version 1.18, 2004/09/05 08:08:41 |
version 1.38, 2015/09/29 01:52:14 |
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/* $OpenXM: OpenXM/src/kan96xx/Kan/stackmachine.c,v 1.17 2004/09/05 01:15:47 takayama Exp $ */ |
/* $OpenXM: OpenXM/src/kan96xx/Kan/stackmachine.c,v 1.37 2015/09/27 08:12:42 takayama Exp $ */ |
/* stackmachin.c */ |
/* stackmachin.c */ |
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#include <stdio.h> |
#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
#include "datatype.h" |
#include "datatype.h" |
#include "stackm.h" |
#include "stackm.h" |
#include "extern.h" |
#include "extern.h" |
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#include <signal.h> |
#include <signal.h> |
#include <sys/types.h> |
#include <sys/types.h> |
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/* The msys2 seems to make a buffer overflow of EnvOfStackmachine[]. |
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The code |
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[(x) ring_of_differential_operators 11] define_ring |
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( Dx*(x+Dx) ) /ff set |
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causes the segfault because Mp_zero is borken. Is it a bug of msys2? |
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Anyway, the following definition seems to be a workaround. 2015.09 |
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Singnals do not work properly on msys2. (gcc -dM -E ... to see macros defs) |
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*/ |
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#if defined(__MSYS__) || defined(__CYGWIN__) |
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#define setjmp(e) _setjmp(e) |
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#define sigsetjmp(e,n) _setjmp(e) |
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#endif |
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/* #define OPERAND_STACK_SIZE 2000 */ |
/* #define OPERAND_STACK_SIZE 2000 */ |
#define OPERAND_STACK_SIZE 30000 |
#define OPERAND_STACK_SIZE 30000 |
Line 52 struct context *CurrentContextp = &StandardContext; |
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Line 66 struct context *CurrentContextp = &StandardContext; |
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struct context *PrimitiveContextp = &StandardContext; |
struct context *PrimitiveContextp = &StandardContext; |
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static struct object ObjTmp; /* for poor compiler */ |
static struct object ObjTmp = OINIT; /* for poor compiler */ |
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int Calling_ctrlC_hook = 0; |
int Calling_ctrlC_hook = 0; |
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Line 74 static strToInteger(char *); |
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Line 88 static strToInteger(char *); |
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static power(int s,int i); |
static power(int s,int i); |
static void pstack(void); |
static void pstack(void); |
static struct object executableStringToExecutableArray(char *str); |
static struct object executableStringToExecutableArray(char *str); |
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static int isThereExecutableArrayOnStack(int n); |
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extern int SerialCurrent; |
extern int SerialCurrent; |
extern int QuoteMode; |
extern int QuoteMode; |
Line 83 int UserCtrlC = 0; |
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Line 98 int UserCtrlC = 0; |
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int OXlock = 0; |
int OXlock = 0; |
int OXlockSaved = 0; |
int OXlockSaved = 0; |
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char *UD_str; |
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int UD_attr; |
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struct object *MsgStackTraceInArrayp = NULL; |
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char *MsgStackTrace = NULL; |
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char *MsgSourceTrace = NULL; |
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struct object * newObject() |
struct object * newObject() |
{ |
{ |
struct object *r; |
struct object *r; |
Line 91 struct object * newObject() |
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Line 113 struct object * newObject() |
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r->tag = 0; |
r->tag = 0; |
(r->lc).ival = 0; |
(r->lc).ival = 0; |
(r->rc).ival = 0; |
(r->rc).ival = 0; |
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r->attr = NULL; |
return(r); |
return(r); |
} |
} |
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struct object newObjectArray(size) |
struct object newObjectArray(size) |
int size; |
int size; |
{ |
{ |
struct object rob; |
struct object rob = OINIT; |
struct object *op; |
struct object *op; |
if (size < 0) return(NullObject); |
if (size < 0) return(NullObject); |
if (size > 0) { |
if (size > 0) { |
Line 218 int putUserDictionary(str,h0,h1,ob,dic) |
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Line 241 int putUserDictionary(str,h0,h1,ob,dic) |
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} |
} |
r = x; |
r = x; |
if (Strict2) { |
if (Strict2) { |
switch((dic[x]).attr) { |
switch(((dic[x]).attr) & (PROTECT | ABSOLUTE_PROTECT)) { |
case PROTECT: |
case PROTECT: |
r = -PROTECT; /* Protected, but we rewrite it. */ |
r = -PROTECT; /* Protected, but we rewrite it. */ |
break; |
break; |
Line 226 int putUserDictionary(str,h0,h1,ob,dic) |
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Line 249 int putUserDictionary(str,h0,h1,ob,dic) |
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r = -ABSOLUTE_PROTECT; /* Protected and we do not rewrite it. */ |
r = -ABSOLUTE_PROTECT; /* Protected and we do not rewrite it. */ |
return(r); |
return(r); |
default: |
default: |
(dic[x]).attr = 0; |
/* (dic[x]).attr = 0; */ /* It is not necesarry, I think. */ |
break; |
break; |
} |
} |
} |
} |
Line 249 struct object findUserDictionary(str,h0,h1,cp) |
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Line 272 struct object findUserDictionary(str,h0,h1,cp) |
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char *str; /* key */ |
char *str; /* key */ |
int h0,h1; /* The hashing values of the key. */ |
int h0,h1; /* The hashing values of the key. */ |
struct context *cp; |
struct context *cp; |
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/* Set char *UD_str, int UD_attr (attributes) */ |
{ |
{ |
int x; |
int x; |
struct dictionary *dic; |
struct dictionary *dic; |
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extern char *UD_str; |
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extern int UD_attr; |
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UD_str = NULL; UD_attr = -1; |
dic = cp->userDictionary; |
dic = cp->userDictionary; |
x = h0; |
x = h0; |
while (1) { |
while (1) { |
if ((dic[x]).key == EMPTY) { break; } |
if ((dic[x]).key == EMPTY) { break; } |
if (strcmp((dic[x]).key,str) == 0) { |
if (strcmp((dic[x]).key,str) == 0) { |
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UD_str = (dic[x]).key; UD_attr = (dic[x]).attr; |
return( (dic[x]).obj ); |
return( (dic[x]).obj ); |
} |
} |
x = (x+h1) % USER_DICTIONARY_SIZE; |
x = (x+h1) % USER_DICTIONARY_SIZE; |
Line 287 int putUserDictionary2(str,h0,h1,attr,dic) |
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Line 315 int putUserDictionary2(str,h0,h1,attr,dic) |
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} |
} |
return(0); |
return(0); |
} |
} |
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if (OR_ATTR_FOR_ALL_WORDS & attr) { |
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for (i=0; i<USER_DICTIONARY_SIZE; i++) { |
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if ((dic[i]).key !=EMPTY) (dic[i]).attr |= attr&(~OR_ATTR_FOR_ALL_WORDS); |
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} |
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return(0); |
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} |
x = h0; |
x = h0; |
if (str[0] == '\0') { |
if (str[0] == '\0') { |
errorKan1("%s\n","putUserDictionary2(): You are defining a value with the null key."); |
errorKan1("%s\n","putUserDictionary2(): You are defining a value with the null key."); |
Line 308 int putPrimitiveFunction(str,number) |
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Line 342 int putPrimitiveFunction(str,number) |
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char *str; |
char *str; |
int number; |
int number; |
{ |
{ |
struct object ob; |
struct object ob = OINIT; |
ob.tag = Soperator; |
ob.tag = Soperator; |
ob.lc.ival = number; |
ob.lc.ival = number; |
return(putSystemDictionary(str,ob)); |
return(putSystemDictionary(str,ob)); |
Line 450 struct object peek(k) |
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Line 484 struct object peek(k) |
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} |
} |
} |
} |
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static int isThereExecutableArray(struct object ob) { |
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int n,i; |
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struct object otmp = OINIT; |
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if (ob.tag == SexecutableArray) return(1); |
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if (ob.tag == Sarray) { |
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n = getoaSize(ob); |
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for (i=0; i<n; i++) { |
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otmp = getoa(ob,i); |
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if (isThereExecutableArray(otmp)) return(1); |
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} |
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return(0); |
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} |
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/* Class and list is not checked, since there is no parser |
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to directory translte these objects. */ |
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return(0); |
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} |
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static int isThereExecutableArrayOnStack(int n) { |
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int i; |
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struct object ob = OINIT; |
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for (i=0; i<n; i++) { |
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if (Osp-i-1 < 0) return(0); |
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ob = peek(i); |
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if (isThereExecutableArray(ob)) return(1); |
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} |
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return(0); |
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} |
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struct object newOperandStack(int size) |
struct object newOperandStack(int size) |
{ |
{ |
struct operandStack *os ; |
struct operandStack *os ; |
struct object ob; |
struct object ob = OINIT; |
os = (struct operandStack *)sGC_malloc(sizeof(struct operandStack)); |
os = (struct operandStack *)sGC_malloc(sizeof(struct operandStack)); |
if (os == (void *)NULL) errorStackmachine("No more memory."); |
if (os == (void *)NULL) errorStackmachine("No more memory."); |
if (size <= 0) errorStackmachine("Size of stack must be more than 1."); |
if (size <= 0) errorStackmachine("Size of stack must be more than 1."); |
Line 535 void KsetContext(struct object contextObj) { |
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Line 595 void KsetContext(struct object contextObj) { |
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struct object getSuperContext(struct object contextObj) { |
struct object getSuperContext(struct object contextObj) { |
struct object rob; |
struct object rob = OINIT; |
struct context *cp; |
struct context *cp; |
if (contextObj.tag != Sclass) { |
if (contextObj.tag != Sclass) { |
errorStackmachine("Usage:supercontext"); |
errorStackmachine("Usage:supercontext"); |
Line 601 int isLiteral(str) |
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Line 661 int isLiteral(str) |
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void printOperandStack() { |
void printOperandStack() { |
int i; |
int i; |
struct object ob; |
struct object ob = OINIT; |
int vs; |
int vs; |
vs = VerboseStack; VerboseStack = 2; |
vs = VerboseStack; VerboseStack = 2; |
for (i=Osp-1; i>=0; i--) { |
for (i=Osp-1; i>=0; i--) { |
Line 637 struct object showSystemDictionary(int f) { |
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Line 697 struct object showSystemDictionary(int f) { |
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int maxl; |
int maxl; |
char format[1000]; |
char format[1000]; |
int nl; |
int nl; |
struct object rob; |
struct object rob = OINIT; |
rob = NullObject; |
rob = NullObject; |
if (f != 0) { |
if (f != 0) { |
rob = newObjectArray(Sdp); |
rob = newObjectArray(Sdp); |
Line 710 static struct object executableStringToExecutableArray |
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Line 770 static struct object executableStringToExecutableArray |
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char *s; |
char *s; |
{ |
{ |
struct tokens *tokenArray; |
struct tokens *tokenArray; |
struct object ob; |
struct object ob = OINIT; |
int i; |
int i; |
int size; |
int size; |
tokenArray = decomposeToTokens(s,&size); |
tokenArray = decomposeToTokens(s,&size); |
Line 729 static struct object executableStringToExecutableArray |
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Line 789 static struct object executableStringToExecutableArray |
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/**************** stack machine **************************/ |
/**************** stack machine **************************/ |
void scanner() { |
void scanner() { |
struct tokens token; |
struct tokens token; |
struct object ob; |
struct object ob = OINIT; |
extern int Quiet; |
extern int Quiet; |
extern void ctrlC(); |
extern void ctrlC(); |
int tmp; |
int tmp, status; |
char *tmp2; |
char *tmp2; |
extern int ErrorMessageMode; |
extern int ErrorMessageMode; |
int jval; |
int jval; |
extern int InSendmsg2; |
extern int InSendmsg2; |
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int infixOn = 0; |
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struct tokens infixToken; |
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extern int RestrictedMode, RestrictedMode_saved; |
getokenSM(INIT); |
getokenSM(INIT); |
initSystemDictionary(); |
initSystemDictionary(); |
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Line 754 void scanner() { |
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Line 817 void scanner() { |
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} |
} |
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/* setup quiet mode or not */ |
/* setup quiet mode or not */ |
token.kind = EXECUTABLE_STRING; |
token.kind = EXECUTABLE_STRING; token.tflag = 0; |
if (Quiet) { |
if (Quiet) { |
token.token = " /@@@.quiet 1 def "; |
token.token = " /@@@.quiet 1 def "; |
}else { |
}else { |
token.token = " /@@@.quiet 0 def "; |
token.token = " /@@@.quiet 0 def "; |
} |
} |
executeToken(token); /* execute startup commands */ |
executeToken(token); /* execute startup commands */ |
token.kind = ID; |
token.kind = ID; token.tflag = 0; |
token.token = "exec"; |
token.token = "exec"; |
token = lookupTokens(token); /* set hashing values */ |
token = lookupTokens(token); /* set hashing values */ |
tmp = findSystemDictionary(token.token); |
tmp = findSystemDictionary(token.token); |
Line 777 void scanner() { |
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Line 840 void scanner() { |
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StartFile = (char *)sGC_malloc(sizeof(char)*(strlen(StartFile)+ |
StartFile = (char *)sGC_malloc(sizeof(char)*(strlen(StartFile)+ |
40)); |
40)); |
sprintf(StartFile,"$%s$ run\n",tmp2); |
sprintf(StartFile,"$%s$ run\n",tmp2); |
token.kind = EXECUTABLE_STRING; |
token.kind = EXECUTABLE_STRING; token.tflag = 0; |
token.token = StartFile; |
token.token = StartFile; |
executeToken(token); /* execute startup commands */ |
executeToken(token); /* execute startup commands */ |
token.kind = ID; |
token.kind = ID; token.tflag = 0; |
token.token = "exec"; |
token.token = "exec"; |
token = lookupTokens(token); /* set hashing values */ |
token = lookupTokens(token); /* set hashing values */ |
tmp = findSystemDictionary(token.token); |
tmp = findSystemDictionary(token.token); |
Line 790 void scanner() { |
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Line 853 void scanner() { |
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} |
} |
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if (StartAString) { |
if (StartAString) { |
token.kind = EXECUTABLE_STRING; |
token.kind = EXECUTABLE_STRING; token.tflag = 0; |
token.token = StartString; |
token.token = StartString; |
executeToken(token); /* execute startup commands */ |
executeToken(token); /* execute startup commands */ |
token.kind = ID; |
token.kind = ID; token.tflag = 0; |
token.token = "exec"; |
token.token = "exec"; |
token = lookupTokens(token); /* set hashing values */ |
token = lookupTokens(token); /* set hashing values */ |
tmp = findSystemDictionary(token.token); |
tmp = findSystemDictionary(token.token); |
Line 820 void scanner() { |
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Line 883 void scanner() { |
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fprintf(Fstack,"\nscanner> "); |
fprintf(Fstack,"\nscanner> "); |
} |
} |
if (!Calling_ctrlC_hook) { /* to avoid recursive call of ctrlC-hook. */ |
if (!Calling_ctrlC_hook) { /* to avoid recursive call of ctrlC-hook. */ |
Calling_ctrlC_hook = 1; |
Calling_ctrlC_hook = 1; RestrictedMode = 0; |
KSexecuteString(" ctrlC-hook "); /* Execute User Defined functions. */ |
KSexecuteString(" ctrlC-hook "); /* Execute User Defined functions. */ |
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RestrictedMode = RestrictedMode_saved; |
} |
} |
Calling_ctrlC_hook = 0; |
Calling_ctrlC_hook = 0; |
KSexecuteString(" (Computation is interrupted.) "); /* move to ctrlC-hook? */ |
KSexecuteString(" (Computation is interrupted.) "); /* move to ctrlC-hook? */ |
InSendmsg2 = 0; |
InSendmsg2 = 0; |
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infixOn = 0; |
continue ; |
continue ; |
} else { } |
} else { } |
if (DebugStack >= 1) { printOperandStack(); } |
if (DebugStack >= 1) { printOperandStack(); } |
token = getokenSM(GET); |
token = getokenSM(GET); |
if ((tmp=executeToken(token)) < 0) break; |
if ((status=executeToken(token)) < 0) break; |
/***if (tmp == 1) fprintf(stderr," --- exit --- \n");*/ |
/***if (status == 1) fprintf(stderr," --- exit --- \n");*/ |
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/* fprintf(stderr,"token.token=%s, status=%d, infixOn=%d\n",token.token,status,infixOn); */ |
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if (status & STATUS_INFIX) { |
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infixOn = 1; infixToken = token; infixToken.tflag |= NO_DELAY; |
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}else if (infixOn) { |
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infixOn = 0; |
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if ((status=executeToken(infixToken)) < 0) break; |
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} |
} |
} |
} |
} |
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extern int SGClock; |
extern int SGClock; |
extern int UserCtrlC; |
extern int UserCtrlC; |
extern int OXlock; |
extern int OXlock; |
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extern int RestrictedMode, RestrictedMode_saved; |
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signal(sig,SIG_IGN); |
signal(sig,SIG_IGN); |
/* see 133p */ |
/* see 133p */ |
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RestrictedMode = RestrictedMode_saved; |
cancelAlarm(); |
cancelAlarm(); |
if (sig == SIGALRM) { |
if (sig == SIGALRM) { |
fprintf(stderr,"ctrlC by SIGALRM\n"); |
fprintf(stderr,"ctrlC by SIGALRM\n"); |
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int executeToken(token) |
int executeToken(token) |
struct tokens token; |
struct tokens token; |
{ |
{ |
struct object ob; |
struct object ob = OINIT; |
int primitive; |
int primitive; |
int size; |
int size; |
int status; |
int status; |
struct tokens *tokenArray; |
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int i,h0,h1; |
int i,h0,h1; |
extern int WarningMessageMode; |
extern int WarningMessageMode; |
extern int Strict; |
extern int Strict; |
extern int InSendmsg2; |
extern int InSendmsg2; |
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extern int RestrictedMode, RestrictedMode_saved; |
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int localRestrictedMode_saved; |
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localRestrictedMode_saved = 0; |
if (GotoP) { /* for goto */ |
if (GotoP) { /* for goto */ |
if (token.kind == ID && isLiteral(token.token)) { |
if (token.kind == ID && isLiteral(token.token)) { |
if (strcmp(&((token.token)[1]),GotoLabel) == 0) { |
if (strcmp(&((token.token)[1]),GotoLabel) == 0) { |
Line 956 int executeToken(token) |
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Line 1032 int executeToken(token) |
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h1 = ((token.object.lc.op)->rc).ival; |
h1 = ((token.object.lc.op)->rc).ival; |
ob=findUserDictionary(token.token,h0,h1,CurrentContextp); |
ob=findUserDictionary(token.token,h0,h1,CurrentContextp); |
primitive = ((token.object.rc.op)->lc).ival; |
primitive = ((token.object.rc.op)->lc).ival; |
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if (!(token.tflag & NO_DELAY)) { |
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if ((ob.tag >= 0) && (UD_attr & ATTR_INFIX)) { |
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return STATUS_INFIX; |
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} |
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} |
if (ob.tag >= 0) { |
if (ob.tag >= 0) { |
/* there is a definition in the user dictionary */ |
/* there is a definition in the user dictionary */ |
if (ob.tag == SexecutableArray) { |
if (ob.tag == SexecutableArray) { |
tracePushName(token.token); |
if (RestrictedMode) { |
tokenArray = ob.lc.tokenArray; |
if (UD_attr & ATTR_EXPORT) { |
size = ob.rc.ival; |
localRestrictedMode_saved = RestrictedMode; RestrictedMode = 0; |
for (i=0; i<size; i++) { |
if (isThereExecutableArrayOnStack(5)) { |
status = executeToken(tokenArray[i]); |
int i; |
if (status != 0) { |
for (i=0; i<5; i++) { (void) Kpop(); } |
tracePopName(); return(status); |
errorStackmachine("Executable array is on the argument stack (restricted mode). They are automatically removed.\n"); |
} |
} |
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}else{ |
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tracePushName(token.token); |
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errorStackmachine("You cannot execute this function in restricted mode.\n"); |
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} |
} |
} |
tracePopName(); |
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status = executeExecutableArray(ob,token.token,0); |
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if (localRestrictedMode_saved) RestrictedMode = localRestrictedMode_saved; |
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if ((status & STATUS_BREAK) || (status < 0)) return status; |
}else { |
}else { |
Kpush(ob); |
Kpush(ob); |
} |
} |
Line 988 int executeToken(token) |
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Line 1077 int executeToken(token) |
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return(0); /* normal exit.*/ |
return(0); /* normal exit.*/ |
} |
} |
} |
} |
if (WarningMessageMode == 1 || WarningMessageMode == 2) { |
{ |
char tmpc[1024]; |
char tmpc[1024]; |
if (strlen(token.token) < 900) { |
if (strlen(token.token) < 900) { |
sprintf(tmpc,"\n%%Warning: The identifier <<%s>> is not in the system dictionary\n%% nor in the user dictionaries. Push NullObject.\n",token.token); |
sprintf(tmpc,"\n>>Warning: The identifier <<%s>> is not in the system dictionary\n>> nor in the user dictionaries. Push NullObject.\n",token.token); |
}else {strcpy(tmpc,"Warning: identifier is not in the dictionaries.");} |
}else {strcpy(tmpc,"\n>>Warning: identifier is not in the dictionaries.\n");} |
pushErrorStack(KnewErrorPacket(SerialCurrent,-1,tmpc)); |
/* do not use %% in a string. tmpc will be used as fprintf(stderr,tmpc); */ |
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if (WarningMessageMode == 1 || WarningMessageMode == 2) { |
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pushErrorStack(KnewErrorPacket(SerialCurrent,-1,tmpc)); |
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} |
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if (WarningMessageMode != 1) { |
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fprintf(Fstack,"%s",tmpc); |
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/*fprintf(Fstack,"(%d,%d)\n",h0,h1);*/ |
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} |
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if (Strict) { |
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errorStackmachine(tmpc); |
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} |
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Kpush(NullObject); |
} |
} |
if (WarningMessageMode != 1) { |
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fprintf(Fstack,"\n%%Warning: The identifier <<%s>> is not in the system dictionary\n%% nor in the user dictionaries. Push NullObject.\n",token.token); |
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/*fprintf(Fstack,"(%d,%d)\n",h0,h1);*/ |
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} |
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if (Strict) { |
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errorStackmachine("Warning: identifier is not in the dictionaries"); |
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} |
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Kpush(NullObject); |
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} |
} |
} |
} |
} else if (token.kind == EXECUTABLE_STRING) { |
} else if (token.kind == EXECUTABLE_STRING) { |
Line 1035 errorStackmachine(str) |
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Line 1127 errorStackmachine(str) |
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char message0[1024]; |
char message0[1024]; |
char *message; |
char *message; |
extern int ErrorMessageMode; |
extern int ErrorMessageMode; |
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extern int RestrictedMode, RestrictedMode_saved; |
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RestrictedMode = RestrictedMode_saved; |
cancelAlarm(); |
cancelAlarm(); |
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MsgStackTrace = NULL; |
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MsgSourceTrace = NULL; |
if (ErrorMessageMode == 1 || ErrorMessageMode == 2) { |
if (ErrorMessageMode == 1 || ErrorMessageMode == 2) { |
pushErrorStack(KnewErrorPacket(SerialCurrent,-1,str)); |
pushErrorStack(KnewErrorPacket(SerialCurrent,-1,str)); |
} |
} |
Line 1069 errorStackmachine(str) |
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Line 1165 errorStackmachine(str) |
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fprintf(stderr,str); |
fprintf(stderr,str); |
} |
} |
fprintf(stderr,"\n"); |
fprintf(stderr,"\n"); |
(void) traceShowStack(); |
MsgStackTraceInArrayp = traceNameStackToArrayp(); |
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MsgStackTrace = traceShowStack(); |
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MsgSourceTrace = traceShowScannerBuf(); |
} |
} |
traceClearStack(); |
traceClearStack(); |
if (GotoP) { |
if (GotoP) { |
Line 1107 KSexecuteString(s) |
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Line 1205 KSexecuteString(s) |
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char *s; |
char *s; |
{ |
{ |
struct tokens token; |
struct tokens token; |
struct object ob; |
struct object ob = OINIT; |
int tmp; |
int tmp; |
extern int CatchCtrlC; |
extern int CatchCtrlC; |
int jval; |
int jval; |
Line 1117 KSexecuteString(s) |
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Line 1215 KSexecuteString(s) |
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jmp_buf saved_EnvOfStackMachine; |
jmp_buf saved_EnvOfStackMachine; |
void (*sigfunc)(); |
void (*sigfunc)(); |
int localCatchCtrlC ; |
int localCatchCtrlC ; |
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extern int RestrictedMode, RestrictedMode_saved; |
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localCatchCtrlC = CatchCtrlC; |
localCatchCtrlC = CatchCtrlC; |
/* If CatchCtrlC is rewrited in this program, |
/* If CatchCtrlC is rewrited in this program, |
Line 1143 KSexecuteString(s) |
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Line 1242 KSexecuteString(s) |
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recursive--; |
recursive--; |
if (localCatchCtrlC) { signal(SIGINT, sigfunc); } |
if (localCatchCtrlC) { signal(SIGINT, sigfunc); } |
if (!Calling_ctrlC_hook) { |
if (!Calling_ctrlC_hook) { |
Calling_ctrlC_hook = 1; |
Calling_ctrlC_hook = 1; RestrictedMode = 0; |
KSexecuteString(" ctrlC-hook "); /* Execute User Defined functions. */ |
KSexecuteString(" ctrlC-hook "); /* Execute User Defined functions. */ |
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RestrictedMode_saved; |
} |
} |
Calling_ctrlC_hook = 0; |
Calling_ctrlC_hook = 0; |
KSexecuteString(" (Computation is interrupted.) "); /* move to ctrlC-hook?*/ |
KSexecuteString(" (Computation is interrupted.) "); /* move to ctrlC-hook?*/ |
Line 1165 KSexecuteString(s) |
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Line 1265 KSexecuteString(s) |
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recursive = 0; |
recursive = 0; |
if (localCatchCtrlC) { signal(SIGINT, sigfunc); } |
if (localCatchCtrlC) { signal(SIGINT, sigfunc); } |
if (!Calling_ctrlC_hook) { |
if (!Calling_ctrlC_hook) { |
Calling_ctrlC_hook = 1; |
Calling_ctrlC_hook = 1; RestrictedMode = 0; |
KSexecuteString(" ctrlC-hook "); /* Execute User Defined functions. */ |
KSexecuteString(" ctrlC-hook "); /* Execute User Defined functions. */ |
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RestrictedMode = RestrictedMode_saved; |
} |
} |
Calling_ctrlC_hook = 0; |
Calling_ctrlC_hook = 0; |
Calling_ctrlC_hook = 0; |
Calling_ctrlC_hook = 0; |
Line 1178 KSexecuteString(s) |
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Line 1279 KSexecuteString(s) |
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recursive++; |
recursive++; |
token.token = s; |
token.token = s; |
token.kind = EXECUTABLE_STRING; |
token.kind = EXECUTABLE_STRING; token.tflag = 0; |
executeToken(token); |
executeToken(token); |
token.kind = ID; |
token.kind = ID; token.tflag = 0; |
token.token = "exec"; |
token.token = "exec"; |
token = lookupTokens(token); /* no use */ |
token = lookupTokens(token); /* no use */ |
tmp = findSystemDictionary(token.token); |
tmp = findSystemDictionary(token.token); |
Line 1196 KSexecuteString(s) |
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Line 1297 KSexecuteString(s) |
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KSdefineMacros() { |
KSdefineMacros() { |
struct tokens token; |
struct tokens token; |
int tmp; |
int tmp; |
struct object ob; |
struct object ob = OINIT; |
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if (StandardMacros && (strlen(SMacros))) { |
if (StandardMacros && (strlen(SMacros))) { |
token.kind = EXECUTABLE_STRING; |
token.kind = EXECUTABLE_STRING; token.tflag = 0; |
token.token = SMacros; |
token.token = SMacros; |
executeToken(token); /* execute startup commands */ |
executeToken(token); /* execute startup commands */ |
token.kind = ID; |
token.kind = ID; token.tflag = 0; |
token.token = "exec"; |
token.token = "exec"; |
token = lookupTokens(token); /* no use */ |
token = lookupTokens(token); /* no use */ |
tmp = findSystemDictionary(token.token); |
tmp = findSystemDictionary(token.token); |
Line 1217 KSdefineMacros() { |
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Line 1318 KSdefineMacros() { |
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void KSstart() { |
void KSstart() { |
struct tokens token; |
struct tokens token; |
int tmp; |
int tmp; |
struct object ob; |
struct object ob = OINIT; |
extern int Quiet; |
extern int Quiet; |
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stackmachine_init(); KinitKan(); |
stackmachine_init(); KinitKan(); |
Line 1232 void KSstart() { |
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Line 1333 void KSstart() { |
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} else { } */ |
} else { } */ |
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/* setup quiet mode or not */ |
/* setup quiet mode or not */ |
token.kind = EXECUTABLE_STRING; |
token.kind = EXECUTABLE_STRING; token.tflag = 0; |
if (Quiet) { |
if (Quiet) { |
token.token = " /@@@.quiet 1 def "; |
token.token = " /@@@.quiet 1 def "; |
}else { |
}else { |
token.token = " /@@@.quiet 0 def "; |
token.token = " /@@@.quiet 0 def "; |
} |
} |
executeToken(token); /* execute startup commands */ |
executeToken(token); /* execute startup commands */ |
token.kind = ID; |
token.kind = ID; token.tflag = 0; |
token.token = "exec"; |
token.token = "exec"; |
token = lookupTokens(token); /* set hashing values */ |
token = lookupTokens(token); /* set hashing values */ |
tmp = findSystemDictionary(token.token); |
tmp = findSystemDictionary(token.token); |
Line 1271 struct object KSpeek(k) { |
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Line 1372 struct object KSpeek(k) { |
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char *KSstringPop() { |
char *KSstringPop() { |
/* pop a string */ |
/* pop a string */ |
struct object rob; |
struct object rob = OINIT; |
rob = Kpop(); |
rob = Kpop(); |
if (rob.tag == Sdollar) { |
if (rob.tag == Sdollar) { |
return(rob.lc.str); |
return(rob.lc.str); |
Line 1311 char *KSpopBinary(int *size) { |
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Line 1412 char *KSpopBinary(int *size) { |
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return((char *)NULL); |
return((char *)NULL); |
} |
} |
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struct object KSnewObjectArray(int k) { |
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return newObjectArray(k); |
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} |
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int pushErrorStack(struct object obj) |
int pushErrorStack(struct object obj) |
{ |
{ |
if (CurrentOperandStack == &ErrorStack) { |
if (CurrentOperandStack == &ErrorStack) { |
Line 1341 struct object popErrorStack(void) { |
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Line 1446 struct object popErrorStack(void) { |
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} |
} |
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char *popErrorStackByString(void) { |
char *popErrorStackByString(void) { |
struct object obj; |
struct object obj = OINIT; |
struct object eobj; |
struct object eobj = OINIT; |
eobj = popErrorStack(); |
eobj = popErrorStack(); |
if (ectag(eobj) != CLASSNAME_ERROR_PACKET) { |
if (ectag(eobj) != CLASSNAME_ERROR_PACKET) { |
return(NULL); |
return(NULL); |
Line 1371 int KScheckErrorStack(void) |
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Line 1476 int KScheckErrorStack(void) |
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struct object KnewErrorPacket(int serial,int no,char *message) |
struct object KnewErrorPacket(int serial,int no,char *message) |
{ |
{ |
struct object obj; |
struct object obj = OINIT; |
struct object *myop; |
struct object *myop; |
char *s; |
char *s; |
/* Set extended tag. */ |
/* Set extended tag. */ |
Line 1393 struct object KnewErrorPacket(int serial,int no,char * |
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Line 1498 struct object KnewErrorPacket(int serial,int no,char * |
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struct object KnewErrorPacketObj(struct object ob1) |
struct object KnewErrorPacketObj(struct object ob1) |
{ |
{ |
struct object obj; |
struct object obj = OINIT; |
struct object *myop; |
struct object *myop; |
char *s; |
char *s; |
/* Set extended tag. */ |
/* Set extended tag. */ |
Line 1492 int KSstackPointer() { |
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Line 1597 int KSstackPointer() { |
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} |
} |
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struct object KSdupErrors() { |
struct object KSdupErrors() { |
struct object rob; |
struct object rob = OINIT; |
struct object ob; |
struct object ob = OINIT; |
int i; |
int i; |
int n; |
int n; |
int m; |
int m; |
Line 1550 char *tracePopName(void) { |
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Line 1655 char *tracePopName(void) { |
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if (TraceNameStackp <= 0) return (char *) NULL; |
if (TraceNameStackp <= 0) return (char *) NULL; |
return TraceNameStack[--TraceNameStackp]; |
return TraceNameStack[--TraceNameStackp]; |
} |
} |
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struct object *traceNameStackToArrayp(void) { |
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int n,i; |
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struct object *op; |
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op = sGC_malloc(sizeof(struct object)); |
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n = TraceNameStackp; if (n < 0) n = 0; |
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*op = newObjectArray(n); |
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for (i=0; i<n; i++) { |
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putoa((*op),i, KpoString(TraceNameStack[i])); |
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} |
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return op; |
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} |
#define TRACE_MSG_SIZE 320 |
#define TRACE_MSG_SIZE 320 |
char *traceShowStack(void) { |
char *traceShowStack(void) { |
char *s; |
char *s; |
Line 1566 char *traceShowStack(void) { |
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Line 1682 char *traceShowStack(void) { |
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if (t == NULL) { |
if (t == NULL) { |
s[p] = ';'; s[p+1] = 0; |
s[p] = ';'; s[p+1] = 0; |
break; |
break; |
}else if ((strlen(t) + p -10) > TRACE_MSG_SIZE) { |
}else if ((strlen(t) + p) > (TRACE_MSG_SIZE-10)) { |
/* fprintf(stderr,"p=%d, TraceNameStackp=%d, strlen(t)=%d, t=%s\n",p,TraceNameStackp,strlen(t),t); */ |
/* fprintf(stderr,"p=%d, TraceNameStackp=%d, strlen(t)=%d, t=%s\n",p,TraceNameStackp,strlen(t),t); */ |
strcpy(&(s[p])," ..."); |
strcpy(&(s[p])," ..."); |
break; |
break; |
} |
} |
Line 1576 char *traceShowStack(void) { |
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Line 1692 char *traceShowStack(void) { |
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} while (t != (char *)NULL); |
} while (t != (char *)NULL); |
fprintf(stderr,"%s\n",s); |
fprintf(stderr,"%s\n",s); |
return s; |
return s; |
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} |
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/* |
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if (fname != NULL) fname is pushed to the trace stack. |
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*/ |
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int executeExecutableArray(struct object ob,char *fname,int withGotoP) { |
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struct tokens *tokenArray; |
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int size,i; |
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int status; |
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int infixOn; |
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struct tokens infixToken; |
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extern int GotoP; |
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infixOn = 0; |
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if (ob.tag != SexecutableArray) errorStackmachine("Error (executeTokenArray): the argument is not a token array."); |
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if (fname != NULL) tracePushName(fname); |
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tokenArray = ob.lc.tokenArray; |
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size = ob.rc.ival; |
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for (i=0; i<size; i++) { |
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status = executeToken(tokenArray[i]); |
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if ((status & STATUS_BREAK) || (status < 0) || (withGotoP && GotoP)) { |
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if (fname != NULL) tracePopName(); |
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return(status); |
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} |
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if (status & STATUS_INFIX) { |
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if (i == size-1) errorStackmachine("Infix operator at the end of an executable array."); |
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infixOn = 1; infixToken = tokenArray[i]; |
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infixToken.tflag |= NO_DELAY; |
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continue; |
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}else if (infixOn) { |
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infixOn = 0; |
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status = executeToken(infixToken); |
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if ((status & STATUS_BREAK) || (status < 0) || (withGotoP && GotoP)) { |
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if (fname != NULL) tracePopName(); |
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return(status); |
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} |
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} |
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} |
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if (fname != NULL) tracePopName(); |
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return(0); /* normal exit */ |
} |
} |