#include "factor.h" void print_cons(CELL cons) { fprintf(stderr,"[ "); do { print_obj(untag_cons(cons)->car); fprintf(stderr," "); cons = untag_cons(cons)->cdr; } while(TAG(cons) == CONS_TYPE); if(cons != F) { fprintf(stderr,"| "); print_obj(cons); fprintf(stderr," "); } fprintf(stderr,"]"); } void print_word(F_WORD* word) { if(type_of(word->name) == STRING_TYPE) fprintf(stderr,"%s",to_c_string(untag_string(word->name),true)); else { fprintf(stderr,"#name); fprintf(stderr,">"); } fprintf(stderr," (#%ld)",untag_fixnum_fast(word->primitive)); } void print_string(F_STRING* str) { fprintf(stderr,"\""); fprintf(stderr,"%s",to_c_string(str,true)); fprintf(stderr,"\""); } void print_obj(CELL obj) { F_ARRAY *array; CELL class; switch(type_of(obj)) { case FIXNUM_TYPE: fprintf(stderr,"%ld",untag_fixnum_fast(obj)); break; case CONS_TYPE: print_cons(obj); break; case WORD_TYPE: print_word(untag_word(obj)); break; case STRING_TYPE: print_string(untag_string(obj)); break; case F_TYPE: fprintf(stderr,"f"); break; case TUPLE_TYPE: array = (F_ARRAY*)UNTAG(obj); fprintf(stderr,"<< "); class = get(AREF(array,0)); if(type_of(class) == WORD_TYPE) print_word(untag_word(class)); else fprintf(stderr," corrupt tuple: %lx ",class); fprintf(stderr," %lx >>",obj); break; default: fprintf(stderr,"#",type_of(obj),obj); break; } } void print_objects(CELL start, CELL end) { for(; start <= end; start += CELLS) { print_obj(get(start)); fprintf(stderr,"\n"); } } void dump_cell(CELL cell) { fprintf(stderr,"%08lx: ",cell); cell = get(cell); fprintf(stderr,"%08lx tag %ld",cell,TAG(cell)); switch(TAG(cell)) { case OBJECT_TYPE: case BIGNUM_TYPE: case FLOAT_TYPE: if(cell == F) fprintf(stderr," -- F"); else if(cell < TYPE_COUNT<>TAG_BITS); else if(cell >= heap_start && cell < heap_end) { CELL header = get(UNTAG(cell)); CELL type = header>>TAG_BITS; fprintf(stderr," -- object; "); if(TAG(header) == OBJECT_TYPE && type < TYPE_COUNT) fprintf(stderr," type %ld",type); else fprintf(stderr," header corrupt"); } break; case GC_COLLECTED: fprintf(stderr," -- forwarding pointer"); break; } fprintf(stderr,"\n"); } void dump_memory(CELL from, CELL to) { from = UNTAG(from); for(; from <= to; from += CELLS) dump_cell(from); } void dump_generation(ZONE *z) { fprintf(stderr,"base=%lx, size=%lx, here=%lx, alarm=%lx\n", z->base, z->limit - z->base, z->here - z->base, z->alarm - z->base); } void dump_generations(void) { int i; for(i = 0; i < gen_count; i++) { fprintf(stderr,"Generation %d: ",i); dump_generation(&generations[i]); } fprintf(stderr,"Semispace: "); dump_generation(&prior); fprintf(stderr,"Cards: base=%lx, size=%lx\n",(CELL)cards, (CELL)(cards_end - cards)); } void factorbug(void) { #ifndef WIN32 fcntl(0,F_SETFL,0); fcntl(1,F_SETFL,0); #endif fprintf(stderr," Front end processor commands:\n"); fprintf(stderr,"t -- throw exception in Factor\n"); fprintf(stderr,"q -- continue executing Factor\n"); fprintf(stderr,"im -- save image to fep.image\n"); fprintf(stderr,"x -- exit Factor\n"); fprintf(stderr," Advanced commands:\n"); fprintf(stderr,"d -- dump memory\n"); fprintf(stderr,"u -- dump object at tagged \n"); fprintf(stderr,". -- print object at tagged \n"); fprintf(stderr,"s s -- dump data and return stacks\n"); fprintf(stderr,".s .r -- print data and return stacks\n"); fprintf(stderr,"i -- dump interpreter state\n"); fprintf(stderr,"e -- dump environment\n"); fprintf(stderr,"g -- dump generations\n"); fprintf(stderr,"card -- print card containing address\n"); fprintf(stderr,"addr -- print address containing card\n"); fprintf(stderr,"c -- force garbage collection\n"); for(;;) { char cmd[1024]; fprintf(stderr,"fep> "); fflush(stdout); if(scanf("%1000s",cmd) <= 0) exit(1); if(strcmp(cmd,"d") == 0) { CELL addr, count; scanf("%lx %lx",&addr,&count); dump_memory(addr,addr+count); } if(strcmp(cmd,"u") == 0) { CELL addr, count; scanf("%lx",&addr); count = object_size(addr); dump_memory(addr,addr+count); } else if(strcmp(cmd,".") == 0) { CELL addr; scanf("%lx",&addr); print_obj(addr); fprintf(stderr,"\n"); } else if(strcmp(cmd,"s") == 0) dump_memory(ds_bot,ds); else if(strcmp(cmd,"r") == 0) dump_memory(cs_bot,cs); else if(strcmp(cmd,".s") == 0) print_objects(ds_bot,ds); else if(strcmp(cmd,".r") == 0) print_objects(cs_bot,cs); else if(strcmp(cmd,"i") == 0) { fprintf(stderr,"Call frame:\n"); print_obj(callframe); fprintf(stderr,"\n"); fprintf(stderr,"Executing:\n"); print_obj(executing); fprintf(stderr,"\n"); } else if(strcmp(cmd,"e") == 0) { int i; for(i = 0; i < USER_ENV; i++) dump_cell((CELL)&userenv[i]); } else if(strcmp(cmd,"g") == 0) dump_generations(); else if(strcmp(cmd,"c") == 0) { CELL gen; scanf("%lu",&gen); garbage_collection(gen); } else if(strcmp(cmd,"card") == 0) { CELL addr; scanf("%lx",&addr); fprintf(stderr,"%lx\n",(CELL)ADDR_TO_CARD(addr)); } else if(strcmp(cmd,"addr") == 0) { CELL card; scanf("%lx",&card); fprintf(stderr,"%lx\n",(CELL)CARD_TO_ADDR(card)); } else if(strcmp(cmd,"t") == 0) general_error(ERROR_USER_INTERRUPT,F,true); else if(strcmp(cmd,"q") == 0) return; else if(strcmp(cmd,"x") == 0) exit(1); else if(strcmp(cmd,"im") == 0) save_image("fep.image"); else fprintf(stderr,"unknown command\n"); } }