jpg.c 7.2 KB

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  1. #include <u.h>
  2. #include <libc.h>
  3. #include <bio.h>
  4. #include <draw.h>
  5. #include <event.h>
  6. #include "imagefile.h"
  7. int cflag = 0;
  8. int dflag = 0;
  9. int eflag = 0;
  10. int jflag = 0;
  11. int fflag = 0;
  12. int Fflag = 0;
  13. int nineflag = 0;
  14. int threeflag = 0;
  15. int colorspace = CYCbCr; /* default for 8-bit displays: combine color rotation with dither */
  16. int output = 0;
  17. ulong outchan = CMAP8;
  18. Image *image;
  19. int defaultcolor = 1;
  20. enum{
  21. Border = 2,
  22. Edge = 5
  23. };
  24. char *show(int, char*, int);
  25. void
  26. eresized(int new)
  27. {
  28. Rectangle r;
  29. if(new && getwindow(display, Refnone) < 0){
  30. fprint(2, "jpg: can't reattach to window\n");
  31. exits("resize");
  32. }
  33. if(image == nil)
  34. return;
  35. r = insetrect(screen->clipr, Edge+Border);
  36. r.max.x = r.min.x+Dx(image->r);
  37. r.max.y = r.min.y+Dy(image->r);
  38. border(screen, r, -Border, nil, ZP);
  39. draw(screen, r, image, nil, image->r.min);
  40. flushimage(display, 1);
  41. }
  42. void
  43. main(int argc, char *argv[])
  44. {
  45. int fd, i, yflag;
  46. char *err;
  47. char buf[12+1];
  48. yflag = 0;
  49. ARGBEGIN{
  50. case 'c': /* produce encoded, compressed, bitmap file; no display by default */
  51. cflag++;
  52. dflag++;
  53. output++;
  54. if(defaultcolor)
  55. outchan = CMAP8;
  56. break;
  57. case 'd': /* suppress display of image */
  58. dflag++;
  59. break;
  60. case 'e': /* disable floyd-steinberg error diffusion */
  61. eflag++;
  62. break;
  63. case 'F':
  64. Fflag++; /* make a movie */
  65. fflag++; /* merge two fields per image */
  66. break;
  67. case 'f':
  68. fflag++; /* merge two fields per image */
  69. break;
  70. case 'J': /* decode jpeg only; no display or remap (for debugging, etc.) */
  71. jflag++;
  72. break;
  73. case 'k': /* force black and white */
  74. defaultcolor = 0;
  75. outchan = GREY8;
  76. break;
  77. case 'r':
  78. colorspace = CRGB;
  79. break;
  80. case '3': /* produce encoded, compressed, three-color bitmap file; no display by default */
  81. threeflag++;
  82. /* fall through */
  83. case 't': /* produce encoded, compressed, true-color bitmap file; no display by default */
  84. cflag++;
  85. dflag++;
  86. output++;
  87. defaultcolor = 0;
  88. outchan = RGB24;
  89. break;
  90. case 'v': /* force RGBV */
  91. defaultcolor = 0;
  92. outchan = CMAP8;
  93. break;
  94. case 'y': /* leave it in CYCbCr; for debugging only */
  95. yflag = 1;
  96. colorspace = CYCbCr;
  97. break;
  98. case '9': /* produce plan 9, uncompressed, bitmap file; no display by default */
  99. nineflag++;
  100. dflag++;
  101. output++;
  102. if(defaultcolor)
  103. outchan = CMAP8;
  104. break;
  105. default:
  106. fprint(2, "usage: jpg -39cdefFkJrtv [file.jpg ...]\n");
  107. exits("usage");
  108. }ARGEND;
  109. if(yflag==0 && dflag==0 && colorspace==CYCbCr){ /* see if we should convert right to RGB */
  110. fd = open("/dev/screen", OREAD);
  111. if(fd > 0){
  112. buf[12] = '\0';
  113. if(read(fd, buf, 12)==12 && chantodepth(strtochan(buf))>8)
  114. colorspace = CRGB;
  115. close(fd);
  116. }
  117. }
  118. err = nil;
  119. if(argc == 0)
  120. err = show(0, "<stdin>", outchan);
  121. else{
  122. for(i=0; i<argc; i++){
  123. fd = open(argv[i], OREAD);
  124. if(fd < 0){
  125. fprint(2, "jpg: can't open %s: %r\n", argv[i]);
  126. err = "open";
  127. }else{
  128. err = show(fd, argv[i], outchan);
  129. close(fd);
  130. }
  131. if((nineflag || cflag) && argc>1 && err==nil){
  132. fprint(2, "jpg: exiting after one file\n");
  133. break;
  134. }
  135. }
  136. }
  137. exits(err);
  138. }
  139. Rawimage**
  140. vidmerge(Rawimage **aa1, Rawimage **aa2)
  141. {
  142. Rawimage **aao, *ao, *a1, *a2;
  143. int i, c, row, col;
  144. aao = nil;
  145. for (i = 0; aa1[i]; i++) {
  146. a1 = aa1[i];
  147. a2 = aa2[i];
  148. if (a2 == nil){
  149. fprint(2, "jpg: vidmerge: unequal lengths\n");
  150. return nil;
  151. }
  152. aao = realloc(aao, (i+2)*sizeof(Rawimage *));
  153. if (aao == nil){
  154. fprint(2, "jpg: vidmerge: realloc\n");
  155. return nil;
  156. }
  157. aao[i+1] = nil;
  158. ao = aao[i] = malloc(sizeof(Rawimage));
  159. if (ao == nil){
  160. fprint(2, "jpg: vidmerge: realloc\n");
  161. return nil;
  162. }
  163. memcpy(ao, a1, sizeof(Rawimage));
  164. if (!eqrect(a1->r , a2->r)){
  165. fprint(2, "jpg: vidmerge: rects different in img %d\n", i);
  166. return nil;
  167. }
  168. if (a1->cmaplen != a2->cmaplen){
  169. fprint(2, "jpg: vidmerge: cmaplen different in img %d\n", i);
  170. return nil;
  171. }
  172. if (a1->nchans != a2->nchans){
  173. fprint(2, "jpg: vidmerge: nchans different in img %d\n", i);
  174. return nil;
  175. }
  176. if (a1->fields != a2->fields){
  177. fprint(2, "jpg: vidmerge: fields different in img %d\n", i);
  178. return nil;
  179. }
  180. ao->r.max.y += Dy(ao->r);
  181. ao->chanlen += ao->chanlen;
  182. if (ao->chanlen != Dx(ao->r)*Dy(ao->r)){
  183. fprint(2, "jpg: vidmerge: chanlen wrong %d != %d*%d\n",
  184. ao->chanlen, Dx(ao->r), Dy(ao->r));
  185. return nil;
  186. }
  187. row = Dx(a1->r);
  188. for (c = 0; c < ao->nchans; c++) {
  189. uchar *po, *p1, *p2;
  190. ao->chans[c] = malloc(ao->chanlen);
  191. po = ao->chans[c];
  192. p1 = a1->chans[c];
  193. p2 = a2->chans[c];
  194. for (col = 0; col < Dy(a1->r); col++) {
  195. memcpy(po, p1, row);
  196. po += row, p1 += row;
  197. memcpy(po, p2, row);
  198. po += row, p2 += row;
  199. }
  200. free(a1->chans[c]);
  201. free(a2->chans[c]);
  202. }
  203. if(a2->cmap != nil)
  204. free(a2->cmap);
  205. free(a1);
  206. free(a2);
  207. }
  208. if (aa2[i] != nil)
  209. fprint(2, "jpg: vidmerge: unequal lengths\n");
  210. free(aa1);
  211. free(aa2);
  212. return aao;
  213. }
  214. char*
  215. show(int fd, char *name, int outc)
  216. {
  217. Rawimage **array, *r, *c;
  218. static int inited;
  219. Image *i;
  220. int j, ch, outchan;
  221. Biobuf b;
  222. char buf[32];
  223. if(Binit(&b, fd, OREAD) < 0)
  224. return nil;
  225. outchan = outc;
  226. rpt: array = Breadjpg(&b, colorspace);
  227. if(array == nil || array[0]==nil){
  228. fprint(2, "jpg: decode %s failed: %r\n", name);
  229. return "decode";
  230. }
  231. if (fflag) {
  232. Rawimage **a;
  233. a = Breadjpg(&b, colorspace);
  234. if(a == nil || a[0]==nil){
  235. fprint(2, "jpg: decode %s-2 failed: %r\n", name);
  236. return "decode";
  237. }
  238. array = vidmerge(a, array);
  239. } else
  240. Bterm(&b);
  241. r = array[0];
  242. c = nil;
  243. if(jflag)
  244. goto Return;
  245. if(!dflag && !inited){
  246. if(initdraw(0, 0, 0) < 0){
  247. fprint(2, "jpg: initdraw failed: %r\n");
  248. return "initdraw";
  249. }
  250. if(Fflag == 0)
  251. einit(Ekeyboard|Emouse);
  252. if(defaultcolor && screen->depth>8 && outchan==CMAP8)
  253. outchan = RGB24;
  254. inited++;
  255. }
  256. if(outchan == CMAP8)
  257. c = torgbv(r, !eflag);
  258. else{
  259. if(outchan==GREY8 || (r->chandesc==CY && threeflag==0)){
  260. c = totruecolor(r, CY);
  261. outchan = GREY8;
  262. }else
  263. c = totruecolor(r, CRGB24);
  264. }
  265. if(c == nil){
  266. fprint(2, "jpg: conversion of %s failed: %r\n", name);
  267. return "torgbv";
  268. }
  269. if(!dflag){
  270. if(c->chandesc == CY)
  271. i = allocimage(display, c->r, GREY8, 0, 0);
  272. else
  273. i = allocimage(display, c->r, outchan, 0, 0);
  274. if(i == nil){
  275. fprint(2, "jpg: allocimage %s failed: %r\n", name);
  276. return "allocimage";
  277. }
  278. if(loadimage(i, i->r, c->chans[0], c->chanlen) < 0){
  279. fprint(2, "jpg: loadimage %s failed: %r\n", name);
  280. return "loadimage";
  281. }
  282. image = i;
  283. eresized(0);
  284. if (Fflag) {
  285. freeimage(i);
  286. for(j=0; j<r->nchans; j++)
  287. free(r->chans[j]);
  288. free(r->cmap);
  289. free(r);
  290. free(array);
  291. goto rpt;
  292. }
  293. if((ch=ekbd())=='q' || ch==0x7F || ch==0x04)
  294. exits(nil);
  295. draw(screen, screen->clipr, display->white, nil, ZP);
  296. image = nil;
  297. freeimage(i);
  298. }
  299. if(nineflag){
  300. chantostr(buf, outchan);
  301. print("%11s %11d %11d %11d %11d ", buf,
  302. c->r.min.x, c->r.min.y, c->r.max.x, c->r.max.y);
  303. if(write(1, c->chans[0], c->chanlen) != c->chanlen){
  304. fprint(2, "jpg: %s: write error %r\n", name);
  305. return "write";
  306. }
  307. }else if(cflag){
  308. if(writerawimage(1, c) < 0){
  309. fprint(2, "jpg: %s: write error: %r\n", name);
  310. return "write";
  311. }
  312. }
  313. Return:
  314. for(j=0; j<r->nchans; j++)
  315. free(r->chans[j]);
  316. free(r->cmap);
  317. free(r);
  318. free(array);
  319. if(c){
  320. free(c->chans[0]);
  321. free(c);
  322. }
  323. if (Fflag) goto rpt;
  324. return nil;
  325. }