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22 Commits
Author SHA1 Message Date
Tim Edwards 6b731ddd7a Merge branch 'master' into netgen-1.5 2020-12-04 03:00:27 -05:00
Tim Edwards b9769b9f55 Updated version to go along with pull request merge from github. 2020-12-03 20:17:59 -05:00
Tim 'mithro' Ansell 7e42483986 Fix configure script to not clobber CFLAGS.
Signed-off-by: Tim 'mithro' Ansell <[email protected]>
2020-11-29 16:39:28 -08:00
Tim 'mithro' Ansell 97b0d08e4f Rework configure script so exit code works.
The previous script would swallow the exit code of the `./configure`
script and thus it looked like doing a configure always succeeded.

Signed-off-by: Tim 'mithro' Ansell <[email protected]>
2020-11-29 16:35:47 -08:00
Tim Edwards 99e35d8b11 Merge branch 'master' into netgen-1.5 2020-10-09 03:00:25 -04:00
Tim Edwards d2c356f9e2 Added a "-full" switch to the scripted "lvs" command that switches
to the old symmetry breaking method (see previous commit message).
2020-10-08 09:57:01 -04:00
Tim Edwards 5e99fd5ef9 Found a counterexample which shows that the fast symmetry breaking
introduced in revision 150 can result in an incorrect result
reporting a bad match where the match is actually good (as proven
by running the full symmetry breaking on the same netlist).
Because the fast symmetry breaking is orders of magnitude faster
for large circuits, and because the false positive result appears
to be rare, I have introduced a command "symmetry" to switch
methods between fast and full.  So fast symmetry breaking can be
run unless the result fails on symmetry breaking, in which case
the method can be switched to full to see if the problem is a
false positive or not.  This is not an ideal solution, and some
investigation is needed to determine if there is a way to apply
fast symmetry breaking without encountering a false positive
error.
2020-10-08 09:43:25 -04:00
Tim Edwards 65b542f0ab Merge branch 'master' into netgen-1.5 2020-10-08 03:00:22 -04:00
Tim Edwards 04dd4a64d5 Corrected problems with the port count routine not being specified
with the file number, so that it can get confused between libraries.
Also made a fix to coerce one cell class to be forced to be the
same in both circuits under some circumstances.
2020-10-07 21:32:07 -04:00
Tim Edwards b826870be9 Merge branch 'master' into netgen-1.5 2020-08-09 03:01:40 -04:00
Tim Edwards 50b0e9cb65 Found examples where the automated "pin matching" algorithm causes
the top level circuits to be declared matching with no errors even
though the pins do not match.  "proxy pins" are fine for subcells
to detect cases where one subcell has an unused pin and the matching
subcell does not declare it, but that should not be allowed on the
top level, as it cannot be known whether the pin is unused or not.
2020-08-08 13:19:26 -04:00
Tim Edwards ed5276d67b Merge branch 'master' into netgen-1.5 2020-08-04 03:00:31 -04:00
Tim Edwards 82be18ec4b Corrected a bounds check on sub-arrays inside bundles, that prevents
the bundle from being parsed correctly when any sub-array is only one
bit wide.
2020-08-03 22:57:19 -04:00
Tim Edwards 4ee3a1464b Corrected the left-hand side assignment for "assign" statements and
corrected the error statement so that it refers both to the (corrected)
left-hand side and also the portion of the right-hand side that cannot
be parsed as structural verilog.
2020-08-03 11:49:09 -04:00
Tim Edwards 69c9d85be7 Merge branch 'master' into netgen-1.5 2020-08-01 03:00:23 -04:00
Tim Edwards 8e215d3b66 Corrected the PropertyMatch() routine; previously the symmetry
breaking by property was only matching properties between circuits but
not within the same circuit, which is needed for correct symmetry
breaking.  But the PropertyMatch() routine assumed that it is passed
one item from each circuit, leading to a segfault when running the
symmetry breaking within a single circuit.  This has been fixed.
2020-07-31 12:56:20 -04:00
Tim Edwards c45d51e950 Tracked down and fixed problems with implicit pins in verilog (pins
that are not declared in the verilog netlist because they don't
connect to anything, and their presence is not required by verilog
syntax) and the printing of proxy pins created to act as placeholders
for those implicit pins.  Also removed the pinting of the "disconnected
pin" messages for black-box modules (since by definition they have
disconnected pins, because black-box modules have no contents).
2020-07-31 12:22:50 -04:00
Tim Edwards ad05d059c7 Merge branch 'master' into netgen-1.5 2020-07-31 03:00:27 -04:00
Tim Edwards 85eb34c01e Made several corrections to handling of proxy pins when matching
black-box circuits, especially those coming from verilog netlists
where a pin does not need to be declared and is implicitly floating.
This prevents the need to have an explicit black-box entry for any
verilog module that may have an instance that does not declare all
the pin connections.  Also corrected an error which causes mysterious
failures if a verilog netlist is read before a SPICE netlist,
because the former gets hashed case-sensitive and the latter changes
the hashing to case-insensitive.  Modified to force the SPICE
netlist to be treated case-sensitive, which may cause errors, but
is consistent with the reverse order handling, and doesn't cause
unexplained errors.
2020-07-30 22:51:34 -04:00
Tim Edwards 8a24c6c3ca Modified the ResolveAutomorphisms() routine once again, to break
symmetry of all elements in all symmetric partitions, rather than
(as previously done) all elements in each partition, before re-
running iterations to convergence.  This solves the problem of
having a very large number of partitions with a few elements each
taking a long time to run.
2020-07-30 14:48:08 -04:00
Tim Edwards 46cdf48bc4 Updated the version to force the tarball and github mirror. 2020-07-30 08:10:09 -04:00
Tim Edwards 9d542b92b0 Corrected one logical error in netcmp.c from the last commit,
discovered and fixed by Ahmed Ghazy.
2020-07-30 08:06:44 -04:00
14 changed files with 1193 additions and 54 deletions
+1 -1
View File
@@ -1 +1 @@
1.5.151
1.5.158
+227 -29
View File
@@ -158,6 +158,9 @@ int right_col_end = 87;
/* if TRUE, always partition ALL classes */
int ExhaustiveSubdivision = 0;
/* if TRUE, use fast symmetry breaking to resolve automorphisms */
int FastSymmetryBreaking = 1;
#ifdef TEST
static void PrintElement_List(struct Element *E)
{
@@ -5246,6 +5249,12 @@ void DumpNetworkAll(char *model, int file)
/* NOTE: ob1 must belong to Circuit1, and ob2 must belong to */
/* Circuit2. The calling procedure is responsble for ensuring */
/* that this is true. */
/* */
/* NOTE: This routine assumes that if file1 == file2 or if */
/* file2 != Circuit1->graph, then "do_print" is FALSE. It */
/* hard-codes "Circuit 1" and "Circuit 2" in most print */
/* statements. file1 == file2 only when checking properties */
/* for symmetry breaking, where nothing is printed. */
/*--------------------------------------------------------------*/
#ifdef TCL_NETGEN
@@ -5253,8 +5262,9 @@ Tcl_Obj *
#else
void
#endif
PropertyMatch(struct objlist *ob1, struct objlist *ob2, int do_print,
int do_list, int *retval)
PropertyMatch(struct objlist *ob1, int file1,
struct objlist *ob2, int file2,
int do_print, int do_list, int *retval)
{
struct nlist *tc1, *tc2;
struct objlist *tp1, *tp2, *obn1, *obn2;
@@ -5268,8 +5278,22 @@ PropertyMatch(struct objlist *ob1, struct objlist *ob2, int do_print,
Tcl_Obj *proplist = NULL, *mpair, *mlist;
#endif
tc1 = LookupCellFile(ob1->model.class, Circuit1->file);
tc2 = LookupCellFile(ob2->model.class, Circuit2->file);
tc1 = LookupCellFile(ob1->model.class, file1);
tc2 = LookupCellFile(ob2->model.class, file2);
if (tc1 == NULL || tc2 == NULL) {
if (tc1 == NULL)
Fprintf(stdout, "Error: Circuit %d device \"%s\" not found!\n",
file1, ob1->model.class);
else
Fprintf(stdout, "Error: Circuit %d device \"%s\" not found!\n",
file2, ob2->model.class);
#ifdef TCL_NETGEN
return NULL;
#else
return;
#endif
}
if (tc1->classhash != tc2->classhash) {
*retval = -1;
@@ -5550,9 +5574,11 @@ PropertyCheck(struct ElementClass *EC, int do_print, int do_list, int *rval)
E2 = Etmp;
}
#ifdef TCL_NETGEN
return PropertyMatch(E1->object, E2->object, do_print, do_list, rval);
return PropertyMatch(E1->object, E1->graph, E2->object, E2->graph,
do_print, do_list, rval);
#else
PropertyMatch(E1->object, E2->object, do_print, do_list, rval);
PropertyMatch(E1->object, E1->graph, E2->object, E2->graph,
do_print, do_list, rval);
#endif
}
@@ -5791,10 +5817,8 @@ int ResolveAutomorphsByProperty()
badmatch = FALSE;
for (E2 = E1->next; E2 != NULL; E2 = E2->next) {
if (E2->hashval != orighash) continue;
if (E1->graph == Circuit1->file)
PropertyMatch(E1->object, E2->object, FALSE, FALSE, &result);
else
PropertyMatch(E2->object, E1->object, FALSE, FALSE, &result);
PropertyMatch(E1->object, E1->graph, E2->object, E2->graph,
FALSE, FALSE, &result);
if (result == 0) {
E2->hashval = newhash;
if (E2->graph == E1->graph)
@@ -5841,7 +5865,7 @@ int ResolveAutomorphsByProperty()
/*
*-------------------------------------------------------------------------
*
* ResolveAutormorphisms --
* ResolveAutormorphismsFull --
*
* Arbitrarily equivalence one pair of elements within an automorphic class
*
@@ -5850,14 +5874,87 @@ int ResolveAutomorphsByProperty()
*-------------------------------------------------------------------------
*/
int ResolveAutomorphisms()
int ResolveAutomorphismsFull()
{
struct ElementClass *EC;
struct NodeClass *NC;
struct Element *E;
struct NodeClass *NC;
struct Node *N;
int C1, C2;
for (EC = ElementClasses; EC != NULL; EC = EC->next) {
struct Element *E1, *E2;
C1 = C2 = 0;
E1 = E2 = NULL;
for (E = EC->elements; E != NULL; E = E->next) {
if (E->graph == Circuit1->file) {
C1++;
E1 = E;
}
else {
C2++;
E2 = E;
}
}
if (C1 == C2 && C1 != 1) {
unsigned long newhash;
Magic(newhash);
E1->hashval = newhash;
E2->hashval = newhash;
goto converge;
}
}
for (NC = NodeClasses; NC != NULL; NC = NC->next) {
struct Node *N1, *N2;
C1 = C2 = 0;
N1 = N2 = NULL;
for (N = NC->nodes; N != NULL; N = N->next) {
if (N->graph == Circuit1->file) {
C1++;
N1 = N;
}
else {
C2++;
N2 = N;
}
}
if (C1 == C2 && C1 != 1) {
unsigned long newhash;
Magic(newhash);
N1->hashval = newhash;
N2->hashval = newhash;
goto converge;
}
}
converge:
FractureElementClass(&ElementClasses);
FractureNodeClass(&NodeClasses);
ExhaustiveSubdivision = 1;
while (!Iterate() && VerifyMatching() != -1);
return(VerifyMatching());
}
/*
*-------------------------------------------------------------------------
*
* ResolveElementAutomorphismsFast --
*
* Apply arbitrary symmetry breaking to symmetric element lists, then
* iterate exhaustively to resolve all automorphisms.
*
* Return value is the same as VerifyMatching()
*
*-------------------------------------------------------------------------
*/
int ResolveElementAutomorphismsFast()
{
struct ElementClass *EC;
struct Element *E;
int C1, C2;
for (EC = ElementClasses; EC != NULL; EC = EC->next) {
struct Element *E1, *E2;
C1 = C2 = 0;
@@ -5882,7 +5979,7 @@ int ResolveAutomorphisms()
/* convergence, and repeat. */
E1 = E2 = EC->elements;
while (E1 != NULL) {
while (E1 != NULL && E2 != NULL) {
while (E1->graph != Circuit1->file) E1 = E1->next;
while (E2->graph != Circuit2->file) E2 = E2->next;
Magic(newhash);
@@ -5891,10 +5988,38 @@ int ResolveAutomorphisms()
E1 = E1->next;
E2 = E2->next;
}
goto converge;
}
}
FractureElementClass(&ElementClasses);
FractureNodeClass(&NodeClasses);
ExhaustiveSubdivision = 1;
while (!Iterate() && VerifyMatching() != -1);
return(VerifyMatching());
}
/*
*-------------------------------------------------------------------------
*
* ResolveNodeAutomorphismsFast --
*
* Apply arbitrary symmetry breaking to symmetric node lists, then iterate
* exhaustively to resolve all automorphisms. Normally, all automorphisms
* should be resolved by ResolveElementAutomorphisms(). It is likely true
* that this routine will never run, by definition.
*
* Return value is the same as VerifyMatching()
*
*-------------------------------------------------------------------------
*
*/
int ResolveNodeAutomorphismsFast()
{
struct Node *N;
struct NodeClass *NC;
int C1, C2;
for (NC = NodeClasses; NC != NULL; NC = NC->next) {
struct Node *N1, *N2;
C1 = C2 = 0;
@@ -5919,7 +6044,7 @@ int ResolveAutomorphisms()
/* convergence, and repeat. */
N1 = N2 = NC->nodes;
while (N1 != NULL) {
while (N1 != NULL && N2 != NULL) {
while (N1->graph != Circuit1->file) N1 = N1->next;
while (N2->graph != Circuit2->file) N2 = N2->next;
Magic(newhash);
@@ -5928,11 +6053,9 @@ int ResolveAutomorphisms()
N1 = N1->next;
N2 = N2->next;
}
goto converge;
}
}
converge:
FractureElementClass(&ElementClasses);
FractureNodeClass(&NodeClasses);
ExhaustiveSubdivision = 1;
@@ -5940,6 +6063,45 @@ int ResolveAutomorphisms()
return(VerifyMatching());
}
/*
*-------------------------------------------------------------------------
*
* ResolveAutormorphisms --
*
* Do symmetry breaking of automorphisms. If FastSymmetryBreaking is
* False (not the default), then run ResolveAutomorphismsFull() (q.v.).
* Otherwise, run the fast symmetry breaking method:
*
* Arbitrarily equivalence all pairs of elements and nodes within all
* automorphic classes, and run to completion. Note that this is a
* fast version of ResolveAutomorphismsFull(), and can run many orders
* of magnitude faster. However, it can also produce an incorrect
* result, declaring a global mismatch where none exists. In that
* case, the matching should be re-run with ResolveAutomorphismsFull().
*
* Some investigation needs to be done to determine if there is a way
* to execute faster symmetry breaking without the possibility of
* producing an incorrect result.
*
* Return value is the same as VerifyMatching()
*
*-------------------------------------------------------------------------
*/
int ResolveAutomorphisms()
{
int result;
if (FastSymmetryBreaking == 0)
return ResolveAutomorphismsFull();
result = ResolveElementAutomorphismsFast();
if (result != 0)
result = ResolveNodeAutomorphismsFast();
return result;
}
/*------------------------------------------------------*/
/* PermuteSetup -- */
/* Add an entry to a cell's "permutes" linked list. */
@@ -6644,7 +6806,7 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
struct NodeClass *NC;
struct Node *N1, *N2;
int i, j, k, m, a, b, swapped, numnodes, numorig;
int result = 1, haspins = 0;
int result = 1, haspins = 0, notempty = 0;
int hasproxy1 = 0, hasproxy2 = 0;
int needclean1 = 0, needclean2 = 0;
char *ostr;
@@ -6809,12 +6971,15 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
/* has been left orphaned after flattening. If */
/* disconnected, set its node number to -2. */
notempty = 0;
for (obt = ob1->next; obt; obt = obt->next) {
if (obt->type >= FIRSTPIN)
if (obt->type >= FIRSTPIN) {
notempty = 1;
if (obt->node == ob1->node)
break;
}
}
if (obt == NULL) {
if ((obt == NULL) && (notempty == 1)) {
ob1->node = -2; // Will run this through cleanuppins
needclean1 = 1;
}
@@ -6867,6 +7032,8 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
if (*(cover + i) == (char)0) {
j = 0;
for (ob2 = tc2->cell; ob2 != NULL; ob2 = ob2->next) {
char *name1, *name2;
if (!IsPort(ob2)) break;
bangptr2 = strrchr(ob2->name, '!');
@@ -6874,7 +7041,14 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
*bangptr2 = '\0';
else bangptr2 = NULL;
if ((*matchfunc)(ob1->name, ob2->name)) {
name1 = ob1->name;
name2 = ob2->name;
/* Recognize proxy pins as matching */
if (!strncmp(name1, "proxy", 5)) name1 +=5;
if (!strncmp(name2, "proxy", 5)) name2 +=5;
if ((*matchfunc)(name1, name2)) {
ob2->model.port = i; /* save order */
*(cover + i) = (char)1;
@@ -6913,7 +7087,7 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
/* Find the end of the pin list in tc1, for adding proxy pins */
for (ob1 = tc1->cell; ob1 != NULL; ob1 = ob1->next) {
if (ob1 && ob1->next && ob1->next->type != PORT)
if (ob1 && ((ob1->next && ob1->next->type != PORT) || ob1->next == NULL))
break;
}
if (ob1 == NULL) ob1 = tc1->cell; /* No ports */
@@ -6956,12 +7130,15 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
/* flattening instances has left a port with a */
/* net number that doesn't connect to anything */
notempty = 0;
for (obt = ob2->next; obt; obt = obt->next) {
if (obt->type >= FIRSTPIN)
if (obt->type >= FIRSTPIN) {
notempty = 1;
if (obt->node == ob2->node)
break;
}
}
if (obt == NULL) {
if ((obt == NULL) && (notempty == 1)) {
ob2->node = -2; // Will run this through cleanuppins
needclean2 = 1;
continue;
@@ -6978,7 +7155,7 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
obn->name = (char *)MALLOC(6 + strlen(ob2->name));
sprintf(obn->name, "proxy%s", ob2->name);
obn->type = UNKNOWN;
obn->model.port = -1;
// obn->model.port = -1;
obn->instance.name = NULL;
obn->node = -1;
if (ob1 == tc1->cell) {
@@ -6999,7 +7176,7 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
/* Find the end of the pin list in tc2, for adding proxy pins */
for (ob2 = tc2->cell; ob2 != NULL; ob2 = ob2->next) {
if (ob2 && ob2->next && ob2->next->type != PORT)
if (ob2 && ((ob2->next && ob2->next->type != PORT) || ob2->next == NULL))
break;
}
if (ob2 == NULL) ob2 = tc2->cell; /* No ports */
@@ -7030,7 +7207,8 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
if (obn == NULL) ob1->node = -1; /* Make disconnected */
}
if (ob1 == NULL || ob1->type != PORT || ob1->node >= 0) {
if (ob1 == NULL || ob1->type != PORT || ob1->node >= 0
|| (ob1->node < 0 && tc1->class == CLASS_MODULE)) {
/* Add a proxy pin to tc2 */
obn = (struct objlist *)CALLOC(1, sizeof(struct objlist));
@@ -7047,6 +7225,25 @@ int MatchPins(struct nlist *tc1, struct nlist *tc2, int dolist)
obn->instance.name = NULL;
obn->node = -1;
#if 0
/* Note: This pin has already been accounted for */
if (Debug == 0) {
if (strcmp(ob1->name, "(no pins)")) {
for (m = 0; m < left_col_end; m++) *(ostr + m) = ' ';
for (m = left_col_end + 1; m < right_col_end; m++) *(ostr + m) = ' ';
snprintf(ostr, left_col_end, "%s", ob1->name);
snprintf(ostr + left_col_end + 1, left_col_end, "(no matching pin)");
for (m = 0; m < right_col_end + 1; m++)
if (*(ostr + m) == '\0') *(ostr + m) = ' ';
Fprintf(stdout, ostr);
}
}
else {
Fprintf(stderr, "No netlist match for cell %s pin %s\n",
tc1->name, ob1->name);
}
#endif
if (ob2 == tc2->cell) {
obn->next = ob2;
tc2->cell = obn;
@@ -7350,7 +7547,8 @@ static void handler(int sig)
/*----------------------------------------------------------------------*/
/* Note that this cover-all routine is not called from the Tcl/Tk */
/* version, which replaces it with the script "lvs". */
/* return 1 if the two are identical. Try to resolve automorphisms. */
/* return 1 if the two are identical. Try to resolve automorphisms */
/* using the original "full" symmetry breaking algorithm. */
/*----------------------------------------------------------------------*/
int Compare(char *cell1, char *cell2)
+1
View File
@@ -7,6 +7,7 @@ extern struct nlist *Circuit1;
extern struct nlist *Circuit2;
extern int ExhaustiveSubdivision;
extern int FastSymmetryBreaking;
extern int left_col_end;
extern int right_col_end;
+7 -3
View File
@@ -289,7 +289,7 @@ static struct hashdict cell_dict;
void InitCellHashTable(void)
{
hashfunc = hash;
matchfunc = match;
matchfunc = NULL;
matchintfunc = matchfile;
InitializeHashTable(&cell_dict, CELLHASHSIZE);
}
@@ -1112,13 +1112,17 @@ void FreeObjectAndHash(struct objlist *ob, struct nlist *ptr)
/*************** GENERAL UTILITIES ****************************/
int NumberOfPorts(char *cellname)
int NumberOfPorts(char *cellname, int file)
{
struct nlist *tp;
struct objlist *ob;
int ports;
tp = LookupCell(cellname);
if (file == -1)
tp = LookupCell(cellname);
else
tp = LookupCellFile(cellname, file);
if (tp == NULL) return(0);
ports = 0;
for (ob = tp->cell; ob != NULL; ob = ob->next)
+1 -1
View File
@@ -242,7 +242,7 @@ extern void FreeObjectAndHash(struct objlist *ob, struct nlist *ptr);
extern void FreePorts(char *cellname);
extern struct IgnoreList *ClassIgnore;
extern int NumberOfPorts(char *cellname);
extern int NumberOfPorts(char *cellname, int file);
extern struct objlist *InstanceNumber(struct nlist *tp, int inst);
extern struct objlist *List(char *list_template);
+1 -1
View File
@@ -929,7 +929,7 @@ void ToggleDebug(void)
void DescribeCell(char *name, int detail)
{
Printf("Cell: %s contains %d instances, %d nodes and %d ports\n", name,
NumberOfInstances(name), RenumberNodes(name), NumberOfPorts(name));
NumberOfInstances(name), RenumberNodes(name), NumberOfPorts(name, -1));
PrintEmbeddingTree(stdout,name,detail);
}
+7 -3
View File
@@ -801,7 +801,11 @@ void DescribeInstance(char *name, int file)
{
if (ob->node > nodemax) nodemax = ob->node;
else if ((ob->node == -1) && (ob->model.port != PROXY)) {
if (!(tp->flags & CELL_PLACEHOLDER))
/* All black-box modules and placeholders by definition have all */
/* disconnected pins, so don't report those. */
if (!(tp->flags & CELL_PLACEHOLDER) && (tp->class != CLASS_MODULE))
{
if (disconnectednodes == 0) Fprintf(stderr, "\n");
disconnectednodes++;
@@ -903,7 +907,7 @@ void PrintLeavesInCell(char *cellname, int filenum)
np->dumped = 1;
if (np->class != CLASS_SUBCKT) {
Printf("%s; %d ports; Primitive.\n", cellname, NumberOfPorts(cellname));
Printf("%s; %d ports; Primitive.\n", cellname, NumberOfPorts(cellname, filenum));
return;
}
@@ -916,7 +920,7 @@ void PrintLeavesInCell(char *cellname, int filenum)
am_a_leaf = 0;
}
if (am_a_leaf) Printf("%s; %d ports\n", cellname, NumberOfPorts(cellname));
if (am_a_leaf) Printf("%s; %d ports\n", cellname, NumberOfPorts(cellname, filenum));
return;
}
+13 -4
View File
@@ -1900,10 +1900,19 @@ char *ReadSpiceTop(char *fname, int *fnum, int blackbox)
}
}
/* Make sure all SPICE file reading is case insensitive */
matchfunc = matchnocase;
matchintfunc = matchfilenocase;
hashfunc = hashnocase;
/* Make sure all SPICE file reading is case insensitive */
/* BUT if a verilog file was read before it, then it will */
/* be forced to be case sensitive, caveat end-user. */
if (matchfunc == match) {
Printf("Warning: A case-sensitive file has been read and so the "
"SPICE netlist must be treated case-sensitive to match.\n");
}
else {
matchfunc = matchnocase;
matchintfunc = matchfilenocase;
hashfunc = hashnocase;
}
InitializeHashTable(&spiceparams, OBJHASHSIZE);
+22 -4
View File
@@ -1225,7 +1225,12 @@ skip_endmodule:
lhs = LookupObject(nodename, CurrentCell);
*aptr = '[';
}
else strcpy(noderoot, nexttok);
else {
strcpy(noderoot, nexttok);
/* Set LHS to the start of the vector */
sprintf(nodename, "%s[%d]", nexttok, wb.start);
lhs = LookupObject(nodename, CurrentCell);
}
}
else {
lhs = LookupObject(nexttok, CurrentCell);
@@ -1290,13 +1295,21 @@ skip_endmodule:
if (rhs != NULL) {
Printf("Improper assignment; left-hand side cannot "
"be parsed.\n");
Printf("Right-hand side is \"%s\".\n", rhs->name);
if (j != -1)
Printf("Right-hand side is \"%s\".\n", assignroot);
else
Printf("Right-hand side is \"%s\".\n", rhs->name);
Printf("Improper expression is \"%s\".\n", nexttok);
break;
}
if (lhs != NULL) {
Printf("Improper assignment; right-hand side cannot "
"be parsed.\n");
Printf("Left-hand side is \"%s\".\n", lhs->name);
if (i != -1)
Printf("Left-hand side is \"%s\".\n", noderoot);
else
Printf("Left-hand side is \"%s\".\n", lhs->name);
Printf("Improper expression is \"%s\".\n", nexttok);
/* Not parsable, probably behavioral verilog? */
Printf("Module '%s' is not structural verilog, "
"making black-box.\n", model);
@@ -1854,7 +1867,7 @@ nextinst:
if (is_bundle &&
((i == -1) ||
((wbb.start > wbb.end) && (i < wbb.end)) ||
((wbb.start < wbb.end) && (i > wbb.end)))) {
((wbb.start <= wbb.end) && (i > wbb.end)))) {
if (bptr) *bptr = '[';
netname = cptr + 1;
@@ -2094,6 +2107,11 @@ char *ReadVerilogTop(char *fname, int *fnum, int blackbox)
Printf("Warning: A case-insensitive file has been read and so the "
"verilog file must be treated case-insensitive to match.\n");
}
else {
matchfunc = match;
matchintfunc = matchfile;
hashfunc = hash;
}
InitializeHashTable(&verilogparams, OBJHASHSIZE);
InitializeHashTable(&verilogdefs, OBJHASHSIZE);
Vendored
+3 -1
View File
@@ -4,4 +4,6 @@
# all of its config scripts in a different directory than the configure
# script itself.
( CFLAGS="-g" ; export CFLAGS ; cd scripts ; ./configure "$@" )
export CFLAGS="$CFLAGS -g"
cd scripts
exec ./configure "$@"
+60
View File
@@ -0,0 +1,60 @@
#!/bin/bash
#
# For installation, put this file (netgen.sh) in a standard executable path.
# Put startup script "netgen.tcl" and shared library "tclnetgen.so"
# in ${CAD_ROOT}/netgen/tcl/, with a symbolic link from file
# ".wishrc" to "netgen.tcl".
#
# This script starts irsim under the Tcl interpreter,
# reading commands from a special .wishrc script which
# launches irsim and retains the Tcl interactive interpreter.
# Parse for the argument "-c[onsole]". If it exists, run netgen
# with the TkCon console. Strip this argument from the argument list.
TKCON=true
BATCH=
GUI=
NETGEN_WISH=/usr/bin/wish
export NETGEN_WISH
# Hacks for Cygwin
if [ ${TERM:=""} = "cygwin" ]; then
export PATH="$PATH:/usr/lib"
export DISPLAY=${DISPLAY:=":0"}
fi
# Preserve quotes in arguments (thanks, Stackoverflow!)
arglist=''
for i in "$@" ; do
case $i in
-noc*) TKCON=;;
-bat*) BATCH=true; TKCON=;;
-gui) GUI=true; TKCON=;;
*) arglist="$arglist${arglist:+ }\"${i//\"/\\\"}\"";;
esac
done
if [ $TKCON ]; then
exec /usr/local/lib/netgen/tcl/tkcon.tcl \
-eval "source /usr/local/lib/netgen/tcl/console.tcl" \
-slave "package require Tk; set argc $#; set argv [list $arglist]; \
source /usr/local/lib/netgen/tcl/netgen.tcl"
# Run the Python LVS manager GUI
elif [ $GUI ]; then
exec /usr/local/lib/netgen/python/lvs_manager.py $@
#
# Run the stand-in for wish (netgenexec), which acts exactly like "wish"
# except that it replaces ~/.wishrc with netgen.tcl. This executable is
# *only* needed when running without the console; the console itself is
# capable of sourcing the startup script.
#
else
exec /usr/local/lib/netgen/tcl/netgenexec -- "$@"
fi
+753
View File
@@ -0,0 +1,753 @@
# Wishrc startup for ToolScript (netgen)
#
# For installation: Put this file and also tclnetgen.so into
# directory ${CAD_ROOT}/netgen/tcl/, and set the "load" line below
# to point to the location of tclnetgen.so. Also see comments
# in shell script "netgen.sh".
#
# Check namespaces for existence of other applications
set UsingMagic 0
set UsingXCircuit 0
set UsingIRSIM 0
set batchmode 0
set nlist [namespace children]
foreach i $nlist {
switch $i {
::magic { set UsingMagic 1 }
::xcircuit { set UsingXCircuit 1 }
::irsim { set UsingIRSIM 1 }
}
}
# -lazy option not needed if stubs libraries are handled correctly
# load -lazy /usr/local/lib/netgen/tcl/tclnetgen.so
load /usr/local/lib/netgen/tcl/tclnetgen.so
#----------------------------------------------------------------
# Convert LVS list result into a JSON file
#----------------------------------------------------------------
proc netgen::convert_to_json {filename lvs_final} {
set pidx [string last . $filename]
set jsonname [string replace $filename $pidx end ".json"]
if {![catch {open $jsonname w} fjson]} {
puts $fjson "\["
# Outer list is of each cell compared
set clen [llength $lvs_final]
set cidx 0
foreach circuit $lvs_final {
incr cidx
puts $fjson " \{"
set nkeys [llength $circuit]
set kidx 0
foreach {key value} $circuit {
incr kidx 2
switch $key {
name {
puts $fjson " \"${key}\": \["
set cktval [lindex $value 0]
puts $fjson " \"${cktval}\","
set cktval [lindex $value 1]
puts $fjson " \"${cktval}\""
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
pins {
puts $fjson " \"${key}\": \["
puts $fjson " \["
set cktval [lindex $value 0]
foreach pin [lrange $cktval 0 end-1] {
puts $fjson " \"$pin\","
}
set pin [lindex $cktval end]
puts $fjson " \"$pin\""
puts $fjson " \], \["
set cktval [lindex $value 1]
foreach pin [lrange $cktval 0 end-1] {
puts $fjson " \"$pin\","
}
set pin [lindex $cktval end]
puts $fjson " \"$pin\""
puts $fjson " \]"
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
nets {
puts $fjson " \"${key}\": \["
set cktval [lindex $value 0]
puts $fjson " $cktval,"
set cktval [lindex $value 1]
puts $fjson " $cktval"
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
devices {
puts $fjson " \"${key}\": \["
puts $fjson " \["
set cktval [lindex $value 0]
foreach dev [lrange $cktval 0 end-1] {
set devname [lindex $dev 0]
set devnum [lindex $dev 1]
puts $fjson " \[\"${devname}\", ${devnum}\],"
}
set dev [lindex $cktval end]
set devname [lindex $dev 0]
set devnum [lindex $dev 1]
puts $fjson " \[\"${devname}\", ${devnum} \]"
puts $fjson " \], \["
set cktval [lindex $value 1]
foreach dev [lrange $cktval 0 end-1] {
set devname [lindex $dev 0]
set devnum [lindex $dev 1]
puts $fjson " \[\"${devname}\", ${devnum} \],"
}
set dev [lindex $cktval end]
set devname [lindex $dev 0]
set devnum [lindex $dev 1]
puts $fjson " \[\"${devname}\", ${devnum} \]"
puts $fjson " \]"
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
goodnets -
badnets {
puts $fjson " \"${key}\": \["
set glen [llength $value]
set gidx 0
foreach group $value {
incr gidx
puts $fjson " \["
puts $fjson " \["
set cktval [lindex $group 0]
set nlen [llength $cktval]
set nidx 0
foreach net $cktval {
incr nidx
puts $fjson " \["
set netname [string map {"\\" "\\\\"} [lindex $net 0]]
puts $fjson " \"$netname\","
puts $fjson " \["
set netconn [lindex $net 1]
foreach fanout [lrange $netconn 0 end-1] {
set devname [lindex $fanout 0]
set pinname [lindex $fanout 1]
set count [lindex $fanout 2]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$devname\", \"$pinname\", $count \],"
}
set fanout [lindex $netconn end]
set devname [lindex $fanout 0]
set pinname [lindex $fanout 1]
set count [lindex $fanout 2]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$devname\", \"$pinname\", $count \]"
puts $fjson " \]"
if {$nidx == $nlen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
puts $fjson " \], \["
set cktval [lindex $group 1]
set nlen [llength $cktval]
set nidx 0
foreach net $cktval {
incr nidx
puts $fjson " \["
set netname [string map {"\\" "\\\\"} [lindex $net 0]]
puts $fjson " \"$netname\","
puts $fjson " \["
set netconn [lindex $net 1]
foreach fanout [lrange $netconn 0 end-1] {
set devname [lindex $fanout 0]
set pinname [lindex $fanout 1]
set count [lindex $fanout 2]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$devname\", \"$pinname\", $count \],"
}
set fanout [lindex $netconn end]
set devname [lindex $fanout 0]
set pinname [lindex $fanout 1]
set count [lindex $fanout 2]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$devname\", \"$pinname\", $count \]"
puts $fjson " \]"
if {$nidx == $nlen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
puts $fjson " \]"
if {$gidx == $glen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
goodelements -
badelements {
puts $fjson " \"${key}\": \["
set glen [llength $value]
set gidx 0
foreach group $value {
incr gidx
puts $fjson " \["
puts $fjson " \["
set cktval [lindex $group 0]
set ilen [llength $cktval]
set iidx 0
foreach inst $cktval {
incr iidx
puts $fjson " \["
set instname [string map {"\\" "\\\\"} [lindex $inst 0]]
puts $fjson " \"$instname\","
puts $fjson " \["
set instpins [lindex $inst 1]
foreach fanout [lrange $instpins 0 end-1] {
set pinname [lindex $fanout 0]
set count [lindex $fanout 1]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$pinname\", $count \],"
}
set fanout [lindex $instpins end]
set pinname [lindex $fanout 0]
set count [lindex $fanout 1]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$pinname\", $count \]"
puts $fjson " \]"
if {$iidx == $ilen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
puts $fjson " \], \["
set cktval [lindex $group 1]
set ilen [llength $cktval]
set iidx 0
foreach inst $cktval {
incr iidx
puts $fjson " \["
set instname [string map {"\\" "\\\\"} [lindex $inst 0]]
puts $fjson " \"$instname\","
puts $fjson " \["
set instpins [lindex $inst 1]
foreach fanout [lrange $instpins 0 end-1] {
set pinname [lindex $fanout 0]
set count [lindex $fanout 1]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$pinname\", $count \],"
}
set fanout [lindex $instpins end]
set pinname [lindex $fanout 0]
set count [lindex $fanout 1]
if {$count == {}} {set count 0}
puts $fjson " \[ \"$pinname\", $count \]"
puts $fjson " \]"
if {$iidx == $ilen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
puts $fjson " \]"
if {$gidx == $glen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
properties {
puts $fjson " \"${key}\": \["
set plen [llength $value]
set pidx 0
foreach instance $value {
incr pidx
puts $fjson " \["
set instnames [string map {"\\" "\\\\"} [lindex $instance 0]]
set instname0 [string map {"\\" "\\\\"} [lindex $instnames 0]]
puts $fjson " \["
puts $fjson " \"${instname0}\","
puts $fjson " \["
foreach property [lrange $instance 1 end-1] {
set prop0 [lindex $property 0]
set propname [lindex $prop0 0]
set propval [lindex $prop0 1]
puts $fjson " \[\"${propname}\", \"${propval}\"\],"
}
set property [lindex $instance end]
set prop0 [lindex $property 0]
set propname [lindex $prop0 0]
set propval [lindex $prop0 1]
puts $fjson " \[\"${propname}\", \"${propval}\"\]"
puts $fjson " \]"
puts $fjson " \],"
set instname1 [string map {"\\" "\\\\"} [lindex $instnames 1]]
puts $fjson " \["
puts $fjson " \"${instname1}\","
puts $fjson " \["
foreach property [lrange $instance 1 end-1] {
set prop1 [lindex $property 1]
set propname [lindex $prop1 0]
set propval [lindex $prop1 1]
puts $fjson " \[\"${propname}\", \"${propval}\"\],"
}
set property [lindex $instance end]
set prop1 [lindex $property 1]
set propname [lindex $prop1 0]
set propval [lindex $prop1 1]
puts $fjson " \[\"${propname}\", \"${propval}\"\]"
puts $fjson " \]"
puts $fjson " \]"
if {$pidx == $plen} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
if {$kidx == $nkeys} {
puts $fjson " \]"
} else {
puts $fjson " \],"
}
}
}
}
if {$cidx == $clen} {
puts $fjson " \}"
} else {
puts $fjson " \},"
}
}
puts $fjson "\]"
}
close $fjson
}
#----------------------------------------------------------------
# Define the "lvs" command as a way of calling the netgen options
# for standard compare, essentially the same as the old "netcomp"
# standalone program.
#
# Use the "canonical" command to parse the file and cell names,
# although if the cells have not been read in yet, then the
# original syntax of filename or {filename cellname} is required.
#
# "args" is passed to verify and may therefore contain only the
# value "-list" or nothing. If "-list", then output is returned
# as a nested list.
#----------------------------------------------------------------
proc netgen::lvs { name1 name2 {setupfile setup.tcl} {logfile comp.out} args} {
set dolist 0
set dojson 0
foreach arg $args {
if {$arg == "-list"} {
puts stdout "Generating list result"
set dolist 1
set lvs_final {}
} elseif {$arg == "-json"} {
puts stdout "Generating JSON file result"
set dolist 1
set dojson 1
set lvs_final {}
} elseif {$arg == "-blackbox"} {
puts stdout "Treating empty subcircuits as black-box cells"
netgen::model blackbox on
} elseif {$arg == "-full"} {
puts stdout "Using full symmetry breaking method"
netgen::symmetry full
}
}
# Allow name1 or name2 to be a list of {filename cellname},
# A single <filename>, or any valid_cellname form if the
# file has already been read.
if {[catch {set flist1 [canonical $name1]}]} {
if {[llength $name1] == 2} {
set file1 [lindex $name1 0]
set cell1 [lindex $name1 1]
} else {
set file1 $name1
set cell1 $name1
}
puts stdout "Reading netlist file $file1"
set fnum1 [netgen::readnet $file1]
} else {
set cell1 [lindex $flist1 0]
set fnum1 [lindex $flist1 1]
set flist1 [canonical $fnum1]
set file1 [lindex $flist1 0]
}
if {[catch {set flist2 [canonical $name2]}]} {
if {[llength $name2] == 2} {
set file2 [lindex $name2 0]
set cell2 [lindex $name2 1]
} else {
set file2 $name2
set cell2 $name2
}
puts stdout "Reading netlist file $file2"
set fnum2 [netgen::readnet $file2]
} else {
set cell2 [lindex $flist2 0]
set fnum2 [lindex $flist2 1]
set flist2 [canonical $fnum2]
set file2 [lindex $flist2 0]
}
if {$fnum1 == $fnum2} {
puts stderr "Both cells are in the same netlist: Cannot compare!"
return
}
set clist1 [cells list $fnum1]
set cidx [lsearch -regexp $clist1 ^$cell1$]
if {$cidx < 0} {
puts stderr "Cannot find cell $cell1 in file $file1"
return
} else {
set cell1 [lindex $clist1 $cidx]
}
set clist2 [cells list $fnum2]
set cidx [lsearch -regexp $clist2 ^$cell2$]
if {$cidx < 0} {
puts stderr "Cannot find cell $cell2 in file $file2"
return
} else {
set cell2 [lindex $clist2 $cidx]
}
netgen::compare assign "$fnum1 $cell1" "$fnum2 $cell2"
if {[file exists $setupfile]} {
puts stdout "Reading setup file $setupfile"
# Instead of sourcing the setup file, run each line so we can
# catch individual errors and not let them halt the LVS process
set perrors 0
if {![catch {open $setupfile r} fsetup]} {
set sline 0
set command {}
while {[gets $fsetup line] >= 0} {
incr sline
append command $line "\n"
if {[info complete $command]} {
if {[catch {uplevel 1 [list namespace eval netgen $command]} msg]} {
set msg [string trimright $msg "\n"]
puts stderr "Error $setupfile:$sline (ignoring), $msg"
incr perrors
}
set command {}
}
}
close $fsetup
} else {
puts stdout "Error: Cannot read the setup file $setupfile"
}
if {$perrors > 0} {
puts stdout "Warning: There were errors reading the setup file"
}
} elseif {[string first nosetup $setupfile] < 0} {
netgen::permute default ;# transistors and resistors
netgen::property default
}
if {[string first nolog $logfile] < 0} {
puts stdout "Comparison output logged to file $logfile"
netgen::log file $logfile
netgen::log start
netgen::log echo off
set dolog true
} else {
set dolog false
}
if {$dolist == 1} {
set endval [netgen::compare -list hierarchical "$fnum1 $cell1" "$fnum2 $cell2"]
} else {
set endval [netgen::compare hierarchical "$fnum1 $cell1" "$fnum2 $cell2"]
}
if {$endval == {}} {
netgen::log put "No cells in queue!\n"
return
}
set properr {}
set pinsgood 0
while {$endval != {}} {
if {$dolist == 1} {
netgen::run -list converge
} else {
netgen::run converge
}
netgen::log echo on
if {[verify equivalent]} {
# Resolve automorphisms by pin and property
if {$dolist == 1} {
netgen::run -list resolve
} else {
netgen::run resolve
}
set uresult [verify unique]
if {$uresult == 0} {
netgen::log put " Networks match locally but not globally.\n"
netgen::log put " Probably connections are swapped.\n"
netgen::log put " Check the end of logfile ${logfile} for implicated nodes.\n"
if {$dolist == 1} {
verify -list nodes
} else {
verify nodes
}
# Flatten the non-matching subcircuit (but not the top-level cells)
if {[netgen::print queue] != {}} {
netgen::log put " Flattening non-matched subcircuits $endval"
netgen::flatten class "[lindex $endval 0] $fnum1"
netgen::flatten class "[lindex $endval 1] $fnum2"
}
} else {
# Match pins
netgen::log echo off
if {$dolist == 1} {
set result [equate -list pins "$fnum1 [lindex $endval 0]" \
"$fnum2 [lindex $endval 1]"]
} else {
set result [equate pins "$fnum1 [lindex $endval 0]" \
"$fnum2 [lindex $endval 1]"]
}
if {$result != 0} {
equate classes "$fnum1 [lindex $endval 0]" \
"$fnum2 [lindex $endval 1]"
}
set pinsgood $result
netgen::log echo on
}
if {$uresult == 2} {lappend properr [lindex $endval 0]}
} else {
# Flatten the non-matching subcircuit (but not the top-level cells)
if {[netgen::print queue] != {}} {
netgen::log put " Flattening non-matched subcircuits $endval"
netgen::flatten class "[lindex $endval 0] $fnum1"
netgen::flatten class "[lindex $endval 1] $fnum2"
}
}
netgen::log echo off
if {$dolist == 1} {
catch {lappend lvs_final $lvs_out}
set lvs_out {}
set endval [netgen::compare -list hierarchical]
} else {
set endval [netgen::compare hierarchical]
}
}
netgen::log echo off
puts stdout "Result: " nonewline
netgen::log echo on
if {$pinsgood == 0} {
netgen::log put "The top level cell failed pin matching.\n"
} else {
verify only
}
if {$properr != {}} {
netgen::log put "The following cells had property errors: $properr\n"
}
if {$dolog} {
netgen::log end
}
puts stdout "LVS Done."
if {$dojson == 1} {
netgen::convert_to_json $logfile $lvs_final
} elseif {$dolist == 1} {
return $lvs_final
}
}
# It is important to make sure no netgen commands overlap with Tcl built-in
# commands, because otherwise the namespace import will fail.
proc pushnamespace { name } {
set y [namespace eval ${name} info commands ::${name}::*]
set z [info commands]
foreach v $y {
regsub -all {\*} $v {\\*} i
set x [namespace tail $i]
if {[lsearch $z $x] < 0} {
namespace import $i
} else {
puts "Warning: ${name} command '$x' use fully-qualified name '$v'"
}
}
}
proc popnamespace { name } {
set z [info commands]
set l [expr [string length ${name}] + 5]
while {[set v [lsearch $z ${name}_tcl_*]] >= 0} {
set y [lindex $z $v]
set w [string range $y $l end]
interp alias {} ::$w {}
rename ::$y ::$w
puts "Info: replacing ::$w with ::$y"
}
namespace forget ::${name}::*
}
set auto_noexec 1 ;# don't EVER call UNIX commands w/o "shell" in front
#----------------------------------------------------------------------
# Cross-Application section
#----------------------------------------------------------------------
# Setup IRSIM assuming that the Tcl version is installed.
# We do not need to rename procedure irsim to NULL because it is
# redefined in a script, which simply overwrites the original.
proc irsim { args } {
global CAD_ROOT
set irsimscript [glob -nocomplain ${CAD_ROOT}/irsim/tcl/irsim.tcl]
if { ${irsimscript} == {} } {
puts stderr "\"irsim\" requires Tcl-based IRSIM version 9.6 or newer."
puts stderr "Could not find script \"irsim.tcl\". If IRSIM is installed in a"
puts stderr "place other than CAD_ROOT (=${CAD_ROOT}), use the command"
puts stderr "\"source <path>/irsim.tcl\" before doing \"irsim\"."
} else {
source $irsimscript
eval {irsim} $args
}
}
# Setup Xcircuit assuming that the Tcl version is installed.
proc xcircuit { args } {
global CAD_ROOT
global argc
global argv
set xcircscript [glob -nocomplain ${CAD_ROOT}/xcircuit*/xcircuit.tcl]
if { ${xcircscript} == {} } {
puts stderr "\"xcircuit\" requires Tcl-based XCircuit version 3.1 or newer."
puts stderr "Could not find script \"xcircuit.tcl\". If XCircuit is installed in a"
puts stderr "place other than CAD_ROOT (=${CAD_ROOT}), use the command"
puts stderr "\"source <path>/xcircuit.tcl\"."
} else {
# if there are multiple installed versions, choose the highest version.
if {[llength $xcircscript] > 1} {
set xcircscript [lindex [lsort -decreasing -dictionary $xcircscript] 0]
}
set argv $args
set argc [llength $args]
uplevel #0 source $xcircscript
}
}
# Setup Magic assuming that the Tcl version is installed.
proc magic { args } {
global CAD_ROOT
global argc
global argv
set magicscript [glob -nocomplain ${CAD_ROOT}/magic/tcl/magic.tcl]
if { ${magicscript} == {} } {
puts stderr "\"magic\" requires Tcl-based Magic version 7.2 or newer."
puts stderr "Could not find script \"magic.tcl\". If Magic is installed in a"
puts stderr "place other than CAD_ROOT (=${CAD_ROOT}), use the command"
puts stderr "\"source <path>/magic.tcl\"."
} else {
set argv $args
set argc [llength $args]
uplevel #0 source $magicscript
}
}
#----------------------------------------------------------------------------
# Have we called netgen from tkcon or a clone thereof? If so, set NetgenConsole
#----------------------------------------------------------------------------
if {! $UsingMagic } {
if {[lsearch [interp aliases] tkcon] != -1} {
set NetgenConsole tkcon
wm withdraw .
}
}
pushnamespace netgen
#----------------------------------------------------------------------------
# For now, if we are standalone, pop down the default Tk window.
# Sometime later we may wish to provide a standalone GUI frontend in Tk
# to improve upon the original X11 "xnetgen" frontend. If so, its
# definitions would go below.
if {! $UsingMagic } {
if {[lsearch [interp aliases] tkcon] != -1} {
if {[string range [wm title .] 0 3] == "wish"} {
wm withdraw .
}
}
}
#----------------------------------------------------------------------------
# No-console mode drops "--" in front of the argument list and "-noc"
# is retained, so remove them. Internally, the console will be determined
# by checking for a slave interpreter, so there is no need for any
# action here other than removing the argument.
if {[lindex $argv 0] == "--"} {
incr argc -1
set argv [lrange $argv 1 end]
}
if {[string range [lindex $argv 0] 0 3] == "-noc"} {
incr argc -1
set argv [lrange $argv 1 end]
}
if {[string range [lindex $argv 0] 0 3] == "-bat"} {
incr argc -1
set argv [lrange $argv 1 end]
set batchmode 1
}
#----------------------------------------------------------------------------
# Anything on the command line is assumed to be a netgen command to evaluate
if {[catch {eval $argv}]} {
puts stdout "$errorInfo"
}
if {$batchmode == 1} {quit}
#----------------------------------------------------------------------------
# Netgen start function drops back to interpreter after initialization & setup
+10 -1
View File
@@ -382,6 +382,9 @@ proc netgen::lvs { name1 name2 {setupfile setup.tcl} {logfile comp.out} args} {
} elseif {$arg == "-blackbox"} {
puts stdout "Treating empty subcircuits as black-box cells"
netgen::model blackbox on
} elseif {$arg == "-full"} {
puts stdout "Using full symmetry breaking method"
netgen::symmetry full
}
}
@@ -501,6 +504,7 @@ proc netgen::lvs { name1 name2 {setupfile setup.tcl} {logfile comp.out} args} {
return
}
set properr {}
set pinsgood 0
while {$endval != {}} {
if {$dolist == 1} {
netgen::run -list converge
@@ -546,6 +550,7 @@ proc netgen::lvs { name1 name2 {setupfile setup.tcl} {logfile comp.out} args} {
equate classes "$fnum1 [lindex $endval 0]" \
"$fnum2 [lindex $endval 1]"
}
set pinsgood $result
netgen::log echo on
}
if {$uresult == 2} {lappend properr [lindex $endval 0]}
@@ -569,7 +574,11 @@ proc netgen::lvs { name1 name2 {setupfile setup.tcl} {logfile comp.out} args} {
netgen::log echo off
puts stdout "Result: " nonewline
netgen::log echo on
verify only
if {$pinsgood == 0} {
netgen::log put "The top level cell failed pin matching.\n"
} else {
verify only
}
if {$properr != {}} {
netgen::log put "The following cells had property errors: $properr\n"
}
+87 -6
View File
@@ -94,6 +94,7 @@ int _netcmp_ignore(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_permute(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_property(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_exhaustive(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_symmetry(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_restart(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_global(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
int _netcmp_convert(ClientData, Tcl_Interp *, int, Tcl_Obj *CONST objv[]);
@@ -244,6 +245,9 @@ Command netcmp_cmds[] = {
{"exhaustive", _netcmp_exhaustive,
"\n "
"toggle exhaustive subdivision"},
{"symmetry", _netcmp_symmetry,
"[fast|full]\n "
"apply method for symmetry breaking"},
{"restart", _netcmp_restart,
"\n "
"start over (reset data structures)"},
@@ -1532,23 +1536,24 @@ int
_netgen_model(ClientData clientData,
Tcl_Interp *interp, int objc, Tcl_Obj *CONST objv[])
{
struct nlist *tp;
struct nlist *tp, *tp2;
char *model, *retclass;
unsigned char class;
int fnum = -1;
int result, index, nports;
int result, index, nports, nports2;
char *modelclasses[] = {
"undefined", "nmos", "pmos", "pnp", "npn",
"resistor", "capacitor", "diode",
"inductor", "module", "blackbox", "xline",
"moscap", "mosfet", "bjt", "subcircuit", NULL
"moscap", "mosfet", "bjt", "subcircuit", "copy",
NULL
};
enum OptionIdx {
UNDEF_IDX, NMOS_IDX, PMOS_IDX, PNP_IDX, NPN_IDX,
RES_IDX, CAP_IDX, DIODE_IDX, INDUCT_IDX,
MODULE_IDX, BLACKBOX_IDX, XLINE_IDX, MOSCAP_IDX,
MOSFET_IDX, BJT_IDX, SUBCKT_IDX
MOSFET_IDX, BJT_IDX, SUBCKT_IDX, COPY_IDX
};
if (objc != 3 && objc != 2) {
@@ -1580,7 +1585,7 @@ _netgen_model(ClientData clientData,
if (objc == 3) {
model = Tcl_GetString(objv[2]);
nports = NumberOfPorts(model);
nports = NumberOfPorts(model, fnum);
if (Tcl_GetIndexFromObj(interp, objv[2], (CONST84 char **)modelclasses,
"class", 0, &index) != TCL_OK) {
@@ -1644,6 +1649,40 @@ _netgen_model(ClientData clientData,
break;
case SUBCKT_IDX:
class = CLASS_SUBCKT;
break;
case COPY_IDX:
/* "copy" is not a class, but indicates that the cell, */
/* if undefined or a module, should have its class */
/* taken from the other circuit, if that circuit has a */
/* cell of the same name. */
if (Circuit1 == NULL || Circuit2 == NULL) {
Tcl_SetResult(interp, "Circuits have not been queued for comparison.",
NULL);
return TCL_ERROR;
}
if (tp == Circuit1) {
tp2 = LookupCellFile(tp->name, Circuit2->file);
nports2 = NumberOfPorts(tp2->name, Circuit2->file);
}
else if (tp == Circuit2) {
tp2 = LookupCellFile(tp->name, Circuit1->file);
nports2 = NumberOfPorts(tp2->name, Circuit1->file);
}
else {
Tcl_SetResult(interp, "The referenced netlist is not being compared.",
NULL);
return TCL_ERROR;
}
/* Should a non-matching number of ports be considered a fatal error? */
// if (nports2 != nports) {
// Tcl_SetResult(interp, "The number of ports for this cell does not "
// "match between netlists.", NULL);
// return TCL_ERROR;
// }
class = tp2->class;
/* To do (maybe): Rename tp ports to match tp2? */
break;
}
tp->class = class;
@@ -3937,6 +3976,48 @@ _netcmp_permute(ClientData clientData,
return TCL_OK;
}
/*------------------------------------------------------*/
/* Function name: _netcmp_symmetry */
/* Syntax: netgen::symmetry [fast|full] */
/* Formerly: x */
/* Results: */
/* Side Effects: */
/*------------------------------------------------------*/
int
_netcmp_symmetry(ClientData clientData,
Tcl_Interp *interp, int objc, Tcl_Obj *CONST objv[])
{
char *fastfull[] = {
"fast", "full", NULL
};
enum OptionIdx {
FAST_IDX, FULL_IDX
};
int result, index;
if (objc == 1)
index = -1;
else {
if (Tcl_GetIndexFromObj(interp, objv[1], (CONST84 char **)fastfull,
"option", 0, &index) != TCL_OK)
return TCL_ERROR;
}
switch(index) {
case FAST_IDX:
FastSymmetryBreaking = TRUE;
break;
case FULL_IDX:
FastSymmetryBreaking = FALSE;
break;
}
Printf("Symmetry breaking method: %s.\n",
FastSymmetryBreaking ? "FAST" : "FULL");
return TCL_OK;
}
/*------------------------------------------------------*/
/* Function name: _netcmp_exhaustive */
/* Syntax: netgen::exhaustive [on|off] */
@@ -3958,7 +4039,7 @@ _netcmp_exhaustive(ClientData clientData,
int result, index;
if (objc == 1)
index = YES_IDX;
index = -1;
else {
if (Tcl_GetIndexFromObj(interp, objv[1], (CONST84 char **)yesno,
"option", 0, &index) != TCL_OK)