Commit 17ab7c71 by Alan Mishchenko

Version abc80702_2

parent 303baf27
......@@ -22,6 +22,7 @@
#include "ntl.h"
#include "bzlib.h"
#include "zlib.h"
////////////////////////////////////////////////////////////////////////
/// DECLARATIONS ///
......@@ -84,6 +85,7 @@ static Ioa_ReadMod_t * Ioa_ReadModAlloc();
static void Ioa_ReadModFree( Ioa_ReadMod_t * p );
static char * Ioa_ReadLoadFile( char * pFileName );
static char * Ioa_ReadLoadFileBz2( char * pFileName );
static char * Ioa_ReadLoadFileGz( char * pFileName );
static void Ioa_ReadReadPreparse( Ioa_ReadMan_t * p );
static int Ioa_ReadReadInterfaces( Ioa_ReadMan_t * p );
static Ntl_Man_t * Ioa_ReadParse( Ioa_ReadMan_t * p );
......@@ -137,6 +139,8 @@ Ntl_Man_t * Ioa_ReadBlif( char * pFileName, int fCheck )
p->pFileName = pFileName;
if ( !strncmp(pFileName+strlen(pFileName)-4,".bz2",4) )
p->pBuffer = Ioa_ReadLoadFileBz2( pFileName );
else if ( !strncmp(pFileName+strlen(pFileName)-3,".gz",3) )
p->pBuffer = Ioa_ReadLoadFileGz( pFileName );
else
p->pBuffer = Ioa_ReadLoadFile( pFileName );
if ( p->pBuffer == NULL )
......@@ -541,6 +545,39 @@ static char * Ioa_ReadLoadFileBz2( char * pFileName )
/**Function*************************************************************
Synopsis [Reads the file into a character buffer.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
static char * Ioa_ReadLoadFileGz( char * pFileName )
{
const int READ_BLOCK_SIZE = 100000;
FILE * pFile;
char * pContents;
int amtRead, readBlock, nFileSize = READ_BLOCK_SIZE;
pFile = gzopen( pFileName, "rb" ); // if pFileName doesn't end in ".gz" then this acts as a passthrough to fopen
pContents = ALLOC( char, nFileSize );
readBlock = 0;
while ((amtRead = gzread(pFile, pContents + readBlock * READ_BLOCK_SIZE, READ_BLOCK_SIZE)) == READ_BLOCK_SIZE) {
//printf("%d: read %d bytes\n", readBlock, amtRead);
nFileSize += READ_BLOCK_SIZE;
pContents = REALLOC(char, pContents, nFileSize);
++readBlock;
}
//printf("%d: read %d bytes\n", readBlock, amtRead);
assert( amtRead != -1 ); // indicates a zlib error
nFileSize -= (READ_BLOCK_SIZE - amtRead);
gzclose(pFile);
return pContents;
}
/**Function*************************************************************
Synopsis [Prepares the parsing.]
Description [Performs several preliminary operations:
......
......@@ -23,8 +23,9 @@
#include "ntl.h"
#include "ioa.h"
#include "bzlib.h"
#include <stdarg.h>
#include "bzlib.h"
#include "zlib.h"
#ifdef _WIN32
#define vsnprintf _vsnprintf
......@@ -286,6 +287,180 @@ int fprintfBz2(bz2file * b, char * fmt, ...) {
}
}
/**Function*************************************************************
Synopsis [Writes one model into the BLIF file.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Ioa_WriteBlifModelGz( gzFile pFile, Ntl_Mod_t * pModel, int fMain )
{
Ntl_Obj_t * pObj;
Ntl_Net_t * pNet;
float Delay;
int i, k;
gzprintf( pFile, ".model %s\n", pModel->pName );
if ( pModel->attrWhite || pModel->attrBox || pModel->attrComb || pModel->attrKeep )
{
gzprintf( pFile, ".attrib" );
gzprintf( pFile, " %s", pModel->attrWhite? "white": "black" );
gzprintf( pFile, " %s", pModel->attrBox? "box" : "logic" );
gzprintf( pFile, " %s", pModel->attrComb? "comb" : "seq" );
// gzprintf( pFile, " %s", pModel->attrKeep? "keep" : "sweep" );
gzprintf( pFile, "\n" );
}
gzprintf( pFile, ".inputs" );
Ntl_ModelForEachPi( pModel, pObj, i )
gzprintf( pFile, " %s", Ntl_ObjFanout0(pObj)->pName );
gzprintf( pFile, "\n" );
gzprintf( pFile, ".outputs" );
Ntl_ModelForEachPo( pModel, pObj, i )
gzprintf( pFile, " %s", Ntl_ObjFanin0(pObj)->pName );
gzprintf( pFile, "\n" );
// write delays
if ( pModel->vDelays )
{
for ( i = 0; i < Vec_IntSize(pModel->vDelays); i += 3 )
{
gzprintf( pFile, ".delay" );
if ( Vec_IntEntry(pModel->vDelays,i) != -1 )
gzprintf( pFile, " %s", Ntl_ObjFanout0(Ntl_ModelPi(pModel, Vec_IntEntry(pModel->vDelays,i)))->pName );
if ( Vec_IntEntry(pModel->vDelays,i+1) != -1 )
gzprintf( pFile, " %s", Ntl_ObjFanin0(Ntl_ModelPo(pModel, Vec_IntEntry(pModel->vDelays,i+1)))->pName );
gzprintf( pFile, " %.3f", Aig_Int2Float(Vec_IntEntry(pModel->vDelays,i+2)) );
gzprintf( pFile, "\n" );
}
}
if ( pModel->vTimeInputs )
{
for ( i = 0; i < Vec_IntSize(pModel->vTimeInputs); i += 2 )
{
if ( fMain )
gzprintf( pFile, ".input_arrival" );
else
gzprintf( pFile, ".input_required" );
if ( Vec_IntEntry(pModel->vTimeInputs,i) != -1 )
gzprintf( pFile, " %s", Ntl_ObjFanout0(Ntl_ModelPi(pModel, Vec_IntEntry(pModel->vTimeInputs,i)))->pName );
Delay = Aig_Int2Float(Vec_IntEntry(pModel->vTimeInputs,i+1));
if ( Delay == -TIM_ETERNITY )
gzprintf( pFile, " -inf" );
else if ( Delay == TIM_ETERNITY )
gzprintf( pFile, " inf" );
else
gzprintf( pFile, " %.3f", Delay );
gzprintf( pFile, "\n" );
}
}
if ( pModel->vTimeOutputs )
{
for ( i = 0; i < Vec_IntSize(pModel->vTimeOutputs); i += 2 )
{
if ( fMain )
gzprintf( pFile, ".output_required" );
else
gzprintf( pFile, ".output_arrival" );
if ( Vec_IntEntry(pModel->vTimeOutputs,i) != -1 )
gzprintf( pFile, " %s", Ntl_ObjFanin0(Ntl_ModelPo(pModel, Vec_IntEntry(pModel->vTimeOutputs,i)))->pName );
Delay = Aig_Int2Float(Vec_IntEntry(pModel->vTimeOutputs,i+1));
if ( Delay == -TIM_ETERNITY )
gzprintf( pFile, " -inf" );
else if ( Delay == TIM_ETERNITY )
gzprintf( pFile, " inf" );
else
gzprintf( pFile, " %.3f", Delay );
gzprintf( pFile, "\n" );
}
}
// write objects
Ntl_ModelForEachObj( pModel, pObj, i )
{
if ( Ntl_ObjIsNode(pObj) )
{
gzprintf( pFile, ".names" );
Ntl_ObjForEachFanin( pObj, pNet, k )
gzprintf( pFile, " %s", pNet->pName );
gzprintf( pFile, " %s\n", Ntl_ObjFanout0(pObj)->pName );
gzprintf( pFile, "%s", pObj->pSop );
}
else if ( Ntl_ObjIsLatch(pObj) )
{
gzprintf( pFile, ".latch" );
gzprintf( pFile, " %s", Ntl_ObjFanin0(pObj)->pName );
gzprintf( pFile, " %s", Ntl_ObjFanout0(pObj)->pName );
assert( pObj->LatchId.regType == 0 || pObj->LatchId.regClass == 0 );
if ( pObj->LatchId.regType )
{
if ( pObj->LatchId.regType == 1 )
gzprintf( pFile, " fe" );
else if ( pObj->LatchId.regType == 2 )
gzprintf( pFile, " re" );
else if ( pObj->LatchId.regType == 3 )
gzprintf( pFile, " ah" );
else if ( pObj->LatchId.regType == 4 )
gzprintf( pFile, " al" );
else if ( pObj->LatchId.regType == 5 )
gzprintf( pFile, " as" );
else
assert( 0 );
}
else if ( pObj->LatchId.regClass )
gzprintf( pFile, " %d", pObj->LatchId.regClass );
if ( pObj->pClock )
gzprintf( pFile, " %s", pObj->pClock->pName );
gzprintf( pFile, " %d", pObj->LatchId.regInit );
gzprintf( pFile, "\n" );
}
else if ( Ntl_ObjIsBox(pObj) )
{
gzprintf( pFile, ".subckt %s", pObj->pImplem->pName );
Ntl_ObjForEachFanin( pObj, pNet, k )
gzprintf( pFile, " %s=%s", Ntl_ModelPiName(pObj->pImplem, k), pNet->pName );
Ntl_ObjForEachFanout( pObj, pNet, k )
gzprintf( pFile, " %s=%s", Ntl_ModelPoName(pObj->pImplem, k), pNet->pName );
gzprintf( pFile, "\n" );
}
}
gzprintf( pFile, ".end\n\n" );
}
/**Function*************************************************************
Synopsis [Writes the logic network into the BLIF file.]
Description []
SideEffects []
SeeAlso []
***********************************************************************/
void Ioa_WriteBlifGz( Ntl_Man_t * p, char * pFileName )
{
Ntl_Mod_t * pModel;
int i;
gzFile pFile;
// start the output stream
pFile = gzopen( pFileName, "wb" ); // if pFileName doesn't end in ".gz" then this acts as a passthrough to fopen
if ( pFile == NULL )
{
fprintf( stdout, "Ioa_WriteBlif(): Cannot open the output file \"%s\".\n", pFileName );
return;
}
gzprintf( pFile, "# Benchmark \"%s\" written by ABC-8 on %s\n", p->pName, Ioa_TimeStamp() );
// write the models
Ntl_ManForEachModel( p, pModel, i )
Ioa_WriteBlifModelGz( pFile, pModel, i==0 );
// close the file
gzclose( pFile );
}
/**Function*************************************************************
......@@ -443,8 +618,15 @@ void Ioa_WriteBlif( Ntl_Man_t * p, char * pFileName )
{
Ntl_Mod_t * pModel;
int i, bzError;
bz2file b;
// write the GZ file
if (!strncmp(pFileName+strlen(pFileName)-3,".gz",3))
{
Ioa_WriteBlifGz( p, pFileName );
return;
}
memset(&b,0,sizeof(b));
b.nBytesMax = (1<<12);
b.buf = ALLOC( char,b.nBytesMax );
......
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