int main(int argc, const char *argv[]) { FILE *fp; const char *fname; sauchar_t *T; saidx_t *SA; LFS_OFF_T n; clock_t start, finish; saint_t needclose = 1; /* Check arguments. */ if((argc == 1) || (strcmp(argv[1], "-h") == 0) || (strcmp(argv[1], "--help") == 0)) { print_help(argv[0], EXIT_SUCCESS); } if(argc != 2) { print_help(argv[0], EXIT_FAILURE); } /* Open a file for reading. */ if(strcmp(argv[1], "-") != 0) { #if HAVE_FOPEN_S if(fopen_s(&fp, fname = argv[1], "rb") != 0) { #else if((fp = LFS_FOPEN(fname = argv[1], "rb")) == NULL) { #endif fprintf(stderr, "%s: Cannot open file `%s': ", argv[0], fname); perror(NULL); exit(EXIT_FAILURE); } } else { #if HAVE__SETMODE && HAVE__FILENO if(_setmode(_fileno(stdin), _O_BINARY) == -1) { fprintf(stderr, "%s: Cannot set mode: ", argv[0]); perror(NULL); exit(EXIT_FAILURE); } #endif fp = stdin; fname = "stdin"; needclose = 0; } /* Get the file size. */ if(LFS_FSEEK(fp, 0, SEEK_END) == 0) { n = LFS_FTELL(fp); rewind(fp); if(n < 0) { fprintf(stderr, "%s: Cannot ftell `%s': ", argv[0], fname); perror(NULL); exit(EXIT_FAILURE); } if(0x7fffffff <= n) { fprintf(stderr, "%s: Input file `%s' is too big.\n", argv[0], fname); exit(EXIT_FAILURE); } } else { fprintf(stderr, "%s: Cannot fseek `%s': ", argv[0], fname); perror(NULL); exit(EXIT_FAILURE); } /* Allocate 5n bytes of memory. */ T = (sauchar_t *)malloc((size_t)n * sizeof(sauchar_t)); SA = (saidx_t *)malloc((size_t)n * sizeof(saidx_t)); if((T == NULL) || (SA == NULL)) { fprintf(stderr, "%s: Cannot allocate memory.\n", argv[0]); exit(EXIT_FAILURE); } /* Read n bytes of data. */ if(fread(T, sizeof(sauchar_t), (size_t)n, fp) != (size_t)n) { fprintf(stderr, "%s: %s `%s': ", argv[0], (ferror(fp) || !feof(fp)) ? "Cannot read from" : "Unexpected EOF in", argv[1]); perror(NULL); exit(EXIT_FAILURE); } if(needclose & 1) { fclose(fp); } /* Construct the suffix array. */ //~ fprintf(stderr, "%s: %" PRIdOFF_T " bytes ... ", fname, n); //~ start = clock(); if(divsufsort(T, SA, (saidx_t)n) != 0) { fprintf(stderr, "%s: Cannot allocate memory.\n", argv[0]); exit(EXIT_FAILURE); } //~ finish = clock(); //~ fprintf(stderr, "%.4f sec\n", (double)(finish - start) / (double)CLOCKS_PER_SEC); /* Check the suffix array. */ //~ if(sufcheck(T, SA, (saidx_t)n, 1) != 0) { exit(EXIT_FAILURE); } /* Deallocate memory. */ free(SA); free(T); return 0; }
int main(int argc, const char *argv[]) { FILE *fp; const char *P; sauchar_t *T; saidx_t *SA; LFS_OFF_T n; size_t Psize; saidx_t i, size, left; if((argc == 1) || (strcmp(argv[1], "-h") == 0) || (strcmp(argv[1], "--help") == 0)) { print_help(argv[0], EXIT_SUCCESS); } if(argc != 4) { print_help(argv[0], EXIT_FAILURE); } P = argv[1]; Psize = strlen(P); /* Open a file for reading. */ #if HAVE_FOPEN_S if(fopen_s(&fp, argv[2], "rb") != 0) { #else if((fp = LFS_FOPEN(argv[2], "rb")) == NULL) { #endif fprintf(stderr, "%s: Cannot open file `%s': ", argv[0], argv[2]); perror(NULL); exit(EXIT_FAILURE); } /* Get the file size. */ if(LFS_FSEEK(fp, 0, SEEK_END) == 0) { n = LFS_FTELL(fp); rewind(fp); if(n < 0) { fprintf(stderr, "%s: Cannot ftell `%s': ", argv[0], argv[2]); perror(NULL); exit(EXIT_FAILURE); } } else { fprintf(stderr, "%s: Cannot fseek `%s': ", argv[0], argv[2]); perror(NULL); exit(EXIT_FAILURE); } /* Allocate 5n bytes of memory. */ T = (sauchar_t *)malloc((size_t)n * sizeof(sauchar_t)); SA = (saidx_t *)malloc((size_t)n * sizeof(saidx_t)); if((T == NULL) || (SA == NULL)) { fprintf(stderr, "%s: Cannot allocate memory.\n", argv[0]); exit(EXIT_FAILURE); } /* Read n bytes of data. */ if(fread(T, sizeof(sauchar_t), (size_t)n, fp) != (size_t)n) { fprintf(stderr, "%s: %s `%s': ", argv[0], (ferror(fp) || !feof(fp)) ? "Cannot read from" : "Unexpected EOF in", argv[2]); perror(NULL); exit(EXIT_FAILURE); } fclose(fp); /* Open the SA file for reading. */ #if HAVE_FOPEN_S if(fopen_s(&fp, argv[3], "rb") != 0) { #else if((fp = LFS_FOPEN(argv[3], "rb")) == NULL) { #endif fprintf(stderr, "%s: Cannot open file `%s': ", argv[0], argv[3]); perror(NULL); exit(EXIT_FAILURE); } /* Read n * sizeof(saidx_t) bytes of data. */ if(fread(SA, sizeof(saidx_t), (size_t)n, fp) != (size_t)n) { fprintf(stderr, "%s: %s `%s': ", argv[0], (ferror(fp) || !feof(fp)) ? "Cannot read from" : "Unexpected EOF in", argv[3]); perror(NULL); exit(EXIT_FAILURE); } fclose(fp); /* Search and print */ size = sa_search(T, (saidx_t)n, (const sauchar_t *)P, (saidx_t)Psize, SA, (saidx_t)n, &left); for(i = 0; i < size; ++i) { fprintf(stdout, "%" PRIdSAIDX_T "\n", SA[left + i]); } /* Deallocate memory. */ free(SA); free(T); return 0; }