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source: orxonox.OLD/branches/avi_play/src/lib/graphics/importer/media_container.cc @ 6325

Last change on this file since 6325 was 6325, checked in by hdavid, 18 years ago

branches\avi_play: the frames are created faster with glTexSubImage2D, implemented custom speed setting

File size: 11.8 KB
Line 
1/*
2   orxonox - the future of 3D-vertical-scrollers
3
4   Copyright (C) 2004 orx
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 2, or (at your option)
9   any later version.
10
11### File Specific:
12   main-programmer: David Hasenfratz, Stephan Lienhard
13   co-programmer:
14*/
15
16
17
18/* this is for debug output. It just says, that all calls to PRINT() belong to the DEBUG_MODULE_MEDIA module
19   For more information refere to https://www.orxonox.net/cgi-bin/trac.cgi/wiki/DebugOutput
20*/
21#define DEBUG_MODULE_MEDIA
22
23
24/* include your own header */
25#include "media_container.h"
26
27/* header for debug output */
28#include "debug.h"
29
30
31/**
32 * Default constructor
33 */
34MediaContainer::MediaContainer(const char* filename)
35{
36  this->init();
37
38  if (filename != NULL)
39    this->loadMedia(filename);
40}
41
42MediaContainer::MediaContainer()
43{
44  this->init();
45}
46
47/**
48 * Default destructor
49 */
50MediaContainer::~MediaContainer()
51{
52  // delete all textures.
53  while(!this->texture_list.empty())
54  {
55    if (glIsTexture(this->texture_list.back()))
56      glDeleteTextures(1, &this->texture_list.back());
57    this->texture_list.pop_back();
58  }
59  glDeleteTextures(1, &texture);
60  SDL_FreeSurface(surface);
61
62  // Free the RGB image
63  delete [] buffer;
64  av_free(RGB_frame);
65
66  /* Free the frame */
67  av_free(frame);
68
69  /* Close the codec */
70  avcodec_close(codec_context);
71
72  /* Close the video file */
73  av_close_input_file(format_context);
74
75}
76
77void MediaContainer::init()
78{
79  /* set the class id for the base object */
80  this->setClassID(CL_MEDIA_CONTAINER, "MediaContainer");
81
82  /* register all formats and codecs */
83  av_register_all();
84
85  fps = 0;
86  frame_num = 0;
87}
88
89void MediaContainer::gotoFrame(int frame_number)
90{
91  // seek doesnt work for the first two frames
92  // you will get ugly fragments
93  if(frame_number < 2)
94  {
95    // go to the begin of the video
96    av_seek_frame(format_context, video_stream, 0, AVSEEK_FLAG_BACKWARD);
97    frame_num = 0;
98  }
99  else
100  {
101    // seeks to the nearest keyframe
102    // NOTE: there is only about every 5s a keyframe!
103    av_seek_frame(format_context, video_stream, frame_number, AVSEEK_FLAG_BACKWARD);
104   
105    // go from the keyframe to the exact position
106    codec_context->hurry_up = 1;
107    do {
108      av_read_frame(format_context, &packet);
109      if(packet.pts >= frame_number-1)
110        break;
111      int frame_finished;
112      avcodec_decode_video(codec_context, frame, &frame_finished, packet.data, packet.size);
113      av_free_packet(&packet);
114    } while(1);
115    codec_context->hurry_up = 0;
116 
117    frame_num = frame_number;
118  }
119}
120
121GLuint MediaContainer::getNextFrame()
122{
123  /* get next frame */
124  if(av_read_frame(format_context, &packet) >= 0)
125  {
126    //this->printPacketInformation();
127
128    /* Is this a packet from the video stream? */
129    if(packet.stream_index == video_stream)
130    {
131      int frame_finished;
132      // Decode video frame
133      avcodec_decode_video(codec_context, frame, &frame_finished,
134                           packet.data, packet.size);
135
136      // Free the packet that was allocated by av_read_frame
137      av_free_packet(&packet);
138     
139      // Did we get a video frame?
140      if(frame_finished)
141      {
142        frame_num++;
143        //PRINTF(1)("frame_number: %i\n", this->getFrameNumber());
144        // Conversion from YUV to RGB
145        // Most codecs return images in YUV 420 format
146        // (one luminance and two chrominance channels, with the chrominance
147        // channels samples at half the spatial resolution of the luminance channel)
148        img_convert((AVPicture*)RGB_frame, PIX_FMT_RGB24, (AVPicture*)frame,
149                    codec_context->pix_fmt, codec_context->width, codec_context->height);
150
151        picture = (AVPicture*)RGB_frame;
152
153
154        data = 0;
155        data = new uint8_t[codec_context->width*codec_context->height*3*sizeof(uint8_t)];
156        for(int i = 0; i < codec_context->height; i++)
157          memcpy(&data[i*codec_context->width*3], picture->data[0]+i *
158                 picture->linesize[0],codec_context->width*sizeof(uint8_t)*3);
159
160        surface = SDL_CreateRGBSurfaceFrom(data, codec_context->width,
161                                           codec_context->height,24,
162                                           codec_context->width*sizeof(uint8_t)*3,
163#if SDL_BYTEORDER == SDL_LIL_ENDIAN /* OpenGL RGBA masks */
164                                           0x000000FF,
165                                           0x0000FF00,
166                                           0x00FF0000,
167                                           0
168#else
169                                           0xFF000000,
170                                           0x00FF0000,
171                                           0x0000FF00,
172                                           0
173#endif
174                                            );
175
176        if(frame_num == 1)
177        {
178          /* Create an OpenGL texture from the surface */
179          glGenTextures(1, &texture);
180          glBindTexture(GL_TEXTURE_2D, texture);
181          glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
182          glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
183          // create the texture
184          glTexImage2D(GL_TEXTURE_2D,
185                      0,
186                      GL_RGB,
187                      surface->w, surface->h,
188                      0,
189                      GL_RGB,
190                      GL_UNSIGNED_BYTE,
191                      surface->pixels);
192        }
193        else
194          // update the texture
195          glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, surface->w, surface->h, GL_RGB, GL_UNSIGNED_BYTE, surface->pixels);
196        // build the MipMaps
197        gluBuild2DMipmaps(GL_TEXTURE_2D,
198                          GL_RGB,
199                          surface->w,
200                          surface->h,
201                          GL_RGB,
202                          GL_UNSIGNED_BYTE,
203                          surface->pixels);
204        glBindTexture(GL_TEXTURE_2D, 0);
205
206        return texture;
207      }
208    }
209    else
210    {
211      av_free_packet(&packet);
212      this->getNextFrame();
213    }
214  }
215  else
216    return NULL;
217}
218
219GLuint MediaContainer::skipFrame(int num_frames)
220{
221  frame_num += num_frames;
222 
223  while(num_frames != 0)
224  {
225    if(av_read_frame(format_context, &packet) < 0)
226      break;
227    if(packet.stream_index == video_stream)
228    {
229      int frame_finished;
230      // We have to decode the frame to not get ugly fragments
231      avcodec_decode_video(codec_context, frame, &frame_finished,
232                            packet.data, packet.size);
233       
234      // Did we get a video frame?
235      if(frame_finished)
236        num_frames--;
237    }
238    av_free_packet(&packet);
239  }
240 
241  return this->getNextFrame();
242}
243
244vector<GLuint> MediaContainer::getFrameList()
245{
246
247  while((texture = this->getNextFrame()) != NULL)
248    texture_list.push_back(texture);
249
250  return texture_list;
251}
252
253void MediaContainer::saveCurrentFrame()
254{
255  FILE *file;
256  char filename[32];
257  int  y;
258
259  // Open file
260  sprintf(filename, "frame%i.ppm", frame_num);
261  file = fopen(filename, "wb");
262  if(file == NULL)
263        return;
264
265  // Write header
266  fprintf(file, "P6\n%d %d\n255\n", codec_context->width, codec_context->height);
267  // Write pixel data
268  for(y = 0; y < codec_context->height; y++)
269    fwrite(picture->data[0]+y * picture->linesize[0], 1, codec_context->width*3, file);
270  // Close file
271  fclose(file);
272
273  PRINTF(1)("created file: %s\n", filename);
274}
275
276void MediaContainer::loadMedia(const char* filename)
277{
278  /* Open video file */
279  if (av_open_input_file(&format_context, filename, NULL, 0, NULL) !=0 )
280    PRINTF(1)("Could not open %s\n", filename);
281
282  /* Retrieve stream information */
283  if (av_find_stream_info(format_context) < 0)
284    PRINTF(1)("Could not find stream information in %s\n", filename);
285
286  // Dump information about file onto standard error
287  //dump_format(pFormatCtx, 0, argv[1], false);
288
289  /* Find the first video stream and take it */
290  video_stream = -1;
291  for(int i = 0; i < format_context->nb_streams; i++)
292  {
293    // NOTE: different code for the 0.4.9-pre1 release of ffmpeg (tardis)
294    // if(format_context->streams[i]->codec.codec_type == CODEC_TYPE_VIDEO)
295    if(format_context->streams[i]->codec->codec_type == CODEC_TYPE_VIDEO)
296    {
297      video_stream = i;
298      break;
299    }
300  }
301
302  if(video_stream == -1)
303    PRINTF(1)("Could not find a video stream in %s\n", filename);
304
305  /* Get a pointer to the codec context for the video stream */
306  // NOTE: different code for the 0.4.9-pre1 release of ffmpeg (tardis)
307  // codec_context = &format_context->streams[video_stream]->codec;
308  codec_context = format_context->streams[video_stream]->codec;
309
310  /* Find the decoder for the video stream */
311  codec = avcodec_find_decoder(codec_context->codec_id);
312  if (codec == NULL)
313    PRINTF(1)("Could not find codec\n");
314
315  /* Open codec */
316  if (avcodec_open(codec_context, codec) < 0)
317    PRINTF(1)("Could not open codec\n");
318
319  // Allocate video frame
320  frame = avcodec_alloc_frame();
321  RGB_frame = avcodec_alloc_frame();
322
323  // Determine required buffer size and allocate buffer
324  num_bytes = avpicture_get_size(PIX_FMT_RGB24, codec_context->width, codec_context->height);
325  buffer=new uint8_t[num_bytes];
326
327  // Assign appropriate parts of buffer to image planes in pFrameRGB
328  avpicture_fill((AVPicture *)RGB_frame, buffer, PIX_FMT_RGB24, codec_context->width, codec_context->height);
329
330  // Calculate fps
331  fps = av_q2d(format_context->streams[video_stream]->r_frame_rate);
332
333  // duration
334  duration = format_context->duration / 1000000LL;
335
336  frame_num = 0;
337}
338
339int MediaContainer::getHeight()
340{
341  return codec_context->height;
342}
343
344int MediaContainer::getWidth()
345{
346  return codec_context->width;
347}
348
349int MediaContainer::getFrameNumber()
350{
351  return frame_num;
352}
353
354double MediaContainer::getFPS()
355{
356  return this->fps;
357}
358
359void MediaContainer::printMediaInformation()
360{
361  PRINTF(1)("========================\n");
362  PRINTF(1)("========================\n");
363  PRINTF(1)("=    MEDIACONTAINER    =\n");
364  PRINTF(1)("========================\n");
365  PRINTF(1)("========================\n");
366  PRINTF(1)("=    AVFormatContext   =\n");
367  PRINTF(1)("========================\n");
368  PRINTF(1)("filename: %s\n", format_context->filename);
369  PRINTF(1)("nb_streams: %i\n", format_context->nb_streams);
370  PRINTF(1)("duration: (%02d:%02d:%02d)\n", duration/3600, (duration%3600)/60, duration%60);
371  PRINTF(1)("file_size: %ikb\n", format_context->file_size/1024);
372  PRINTF(1)("bit_rate: %ikb/s\n", format_context->bit_rate/1000);
373  PRINTF(1)("nb_frames: %i\n", format_context->streams[video_stream]->nb_frames);
374  PRINTF(1)("r_frame_rate: %i\n", format_context->streams[video_stream]->r_frame_rate.num);
375  PRINTF(1)("fps: %0.2f\n", av_q2d(format_context->streams[video_stream]->r_frame_rate));
376  PRINTF(1)("========================\n");
377  PRINTF(1)("=    AVCodecContext    =\n");
378  PRINTF(1)("========================\n");
379  PRINTF(1)("width: %i\n", codec_context->width);
380  PRINTF(1)("height: %i\n", codec_context->height);
381  PRINTF(1)("time_base.den: %i\n", codec_context->time_base.den);
382  PRINTF(1)("time_base.num: %i\n", codec_context->time_base.num);
383  PRINTF(1)("========================\n");
384  PRINTF(1)("=       AVCodec        =\n");
385  PRINTF(1)("========================\n");
386  PRINTF(1)("codec name: %s\n", codec->name);
387  PRINTF(1)("========================\n");
388  PRINTF(1)("========================\n");
389}
390
391void MediaContainer::printPacketInformation()
392{
393  PRINTF(1)("========================\n");
394  PRINTF(1)("========================\n");
395  PRINTF(1)("=       AVPacket       =\n");
396  PRINTF(1)("========================\n");
397  PRINTF(1)("pts: %i\n", packet.pts);
398  PRINTF(1)("dts: %i\n", packet.dts);
399  PRINTF(1)("size: %i\n", packet.size);
400  PRINTF(1)("stream_index: %i\n", packet.stream_index);
401  PRINTF(1)("duration: %i\n", packet.duration);
402  PRINTF(1)("pos: %i\n", packet.pos);
403  PRINTF(1)("========================\n");
404  PRINTF(1)("========================\n");
405}
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