📄 input.tab.c
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yyss = (short *) alloca (yystacksize * sizeof (*yyssp)); __yy_memcpy ((char *)yyss, (char *)yyss1, size * sizeof (*yyssp)); yyvs = (YYSTYPE *) alloca (yystacksize * sizeof (*yyvsp)); __yy_memcpy ((char *)yyvs, (char *)yyvs1, size * sizeof (*yyvsp));#ifdef YYLSP_NEEDED yyls = (YYLTYPE *) alloca (yystacksize * sizeof (*yylsp)); __yy_memcpy ((char *)yyls, (char *)yyls1, size * sizeof (*yylsp));#endif#endif /* no yyoverflow */ yyssp = yyss + size - 1; yyvsp = yyvs + size - 1;#ifdef YYLSP_NEEDED yylsp = yyls + size - 1;#endif#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Stack size increased to %d\n", yystacksize);#endif if (yyssp >= yyss + yystacksize - 1) YYABORT; }#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Entering state %d\n", yystate);#endif goto yybackup; yybackup:/* Do appropriate processing given the current state. *//* Read a lookahead token if we need one and don't already have one. *//* yyresume: */ /* First try to decide what to do without reference to lookahead token. */ yyn = yypact[yystate]; if (yyn == YYFLAG) goto yydefault; /* Not known => get a lookahead token if don't already have one. */ /* yychar is either YYEMPTY or YYEOF or a valid token in external form. */ if (yychar == YYEMPTY) {#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Reading a token: ");#endif yychar = YYLEX; } /* Convert token to internal form (in yychar1) for indexing tables with */ if (yychar <= 0) /* This means end of input. */ { yychar1 = 0; yychar = YYEOF; /* Don't call YYLEX any more */#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Now at end of input.\n");#endif } else { yychar1 = YYTRANSLATE(yychar);#if YYDEBUG != 0 if (yydebug) { fprintf (stderr, "Next token is %d (%s", yychar, yytname[yychar1]); /* Give the individual parser a way to print the precise meaning of a token, for further debugging info. */#ifdef YYPRINT YYPRINT (stderr, yychar, yylval);#endif fprintf (stderr, ")\n"); }#endif } yyn += yychar1; if (yyn < 0 || yyn > YYLAST || yycheck[yyn] != yychar1) goto yydefault; yyn = yytable[yyn]; /* yyn is what to do for this token type in this state. Negative => reduce, -yyn is rule number. Positive => shift, yyn is new state. New state is final state => don't bother to shift, just return success. 0, or most negative number => error. */ if (yyn < 0) { if (yyn == YYFLAG) goto yyerrlab; yyn = -yyn; goto yyreduce; } else if (yyn == 0) goto yyerrlab; if (yyn == YYFINAL) YYACCEPT; /* Shift the lookahead token. */#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Shifting token %d (%s), ", yychar, yytname[yychar1]);#endif /* Discard the token being shifted unless it is eof. */ if (yychar != YYEOF) yychar = YYEMPTY; *++yyvsp = yylval;#ifdef YYLSP_NEEDED *++yylsp = yylloc;#endif /* count tokens shifted since error; after three, turn off error status. */ if (yyerrstatus) yyerrstatus--; yystate = yyn; goto yynewstate;/* Do the default action for the current state. */yydefault: yyn = yydefact[yystate]; if (yyn == 0) goto yyerrlab;/* Do a reduction. yyn is the number of a rule to reduce with. */yyreduce: yylen = yyr2[yyn]; if (yylen > 0) yyval = yyvsp[1-yylen]; /* implement default value of the action */#if YYDEBUG != 0 if (yydebug) { int i; fprintf (stderr, "Reducing via rule %d (line %d), ", yyn, yyrline[yyn]); /* Print the symbols being reduced, and their result. */ for (i = yyprhs[yyn]; yyrhs[i] > 0; i++) fprintf (stderr, "%s ", yytname[yyrhs[i]]); fprintf (stderr, " -> %s\n", yytname[yyr1[yyn]]); }#endif switch (yyn) {case 1:#line 42 "input.y"{; break;}case 2:#line 44 "input.y"{; break;}case 3:#line 45 "input.y"{; break;}case 4:#line 50 "input.y"{ if (yyvsp[-2].ivalue > NTasks) { yyerror("Task Not declared"); } Chronog[NPoints].accion = ACTI; Chronog[NPoints].id = yyvsp[-2].ivalue; Chronog[NPoints].x1 = yyvsp[-1].ivalue; Chronog[NPoints].x2 = yyvsp[0].ivalue; cal_tsim(yyvsp[0].ivalue,yyvsp[-1].ivalue); NPoints++; ; break;}case 5:#line 62 "input.y"{ if (yyvsp[-1].ivalue > NTasks) { yyerror("Task Not declared"); } Chronog[NPoints].accion = END; Chronog[NPoints].id = yyvsp[-1].ivalue; Chronog[NPoints].x1 = yyvsp[0].ivalue; cal_tsim(yyvsp[0].ivalue,0); NPoints++; ; break;}case 6:#line 73 "input.y"{ if (yyvsp[-2].ivalue > NTasks) { yyerror("Task Not declared"); } Chronog[NPoints].accion = EXEC; Chronog[NPoints].id = yyvsp[-2].ivalue; Chronog[NPoints].x1 = yyvsp[-1].ivalue; Chronog[NPoints].x2 = yyvsp[0].ivalue; cal_tsim(yyvsp[-1].ivalue,yyvsp[0].ivalue); NPoints++; ; break;}case 7:#line 86 "input.y"{; break;}case 8:#line 87 "input.y"{; break;}case 9:#line 93 "input.y"{ if (yyvsp[-1].ivalue>=MAX_TASKS){ printf ("\nToo many tasks, graphic tool overflow.\n"); printf ("Maximun number of tasks %d",MAX_TASKS); exit(1); } if (yyvsp[-1].ivalue>NTasks){ NTasks = yyvsp[-1].ivalue; } strncpy((char*)&Tasks[yyvsp[-1].ivalue],yyvsp[0].cvalue,20); ; break;}case 10:#line 105 "input.y"{ if (yyvsp[-1].ivalue>=MAX_RESOURCES){ printf ("\nToo many resources, graphic tool overflow.\n"); printf ("Maximun number of resources %d",MAX_RESOURCES); exit(1); } if (yyvsp[-1].ivalue>NResources){ NResources = yyvsp[-1].ivalue; } strncpy((char*)&Resources[yyvsp[-1].ivalue],yyvsp[0].cvalue,20); ; break;}case 11:#line 116 "input.y"{; break;}} /* the action file gets copied in in place of this dollarsign */#line 498 "/usr/lib/bison.simple" yyvsp -= yylen; yyssp -= yylen;#ifdef YYLSP_NEEDED yylsp -= yylen;#endif#if YYDEBUG != 0 if (yydebug) { short *ssp1 = yyss - 1; fprintf (stderr, "state stack now"); while (ssp1 != yyssp) fprintf (stderr, " %d", *++ssp1); fprintf (stderr, "\n"); }#endif *++yyvsp = yyval;#ifdef YYLSP_NEEDED yylsp++; if (yylen == 0) { yylsp->first_line = yylloc.first_line; yylsp->first_column = yylloc.first_column; yylsp->last_line = (yylsp-1)->last_line; yylsp->last_column = (yylsp-1)->last_column; yylsp->text = 0; } else { yylsp->last_line = (yylsp+yylen-1)->last_line; yylsp->last_column = (yylsp+yylen-1)->last_column; }#endif /* Now "shift" the result of the reduction. Determine what state that goes to, based on the state we popped back to and the rule number reduced by. */ yyn = yyr1[yyn]; yystate = yypgoto[yyn - YYNTBASE] + *yyssp; if (yystate >= 0 && yystate <= YYLAST && yycheck[yystate] == *yyssp) yystate = yytable[yystate]; else yystate = yydefgoto[yyn - YYNTBASE]; goto yynewstate;yyerrlab: /* here on detecting error */ if (! yyerrstatus) /* If not already recovering from an error, report this error. */ { ++yynerrs;#ifdef YYERROR_VERBOSE yyn = yypact[yystate]; if (yyn > YYFLAG && yyn < YYLAST) { int size = 0; char *msg; int x, count; count = 0; /* Start X at -yyn if nec to avoid negative indexes in yycheck. */ for (x = (yyn < 0 ? -yyn : 0); x < (sizeof(yytname) / sizeof(char *)); x++) if (yycheck[x + yyn] == x) size += strlen(yytname[x]) + 15, count++; msg = (char *) malloc(size + 15); if (msg != 0) { strcpy(msg, "parse error"); if (count < 5) { count = 0; for (x = (yyn < 0 ? -yyn : 0); x < (sizeof(yytname) / sizeof(char *)); x++) if (yycheck[x + yyn] == x) { strcat(msg, count == 0 ? ", expecting `" : " or `"); strcat(msg, yytname[x]); strcat(msg, "'"); count++; } } yyerror(msg); free(msg); } else yyerror ("parse error; also virtual memory exceeded"); } else#endif /* YYERROR_VERBOSE */ yyerror("parse error"); } goto yyerrlab1;yyerrlab1: /* here on error raised explicitly by an action */ if (yyerrstatus == 3) { /* if just tried and failed to reuse lookahead token after an error, discard it. */ /* return failure if at end of input */ if (yychar == YYEOF) YYABORT;#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Discarding token %d (%s).\n", yychar, yytname[yychar1]);#endif yychar = YYEMPTY; } /* Else will try to reuse lookahead token after shifting the error token. */ yyerrstatus = 3; /* Each real token shifted decrements this */ goto yyerrhandle;yyerrdefault: /* current state does not do anything special for the error token. */#if 0 /* This is wrong; only states that explicitly want error tokens should shift them. */ yyn = yydefact[yystate]; /* If its default is to accept any token, ok. Otherwise pop it.*/ if (yyn) goto yydefault;#endifyyerrpop: /* pop the current state because it cannot handle the error token */ if (yyssp == yyss) YYABORT; yyvsp--; yystate = *--yyssp;#ifdef YYLSP_NEEDED yylsp--;#endif#if YYDEBUG != 0 if (yydebug) { short *ssp1 = yyss - 1; fprintf (stderr, "Error: state stack now"); while (ssp1 != yyssp) fprintf (stderr, " %d", *++ssp1); fprintf (stderr, "\n"); }#endifyyerrhandle: yyn = yypact[yystate]; if (yyn == YYFLAG) goto yyerrdefault; yyn += YYTERROR; if (yyn < 0 || yyn > YYLAST || yycheck[yyn] != YYTERROR) goto yyerrdefault; yyn = yytable[yyn]; if (yyn < 0) { if (yyn == YYFLAG) goto yyerrpop; yyn = -yyn; goto yyreduce; } else if (yyn == 0) goto yyerrpop; if (yyn == YYFINAL) YYACCEPT;#if YYDEBUG != 0 if (yydebug) fprintf(stderr, "Shifting error token, ");#endif *++yyvsp = yylval;#ifdef YYLSP_NEEDED *++yylsp = yylloc;#endif yystate = yyn; goto yynewstate;}#line 119 "input.y"static void cal_tsim(a,b){ if (a<b) a=b; if (a>TimeSim) TimeSim=a;}yyerror(s) char *s;{ printf("\nERROR Line %d --> %s\n",linenumber, s); exit();}void Fill_Matrix(char *name){ int x; if (strlen(name) != 0){ yyin = fopen (name, "r"); } for (x=0; x<MAX_RESOURCES; x++) Resources[x][0]=0x0; for (x=0; x<MAX_TASKS; x++) Tasks[x][0]=0x0; NPoints=TimeSim=NTasks=NResources= 0; yyparse(); if (strlen(name) != 0){ fclose(yyin); }}
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