A Simple X Image Viewer
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  1. /* sxiv: image.c
  2. * Copyright (c) 2012 Bert Muennich <be.muennich at googlemail.com>
  3. *
  4. * This program is free software; you can redistribute it and/or modify it
  5. * under the terms of the GNU General Public License as published by the
  6. * Free Software Foundation; either version 2 of the License, or (at your
  7. * option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful, but
  10. * WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along
  15. * with this program; if not, write to the Free Software Foundation, Inc.,
  16. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
  17. */
  18. #define _POSIX_C_SOURCE 200112L
  19. #define _IMAGE_CONFIG
  20. #include <stdlib.h>
  21. #include <string.h>
  22. #include <sys/types.h>
  23. #include <unistd.h>
  24. #include <gif_lib.h>
  25. #include "exif.h"
  26. #include "image.h"
  27. #include "options.h"
  28. #include "util.h"
  29. #include "config.h"
  30. enum { MIN_GIF_DELAY = 25 };
  31. float zoom_min;
  32. float zoom_max;
  33. int zoomdiff(float z1, float z2) {
  34. return (int) (z1 * 1000.0 - z2 * 1000.0);
  35. }
  36. void img_init(img_t *img, win_t *win) {
  37. zoom_min = zoom_levels[0] / 100.0;
  38. zoom_max = zoom_levels[ARRLEN(zoom_levels) - 1] / 100.0;
  39. if (img == NULL || win == NULL)
  40. return;
  41. imlib_context_set_display(win->env.dpy);
  42. imlib_context_set_visual(win->env.vis);
  43. imlib_context_set_colormap(win->env.cmap);
  44. img->im = NULL;
  45. img->win = win;
  46. img->zoom = options->zoom;
  47. img->zoom = MAX(img->zoom, zoom_min);
  48. img->zoom = MIN(img->zoom, zoom_max);
  49. img->checkpan = false;
  50. img->dirty = false;
  51. img->aa = options->aa;
  52. img->alpha = true;
  53. img->multi.cap = img->multi.cnt = 0;
  54. img->multi.animate = false;
  55. }
  56. void exif_auto_orientate(const fileinfo_t *file) {
  57. switch (exif_orientation(file)) {
  58. case 5:
  59. imlib_image_orientate(1);
  60. case 2:
  61. imlib_image_flip_vertical();
  62. break;
  63. case 3:
  64. imlib_image_orientate(2);
  65. break;
  66. case 7:
  67. imlib_image_orientate(1);
  68. case 4:
  69. imlib_image_flip_horizontal();
  70. break;
  71. case 6:
  72. imlib_image_orientate(1);
  73. break;
  74. case 8:
  75. imlib_image_orientate(3);
  76. break;
  77. }
  78. }
  79. bool img_load_gif(img_t *img, const fileinfo_t *file) {
  80. GifFileType *gif;
  81. GifRowType *rows = NULL;
  82. GifRecordType rec;
  83. ColorMapObject *cmap;
  84. DATA32 bgpixel, *data, *ptr;
  85. DATA32 *prev_frame = NULL;
  86. Imlib_Image *im;
  87. int i, j, bg, r, g, b;
  88. int x, y, w, h, sw, sh;
  89. int px, py, pw, ph;
  90. int intoffset[] = { 0, 4, 2, 1 };
  91. int intjump[] = { 8, 8, 4, 2 };
  92. int transp = -1;
  93. unsigned int disposal = 0, prev_disposal = 0;
  94. unsigned int delay = 0;
  95. bool err = false;
  96. if (img->multi.cap == 0) {
  97. img->multi.cap = 8;
  98. img->multi.frames = (img_frame_t*)
  99. s_malloc(sizeof(img_frame_t) * img->multi.cap);
  100. }
  101. img->multi.cnt = 0;
  102. img->multi.sel = 0;
  103. gif = DGifOpenFileName(file->path);
  104. if (gif == NULL) {
  105. warn("could not open gif file: %s", file->name);
  106. return false;
  107. }
  108. bg = gif->SBackGroundColor;
  109. sw = gif->SWidth;
  110. sh = gif->SHeight;
  111. px = py = pw = ph = 0;
  112. do {
  113. if (DGifGetRecordType(gif, &rec) == GIF_ERROR) {
  114. err = true;
  115. break;
  116. }
  117. if (rec == EXTENSION_RECORD_TYPE) {
  118. int ext_code;
  119. GifByteType *ext = NULL;
  120. DGifGetExtension(gif, &ext_code, &ext);
  121. while (ext) {
  122. if (ext_code == 0xf9) {
  123. if (ext[1] & 1)
  124. transp = (int) ext[4];
  125. else
  126. transp = -1;
  127. delay = 10 * ((unsigned int) ext[3] << 8 | (unsigned int) ext[2]);
  128. if (delay)
  129. delay = MAX(delay, MIN_GIF_DELAY);
  130. disposal = (unsigned int) ext[1] >> 2 & 0x7;
  131. }
  132. ext = NULL;
  133. DGifGetExtensionNext(gif, &ext);
  134. }
  135. } else if (rec == IMAGE_DESC_RECORD_TYPE) {
  136. if (DGifGetImageDesc(gif) == GIF_ERROR) {
  137. err = true;
  138. break;
  139. }
  140. x = gif->Image.Left;
  141. y = gif->Image.Top;
  142. w = gif->Image.Width;
  143. h = gif->Image.Height;
  144. rows = (GifRowType*) s_malloc(h * sizeof(GifRowType));
  145. for (i = 0; i < h; i++)
  146. rows[i] = (GifRowType) s_malloc(w * sizeof(GifPixelType));
  147. if (gif->Image.Interlace) {
  148. for (i = 0; i < 4; i++) {
  149. for (j = intoffset[i]; j < h; j += intjump[i])
  150. DGifGetLine(gif, rows[j], w);
  151. }
  152. } else {
  153. for (i = 0; i < h; i++)
  154. DGifGetLine(gif, rows[i], w);
  155. }
  156. ptr = data = (DATA32*) s_malloc(sizeof(DATA32) * sw * sh);
  157. cmap = gif->Image.ColorMap ? gif->Image.ColorMap : gif->SColorMap;
  158. r = cmap->Colors[bg].Red;
  159. g = cmap->Colors[bg].Green;
  160. b = cmap->Colors[bg].Blue;
  161. bgpixel = 0x00ffffff & (r << 16 | g << 8 | b);
  162. for (i = 0; i < sh; i++) {
  163. for (j = 0; j < sw; j++) {
  164. if (i < y || i >= y + h || j < x || j >= x + w ||
  165. rows[i-y][j-x] == transp)
  166. {
  167. if (prev_frame != NULL && (prev_disposal != 2 ||
  168. i < py || i >= py + ph || j < px || j >= px + pw))
  169. {
  170. *ptr = prev_frame[i * sw + j];
  171. } else {
  172. *ptr = bgpixel;
  173. }
  174. } else {
  175. r = cmap->Colors[rows[i-y][j-x]].Red;
  176. g = cmap->Colors[rows[i-y][j-x]].Green;
  177. b = cmap->Colors[rows[i-y][j-x]].Blue;
  178. *ptr = 0xff << 24 | r << 16 | g << 8 | b;
  179. }
  180. ptr++;
  181. }
  182. }
  183. im = imlib_create_image_using_copied_data(sw, sh, data);
  184. for (i = 0; i < h; i++)
  185. free(rows[i]);
  186. free(rows);
  187. free(data);
  188. if (im == NULL) {
  189. err = true;
  190. break;
  191. }
  192. imlib_context_set_image(im);
  193. imlib_image_set_format("gif");
  194. if (transp >= 0)
  195. imlib_image_set_has_alpha(1);
  196. if (disposal != 3)
  197. prev_frame = imlib_image_get_data_for_reading_only();
  198. prev_disposal = disposal;
  199. px = x, py = y, pw = w, ph = h;
  200. if (img->multi.cnt == img->multi.cap) {
  201. img->multi.cap *= 2;
  202. img->multi.frames = (img_frame_t*)
  203. s_realloc(img->multi.frames,
  204. img->multi.cap * sizeof(img_frame_t));
  205. }
  206. img->multi.frames[img->multi.cnt].im = im;
  207. img->multi.frames[img->multi.cnt].delay = delay ? delay : GIF_DELAY;
  208. img->multi.cnt++;
  209. }
  210. } while (rec != TERMINATE_RECORD_TYPE);
  211. DGifCloseFile(gif);
  212. if (err && !file->loaded)
  213. warn("corrupted gif file: %s", file->name);
  214. if (img->multi.cnt > 1) {
  215. imlib_context_set_image(img->im);
  216. imlib_free_image();
  217. img->im = img->multi.frames[0].im;
  218. img->multi.animate = GIF_AUTOPLAY;
  219. } else if (img->multi.cnt == 1) {
  220. imlib_context_set_image(img->multi.frames[0].im);
  221. imlib_free_image();
  222. img->multi.cnt = 0;
  223. img->multi.animate = false;
  224. }
  225. imlib_context_set_image(img->im);
  226. return !err;
  227. }
  228. bool img_load(img_t *img, const fileinfo_t *file) {
  229. const char *fmt;
  230. if (img == NULL || file == NULL || file->name == NULL || file->path == NULL)
  231. return false;
  232. if (access(file->path, R_OK) < 0 ||
  233. (img->im = imlib_load_image(file->path)) == NULL)
  234. {
  235. warn("could not open image: %s", file->name);
  236. return false;
  237. }
  238. imlib_context_set_image(img->im);
  239. imlib_image_set_changes_on_disk();
  240. if ((fmt = imlib_image_format()) == NULL) {
  241. warn("could not open image: %s", file->name);
  242. return false;
  243. }
  244. if (STREQ(fmt, "jpeg"))
  245. exif_auto_orientate(file);
  246. if (STREQ(fmt, "gif"))
  247. img_load_gif(img, file);
  248. img->w = imlib_image_get_width();
  249. img->h = imlib_image_get_height();
  250. img->scalemode = options->scalemode;
  251. img->re = false;
  252. img->checkpan = false;
  253. img->dirty = true;
  254. return true;
  255. }
  256. void img_close(img_t *img, bool decache) {
  257. int i;
  258. if (img == NULL)
  259. return;
  260. if (img->multi.cnt > 0) {
  261. for (i = 0; i < img->multi.cnt; i++) {
  262. imlib_context_set_image(img->multi.frames[i].im);
  263. imlib_free_image();
  264. }
  265. img->multi.cnt = 0;
  266. img->im = NULL;
  267. } else if (img->im != NULL) {
  268. imlib_context_set_image(img->im);
  269. if (decache)
  270. imlib_free_image_and_decache();
  271. else
  272. imlib_free_image();
  273. img->im = NULL;
  274. }
  275. }
  276. void img_check_pan(img_t *img, bool moved) {
  277. win_t *win;
  278. int ox, oy;
  279. if (img == NULL || img->im == NULL || img->win == NULL)
  280. return;
  281. win = img->win;
  282. ox = img->x;
  283. oy = img->y;
  284. if (img->w * img->zoom > win->w) {
  285. if (img->x > 0 && img->x + img->w * img->zoom > win->w)
  286. img->x = 0;
  287. if (img->x < 0 && img->x + img->w * img->zoom < win->w)
  288. img->x = win->w - img->w * img->zoom;
  289. } else {
  290. img->x = (win->w - img->w * img->zoom) / 2;
  291. }
  292. if (img->h * img->zoom > win->h) {
  293. if (img->y > 0 && img->y + img->h * img->zoom > win->h)
  294. img->y = 0;
  295. if (img->y < 0 && img->y + img->h * img->zoom < win->h)
  296. img->y = win->h - img->h * img->zoom;
  297. } else {
  298. img->y = (win->h - img->h * img->zoom) / 2;
  299. }
  300. if (!moved && (ox != img->x || oy != img->y))
  301. img->dirty = true;
  302. }
  303. bool img_fit(img_t *img) {
  304. float z, zmax, zw, zh;
  305. if (img == NULL || img->im == NULL || img->win == NULL)
  306. return false;
  307. if (img->scalemode == SCALE_ZOOM)
  308. return false;
  309. zmax = img->scalemode == SCALE_DOWN ? 1.0 : zoom_max;
  310. zw = (float) img->win->w / (float) img->w;
  311. zh = (float) img->win->h / (float) img->h;
  312. switch (img->scalemode) {
  313. case SCALE_WIDTH:
  314. z = zw;
  315. break;
  316. case SCALE_HEIGHT:
  317. z = zh;
  318. break;
  319. default:
  320. z = MIN(zw, zh);
  321. break;
  322. }
  323. z = MAX(z, zoom_min);
  324. z = MIN(z, zmax);
  325. if (zoomdiff(z, img->zoom) != 0) {
  326. img->zoom = z;
  327. img->dirty = true;
  328. return true;
  329. } else {
  330. return false;
  331. }
  332. }
  333. void img_render(img_t *img) {
  334. win_t *win;
  335. int sx, sy, sw, sh;
  336. int dx, dy, dw, dh;
  337. if (img == NULL || img->im == NULL || img->win == NULL)
  338. return;
  339. win = img->win;
  340. img_fit(img);
  341. if (!img->re) {
  342. /* rendered for the first time */
  343. img->re = true;
  344. if (img->zoom * img->w <= win->w)
  345. img->x = (win->w - img->w * img->zoom) / 2;
  346. else
  347. img->x = 0;
  348. if (img->zoom * img->h <= win->h)
  349. img->y = (win->h - img->h * img->zoom) / 2;
  350. else
  351. img->y = 0;
  352. }
  353. if (img->checkpan) {
  354. img_check_pan(img, false);
  355. img->checkpan = false;
  356. }
  357. if (!img->dirty)
  358. return;
  359. /* calculate source and destination offsets */
  360. if (img->x < 0) {
  361. sx = -img->x / img->zoom;
  362. sw = win->w / img->zoom;
  363. dx = 0;
  364. dw = win->w;
  365. } else {
  366. sx = 0;
  367. sw = img->w;
  368. dx = img->x;
  369. dw = img->w * img->zoom;
  370. }
  371. if (img->y < 0) {
  372. sy = -img->y / img->zoom;
  373. sh = win->h / img->zoom;
  374. dy = 0;
  375. dh = win->h;
  376. } else {
  377. sy = 0;
  378. sh = img->h;
  379. dy = img->y;
  380. dh = img->h * img->zoom;
  381. }
  382. win_clear(win);
  383. imlib_context_set_image(img->im);
  384. imlib_context_set_anti_alias(img->aa);
  385. if (!img->alpha && imlib_image_has_alpha())
  386. win_draw_rect(win, win->pm, dx, dy, dw, dh, True, 0, win->white);
  387. imlib_context_set_drawable(win->pm);
  388. imlib_render_image_part_on_drawable_at_size(sx, sy, sw, sh, dx, dy, dw, dh);
  389. img->dirty = false;
  390. }
  391. bool img_fit_win(img_t *img, scalemode_t sm) {
  392. if (img == NULL || img->im == NULL)
  393. return false;
  394. img->scalemode = sm;
  395. return img_fit(img);
  396. }
  397. bool img_center(img_t *img) {
  398. int ox, oy;
  399. if (img == NULL || img->im == NULL || img->win == NULL)
  400. return false;
  401. ox = img->x;
  402. oy = img->y;
  403. img->x = (img->win->w - img->w * img->zoom) / 2;
  404. img->y = (img->win->h - img->h * img->zoom) / 2;
  405. if (ox != img->x || oy != img->y) {
  406. img->dirty = true;
  407. return true;
  408. } else {
  409. return false;
  410. }
  411. }
  412. bool img_zoom(img_t *img, float z) {
  413. if (img == NULL || img->im == NULL || img->win == NULL)
  414. return false;
  415. z = MAX(z, zoom_min);
  416. z = MIN(z, zoom_max);
  417. img->scalemode = SCALE_ZOOM;
  418. if (zoomdiff(z, img->zoom) != 0) {
  419. img->x = img->win->w / 2 - (img->win->w / 2 - img->x) * z / img->zoom;
  420. img->y = img->win->h / 2 - (img->win->h / 2 - img->y) * z / img->zoom;
  421. img->zoom = z;
  422. img->checkpan = true;
  423. img->dirty = true;
  424. return true;
  425. } else {
  426. return false;
  427. }
  428. }
  429. bool img_zoom_in(img_t *img) {
  430. int i;
  431. float z;
  432. if (img == NULL || img->im == NULL)
  433. return false;
  434. for (i = 1; i < ARRLEN(zoom_levels); i++) {
  435. z = zoom_levels[i] / 100.0;
  436. if (zoomdiff(z, img->zoom) > 0)
  437. return img_zoom(img, z);
  438. }
  439. return false;
  440. }
  441. bool img_zoom_out(img_t *img) {
  442. int i;
  443. float z;
  444. if (img == NULL || img->im == NULL)
  445. return false;
  446. for (i = ARRLEN(zoom_levels) - 2; i >= 0; i--) {
  447. z = zoom_levels[i] / 100.0;
  448. if (zoomdiff(z, img->zoom) < 0)
  449. return img_zoom(img, z);
  450. }
  451. return false;
  452. }
  453. bool img_move(img_t *img, float dx, float dy) {
  454. float ox, oy;
  455. if (img == NULL || img->im == NULL)
  456. return false;
  457. ox = img->x;
  458. oy = img->y;
  459. img->x += dx;
  460. img->y += dy;
  461. img_check_pan(img, true);
  462. if (ox != img->x || oy != img->y) {
  463. img->dirty = true;
  464. return true;
  465. } else {
  466. return false;
  467. }
  468. }
  469. bool img_pan(img_t *img, direction_t dir, int d) {
  470. /* d < 0: screen-wise
  471. * d = 0: 1/5 of screen
  472. * d > 0: num of pixels
  473. */
  474. float x, y;
  475. if (img == NULL || img->im == NULL || img->win == NULL)
  476. return false;
  477. if (d > 0) {
  478. x = y = MAX(1, (float) d * img->zoom);
  479. } else {
  480. x = img->win->w / (d < 0 ? 1 : 5);
  481. y = img->win->h / (d < 0 ? 1 : 5);
  482. }
  483. switch (dir) {
  484. case DIR_LEFT:
  485. return img_move(img, x, 0.0);
  486. case DIR_RIGHT:
  487. return img_move(img, -x, 0.0);
  488. case DIR_UP:
  489. return img_move(img, 0.0, y);
  490. case DIR_DOWN:
  491. return img_move(img, 0.0, -y);
  492. }
  493. return false;
  494. }
  495. bool img_pan_edge(img_t *img, direction_t dir) {
  496. int ox, oy;
  497. if (img == NULL || img->im == NULL || img->win == NULL)
  498. return false;
  499. ox = img->x;
  500. oy = img->y;
  501. switch (dir) {
  502. case DIR_LEFT:
  503. img->x = 0;
  504. break;
  505. case DIR_RIGHT:
  506. img->x = img->win->w - img->w * img->zoom;
  507. break;
  508. case DIR_UP:
  509. img->y = 0;
  510. break;
  511. case DIR_DOWN:
  512. img->y = img->win->h - img->h * img->zoom;
  513. break;
  514. }
  515. img_check_pan(img, true);
  516. if (ox != img->x || oy != img->y) {
  517. img->dirty = true;
  518. return true;
  519. } else {
  520. return false;
  521. }
  522. }
  523. void img_rotate(img_t *img, int d) {
  524. win_t *win;
  525. int ox, oy, tmp;
  526. if (img == NULL || img->im == NULL || img->win == NULL)
  527. return;
  528. win = img->win;
  529. ox = d == 1 ? img->x : win->w - img->x - img->w * img->zoom;
  530. oy = d == 3 ? img->y : win->h - img->y - img->h * img->zoom;
  531. imlib_context_set_image(img->im);
  532. imlib_image_orientate(d);
  533. img->x = oy + (win->w - win->h) / 2;
  534. img->y = ox + (win->h - win->w) / 2;
  535. tmp = img->w;
  536. img->w = img->h;
  537. img->h = tmp;
  538. img->checkpan = true;
  539. img->dirty = true;
  540. }
  541. void img_rotate_left(img_t *img) {
  542. img_rotate(img, 3);
  543. }
  544. void img_rotate_right(img_t *img) {
  545. img_rotate(img, 1);
  546. }
  547. void img_flip(img_t *img, flipdir_t d) {
  548. if (img == NULL || img->im == NULL)
  549. return;
  550. imlib_context_set_image(img->im);
  551. switch (d) {
  552. case FLIP_HORIZONTAL:
  553. imlib_image_flip_horizontal();
  554. break;
  555. case FLIP_VERTICAL:
  556. imlib_image_flip_vertical();
  557. break;
  558. }
  559. img->dirty = true;
  560. }
  561. void img_toggle_antialias(img_t *img) {
  562. if (img == NULL || img->im == NULL)
  563. return;
  564. img->aa = !img->aa;
  565. imlib_context_set_image(img->im);
  566. imlib_context_set_anti_alias(img->aa);
  567. img->dirty = true;
  568. }
  569. bool img_frame_goto(img_t *img, int n) {
  570. if (img == NULL || img->im == NULL)
  571. return false;
  572. if (n < 0 || n >= img->multi.cnt || n == img->multi.sel)
  573. return false;
  574. img->multi.sel = n;
  575. img->im = img->multi.frames[n].im;
  576. imlib_context_set_image(img->im);
  577. img->w = imlib_image_get_width();
  578. img->h = imlib_image_get_height();
  579. img->checkpan = true;
  580. img->dirty = true;
  581. return true;
  582. }
  583. bool img_frame_navigate(img_t *img, int d) {
  584. if (img == NULL|| img->im == NULL || img->multi.cnt == 0 || d == 0)
  585. return false;
  586. d += img->multi.sel;
  587. if (d < 0)
  588. d = 0;
  589. else if (d >= img->multi.cnt)
  590. d = img->multi.cnt - 1;
  591. return img_frame_goto(img, d);
  592. }
  593. bool img_frame_animate(img_t *img, bool restart) {
  594. if (img == NULL || img->im == NULL || img->multi.cnt == 0)
  595. return false;
  596. if (img->multi.sel + 1 >= img->multi.cnt) {
  597. if (restart || GIF_LOOP) {
  598. img_frame_goto(img, 0);
  599. } else {
  600. img->multi.animate = false;
  601. return false;
  602. }
  603. } else if (!restart) {
  604. img_frame_goto(img, img->multi.sel + 1);
  605. }
  606. img->multi.animate = true;
  607. img->dirty = true;
  608. return true;
  609. }