1 /*
2 * Copyright 2013 The LibYuv Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11 // Convert an ARGB image to YUV.
12 // Usage: yuvconvert src_argb.raw dst_yuv.raw
13
14 #ifndef _CRT_SECURE_NO_WARNINGS
15 #define _CRT_SECURE_NO_WARNINGS
16 #endif
17
18 #include <stddef.h>
19 #include <stdio.h>
20 #include <stdlib.h>
21 #include <string.h>
22
23 #include "libyuv/convert.h"
24 #include "libyuv/planar_functions.h"
25 #include "libyuv/scale_argb.h"
26
27 // options
28 bool verbose = false;
29 bool attenuate = false;
30 bool unattenuate = false;
31 int image_width = 0, image_height = 0; // original width and height
32 int dst_width = 0, dst_height = 0; // new width and height
33 int fileindex_org = 0; // argv argument contains the original file name.
34 int fileindex_rec = 0; // argv argument contains the reconstructed file name.
35 int num_rec = 0; // Number of reconstructed images.
36 int num_skip_org = 0; // Number of frames to skip in original.
37 int num_frames = 0; // Number of frames to convert.
38 int filter = 1; // Bilinear filter for scaling.
39
Abs(int32_t v)40 static __inline uint32_t Abs(int32_t v) {
41 return v >= 0 ? v : -v;
42 }
43
44 // Parse PYUV format. ie name.1920x800_24Hz_P420.yuv
ExtractResolutionFromFilename(const char * name,int * width_ptr,int * height_ptr)45 bool ExtractResolutionFromFilename(const char* name,
46 int* width_ptr,
47 int* height_ptr) {
48 // Isolate the .width_height. section of the filename by searching for a
49 // dot or underscore followed by a digit.
50 for (int i = 0; name[i]; ++i) {
51 if ((name[i] == '.' || name[i] == '_') && name[i + 1] >= '0' &&
52 name[i + 1] <= '9') {
53 int n = sscanf(name + i + 1, "%dx%d", width_ptr, height_ptr); // NOLINT
54 if (2 == n) {
55 return true;
56 }
57 }
58 }
59 return false;
60 }
61
PrintHelp(const char * program)62 void PrintHelp(const char* program) {
63 printf("%s [-options] src_argb.raw dst_yuv.raw\n", program);
64 printf(
65 " -s <width> <height> .... specify source resolution. "
66 "Optional if name contains\n"
67 " resolution (ie. "
68 "name.1920x800_24Hz_P420.yuv)\n"
69 " Negative value mirrors.\n");
70 printf(" -d <width> <height> .... specify destination resolution.\n");
71 printf(" -f <filter> ............ 0 = point, 1 = bilinear (default).\n");
72 printf(" -skip <src_argb> ....... Number of frame to skip of src_argb\n");
73 printf(" -frames <num> .......... Number of frames to convert\n");
74 printf(" -attenuate ............. Attenuate the ARGB image\n");
75 printf(" -unattenuate ........... Unattenuate the ARGB image\n");
76 printf(" -v ..................... verbose\n");
77 printf(" -h ..................... this help\n");
78 exit(0);
79 }
80
ParseOptions(int argc,const char * argv[])81 void ParseOptions(int argc, const char* argv[]) {
82 if (argc <= 1) {
83 PrintHelp(argv[0]);
84 }
85 for (int c = 1; c < argc; ++c) {
86 if (!strcmp(argv[c], "-v")) {
87 verbose = true;
88 } else if (!strcmp(argv[c], "-attenuate")) {
89 attenuate = true;
90 } else if (!strcmp(argv[c], "-unattenuate")) {
91 unattenuate = true;
92 } else if (!strcmp(argv[c], "-h") || !strcmp(argv[c], "-help")) {
93 PrintHelp(argv[0]);
94 } else if (!strcmp(argv[c], "-s") && c + 2 < argc) {
95 image_width = atoi(argv[++c]); // NOLINT
96 image_height = atoi(argv[++c]); // NOLINT
97 } else if (!strcmp(argv[c], "-d") && c + 2 < argc) {
98 dst_width = atoi(argv[++c]); // NOLINT
99 dst_height = atoi(argv[++c]); // NOLINT
100 } else if (!strcmp(argv[c], "-skip") && c + 1 < argc) {
101 num_skip_org = atoi(argv[++c]); // NOLINT
102 } else if (!strcmp(argv[c], "-frames") && c + 1 < argc) {
103 num_frames = atoi(argv[++c]); // NOLINT
104 } else if (!strcmp(argv[c], "-f") && c + 1 < argc) {
105 filter = atoi(argv[++c]); // NOLINT
106 } else if (argv[c][0] == '-') {
107 fprintf(stderr, "Unknown option. %s\n", argv[c]);
108 } else if (fileindex_org == 0) {
109 fileindex_org = c;
110 } else if (fileindex_rec == 0) {
111 fileindex_rec = c;
112 num_rec = 1;
113 } else {
114 ++num_rec;
115 }
116 }
117 if (fileindex_org == 0 || fileindex_rec == 0) {
118 fprintf(stderr, "Missing filenames\n");
119 PrintHelp(argv[0]);
120 }
121 if (num_skip_org < 0) {
122 fprintf(stderr, "Skipped frames incorrect\n");
123 PrintHelp(argv[0]);
124 }
125 if (num_frames < 0) {
126 fprintf(stderr, "Number of frames incorrect\n");
127 PrintHelp(argv[0]);
128 }
129
130 int org_width, org_height;
131 int rec_width, rec_height;
132 bool org_res_avail = ExtractResolutionFromFilename(argv[fileindex_org],
133 &org_width, &org_height);
134 bool rec_res_avail = ExtractResolutionFromFilename(argv[fileindex_rec],
135 &rec_width, &rec_height);
136 if (image_width == 0 || image_height == 0) {
137 if (org_res_avail) {
138 image_width = org_width;
139 image_height = org_height;
140 } else if (rec_res_avail) {
141 image_width = rec_width;
142 image_height = rec_height;
143 } else {
144 fprintf(stderr, "Missing dimensions.\n");
145 PrintHelp(argv[0]);
146 }
147 }
148 if (dst_width == 0 || dst_height == 0) {
149 if (rec_res_avail) {
150 dst_width = rec_width;
151 dst_height = rec_height;
152 } else {
153 dst_width = Abs(image_width);
154 dst_height = Abs(image_height);
155 }
156 }
157 }
158
159 static const int kTileX = 32;
160 static const int kTileY = 32;
161
TileARGBScale(const uint8_t * src_argb,int src_stride_argb,int src_width,int src_height,uint8_t * dst_argb,int dst_stride_argb,int dst_width,int dst_height,libyuv::FilterMode filtering)162 static int TileARGBScale(const uint8_t* src_argb,
163 int src_stride_argb,
164 int src_width,
165 int src_height,
166 uint8_t* dst_argb,
167 int dst_stride_argb,
168 int dst_width,
169 int dst_height,
170 libyuv::FilterMode filtering) {
171 for (int y = 0; y < dst_height; y += kTileY) {
172 for (int x = 0; x < dst_width; x += kTileX) {
173 int clip_width = kTileX;
174 if (x + clip_width > dst_width) {
175 clip_width = dst_width - x;
176 }
177 int clip_height = kTileY;
178 if (y + clip_height > dst_height) {
179 clip_height = dst_height - y;
180 }
181 int r = libyuv::ARGBScaleClip(src_argb, src_stride_argb, src_width,
182 src_height, dst_argb, dst_stride_argb,
183 dst_width, dst_height, x, y, clip_width,
184 clip_height, filtering);
185 if (r) {
186 return r;
187 }
188 }
189 }
190 return 0;
191 }
192
main(int argc,const char * argv[])193 int main(int argc, const char* argv[]) {
194 ParseOptions(argc, argv);
195
196 // Open original file (first file argument)
197 FILE* const file_org = fopen(argv[fileindex_org], "rb");
198 if (file_org == NULL) {
199 fprintf(stderr, "Cannot open %s\n", argv[fileindex_org]);
200 exit(1);
201 }
202
203 // Open all files to convert to
204 FILE** file_rec = new FILE*[num_rec];
205 memset(file_rec, 0, num_rec * sizeof(FILE*)); // NOLINT
206 for (int cur_rec = 0; cur_rec < num_rec; ++cur_rec) {
207 file_rec[cur_rec] = fopen(argv[fileindex_rec + cur_rec], "wb");
208 if (file_rec[cur_rec] == NULL) {
209 fprintf(stderr, "Cannot open %s\n", argv[fileindex_rec + cur_rec]);
210 fclose(file_org);
211 for (int i = 0; i < cur_rec; ++i) {
212 fclose(file_rec[i]);
213 }
214 delete[] file_rec;
215 exit(1);
216 }
217 }
218
219 bool org_is_yuv = strstr(argv[fileindex_org], "_P420.") != NULL;
220 bool org_is_argb = strstr(argv[fileindex_org], "_ARGB.") != NULL;
221 if (!org_is_yuv && !org_is_argb) {
222 fprintf(stderr, "Original format unknown %s\n", argv[fileindex_org]);
223 exit(1);
224 }
225 int org_size = Abs(image_width) * Abs(image_height) * 4; // ARGB
226 // Input is YUV
227 if (org_is_yuv) {
228 const int y_size = Abs(image_width) * Abs(image_height);
229 const int uv_size =
230 ((Abs(image_width) + 1) / 2) * ((Abs(image_height) + 1) / 2);
231 org_size = y_size + 2 * uv_size; // YUV original.
232 }
233
234 const int dst_size = dst_width * dst_height * 4; // ARGB scaled
235 const int y_size = dst_width * dst_height;
236 const int uv_size = ((dst_width + 1) / 2) * ((dst_height + 1) / 2);
237 const size_t total_size = y_size + 2 * uv_size;
238 #if defined(_MSC_VER)
239 _fseeki64(file_org,
240 static_cast<__int64>(num_skip_org) * static_cast<__int64>(org_size),
241 SEEK_SET);
242 #else
243 fseek(file_org, num_skip_org * total_size, SEEK_SET);
244 #endif
245
246 uint8_t* const ch_org = new uint8_t[org_size];
247 uint8_t* const ch_dst = new uint8_t[dst_size];
248 uint8_t* const ch_rec = new uint8_t[total_size];
249 if (ch_org == NULL || ch_rec == NULL) {
250 fprintf(stderr, "No memory available\n");
251 fclose(file_org);
252 for (int i = 0; i < num_rec; ++i) {
253 fclose(file_rec[i]);
254 }
255 delete[] ch_org;
256 delete[] ch_dst;
257 delete[] ch_rec;
258 delete[] file_rec;
259 exit(1);
260 }
261
262 if (verbose) {
263 printf("Size: %dx%d to %dx%d\n", image_width, image_height, dst_width,
264 dst_height);
265 }
266
267 int number_of_frames;
268 for (number_of_frames = 0;; ++number_of_frames) {
269 if (num_frames && number_of_frames >= num_frames) {
270 break;
271 }
272
273 // Load original YUV or ARGB frame.
274 size_t bytes_org =
275 fread(ch_org, sizeof(uint8_t), static_cast<size_t>(org_size), file_org);
276 if (bytes_org < static_cast<size_t>(org_size)) {
277 break;
278 }
279
280 // TODO(fbarchard): Attenuate doesnt need to know dimensions.
281 // ARGB attenuate frame
282 if (org_is_argb && attenuate) {
283 libyuv::ARGBAttenuate(ch_org, 0, ch_org, 0, org_size / 4, 1);
284 }
285 // ARGB unattenuate frame
286 if (org_is_argb && unattenuate) {
287 libyuv::ARGBUnattenuate(ch_org, 0, ch_org, 0, org_size / 4, 1);
288 }
289
290 for (int cur_rec = 0; cur_rec < num_rec; ++cur_rec) {
291 // Scale YUV or ARGB frame.
292 if (org_is_yuv) {
293 int src_width = Abs(image_width);
294 int src_height = Abs(image_height);
295 int half_src_width = (src_width + 1) / 2;
296 int half_src_height = (src_height + 1) / 2;
297 int half_dst_width = (dst_width + 1) / 2;
298 int half_dst_height = (dst_height + 1) / 2;
299 I420Scale(
300 ch_org, src_width, ch_org + src_width * src_height, half_src_width,
301 ch_org + src_width * src_height + half_src_width * half_src_height,
302 half_src_width, image_width, image_height, ch_rec, dst_width,
303 ch_rec + dst_width * dst_height, half_dst_width,
304 ch_rec + dst_width * dst_height + half_dst_width * half_dst_height,
305 half_dst_width, dst_width, dst_height,
306 static_cast<libyuv::FilterMode>(filter));
307 } else {
308 TileARGBScale(ch_org, Abs(image_width) * 4, image_width, image_height,
309 ch_dst, dst_width * 4, dst_width, dst_height,
310 static_cast<libyuv::FilterMode>(filter));
311 }
312 bool rec_is_yuv = strstr(argv[fileindex_rec + cur_rec], "_P420.") != NULL;
313 bool rec_is_argb =
314 strstr(argv[fileindex_rec + cur_rec], "_ARGB.") != NULL;
315 if (!rec_is_yuv && !rec_is_argb) {
316 fprintf(stderr, "Output format unknown %s\n",
317 argv[fileindex_rec + cur_rec]);
318 continue; // Advance to next file.
319 }
320
321 // Convert ARGB to YUV.
322 if (!org_is_yuv && rec_is_yuv) {
323 int half_width = (dst_width + 1) / 2;
324 int half_height = (dst_height + 1) / 2;
325 libyuv::ARGBToI420(
326 ch_dst, dst_width * 4, ch_rec, dst_width,
327 ch_rec + dst_width * dst_height, half_width,
328 ch_rec + dst_width * dst_height + half_width * half_height,
329 half_width, dst_width, dst_height);
330 }
331
332 // Output YUV or ARGB frame.
333 if (rec_is_yuv) {
334 size_t bytes_rec =
335 fwrite(ch_rec, sizeof(uint8_t), static_cast<size_t>(total_size),
336 file_rec[cur_rec]);
337 if (bytes_rec < static_cast<size_t>(total_size)) {
338 break;
339 }
340 } else {
341 size_t bytes_rec =
342 fwrite(ch_dst, sizeof(uint8_t), static_cast<size_t>(dst_size),
343 file_rec[cur_rec]);
344 if (bytes_rec < static_cast<size_t>(dst_size)) {
345 break;
346 }
347 }
348 if (verbose) {
349 printf("%5d", number_of_frames);
350 }
351 if (verbose) {
352 printf("\t%s", argv[fileindex_rec + cur_rec]);
353 printf("\n");
354 }
355 }
356 }
357
358 fclose(file_org);
359 for (int cur_rec = 0; cur_rec < num_rec; ++cur_rec) {
360 fclose(file_rec[cur_rec]);
361 }
362 delete[] ch_org;
363 delete[] ch_dst;
364 delete[] ch_rec;
365 delete[] file_rec;
366 return 0;
367 }
368