libam7xxx  0.1
Communication library for Actions Micro AM7XXX based USB projectors and DPFs
am7xxx-play.c
1 /*
2  * am7xxx-play - play stuff on an am7xxx device (e.g. Acer C110, PicoPix 1020)
3  *
4  * Copyright (C) 2012-2014 Antonio Ospite <ao2@ao2.it>
5  *
6  * This program is free software: you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License as published by
8  * the Free Software Foundation, either version 3 of the License, or
9  * (at your option) any later version.
10  *
11  * This program is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14  * GNU General Public License for more details.
15  *
16  * You should have received a copy of the GNU General Public License
17  * along with this program. If not, see <http://www.gnu.org/licenses/>.
18  */
19 
26 #include <stdio.h>
27 #include <stdint.h>
28 #include <string.h>
29 #include <signal.h>
30 #include <getopt.h>
31 
32 #include <libavcodec/avcodec.h>
33 #include <libavdevice/avdevice.h>
34 #include <libavformat/avformat.h>
35 #include <libavutil/imgutils.h>
36 #include <libswscale/swscale.h>
37 
38 #include <am7xxx.h>
39 
40 static unsigned int run = 1;
41 
42 struct video_input_ctx {
43  AVFormatContext *format_ctx;
44  AVCodecContext *codec_ctx;
45  int video_stream_index;
46 };
47 
48 static int video_input_init(struct video_input_ctx *input_ctx,
49  const char *input_format_string,
50  const char *input_path,
51  AVDictionary **input_options)
52 {
53  AVInputFormat const *input_format = NULL;
54  AVFormatContext *input_format_ctx;
55  AVCodecParameters *input_codec_params;
56  AVCodecContext *input_codec_ctx;
57  AVCodec const *input_codec;
58  int video_index;
59  int ret;
60 
61  avdevice_register_all();
62 #if LIBAVCODEC_VERSION_MAJOR < 59
63  avcodec_register_all();
64  av_register_all();
65 #endif
66 
67  if (input_format_string) {
68  /* find the desired input format */
69  input_format = av_find_input_format(input_format_string);
70  if (input_format == NULL) {
71  fprintf(stderr, "cannot find input format\n");
72  ret = -ENODEV;
73  goto out;
74  }
75  }
76 
77  if (input_path == NULL) {
78  fprintf(stderr, "input_path must not be NULL!\n");
79  ret = -EINVAL;
80  goto out;
81  }
82 
83  /* open the input format/device */
84  input_format_ctx = NULL;
85  ret = avformat_open_input(&input_format_ctx,
86  input_path,
87  input_format,
88  input_options);
89  if (ret < 0) {
90  fprintf(stderr, "cannot open input format/device\n");
91  goto out;
92  }
93 
94  /* get information on the input stream (e.g. format, bitrate, framerate) */
95  ret = avformat_find_stream_info(input_format_ctx, NULL);
96  if (ret < 0) {
97  fprintf(stderr, "cannot get information on the stream\n");
98  goto cleanup;
99  }
100 
101  /* dump what was found */
102  av_dump_format(input_format_ctx, 0, input_path, 0);
103 
104  /* look for the first video_stream */
105  video_index = av_find_best_stream(input_format_ctx, AVMEDIA_TYPE_VIDEO, -1, -1, &input_codec, 0);
106  if (video_index < 0) {
107  fprintf(stderr, "cannot find any video streams\n");
108  ret = -EINVAL;
109  goto cleanup;
110  }
111 
112  input_codec_ctx = avcodec_alloc_context3(input_codec);
113  if (input_codec_ctx == NULL) {
114  fprintf(stderr, "failed to allocate the input codec context\n");
115  ret = -ENOMEM;
116  goto cleanup;
117  }
118 
119  input_codec_params = input_format_ctx->streams[video_index]->codecpar;
120  ret = avcodec_parameters_to_context(input_codec_ctx, input_codec_params);
121  if (ret < 0) {
122  fprintf(stderr, "cannot copy parameters to input codec context\n");
123  goto cleanup_ctx;
124  }
125 
126  /* open the decoder */
127  ret = avcodec_open2(input_codec_ctx, input_codec, NULL);
128  if (ret < 0) {
129  fprintf(stderr, "cannot open input codec\n");
130  goto cleanup_ctx;
131  }
132 
133  input_ctx->format_ctx = input_format_ctx;
134  input_ctx->codec_ctx = input_codec_ctx;
135  input_ctx->video_stream_index = video_index;
136 
137  ret = 0;
138  goto out;
139 
140 cleanup_ctx:
141  avcodec_free_context(&input_codec_ctx);
142 cleanup:
143  avformat_close_input(&input_format_ctx);
144 out:
145  av_dict_free(input_options);
146  *input_options = NULL;
147  return ret;
148 }
149 
150 
151 struct video_output_ctx {
152  AVCodecContext *codec_ctx;
153  int raw_output;
154 };
155 
156 static int video_output_init(struct video_output_ctx *output_ctx,
157  struct video_input_ctx *input_ctx,
158  unsigned int upscale,
159  unsigned int quality,
160  am7xxx_image_format image_format,
161  am7xxx_device *dev)
162 {
163  AVCodecContext *output_codec_ctx;
164  AVCodec const *output_codec;
165  unsigned int new_output_width;
166  unsigned int new_output_height;
167  int ret;
168 
169  if (input_ctx == NULL) {
170  fprintf(stderr, "input_ctx must not be NULL!\n");
171  ret = -EINVAL;
172  goto out;
173  }
174 
175  /* create the encoder context */
176  output_codec_ctx = avcodec_alloc_context3(NULL);
177  if (output_codec_ctx == NULL) {
178  fprintf(stderr, "cannot allocate output codec context!\n");
179  ret = -ENOMEM;
180  goto out;
181  }
182 
183  /* Calculate the new output dimension so the original frame is shown
184  * in its entirety */
186  upscale,
187  (input_ctx->codec_ctx)->width,
188  (input_ctx->codec_ctx)->height,
189  &new_output_width,
190  &new_output_height);
191  if (ret < 0) {
192  fprintf(stderr, "cannot calculate output dimension\n");
193  goto cleanup;
194  }
195 
196  /* put sample parameters */
197  output_codec_ctx->bit_rate = (input_ctx->codec_ctx)->bit_rate;
198  output_codec_ctx->width = new_output_width;
199  output_codec_ctx->height = new_output_height;
200  output_codec_ctx->time_base.num =
201  (input_ctx->format_ctx)->streams[input_ctx->video_stream_index]->time_base.num;
202  output_codec_ctx->time_base.den =
203  (input_ctx->format_ctx)->streams[input_ctx->video_stream_index]->time_base.den;
204 
205  /* When the raw format is requested we don't actually need to setup
206  * and open a decoder
207  */
208  if (image_format == AM7XXX_IMAGE_FORMAT_NV12) {
209  fprintf(stdout, "using raw output format\n");
210  output_codec_ctx->pix_fmt = AV_PIX_FMT_NV12;
211  output_ctx->codec_ctx = output_codec_ctx;
212  output_ctx->raw_output = 1;
213  ret = 0;
214  goto out;
215  }
216 
217  /* YUVJ420P is deprecated in swscaler, but mjpeg still relies on it. */
218  output_codec_ctx->pix_fmt = AV_PIX_FMT_YUVJ420P;
219  output_codec_ctx->codec_id = AV_CODEC_ID_MJPEG;
220  output_codec_ctx->codec_type = AVMEDIA_TYPE_VIDEO;
221 
222  /* Set quality and other VBR settings */
223 
224  /* @note: 'quality' is expected to be between 1 and 100, but a value
225  * between 0 to 99 has to be passed when calculating qmin and qmax.
226  * This way qmin and qmax will cover the range 1-FF_QUALITY_SCALE, and
227  * in particular they won't be 0, this is needed because they are used
228  * as divisor somewhere in the encoding process */
229  output_codec_ctx->qmin = output_codec_ctx->qmax = ((100 - (quality - 1)) * FF_QUALITY_SCALE) / 100;
230  output_codec_ctx->mb_lmin = output_codec_ctx->qmin * FF_QP2LAMBDA;
231  output_codec_ctx->mb_lmax = output_codec_ctx->qmax * FF_QP2LAMBDA;
232  output_codec_ctx->flags |= AV_CODEC_FLAG_QSCALE;
233  output_codec_ctx->global_quality = output_codec_ctx->qmin * FF_QP2LAMBDA;
234 
235  /* find the encoder */
236  output_codec = avcodec_find_encoder(output_codec_ctx->codec_id);
237  if (output_codec == NULL) {
238  fprintf(stderr, "cannot find output codec!\n");
239  ret = -EINVAL;
240  goto cleanup;
241  }
242 
243  /* open the codec */
244  ret = avcodec_open2(output_codec_ctx, output_codec, NULL);
245  if (ret < 0) {
246  fprintf(stderr, "could not open output codec!\n");
247  goto cleanup;
248  }
249 
250  output_ctx->codec_ctx = output_codec_ctx;
251  output_ctx->raw_output = 0;
252 
253  ret = 0;
254  goto out;
255 
256 cleanup:
257  avcodec_free_context(&output_codec_ctx);
258 out:
259  return ret;
260 }
261 
262 
263 /*
264  * Wrap the new avcodec API from FFMpeg 3.1 to minimize the changes in the
265  * user code.
266  *
267  * If the use of the wrappers were to be made conditional, a check like the
268  * following could be used:
269  *
270  * #if (LIBAVCODEC_VERSION_INT >= AV_VERSION_INT(57, 48, 101))
271  *
272  * As derived from the APIchanges document:
273  * https://github.com/FFmpeg/FFmpeg/blob/master/doc/APIchanges
274  *
275  * The wrapper implementation has been taken from:
276  * https://blogs.gentoo.org/lu_zero/2016/03/29/new-avcodec-api/
277  */
278 static int decode(AVCodecContext *avctx, AVFrame *frame, int *got_frame, AVPacket *pkt)
279 {
280  int ret;
281 
282  *got_frame = 0;
283 
284  if (pkt) {
285  ret = avcodec_send_packet(avctx, pkt);
286  /*
287  * In particular, we don't expect AVERROR(EAGAIN), because we
288  * read all decoded frames with avcodec_receive_frame() until
289  * done.
290  */
291  if (ret < 0)
292  return ret == AVERROR_EOF ? 0 : ret;
293  }
294 
295  ret = avcodec_receive_frame(avctx, frame);
296  if (ret < 0 && ret != AVERROR(EAGAIN) && ret != AVERROR_EOF)
297  return ret;
298  if (ret >= 0)
299  *got_frame = 1;
300 
301  return 0;
302 }
303 
304 static int encode(AVCodecContext *avctx, AVPacket *pkt, int *got_packet, AVFrame *frame)
305 {
306  int ret;
307 
308  *got_packet = 0;
309 
310  ret = avcodec_send_frame(avctx, frame);
311  if (ret < 0)
312  return ret;
313 
314  ret = avcodec_receive_packet(avctx, pkt);
315  if (!ret)
316  *got_packet = 1;
317  if (ret == AVERROR(EAGAIN))
318  return 0;
319 
320  return ret;
321 }
322 
323 
324 static int am7xxx_play(const char *input_format_string,
325  AVDictionary **input_options,
326  const char *input_path,
327  unsigned int rescale_method,
328  unsigned int upscale,
329  unsigned int quality,
330  am7xxx_image_format image_format,
331  am7xxx_device *dev,
332  int dump_frame)
333 {
334  struct video_input_ctx input_ctx;
335  struct video_output_ctx output_ctx;
336  AVFrame *frame_raw;
337  AVFrame *frame_scaled;
338  int out_buf_size;
339  uint8_t *out_buf;
340  int out_frame_size;
341  uint8_t *out_frame;
342  struct SwsContext *sw_scale_ctx;
343  AVPacket in_packet;
344  AVPacket out_packet;
345  int got_frame;
346  int got_packet;
347  int ret;
348 
349  ret = video_input_init(&input_ctx, input_format_string, input_path, input_options);
350  if (ret < 0) {
351  fprintf(stderr, "cannot initialize input\n");
352  goto out;
353  }
354 
355  ret = video_output_init(&output_ctx, &input_ctx, upscale, quality, image_format, dev);
356  if (ret < 0) {
357  fprintf(stderr, "cannot initialize input\n");
358  goto cleanup_input;
359  }
360 
361  /* allocate an input frame */
362  frame_raw = av_frame_alloc();
363  if (frame_raw == NULL) {
364  fprintf(stderr, "cannot allocate the raw frame!\n");
365  ret = -ENOMEM;
366  goto cleanup_output;
367  }
368 
369  /* allocate output frame */
370  frame_scaled = av_frame_alloc();
371  if (frame_scaled == NULL) {
372  fprintf(stderr, "cannot allocate the scaled frame!\n");
373  ret = -ENOMEM;
374  goto cleanup_frame_raw;
375  }
376  frame_scaled->format = (output_ctx.codec_ctx)->pix_fmt;
377  frame_scaled->width = (output_ctx.codec_ctx)->width;
378  frame_scaled->height = (output_ctx.codec_ctx)->height;
379 
380  /* calculate the bytes needed for the output image and create buffer for the output image */
381  out_buf_size = av_image_get_buffer_size((output_ctx.codec_ctx)->pix_fmt,
382  (output_ctx.codec_ctx)->width,
383  (output_ctx.codec_ctx)->height,
384  1);
385  out_buf = av_malloc(out_buf_size * sizeof(uint8_t));
386  if (out_buf == NULL) {
387  fprintf(stderr, "cannot allocate output data buffer!\n");
388  ret = -ENOMEM;
389  goto cleanup_frame_scaled;
390  }
391 
392  /* assign appropriate parts of buffer to image planes in frame_scaled */
393  av_image_fill_arrays(frame_scaled->data,
394  frame_scaled->linesize,
395  out_buf,
396  (output_ctx.codec_ctx)->pix_fmt,
397  (output_ctx.codec_ctx)->width,
398  (output_ctx.codec_ctx)->height,
399  1);
400 
401  sw_scale_ctx = sws_getCachedContext(NULL,
402  (input_ctx.codec_ctx)->width,
403  (input_ctx.codec_ctx)->height,
404  (input_ctx.codec_ctx)->pix_fmt,
405  (output_ctx.codec_ctx)->width,
406  (output_ctx.codec_ctx)->height,
407  (output_ctx.codec_ctx)->pix_fmt,
408  rescale_method,
409  NULL, NULL, NULL);
410  if (sw_scale_ctx == NULL) {
411  fprintf(stderr, "cannot set up the rescaling context!\n");
412  ret = -EINVAL;
413  goto cleanup_out_buf;
414  }
415 
416  got_packet = 0;
417  while (run) {
418  /* read packet */
419  ret = av_read_frame(input_ctx.format_ctx, &in_packet);
420  if (ret < 0) {
421  if (ret == (int)AVERROR_EOF || input_ctx.format_ctx->pb->eof_reached)
422  ret = 0;
423  else
424  fprintf(stderr, "av_read_frame failed, EOF?\n");
425  run = 0;
426  goto end_while;
427  }
428 
429  if (in_packet.stream_index != input_ctx.video_stream_index) {
430  /* that is more or less a "continue", but there is
431  * still the packet to free */
432  goto end_while;
433  }
434 
435  /* decode */
436  got_frame = 0;
437  ret = decode(input_ctx.codec_ctx, frame_raw, &got_frame, &in_packet);
438  if (ret < 0) {
439  fprintf(stderr, "cannot decode video\n");
440  run = 0;
441  goto end_while;
442  }
443 
444  /* if we got the complete frame */
445  if (got_frame) {
446  /*
447  * Rescaling the frame also changes its pixel format
448  * to the raw format supported by the projector if
449  * this was set in video_output_init()
450  */
451  sws_scale(sw_scale_ctx,
452  (const uint8_t * const *)frame_raw->data,
453  frame_raw->linesize,
454  0,
455  (input_ctx.codec_ctx)->height,
456  frame_scaled->data,
457  frame_scaled->linesize);
458 
459  if (output_ctx.raw_output) {
460  out_frame = out_buf;
461  out_frame_size = out_buf_size;
462  } else {
463  frame_scaled->quality = (output_ctx.codec_ctx)->global_quality;
464  av_init_packet(&out_packet);
465  out_packet.data = NULL;
466  out_packet.size = 0;
467  got_packet = 0;
468  ret = encode(output_ctx.codec_ctx,
469  &out_packet,
470  &got_packet,
471  frame_scaled);
472  if (ret < 0 || !got_packet) {
473  fprintf(stderr, "cannot encode video\n");
474  run = 0;
475  goto end_while;
476  }
477 
478  out_frame = out_packet.data;
479  out_frame_size = out_packet.size;
480  }
481 
482 #ifdef DEBUG
483  if (dump_frame) {
484  char filename[NAME_MAX];
485  FILE *file;
486  if (!output_ctx.raw_output)
487  snprintf(filename, NAME_MAX, "out_q%03d.jpg", quality);
488  else
489  snprintf(filename, NAME_MAX, "out.raw");
490  file = fopen(filename, "wb");
491  fwrite(out_frame, 1, out_frame_size, file);
492  fclose(file);
493  }
494 #else
495  (void) dump_frame;
496 #endif
497 
498  ret = am7xxx_send_image_async(dev,
499  image_format,
500  (output_ctx.codec_ctx)->width,
501  (output_ctx.codec_ctx)->height,
502  out_frame,
503  out_frame_size);
504  if (ret < 0) {
505  perror("am7xxx_send_image_async");
506  run = 0;
507  goto end_while;
508  }
509  }
510 end_while:
511  if (!output_ctx.raw_output && got_packet)
512  av_packet_unref(&out_packet);
513  av_packet_unref(&in_packet);
514  }
515 
516  sws_freeContext(sw_scale_ctx);
517 cleanup_out_buf:
518  av_free(out_buf);
519 cleanup_frame_scaled:
520  av_frame_free(&frame_scaled);
521 cleanup_frame_raw:
522  av_frame_free(&frame_raw);
523 
524 cleanup_output:
525  /* Freeing the codec context is needed as well,
526  * see https://libav.org/documentation/doxygen/master/group__lavc__core.html#gaf4daa92361efb3523ef5afeb0b54077f
527  */
528  avcodec_close(output_ctx.codec_ctx);
529  avcodec_free_context(&(output_ctx.codec_ctx));
530 
531 cleanup_input:
532  avcodec_close(input_ctx.codec_ctx);
533  avcodec_free_context(&(input_ctx.codec_ctx));
534  avformat_close_input(&(input_ctx.format_ctx));
535 
536 out:
537  return ret;
538 }
539 
540 #ifdef HAVE_XCB
541 #include <xcb/xcb.h>
542 static int x_get_screen_dimensions(const char *displayname, int *width, int *height)
543 {
544  int i, screen_number;
545  xcb_connection_t *connection;
546  const xcb_setup_t *setup;
547  xcb_screen_iterator_t iter;
548 
549  connection = xcb_connect(displayname, &screen_number);
550  if (xcb_connection_has_error(connection)) {
551  fprintf(stderr, "Cannot open a connection to %s\n", displayname);
552  return -EINVAL;
553  }
554 
555  setup = xcb_get_setup(connection);
556  if (setup == NULL) {
557  fprintf(stderr, "Cannot get setup for %s\n", displayname);
558  xcb_disconnect(connection);
559  return -EINVAL;
560  }
561 
562  iter = xcb_setup_roots_iterator(setup);
563  for (i = 0; i < screen_number; ++i) {
564  xcb_screen_next(&iter);
565  }
566 
567  xcb_screen_t *screen = iter.data;
568 
569  *width = screen->width_in_pixels;
570  *height = screen->height_in_pixels;
571 
572  xcb_disconnect(connection);
573 
574  return 0;
575 }
576 
577 static char *get_x_screen_size(const char *input_path)
578 {
579  int len;
580  int width;
581  int height;
582  char *screen_size;
583  int ret;
584 
585  ret = x_get_screen_dimensions(input_path, &width, &height);
586  if (ret < 0) {
587  fprintf(stderr, "Cannot get screen dimensions for %s\n", input_path);
588  return NULL;
589  }
590 
591  len = snprintf(NULL, 0, "%dx%d", width, height);
592 
593  screen_size = malloc((len + 1) * sizeof(char));
594  if (screen_size == NULL) {
595  perror("malloc");
596  return NULL;
597  }
598 
599  len = snprintf(screen_size, len + 1, "%dx%d", width, height);
600  if (len < 0) {
601  free(screen_size);
602  screen_size = NULL;
603  return NULL;
604  }
605  return screen_size;
606 }
607 #else
608 static char *get_x_screen_size(const char *input_path)
609 {
610  (void) input_path;
611  fprintf(stderr, "%s: fallback implementation, assuming a vga screen\n", __func__);
612  return strdup("vga");
613 }
614 #endif
615 
616 static void unset_run(int signo)
617 {
618  (void) signo;
619  run = 0;
620 }
621 
622 #ifdef HAVE_SIGACTION
623 static int set_signal_handler(void (*signal_handler)(int))
624 {
625  struct sigaction new_action;
626  struct sigaction old_action;
627  int ret;
628 
629  new_action.sa_handler = signal_handler;
630  sigemptyset(&new_action.sa_mask);
631  new_action.sa_flags = 0;
632 
633  ret = sigaction(SIGINT, NULL, &old_action);
634  if (ret < 0) {
635  perror("sigaction on old_action");
636  goto out;
637  }
638 
639  if (old_action.sa_handler != SIG_IGN) {
640  ret = sigaction(SIGINT, &new_action, NULL);
641  if (ret < 0) {
642  perror("sigaction on new_action");
643  goto out;
644  }
645  }
646 
647 out:
648  return ret;
649 }
650 #else
651 static int set_signal_handler(void (*signal_handler)(int))
652 {
653  (void)signal_handler;
654  fprintf(stderr, "set_signal_handler() not implemented, sigaction not available\n");
655  return 0;
656 }
657 #endif
658 
659 
660 static void usage(char *name)
661 {
662  printf("usage: %s [OPTIONS]\n\n", name);
663  printf("OPTIONS:\n");
664  printf("\t-d <index>\t\tthe device index (default is 0)\n");
665 #ifdef DEBUG
666  printf("\t-D \t\t\tdump the last frame to a file (only active in DEBUG mode)\n");
667 #endif
668  printf("\t-f <input format>\tthe input device format\n");
669  printf("\t-i <input path>\t\tthe input path\n");
670  printf("\t-o <options>\t\ta comma separated list of input format options\n");
671  printf("\t\t\t\tEXAMPLE:\n");
672  printf("\t\t\t\t\t-o draw_mouse=1,framerate=100,video_size=800x480\n");
673  printf("\t-s <scaling method>\tthe rescaling method (see swscale.h)\n");
674  printf("\t-u \t\t\tupscale the image if smaller than the display dimensions\n");
675  printf("\t-F <format>\t\tthe image format to use (default is JPEG)\n");
676  printf("\t\t\t\tSUPPORTED FORMATS:\n");
677  printf("\t\t\t\t\t1 - JPEG\n");
678  printf("\t\t\t\t\t2 - NV12\n");
679  printf("\t-q <quality>\t\tquality of jpeg sent to the device, between 1 and 100\n");
680  printf("\t-l <log level>\t\tthe verbosity level of libam7xxx output (0-5)\n");
681  printf("\t-p <power mode>\t\tthe power mode of device, between %d (off) and %d (turbo)\n",
683  printf("\t\t\t\tWARNING: Level 2 and greater require the master AND\n");
684  printf("\t\t\t\t the slave connector to be plugged in.\n");
685  printf("\t-z <zoom mode>\t\tthe display zoom mode, between %d (original) and %d (tele)\n",
687  printf("\t-h \t\t\tthis help message\n");
688  printf("\n\nEXAMPLES OF USE:\n");
689  printf("\t%s -f x11grab -i :0.0 -o video_size=800x480\n", name);
690  printf("\t%s -f fbdev -i /dev/fb0\n", name);
691  printf("\t%s -f video4linux2 -i /dev/video0 -o video_size=320x240,frame_rate=100 -u -q 90\n", name);
692  printf("\t%s -i http://download.blender.org/peach/bigbuckbunny_movies/BigBuckBunny_640x360.m4v\n", name);
693 }
694 
695 int main(int argc, char *argv[])
696 {
697  int ret;
698  int opt;
699  char *subopts;
700  char *subopts_saved;
701  char *subopt;
702  char *input_format_string = NULL;
703  AVDictionary *options = NULL;
704  char *input_path = NULL;
705  unsigned int rescale_method = SWS_BICUBIC;
706  unsigned int upscale = 0;
707  unsigned int quality = 95;
708  int log_level = AM7XXX_LOG_INFO;
709  int device_index = 0;
710  int power_mode = AM7XXX_POWER_LOW;
711  int zoom = AM7XXX_ZOOM_ORIGINAL;
712  int format = AM7XXX_IMAGE_FORMAT_JPEG;
713  am7xxx_context *ctx;
714  am7xxx_device *dev;
715  int dump_frame = 0;
716 
717  while ((opt = getopt(argc, argv, "d:Df:i:o:s:uF:q:l:p:z:h")) != -1) {
718  switch (opt) {
719  case 'd':
720  device_index = atoi(optarg);
721  if (device_index < 0) {
722  fprintf(stderr, "Unsupported device index\n");
723  ret = -EINVAL;
724  goto out;
725  }
726  break;
727  case 'D':
728  dump_frame = 1;
729 #ifndef DEBUG
730  fprintf(stderr, "Warning: the -D option is only active in DEBUG mode.\n");
731 #endif
732  break;
733  case 'f':
734  input_format_string = strdup(optarg);
735  break;
736  case 'i':
737  input_path = strdup(optarg);
738  break;
739  case 'o':
740 #ifdef HAVE_STRTOK_R
741  /*
742  * parse suboptions, the expected format is something
743  * like:
744  * draw_mouse=1,framerate=100,video_size=800x480
745  */
746  subopts = subopts_saved = strdup(optarg);
747  while ((subopt = strtok_r(subopts, ",", &subopts))) {
748  char *subopt_name = strtok_r(subopt, "=", &subopt);
749  char *subopt_value = strtok_r(NULL, "", &subopt);
750  if (subopt_value == NULL) {
751  fprintf(stderr, "invalid suboption: %s\n", subopt_name);
752  continue;
753  }
754  av_dict_set(&options, subopt_name, subopt_value, 0);
755  }
756  free(subopts_saved);
757 #else
758  fprintf(stderr, "Option '-o' not implemented\n");
759 #endif
760  break;
761  case 's':
762  rescale_method = atoi(optarg);
763  switch(rescale_method) {
764  case SWS_FAST_BILINEAR:
765  case SWS_BILINEAR:
766  case SWS_BICUBIC:
767  case SWS_X:
768  case SWS_POINT:
769  case SWS_AREA:
770  case SWS_BICUBLIN:
771  case SWS_GAUSS:
772  case SWS_SINC:
773  case SWS_LANCZOS:
774  case SWS_SPLINE:
775  break;
776  default:
777  fprintf(stderr, "Unsupported rescale method\n");
778  ret = -EINVAL;
779  goto out;
780  }
781  break;
782  case 'u':
783  upscale = 1;
784  break;
785  case 'F':
786  format = atoi(optarg);
787  switch(format) {
789  fprintf(stdout, "JPEG format\n");
790  break;
792  fprintf(stdout, "NV12 format\n");
793  break;
794  default:
795  fprintf(stderr, "Unsupported format\n");
796  ret = -EINVAL;
797  goto out;
798  }
799  break;
800  case 'q':
801  quality = atoi(optarg);
802  if (quality < 1 || quality > 100) {
803  fprintf(stderr, "Invalid quality value, must be between 1 and 100\n");
804  ret = -EINVAL;
805  goto out;
806  }
807  break;
808  case 'l':
809  log_level = atoi(optarg);
810  if (log_level < AM7XXX_LOG_FATAL || log_level > AM7XXX_LOG_TRACE) {
811  fprintf(stderr, "Unsupported log level, falling back to AM7XXX_LOG_ERROR\n");
812  log_level = AM7XXX_LOG_ERROR;
813  }
814  break;
815  case 'p':
816  power_mode = atoi(optarg);
817  switch(power_mode) {
818  case AM7XXX_POWER_OFF:
819  case AM7XXX_POWER_LOW:
820  case AM7XXX_POWER_MIDDLE:
821  case AM7XXX_POWER_HIGH:
822  case AM7XXX_POWER_TURBO:
823  fprintf(stdout, "Power mode: %d\n", power_mode);
824  break;
825  default:
826  fprintf(stderr, "Invalid power mode value, must be between %d and %d\n",
828  ret = -EINVAL;
829  goto out;
830  }
831  break;
832  case 'z':
833  zoom = atoi(optarg);
834  switch(zoom) {
836  case AM7XXX_ZOOM_H:
837  case AM7XXX_ZOOM_H_V:
838  case AM7XXX_ZOOM_TEST:
839  case AM7XXX_ZOOM_TELE:
840  fprintf(stdout, "Zoom: %d\n", zoom);
841  break;
842  default:
843  fprintf(stderr, "Invalid zoom mode value, must be between %d and %d\n",
845  ret = -EINVAL;
846  goto out;
847  }
848  break;
849  case 'h':
850  usage(argv[0]);
851  ret = 0;
852  goto out;
853  default: /* '?' */
854  usage(argv[0]);
855  ret = -EINVAL;
856  goto out;
857  }
858  }
859 
860  if (input_path == NULL) {
861  fprintf(stderr, "The -i option must always be passed\n\n");
862  usage(argv[0]);
863  ret = -EINVAL;
864  goto out;
865  }
866 
867  /*
868  * When the input format is 'x11grab' set some useful fallback options
869  * if not supplied by the user, in particular grab full screen
870  */
871  if (input_format_string && strcmp(input_format_string, "x11grab") == 0) {
872  char *video_size;
873 
874  video_size = get_x_screen_size(input_path);
875 
876  if (!av_dict_get(options, "video_size", NULL, 0))
877  av_dict_set(&options, "video_size", video_size, 0);
878 
879  if (!av_dict_get(options, "framerate", NULL, 0))
880  av_dict_set(&options, "framerate", "60", 0);
881 
882  if (!av_dict_get(options, "draw_mouse", NULL, 0))
883  av_dict_set(&options, "draw_mouse", "1", 0);
884 
885  free(video_size);
886  }
887 
888  ret = set_signal_handler(unset_run);
889  if (ret < 0) {
890  perror("sigaction");
891  goto out;
892  }
893 
894  ret = am7xxx_init(&ctx);
895  if (ret < 0) {
896  perror("am7xxx_init");
897  goto out;
898  }
899 
900  am7xxx_set_log_level(ctx, log_level);
901 
902  ret = am7xxx_open_device(ctx, &dev, device_index);
903  if (ret < 0) {
904  perror("am7xxx_open_device");
905  goto cleanup;
906  }
907 
908  ret = am7xxx_set_zoom_mode(dev, zoom);
909  if (ret < 0) {
910  perror("am7xxx_set_zoom_mode");
911  goto cleanup;
912  }
913 
914  ret = am7xxx_set_power_mode(dev, power_mode);
915  if (ret < 0) {
916  perror("am7xxx_set_power_mode");
917  goto cleanup;
918  }
919 
920  /* When setting AM7XXX_ZOOM_TEST don't display the actual image */
921  if (zoom == AM7XXX_ZOOM_TEST)
922  goto cleanup;
923 
924  ret = am7xxx_play(input_format_string,
925  &options,
926  input_path,
927  rescale_method,
928  upscale,
929  quality,
930  format,
931  dev,
932  dump_frame);
933  if (ret < 0) {
934  fprintf(stderr, "am7xxx_play failed\n");
935  goto cleanup;
936  }
937 
938 cleanup:
939  am7xxx_shutdown(ctx);
940 out:
941  av_dict_free(&options);
942  free(input_path);
943  free(input_format_string);
944  return ret;
945 }
Public libam7xxx API.
@ AM7XXX_ZOOM_H
Zoom 1: H Scale (changes aspect ratio).
Definition: am7xxx.h:124
@ AM7XXX_ZOOM_ORIGINAL
Original Size, as retrieved via am7xxx_device_info.
Definition: am7xxx.h:123
@ AM7XXX_ZOOM_TELE
Zoom Tele: available on some PicoPix models.
Definition: am7xxx.h:127
@ AM7XXX_ZOOM_TEST
Zoom test screen, the firmware version is shown as well.
Definition: am7xxx.h:126
@ AM7XXX_ZOOM_H_V
Zoom 2: H/V Scale (changes aspect ratio).
Definition: am7xxx.h:125
@ AM7XXX_LOG_ERROR
Error messages, typically they describe API functions failures.
Definition: am7xxx.h:70
@ AM7XXX_LOG_INFO
Informations about the device operations.
Definition: am7xxx.h:72
@ AM7XXX_LOG_TRACE
Verbose informations about the communication with the hardware.
Definition: am7xxx.h:74
int am7xxx_calc_scaled_image_dimensions(am7xxx_device *dev, unsigned int upscale, unsigned int original_width, unsigned int original_height, unsigned int *scaled_width, unsigned int *scaled_height)
Calculate the dimensions of an image to be shown on an am7xxx device.
Definition: am7xxx.c:1269
@ AM7XXX_POWER_HIGH
More brightness, but more power consumption.
Definition: am7xxx.h:103
@ AM7XXX_POWER_OFF
Display is powered off, no image shown.
Definition: am7xxx.h:100
@ AM7XXX_POWER_TURBO
Max brightness and power consumption.
Definition: am7xxx.h:104
@ AM7XXX_POWER_LOW
Low power consumption but also low brightness.
Definition: am7xxx.h:101
@ AM7XXX_POWER_MIDDLE
Middle level of brightness.
Definition: am7xxx.h:102
int am7xxx_send_image_async(am7xxx_device *dev, am7xxx_image_format format, unsigned int width, unsigned int height, unsigned char *image, unsigned int image_size)
Queue transfer of an image for display on an am7xxx device and return immediately.
am7xxx_image_format
The image formats accepted by the device.
Definition: am7xxx.h:80
@ AM7XXX_IMAGE_FORMAT_JPEG
JPEG format.
Definition: am7xxx.h:81
@ AM7XXX_IMAGE_FORMAT_NV12
Raw YUV in the NV12 variant.
Definition: am7xxx.h:82
void am7xxx_shutdown(am7xxx_context *ctx)
Cleanup the library data structures and free the context.
Definition: am7xxx.c:1140
void am7xxx_set_log_level(am7xxx_context *ctx, am7xxx_log_level log_level)
Set verbosity level of log messages.
Definition: am7xxx.c:1163
int am7xxx_set_power_mode(am7xxx_device *dev, am7xxx_power_mode power)
Set the power mode of an am7xxx device.
Definition: am7xxx.c:1402
struct _am7xxx_device am7xxx_device
An opaque data type representing an am7xxx device.
Definition: am7xxx.h:46
int am7xxx_set_zoom_mode(am7xxx_device *dev, am7xxx_zoom_mode zoom)
Set the zoom mode of an am7xxx device.
Definition: am7xxx.c:1413
struct _am7xxx_context am7xxx_context
An opaque data type representing a context.
Definition: am7xxx.h:38
int am7xxx_init(am7xxx_context **ctx)
Initialize the library context and data structures, and scan for devices.
Definition: am7xxx.c:1100
int am7xxx_open_device(am7xxx_context *ctx, am7xxx_device **dev, unsigned int device_index)
Open an am7xxx_device according to a index.
Definition: am7xxx.c:1168