[BACK]Return to sm1stackmachine.c CVS log [TXT][DIR] Up to [local] / OpenXM / src / kxx

Annotation of OpenXM/src/kxx/sm1stackmachine.c, Revision 1.7

1.1       maekawa     1: #include <stdio.h>
                      2: #include <setjmp.h>
                      3: #include "ox_kan.h"
                      4: #include "serversm.h"
                      5: extern int OXprintMessage;
1.5       takayama    6: extern char *MsgStackTrace;
                      7: extern char *MsgSourceTrace;
1.6       takayama    8: extern struct object *MsgStackTraceInArrayp;
1.1       maekawa     9:
                     10: /*  server stack machine */
                     11:
                     12: int Sm1_start(int argc, char *fnames[],char *myname) {
                     13:   int i;
                     14:   char cmd[4092];
                     15:   extern int ErrorMessageMode;
                     16:   extern char *VersionString;
                     17:   extern int CmoClientMode;
                     18:   CmoClientMode = 0;
                     19:   KSstart();
                     20:   fprintf(stderr,"sm1 version : %s\n",VersionString);
                     21:   fprintf(stderr,"sm1 url : http://www.math.kobe-u.ac.jp/KAN\n");
                     22:   fprintf(stderr,"name = %s\n",myname);
                     23:
                     24:   /* Initialize for ox_sm1 */
                     25:   ErrorMessageMode = 2;
                     26:   KSexecuteString(" [ [(Strict) 1] system_variable ] pop ");
                     27:
                     28:   /* Write a system start-up script here. */
                     29:   KSexecuteString(" [(cmoLispLike) 1] extension pop  ");
                     30:
                     31:   /* if argc > 0, execute the system startup files fnames and
                     32:      set oxSystemName to myname. */
                     33:   if (argc > 0) {
                     34:     for (i=0; i<argc; i++) {
                     35:       /* load files from the search path */
                     36:       if (strlen(fnames[i]) > 1024) {
1.3       takayama   37:         fprintf(stderr,"Too long name for sm1 library file to load.\n");
                     38:         exit(10);
1.1       maekawa    39:       }
                     40:       sprintf(cmd," [(parse) (%s) pushfile ] extension pop ",fnames[i]);
                     41:       KSexecuteString(cmd);
                     42:     }
                     43:     sprintf(cmd," [(cmoOxSystem) (ox_sm1_%s) ] extension pop ",myname);
                     44:     KSexecuteString(cmd);
                     45:   }
                     46:   KSexecuteString(" (---------------------------------------------------) message ");
                     47:   KSexecuteString(" [(flush)] extension pop ");
                     48:
                     49:   return(0);
                     50: }
                     51:
                     52: void *Sm1_mathcap() {
                     53:   int n,i;
                     54:   struct mathCap *mathcap;
                     55:   mathcap = KSmathCapByStruct();
                     56:   return((void *)mathcap);
                     57: }
                     58:
                     59: int Sm1_setMathCap(ox_stream os) {
                     60:   /* Set the mathcap data of the client in the server. */
                     61:   /*  sm1 <====== ox_sm1  mathcap is set in ox_stream = FILE2 * */
                     62:   /* The mathcap data is on the stack. */
1.4       takayama   63:   struct object ob = OINIT;
                     64:   struct object ob2 = OINIT;
1.1       maekawa    65:   int n,i;
                     66:   ob = KSpop();
                     67:   KSpush(ob);  KSexecuteString(" (mathcap data is ) message message ");
                     68:   Kan_setMathCapToStream(os,ob);
                     69:   /* set the math cap data associated to the ox_stream. */
                     70: }
                     71: void Sm1_pops(void) {
                     72:   char data[100];
                     73:   sprintf(data," 1 1 3 -1 roll { pop pop } for ");
                     74:   KSexecuteString(data);
                     75: }
                     76: int Sm1_executeStringByLocalParser(void) {
                     77:   int i;
                     78:   char *s;
                     79:   s = Sm1_popString();
                     80:   if (s == NULL) {
                     81:     printf("NULL argument for executeString.\n");
                     82:     return(-1);
                     83:   }else{
                     84:     if (OXprintMessage) fprintf(stderr,"KSexecuteString(%s)\n",s);
                     85:     i = KSexecuteString(s);
                     86:     return(i);
                     87:   }
                     88: }
                     89: char *Sm1_popString(void) {
                     90:   char *KSpopString();
                     91:   KSexecuteString(" toString ");
                     92:   return(KSpopString());
                     93: }
                     94:
                     95:
                     96: int Sm1_setName(void)
                     97: {
                     98:   char *s;
1.4       takayama   99:   struct object ob = OINIT;
1.1       maekawa   100:   s = Sm1_popString();
                    101:   if (s == NULL) {
                    102:     printf("NULL argument for setName.\n");
                    103:     return(-1);
                    104:   }else{
                    105:     ob = KSpop();
                    106:     printf("/%s tag=%d def\n",s,ob.tag);
                    107:     KputUserDictionary(s,ob);
                    108:     return(0);
                    109:   }
                    110: }
                    111:
                    112: int Sm1_evalName(void)
                    113: {
                    114:   char *s;
1.4       takayama  115:   struct object ob = OINIT;
1.1       maekawa   116:   s = Sm1_popString();
                    117:   if (s == NULL) {
                    118:     printf("NULL argument for evalName.\n");
                    119:     return(-1);
                    120:   }else{
                    121:     ob = KfindUserDictionary(s);
                    122:     if (ob.tag == -1) {
                    123:       printf("findUserDictionary(%s)--> tag=%d Not found.\n",s,ob.tag);
                    124:       return(-1);
                    125:     }
                    126:     printf("findUserDictionary(%s)--> tag=%d\n",s,ob.tag);
                    127:     KSpush(ob);
                    128:     return(0);
                    129:   }
                    130: }
                    131:
                    132: int Sm1_pushCMO(ox_stream fp)
                    133: {
                    134:   return(Kan_pushCMOFromStream(fp));
                    135: }
                    136: int Sm1_popCMO(ox_stream fp,int serial)
                    137: {
                    138:   return(Kan_popCMOToStream(fp,serial));
                    139: }
                    140:
                    141: int Sm1_pushError2(int serial, int no, char *s)
                    142: {
1.4       takayama  143:   struct object ob = OINIT;
1.6       takayama  144:   struct object core = OINIT;
                    145:   struct object core1 = OINIT;
1.5       takayama  146:   char *ss;
1.7     ! takayama  147:
        !           148:   ss = (char *)sGC_malloc(strlen(s)+1);
        !           149:   strcpy(ss,s);
        !           150:   /*
1.5       takayama  151:   char *error_message="<ox103:error_message>";
                    152:   char *message="<ox103:message>";
                    153:   char *stack_trace="<ox103:stack_trace>";
                    154:   char *source_trace="<ox103:source_trace>";
                    155:   char *error_message2="</ox103:error_message>";
                    156:   char *message2="</ox103:message>";
                    157:   char *stack_trace2="</ox103:stack_trace>";
                    158:   char *source_trace2="</ox103:source_trace>";
                    159:   ss = (char *) sGC_malloc(strlen(s)+strlen(MsgStackTrace)+
                    160:                            strlen(MsgSourceTrace)+
                    161:                            strlen(error_message)+strlen(error_message2)+
                    162:                            strlen(message)+strlen(message2)+
                    163:                            strlen(stack_trace)+strlen(stack_trace2)+
                    164:                            strlen(source_trace)+strlen(source_trace2)+2);
                    165:
                    166:   strcat(ss,error_message);
                    167:   strcat(ss,message);
                    168:   strcat(ss,s);
                    169:   strcat(ss,message2);
                    170:   if (MsgStackTrace != NULL) {
                    171:        strcat(ss,stack_trace);
                    172:        strcat(ss,MsgStackTrace);
                    173:        strcat(ss,stack_trace2);
                    174:   }
                    175:   if (MsgSourceTrace != NULL) {
                    176:        strcat(ss,source_trace);
                    177:        strcat(ss,MsgSourceTrace);
                    178:        strcat(ss,source_trace2);
                    179:   }
                    180:   strcat(ss,error_message2);
1.7     ! takayama  181:   */
1.6       takayama  182:
                    183:   if (MsgStackTraceInArrayp != NULL) {
                    184:        core = KSnewObjectArray(2);
                    185:        core1 = KSnewObjectArray(2);
                    186:        putoa(core1,0,KpoString("where"));  /* keyword */
                    187:        putoa(core1,1,(*MsgStackTraceInArrayp));
                    188:     putoa(core,0,core1);
                    189:     core1 = KSnewObjectArray(2);
                    190:        putoa(core1,0,KpoString("reason_of_error")); /* keyword */
                    191:        putoa(core1,1,KpoString(s));
                    192:        putoa(core,1,core1);
                    193:   }else{
                    194:        core = KSnewObjectArray(0);
                    195:   }
                    196:   ob = KSnewObjectArray(4);
                    197:   putoa(ob,0,KpoInteger(serial)); putoa(ob,1,KpoInteger(no));
                    198:   putoa(ob,2,KpoString(ss));
                    199:   putoa(ob,3,core);
                    200:
                    201:   ob = KnewErrorPacketObj(ob);
1.1       maekawa   202:   KSpush(ob);
                    203: }
                    204:
                    205: char *Sm1_popErrorMessage(char *s) {
                    206:   char *e;
                    207:   char *a;
                    208:   extern int ErrorMessageMode;
                    209:   /* Set ErrorMessageMode = 2 to use this function. */
                    210:   if (ErrorMessageMode != 2) return(s);
                    211:   e = popErrorStackByString();
                    212:   if (e == NULL ) {
                    213:     a = (char *) sGC_malloc(sizeof(char)*(strlen(s)+80));
                    214:     if (a == NULL) {
                    215:       fprintf(stderr,"No more memory in Sm1_popErrorMessage.\n");
                    216:       exit(10);
                    217:     }
                    218:     strcpy(a,s); strcat(a,"No error message on the error stack.");
                    219:     return(a);
                    220:   }else{
                    221:     a = (char *) sGC_malloc(sizeof(char)*(strlen(s)+strlen(e)+2));
                    222:     if (a == NULL) {
                    223:       fprintf(stderr,"No more memory in Sm1_popErrorMessage.\n");
                    224:       exit(10);
                    225:     }
                    226:     strcpy(a,s); strcat(a,e);
                    227:     return(a);
                    228:   }
                    229: }
                    230:
                    231: void Sm1_getsp(void) {
                    232:   KSpush(KpoInteger(KSstackPointer()));
                    233: }
                    234:
                    235: void Sm1_dupErrors(void) {
                    236:   KSpush(KSdupErrors());
                    237: }
                    238:
1.2       takayama  239: void Sm1_pushCMOtag(int serial) {
1.4       takayama  240:   struct object obj = OINIT;
1.2       takayama  241:   int t;
                    242:   obj = KSpeek(0);
                    243:   t = KgetCmoTagOfObject(obj);
                    244:   if (t != -1) {
1.3       takayama  245:     KSpush(KpoInteger(t));
1.2       takayama  246:   }else{
1.3       takayama  247:     Sm1_pushError2(serial,-1,"The top object on the server stack cannot be translated to cmo.");
1.2       takayama  248:   }
                    249: }
1.1       maekawa   250:
                    251:

FreeBSD-CVSweb <freebsd-cvsweb@FreeBSD.org>