A Simple X Image Viewer
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  1. /* Copyright 2011 Bert Muennich
  2. *
  3. * This file is part of sxiv.
  4. *
  5. * sxiv is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published
  7. * by the Free Software Foundation; either version 2 of the License,
  8. * or (at your option) any later version.
  9. *
  10. * sxiv is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with sxiv. If not, see <http://www.gnu.org/licenses/>.
  17. */
  18. #include "sxiv.h"
  19. #define _THUMBS_CONFIG
  20. #include "config.h"
  21. #include <errno.h>
  22. #include <stdlib.h>
  23. #include <string.h>
  24. #include <sys/types.h>
  25. #include <sys/stat.h>
  26. #include <unistd.h>
  27. #include <utime.h>
  28. #if HAVE_LIBEXIF
  29. #include <libexif/exif-data.h>
  30. void exif_auto_orientate(const fileinfo_t*);
  31. #endif
  32. Imlib_Image img_open(const fileinfo_t*);
  33. static char *cache_dir;
  34. char* tns_cache_filepath(const char *filepath)
  35. {
  36. size_t len;
  37. char *cfile = NULL;
  38. if (*filepath != '/')
  39. return NULL;
  40. if (strncmp(filepath, cache_dir, strlen(cache_dir)) != 0) {
  41. /* don't cache images inside the cache directory! */
  42. len = strlen(cache_dir) + strlen(filepath) + 2;
  43. cfile = (char*) emalloc(len);
  44. snprintf(cfile, len, "%s/%s", cache_dir, filepath + 1);
  45. }
  46. return cfile;
  47. }
  48. Imlib_Image tns_cache_load(const char *filepath, bool *outdated)
  49. {
  50. char *cfile;
  51. struct stat cstats, fstats;
  52. Imlib_Image im = NULL;
  53. if (stat(filepath, &fstats) < 0)
  54. return NULL;
  55. if ((cfile = tns_cache_filepath(filepath)) != NULL) {
  56. if (stat(cfile, &cstats) == 0) {
  57. if (cstats.st_mtime == fstats.st_mtime)
  58. im = imlib_load_image(cfile);
  59. else
  60. *outdated = true;
  61. }
  62. free(cfile);
  63. }
  64. return im;
  65. }
  66. void tns_cache_write(Imlib_Image im, const char *filepath, bool force)
  67. {
  68. char *cfile, *dirend;
  69. struct stat cstats, fstats;
  70. struct utimbuf times;
  71. Imlib_Load_Error err = 0;
  72. if (options->private_mode)
  73. return;
  74. if (stat(filepath, &fstats) < 0)
  75. return;
  76. if ((cfile = tns_cache_filepath(filepath)) != NULL) {
  77. if (force || stat(cfile, &cstats) < 0 ||
  78. cstats.st_mtime != fstats.st_mtime)
  79. {
  80. if ((dirend = strrchr(cfile, '/')) != NULL) {
  81. *dirend = '\0';
  82. if ((err = r_mkdir(cfile)) == -1)
  83. error(0, errno, "%s", cfile);
  84. *dirend = '/';
  85. }
  86. if (err == 0) {
  87. imlib_context_set_image(im);
  88. if (imlib_image_has_alpha()) {
  89. imlib_image_set_format("png");
  90. } else {
  91. imlib_image_set_format("jpg");
  92. imlib_image_attach_data_value("quality", NULL, 90, NULL);
  93. }
  94. imlib_save_image_with_error_return(cfile, &err);
  95. }
  96. if (err == 0) {
  97. times.actime = fstats.st_atime;
  98. times.modtime = fstats.st_mtime;
  99. utime(cfile, &times);
  100. }
  101. }
  102. free(cfile);
  103. }
  104. }
  105. void tns_clean_cache(tns_t *tns)
  106. {
  107. int dirlen;
  108. bool delete;
  109. char *cfile, *filename, *tpos;
  110. r_dir_t dir;
  111. if (r_opendir(&dir, cache_dir, true) < 0) {
  112. error(0, errno, "%s", cache_dir);
  113. return;
  114. }
  115. dirlen = strlen(cache_dir);
  116. while ((cfile = r_readdir(&dir)) != NULL) {
  117. filename = cfile + dirlen;
  118. delete = false;
  119. if ((tpos = strrchr(filename, '.')) != NULL) {
  120. *tpos = '\0';
  121. if (access(filename, F_OK) < 0)
  122. delete = true;
  123. *tpos = '.';
  124. }
  125. if (delete) {
  126. if (unlink(cfile) < 0)
  127. error(0, errno, "%s", cfile);
  128. }
  129. free(cfile);
  130. }
  131. r_closedir(&dir);
  132. }
  133. void tns_init(tns_t *tns, fileinfo_t *files, const int *cnt, int *sel,
  134. win_t *win)
  135. {
  136. int len;
  137. const char *homedir, *dsuffix = "";
  138. if (cnt != NULL && *cnt > 0) {
  139. tns->thumbs = (thumb_t*) emalloc(*cnt * sizeof(thumb_t));
  140. memset(tns->thumbs, 0, *cnt * sizeof(thumb_t));
  141. } else {
  142. tns->thumbs = NULL;
  143. }
  144. tns->files = files;
  145. tns->cnt = cnt;
  146. tns->initnext = tns->loadnext = 0;
  147. tns->first = tns->end = tns->r_first = tns->r_end = 0;
  148. tns->sel = sel;
  149. tns->win = win;
  150. tns->dirty = false;
  151. tns->zl = THUMB_SIZE;
  152. tns_zoom(tns, 0);
  153. if ((homedir = getenv("XDG_CACHE_HOME")) == NULL || homedir[0] == '\0') {
  154. homedir = getenv("HOME");
  155. dsuffix = "/.cache";
  156. }
  157. if (homedir != NULL) {
  158. free(cache_dir);
  159. len = strlen(homedir) + strlen(dsuffix) + 6;
  160. cache_dir = (char*) emalloc(len);
  161. snprintf(cache_dir, len, "%s%s/sxiv", homedir, dsuffix);
  162. } else {
  163. error(0, 0, "Cache directory not found");
  164. }
  165. }
  166. CLEANUP void tns_free(tns_t *tns)
  167. {
  168. int i;
  169. if (tns->thumbs != NULL) {
  170. for (i = 0; i < *tns->cnt; i++) {
  171. if (tns->thumbs[i].im != NULL) {
  172. imlib_context_set_image(tns->thumbs[i].im);
  173. imlib_free_image();
  174. }
  175. }
  176. free(tns->thumbs);
  177. tns->thumbs = NULL;
  178. }
  179. free(cache_dir);
  180. cache_dir = NULL;
  181. }
  182. Imlib_Image tns_scale_down(Imlib_Image im, int dim)
  183. {
  184. int w, h;
  185. float z, zw, zh;
  186. imlib_context_set_image(im);
  187. w = imlib_image_get_width();
  188. h = imlib_image_get_height();
  189. zw = (float) dim / (float) w;
  190. zh = (float) dim / (float) h;
  191. z = MIN(zw, zh);
  192. z = MIN(z, 1.0);
  193. if (z < 1.0) {
  194. imlib_context_set_anti_alias(1);
  195. im = imlib_create_cropped_scaled_image(0, 0, w, h,
  196. MAX(z * w, 1), MAX(z * h, 1));
  197. if (im == NULL)
  198. error(EXIT_FAILURE, ENOMEM, NULL);
  199. imlib_free_image_and_decache();
  200. }
  201. return im;
  202. }
  203. bool tns_load(tns_t *tns, int n, bool force, bool cache_only)
  204. {
  205. int maxwh = thumb_sizes[ARRLEN(thumb_sizes)-1];
  206. bool cache_hit = false;
  207. char *cfile;
  208. thumb_t *t;
  209. fileinfo_t *file;
  210. Imlib_Image im = NULL;
  211. if (n < 0 || n >= *tns->cnt)
  212. return false;
  213. file = &tns->files[n];
  214. if (file->name == NULL || file->path == NULL)
  215. return false;
  216. t = &tns->thumbs[n];
  217. if (t->im != NULL) {
  218. imlib_context_set_image(t->im);
  219. imlib_free_image();
  220. t->im = NULL;
  221. }
  222. if (!force) {
  223. if ((im = tns_cache_load(file->path, &force)) != NULL) {
  224. imlib_context_set_image(im);
  225. if (imlib_image_get_width() < maxwh &&
  226. imlib_image_get_height() < maxwh)
  227. {
  228. if ((cfile = tns_cache_filepath(file->path)) != NULL) {
  229. unlink(cfile);
  230. free(cfile);
  231. }
  232. imlib_free_image_and_decache();
  233. im = NULL;
  234. } else {
  235. cache_hit = true;
  236. }
  237. #if HAVE_LIBEXIF
  238. } else if (!force && !options->private_mode) {
  239. int pw = 0, ph = 0, w, h, x = 0, y = 0;
  240. bool err;
  241. float zw, zh;
  242. ExifData *ed;
  243. ExifEntry *entry;
  244. ExifContent *ifd;
  245. ExifByteOrder byte_order;
  246. int tmpfd;
  247. char tmppath[] = "/tmp/sxiv-XXXXXX";
  248. Imlib_Image tmpim;
  249. if ((ed = exif_data_new_from_file(file->path)) != NULL) {
  250. if (ed->data != NULL && ed->size > 0 &&
  251. (tmpfd = mkstemp(tmppath)) >= 0)
  252. {
  253. err = write(tmpfd, ed->data, ed->size) != ed->size;
  254. close(tmpfd);
  255. if (!err && (tmpim = imlib_load_image(tmppath)) != NULL) {
  256. byte_order = exif_data_get_byte_order(ed);
  257. ifd = ed->ifd[EXIF_IFD_EXIF];
  258. entry = exif_content_get_entry(ifd, EXIF_TAG_PIXEL_X_DIMENSION);
  259. if (entry != NULL)
  260. pw = exif_get_long(entry->data, byte_order);
  261. entry = exif_content_get_entry(ifd, EXIF_TAG_PIXEL_Y_DIMENSION);
  262. if (entry != NULL)
  263. ph = exif_get_long(entry->data, byte_order);
  264. imlib_context_set_image(tmpim);
  265. w = imlib_image_get_width();
  266. h = imlib_image_get_height();
  267. if (pw > w && ph > h && (pw - ph >= 0) == (w - h >= 0)) {
  268. zw = (float) pw / (float) w;
  269. zh = (float) ph / (float) h;
  270. if (zw < zh) {
  271. pw /= zh;
  272. x = (w - pw) / 2;
  273. w = pw;
  274. } else if (zw > zh) {
  275. ph /= zw;
  276. y = (h - ph) / 2;
  277. h = ph;
  278. }
  279. }
  280. if (w >= maxwh || h >= maxwh) {
  281. if ((im = imlib_create_cropped_image(x, y, w, h)) == NULL)
  282. error(EXIT_FAILURE, ENOMEM, NULL);
  283. }
  284. imlib_free_image_and_decache();
  285. }
  286. unlink(tmppath);
  287. }
  288. exif_data_unref(ed);
  289. }
  290. #endif
  291. }
  292. }
  293. if (im == NULL) {
  294. if ((im = img_open(file)) == NULL)
  295. return false;
  296. }
  297. imlib_context_set_image(im);
  298. if (!cache_hit) {
  299. #if HAVE_LIBEXIF
  300. exif_auto_orientate(file);
  301. #endif
  302. im = tns_scale_down(im, maxwh);
  303. imlib_context_set_image(im);
  304. if (imlib_image_get_width() == maxwh || imlib_image_get_height() == maxwh)
  305. tns_cache_write(im, file->path, true);
  306. }
  307. if (cache_only) {
  308. imlib_free_image_and_decache();
  309. } else {
  310. t->im = tns_scale_down(im, thumb_sizes[tns->zl]);
  311. imlib_context_set_image(t->im);
  312. t->w = imlib_image_get_width();
  313. t->h = imlib_image_get_height();
  314. tns->dirty = true;
  315. }
  316. file->flags |= FF_TN_INIT;
  317. if (n == tns->initnext)
  318. while (++tns->initnext < *tns->cnt && ((++file)->flags & FF_TN_INIT));
  319. if (n == tns->loadnext && !cache_only)
  320. while (++tns->loadnext < tns->end && (++t)->im != NULL);
  321. return true;
  322. }
  323. void tns_unload(tns_t *tns, int n)
  324. {
  325. thumb_t *t;
  326. if (n < 0 || n >= *tns->cnt)
  327. return;
  328. t = &tns->thumbs[n];
  329. if (t->im != NULL) {
  330. imlib_context_set_image(t->im);
  331. imlib_free_image();
  332. t->im = NULL;
  333. }
  334. }
  335. void tns_check_view(tns_t *tns, bool scrolled)
  336. {
  337. int r;
  338. if (tns == NULL)
  339. return;
  340. tns->first -= tns->first % tns->cols;
  341. r = *tns->sel % tns->cols;
  342. if (scrolled) {
  343. /* move selection into visible area */
  344. if (*tns->sel >= tns->first + tns->cols * tns->rows)
  345. *tns->sel = tns->first + r + tns->cols * (tns->rows - 1);
  346. else if (*tns->sel < tns->first)
  347. *tns->sel = tns->first + r;
  348. } else {
  349. /* scroll to selection */
  350. if (tns->first + tns->cols * tns->rows <= *tns->sel) {
  351. tns->first = *tns->sel - r - tns->cols * (tns->rows - 1);
  352. tns->dirty = true;
  353. } else if (tns->first > *tns->sel) {
  354. tns->first = *tns->sel - r;
  355. tns->dirty = true;
  356. }
  357. }
  358. }
  359. void tns_render(tns_t *tns)
  360. {
  361. thumb_t *t;
  362. win_t *win;
  363. int i, cnt, r, x, y;
  364. if (!tns->dirty)
  365. return;
  366. win = tns->win;
  367. win_clear(win);
  368. imlib_context_set_drawable(win->buf.pm);
  369. tns->cols = MAX(1, win->w / tns->dim);
  370. tns->rows = MAX(1, win->h / tns->dim);
  371. if (*tns->cnt < tns->cols * tns->rows) {
  372. tns->first = 0;
  373. cnt = *tns->cnt;
  374. } else {
  375. tns_check_view(tns, false);
  376. cnt = tns->cols * tns->rows;
  377. if ((r = tns->first + cnt - *tns->cnt) >= tns->cols)
  378. tns->first -= r - r % tns->cols;
  379. if (r > 0)
  380. cnt -= r % tns->cols;
  381. }
  382. r = cnt % tns->cols ? 1 : 0;
  383. tns->x = x = (win->w - MIN(cnt, tns->cols) * tns->dim) / 2 + tns->bw + 3;
  384. tns->y = y = (win->h - (cnt / tns->cols + r) * tns->dim) / 2 + tns->bw + 3;
  385. tns->loadnext = *tns->cnt;
  386. tns->end = tns->first + cnt;
  387. for (i = tns->r_first; i < tns->r_end; i++) {
  388. if ((i < tns->first || i >= tns->end) && tns->thumbs[i].im != NULL)
  389. tns_unload(tns, i);
  390. }
  391. tns->r_first = tns->first;
  392. tns->r_end = tns->end;
  393. for (i = tns->first; i < tns->end; i++) {
  394. t = &tns->thumbs[i];
  395. if (t->im != NULL) {
  396. t->x = x + (thumb_sizes[tns->zl] - t->w) / 2;
  397. t->y = y + (thumb_sizes[tns->zl] - t->h) / 2;
  398. imlib_context_set_image(t->im);
  399. imlib_render_image_on_drawable_at_size(t->x, t->y, t->w, t->h);
  400. if (tns->files[i].flags & FF_MARK)
  401. tns_mark(tns, i, true);
  402. } else {
  403. tns->loadnext = MIN(tns->loadnext, i);
  404. }
  405. if ((i + 1) % tns->cols == 0) {
  406. x = tns->x;
  407. y += tns->dim;
  408. } else {
  409. x += tns->dim;
  410. }
  411. }
  412. tns->dirty = false;
  413. tns_highlight(tns, *tns->sel, true);
  414. }
  415. void tns_mark(tns_t *tns, int n, bool mark)
  416. {
  417. if (n >= 0 && n < *tns->cnt && tns->thumbs[n].im != NULL) {
  418. win_t *win = tns->win;
  419. thumb_t *t = &tns->thumbs[n];
  420. unsigned long col = win->fullscreen ? win->fscol.pixel : win->bgcol.pixel;
  421. int x = t->x + t->w, y = t->y + t->h;
  422. win_draw_rect(win, x - 1, y + 1, 1, tns->bw, true, 1, col);
  423. win_draw_rect(win, x + 1, y - 1, tns->bw, 1, true, 1, col);
  424. if (mark)
  425. col = win->selcol.pixel;
  426. win_draw_rect(win, x, y, tns->bw + 2, tns->bw + 2, true, 1, col);
  427. if (!mark && n == *tns->sel)
  428. tns_highlight(tns, n, true);
  429. }
  430. }
  431. void tns_highlight(tns_t *tns, int n, bool hl)
  432. {
  433. if (n >= 0 && n < *tns->cnt && tns->thumbs[n].im != NULL) {
  434. win_t *win = tns->win;
  435. thumb_t *t = &tns->thumbs[n];
  436. unsigned long col;
  437. int oxy = (tns->bw + 1) / 2 + 1, owh = tns->bw + 2;
  438. if (hl)
  439. col = win->selcol.pixel;
  440. else
  441. col = win->fullscreen ? win->fscol.pixel : win->bgcol.pixel;
  442. win_draw_rect(win, t->x - oxy, t->y - oxy, t->w + owh, t->h + owh,
  443. false, tns->bw, col);
  444. if (tns->files[n].flags & FF_MARK)
  445. tns_mark(tns, n, true);
  446. }
  447. }
  448. bool tns_move_selection(tns_t *tns, direction_t dir, int cnt)
  449. {
  450. int old, max;
  451. old = *tns->sel;
  452. cnt = cnt > 1 ? cnt : 1;
  453. switch (dir) {
  454. case DIR_UP:
  455. *tns->sel = MAX(*tns->sel - cnt * tns->cols, *tns->sel % tns->cols);
  456. break;
  457. case DIR_DOWN:
  458. max = tns->cols * ((*tns->cnt - 1) / tns->cols) +
  459. MIN((*tns->cnt - 1) % tns->cols, *tns->sel % tns->cols);
  460. *tns->sel = MIN(*tns->sel + cnt * tns->cols, max);
  461. break;
  462. case DIR_LEFT:
  463. *tns->sel = MAX(*tns->sel - cnt, 0);
  464. break;
  465. case DIR_RIGHT:
  466. *tns->sel = MIN(*tns->sel + cnt, *tns->cnt - 1);
  467. break;
  468. }
  469. if (*tns->sel != old) {
  470. tns_highlight(tns, old, false);
  471. tns_check_view(tns, false);
  472. if (!tns->dirty)
  473. tns_highlight(tns, *tns->sel, true);
  474. }
  475. return *tns->sel != old;
  476. }
  477. bool tns_scroll(tns_t *tns, direction_t dir, bool screen)
  478. {
  479. int d, max, old;
  480. old = tns->first;
  481. d = tns->cols * (screen ? tns->rows : 1);
  482. if (dir == DIR_DOWN) {
  483. max = *tns->cnt - tns->cols * tns->rows;
  484. if (*tns->cnt % tns->cols != 0)
  485. max += tns->cols - *tns->cnt % tns->cols;
  486. tns->first = MIN(tns->first + d, max);
  487. } else if (dir == DIR_UP) {
  488. tns->first = MAX(tns->first - d, 0);
  489. }
  490. if (tns->first != old) {
  491. tns_check_view(tns, true);
  492. tns->dirty = true;
  493. }
  494. return tns->first != old;
  495. }
  496. bool tns_zoom(tns_t *tns, int d)
  497. {
  498. int i, oldzl;
  499. oldzl = tns->zl;
  500. tns->zl += -(d < 0) + (d > 0);
  501. tns->zl = MAX(tns->zl, 0);
  502. tns->zl = MIN(tns->zl, ARRLEN(thumb_sizes)-1);
  503. tns->bw = ((thumb_sizes[tns->zl] - 1) >> 5) + 1;
  504. tns->bw = MIN(tns->bw, 4);
  505. tns->dim = thumb_sizes[tns->zl] + 2 * tns->bw + 6;
  506. if (tns->zl != oldzl) {
  507. for (i = 0; i < *tns->cnt; i++)
  508. tns_unload(tns, i);
  509. tns->dirty = true;
  510. }
  511. return tns->zl != oldzl;
  512. }
  513. int tns_translate(tns_t *tns, int x, int y)
  514. {
  515. int n;
  516. if (x < tns->x || y < tns->y)
  517. return -1;
  518. n = tns->first + (y - tns->y) / tns->dim * tns->cols +
  519. (x - tns->x) / tns->dim;
  520. if (n >= *tns->cnt)
  521. n = -1;
  522. return n;
  523. }