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Copy pathinit.c
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439 lines (373 loc) · 14.3 KB
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#include "init.h"
void printUsage() {
printf("Usage: ./corallel [PROGRAM] [OPTIONS]\n");
printf("[PROGRAM]: \n");
printf("\tfa: Processing assembled genomes.\n");
printf("\tfq: Processing genomes' reads.\n");
printf("\tld: Processing precomputed cores.\n");
}
void printFaUsage() {
printf("Usage: ./corallel fa [OPTIONS]\n");
printf("Options:\n");
printf("\t-i [filename] The file contains filenames of genomes.\n");
printf("\t-l [num] Lcp-level. [Default: %d]\n", DEFAULT_LCP_LEVEL);
printf("\t-t [num] Number of threads. [Default: %d]\n", DEFAULT_THREAD_NUMBER);
printf("\t--min-cc [num] Minimum frequency (core count) for a core. [Default: %d]\n", DEFAULT_FA_MIN_CC);
printf("\t--max-cc [num] Maximum frequency (core count) for a core. [Default: %d]\n", DEFAULT_FA_MAX_CC);
printf("\t[--set|--vec] Distances based or set or vector of cores. [Default: %s]\n", sct2str(DEFAULT_SIM_CALC_MODE));
printf("\t-o [filename] Store cores.\n");
printf("\t-p [prefix] Prefix for the results. [Default: %s]\n", DEFAULT_PREFIX);
printf("\t-s [filename] Set short names of input files. Default is first 10 characters of input file names.\n");
printf("\t-v Verbose. [Default: %d]\n\n", DEFAULT_VERBOSE);
}
void printFqUsage() {
printf("Usage: ./corallel fq [OPTIONS]\n");
printf("Options:\n");
printf("\t-i [filename] The file contains filenames of genomes.\n");
printf("\t-l [num] Lcp-level. [Default: %d]\n", DEFAULT_LCP_LEVEL);
printf("\t-t [num] Number of threads. [Default: %d]\n", DEFAULT_THREAD_NUMBER);
printf("\t-r [num] Number of reader threads. [Default: %d]\n", DEFAULT_FQ_READER_NUMBER);
printf("\t--min-cc [num] Minimum frequency (core count) for a core. [Default: %d]\n", DEFAULT_FQ_MIN_CC);
printf("\t--max-cc [num] Maximum frequency (core count) for a core. [Default: %d]\n", DEFAULT_FA_MAX_CC);
printf("\t[--set|--vec] Distances based or set or vector of cores. [Default: %s]\n", sct2str(DEFAULT_SIM_CALC_MODE));
printf("\t-o [filename] Store cores.\n");
printf("\t-p [prefix] Prefix for the results. [Default: %s]\n", DEFAULT_PREFIX);
printf("\t-s [filename] Set short names of input files. Default is first 10 characters of input file names.\n");
printf("\t-v Verbose. [Default: %d]\n\n", DEFAULT_VERBOSE);
}
void printUsage2(program_mode_t mode) {
switch(mode) {
case PROGRAM_MODE_FA:
printFaUsage();
break;
case PROGRAM_MODE_FQ:
printFqUsage();
break;
default:
break;
}
}
int get_line_count(const char *filename) {
int line_count = 0;
FILE *file = fopen(filename, "r");
if (file == NULL) {
log1(ERROR, "Could not open file: %s", filename);
return -1;
}
char buffer[1024];
while (fgets(buffer, sizeof(buffer), file)) {
line_count++;
}
fclose(file);
return line_count;
}
int read_line_uint32(FILE *file, char buffer[1024], uint32_t *val) {
if (fgets(buffer, 1024, file)) {
char *endptr;
errno = 0;
unsigned long value = strtoul(buffer, &endptr, 10); // base 10 conversion
if (errno == ERANGE || value > UINT32_MAX) {
log1(ERROR, "Value out of range for uint32_t.");
exit(EXIT_FAILURE);
}
if (endptr == buffer || *endptr != '\0') {
log1(ERROR, "Invalid numeric string: %s", buffer);
exit(EXIT_FAILURE);
}
*val = (uint32_t)value;
return 1;
}
return 0;
}
int read_line(FILE *file, char buffer[1024], char **result) {
if (fgets(buffer, 1024, file)) {
uint64_t len = strlen(buffer);
if (len > 0 && buffer[len - 1] == '\n') {
buffer[len - 1] = '\0';
}
*result = strdup(buffer); // might not work on different systems
if (*result == NULL) {
log1(ERROR, "Memory allocation failed.");
return -1;
}
return 0;
}
// if we reach here, the line_num was out of range
log1(ERROR, "Out of range in file.");
return -1;
}
void free_targs(g_args_t **genome_args, p_args_t *program_args) {
for (int i = 0; i < program_args->n_genomes; i++) {
// clean inFileName
if ((*genome_args)[i].inFileName != NULL)
free((*genome_args)[i].inFileName);
(*genome_args)[i].inFileName = NULL;
// clean shortName
if ((*genome_args)[i].shortName != NULL)
free((*genome_args)[i].shortName);
(*genome_args)[i].shortName = NULL;
// clean outFileName
if ((*genome_args)[i].outFileName != NULL)
free((*genome_args)[i].outFileName);
(*genome_args)[i].outFileName = NULL;
}
}
void parse(int argc, char **argv, g_args_t **genome_args, p_args_t *program_args) {
if (argc < 2) {
printUsage();
exit(1);
}
int apply_filter;
uint32_t min_cc;
uint32_t max_cc;
if (strcmp(argv[1], "fa") == 0) {
program_args->mode = PROGRAM_MODE_FA;
min_cc = DEFAULT_FA_MIN_CC;
max_cc = DEFAULT_FA_MAX_CC;
apply_filter = 0;
} else if (strcmp(argv[1], "fq") == 0) {
program_args->mode = PROGRAM_MODE_FQ;
min_cc = DEFAULT_FQ_MIN_CC;
max_cc = DEFAULT_FQ_MAX_CC;
apply_filter = 1;
} else if (strcmp(argv[1], "ld") == 0) {
program_args->mode = PROGRAM_MODE_LOAD;
min_cc = 0;
max_cc = UINT32_MAX;
apply_filter = 0;
} else {
log1(ERROR, "Invalid program mode '%s'", argv[1]);
printUsage();
exit(EXIT_FAILURE);
}
// set program arguments with their default values
program_args->n_threads = DEFAULT_THREAD_NUMBER;
program_args->n_readers = DEFAULT_FQ_READER_NUMBER;
program_args->prefix = DEFAULT_PREFIX;
program_args->n_genomes = 0;
struct option long_options[] = {
{"min-cc", required_argument, NULL, 1},
{"min-cc-file", required_argument, NULL, 2},
{"max-cc", required_argument, NULL, 3},
{"max-cc-file", required_argument, NULL, 4},
{"set", no_argument, NULL, 5},
{"vec", no_argument, NULL, 6},
{NULL, 0, NULL, 0}
};
char *filename_min_cc = NULL;
char *filename_max_cc = NULL;
char *filename_inputs = NULL;
char *filename_names = NULL;
char *filename_outputs = NULL;
sim_calculation_type_t sct = DEFAULT_SIM_CALC_MODE;
int lcp_level = DEFAULT_LCP_LEVEL;
int core_span = DEFAULT_CORE_OUTSPAN;
int write_lcpt = DEFAULT_WRITE_LCP_CORES;
int verbose = DEFAULT_VERBOSE;
int opt;
int long_index;
char *endptr;
// Parsing options
while ((opt = getopt_long(argc, argv, "i:l:e:t:r:o:p:s:v", long_options, &long_index)) != -1) {
switch (opt) {
case 'i':
filename_inputs = optarg;
break;
case 'l':
lcp_level = atoi(optarg);
break;
case 'e':
core_span = atoi(optarg);
break;
case 't':
program_args->n_threads = atoi(optarg);
break;
case 'r':
program_args->n_readers = atoi(optarg);
break;
case 'o':
filename_outputs = optarg;
write_lcpt = 1;
break;
case 'p':
program_args->prefix = optarg;
break;
case 's':
filename_names = optarg;
break;
case 'v':
verbose = 1;
break;
case 1: // --min-cc
min_cc = (uint32_t)strtol(optarg, &endptr, 10);
apply_filter = 1;
break;
case 2: // --min-cc-file
filename_min_cc = optarg;
apply_filter = 1;
break;
case 3: // --max-cc
max_cc = (uint32_t)strtol(optarg, &endptr, 10);
apply_filter = 1;
break;
case 4: // --max-cc-file
filename_max_cc = optarg;
apply_filter = 1;
break;
case 5: // --set
sct = SIM_CALC_SET;
break;
case 6: // --vec
sct = SIM_CALC_SET;
break;
default:
exit(EXIT_FAILURE);
}
}
if (filename_inputs == NULL) {
log1(ERROR, "Please provide input files.");
printUsage2(program_args->mode);
exit(EXIT_FAILURE);
}
program_args->n_genomes = get_line_count(filename_inputs);
program_args->sct = sct;
program_args->lcp_level = lcp_level;
program_args->core_span = core_span;
program_args->write_lcpt = write_lcpt;
program_args->verbose = verbose;
if (program_args->n_genomes == -1) {
exit(EXIT_FAILURE);
}
(*genome_args) = (g_args_t *)malloc(sizeof(g_args_t) * program_args->n_genomes);
if ((*genome_args) == NULL) {
log1(ERROR, "Memory allocation failed for genome arguments.");
exit(EXIT_FAILURE);
}
for (int i = 0; i < program_args->n_genomes; i++) {
(*genome_args)[i].inFileName = NULL;
(*genome_args)[i].shortName = NULL;
(*genome_args)[i].outFileName = NULL;
(*genome_args)[i].apply_filter = apply_filter;
(*genome_args)[i].lcp_level = lcp_level;
(*genome_args)[i].write_lcpt = write_lcpt;
(*genome_args)[i].verbose = verbose;
(*genome_args)[i].min_cc = min_cc;
(*genome_args)[i].max_cc = max_cc;
(*genome_args)[i].sct = sct;
memset(&((*genome_args)[i].result), 0, sizeof(core_result_t));
memset(&((*genome_args)[i].time_stats), 0, sizeof(time_stats_t));
}
// program_args->n_threads = program_args->n_threads < program_args->n_genomes ? program_args->n_threads : program_args->n_genomes;
// check filename_inputs
if (filename_inputs != NULL) {
FILE *file = fopen(filename_inputs, "r");
if (file == NULL) {
log1(ERROR, "Could not open file: %s", filename_inputs);
exit(EXIT_FAILURE);
}
char buffer[1024];
for (int i = 0; i < program_args->n_genomes; i++) {
if (read_line(file, buffer, &((*genome_args)[i].inFileName)) == -1) {
free_targs(genome_args, program_args);
free(*genome_args);
fclose(file);
exit(EXIT_FAILURE);
}
}
fclose(file);
}
// check filename_min_cc
if (filename_min_cc != NULL) {
FILE *file = fopen(filename_min_cc, "r");
if (file == NULL) {
log1(ERROR, "Could not open file: %s", filename_min_cc);
exit(EXIT_FAILURE);
}
char buffer[1024];
for (int i = 0; i < program_args->n_genomes; i++) {
if (read_line_uint32(file, buffer, &((*genome_args)[i].min_cc)) == -1) {
free_targs(genome_args, program_args);
free(*genome_args);
fclose(file);
exit(EXIT_FAILURE);
}
}
fclose(file);
}
// check filename_max_cc
if (filename_max_cc != NULL) {
FILE *file = fopen(filename_max_cc, "r");
if (file == NULL) {
log1(ERROR, "Could not open file: %s", filename_max_cc);
exit(EXIT_FAILURE);
}
char buffer[1024];
for (int i = 0; i < program_args->n_genomes; i++) {
if (read_line_uint32(file, buffer, &((*genome_args)[i].max_cc)) == -1) {
free_targs(genome_args, program_args);
free(*genome_args);
fclose(file);
exit(EXIT_FAILURE);
}
}
fclose(file);
}
// check filename_names
if (filename_names != NULL) {
FILE *file = fopen(filename_names, "r");
if (file == NULL) {
log1(ERROR, "Could not open file: %s", filename_names);
exit(EXIT_FAILURE);
}
char buffer[1024];
for (int i = 0; i < program_args->n_genomes; i++) {
if (read_line(file, buffer, &((*genome_args)[i].shortName)) == -1) {
free_targs(genome_args, program_args);
free(*genome_args);
fclose(file);
exit(EXIT_FAILURE);
}
if (strlen((*genome_args)[i].shortName) > 10)
(*genome_args)[i].shortName[10] = '\0';
}
fclose(file);
} else {
for (int i = 0; i < program_args->n_genomes; i++) {
(*genome_args)[i].shortName = strdup((*genome_args)[i].inFileName);
if (strlen((*genome_args)[i].shortName) > 10)
(*genome_args)[i].shortName[10] = '\0';
}
}
// check filename_outputs
if (filename_outputs != NULL) {
FILE *file = fopen(filename_outputs, "r");
if (file == NULL) {
log1(ERROR, "Could not open file: %s", filename_outputs);
exit(EXIT_FAILURE);
}
char buffer[1024];
for (int i = 0; i < program_args->n_genomes; i++) {
if (read_line(file, buffer, &((*genome_args)[i].outFileName)) == -1) {
free_targs(genome_args, program_args);
free(*genome_args);
fclose(file);
exit(EXIT_FAILURE);
}
}
fclose(file);
}
// log parameters
log1(INFO, "%s, threads: %d, LCP: %d, span: %d, mode: %s, prefix: %s", mode2str(program_args->mode), program_args->n_threads, program_args->lcp_level, program_args->core_span, sct2str(program_args->sct), program_args->prefix);
if ((*genome_args)[0].write_lcpt) {
log1(INFO, "Program will write cores to files.");
}
if ((*genome_args)[0].verbose) {
for (int i = 0; i < program_args->n_genomes; i++) {
if ((*genome_args)[i].apply_filter) {
log1(INFO, "in: %s, short: %s, out: %s, min-cc: %ld, max-cc: %ld", (*genome_args)[i].inFileName, (*genome_args)[i].shortName, (*genome_args)[i].outFileName, (*genome_args)[i].min_cc, (*genome_args)[i].max_cc);
} else {
log1(INFO, "in: %s, short: %s, out: %s", (*genome_args)[i].inFileName, (*genome_args)[i].shortName, (*genome_args)[i].outFileName);
}
}
}
}