v4l2-ioctl.c 69 KB

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  1. /*
  2. * Video capture interface for Linux version 2
  3. *
  4. * A generic framework to process V4L2 ioctl commands.
  5. *
  6. * This program is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License
  8. * as published by the Free Software Foundation; either version
  9. * 2 of the License, or (at your option) any later version.
  10. *
  11. * Authors: Alan Cox, <alan@lxorguk.ukuu.org.uk> (version 1)
  12. * Mauro Carvalho Chehab <mchehab@infradead.org> (version 2)
  13. */
  14. #include <linux/module.h>
  15. #include <linux/slab.h>
  16. #include <linux/types.h>
  17. #include <linux/kernel.h>
  18. #include <linux/version.h>
  19. #include <linux/videodev2.h>
  20. #include <media/v4l2-common.h>
  21. #include <media/v4l2-ioctl.h>
  22. #include <media/v4l2-ctrls.h>
  23. #include <media/v4l2-fh.h>
  24. #include <media/v4l2-event.h>
  25. #include <media/v4l2-device.h>
  26. #include <media/v4l2-chip-ident.h>
  27. #include <media/videobuf2-core.h>
  28. /* Zero out the end of the struct pointed to by p. Everything after, but
  29. * not including, the specified field is cleared. */
  30. #define CLEAR_AFTER_FIELD(p, field) \
  31. memset((u8 *)(p) + offsetof(typeof(*(p)), field) + sizeof((p)->field), \
  32. 0, sizeof(*(p)) - offsetof(typeof(*(p)), field) - sizeof((p)->field))
  33. struct std_descr {
  34. v4l2_std_id std;
  35. const char *descr;
  36. };
  37. static const struct std_descr standards[] = {
  38. { V4L2_STD_NTSC, "NTSC" },
  39. { V4L2_STD_NTSC_M, "NTSC-M" },
  40. { V4L2_STD_NTSC_M_JP, "NTSC-M-JP" },
  41. { V4L2_STD_NTSC_M_KR, "NTSC-M-KR" },
  42. { V4L2_STD_NTSC_443, "NTSC-443" },
  43. { V4L2_STD_PAL, "PAL" },
  44. { V4L2_STD_PAL_BG, "PAL-BG" },
  45. { V4L2_STD_PAL_B, "PAL-B" },
  46. { V4L2_STD_PAL_B1, "PAL-B1" },
  47. { V4L2_STD_PAL_G, "PAL-G" },
  48. { V4L2_STD_PAL_H, "PAL-H" },
  49. { V4L2_STD_PAL_I, "PAL-I" },
  50. { V4L2_STD_PAL_DK, "PAL-DK" },
  51. { V4L2_STD_PAL_D, "PAL-D" },
  52. { V4L2_STD_PAL_D1, "PAL-D1" },
  53. { V4L2_STD_PAL_K, "PAL-K" },
  54. { V4L2_STD_PAL_M, "PAL-M" },
  55. { V4L2_STD_PAL_N, "PAL-N" },
  56. { V4L2_STD_PAL_Nc, "PAL-Nc" },
  57. { V4L2_STD_PAL_60, "PAL-60" },
  58. { V4L2_STD_SECAM, "SECAM" },
  59. { V4L2_STD_SECAM_B, "SECAM-B" },
  60. { V4L2_STD_SECAM_G, "SECAM-G" },
  61. { V4L2_STD_SECAM_H, "SECAM-H" },
  62. { V4L2_STD_SECAM_DK, "SECAM-DK" },
  63. { V4L2_STD_SECAM_D, "SECAM-D" },
  64. { V4L2_STD_SECAM_K, "SECAM-K" },
  65. { V4L2_STD_SECAM_K1, "SECAM-K1" },
  66. { V4L2_STD_SECAM_L, "SECAM-L" },
  67. { V4L2_STD_SECAM_LC, "SECAM-Lc" },
  68. { 0, "Unknown" }
  69. };
  70. /* video4linux standard ID conversion to standard name
  71. */
  72. const char *v4l2_norm_to_name(v4l2_std_id id)
  73. {
  74. u32 myid = id;
  75. int i;
  76. /* HACK: ppc32 architecture doesn't have __ucmpdi2 function to handle
  77. 64 bit comparations. So, on that architecture, with some gcc
  78. variants, compilation fails. Currently, the max value is 30bit wide.
  79. */
  80. BUG_ON(myid != id);
  81. for (i = 0; standards[i].std; i++)
  82. if (myid == standards[i].std)
  83. break;
  84. return standards[i].descr;
  85. }
  86. EXPORT_SYMBOL(v4l2_norm_to_name);
  87. /* Returns frame period for the given standard */
  88. void v4l2_video_std_frame_period(int id, struct v4l2_fract *frameperiod)
  89. {
  90. if (id & V4L2_STD_525_60) {
  91. frameperiod->numerator = 1001;
  92. frameperiod->denominator = 30000;
  93. } else {
  94. frameperiod->numerator = 1;
  95. frameperiod->denominator = 25;
  96. }
  97. }
  98. EXPORT_SYMBOL(v4l2_video_std_frame_period);
  99. /* Fill in the fields of a v4l2_standard structure according to the
  100. 'id' and 'transmission' parameters. Returns negative on error. */
  101. int v4l2_video_std_construct(struct v4l2_standard *vs,
  102. int id, const char *name)
  103. {
  104. vs->id = id;
  105. v4l2_video_std_frame_period(id, &vs->frameperiod);
  106. vs->framelines = (id & V4L2_STD_525_60) ? 525 : 625;
  107. strlcpy(vs->name, name, sizeof(vs->name));
  108. return 0;
  109. }
  110. EXPORT_SYMBOL(v4l2_video_std_construct);
  111. /* ----------------------------------------------------------------- */
  112. /* some arrays for pretty-printing debug messages of enum types */
  113. const char *v4l2_field_names[] = {
  114. [V4L2_FIELD_ANY] = "any",
  115. [V4L2_FIELD_NONE] = "none",
  116. [V4L2_FIELD_TOP] = "top",
  117. [V4L2_FIELD_BOTTOM] = "bottom",
  118. [V4L2_FIELD_INTERLACED] = "interlaced",
  119. [V4L2_FIELD_SEQ_TB] = "seq-tb",
  120. [V4L2_FIELD_SEQ_BT] = "seq-bt",
  121. [V4L2_FIELD_ALTERNATE] = "alternate",
  122. [V4L2_FIELD_INTERLACED_TB] = "interlaced-tb",
  123. [V4L2_FIELD_INTERLACED_BT] = "interlaced-bt",
  124. };
  125. EXPORT_SYMBOL(v4l2_field_names);
  126. const char *v4l2_type_names[] = {
  127. [V4L2_BUF_TYPE_VIDEO_CAPTURE] = "vid-cap",
  128. [V4L2_BUF_TYPE_VIDEO_OVERLAY] = "vid-overlay",
  129. [V4L2_BUF_TYPE_VIDEO_OUTPUT] = "vid-out",
  130. [V4L2_BUF_TYPE_VBI_CAPTURE] = "vbi-cap",
  131. [V4L2_BUF_TYPE_VBI_OUTPUT] = "vbi-out",
  132. [V4L2_BUF_TYPE_SLICED_VBI_CAPTURE] = "sliced-vbi-cap",
  133. [V4L2_BUF_TYPE_SLICED_VBI_OUTPUT] = "sliced-vbi-out",
  134. [V4L2_BUF_TYPE_VIDEO_OUTPUT_OVERLAY] = "vid-out-overlay",
  135. [V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE] = "vid-cap-mplane",
  136. [V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE] = "vid-out-mplane",
  137. };
  138. EXPORT_SYMBOL(v4l2_type_names);
  139. static const char *v4l2_memory_names[] = {
  140. [V4L2_MEMORY_MMAP] = "mmap",
  141. [V4L2_MEMORY_USERPTR] = "userptr",
  142. [V4L2_MEMORY_OVERLAY] = "overlay",
  143. };
  144. #define prt_names(a, arr) ((((a) >= 0) && ((a) < ARRAY_SIZE(arr))) ? \
  145. arr[a] : "unknown")
  146. /* ------------------------------------------------------------------ */
  147. /* debug help functions */
  148. static void v4l_print_querycap(const void *arg, bool write_only)
  149. {
  150. const struct v4l2_capability *p = arg;
  151. pr_cont("driver=%s, card=%s, bus=%s, version=0x%08x, "
  152. "capabilities=0x%08x, device_caps=0x%08x\n",
  153. p->driver, p->card, p->bus_info,
  154. p->version, p->capabilities, p->device_caps);
  155. }
  156. static void v4l_print_enuminput(const void *arg, bool write_only)
  157. {
  158. const struct v4l2_input *p = arg;
  159. pr_cont("index=%u, name=%s, type=%u, audioset=0x%x, tuner=%u, "
  160. "std=0x%08Lx, status=0x%x, capabilities=0x%x\n",
  161. p->index, p->name, p->type, p->audioset, p->tuner,
  162. (unsigned long long)p->std, p->status, p->capabilities);
  163. }
  164. static void v4l_print_enumoutput(const void *arg, bool write_only)
  165. {
  166. const struct v4l2_output *p = arg;
  167. pr_cont("index=%u, name=%s, type=%u, audioset=0x%x, "
  168. "modulator=%u, std=0x%08Lx, capabilities=0x%x\n",
  169. p->index, p->name, p->type, p->audioset, p->modulator,
  170. (unsigned long long)p->std, p->capabilities);
  171. }
  172. static void v4l_print_audio(const void *arg, bool write_only)
  173. {
  174. const struct v4l2_audio *p = arg;
  175. if (write_only)
  176. pr_cont("index=%u, mode=0x%x\n", p->index, p->mode);
  177. else
  178. pr_cont("index=%u, name=%s, capability=0x%x, mode=0x%x\n",
  179. p->index, p->name, p->capability, p->mode);
  180. }
  181. static void v4l_print_audioout(const void *arg, bool write_only)
  182. {
  183. const struct v4l2_audioout *p = arg;
  184. if (write_only)
  185. pr_cont("index=%u\n", p->index);
  186. else
  187. pr_cont("index=%u, name=%s, capability=0x%x, mode=0x%x\n",
  188. p->index, p->name, p->capability, p->mode);
  189. }
  190. static void v4l_print_fmtdesc(const void *arg, bool write_only)
  191. {
  192. const struct v4l2_fmtdesc *p = arg;
  193. pr_cont("index=%u, type=%s, flags=0x%x, pixelformat=%c%c%c%c, description='%s'\n",
  194. p->index, prt_names(p->type, v4l2_type_names),
  195. p->flags, (p->pixelformat & 0xff),
  196. (p->pixelformat >> 8) & 0xff,
  197. (p->pixelformat >> 16) & 0xff,
  198. (p->pixelformat >> 24) & 0xff,
  199. p->description);
  200. }
  201. static void v4l_print_format(const void *arg, bool write_only)
  202. {
  203. const struct v4l2_format *p = arg;
  204. const struct v4l2_pix_format *pix;
  205. const struct v4l2_pix_format_mplane *mp;
  206. const struct v4l2_vbi_format *vbi;
  207. const struct v4l2_sliced_vbi_format *sliced;
  208. const struct v4l2_window *win;
  209. const struct v4l2_clip *clip;
  210. unsigned i;
  211. pr_cont("type=%s", prt_names(p->type, v4l2_type_names));
  212. switch (p->type) {
  213. case V4L2_BUF_TYPE_VIDEO_CAPTURE:
  214. case V4L2_BUF_TYPE_VIDEO_OUTPUT:
  215. pix = &p->fmt.pix;
  216. pr_cont(", width=%u, height=%u, "
  217. "pixelformat=%c%c%c%c, field=%s, "
  218. "bytesperline=%u sizeimage=%u, colorspace=%d\n",
  219. pix->width, pix->height,
  220. (pix->pixelformat & 0xff),
  221. (pix->pixelformat >> 8) & 0xff,
  222. (pix->pixelformat >> 16) & 0xff,
  223. (pix->pixelformat >> 24) & 0xff,
  224. prt_names(pix->field, v4l2_field_names),
  225. pix->bytesperline, pix->sizeimage,
  226. pix->colorspace);
  227. break;
  228. case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE:
  229. case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE:
  230. mp = &p->fmt.pix_mp;
  231. pr_cont(", width=%u, height=%u, "
  232. "format=%c%c%c%c, field=%s, "
  233. "colorspace=%d, num_planes=%u\n",
  234. mp->width, mp->height,
  235. (mp->pixelformat & 0xff),
  236. (mp->pixelformat >> 8) & 0xff,
  237. (mp->pixelformat >> 16) & 0xff,
  238. (mp->pixelformat >> 24) & 0xff,
  239. prt_names(mp->field, v4l2_field_names),
  240. mp->colorspace, mp->num_planes);
  241. for (i = 0; i < mp->num_planes; i++)
  242. printk(KERN_DEBUG "plane %u: bytesperline=%u sizeimage=%u\n", i,
  243. mp->plane_fmt[i].bytesperline,
  244. mp->plane_fmt[i].sizeimage);
  245. break;
  246. case V4L2_BUF_TYPE_VIDEO_OVERLAY:
  247. case V4L2_BUF_TYPE_VIDEO_OUTPUT_OVERLAY:
  248. win = &p->fmt.win;
  249. pr_cont(", wxh=%dx%d, x,y=%d,%d, field=%s, "
  250. "chromakey=0x%08x, bitmap=%p, "
  251. "global_alpha=0x%02x\n",
  252. win->w.width, win->w.height,
  253. win->w.left, win->w.top,
  254. prt_names(win->field, v4l2_field_names),
  255. win->chromakey, win->bitmap, win->global_alpha);
  256. clip = win->clips;
  257. for (i = 0; i < win->clipcount; i++) {
  258. printk(KERN_DEBUG "clip %u: wxh=%dx%d, x,y=%d,%d\n",
  259. i, clip->c.width, clip->c.height,
  260. clip->c.left, clip->c.top);
  261. clip = clip->next;
  262. }
  263. break;
  264. case V4L2_BUF_TYPE_VBI_CAPTURE:
  265. case V4L2_BUF_TYPE_VBI_OUTPUT:
  266. vbi = &p->fmt.vbi;
  267. pr_cont(", sampling_rate=%u, offset=%u, samples_per_line=%u, "
  268. "sample_format=%c%c%c%c, start=%u,%u, count=%u,%u\n",
  269. vbi->sampling_rate, vbi->offset,
  270. vbi->samples_per_line,
  271. (vbi->sample_format & 0xff),
  272. (vbi->sample_format >> 8) & 0xff,
  273. (vbi->sample_format >> 16) & 0xff,
  274. (vbi->sample_format >> 24) & 0xff,
  275. vbi->start[0], vbi->start[1],
  276. vbi->count[0], vbi->count[1]);
  277. break;
  278. case V4L2_BUF_TYPE_SLICED_VBI_CAPTURE:
  279. case V4L2_BUF_TYPE_SLICED_VBI_OUTPUT:
  280. sliced = &p->fmt.sliced;
  281. pr_cont(", service_set=0x%08x, io_size=%d\n",
  282. sliced->service_set, sliced->io_size);
  283. for (i = 0; i < 24; i++)
  284. printk(KERN_DEBUG "line[%02u]=0x%04x, 0x%04x\n", i,
  285. sliced->service_lines[0][i],
  286. sliced->service_lines[1][i]);
  287. break;
  288. case V4L2_BUF_TYPE_PRIVATE:
  289. pr_cont("\n");
  290. break;
  291. }
  292. }
  293. static void v4l_print_framebuffer(const void *arg, bool write_only)
  294. {
  295. const struct v4l2_framebuffer *p = arg;
  296. pr_cont("capability=0x%x, flags=0x%x, base=0x%p, width=%u, "
  297. "height=%u, pixelformat=%c%c%c%c, "
  298. "bytesperline=%u sizeimage=%u, colorspace=%d\n",
  299. p->capability, p->flags, p->base,
  300. p->fmt.width, p->fmt.height,
  301. (p->fmt.pixelformat & 0xff),
  302. (p->fmt.pixelformat >> 8) & 0xff,
  303. (p->fmt.pixelformat >> 16) & 0xff,
  304. (p->fmt.pixelformat >> 24) & 0xff,
  305. p->fmt.bytesperline, p->fmt.sizeimage,
  306. p->fmt.colorspace);
  307. }
  308. static void v4l_print_buftype(const void *arg, bool write_only)
  309. {
  310. pr_cont("type=%s\n", prt_names(*(u32 *)arg, v4l2_type_names));
  311. }
  312. static void v4l_print_modulator(const void *arg, bool write_only)
  313. {
  314. const struct v4l2_modulator *p = arg;
  315. if (write_only)
  316. pr_cont("index=%u, txsubchans=0x%x", p->index, p->txsubchans);
  317. else
  318. pr_cont("index=%u, name=%s, capability=0x%x, "
  319. "rangelow=%u, rangehigh=%u, txsubchans=0x%x\n",
  320. p->index, p->name, p->capability,
  321. p->rangelow, p->rangehigh, p->txsubchans);
  322. }
  323. static void v4l_print_tuner(const void *arg, bool write_only)
  324. {
  325. const struct v4l2_tuner *p = arg;
  326. if (write_only)
  327. pr_cont("index=%u, audmode=%u\n", p->index, p->audmode);
  328. else
  329. pr_cont("index=%u, name=%s, type=%u, capability=0x%x, "
  330. "rangelow=%u, rangehigh=%u, signal=%u, afc=%d, "
  331. "rxsubchans=0x%x, audmode=%u\n",
  332. p->index, p->name, p->type,
  333. p->capability, p->rangelow,
  334. p->rangehigh, p->signal, p->afc,
  335. p->rxsubchans, p->audmode);
  336. }
  337. static void v4l_print_frequency(const void *arg, bool write_only)
  338. {
  339. const struct v4l2_frequency *p = arg;
  340. pr_cont("tuner=%u, type=%u, frequency=%u\n",
  341. p->tuner, p->type, p->frequency);
  342. }
  343. static void v4l_print_standard(const void *arg, bool write_only)
  344. {
  345. const struct v4l2_standard *p = arg;
  346. pr_cont("index=%u, id=0x%Lx, name=%s, fps=%u/%u, "
  347. "framelines=%u\n", p->index,
  348. (unsigned long long)p->id, p->name,
  349. p->frameperiod.numerator,
  350. p->frameperiod.denominator,
  351. p->framelines);
  352. }
  353. static void v4l_print_std(const void *arg, bool write_only)
  354. {
  355. pr_cont("std=0x%08Lx\n", *(const long long unsigned *)arg);
  356. }
  357. static void v4l_print_hw_freq_seek(const void *arg, bool write_only)
  358. {
  359. const struct v4l2_hw_freq_seek *p = arg;
  360. pr_cont("tuner=%u, type=%u, seek_upward=%u, wrap_around=%u, spacing=%u, "
  361. "rangelow=%u, rangehigh=%u\n",
  362. p->tuner, p->type, p->seek_upward, p->wrap_around, p->spacing,
  363. p->rangelow, p->rangehigh);
  364. }
  365. static void v4l_print_requestbuffers(const void *arg, bool write_only)
  366. {
  367. const struct v4l2_requestbuffers *p = arg;
  368. pr_cont("count=%d, type=%s, memory=%s\n",
  369. p->count,
  370. prt_names(p->type, v4l2_type_names),
  371. prt_names(p->memory, v4l2_memory_names));
  372. }
  373. static void v4l_print_buffer(const void *arg, bool write_only)
  374. {
  375. const struct v4l2_buffer *p = arg;
  376. const struct v4l2_timecode *tc = &p->timecode;
  377. const struct v4l2_plane *plane;
  378. int i;
  379. pr_cont("%02ld:%02d:%02d.%08ld index=%d, type=%s, "
  380. "flags=0x%08x, field=%s, sequence=%d, memory=%s",
  381. p->timestamp.tv_sec / 3600,
  382. (int)(p->timestamp.tv_sec / 60) % 60,
  383. (int)(p->timestamp.tv_sec % 60),
  384. (long)p->timestamp.tv_usec,
  385. p->index,
  386. prt_names(p->type, v4l2_type_names),
  387. p->flags, prt_names(p->field, v4l2_field_names),
  388. p->sequence, prt_names(p->memory, v4l2_memory_names));
  389. if (V4L2_TYPE_IS_MULTIPLANAR(p->type) && p->m.planes) {
  390. pr_cont("\n");
  391. for (i = 0; i < p->length; ++i) {
  392. plane = &p->m.planes[i];
  393. printk(KERN_DEBUG
  394. "plane %d: bytesused=%d, data_offset=0x%08x "
  395. "offset/userptr=0x%lx, length=%d\n",
  396. i, plane->bytesused, plane->data_offset,
  397. plane->m.userptr, plane->length);
  398. }
  399. } else {
  400. pr_cont("bytesused=%d, offset/userptr=0x%lx, length=%d\n",
  401. p->bytesused, p->m.userptr, p->length);
  402. }
  403. printk(KERN_DEBUG "timecode=%02d:%02d:%02d type=%d, "
  404. "flags=0x%08x, frames=%d, userbits=0x%08x\n",
  405. tc->hours, tc->minutes, tc->seconds,
  406. tc->type, tc->flags, tc->frames, *(__u32 *)tc->userbits);
  407. }
  408. static void v4l_print_create_buffers(const void *arg, bool write_only)
  409. {
  410. const struct v4l2_create_buffers *p = arg;
  411. pr_cont("index=%d, count=%d, memory=%s, ",
  412. p->index, p->count,
  413. prt_names(p->memory, v4l2_memory_names));
  414. v4l_print_format(&p->format, write_only);
  415. }
  416. static void v4l_print_streamparm(const void *arg, bool write_only)
  417. {
  418. const struct v4l2_streamparm *p = arg;
  419. pr_cont("type=%s", prt_names(p->type, v4l2_type_names));
  420. if (p->type == V4L2_BUF_TYPE_VIDEO_CAPTURE ||
  421. p->type == V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE) {
  422. const struct v4l2_captureparm *c = &p->parm.capture;
  423. pr_cont(", capability=0x%x, capturemode=0x%x, timeperframe=%d/%d, "
  424. "extendedmode=%d, readbuffers=%d\n",
  425. c->capability, c->capturemode,
  426. c->timeperframe.numerator, c->timeperframe.denominator,
  427. c->extendedmode, c->readbuffers);
  428. } else if (p->type == V4L2_BUF_TYPE_VIDEO_OUTPUT ||
  429. p->type == V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE) {
  430. const struct v4l2_outputparm *c = &p->parm.output;
  431. pr_cont(", capability=0x%x, outputmode=0x%x, timeperframe=%d/%d, "
  432. "extendedmode=%d, writebuffers=%d\n",
  433. c->capability, c->outputmode,
  434. c->timeperframe.numerator, c->timeperframe.denominator,
  435. c->extendedmode, c->writebuffers);
  436. }
  437. }
  438. static void v4l_print_queryctrl(const void *arg, bool write_only)
  439. {
  440. const struct v4l2_queryctrl *p = arg;
  441. pr_cont("id=0x%x, type=%d, name=%s, min/max=%d/%d, "
  442. "step=%d, default=%d, flags=0x%08x\n",
  443. p->id, p->type, p->name,
  444. p->minimum, p->maximum,
  445. p->step, p->default_value, p->flags);
  446. }
  447. static void v4l_print_querymenu(const void *arg, bool write_only)
  448. {
  449. const struct v4l2_querymenu *p = arg;
  450. pr_cont("id=0x%x, index=%d\n", p->id, p->index);
  451. }
  452. static void v4l_print_control(const void *arg, bool write_only)
  453. {
  454. const struct v4l2_control *p = arg;
  455. pr_cont("id=0x%x, value=%d\n", p->id, p->value);
  456. }
  457. static void v4l_print_ext_controls(const void *arg, bool write_only)
  458. {
  459. const struct v4l2_ext_controls *p = arg;
  460. int i;
  461. pr_cont("class=0x%x, count=%d, error_idx=%d",
  462. p->ctrl_class, p->count, p->error_idx);
  463. for (i = 0; i < p->count; i++) {
  464. if (p->controls[i].size)
  465. pr_cont(", id/val=0x%x/0x%x",
  466. p->controls[i].id, p->controls[i].value);
  467. else
  468. pr_cont(", id/size=0x%x/%u",
  469. p->controls[i].id, p->controls[i].size);
  470. }
  471. pr_cont("\n");
  472. }
  473. static void v4l_print_cropcap(const void *arg, bool write_only)
  474. {
  475. const struct v4l2_cropcap *p = arg;
  476. pr_cont("type=%s, bounds wxh=%dx%d, x,y=%d,%d, "
  477. "defrect wxh=%dx%d, x,y=%d,%d\n, "
  478. "pixelaspect %d/%d\n",
  479. prt_names(p->type, v4l2_type_names),
  480. p->bounds.width, p->bounds.height,
  481. p->bounds.left, p->bounds.top,
  482. p->defrect.width, p->defrect.height,
  483. p->defrect.left, p->defrect.top,
  484. p->pixelaspect.numerator, p->pixelaspect.denominator);
  485. }
  486. static void v4l_print_crop(const void *arg, bool write_only)
  487. {
  488. const struct v4l2_crop *p = arg;
  489. pr_cont("type=%s, wxh=%dx%d, x,y=%d,%d\n",
  490. prt_names(p->type, v4l2_type_names),
  491. p->c.width, p->c.height,
  492. p->c.left, p->c.top);
  493. }
  494. static void v4l_print_selection(const void *arg, bool write_only)
  495. {
  496. const struct v4l2_selection *p = arg;
  497. pr_cont("type=%s, target=%d, flags=0x%x, wxh=%dx%d, x,y=%d,%d\n",
  498. prt_names(p->type, v4l2_type_names),
  499. p->target, p->flags,
  500. p->r.width, p->r.height, p->r.left, p->r.top);
  501. }
  502. static void v4l_print_jpegcompression(const void *arg, bool write_only)
  503. {
  504. const struct v4l2_jpegcompression *p = arg;
  505. pr_cont("quality=%d, APPn=%d, APP_len=%d, "
  506. "COM_len=%d, jpeg_markers=0x%x\n",
  507. p->quality, p->APPn, p->APP_len,
  508. p->COM_len, p->jpeg_markers);
  509. }
  510. static void v4l_print_enc_idx(const void *arg, bool write_only)
  511. {
  512. const struct v4l2_enc_idx *p = arg;
  513. pr_cont("entries=%d, entries_cap=%d\n",
  514. p->entries, p->entries_cap);
  515. }
  516. static void v4l_print_encoder_cmd(const void *arg, bool write_only)
  517. {
  518. const struct v4l2_encoder_cmd *p = arg;
  519. pr_cont("cmd=%d, flags=0x%x\n",
  520. p->cmd, p->flags);
  521. }
  522. static void v4l_print_decoder_cmd(const void *arg, bool write_only)
  523. {
  524. const struct v4l2_decoder_cmd *p = arg;
  525. pr_cont("cmd=%d, flags=0x%x\n", p->cmd, p->flags);
  526. if (p->cmd == V4L2_DEC_CMD_START)
  527. pr_info("speed=%d, format=%u\n",
  528. p->start.speed, p->start.format);
  529. else if (p->cmd == V4L2_DEC_CMD_STOP)
  530. pr_info("pts=%llu\n", p->stop.pts);
  531. }
  532. static void v4l_print_dbg_chip_ident(const void *arg, bool write_only)
  533. {
  534. const struct v4l2_dbg_chip_ident *p = arg;
  535. pr_cont("type=%u, ", p->match.type);
  536. if (p->match.type == V4L2_CHIP_MATCH_I2C_DRIVER)
  537. pr_cont("name=%s, ", p->match.name);
  538. else
  539. pr_cont("addr=%u, ", p->match.addr);
  540. pr_cont("chip_ident=%u, revision=0x%x\n",
  541. p->ident, p->revision);
  542. }
  543. static void v4l_print_dbg_register(const void *arg, bool write_only)
  544. {
  545. const struct v4l2_dbg_register *p = arg;
  546. pr_cont("type=%u, ", p->match.type);
  547. if (p->match.type == V4L2_CHIP_MATCH_I2C_DRIVER)
  548. pr_cont("name=%s, ", p->match.name);
  549. else
  550. pr_cont("addr=%u, ", p->match.addr);
  551. pr_cont("reg=0x%llx, val=0x%llx\n",
  552. p->reg, p->val);
  553. }
  554. static void v4l_print_dv_enum_presets(const void *arg, bool write_only)
  555. {
  556. const struct v4l2_dv_enum_preset *p = arg;
  557. pr_cont("index=%u, preset=%u, name=%s, width=%u, height=%u\n",
  558. p->index, p->preset, p->name, p->width, p->height);
  559. }
  560. static void v4l_print_dv_preset(const void *arg, bool write_only)
  561. {
  562. const struct v4l2_dv_preset *p = arg;
  563. pr_cont("preset=%u\n", p->preset);
  564. }
  565. static void v4l_print_dv_timings(const void *arg, bool write_only)
  566. {
  567. const struct v4l2_dv_timings *p = arg;
  568. switch (p->type) {
  569. case V4L2_DV_BT_656_1120:
  570. pr_cont("type=bt-656/1120, interlaced=%u, "
  571. "pixelclock=%llu, "
  572. "width=%u, height=%u, polarities=0x%x, "
  573. "hfrontporch=%u, hsync=%u, "
  574. "hbackporch=%u, vfrontporch=%u, "
  575. "vsync=%u, vbackporch=%u, "
  576. "il_vfrontporch=%u, il_vsync=%u, "
  577. "il_vbackporch=%u, standards=0x%x, flags=0x%x\n",
  578. p->bt.interlaced, p->bt.pixelclock,
  579. p->bt.width, p->bt.height,
  580. p->bt.polarities, p->bt.hfrontporch,
  581. p->bt.hsync, p->bt.hbackporch,
  582. p->bt.vfrontporch, p->bt.vsync,
  583. p->bt.vbackporch, p->bt.il_vfrontporch,
  584. p->bt.il_vsync, p->bt.il_vbackporch,
  585. p->bt.standards, p->bt.flags);
  586. break;
  587. default:
  588. pr_cont("type=%d\n", p->type);
  589. break;
  590. }
  591. }
  592. static void v4l_print_enum_dv_timings(const void *arg, bool write_only)
  593. {
  594. const struct v4l2_enum_dv_timings *p = arg;
  595. pr_cont("index=%u, ", p->index);
  596. v4l_print_dv_timings(&p->timings, write_only);
  597. }
  598. static void v4l_print_dv_timings_cap(const void *arg, bool write_only)
  599. {
  600. const struct v4l2_dv_timings_cap *p = arg;
  601. switch (p->type) {
  602. case V4L2_DV_BT_656_1120:
  603. pr_cont("type=bt-656/1120, width=%u-%u, height=%u-%u, "
  604. "pixelclock=%llu-%llu, standards=0x%x, capabilities=0x%x\n",
  605. p->bt.min_width, p->bt.max_width,
  606. p->bt.min_height, p->bt.max_height,
  607. p->bt.min_pixelclock, p->bt.max_pixelclock,
  608. p->bt.standards, p->bt.capabilities);
  609. break;
  610. default:
  611. pr_cont("type=%u\n", p->type);
  612. break;
  613. }
  614. }
  615. static void v4l_print_frmsizeenum(const void *arg, bool write_only)
  616. {
  617. const struct v4l2_frmsizeenum *p = arg;
  618. pr_cont("index=%u, pixelformat=%c%c%c%c, type=%u",
  619. p->index,
  620. (p->pixel_format & 0xff),
  621. (p->pixel_format >> 8) & 0xff,
  622. (p->pixel_format >> 16) & 0xff,
  623. (p->pixel_format >> 24) & 0xff,
  624. p->type);
  625. switch (p->type) {
  626. case V4L2_FRMSIZE_TYPE_DISCRETE:
  627. pr_cont(" wxh=%ux%u\n",
  628. p->discrete.width, p->discrete.height);
  629. break;
  630. case V4L2_FRMSIZE_TYPE_STEPWISE:
  631. pr_cont(" min=%ux%u, max=%ux%u, step=%ux%u\n",
  632. p->stepwise.min_width, p->stepwise.min_height,
  633. p->stepwise.step_width, p->stepwise.step_height,
  634. p->stepwise.max_width, p->stepwise.max_height);
  635. break;
  636. case V4L2_FRMSIZE_TYPE_CONTINUOUS:
  637. /* fall through */
  638. default:
  639. pr_cont("\n");
  640. break;
  641. }
  642. }
  643. static void v4l_print_frmivalenum(const void *arg, bool write_only)
  644. {
  645. const struct v4l2_frmivalenum *p = arg;
  646. pr_cont("index=%u, pixelformat=%c%c%c%c, wxh=%ux%u, type=%u",
  647. p->index,
  648. (p->pixel_format & 0xff),
  649. (p->pixel_format >> 8) & 0xff,
  650. (p->pixel_format >> 16) & 0xff,
  651. (p->pixel_format >> 24) & 0xff,
  652. p->width, p->height, p->type);
  653. switch (p->type) {
  654. case V4L2_FRMIVAL_TYPE_DISCRETE:
  655. pr_cont(" fps=%d/%d\n",
  656. p->discrete.numerator,
  657. p->discrete.denominator);
  658. break;
  659. case V4L2_FRMIVAL_TYPE_STEPWISE:
  660. pr_cont(" min=%d/%d, max=%d/%d, step=%d/%d\n",
  661. p->stepwise.min.numerator,
  662. p->stepwise.min.denominator,
  663. p->stepwise.max.numerator,
  664. p->stepwise.max.denominator,
  665. p->stepwise.step.numerator,
  666. p->stepwise.step.denominator);
  667. break;
  668. case V4L2_FRMIVAL_TYPE_CONTINUOUS:
  669. /* fall through */
  670. default:
  671. pr_cont("\n");
  672. break;
  673. }
  674. }
  675. static void v4l_print_event(const void *arg, bool write_only)
  676. {
  677. const struct v4l2_event *p = arg;
  678. const struct v4l2_event_ctrl *c;
  679. pr_cont("type=0x%x, pending=%u, sequence=%u, id=%u, "
  680. "timestamp=%lu.%9.9lu\n",
  681. p->type, p->pending, p->sequence, p->id,
  682. p->timestamp.tv_sec, p->timestamp.tv_nsec);
  683. switch (p->type) {
  684. case V4L2_EVENT_VSYNC:
  685. printk(KERN_DEBUG "field=%s\n",
  686. prt_names(p->u.vsync.field, v4l2_field_names));
  687. break;
  688. case V4L2_EVENT_CTRL:
  689. c = &p->u.ctrl;
  690. printk(KERN_DEBUG "changes=0x%x, type=%u, ",
  691. c->changes, c->type);
  692. if (c->type == V4L2_CTRL_TYPE_INTEGER64)
  693. pr_cont("value64=%lld, ", c->value64);
  694. else
  695. pr_cont("value=%d, ", c->value);
  696. pr_cont("flags=0x%x, minimum=%d, maximum=%d, step=%d,"
  697. " default_value=%d\n",
  698. c->flags, c->minimum, c->maximum,
  699. c->step, c->default_value);
  700. break;
  701. case V4L2_EVENT_FRAME_SYNC:
  702. pr_cont("frame_sequence=%u\n",
  703. p->u.frame_sync.frame_sequence);
  704. break;
  705. }
  706. }
  707. static void v4l_print_event_subscription(const void *arg, bool write_only)
  708. {
  709. const struct v4l2_event_subscription *p = arg;
  710. pr_cont("type=0x%x, id=0x%x, flags=0x%x\n",
  711. p->type, p->id, p->flags);
  712. }
  713. static void v4l_print_sliced_vbi_cap(const void *arg, bool write_only)
  714. {
  715. const struct v4l2_sliced_vbi_cap *p = arg;
  716. int i;
  717. pr_cont("type=%s, service_set=0x%08x\n",
  718. prt_names(p->type, v4l2_type_names), p->service_set);
  719. for (i = 0; i < 24; i++)
  720. printk(KERN_DEBUG "line[%02u]=0x%04x, 0x%04x\n", i,
  721. p->service_lines[0][i],
  722. p->service_lines[1][i]);
  723. }
  724. static void v4l_print_freq_band(const void *arg, bool write_only)
  725. {
  726. const struct v4l2_frequency_band *p = arg;
  727. pr_cont("tuner=%u, type=%u, index=%u, capability=0x%x, "
  728. "rangelow=%u, rangehigh=%u, modulation=0x%x\n",
  729. p->tuner, p->type, p->index,
  730. p->capability, p->rangelow,
  731. p->rangehigh, p->modulation);
  732. }
  733. static void v4l_print_u32(const void *arg, bool write_only)
  734. {
  735. pr_cont("value=%u\n", *(const u32 *)arg);
  736. }
  737. static void v4l_print_newline(const void *arg, bool write_only)
  738. {
  739. pr_cont("\n");
  740. }
  741. static void v4l_print_default(const void *arg, bool write_only)
  742. {
  743. pr_cont("driver-specific ioctl\n");
  744. }
  745. static int check_ext_ctrls(struct v4l2_ext_controls *c, int allow_priv)
  746. {
  747. __u32 i;
  748. /* zero the reserved fields */
  749. c->reserved[0] = c->reserved[1] = 0;
  750. for (i = 0; i < c->count; i++)
  751. c->controls[i].reserved2[0] = 0;
  752. /* V4L2_CID_PRIVATE_BASE cannot be used as control class
  753. when using extended controls.
  754. Only when passed in through VIDIOC_G_CTRL and VIDIOC_S_CTRL
  755. is it allowed for backwards compatibility.
  756. */
  757. if (!allow_priv && c->ctrl_class == V4L2_CID_PRIVATE_BASE)
  758. return 0;
  759. /* Check that all controls are from the same control class. */
  760. for (i = 0; i < c->count; i++) {
  761. if (V4L2_CTRL_ID2CLASS(c->controls[i].id) != c->ctrl_class) {
  762. c->error_idx = i;
  763. return 0;
  764. }
  765. }
  766. return 1;
  767. }
  768. static int check_fmt(const struct v4l2_ioctl_ops *ops, enum v4l2_buf_type type)
  769. {
  770. if (ops == NULL)
  771. return -EINVAL;
  772. switch (type) {
  773. case V4L2_BUF_TYPE_VIDEO_CAPTURE:
  774. if (ops->vidioc_g_fmt_vid_cap ||
  775. ops->vidioc_g_fmt_vid_cap_mplane)
  776. return 0;
  777. break;
  778. case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE:
  779. if (ops->vidioc_g_fmt_vid_cap_mplane)
  780. return 0;
  781. break;
  782. case V4L2_BUF_TYPE_VIDEO_OVERLAY:
  783. if (ops->vidioc_g_fmt_vid_overlay)
  784. return 0;
  785. break;
  786. case V4L2_BUF_TYPE_VIDEO_OUTPUT:
  787. if (ops->vidioc_g_fmt_vid_out ||
  788. ops->vidioc_g_fmt_vid_out_mplane)
  789. return 0;
  790. break;
  791. case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE:
  792. if (ops->vidioc_g_fmt_vid_out_mplane)
  793. return 0;
  794. break;
  795. case V4L2_BUF_TYPE_VIDEO_OUTPUT_OVERLAY:
  796. if (ops->vidioc_g_fmt_vid_out_overlay)
  797. return 0;
  798. break;
  799. case V4L2_BUF_TYPE_VBI_CAPTURE:
  800. if (ops->vidioc_g_fmt_vbi_cap)
  801. return 0;
  802. break;
  803. case V4L2_BUF_TYPE_VBI_OUTPUT:
  804. if (ops->vidioc_g_fmt_vbi_out)
  805. return 0;
  806. break;
  807. case V4L2_BUF_TYPE_SLICED_VBI_CAPTURE:
  808. if (ops->vidioc_g_fmt_sliced_vbi_cap)
  809. return 0;
  810. break;
  811. case V4L2_BUF_TYPE_SLICED_VBI_OUTPUT:
  812. if (ops->vidioc_g_fmt_sliced_vbi_out)
  813. return 0;
  814. break;
  815. case V4L2_BUF_TYPE_PRIVATE:
  816. if (ops->vidioc_g_fmt_type_private)
  817. return 0;
  818. break;
  819. }
  820. return -EINVAL;
  821. }
  822. static int v4l_querycap(const struct v4l2_ioctl_ops *ops,
  823. struct file *file, void *fh, void *arg)
  824. {
  825. struct v4l2_capability *cap = (struct v4l2_capability *)arg;
  826. cap->version = LINUX_VERSION_CODE;
  827. return ops->vidioc_querycap(file, fh, cap);
  828. }
  829. static int v4l_s_input(const struct v4l2_ioctl_ops *ops,
  830. struct file *file, void *fh, void *arg)
  831. {
  832. return ops->vidioc_s_input(file, fh, *(unsigned int *)arg);
  833. }
  834. static int v4l_s_output(const struct v4l2_ioctl_ops *ops,
  835. struct file *file, void *fh, void *arg)
  836. {
  837. return ops->vidioc_s_output(file, fh, *(unsigned int *)arg);
  838. }
  839. static int v4l_g_priority(const struct v4l2_ioctl_ops *ops,
  840. struct file *file, void *fh, void *arg)
  841. {
  842. struct video_device *vfd;
  843. u32 *p = arg;
  844. if (ops->vidioc_g_priority)
  845. return ops->vidioc_g_priority(file, fh, arg);
  846. vfd = video_devdata(file);
  847. *p = v4l2_prio_max(&vfd->v4l2_dev->prio);
  848. return 0;
  849. }
  850. static int v4l_s_priority(const struct v4l2_ioctl_ops *ops,
  851. struct file *file, void *fh, void *arg)
  852. {
  853. struct video_device *vfd;
  854. struct v4l2_fh *vfh;
  855. u32 *p = arg;
  856. if (ops->vidioc_s_priority)
  857. return ops->vidioc_s_priority(file, fh, *p);
  858. vfd = video_devdata(file);
  859. vfh = file->private_data;
  860. return v4l2_prio_change(&vfd->v4l2_dev->prio, &vfh->prio, *p);
  861. }
  862. static int v4l_enuminput(const struct v4l2_ioctl_ops *ops,
  863. struct file *file, void *fh, void *arg)
  864. {
  865. struct v4l2_input *p = arg;
  866. /*
  867. * We set the flags for CAP_PRESETS, CAP_CUSTOM_TIMINGS &
  868. * CAP_STD here based on ioctl handler provided by the
  869. * driver. If the driver doesn't support these
  870. * for a specific input, it must override these flags.
  871. */
  872. if (ops->vidioc_s_std)
  873. p->capabilities |= V4L2_IN_CAP_STD;
  874. if (ops->vidioc_s_dv_preset)
  875. p->capabilities |= V4L2_IN_CAP_PRESETS;
  876. if (ops->vidioc_s_dv_timings)
  877. p->capabilities |= V4L2_IN_CAP_CUSTOM_TIMINGS;
  878. return ops->vidioc_enum_input(file, fh, p);
  879. }
  880. static int v4l_enumoutput(const struct v4l2_ioctl_ops *ops,
  881. struct file *file, void *fh, void *arg)
  882. {
  883. struct v4l2_output *p = arg;
  884. /*
  885. * We set the flags for CAP_PRESETS, CAP_CUSTOM_TIMINGS &
  886. * CAP_STD here based on ioctl handler provided by the
  887. * driver. If the driver doesn't support these
  888. * for a specific output, it must override these flags.
  889. */
  890. if (ops->vidioc_s_std)
  891. p->capabilities |= V4L2_OUT_CAP_STD;
  892. if (ops->vidioc_s_dv_preset)
  893. p->capabilities |= V4L2_OUT_CAP_PRESETS;
  894. if (ops->vidioc_s_dv_timings)
  895. p->capabilities |= V4L2_OUT_CAP_CUSTOM_TIMINGS;
  896. return ops->vidioc_enum_output(file, fh, p);
  897. }
  898. static int v4l_enum_fmt(const struct v4l2_ioctl_ops *ops,
  899. struct file *file, void *fh, void *arg)
  900. {
  901. struct v4l2_fmtdesc *p = arg;
  902. switch (p->type) {
  903. case V4L2_BUF_TYPE_VIDEO_CAPTURE:
  904. if (unlikely(!ops->vidioc_enum_fmt_vid_cap))
  905. break;
  906. return ops->vidioc_enum_fmt_vid_cap(file, fh, arg);
  907. case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE:
  908. if (unlikely(!ops->vidioc_enum_fmt_vid_cap_mplane))
  909. break;
  910. return ops->vidioc_enum_fmt_vid_cap_mplane(file, fh, arg);
  911. case V4L2_BUF_TYPE_VIDEO_OVERLAY:
  912. if (unlikely(!ops->vidioc_enum_fmt_vid_overlay))
  913. break;
  914. return ops->vidioc_enum_fmt_vid_overlay(file, fh, arg);
  915. case V4L2_BUF_TYPE_VIDEO_OUTPUT:
  916. if (unlikely(!ops->vidioc_enum_fmt_vid_out))
  917. break;
  918. return ops->vidioc_enum_fmt_vid_out(file, fh, arg);
  919. case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE:
  920. if (unlikely(!ops->vidioc_enum_fmt_vid_out_mplane))
  921. break;
  922. return ops->vidioc_enum_fmt_vid_out_mplane(file, fh, arg);
  923. case V4L2_BUF_TYPE_PRIVATE:
  924. if (unlikely(!ops->vidioc_enum_fmt_type_private))
  925. break;
  926. return ops->vidioc_enum_fmt_type_private(file, fh, arg);
  927. }
  928. return -EINVAL;
  929. }
  930. static int v4l_g_fmt(const struct v4l2_ioctl_ops *ops,
  931. struct file *file, void *fh, void *arg)
  932. {
  933. struct v4l2_format *p = arg;
  934. switch (p->type) {
  935. case V4L2_BUF_TYPE_VIDEO_CAPTURE:
  936. if (unlikely(!ops->vidioc_g_fmt_vid_cap))
  937. break;
  938. return ops->vidioc_g_fmt_vid_cap(file, fh, arg);
  939. case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE:
  940. if (unlikely(!ops->vidioc_g_fmt_vid_cap_mplane))
  941. break;
  942. return ops->vidioc_g_fmt_vid_cap_mplane(file, fh, arg);
  943. case V4L2_BUF_TYPE_VIDEO_OVERLAY:
  944. if (unlikely(!ops->vidioc_g_fmt_vid_overlay))
  945. break;
  946. return ops->vidioc_g_fmt_vid_overlay(file, fh, arg);
  947. case V4L2_BUF_TYPE_VIDEO_OUTPUT:
  948. if (unlikely(!ops->vidioc_g_fmt_vid_out))
  949. break;
  950. return ops->vidioc_g_fmt_vid_out(file, fh, arg);
  951. case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE:
  952. if (unlikely(!ops->vidioc_g_fmt_vid_out_mplane))
  953. break;
  954. return ops->vidioc_g_fmt_vid_out_mplane(file, fh, arg);
  955. case V4L2_BUF_TYPE_VIDEO_OUTPUT_OVERLAY:
  956. if (unlikely(!ops->vidioc_g_fmt_vid_out_overlay))
  957. break;
  958. return ops->vidioc_g_fmt_vid_out_overlay(file, fh, arg);
  959. case V4L2_BUF_TYPE_VBI_CAPTURE:
  960. if (unlikely(!ops->vidioc_g_fmt_vbi_cap))
  961. break;
  962. return ops->vidioc_g_fmt_vbi_cap(file, fh, arg);
  963. case V4L2_BUF_TYPE_VBI_OUTPUT:
  964. if (unlikely(!ops->vidioc_g_fmt_vbi_out))
  965. break;
  966. return ops->vidioc_g_fmt_vbi_out(file, fh, arg);
  967. case V4L2_BUF_TYPE_SLICED_VBI_CAPTURE:
  968. if (unlikely(!ops->vidioc_g_fmt_sliced_vbi_cap))
  969. break;
  970. return ops->vidioc_g_fmt_sliced_vbi_cap(file, fh, arg);
  971. case V4L2_BUF_TYPE_SLICED_VBI_OUTPUT:
  972. if (unlikely(!ops->vidioc_g_fmt_sliced_vbi_out))
  973. break;
  974. return ops->vidioc_g_fmt_sliced_vbi_out(file, fh, arg);
  975. case V4L2_BUF_TYPE_PRIVATE:
  976. if (unlikely(!ops->vidioc_g_fmt_type_private))
  977. break;
  978. return ops->vidioc_g_fmt_type_private(file, fh, arg);
  979. }
  980. return -EINVAL;
  981. }
  982. static int v4l_s_fmt(const struct v4l2_ioctl_ops *ops,
  983. struct file *file, void *fh, void *arg)
  984. {
  985. struct v4l2_format *p = arg;
  986. switch (p->type) {
  987. case V4L2_BUF_TYPE_VIDEO_CAPTURE:
  988. if (unlikely(!ops->vidioc_s_fmt_vid_cap))
  989. break;
  990. CLEAR_AFTER_FIELD(p, fmt.pix);
  991. return ops->vidioc_s_fmt_vid_cap(file, fh, arg);
  992. case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE:
  993. if (unlikely(!ops->vidioc_s_fmt_vid_cap_mplane))
  994. break;
  995. CLEAR_AFTER_FIELD(p, fmt.pix_mp);
  996. return ops->vidioc_s_fmt_vid_cap_mplane(file, fh, arg);
  997. case V4L2_BUF_TYPE_VIDEO_OVERLAY:
  998. if (unlikely(!ops->vidioc_s_fmt_vid_overlay))
  999. break;
  1000. CLEAR_AFTER_FIELD(p, fmt.win);
  1001. return ops->vidioc_s_fmt_vid_overlay(file, fh, arg);
  1002. case V4L2_BUF_TYPE_VIDEO_OUTPUT:
  1003. if (unlikely(!ops->vidioc_s_fmt_vid_out))
  1004. break;
  1005. CLEAR_AFTER_FIELD(p, fmt.pix);
  1006. return ops->vidioc_s_fmt_vid_out(file, fh, arg);
  1007. case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE:
  1008. if (unlikely(!ops->vidioc_s_fmt_vid_out_mplane))
  1009. break;
  1010. CLEAR_AFTER_FIELD(p, fmt.pix_mp);
  1011. return ops->vidioc_s_fmt_vid_out_mplane(file, fh, arg);
  1012. case V4L2_BUF_TYPE_VIDEO_OUTPUT_OVERLAY:
  1013. if (unlikely(!ops->vidioc_s_fmt_vid_out_overlay))
  1014. break;
  1015. CLEAR_AFTER_FIELD(p, fmt.win);
  1016. return ops->vidioc_s_fmt_vid_out_overlay(file, fh, arg);
  1017. case V4L2_BUF_TYPE_VBI_CAPTURE:
  1018. if (unlikely(!ops->vidioc_s_fmt_vbi_cap))
  1019. break;
  1020. CLEAR_AFTER_FIELD(p, fmt.vbi);
  1021. return ops->vidioc_s_fmt_vbi_cap(file, fh, arg);
  1022. case V4L2_BUF_TYPE_VBI_OUTPUT:
  1023. if (unlikely(!ops->vidioc_s_fmt_vbi_out))
  1024. break;
  1025. CLEAR_AFTER_FIELD(p, fmt.vbi);
  1026. return ops->vidioc_s_fmt_vbi_out(file, fh, arg);
  1027. case V4L2_BUF_TYPE_SLICED_VBI_CAPTURE:
  1028. if (unlikely(!ops->vidioc_s_fmt_sliced_vbi_cap))
  1029. break;
  1030. CLEAR_AFTER_FIELD(p, fmt.sliced);
  1031. return ops->vidioc_s_fmt_sliced_vbi_cap(file, fh, arg);
  1032. case V4L2_BUF_TYPE_SLICED_VBI_OUTPUT:
  1033. if (unlikely(!ops->vidioc_s_fmt_sliced_vbi_out))
  1034. break;
  1035. CLEAR_AFTER_FIELD(p, fmt.sliced);
  1036. return ops->vidioc_s_fmt_sliced_vbi_out(file, fh, arg);
  1037. case V4L2_BUF_TYPE_PRIVATE:
  1038. if (unlikely(!ops->vidioc_s_fmt_type_private))
  1039. break;
  1040. return ops->vidioc_s_fmt_type_private(file, fh, arg);
  1041. }
  1042. return -EINVAL;
  1043. }
  1044. static int v4l_try_fmt(const struct v4l2_ioctl_ops *ops,
  1045. struct file *file, void *fh, void *arg)
  1046. {
  1047. struct v4l2_format *p = arg;
  1048. switch (p->type) {
  1049. case V4L2_BUF_TYPE_VIDEO_CAPTURE:
  1050. if (unlikely(!ops->vidioc_try_fmt_vid_cap))
  1051. break;
  1052. CLEAR_AFTER_FIELD(p, fmt.pix);
  1053. return ops->vidioc_try_fmt_vid_cap(file, fh, arg);
  1054. case V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE:
  1055. if (unlikely(!ops->vidioc_try_fmt_vid_cap_mplane))
  1056. break;
  1057. CLEAR_AFTER_FIELD(p, fmt.pix_mp);
  1058. return ops->vidioc_try_fmt_vid_cap_mplane(file, fh, arg);
  1059. case V4L2_BUF_TYPE_VIDEO_OVERLAY:
  1060. if (unlikely(!ops->vidioc_try_fmt_vid_overlay))
  1061. break;
  1062. CLEAR_AFTER_FIELD(p, fmt.win);
  1063. return ops->vidioc_try_fmt_vid_overlay(file, fh, arg);
  1064. case V4L2_BUF_TYPE_VIDEO_OUTPUT:
  1065. if (unlikely(!ops->vidioc_try_fmt_vid_out))
  1066. break;
  1067. CLEAR_AFTER_FIELD(p, fmt.pix);
  1068. return ops->vidioc_try_fmt_vid_out(file, fh, arg);
  1069. case V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE:
  1070. if (unlikely(!ops->vidioc_try_fmt_vid_out_mplane))
  1071. break;
  1072. CLEAR_AFTER_FIELD(p, fmt.pix_mp);
  1073. return ops->vidioc_try_fmt_vid_out_mplane(file, fh, arg);
  1074. case V4L2_BUF_TYPE_VIDEO_OUTPUT_OVERLAY:
  1075. if (unlikely(!ops->vidioc_try_fmt_vid_out_overlay))
  1076. break;
  1077. CLEAR_AFTER_FIELD(p, fmt.win);
  1078. return ops->vidioc_try_fmt_vid_out_overlay(file, fh, arg);
  1079. case V4L2_BUF_TYPE_VBI_CAPTURE:
  1080. if (unlikely(!ops->vidioc_try_fmt_vbi_cap))
  1081. break;
  1082. CLEAR_AFTER_FIELD(p, fmt.vbi);
  1083. return ops->vidioc_try_fmt_vbi_cap(file, fh, arg);
  1084. case V4L2_BUF_TYPE_VBI_OUTPUT:
  1085. if (unlikely(!ops->vidioc_try_fmt_vbi_out))
  1086. break;
  1087. CLEAR_AFTER_FIELD(p, fmt.vbi);
  1088. return ops->vidioc_try_fmt_vbi_out(file, fh, arg);
  1089. case V4L2_BUF_TYPE_SLICED_VBI_CAPTURE:
  1090. if (unlikely(!ops->vidioc_try_fmt_sliced_vbi_cap))
  1091. break;
  1092. CLEAR_AFTER_FIELD(p, fmt.sliced);
  1093. return ops->vidioc_try_fmt_sliced_vbi_cap(file, fh, arg);
  1094. case V4L2_BUF_TYPE_SLICED_VBI_OUTPUT:
  1095. if (unlikely(!ops->vidioc_try_fmt_sliced_vbi_out))
  1096. break;
  1097. CLEAR_AFTER_FIELD(p, fmt.sliced);
  1098. return ops->vidioc_try_fmt_sliced_vbi_out(file, fh, arg);
  1099. case V4L2_BUF_TYPE_PRIVATE:
  1100. if (unlikely(!ops->vidioc_try_fmt_type_private))
  1101. break;
  1102. return ops->vidioc_try_fmt_type_private(file, fh, arg);
  1103. }
  1104. return -EINVAL;
  1105. }
  1106. static int v4l_streamon(const struct v4l2_ioctl_ops *ops,
  1107. struct file *file, void *fh, void *arg)
  1108. {
  1109. return ops->vidioc_streamon(file, fh, *(unsigned int *)arg);
  1110. }
  1111. static int v4l_streamoff(const struct v4l2_ioctl_ops *ops,
  1112. struct file *file, void *fh, void *arg)
  1113. {
  1114. return ops->vidioc_streamoff(file, fh, *(unsigned int *)arg);
  1115. }
  1116. static int v4l_g_tuner(const struct v4l2_ioctl_ops *ops,
  1117. struct file *file, void *fh, void *arg)
  1118. {
  1119. struct video_device *vfd = video_devdata(file);
  1120. struct v4l2_tuner *p = arg;
  1121. int err;
  1122. p->type = (vfd->vfl_type == VFL_TYPE_RADIO) ?
  1123. V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
  1124. err = ops->vidioc_g_tuner(file, fh, p);
  1125. if (!err)
  1126. p->capability |= V4L2_TUNER_CAP_FREQ_BANDS;
  1127. return err;
  1128. }
  1129. static int v4l_s_tuner(const struct v4l2_ioctl_ops *ops,
  1130. struct file *file, void *fh, void *arg)
  1131. {
  1132. struct video_device *vfd = video_devdata(file);
  1133. struct v4l2_tuner *p = arg;
  1134. p->type = (vfd->vfl_type == VFL_TYPE_RADIO) ?
  1135. V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
  1136. return ops->vidioc_s_tuner(file, fh, p);
  1137. }
  1138. static int v4l_g_modulator(const struct v4l2_ioctl_ops *ops,
  1139. struct file *file, void *fh, void *arg)
  1140. {
  1141. struct v4l2_modulator *p = arg;
  1142. int err;
  1143. err = ops->vidioc_g_modulator(file, fh, p);
  1144. if (!err)
  1145. p->capability |= V4L2_TUNER_CAP_FREQ_BANDS;
  1146. return err;
  1147. }
  1148. static int v4l_g_frequency(const struct v4l2_ioctl_ops *ops,
  1149. struct file *file, void *fh, void *arg)
  1150. {
  1151. struct video_device *vfd = video_devdata(file);
  1152. struct v4l2_frequency *p = arg;
  1153. p->type = (vfd->vfl_type == VFL_TYPE_RADIO) ?
  1154. V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
  1155. return ops->vidioc_g_frequency(file, fh, p);
  1156. }
  1157. static int v4l_s_frequency(const struct v4l2_ioctl_ops *ops,
  1158. struct file *file, void *fh, void *arg)
  1159. {
  1160. struct video_device *vfd = video_devdata(file);
  1161. struct v4l2_frequency *p = arg;
  1162. enum v4l2_tuner_type type;
  1163. type = (vfd->vfl_type == VFL_TYPE_RADIO) ?
  1164. V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
  1165. if (p->type != type)
  1166. return -EINVAL;
  1167. return ops->vidioc_s_frequency(file, fh, p);
  1168. }
  1169. static int v4l_enumstd(const struct v4l2_ioctl_ops *ops,
  1170. struct file *file, void *fh, void *arg)
  1171. {
  1172. struct video_device *vfd = video_devdata(file);
  1173. struct v4l2_standard *p = arg;
  1174. v4l2_std_id id = vfd->tvnorms, curr_id = 0;
  1175. unsigned int index = p->index, i, j = 0;
  1176. const char *descr = "";
  1177. /* Return norm array in a canonical way */
  1178. for (i = 0; i <= index && id; i++) {
  1179. /* last std value in the standards array is 0, so this
  1180. while always ends there since (id & 0) == 0. */
  1181. while ((id & standards[j].std) != standards[j].std)
  1182. j++;
  1183. curr_id = standards[j].std;
  1184. descr = standards[j].descr;
  1185. j++;
  1186. if (curr_id == 0)
  1187. break;
  1188. if (curr_id != V4L2_STD_PAL &&
  1189. curr_id != V4L2_STD_SECAM &&
  1190. curr_id != V4L2_STD_NTSC)
  1191. id &= ~curr_id;
  1192. }
  1193. if (i <= index)
  1194. return -EINVAL;
  1195. v4l2_video_std_construct(p, curr_id, descr);
  1196. return 0;
  1197. }
  1198. static int v4l_g_std(const struct v4l2_ioctl_ops *ops,
  1199. struct file *file, void *fh, void *arg)
  1200. {
  1201. struct video_device *vfd = video_devdata(file);
  1202. v4l2_std_id *id = arg;
  1203. /* Calls the specific handler */
  1204. if (ops->vidioc_g_std)
  1205. return ops->vidioc_g_std(file, fh, arg);
  1206. if (vfd->current_norm) {
  1207. *id = vfd->current_norm;
  1208. return 0;
  1209. }
  1210. return -ENOTTY;
  1211. }
  1212. static int v4l_s_std(const struct v4l2_ioctl_ops *ops,
  1213. struct file *file, void *fh, void *arg)
  1214. {
  1215. struct video_device *vfd = video_devdata(file);
  1216. v4l2_std_id *id = arg, norm;
  1217. int ret;
  1218. norm = (*id) & vfd->tvnorms;
  1219. if (vfd->tvnorms && !norm) /* Check if std is supported */
  1220. return -EINVAL;
  1221. /* Calls the specific handler */
  1222. ret = ops->vidioc_s_std(file, fh, &norm);
  1223. /* Updates standard information */
  1224. if (ret >= 0)
  1225. vfd->current_norm = norm;
  1226. return ret;
  1227. }
  1228. static int v4l_querystd(const struct v4l2_ioctl_ops *ops,
  1229. struct file *file, void *fh, void *arg)
  1230. {
  1231. struct video_device *vfd = video_devdata(file);
  1232. v4l2_std_id *p = arg;
  1233. /*
  1234. * If nothing detected, it should return all supported
  1235. * standard.
  1236. * Drivers just need to mask the std argument, in order
  1237. * to remove the standards that don't apply from the mask.
  1238. * This means that tuners, audio and video decoders can join
  1239. * their efforts to improve the standards detection.
  1240. */
  1241. *p = vfd->tvnorms;
  1242. return ops->vidioc_querystd(file, fh, arg);
  1243. }
  1244. static int v4l_s_hw_freq_seek(const struct v4l2_ioctl_ops *ops,
  1245. struct file *file, void *fh, void *arg)
  1246. {
  1247. struct video_device *vfd = video_devdata(file);
  1248. struct v4l2_hw_freq_seek *p = arg;
  1249. enum v4l2_tuner_type type;
  1250. type = (vfd->vfl_type == VFL_TYPE_RADIO) ?
  1251. V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
  1252. if (p->type != type)
  1253. return -EINVAL;
  1254. return ops->vidioc_s_hw_freq_seek(file, fh, p);
  1255. }
  1256. static int v4l_reqbufs(const struct v4l2_ioctl_ops *ops,
  1257. struct file *file, void *fh, void *arg)
  1258. {
  1259. struct v4l2_requestbuffers *p = arg;
  1260. int ret = check_fmt(ops, p->type);
  1261. if (ret)
  1262. return ret;
  1263. if (p->type < V4L2_BUF_TYPE_PRIVATE)
  1264. CLEAR_AFTER_FIELD(p, memory);
  1265. return ops->vidioc_reqbufs(file, fh, p);
  1266. }
  1267. static int v4l_querybuf(const struct v4l2_ioctl_ops *ops,
  1268. struct file *file, void *fh, void *arg)
  1269. {
  1270. struct v4l2_buffer *p = arg;
  1271. int ret = check_fmt(ops, p->type);
  1272. return ret ? ret : ops->vidioc_querybuf(file, fh, p);
  1273. }
  1274. static int v4l_qbuf(const struct v4l2_ioctl_ops *ops,
  1275. struct file *file, void *fh, void *arg)
  1276. {
  1277. struct v4l2_buffer *p = arg;
  1278. int ret = check_fmt(ops, p->type);
  1279. return ret ? ret : ops->vidioc_qbuf(file, fh, p);
  1280. }
  1281. static int v4l_dqbuf(const struct v4l2_ioctl_ops *ops,
  1282. struct file *file, void *fh, void *arg)
  1283. {
  1284. struct v4l2_buffer *p = arg;
  1285. int ret = check_fmt(ops, p->type);
  1286. return ret ? ret : ops->vidioc_dqbuf(file, fh, p);
  1287. }
  1288. static int v4l_create_bufs(const struct v4l2_ioctl_ops *ops,
  1289. struct file *file, void *fh, void *arg)
  1290. {
  1291. struct v4l2_create_buffers *create = arg;
  1292. int ret = check_fmt(ops, create->format.type);
  1293. return ret ? ret : ops->vidioc_create_bufs(file, fh, create);
  1294. }
  1295. static int v4l_prepare_buf(const struct v4l2_ioctl_ops *ops,
  1296. struct file *file, void *fh, void *arg)
  1297. {
  1298. struct v4l2_buffer *b = arg;
  1299. int ret = check_fmt(ops, b->type);
  1300. return ret ? ret : ops->vidioc_prepare_buf(file, fh, b);
  1301. }
  1302. static int v4l_g_parm(const struct v4l2_ioctl_ops *ops,
  1303. struct file *file, void *fh, void *arg)
  1304. {
  1305. struct video_device *vfd = video_devdata(file);
  1306. struct v4l2_streamparm *p = arg;
  1307. v4l2_std_id std;
  1308. int ret = check_fmt(ops, p->type);
  1309. if (ret)
  1310. return ret;
  1311. if (ops->vidioc_g_parm)
  1312. return ops->vidioc_g_parm(file, fh, p);
  1313. std = vfd->current_norm;
  1314. if (p->type != V4L2_BUF_TYPE_VIDEO_CAPTURE &&
  1315. p->type != V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE)
  1316. return -EINVAL;
  1317. p->parm.capture.readbuffers = 2;
  1318. if (ops->vidioc_g_std)
  1319. ret = ops->vidioc_g_std(file, fh, &std);
  1320. if (ret == 0)
  1321. v4l2_video_std_frame_period(std,
  1322. &p->parm.capture.timeperframe);
  1323. return ret;
  1324. }
  1325. static int v4l_s_parm(const struct v4l2_ioctl_ops *ops,
  1326. struct file *file, void *fh, void *arg)
  1327. {
  1328. struct v4l2_streamparm *p = arg;
  1329. int ret = check_fmt(ops, p->type);
  1330. return ret ? ret : ops->vidioc_s_parm(file, fh, p);
  1331. }
  1332. static int v4l_queryctrl(const struct v4l2_ioctl_ops *ops,
  1333. struct file *file, void *fh, void *arg)
  1334. {
  1335. struct video_device *vfd = video_devdata(file);
  1336. struct v4l2_queryctrl *p = arg;
  1337. struct v4l2_fh *vfh =
  1338. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1339. if (vfh && vfh->ctrl_handler)
  1340. return v4l2_queryctrl(vfh->ctrl_handler, p);
  1341. if (vfd->ctrl_handler)
  1342. return v4l2_queryctrl(vfd->ctrl_handler, p);
  1343. if (ops->vidioc_queryctrl)
  1344. return ops->vidioc_queryctrl(file, fh, p);
  1345. return -ENOTTY;
  1346. }
  1347. static int v4l_querymenu(const struct v4l2_ioctl_ops *ops,
  1348. struct file *file, void *fh, void *arg)
  1349. {
  1350. struct video_device *vfd = video_devdata(file);
  1351. struct v4l2_querymenu *p = arg;
  1352. struct v4l2_fh *vfh =
  1353. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1354. if (vfh && vfh->ctrl_handler)
  1355. return v4l2_querymenu(vfh->ctrl_handler, p);
  1356. if (vfd->ctrl_handler)
  1357. return v4l2_querymenu(vfd->ctrl_handler, p);
  1358. if (ops->vidioc_querymenu)
  1359. return ops->vidioc_querymenu(file, fh, p);
  1360. return -ENOTTY;
  1361. }
  1362. static int v4l_g_ctrl(const struct v4l2_ioctl_ops *ops,
  1363. struct file *file, void *fh, void *arg)
  1364. {
  1365. struct video_device *vfd = video_devdata(file);
  1366. struct v4l2_control *p = arg;
  1367. struct v4l2_fh *vfh =
  1368. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1369. struct v4l2_ext_controls ctrls;
  1370. struct v4l2_ext_control ctrl;
  1371. if (vfh && vfh->ctrl_handler)
  1372. return v4l2_g_ctrl(vfh->ctrl_handler, p);
  1373. if (vfd->ctrl_handler)
  1374. return v4l2_g_ctrl(vfd->ctrl_handler, p);
  1375. if (ops->vidioc_g_ctrl)
  1376. return ops->vidioc_g_ctrl(file, fh, p);
  1377. if (ops->vidioc_g_ext_ctrls == NULL)
  1378. return -ENOTTY;
  1379. ctrls.ctrl_class = V4L2_CTRL_ID2CLASS(p->id);
  1380. ctrls.count = 1;
  1381. ctrls.controls = &ctrl;
  1382. ctrl.id = p->id;
  1383. ctrl.value = p->value;
  1384. if (check_ext_ctrls(&ctrls, 1)) {
  1385. int ret = ops->vidioc_g_ext_ctrls(file, fh, &ctrls);
  1386. if (ret == 0)
  1387. p->value = ctrl.value;
  1388. return ret;
  1389. }
  1390. return -EINVAL;
  1391. }
  1392. static int v4l_s_ctrl(const struct v4l2_ioctl_ops *ops,
  1393. struct file *file, void *fh, void *arg)
  1394. {
  1395. struct video_device *vfd = video_devdata(file);
  1396. struct v4l2_control *p = arg;
  1397. struct v4l2_fh *vfh =
  1398. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1399. struct v4l2_ext_controls ctrls;
  1400. struct v4l2_ext_control ctrl;
  1401. if (vfh && vfh->ctrl_handler)
  1402. return v4l2_s_ctrl(vfh, vfh->ctrl_handler, p);
  1403. if (vfd->ctrl_handler)
  1404. return v4l2_s_ctrl(NULL, vfd->ctrl_handler, p);
  1405. if (ops->vidioc_s_ctrl)
  1406. return ops->vidioc_s_ctrl(file, fh, p);
  1407. if (ops->vidioc_s_ext_ctrls == NULL)
  1408. return -ENOTTY;
  1409. ctrls.ctrl_class = V4L2_CTRL_ID2CLASS(p->id);
  1410. ctrls.count = 1;
  1411. ctrls.controls = &ctrl;
  1412. ctrl.id = p->id;
  1413. ctrl.value = p->value;
  1414. if (check_ext_ctrls(&ctrls, 1))
  1415. return ops->vidioc_s_ext_ctrls(file, fh, &ctrls);
  1416. return -EINVAL;
  1417. }
  1418. static int v4l_g_ext_ctrls(const struct v4l2_ioctl_ops *ops,
  1419. struct file *file, void *fh, void *arg)
  1420. {
  1421. struct video_device *vfd = video_devdata(file);
  1422. struct v4l2_ext_controls *p = arg;
  1423. struct v4l2_fh *vfh =
  1424. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1425. p->error_idx = p->count;
  1426. if (vfh && vfh->ctrl_handler)
  1427. return v4l2_g_ext_ctrls(vfh->ctrl_handler, p);
  1428. if (vfd->ctrl_handler)
  1429. return v4l2_g_ext_ctrls(vfd->ctrl_handler, p);
  1430. if (ops->vidioc_g_ext_ctrls == NULL)
  1431. return -ENOTTY;
  1432. return check_ext_ctrls(p, 0) ? ops->vidioc_g_ext_ctrls(file, fh, p) :
  1433. -EINVAL;
  1434. }
  1435. static int v4l_s_ext_ctrls(const struct v4l2_ioctl_ops *ops,
  1436. struct file *file, void *fh, void *arg)
  1437. {
  1438. struct video_device *vfd = video_devdata(file);
  1439. struct v4l2_ext_controls *p = arg;
  1440. struct v4l2_fh *vfh =
  1441. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1442. p->error_idx = p->count;
  1443. if (vfh && vfh->ctrl_handler)
  1444. return v4l2_s_ext_ctrls(vfh, vfh->ctrl_handler, p);
  1445. if (vfd->ctrl_handler)
  1446. return v4l2_s_ext_ctrls(NULL, vfd->ctrl_handler, p);
  1447. if (ops->vidioc_s_ext_ctrls == NULL)
  1448. return -ENOTTY;
  1449. return check_ext_ctrls(p, 0) ? ops->vidioc_s_ext_ctrls(file, fh, p) :
  1450. -EINVAL;
  1451. }
  1452. static int v4l_try_ext_ctrls(const struct v4l2_ioctl_ops *ops,
  1453. struct file *file, void *fh, void *arg)
  1454. {
  1455. struct video_device *vfd = video_devdata(file);
  1456. struct v4l2_ext_controls *p = arg;
  1457. struct v4l2_fh *vfh =
  1458. test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags) ? fh : NULL;
  1459. p->error_idx = p->count;
  1460. if (vfh && vfh->ctrl_handler)
  1461. return v4l2_try_ext_ctrls(vfh->ctrl_handler, p);
  1462. if (vfd->ctrl_handler)
  1463. return v4l2_try_ext_ctrls(vfd->ctrl_handler, p);
  1464. if (ops->vidioc_try_ext_ctrls == NULL)
  1465. return -ENOTTY;
  1466. return check_ext_ctrls(p, 0) ? ops->vidioc_try_ext_ctrls(file, fh, p) :
  1467. -EINVAL;
  1468. }
  1469. static int v4l_g_crop(const struct v4l2_ioctl_ops *ops,
  1470. struct file *file, void *fh, void *arg)
  1471. {
  1472. struct v4l2_crop *p = arg;
  1473. struct v4l2_selection s = {
  1474. .type = p->type,
  1475. };
  1476. int ret;
  1477. if (ops->vidioc_g_crop)
  1478. return ops->vidioc_g_crop(file, fh, p);
  1479. /* simulate capture crop using selection api */
  1480. /* crop means compose for output devices */
  1481. if (V4L2_TYPE_IS_OUTPUT(p->type))
  1482. s.target = V4L2_SEL_TGT_COMPOSE_ACTIVE;
  1483. else
  1484. s.target = V4L2_SEL_TGT_CROP_ACTIVE;
  1485. ret = ops->vidioc_g_selection(file, fh, &s);
  1486. /* copying results to old structure on success */
  1487. if (!ret)
  1488. p->c = s.r;
  1489. return ret;
  1490. }
  1491. static int v4l_s_crop(const struct v4l2_ioctl_ops *ops,
  1492. struct file *file, void *fh, void *arg)
  1493. {
  1494. struct v4l2_crop *p = arg;
  1495. struct v4l2_selection s = {
  1496. .type = p->type,
  1497. .r = p->c,
  1498. };
  1499. if (ops->vidioc_s_crop)
  1500. return ops->vidioc_s_crop(file, fh, p);
  1501. /* simulate capture crop using selection api */
  1502. /* crop means compose for output devices */
  1503. if (V4L2_TYPE_IS_OUTPUT(p->type))
  1504. s.target = V4L2_SEL_TGT_COMPOSE_ACTIVE;
  1505. else
  1506. s.target = V4L2_SEL_TGT_CROP_ACTIVE;
  1507. return ops->vidioc_s_selection(file, fh, &s);
  1508. }
  1509. static int v4l_cropcap(const struct v4l2_ioctl_ops *ops,
  1510. struct file *file, void *fh, void *arg)
  1511. {
  1512. struct v4l2_cropcap *p = arg;
  1513. struct v4l2_selection s = { .type = p->type };
  1514. int ret;
  1515. if (ops->vidioc_cropcap)
  1516. return ops->vidioc_cropcap(file, fh, p);
  1517. /* obtaining bounds */
  1518. if (V4L2_TYPE_IS_OUTPUT(p->type))
  1519. s.target = V4L2_SEL_TGT_COMPOSE_BOUNDS;
  1520. else
  1521. s.target = V4L2_SEL_TGT_CROP_BOUNDS;
  1522. ret = ops->vidioc_g_selection(file, fh, &s);
  1523. if (ret)
  1524. return ret;
  1525. p->bounds = s.r;
  1526. /* obtaining defrect */
  1527. if (V4L2_TYPE_IS_OUTPUT(p->type))
  1528. s.target = V4L2_SEL_TGT_COMPOSE_DEFAULT;
  1529. else
  1530. s.target = V4L2_SEL_TGT_CROP_DEFAULT;
  1531. ret = ops->vidioc_g_selection(file, fh, &s);
  1532. if (ret)
  1533. return ret;
  1534. p->defrect = s.r;
  1535. /* setting trivial pixelaspect */
  1536. p->pixelaspect.numerator = 1;
  1537. p->pixelaspect.denominator = 1;
  1538. return 0;
  1539. }
  1540. static int v4l_log_status(const struct v4l2_ioctl_ops *ops,
  1541. struct file *file, void *fh, void *arg)
  1542. {
  1543. struct video_device *vfd = video_devdata(file);
  1544. int ret;
  1545. if (vfd->v4l2_dev)
  1546. pr_info("%s: ================= START STATUS =================\n",
  1547. vfd->v4l2_dev->name);
  1548. ret = ops->vidioc_log_status(file, fh);
  1549. if (vfd->v4l2_dev)
  1550. pr_info("%s: ================== END STATUS ==================\n",
  1551. vfd->v4l2_dev->name);
  1552. return ret;
  1553. }
  1554. static int v4l_dbg_g_register(const struct v4l2_ioctl_ops *ops,
  1555. struct file *file, void *fh, void *arg)
  1556. {
  1557. #ifdef CONFIG_VIDEO_ADV_DEBUG
  1558. struct v4l2_dbg_register *p = arg;
  1559. if (!capable(CAP_SYS_ADMIN))
  1560. return -EPERM;
  1561. return ops->vidioc_g_register(file, fh, p);
  1562. #else
  1563. return -ENOTTY;
  1564. #endif
  1565. }
  1566. static int v4l_dbg_s_register(const struct v4l2_ioctl_ops *ops,
  1567. struct file *file, void *fh, void *arg)
  1568. {
  1569. #ifdef CONFIG_VIDEO_ADV_DEBUG
  1570. struct v4l2_dbg_register *p = arg;
  1571. if (!capable(CAP_SYS_ADMIN))
  1572. return -EPERM;
  1573. return ops->vidioc_s_register(file, fh, p);
  1574. #else
  1575. return -ENOTTY;
  1576. #endif
  1577. }
  1578. static int v4l_dbg_g_chip_ident(const struct v4l2_ioctl_ops *ops,
  1579. struct file *file, void *fh, void *arg)
  1580. {
  1581. struct v4l2_dbg_chip_ident *p = arg;
  1582. p->ident = V4L2_IDENT_NONE;
  1583. p->revision = 0;
  1584. return ops->vidioc_g_chip_ident(file, fh, p);
  1585. }
  1586. static int v4l_dqevent(const struct v4l2_ioctl_ops *ops,
  1587. struct file *file, void *fh, void *arg)
  1588. {
  1589. return v4l2_event_dequeue(fh, arg, file->f_flags & O_NONBLOCK);
  1590. }
  1591. static int v4l_subscribe_event(const struct v4l2_ioctl_ops *ops,
  1592. struct file *file, void *fh, void *arg)
  1593. {
  1594. return ops->vidioc_subscribe_event(fh, arg);
  1595. }
  1596. static int v4l_unsubscribe_event(const struct v4l2_ioctl_ops *ops,
  1597. struct file *file, void *fh, void *arg)
  1598. {
  1599. return ops->vidioc_unsubscribe_event(fh, arg);
  1600. }
  1601. static int v4l_g_sliced_vbi_cap(const struct v4l2_ioctl_ops *ops,
  1602. struct file *file, void *fh, void *arg)
  1603. {
  1604. struct v4l2_sliced_vbi_cap *p = arg;
  1605. /* Clear up to type, everything after type is zeroed already */
  1606. memset(p, 0, offsetof(struct v4l2_sliced_vbi_cap, type));
  1607. return ops->vidioc_g_sliced_vbi_cap(file, fh, p);
  1608. }
  1609. static int v4l_enum_freq_bands(const struct v4l2_ioctl_ops *ops,
  1610. struct file *file, void *fh, void *arg)
  1611. {
  1612. struct video_device *vfd = video_devdata(file);
  1613. struct v4l2_frequency_band *p = arg;
  1614. enum v4l2_tuner_type type;
  1615. int err;
  1616. type = (vfd->vfl_type == VFL_TYPE_RADIO) ?
  1617. V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
  1618. if (type != p->type)
  1619. return -EINVAL;
  1620. if (ops->vidioc_enum_freq_bands)
  1621. return ops->vidioc_enum_freq_bands(file, fh, p);
  1622. if (ops->vidioc_g_tuner) {
  1623. struct v4l2_tuner t = {
  1624. .index = p->tuner,
  1625. .type = type,
  1626. };
  1627. if (p->index)
  1628. return -EINVAL;
  1629. err = ops->vidioc_g_tuner(file, fh, &t);
  1630. if (err)
  1631. return err;
  1632. p->capability = t.capability | V4L2_TUNER_CAP_FREQ_BANDS;
  1633. p->rangelow = t.rangelow;
  1634. p->rangehigh = t.rangehigh;
  1635. p->modulation = (type == V4L2_TUNER_RADIO) ?
  1636. V4L2_BAND_MODULATION_FM : V4L2_BAND_MODULATION_VSB;
  1637. return 0;
  1638. }
  1639. if (ops->vidioc_g_modulator) {
  1640. struct v4l2_modulator m = {
  1641. .index = p->tuner,
  1642. };
  1643. if (type != V4L2_TUNER_RADIO)
  1644. return -EINVAL;
  1645. if (p->index)
  1646. return -EINVAL;
  1647. err = ops->vidioc_g_modulator(file, fh, &m);
  1648. if (err)
  1649. return err;
  1650. p->capability = m.capability | V4L2_TUNER_CAP_FREQ_BANDS;
  1651. p->rangelow = m.rangelow;
  1652. p->rangehigh = m.rangehigh;
  1653. p->modulation = (type == V4L2_TUNER_RADIO) ?
  1654. V4L2_BAND_MODULATION_FM : V4L2_BAND_MODULATION_VSB;
  1655. return 0;
  1656. }
  1657. return -ENOTTY;
  1658. }
  1659. struct v4l2_ioctl_info {
  1660. unsigned int ioctl;
  1661. u32 flags;
  1662. const char * const name;
  1663. union {
  1664. u32 offset;
  1665. int (*func)(const struct v4l2_ioctl_ops *ops,
  1666. struct file *file, void *fh, void *p);
  1667. } u;
  1668. void (*debug)(const void *arg, bool write_only);
  1669. };
  1670. /* This control needs a priority check */
  1671. #define INFO_FL_PRIO (1 << 0)
  1672. /* This control can be valid if the filehandle passes a control handler. */
  1673. #define INFO_FL_CTRL (1 << 1)
  1674. /* This is a standard ioctl, no need for special code */
  1675. #define INFO_FL_STD (1 << 2)
  1676. /* This is ioctl has its own function */
  1677. #define INFO_FL_FUNC (1 << 3)
  1678. /* Queuing ioctl */
  1679. #define INFO_FL_QUEUE (1 << 4)
  1680. /* Zero struct from after the field to the end */
  1681. #define INFO_FL_CLEAR(v4l2_struct, field) \
  1682. ((offsetof(struct v4l2_struct, field) + \
  1683. sizeof(((struct v4l2_struct *)0)->field)) << 16)
  1684. #define INFO_FL_CLEAR_MASK (_IOC_SIZEMASK << 16)
  1685. #define IOCTL_INFO_STD(_ioctl, _vidioc, _debug, _flags) \
  1686. [_IOC_NR(_ioctl)] = { \
  1687. .ioctl = _ioctl, \
  1688. .flags = _flags | INFO_FL_STD, \
  1689. .name = #_ioctl, \
  1690. .u.offset = offsetof(struct v4l2_ioctl_ops, _vidioc), \
  1691. .debug = _debug, \
  1692. }
  1693. #define IOCTL_INFO_FNC(_ioctl, _func, _debug, _flags) \
  1694. [_IOC_NR(_ioctl)] = { \
  1695. .ioctl = _ioctl, \
  1696. .flags = _flags | INFO_FL_FUNC, \
  1697. .name = #_ioctl, \
  1698. .u.func = _func, \
  1699. .debug = _debug, \
  1700. }
  1701. static struct v4l2_ioctl_info v4l2_ioctls[] = {
  1702. IOCTL_INFO_FNC(VIDIOC_QUERYCAP, v4l_querycap, v4l_print_querycap, 0),
  1703. IOCTL_INFO_FNC(VIDIOC_ENUM_FMT, v4l_enum_fmt, v4l_print_fmtdesc, INFO_FL_CLEAR(v4l2_fmtdesc, type)),
  1704. IOCTL_INFO_FNC(VIDIOC_G_FMT, v4l_g_fmt, v4l_print_format, INFO_FL_CLEAR(v4l2_format, type)),
  1705. IOCTL_INFO_FNC(VIDIOC_S_FMT, v4l_s_fmt, v4l_print_format, INFO_FL_PRIO),
  1706. IOCTL_INFO_FNC(VIDIOC_REQBUFS, v4l_reqbufs, v4l_print_requestbuffers, INFO_FL_PRIO | INFO_FL_QUEUE),
  1707. IOCTL_INFO_FNC(VIDIOC_QUERYBUF, v4l_querybuf, v4l_print_buffer, INFO_FL_QUEUE | INFO_FL_CLEAR(v4l2_buffer, length)),
  1708. IOCTL_INFO_STD(VIDIOC_G_FBUF, vidioc_g_fbuf, v4l_print_framebuffer, 0),
  1709. IOCTL_INFO_STD(VIDIOC_S_FBUF, vidioc_s_fbuf, v4l_print_framebuffer, INFO_FL_PRIO),
  1710. IOCTL_INFO_STD(VIDIOC_OVERLAY, vidioc_overlay, v4l_print_u32, INFO_FL_PRIO),
  1711. IOCTL_INFO_FNC(VIDIOC_QBUF, v4l_qbuf, v4l_print_buffer, INFO_FL_QUEUE),
  1712. IOCTL_INFO_FNC(VIDIOC_DQBUF, v4l_dqbuf, v4l_print_buffer, INFO_FL_QUEUE),
  1713. IOCTL_INFO_FNC(VIDIOC_STREAMON, v4l_streamon, v4l_print_buftype, INFO_FL_PRIO | INFO_FL_QUEUE),
  1714. IOCTL_INFO_FNC(VIDIOC_STREAMOFF, v4l_streamoff, v4l_print_buftype, INFO_FL_PRIO | INFO_FL_QUEUE),
  1715. IOCTL_INFO_FNC(VIDIOC_G_PARM, v4l_g_parm, v4l_print_streamparm, INFO_FL_CLEAR(v4l2_streamparm, type)),
  1716. IOCTL_INFO_FNC(VIDIOC_S_PARM, v4l_s_parm, v4l_print_streamparm, INFO_FL_PRIO),
  1717. IOCTL_INFO_FNC(VIDIOC_G_STD, v4l_g_std, v4l_print_std, 0),
  1718. IOCTL_INFO_FNC(VIDIOC_S_STD, v4l_s_std, v4l_print_std, INFO_FL_PRIO),
  1719. IOCTL_INFO_FNC(VIDIOC_ENUMSTD, v4l_enumstd, v4l_print_standard, INFO_FL_CLEAR(v4l2_standard, index)),
  1720. IOCTL_INFO_FNC(VIDIOC_ENUMINPUT, v4l_enuminput, v4l_print_enuminput, INFO_FL_CLEAR(v4l2_input, index)),
  1721. IOCTL_INFO_FNC(VIDIOC_G_CTRL, v4l_g_ctrl, v4l_print_control, INFO_FL_CTRL | INFO_FL_CLEAR(v4l2_control, id)),
  1722. IOCTL_INFO_FNC(VIDIOC_S_CTRL, v4l_s_ctrl, v4l_print_control, INFO_FL_PRIO | INFO_FL_CTRL),
  1723. IOCTL_INFO_FNC(VIDIOC_G_TUNER, v4l_g_tuner, v4l_print_tuner, INFO_FL_CLEAR(v4l2_tuner, index)),
  1724. IOCTL_INFO_FNC(VIDIOC_S_TUNER, v4l_s_tuner, v4l_print_tuner, INFO_FL_PRIO),
  1725. IOCTL_INFO_STD(VIDIOC_G_AUDIO, vidioc_g_audio, v4l_print_audio, 0),
  1726. IOCTL_INFO_STD(VIDIOC_S_AUDIO, vidioc_s_audio, v4l_print_audio, INFO_FL_PRIO),
  1727. IOCTL_INFO_FNC(VIDIOC_QUERYCTRL, v4l_queryctrl, v4l_print_queryctrl, INFO_FL_CTRL | INFO_FL_CLEAR(v4l2_queryctrl, id)),
  1728. IOCTL_INFO_FNC(VIDIOC_QUERYMENU, v4l_querymenu, v4l_print_querymenu, INFO_FL_CTRL | INFO_FL_CLEAR(v4l2_querymenu, index)),
  1729. IOCTL_INFO_STD(VIDIOC_G_INPUT, vidioc_g_input, v4l_print_u32, 0),
  1730. IOCTL_INFO_FNC(VIDIOC_S_INPUT, v4l_s_input, v4l_print_u32, INFO_FL_PRIO),
  1731. IOCTL_INFO_STD(VIDIOC_G_OUTPUT, vidioc_g_output, v4l_print_u32, 0),
  1732. IOCTL_INFO_FNC(VIDIOC_S_OUTPUT, v4l_s_output, v4l_print_u32, INFO_FL_PRIO),
  1733. IOCTL_INFO_FNC(VIDIOC_ENUMOUTPUT, v4l_enumoutput, v4l_print_enumoutput, INFO_FL_CLEAR(v4l2_output, index)),
  1734. IOCTL_INFO_STD(VIDIOC_G_AUDOUT, vidioc_g_audout, v4l_print_audioout, 0),
  1735. IOCTL_INFO_STD(VIDIOC_S_AUDOUT, vidioc_s_audout, v4l_print_audioout, INFO_FL_PRIO),
  1736. IOCTL_INFO_FNC(VIDIOC_G_MODULATOR, v4l_g_modulator, v4l_print_modulator, INFO_FL_CLEAR(v4l2_modulator, index)),
  1737. IOCTL_INFO_STD(VIDIOC_S_MODULATOR, vidioc_s_modulator, v4l_print_modulator, INFO_FL_PRIO),
  1738. IOCTL_INFO_FNC(VIDIOC_G_FREQUENCY, v4l_g_frequency, v4l_print_frequency, INFO_FL_CLEAR(v4l2_frequency, tuner)),
  1739. IOCTL_INFO_FNC(VIDIOC_S_FREQUENCY, v4l_s_frequency, v4l_print_frequency, INFO_FL_PRIO),
  1740. IOCTL_INFO_FNC(VIDIOC_CROPCAP, v4l_cropcap, v4l_print_cropcap, INFO_FL_CLEAR(v4l2_cropcap, type)),
  1741. IOCTL_INFO_FNC(VIDIOC_G_CROP, v4l_g_crop, v4l_print_crop, INFO_FL_CLEAR(v4l2_crop, type)),
  1742. IOCTL_INFO_FNC(VIDIOC_S_CROP, v4l_s_crop, v4l_print_crop, INFO_FL_PRIO),
  1743. IOCTL_INFO_STD(VIDIOC_G_SELECTION, vidioc_g_selection, v4l_print_selection, 0),
  1744. IOCTL_INFO_STD(VIDIOC_S_SELECTION, vidioc_s_selection, v4l_print_selection, INFO_FL_PRIO),
  1745. IOCTL_INFO_STD(VIDIOC_G_JPEGCOMP, vidioc_g_jpegcomp, v4l_print_jpegcompression, 0),
  1746. IOCTL_INFO_STD(VIDIOC_S_JPEGCOMP, vidioc_s_jpegcomp, v4l_print_jpegcompression, INFO_FL_PRIO),
  1747. IOCTL_INFO_FNC(VIDIOC_QUERYSTD, v4l_querystd, v4l_print_std, 0),
  1748. IOCTL_INFO_FNC(VIDIOC_TRY_FMT, v4l_try_fmt, v4l_print_format, 0),
  1749. IOCTL_INFO_STD(VIDIOC_ENUMAUDIO, vidioc_enumaudio, v4l_print_audio, INFO_FL_CLEAR(v4l2_audio, index)),
  1750. IOCTL_INFO_STD(VIDIOC_ENUMAUDOUT, vidioc_enumaudout, v4l_print_audioout, INFO_FL_CLEAR(v4l2_audioout, index)),
  1751. IOCTL_INFO_FNC(VIDIOC_G_PRIORITY, v4l_g_priority, v4l_print_u32, 0),
  1752. IOCTL_INFO_FNC(VIDIOC_S_PRIORITY, v4l_s_priority, v4l_print_u32, INFO_FL_PRIO),
  1753. IOCTL_INFO_FNC(VIDIOC_G_SLICED_VBI_CAP, v4l_g_sliced_vbi_cap, v4l_print_sliced_vbi_cap, INFO_FL_CLEAR(v4l2_sliced_vbi_cap, type)),
  1754. IOCTL_INFO_FNC(VIDIOC_LOG_STATUS, v4l_log_status, v4l_print_newline, 0),
  1755. IOCTL_INFO_FNC(VIDIOC_G_EXT_CTRLS, v4l_g_ext_ctrls, v4l_print_ext_controls, INFO_FL_CTRL),
  1756. IOCTL_INFO_FNC(VIDIOC_S_EXT_CTRLS, v4l_s_ext_ctrls, v4l_print_ext_controls, INFO_FL_PRIO | INFO_FL_CTRL),
  1757. IOCTL_INFO_FNC(VIDIOC_TRY_EXT_CTRLS, v4l_try_ext_ctrls, v4l_print_ext_controls, INFO_FL_CTRL),
  1758. IOCTL_INFO_STD(VIDIOC_ENUM_FRAMESIZES, vidioc_enum_framesizes, v4l_print_frmsizeenum, INFO_FL_CLEAR(v4l2_frmsizeenum, pixel_format)),
  1759. IOCTL_INFO_STD(VIDIOC_ENUM_FRAMEINTERVALS, vidioc_enum_frameintervals, v4l_print_frmivalenum, INFO_FL_CLEAR(v4l2_frmivalenum, height)),
  1760. IOCTL_INFO_STD(VIDIOC_G_ENC_INDEX, vidioc_g_enc_index, v4l_print_enc_idx, 0),
  1761. IOCTL_INFO_STD(VIDIOC_ENCODER_CMD, vidioc_encoder_cmd, v4l_print_encoder_cmd, INFO_FL_PRIO | INFO_FL_CLEAR(v4l2_encoder_cmd, flags)),
  1762. IOCTL_INFO_STD(VIDIOC_TRY_ENCODER_CMD, vidioc_try_encoder_cmd, v4l_print_encoder_cmd, INFO_FL_CLEAR(v4l2_encoder_cmd, flags)),
  1763. IOCTL_INFO_STD(VIDIOC_DECODER_CMD, vidioc_decoder_cmd, v4l_print_decoder_cmd, INFO_FL_PRIO),
  1764. IOCTL_INFO_STD(VIDIOC_TRY_DECODER_CMD, vidioc_try_decoder_cmd, v4l_print_decoder_cmd, 0),
  1765. IOCTL_INFO_FNC(VIDIOC_DBG_S_REGISTER, v4l_dbg_s_register, v4l_print_dbg_register, 0),
  1766. IOCTL_INFO_FNC(VIDIOC_DBG_G_REGISTER, v4l_dbg_g_register, v4l_print_dbg_register, 0),
  1767. IOCTL_INFO_FNC(VIDIOC_DBG_G_CHIP_IDENT, v4l_dbg_g_chip_ident, v4l_print_dbg_chip_ident, 0),
  1768. IOCTL_INFO_FNC(VIDIOC_S_HW_FREQ_SEEK, v4l_s_hw_freq_seek, v4l_print_hw_freq_seek, INFO_FL_PRIO),
  1769. IOCTL_INFO_STD(VIDIOC_ENUM_DV_PRESETS, vidioc_enum_dv_presets, v4l_print_dv_enum_presets, 0),
  1770. IOCTL_INFO_STD(VIDIOC_S_DV_PRESET, vidioc_s_dv_preset, v4l_print_dv_preset, INFO_FL_PRIO),
  1771. IOCTL_INFO_STD(VIDIOC_G_DV_PRESET, vidioc_g_dv_preset, v4l_print_dv_preset, 0),
  1772. IOCTL_INFO_STD(VIDIOC_QUERY_DV_PRESET, vidioc_query_dv_preset, v4l_print_dv_preset, 0),
  1773. IOCTL_INFO_STD(VIDIOC_S_DV_TIMINGS, vidioc_s_dv_timings, v4l_print_dv_timings, INFO_FL_PRIO),
  1774. IOCTL_INFO_STD(VIDIOC_G_DV_TIMINGS, vidioc_g_dv_timings, v4l_print_dv_timings, 0),
  1775. IOCTL_INFO_FNC(VIDIOC_DQEVENT, v4l_dqevent, v4l_print_event, 0),
  1776. IOCTL_INFO_FNC(VIDIOC_SUBSCRIBE_EVENT, v4l_subscribe_event, v4l_print_event_subscription, 0),
  1777. IOCTL_INFO_FNC(VIDIOC_UNSUBSCRIBE_EVENT, v4l_unsubscribe_event, v4l_print_event_subscription, 0),
  1778. IOCTL_INFO_FNC(VIDIOC_CREATE_BUFS, v4l_create_bufs, v4l_print_create_buffers, INFO_FL_PRIO | INFO_FL_QUEUE),
  1779. IOCTL_INFO_FNC(VIDIOC_PREPARE_BUF, v4l_prepare_buf, v4l_print_buffer, INFO_FL_QUEUE),
  1780. IOCTL_INFO_STD(VIDIOC_ENUM_DV_TIMINGS, vidioc_enum_dv_timings, v4l_print_enum_dv_timings, 0),
  1781. IOCTL_INFO_STD(VIDIOC_QUERY_DV_TIMINGS, vidioc_query_dv_timings, v4l_print_dv_timings, 0),
  1782. IOCTL_INFO_STD(VIDIOC_DV_TIMINGS_CAP, vidioc_dv_timings_cap, v4l_print_dv_timings_cap, INFO_FL_CLEAR(v4l2_dv_timings_cap, type)),
  1783. IOCTL_INFO_FNC(VIDIOC_ENUM_FREQ_BANDS, v4l_enum_freq_bands, v4l_print_freq_band, 0),
  1784. };
  1785. #define V4L2_IOCTLS ARRAY_SIZE(v4l2_ioctls)
  1786. bool v4l2_is_known_ioctl(unsigned int cmd)
  1787. {
  1788. if (_IOC_NR(cmd) >= V4L2_IOCTLS)
  1789. return false;
  1790. return v4l2_ioctls[_IOC_NR(cmd)].ioctl == cmd;
  1791. }
  1792. struct mutex *v4l2_ioctl_get_lock(struct video_device *vdev, unsigned cmd)
  1793. {
  1794. if (_IOC_NR(cmd) >= V4L2_IOCTLS)
  1795. return vdev->lock;
  1796. if (test_bit(_IOC_NR(cmd), vdev->disable_locking))
  1797. return NULL;
  1798. if (vdev->queue && vdev->queue->lock &&
  1799. (v4l2_ioctls[_IOC_NR(cmd)].flags & INFO_FL_QUEUE))
  1800. return vdev->queue->lock;
  1801. return vdev->lock;
  1802. }
  1803. /* Common ioctl debug function. This function can be used by
  1804. external ioctl messages as well as internal V4L ioctl */
  1805. void v4l_printk_ioctl(const char *prefix, unsigned int cmd)
  1806. {
  1807. const char *dir, *type;
  1808. if (prefix)
  1809. printk(KERN_DEBUG "%s: ", prefix);
  1810. switch (_IOC_TYPE(cmd)) {
  1811. case 'd':
  1812. type = "v4l2_int";
  1813. break;
  1814. case 'V':
  1815. if (_IOC_NR(cmd) >= V4L2_IOCTLS) {
  1816. type = "v4l2";
  1817. break;
  1818. }
  1819. pr_cont("%s", v4l2_ioctls[_IOC_NR(cmd)].name);
  1820. return;
  1821. default:
  1822. type = "unknown";
  1823. break;
  1824. }
  1825. switch (_IOC_DIR(cmd)) {
  1826. case _IOC_NONE: dir = "--"; break;
  1827. case _IOC_READ: dir = "r-"; break;
  1828. case _IOC_WRITE: dir = "-w"; break;
  1829. case _IOC_READ | _IOC_WRITE: dir = "rw"; break;
  1830. default: dir = "*ERR*"; break;
  1831. }
  1832. pr_cont("%s ioctl '%c', dir=%s, #%d (0x%08x)",
  1833. type, _IOC_TYPE(cmd), dir, _IOC_NR(cmd), cmd);
  1834. }
  1835. EXPORT_SYMBOL(v4l_printk_ioctl);
  1836. static long __video_do_ioctl(struct file *file,
  1837. unsigned int cmd, void *arg)
  1838. {
  1839. struct video_device *vfd = video_devdata(file);
  1840. const struct v4l2_ioctl_ops *ops = vfd->ioctl_ops;
  1841. bool write_only = false;
  1842. struct v4l2_ioctl_info default_info;
  1843. const struct v4l2_ioctl_info *info;
  1844. void *fh = file->private_data;
  1845. struct v4l2_fh *vfh = NULL;
  1846. int use_fh_prio = 0;
  1847. int debug = vfd->debug;
  1848. long ret = -ENOTTY;
  1849. if (ops == NULL) {
  1850. pr_warn("%s: has no ioctl_ops.\n",
  1851. video_device_node_name(vfd));
  1852. return ret;
  1853. }
  1854. if (test_bit(V4L2_FL_USES_V4L2_FH, &vfd->flags)) {
  1855. vfh = file->private_data;
  1856. use_fh_prio = test_bit(V4L2_FL_USE_FH_PRIO, &vfd->flags);
  1857. }
  1858. if (v4l2_is_known_ioctl(cmd)) {
  1859. info = &v4l2_ioctls[_IOC_NR(cmd)];
  1860. if (!test_bit(_IOC_NR(cmd), vfd->valid_ioctls) &&
  1861. !((info->flags & INFO_FL_CTRL) && vfh && vfh->ctrl_handler))
  1862. goto done;
  1863. if (use_fh_prio && (info->flags & INFO_FL_PRIO)) {
  1864. ret = v4l2_prio_check(vfd->prio, vfh->prio);
  1865. if (ret)
  1866. goto done;
  1867. }
  1868. } else {
  1869. default_info.ioctl = cmd;
  1870. default_info.flags = 0;
  1871. default_info.debug = v4l_print_default;
  1872. info = &default_info;
  1873. }
  1874. write_only = _IOC_DIR(cmd) == _IOC_WRITE;
  1875. if (write_only && debug > V4L2_DEBUG_IOCTL) {
  1876. v4l_printk_ioctl(video_device_node_name(vfd), cmd);
  1877. pr_cont(": ");
  1878. info->debug(arg, write_only);
  1879. }
  1880. if (info->flags & INFO_FL_STD) {
  1881. typedef int (*vidioc_op)(struct file *file, void *fh, void *p);
  1882. const void *p = vfd->ioctl_ops;
  1883. const vidioc_op *vidioc = p + info->u.offset;
  1884. ret = (*vidioc)(file, fh, arg);
  1885. } else if (info->flags & INFO_FL_FUNC) {
  1886. ret = info->u.func(ops, file, fh, arg);
  1887. } else if (!ops->vidioc_default) {
  1888. ret = -ENOTTY;
  1889. } else {
  1890. ret = ops->vidioc_default(file, fh,
  1891. use_fh_prio ? v4l2_prio_check(vfd->prio, vfh->prio) >= 0 : 0,
  1892. cmd, arg);
  1893. }
  1894. done:
  1895. if (debug) {
  1896. if (write_only && debug > V4L2_DEBUG_IOCTL) {
  1897. if (ret < 0)
  1898. printk(KERN_DEBUG "%s: error %ld\n",
  1899. video_device_node_name(vfd), ret);
  1900. return ret;
  1901. }
  1902. v4l_printk_ioctl(video_device_node_name(vfd), cmd);
  1903. if (ret < 0)
  1904. pr_cont(": error %ld\n", ret);
  1905. else if (debug == V4L2_DEBUG_IOCTL)
  1906. pr_cont("\n");
  1907. else if (_IOC_DIR(cmd) == _IOC_NONE)
  1908. info->debug(arg, write_only);
  1909. else {
  1910. pr_cont(": ");
  1911. info->debug(arg, write_only);
  1912. }
  1913. }
  1914. return ret;
  1915. }
  1916. static int check_array_args(unsigned int cmd, void *parg, size_t *array_size,
  1917. void * __user *user_ptr, void ***kernel_ptr)
  1918. {
  1919. int ret = 0;
  1920. switch (cmd) {
  1921. case VIDIOC_QUERYBUF:
  1922. case VIDIOC_QBUF:
  1923. case VIDIOC_DQBUF: {
  1924. struct v4l2_buffer *buf = parg;
  1925. if (V4L2_TYPE_IS_MULTIPLANAR(buf->type) && buf->length > 0) {
  1926. if (buf->length > VIDEO_MAX_PLANES) {
  1927. ret = -EINVAL;
  1928. break;
  1929. }
  1930. *user_ptr = (void __user *)buf->m.planes;
  1931. *kernel_ptr = (void *)&buf->m.planes;
  1932. *array_size = sizeof(struct v4l2_plane) * buf->length;
  1933. ret = 1;
  1934. }
  1935. break;
  1936. }
  1937. case VIDIOC_SUBDEV_G_EDID:
  1938. case VIDIOC_SUBDEV_S_EDID: {
  1939. struct v4l2_subdev_edid *edid = parg;
  1940. if (edid->blocks) {
  1941. *user_ptr = (void __user *)edid->edid;
  1942. *kernel_ptr = (void *)&edid->edid;
  1943. *array_size = edid->blocks * 128;
  1944. ret = 1;
  1945. }
  1946. break;
  1947. }
  1948. case VIDIOC_S_EXT_CTRLS:
  1949. case VIDIOC_G_EXT_CTRLS:
  1950. case VIDIOC_TRY_EXT_CTRLS: {
  1951. struct v4l2_ext_controls *ctrls = parg;
  1952. if (ctrls->count != 0) {
  1953. if (ctrls->count > V4L2_CID_MAX_CTRLS) {
  1954. ret = -EINVAL;
  1955. break;
  1956. }
  1957. *user_ptr = (void __user *)ctrls->controls;
  1958. *kernel_ptr = (void *)&ctrls->controls;
  1959. *array_size = sizeof(struct v4l2_ext_control)
  1960. * ctrls->count;
  1961. ret = 1;
  1962. }
  1963. break;
  1964. }
  1965. }
  1966. return ret;
  1967. }
  1968. long
  1969. video_usercopy(struct file *file, unsigned int cmd, unsigned long arg,
  1970. v4l2_kioctl func)
  1971. {
  1972. char sbuf[128];
  1973. void *mbuf = NULL;
  1974. void *parg = (void *)arg;
  1975. long err = -EINVAL;
  1976. bool has_array_args;
  1977. size_t array_size = 0;
  1978. void __user *user_ptr = NULL;
  1979. void **kernel_ptr = NULL;
  1980. /* Copy arguments into temp kernel buffer */
  1981. if (_IOC_DIR(cmd) != _IOC_NONE) {
  1982. if (_IOC_SIZE(cmd) <= sizeof(sbuf)) {
  1983. parg = sbuf;
  1984. } else {
  1985. /* too big to allocate from stack */
  1986. mbuf = kmalloc(_IOC_SIZE(cmd), GFP_KERNEL);
  1987. if (NULL == mbuf)
  1988. return -ENOMEM;
  1989. parg = mbuf;
  1990. }
  1991. err = -EFAULT;
  1992. if (_IOC_DIR(cmd) & _IOC_WRITE) {
  1993. unsigned int n = _IOC_SIZE(cmd);
  1994. /*
  1995. * In some cases, only a few fields are used as input,
  1996. * i.e. when the app sets "index" and then the driver
  1997. * fills in the rest of the structure for the thing
  1998. * with that index. We only need to copy up the first
  1999. * non-input field.
  2000. */
  2001. if (v4l2_is_known_ioctl(cmd)) {
  2002. u32 flags = v4l2_ioctls[_IOC_NR(cmd)].flags;
  2003. if (flags & INFO_FL_CLEAR_MASK)
  2004. n = (flags & INFO_FL_CLEAR_MASK) >> 16;
  2005. }
  2006. if (copy_from_user(parg, (void __user *)arg, n))
  2007. goto out;
  2008. /* zero out anything we don't copy from userspace */
  2009. if (n < _IOC_SIZE(cmd))
  2010. memset((u8 *)parg + n, 0, _IOC_SIZE(cmd) - n);
  2011. } else {
  2012. /* read-only ioctl */
  2013. memset(parg, 0, _IOC_SIZE(cmd));
  2014. }
  2015. }
  2016. err = check_array_args(cmd, parg, &array_size, &user_ptr, &kernel_ptr);
  2017. if (err < 0)
  2018. goto out;
  2019. has_array_args = err;
  2020. if (has_array_args) {
  2021. /*
  2022. * When adding new types of array args, make sure that the
  2023. * parent argument to ioctl (which contains the pointer to the
  2024. * array) fits into sbuf (so that mbuf will still remain
  2025. * unused up to here).
  2026. */
  2027. mbuf = kmalloc(array_size, GFP_KERNEL);
  2028. err = -ENOMEM;
  2029. if (NULL == mbuf)
  2030. goto out_array_args;
  2031. err = -EFAULT;
  2032. if (copy_from_user(mbuf, user_ptr, array_size))
  2033. goto out_array_args;
  2034. *kernel_ptr = mbuf;
  2035. }
  2036. /* Handles IOCTL */
  2037. err = func(file, cmd, parg);
  2038. if (err == -ENOIOCTLCMD)
  2039. err = -ENOTTY;
  2040. if (has_array_args) {
  2041. *kernel_ptr = user_ptr;
  2042. if (copy_to_user(user_ptr, mbuf, array_size))
  2043. err = -EFAULT;
  2044. goto out_array_args;
  2045. }
  2046. /* VIDIOC_QUERY_DV_TIMINGS can return an error, but still have valid
  2047. results that must be returned. */
  2048. if (err < 0 && cmd != VIDIOC_QUERY_DV_TIMINGS)
  2049. goto out;
  2050. out_array_args:
  2051. /* Copy results into user buffer */
  2052. switch (_IOC_DIR(cmd)) {
  2053. case _IOC_READ:
  2054. case (_IOC_WRITE | _IOC_READ):
  2055. if (copy_to_user((void __user *)arg, parg, _IOC_SIZE(cmd)))
  2056. err = -EFAULT;
  2057. break;
  2058. }
  2059. out:
  2060. kfree(mbuf);
  2061. return err;
  2062. }
  2063. EXPORT_SYMBOL(video_usercopy);
  2064. long video_ioctl2(struct file *file,
  2065. unsigned int cmd, unsigned long arg)
  2066. {
  2067. return video_usercopy(file, cmd, arg, __video_do_ioctl);
  2068. }
  2069. EXPORT_SYMBOL(video_ioctl2);