| | |
| | | #include <stdlib.h> |
| | | #include <string.h> |
| | | |
| | | struct load_args{ |
| | | char **paths; |
| | | int n; |
| | | int m; |
| | | char **labels; |
| | | int k; |
| | | int h; |
| | | int w; |
| | | int nh; |
| | | int nw; |
| | | int jitter; |
| | | data *d; |
| | | }; |
| | | |
| | | list *get_paths(char *filename) |
| | | { |
| | | char *path; |
| | |
| | | return lines; |
| | | } |
| | | |
| | | void fill_truth_detection(char *path, float *truth, int height, int width, int num_height, int num_width, float scale, int dx, int dy) |
| | | void fill_truth_detection(char *path, float *truth, int height, int width, int num_height, int num_width, int dy, int dx, int jitter) |
| | | { |
| | | int box_height = height/num_height; |
| | | int box_width = width/num_width; |
| | | char *labelpath = find_replace(path, "imgs", "det"); |
| | | char *labelpath = find_replace(path, "imgs", "det/train"); |
| | | labelpath = find_replace(labelpath, ".JPEG", ".txt"); |
| | | FILE *file = fopen(labelpath, "r"); |
| | | if(!file) file_error(labelpath); |
| | | int x, y, h, w; |
| | | while(fscanf(file, "%d %d %d %d", &x, &y, &w, &h) == 4){ |
| | | float x, y, h, w; |
| | | while(fscanf(file, "%f %f %f %f", &x, &y, &w, &h) == 4){ |
| | | x *= width + jitter; |
| | | y *= height + jitter; |
| | | x -= dx; |
| | | y -= dy; |
| | | int i = x/box_width; |
| | |
| | | if(j < 0) j = 0; |
| | | if(j >= num_height) j = num_height-1; |
| | | |
| | | float dw = (float)(x%box_width)/box_height; |
| | | float dh = (float)(y%box_width)/box_width; |
| | | float sh = h/scale; |
| | | float sw = w/scale; |
| | | float dw = (x - i*box_width)/box_width; |
| | | float dh = (y - j*box_height)/box_height; |
| | | //printf("%d %d %f %f\n", i, j, dh, dw); |
| | | int index = (i+j*num_width)*5; |
| | | truth[index++] = 1; |
| | | truth[index++] = dh; |
| | | truth[index++] = dw; |
| | | truth[index++] = sh; |
| | | truth[index++] = sw; |
| | | truth[index++] = h*(height+jitter)/height; |
| | | truth[index++] = w*(width+jitter)/width; |
| | | } |
| | | fclose(file); |
| | | } |
| | |
| | | { |
| | | int i; |
| | | memset(truth, 0, k*sizeof(float)); |
| | | int count = 0; |
| | | for(i = 0; i < k; ++i){ |
| | | if(strstr(path, labels[i])){ |
| | | truth[i] = 1; |
| | | ++count; |
| | | } |
| | | } |
| | | if(count != 1) printf("%d, %s\n", count, path); |
| | | } |
| | | |
| | | matrix load_image_paths(char **paths, int n, int h, int w) |
| | |
| | | return X; |
| | | } |
| | | |
| | | char **get_random_paths(char **paths, int n, int m) |
| | | { |
| | | char **random_paths = calloc(n, sizeof(char*)); |
| | | int i; |
| | | for(i = 0; i < n; ++i){ |
| | | int index = rand()%m; |
| | | random_paths[i] = paths[index]; |
| | | if(i == 0) printf("%s\n", paths[index]); |
| | | } |
| | | return random_paths; |
| | | } |
| | | |
| | | matrix load_labels_paths(char **paths, int n, char **labels, int k) |
| | | { |
| | | matrix y = make_matrix(n, k); |
| | | int i; |
| | | for(i = 0; i < n; ++i){ |
| | | for(i = 0; i < n && labels; ++i){ |
| | | fill_truth(paths[i], labels, k, y.vals[i]); |
| | | } |
| | | return y; |
| | | } |
| | | |
| | | matrix load_labels_detection(char **paths, int n, int height, int width, int num_height, int num_width, float scale) |
| | | matrix load_labels_detection(char **paths, int n, int height, int width, int num_height, int num_width) |
| | | { |
| | | int k = num_height*num_width*5; |
| | | matrix y = make_matrix(n, k); |
| | | int i; |
| | | for(i = 0; i < n; ++i){ |
| | | fill_truth_detection(paths[i], y.vals[i], height, width, num_height, num_width, scale,0,0); |
| | | fill_truth_detection(paths[i], y.vals[i], height, width, num_height, num_width, 0, 0, 0); |
| | | } |
| | | return y; |
| | | } |
| | |
| | | } |
| | | } |
| | | |
| | | data load_data_detection_jitter_random(int n, char **paths, int m, int h, int w, int nh, int nw, float scale) |
| | | data load_data_detection_jitter_random(int n, char **paths, int m, int h, int w, int nh, int nw, int jitter) |
| | | { |
| | | char **random_paths = calloc(n, sizeof(char*)); |
| | | char **random_paths = get_random_paths(paths, n, m); |
| | | int i; |
| | | for(i = 0; i < n; ++i){ |
| | | int index = rand()%m; |
| | | random_paths[i] = paths[index]; |
| | | if(i == 0) printf("%s\n", paths[index]); |
| | | } |
| | | data d; |
| | | d.shallow = 0; |
| | | d.X = load_image_paths(random_paths, n, h, w); |
| | | int k = nh*nw*5; |
| | | d.y = make_matrix(n, k); |
| | | for(i = 0; i < n; ++i){ |
| | | int dx = rand()%32; |
| | | int dy = rand()%32; |
| | | fill_truth_detection(random_paths[i], d.y.vals[i], 224, 224, nh, nw, scale, dx, dy); |
| | | |
| | | int dx = rand()%jitter; |
| | | int dy = rand()%jitter; |
| | | fill_truth_detection(random_paths[i], d.y.vals[i], h-jitter, w-jitter, nh, nw, dy, dx, jitter); |
| | | image a = float_to_image(h, w, 3, d.X.vals[i]); |
| | | jitter_image(a,224,224,dy,dx); |
| | | jitter_image(a,h-jitter,w-jitter,dy,dx); |
| | | } |
| | | d.X.cols = (h-jitter)*(w-jitter)*3; |
| | | free(random_paths); |
| | | return d; |
| | | } |
| | | |
| | | |
| | | data load_data_detection_random(int n, char **paths, int m, int h, int w, int nh, int nw, float scale) |
| | | void *load_detection_thread(void *ptr) |
| | | { |
| | | char **random_paths = calloc(n, sizeof(char*)); |
| | | int i; |
| | | for(i = 0; i < n; ++i){ |
| | | int index = rand()%m; |
| | | random_paths[i] = paths[index]; |
| | | if(i == 0) printf("%s\n", paths[index]); |
| | | struct load_args a = *(struct load_args*)ptr; |
| | | *a.d = load_data_detection_jitter_random(a.n, a.paths, a.m, a.h, a.w, a.nh, a.nw, a.jitter); |
| | | translate_data_rows(*a.d, -128); |
| | | scale_data_rows(*a.d, 1./128); |
| | | free(ptr); |
| | | return 0; |
| | | } |
| | | |
| | | pthread_t load_data_detection_thread(int n, char **paths, int m, int h, int w, int nh, int nw, int jitter, data *d) |
| | | { |
| | | pthread_t thread; |
| | | struct load_args *args = calloc(1, sizeof(struct load_args)); |
| | | args->n = n; |
| | | args->paths = paths; |
| | | args->m = m; |
| | | args->h = h; |
| | | args->w = w; |
| | | args->nh = nh; |
| | | args->nw = nw; |
| | | args->jitter = jitter; |
| | | args->d = d; |
| | | if(pthread_create(&thread, 0, load_detection_thread, args)) { |
| | | error("Thread creation failed"); |
| | | } |
| | | return thread; |
| | | } |
| | | |
| | | data load_data_detection_random(int n, char **paths, int m, int h, int w, int nh, int nw) |
| | | { |
| | | char **random_paths = get_random_paths(paths, n, m); |
| | | data d; |
| | | d.shallow = 0; |
| | | d.X = load_image_paths(random_paths, n, h, w); |
| | | d.y = load_labels_detection(random_paths, n, h, w, nh, nw, scale); |
| | | d.y = load_labels_detection(random_paths, n, h, w, nh, nw); |
| | | free(random_paths); |
| | | return d; |
| | | } |
| | | |
| | | data load_data(char **paths, int n, char **labels, int k, int h, int w) |
| | | data load_data(char **paths, int n, int m, char **labels, int k, int h, int w) |
| | | { |
| | | if(m) paths = get_random_paths(paths, n, m); |
| | | data d; |
| | | d.shallow = 0; |
| | | d.X = load_image_paths(paths, n, h, w); |
| | | d.y = load_labels_paths(paths, n, labels, k); |
| | | if(m) free(paths); |
| | | return d; |
| | | } |
| | | |
| | | data load_data_random(int n, char **paths, int m, char **labels, int k, int h, int w) |
| | | { |
| | | char **random_paths = calloc(n, sizeof(char*)); |
| | | int i; |
| | | for(i = 0; i < n; ++i){ |
| | | int index = rand()%m; |
| | | random_paths[i] = paths[index]; |
| | | if(i == 0) printf("%s\n", paths[index]); |
| | | } |
| | | data d = load_data(random_paths, n, labels, k, h, w); |
| | | free(random_paths); |
| | | return d; |
| | | } |
| | | |
| | | struct load_args{ |
| | | int n; |
| | | char **paths; |
| | | int m; |
| | | char **labels; |
| | | int k; |
| | | int h; |
| | | int w; |
| | | data *d; |
| | | }; |
| | | |
| | | void *load_in_thread(void *ptr) |
| | | { |
| | | struct load_args a = *(struct load_args*)ptr; |
| | | *a.d = load_data_random(a.n, a.paths, a.m, a.labels, a.k, a.h, a.w); |
| | | *a.d = load_data(a.paths, a.n, a.m, a.labels, a.k, a.h, a.w); |
| | | translate_data_rows(*a.d, -128); |
| | | scale_data_rows(*a.d, 1./128); |
| | | free(ptr); |
| | | return 0; |
| | | } |
| | | |
| | | pthread_t load_data_random_thread(int n, char **paths, int m, char **labels, int k, int h, int w, data *d) |
| | | pthread_t load_data_thread(char **paths, int n, int m, char **labels, int k, int h, int w, data *d) |
| | | { |
| | | pthread_t thread; |
| | | struct load_args *args = calloc(1, sizeof(struct load_args)); |
| | |
| | | X.vals[i][j] = (double)bytes[j+1]; |
| | | } |
| | | } |
| | | translate_data_rows(d, -144); |
| | | scale_data_rows(d, 1./128); |
| | | //normalize_data_rows(d); |
| | | translate_data_rows(d, -144); |
| | | scale_data_rows(d, 1./128); |
| | | //normalize_data_rows(d); |
| | | fclose(fp); |
| | | return d; |
| | | } |