version 1.64, 2008/11/18 20:52:47 |
version 1.69, 2013/11/21 06:48:04 |
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* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* |
* |
* $OpenXM: OpenXM_contrib2/asir2000/parse/eval.c,v 1.63 2008/09/01 06:20:33 noro Exp $ |
* $OpenXM: OpenXM_contrib2/asir2000/parse/eval.c,v 1.68 2011/02/18 02:54:49 noro Exp $ |
*/ |
*/ |
#include <ctype.h> |
#include <ctype.h> |
#include "ca.h" |
#include "ca.h" |
Line 917 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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Line 917 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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} else |
} else |
opts = 0; |
opts = 0; |
if ( !n ) { |
if ( !n ) { |
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current_option = opts; |
cur_binf = f; |
cur_binf = f; |
(*f->f.binf)(&val); |
(*f->f.binf)(&val); |
} else { |
} else { |
Line 943 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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Line 944 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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} |
} |
if ( !stack_base ) { |
if ( !stack_base ) { |
#if defined(GC7) |
#if defined(GC7) |
struct GC_stack_base sb; |
stack_base = (void *)GC_get_main_stack_base(); |
GC_get_stack_base(&sb); |
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stack_base = (void *)sb.mem_base; |
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#else |
#else |
stack_base = (void *)GC_get_stack_base(); |
stack_base = (void *)GC_get_stack_base(); |
#endif |
#endif |
Line 989 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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Line 988 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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for ( tn = f->f.usrf->args, sn = BDY(args); |
for ( tn = f->f.usrf->args, sn = BDY(args); |
sn; tn = NEXT(tn), sn = NEXT(sn) ) |
sn; tn = NEXT(tn), sn = NEXT(sn) ) |
ASSPV((int)FA0((FNODE)BDY(tn)),BDY(sn)); |
ASSPV((int)FA0((FNODE)BDY(tn)),BDY(sn)); |
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f_return = f_break = f_continue = 0; |
if ( f->f.usrf->module ) { |
if ( f->f.usrf->module ) { |
prev_mpvs = MPVS; |
prev_mpvs = MPVS; |
MPVS = f->f.usrf->module->pvs; |
MPVS = f->f.usrf->module->pvs; |
Line 997 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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Line 997 pointer evalf(FUNC f,FNODE a,FNODE opt) |
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} else |
} else |
val = evalstat((SNODE)BDY(f->f.usrf)); |
val = evalstat((SNODE)BDY(f->f.usrf)); |
f_return = f_break = f_continue = 0; poppvs(); |
f_return = f_break = f_continue = 0; poppvs(); |
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if ( PVSS ) |
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evalstatline = ((VS)BDY(PVSS))->at; |
break; |
break; |
case A_PURE: |
case A_PURE: |
args = (LIST)eval(a); |
args = (LIST)eval(a); |
Line 1165 pointer bevalf(FUNC f,NODE a) |
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Line 1167 pointer bevalf(FUNC f,NODE a) |
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} |
} |
switch ( f->id ) { |
switch ( f->id ) { |
case A_BIN: |
case A_BIN: |
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current_option = 0; |
if ( !n ) { |
if ( !n ) { |
cur_binf = f; |
cur_binf = f; |
(*f->f.binf)(&val); |
(*f->f.binf)(&val); |
Line 1197 pointer bevalf(FUNC f,NODE a) |
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Line 1200 pointer bevalf(FUNC f,NODE a) |
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for ( tn = f->f.usrf->args, sn = a; |
for ( tn = f->f.usrf->args, sn = a; |
sn; tn = NEXT(tn), sn = NEXT(sn) ) |
sn; tn = NEXT(tn), sn = NEXT(sn) ) |
ASSPV((int)FA0((FNODE)BDY(tn)),BDY(sn)); |
ASSPV((int)FA0((FNODE)BDY(tn)),BDY(sn)); |
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f_return = f_break = f_continue = 0; |
if ( f->f.usrf->module ) { |
if ( f->f.usrf->module ) { |
prev_mpvs = MPVS; |
prev_mpvs = MPVS; |
MPVS = f->f.usrf->module->pvs; |
MPVS = f->f.usrf->module->pvs; |
Line 1275 pointer bevalf_with_opts(FUNC f,NODE a,NODE opts) |
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Line 1279 pointer bevalf_with_opts(FUNC f,NODE a,NODE opts) |
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for ( tn = f->f.usrf->args, sn = a; |
for ( tn = f->f.usrf->args, sn = a; |
sn; tn = NEXT(tn), sn = NEXT(sn) ) |
sn; tn = NEXT(tn), sn = NEXT(sn) ) |
ASSPV((int)FA0((FNODE)BDY(tn)),BDY(sn)); |
ASSPV((int)FA0((FNODE)BDY(tn)),BDY(sn)); |
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f_return = f_break = f_continue = 0; |
if ( f->f.usrf->module ) { |
if ( f->f.usrf->module ) { |
prev_mpvs = MPVS; |
prev_mpvs = MPVS; |
MPVS = f->f.usrf->module->pvs; |
MPVS = f->f.usrf->module->pvs; |
Line 1339 pointer evalpf(PF pf,NODE args,NODE dargs) |
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Line 1344 pointer evalpf(PF pf,NODE args,NODE dargs) |
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simplify_ins(ins,&s); |
simplify_ins(ins,&s); |
} else { |
} else { |
s = pf->body; |
s = pf->body; |
if ( dnode ) { |
if ( dargs ) { |
for ( i = 0, dnode = dargs; dnode; dnode = NEXT(dnode), i++ ) { |
for ( i = 0, dnode = dargs; dnode; dnode = NEXT(dnode), i++ ) { |
di = QTOS((Q)dnode->body); |
di = QTOS((Q)dnode->body); |
for ( j = 0; j < di; j++ ) { |
for ( j = 0; j < di; j++ ) { |