertex *vertex)
{
if (search_pred_->searchTo(vertex)) {
VertexInEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *from_vertex = edge->from(graph_);
if (search_pred_->searchFrom(from_vertex)
&& search_pred_->searchThru(edge))
enqueue(from_vertex);
}
}
}
void
BfsBkwdIterator::enqueueAdjacentVertices(Vertex *vertex,
const Mode *mode)
{
if (search_pred_->searchTo(vertex, mode)) {
VertexInEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *from_vertex = edge->from(graph_);
if (search_pred_->searchFrom(from_vertex, mode)
&& search_pred_->searchThru(edge, mode))
enqueue(from_vertex);
}
}
}
void
BfsBkwdIterator::enqueueFanin(Vertex *vertex)
{
if (search_pred_->searchTo(vertex)) {
VertexInEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *from_vertex = edge->from(graph_);
if (search_pred_->searchFrom(from_vertex)
&& search_pred_->searchThru(edge))
enqueue(from_vertex);
}
}
}
void
BfsBkwdIterator::enqueueFanin(Vertex *vertex,
const Mode *mode)
{
if (search_pred_->searchTo(vertex, mode)) {
VertexInEdgeIterator edge_iter(vertex, graph_);
while (edge_iter.hasNext()) {
Edge *edge = edge_iter.next();
Vertex *from_vertex = edge->from(graph_);
if (search_pred_->searchFrom(from_vertex, mode)
&& search_pred_->searchThru(edge, mode))
enqueue(from_vertex);
}
}
}
} // namespace sta