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  • encode h264 video using ffmpeg library memory issues

    31 mars 2015, par Zeppa

    I’m trying to do screen capture on OS X using ffmpeg’s avfoundation library. I capture frames from the screen and encode it using H264 into an flv container.

    Here’s the command line output of the program :

    Input #0, avfoundation, from 'Capture screen 0':
     Duration: N/A, start: 9.253649, bitrate: N/A
       Stream #0:0: Video: rawvideo (UYVY / 0x59565955), uyvy422, 1440x900, 14.58 tbr, 1000k tbn, 1000k tbc
    raw video is inCodec
    FLV (Flash Video)http://localhost:8090/test.flv
    [libx264 @ 0x102038e00] using cpu capabilities: MMX2 SSE2Fast SSSE3 SSE4.2 AVX
    [libx264 @ 0x102038e00] profile High, level 4.0
    [libx264 @ 0x102038e00] 264 - core 142 r2495 6a301b6 - H.264/MPEG-4 AVC codec - Copyleft 2003-2014 - http://www.videolan.org/x264.html - options: cabac=1 ref=3 deblock=1:0:0 analyse=0x3:0x113 me=hex subme=7 psy=1 psy_rd=1.00:0.00 mixed_ref=1 me_range=16 chroma_me=1 trellis=1 8x8dct=1 cqm=0 deadzone=21,11 fast_pskip=1 chroma_qp_offset=-2 threads=6 lookahead_threads=1 sliced_threads=0 nr=0 decimate=1 interlaced=0 bluray_compat=0 constrained_intra=0 bframes=3 b_pyramid=2 b_adapt=1 b_bias=0 direct=1 weightb=1 open_gop=1 weightp=2 keyint=50 keyint_min=5 scenecut=40 intra_refresh=0 rc_lookahead=40 rc=abr mbtree=1 bitrate=400 ratetol=1.0 qcomp=0.60 qpmin=0 qpmax=69 qpstep=4 ip_ratio=1.40 aq=1:1.00
    [tcp @ 0x101a5fe70] Connection to tcp://localhost:8090 failed (Connection refused), trying next address
    [tcp @ 0x101a5fe70] Connection to tcp://localhost:8090 failed: Connection refused
    url_fopen failed: Operation now in progress
    [flv @ 0x102038800] Using AVStream.codec.time_base as a timebase hint to the muxer is deprecated. Set AVStream.time_base instead.
    encoded frame #0
    encoded frame #1
    ......
    encoded frame #49
    encoded frame #50
    testmee(8404,0x7fff7e05c300) malloc: *** error for object 0x102053e08: incorrect checksum for freed object - object was probably modified after being freed.
    *** set a breakpoint in malloc_error_break to debug
    (lldb) bt
    * thread #10: tid = 0x43873, 0x00007fff95639286 libsystem_kernel.dylib`__pthread_kill + 10, stop reason = signal SIGABRT
     * frame #0: 0x00007fff95639286 libsystem_kernel.dylib`__pthread_kill + 10
       frame #1: 0x00007fff9623742f libsystem_pthread.dylib`pthread_kill + 90
       frame #2: 0x00007fff977ceb53 libsystem_c.dylib`abort + 129
       frame #3: 0x00007fff9ab59e06 libsystem_malloc.dylib`szone_error + 625
       frame #4: 0x00007fff9ab4f799 libsystem_malloc.dylib`small_malloc_from_free_list + 1105
       frame #5: 0x00007fff9ab4d3bc libsystem_malloc.dylib`szone_malloc_should_clear + 1449
       frame #6: 0x00007fff9ab4c877 libsystem_malloc.dylib`malloc_zone_malloc + 71
       frame #7: 0x00007fff9ab4b395 libsystem_malloc.dylib`malloc + 42
       frame #8: 0x00007fff94aa63d2 IOSurface`IOSurfaceClientLookupFromMachPort + 40
       frame #9: 0x00007fff94aa6b38 IOSurface`IOSurfaceLookupFromMachPort + 12
       frame #10: 0x00007fff92bfa6b2 CoreGraphics`_CGYDisplayStreamFrameAvailable + 342
       frame #11: 0x00007fff92f6759c CoreGraphics`CGYDisplayStreamNotification_server + 336
       frame #12: 0x00007fff92bfada6 CoreGraphics`display_stream_runloop_callout + 46
       frame #13: 0x00007fff956eba07 CoreFoundation`__CFMachPortPerform + 247
       frame #14: 0x00007fff956eb8f9 CoreFoundation`__CFRUNLOOP_IS_CALLING_OUT_TO_A_SOURCE1_PERFORM_FUNCTION__ + 41
       frame #15: 0x00007fff956eb86b CoreFoundation`__CFRunLoopDoSource1 + 475
       frame #16: 0x00007fff956dd3e7 CoreFoundation`__CFRunLoopRun + 2375
       frame #17: 0x00007fff956dc858 CoreFoundation`CFRunLoopRunSpecific + 296
       frame #18: 0x00007fff95792ef1 CoreFoundation`CFRunLoopRun + 97
       frame #19: 0x0000000105f79ff1 CMIOUnits`___lldb_unnamed_function2148$$CMIOUnits + 875
       frame #20: 0x0000000105f6f2c2 CMIOUnits`___lldb_unnamed_function2127$$CMIOUnits + 14
       frame #21: 0x00007fff97051765 CoreMedia`figThreadMain + 417
       frame #22: 0x00007fff96235268 libsystem_pthread.dylib`_pthread_body + 131
       frame #23: 0x00007fff962351e5 libsystem_pthread.dylib`_pthread_start + 176
       frame #24: 0x00007fff9623341d libsystem_pthread.dylib`thread_start + 13

    I’ve attached the code I used below.

    #include <libavcodec></libavcodec>avcodec.h>
    #include <libavformat></libavformat>avformat.h>
    #include <libswscale></libswscale>swscale.h>
    #include <libavdevice></libavdevice>avdevice.h>
    #include <libavutil></libavutil>opt.h>
    #include
    #include
    #include
    /* compile using
    gcc -g -o stream test.c -lavformat -lavutil -lavcodec -lavdevice -lswscale
    */

    // void show_av_device() {

    //    inFmt->get_device_list(inFmtCtx, device_list);
    //    printf("Device Info=============\n");
    //    //avformat_open_input(&amp;inFmtCtx,"video=Capture screen 0",inFmt,&amp;inOptions);
    //    printf("===============================\n");
    // }

    void AVFAIL (int code, const char *what) {
       char msg[500];
       av_strerror(code, msg, sizeof(msg));
       fprintf(stderr, "failed: %s\nerror: %s\n", what, msg);
       exit(2);
    }

    #define AVCHECK(f) do { int e = (f); if (e &lt; 0) AVFAIL(e, #f); } while (0)
    #define AVCHECKPTR(p,f) do { p = (f); if (!p) AVFAIL(AVERROR_UNKNOWN, #f); } while (0)

    void registerLibs() {
       av_register_all();
       avdevice_register_all();
       avformat_network_init();
       avcodec_register_all();
    }

    int main(int argc, char *argv[]) {

       //conversion variables
       struct SwsContext *swsCtx = NULL;
       //input stream variables
       AVFormatContext   *inFmtCtx = NULL;
       AVCodecContext    *inCodecCtx = NULL;
       AVCodec           *inCodec = NULL;
       AVInputFormat     *inFmt = NULL;
       AVFrame           *inFrame = NULL;
       AVDictionary      *inOptions = NULL;
       const char *streamURL = "http://localhost:8090/test.flv";
       const char *name = "avfoundation";

    //    AVFrame           *inFrameYUV = NULL;
       AVPacket          inPacket;


       //output stream variables
       AVCodecContext    *outCodecCtx = NULL;
       AVCodec           *outCodec;
       AVFormatContext   *outFmtCtx = NULL;
       AVOutputFormat    *outFmt = NULL;
       AVFrame           *outFrameYUV = NULL;
       AVStream          *stream = NULL;

       int               i, videostream, ret;
       int               numBytes, frameFinished;

       registerLibs();
       inFmtCtx = avformat_alloc_context(); //alloc input context
       av_dict_set(&amp;inOptions, "pixel_format", "uyvy422", 0);
       av_dict_set(&amp;inOptions, "probesize", "7000000", 0);

       inFmt = av_find_input_format(name);
       ret = avformat_open_input(&amp;inFmtCtx, "Capture screen 0:", inFmt, &amp;inOptions);
       if (ret &lt; 0) {
           printf("Could not load the context for the input device\n");
           return -1;
       }
       if (avformat_find_stream_info(inFmtCtx, NULL) &lt; 0) {
           printf("Could not find stream info for screen\n");
           return -1;
       }
       av_dump_format(inFmtCtx, 0, "Capture screen 0", 0);
       // inFmtCtx->streams is an array of pointers of size inFmtCtx->nb_stream

       videostream = av_find_best_stream(inFmtCtx, AVMEDIA_TYPE_VIDEO, -1, -1, &amp;inCodec, 0);
       if (videostream == -1) {
           printf("no video stream found\n");
           return -1;
       } else {
           printf("%s is inCodec\n", inCodec->long_name);
       }
       inCodecCtx = inFmtCtx->streams[videostream]->codec;
       // open codec
       if (avcodec_open2(inCodecCtx, inCodec, NULL) > 0) {
           printf("Couldn't open codec");
           return -1;  // couldn't open codec
       }


           //setup output params
       outFmt = av_guess_format(NULL, streamURL, NULL);
       if(outFmt == NULL) {
           printf("output format was not guessed properly");
           return -1;
       }

       if((outFmtCtx = avformat_alloc_context()) &lt; 0) {
           printf("output context not allocated. ERROR");
           return -1;
       }

       printf("%s", outFmt->long_name);

       outFmtCtx->oformat = outFmt;

       snprintf(outFmtCtx->filename, sizeof(outFmtCtx->filename), streamURL);
       printf("%s\n", outFmtCtx->filename);

       outCodec = avcodec_find_encoder(AV_CODEC_ID_H264);
       if(!outCodec) {
           printf("could not find encoder for H264 \n" );
           return -1;
       }

       stream = avformat_new_stream(outFmtCtx, outCodec);
       outCodecCtx = stream->codec;
       avcodec_get_context_defaults3(outCodecCtx, outCodec);

       outCodecCtx->codec_id = AV_CODEC_ID_H264;
       outCodecCtx->codec_type = AVMEDIA_TYPE_VIDEO;
       outCodecCtx->flags = CODEC_FLAG_GLOBAL_HEADER;
       outCodecCtx->width = inCodecCtx->width;
       outCodecCtx->height = inCodecCtx->height;
       outCodecCtx->time_base.den = 25;
       outCodecCtx->time_base.num = 1;
       outCodecCtx->pix_fmt = AV_PIX_FMT_YUV420P;
       outCodecCtx->gop_size = 50;
       outCodecCtx->bit_rate = 400000;

       //setup output encoders etc
       if(stream) {
           ret = avcodec_open2(outCodecCtx, outCodec, NULL);
           if (ret &lt; 0) {
               printf("Could not open output encoder");
               return -1;
           }
       }

       if (avio_open(&amp;outFmtCtx->pb, outFmtCtx->filename, AVIO_FLAG_WRITE ) &lt; 0) {
           perror("url_fopen failed");
       }

       avio_open_dyn_buf(&amp;outFmtCtx->pb);
       ret = avformat_write_header(outFmtCtx, NULL);
       if (ret != 0) {
           printf("was not able to write header to output format");
           return -1;
       }
       unsigned char *pb_buffer;
       int len = avio_close_dyn_buf(outFmtCtx->pb, (unsigned char **)(&amp;pb_buffer));
       avio_write(outFmtCtx->pb, (unsigned char *)pb_buffer, len);


       numBytes = avpicture_get_size(PIX_FMT_UYVY422, inCodecCtx->width, inCodecCtx->height);
       // Allocate video frame
       inFrame = av_frame_alloc();

       swsCtx = sws_getContext(inCodecCtx->width, inCodecCtx->height, inCodecCtx->pix_fmt, inCodecCtx->width,
                               inCodecCtx->height, PIX_FMT_YUV420P, SWS_BILINEAR, NULL, NULL, NULL);
       int frame_count = 0;
       while(av_read_frame(inFmtCtx, &amp;inPacket) >= 0) {
           if(inPacket.stream_index == videostream) {
               avcodec_decode_video2(inCodecCtx, inFrame, &amp;frameFinished, &amp;inPacket);
               // 1 Frame might need more than 1 packet to be filled
               if(frameFinished) {
                   outFrameYUV = av_frame_alloc();

                   uint8_t *buffer = (uint8_t *)av_malloc(numBytes);

                   int ret = avpicture_fill((AVPicture *)outFrameYUV, buffer, PIX_FMT_YUV420P,
                                            inCodecCtx->width, inCodecCtx->height);
                   if(ret &lt; 0){
                       printf("%d is return val for fill\n", ret);
                       return -1;
                   }
                   //convert image to YUV
                   sws_scale(swsCtx, (uint8_t const * const* )inFrame->data,
                             inFrame->linesize, 0, inCodecCtx->height,
                             outFrameYUV->data, outFrameYUV->linesize);
                   //outFrameYUV now holds the YUV scaled frame/picture
                   outFrameYUV->format = outCodecCtx->pix_fmt;
                   outFrameYUV->width = outCodecCtx->width;
                   outFrameYUV->height = outCodecCtx->height;


                   AVPacket pkt;
                   int got_output;
                   av_init_packet(&amp;pkt);
                   pkt.data = NULL;
                   pkt.size = 0;

                   outFrameYUV->pts = frame_count;

                   ret = avcodec_encode_video2(outCodecCtx, &amp;pkt, outFrameYUV, &amp;got_output);
                   if (ret &lt; 0) {
                       fprintf(stderr, "Error encoding video frame: %s\n", av_err2str(ret));
                       return -1;
                   }

                   if(got_output) {
                       if(stream->codec->coded_frame->key_frame) {
                           pkt.flags |= AV_PKT_FLAG_KEY;
                       }
                       pkt.stream_index = stream->index;
                       if(pkt.pts != AV_NOPTS_VALUE)
                           pkt.pts = av_rescale_q(pkt.pts, stream->codec->time_base, stream->time_base);
                       if(pkt.dts != AV_NOPTS_VALUE)
                           pkt.dts = av_rescale_q(pkt.dts, stream->codec->time_base, stream->time_base);
                       if(avio_open_dyn_buf(&amp;outFmtCtx->pb)!= 0) {
                           printf("ERROR: Unable to open dynamic buffer\n");
                       }
                       ret = av_interleaved_write_frame(outFmtCtx, &amp;pkt);
                       unsigned char *pb_buffer;
                       int len = avio_close_dyn_buf(outFmtCtx->pb, (unsigned char **)&amp;pb_buffer);
                       avio_write(outFmtCtx->pb, (unsigned char *)pb_buffer, len);

                   } else {
                       ret = 0;
                   }
                   if(ret != 0) {
                       fprintf(stderr, "Error while writing video frame: %s\n", av_err2str(ret));
                       exit(1);
                   }

                   fprintf(stderr, "encoded frame #%d\n", frame_count);
                   frame_count++;

                   av_free_packet(&amp;pkt);
                   av_frame_free(&amp;outFrameYUV);
                   av_free(buffer);

               }
           }
           av_free_packet(&amp;inPacket);
       }
       av_write_trailer(outFmtCtx);

       //close video stream
       if(stream) {
           avcodec_close(outCodecCtx);
       }
       for (i = 0; i &lt; outFmtCtx->nb_streams; i++) {
           av_freep(&amp;outFmtCtx->streams[i]->codec);
           av_freep(&amp;outFmtCtx->streams[i]);
       }
       if (!(outFmt->flags &amp; AVFMT_NOFILE))
       /* Close the output file. */
           avio_close(outFmtCtx->pb);
       /* free the output format context */
       avformat_free_context(outFmtCtx);

       // Free the YUV frame populated by the decoder
       av_free(inFrame);

       // Close the video codec (decoder)
       avcodec_close(inCodecCtx);

       // Close the input video file
       avformat_close_input(&amp;inFmtCtx);

       return 1;

    }

    I’m not sure what I’ve done wrong here. But, what I’ve observed is that for each frame thats been encoded, my memory usage goes up by about 6MB. Backtracking afterward usually leads one of the following two culprits :

    1. avf_read_frame function in avfoundation.m
    2. av_dup_packet function in avpacket.h

    Can I also get advice on the way I’m using avio_open_dyn_buff function to be able to stream over http? I’ve also attached my ffmpeg library versions below :

       ffmpeg version N-70876-g294bb6c Copyright (c) 2000-2015 the FFmpeg developers
     built with Apple LLVM version 6.0 (clang-600.0.56) (based on LLVM 3.5svn)
     configuration: --prefix=/usr/local --enable-gpl --enable-postproc --enable-pthreads --enable-libmp3lame --enable-libtheora --enable-libx264 --enable-libvorbis --disable-mmx --disable-ssse3 --disable-armv5te --disable-armv6 --disable-neon --enable-shared --disable-static --disable-stripping
     libavutil      54. 20.100 / 54. 20.100
     libavcodec     56. 29.100 / 56. 29.100
     libavformat    56. 26.101 / 56. 26.101
     libavdevice    56.  4.100 / 56.  4.100
     libavfilter     5. 13.101 /  5. 13.101
     libswscale      3.  1.101 /  3.  1.101
     libswresample   1.  1.100 /  1.  1.100
     libpostproc    53.  3.100 / 53.  3.100
    Hyper fast Audio and Video encoder

    Valgrind analysis attached here because I exceeded stack overflow’s character limit. http://pastebin.com/MPeRhjhN

  • How can i create a portrait video using Android's MediaRecorder

    23 mars 2015, par urudroid

    I have an Android application which is able to record and play a videos in portrait mode, those features are working fine on Android phones.

    The issue comes up because this video is needed to be played also on iOS devices (after being shared through a server).

    iOS is not correctly showing the video as it looks "cropped", but videos recorded on iOS are played without issues.

    So, the main difference between videos created on Android and iOS’ is the size and the rotation.

    Im using CWAC-Camera library for preview and recording and ffmpeg to scale the video down to 320x568px (as this is the standard size for both Android and iOS apps).

    Here is the metadata from an video created from Android :

    General
    Complete name                            : android_video.mp4
    Format                                   : MPEG-4
    Format profile                           : Base Media
    Codec ID                                 : isom
    File size                                : 447 KiB
    Duration                                 : 5s 596ms
    Overall bit rate                         : 654 Kbps
    Encoded date                             : UTC 1904-01-01 00:00:00
    Tagged date                              : UTC 1904-01-01 00:00:00
    Writing application                      : Lavf56.4.101

    Video
    ID                                       : 1
    Format                                   : AVC
    Format/Info                              : Advanced Video Codec
    Format profile                           : High@L2.1
    Format settings, CABAC                   : Yes
    Format settings, ReFrames                : 4 frames
    Codec ID                                 : avc1
    Codec ID/Info                            : Advanced Video Coding
    Duration                                 : 5s 406ms
    Bit rate                                 : 536 Kbps
    Width                                    : 568 pixels
    Height                                   : 320 pixels
    Display aspect ratio                     : 16:9
    Original display aspect ratio            : 16:9
    Rotation                                 : 270°
    Frame rate mode                          : Constant
    Frame rate                               : 14.985 fps
    Color space                              : YUV
    Chroma subsampling                       : 4:2:0
    Bit depth                                : 8 bits
    Scan type                                : Progressive
    Bits/(Pixel*Frame)                       : 0.197
    Stream size                              : 354 KiB (79%)
    Writing library                          : x264 core 142
    Encoding settings                        : cabac=1 / ref=3 / deblock=1:0:0 / analyse=0x3:0x113 / me=hex / subme=7 / psy=1 / psy_rd=1.00:0.00 / mixed_ref=1 / me_range=16 / chroma_me=1 / trellis=1 / 8x8dct=1 / cqm=0 / deadzone=21,11 / fast_pskip=1 / chroma_qp_offset=-2 / threads=6 / lookahead_threads=1 / sliced_threads=0 / nr=0 / decimate=1 / interlaced=0 / bluray_compat=0 / constrained_intra=0 / bframes=3 / b_pyramid=2 / b_adapt=1 / b_bias=0 / direct=1 / weightb=1 / open_gop=0 / weightp=2 / keyint=250 / keyint_min=14 / scenecut=40 / intra_refresh=0 / rc_lookahead=40 / rc=crf / mbtree=1 / crf=23.0 / qcomp=0.60 / qpmin=0 / qpmax=69 / qpstep=4 / ip_ratio=1.40 / aq=1:1.00
    Language                                 : English
    Encoded date                             : UTC 1904-01-01 00:00:00
    Tagged date                              : UTC 1904-01-01 00:00:00

    Audio
    ID                                       : 2
    Format                                   : AAC
    Format/Info                              : Advanced Audio Codec
    Format profile                           : LC
    Codec ID                                 : 40
    Duration                                 : 5s 596ms
    Bit rate mode                            : Constant
    Bit rate                                 : 132 Kbps
    Channel(s)                               : 2 channels
    Channel(s)_Original                      : 1 channel
    Channel positions                        : Front: C
    Sampling rate                            : 44.1 KHz
    Compression mode                         : Lossy
    Stream size                              : 89.4 KiB (20%)
    Language                                 : English
    Encoded date                             : UTC 1904-01-01 00:00:00
    Tagged date                              : UTC 1904-01-01 00:00:00

    And here is the metadata from the video created on iOS :

    General
    Complete name                            : ios_video.mp4
    Format                                   : MPEG-4
    Format profile                           : Base Media / Version 2
    Codec ID                                 : mp42
    File size                                : 673 KiB
    Duration                                 : 7s 38ms
    Overall bit rate                         : 783 Kbps
    Encoded date                             : UTC 2015-03-17 19:16:36
    Tagged date                              : UTC 2015-03-17 19:16:37

    Video
    ID                                       : 2
    Format                                   : AVC
    Format/Info                              : Advanced Video Codec
    Format profile                           : Main@L3.0
    Format settings, CABAC                   : Yes
    Format settings, ReFrames                : 2 frames
    Codec ID                                 : avc1
    Codec ID/Info                            : Advanced Video Coding
    Duration                                 : 7s 33ms
    Bit rate                                 : 711 Kbps
    Width                                    : 320 pixels
    Height                                   : 568 pixels
    Display aspect ratio                     : 0.563
    Frame rate mode                          : Constant
    Frame rate                               : 30.000 fps
    Color space                              : YUV
    Chroma subsampling                       : 4:2:0
    Bit depth                                : 8 bits
    Scan type                                : Progressive
    Bits/(Pixel*Frame)                       : 0.130
    Stream size                              : 610 KiB (91%)
    Title                                    : Core Media Video
    Encoded date                             : UTC 2015-03-17 19:16:36
    Tagged date                              : UTC 2015-03-17 19:16:37
    Color primaries                          : BT.709
    Transfer characteristics                 : BT.709
    Matrix coefficients                      : BT.709
    Color range                              : Limited

    Audio
    ID                                       : 1
    Format                                   : AAC
    Format/Info                              : Advanced Audio Codec
    Format profile                           : LC
    Codec ID                                 : 40
    Duration                                 : 7s 38ms
    Source duration                          : 7s 105ms
    Bit rate mode                            : Constant
    Bit rate                                 : 64.0 Kbps
    Channel(s)                               : 2 channels
    Channel(s)_Original                      : 1 channel
    Channel positions                        : Front: C
    Sampling rate                            : 44.1 KHz
    Compression mode                         : Lossy
    Stream size                              : 56.8 KiB (8%)
    Source stream size                       : 57.2 KiB (9%)
    Title                                    : Core Media Audio
    Encoded date                             : UTC 2015-03-17 19:16:36
    Tagged date                              : UTC 2015-03-17 19:16:37

    The values width and height are inverted on Android, also the Rotation parameter is set to 270º (this is the rotation parameter for portrait videos).

    This is a sketch of how iOS’ videos look on iOS app :

    Videos recorded on iOS

    And this is how Android’s videos look on iOS app :

    enter image description here

    So, in order to get the videos correctly displayed both on iOS and Android i need to be able to set the width to 320 and height to 568 on Android. I tried it from several places (outside and inside CWAC-Camera library) but i always get a Camera.Parameters error.

    It is possible to do this on Android ?

    EDIT :

    This is the result i get when i set the rotation to 0 with ffmpeg :

    enter image description here

  • Converted Avi to Mp4 using FFMPEG, Converted video not working in html 5 Tag

    21 mars 2015, par Suprabhat

    I have a section in my web page where user can upload any types of videos of any format , currently only restricted to .mp4 and .avi. After successfull upload i have displayed the same video to the user. I have bind the path in HTML5 video so that the user can view the content he/she has uploded. Video with extension .mp4 no doubt are working properly as HTML5 support them. Tricky part is it don’t support Avi files. Now here what the problem has arised. In order to display avi videos i have used FFMPEG to convert videos with extension .avi to .mp4. With lots of googling and reading forum, i have succesfully converted avi videos to mp4 . Here’s what i have used :-

    1. ffmpeg -i input.avi -acodec libfaac -b:a 128k -vcodec mpeg4 -b:v 1200k -flags +aic+mv4 output.mp4

    2. ffmpeg -i input.avi -c:v libx264 -b:a 128k -vcodec mpeg4 -b:v 1200k -flags +aic+mv4 output.mp4

    Above two are working perfectly, they have succesfully converted the video. But when i run them on browser in HTML5 and in new tab (Flash Player Plugin Installed), HTML5 doesn’t play it and flash player return an error message "Video can’t be played because the file is corrupt". But when i played them on KMplayer and in Window media player they are running perfectly.

    I have been to various threads in stackoverflow related to convert avi to mp4 and here i found following in one of the forum. where one of user has accepted this a correct answer but it ain’t worked out for me.

    1. ffmpeg -y -i sample.avi -b:v 1500k -vcodec libx264 -vpre slow -vpre baseline -g 30 sample.mp4

    Above argument returned me following error "File for preset ’slow’ not found".

    Following my futher searches i came across this thread ffmpeg convert mov file to mp4 for HTML5 video tag IE9. Here following argument worked perfectly and it able to convert video in such way that it is playble on browser.

    1. ffmpeg -y -i input.avi -vcodec libx264 -vprofile high -preset slow -b:v 500k -maxrate 500k -bufsize 1000k -vf scale=-1:480 -threads 0 -acodec libvo_aacenc -b:a 128k -pix_fmt yuv420p output.mp4.

    Problem i faced here was video is converted to 420p reso which quality is noty upto mark. Smaller resolution videos are been enlarged and seems pixelated

    Thus, i had to finally put up a question. I will be very obliged if someone can give a solution for above problem. I need to convert an avi video to mp4 supported by HTML5 video tag. It should able to play it on browser and during conversion of video it should maintain original audio and video quality plus resolution.

    Thanks

    My C# Code :

           public void Create(string input, string output, string parametri, string ThumbnailPhysicalPath, int ConvertType)
           {
               ffmpeg = new Process();

               if (ConvertType == Convert.ToInt32(ConversionType.Thumbnail))
                   ffmpeg.StartInfo.Arguments = " -i \"" + input + "\" -vframes 1 \"" + output + "\"";
               else if (ConvertType == Convert.ToInt32(ConversionType.AviToMp4))
                   ffmpeg.StartInfo.Arguments = " -i \"" + input + "\" -c:v libx264 -b:a 128k -vcodec mpeg4 -b:v 1200k -flags +aic+mv4 \"" + output + "\"";
                   //ffmpeg.StartInfo.Arguments = " -i \"" + input + "\" -vcodec libx264 -vprofile high -preset slow -b:v 500k -maxrate 500k -bufsize 1000k -vf scale=-1:480 -threads 0 -acodec libvo_aacenc -b:a 128k -pix_fmt yuv420p \"" + output + "\"";
               ffmpeg.StartInfo.FileName = ThumbnailPhysicalPath + @"ffmpeg.exe";
               ffmpeg.StartInfo.UseShellExecute = false;
               ffmpeg.StartInfo.RedirectStandardOutput = true;
               ffmpeg.StartInfo.RedirectStandardError = true;
               ffmpeg.StartInfo.CreateNoWindow = true;
               try
               {
                   ffmpeg.Start();
                   ffmpeg.WaitForExit();
                   string error = ffmpeg.StandardError.ReadToEnd();
               }
               catch (Exception Ex)
               {
                   Common.WriteLog("Exception occurred during conversion. Error Message :- " + Ex.Message + "\n Input Parameter :- " + input+ "\n Output Paramenter :- "+ output);
               }
               finally
               {
                   ffmpeg.Close();
                   if (ConvertType == Convert.ToInt32(ConversionType.AviToMp4))
                       UpdateConvertedVideoDetails(input,output);
               }
           }

    Command Prompt FFMPEG Output :-

    Sample 3 Result :-

    D:\Client\WebSite\Converter_Tools>ffmpeg -y -i sample.avi -b:v 1500k -vcodec libx264 -vpre slow -vpre baseline -g 30 sample.mp4
    ffmpeg version N-70239-g111d79a Copyright (c) 2000-2015 the FFmpeg developers
     built with gcc 4.9.2 (GCC)
     configuration: --enable-gpl --enable-version3 --disable-w32threads --enable-avisynth --enable-bzlib --enable-fontconfig --enable-frei0r --enable-gnutls --enable-iconv --enable-libass --enable-libblu
    ray --enable-libbs2b --enable-libcaca --enable-libfreetype --enable-libgme --enable-libgsm --enable-libilbc --enable-libmodplug --enable-libmp3lame --enable-libopencore-amrnb --enable-libopencore-amrw
    b --enable-libopenjpeg --enable-libopus --enable-librtmp --enable-libschroedinger --enable-libsoxr --enable-libspeex --enable-libtheora --enable-libtwolame --enable-libvidstab --enable-libvo-aacenc --
    enable-libvo-amrwbenc --enable-libvorbis --enable-libvpx --enable-libwavpack --enable-libwebp --enable-libx264 --enable-libx265 --enable-libxavs --enable-libxvid --enable-lzma --enable-decklink --enab
    le-zlib
     libavutil      54. 19.100 / 54. 19.100
     libavcodec     56. 26.100 / 56. 26.100
     libavformat    56. 23.105 / 56. 23.105
     libavdevice    56.  4.100 / 56.  4.100
     libavfilter     5. 11.101 /  5. 11.101
     libswscale      3.  1.101 /  3.  1.101
     libswresample   1.  1.100 /  1.  1.100
     libpostproc    53.  3.100 / 53.  3.100
    [avi @ 037c8480] non-interleaved AVI
    Guessed Channel Layout for  Input Stream #0.1 : mono
    Input #0, avi, from 'sample.avi':
     Duration: 00:00:34.00, start: 0.000000, bitrate: 1433 kb/s
       Stream #0:0: Video: cinepak (cvid / 0x64697663), rgb24, 320x240, 15 fps, 15 tbr, 15 tbn, 15 tbc
       Stream #0:1: Audio: pcm_u8 ([1][0][0][0] / 0x0001), 22050 Hz, 1 channels, u8, 176 kb/s
    File for preset 'slow' not found

    Sample 4 Result :-

    D:\Client\WebSite\Converter_Tools>ffmpeg -y -i input.avi -vcodec libx264 -vprofile high -preset slow -b:v 500k -maxrate 500k -bufsize 1000k -vf scale=-1:480 -threads 0 -acodec libvo_
    aacenc -b:a 128k -pix_fmt yuv420p output.mp4
    ffmpeg version N-70239-g111d79a Copyright (c) 2000-2015 the FFmpeg developers
     built with gcc 4.9.2 (GCC)
     configuration: --enable-gpl --enable-version3 --disable-w32threads --enable-avisynth --enable-bzlib --enable-fontconfig --enable-frei0r --enable-gnutls --enable-iconv --enable-libass --enable-libblu
    ray --enable-libbs2b --enable-libcaca --enable-libfreetype --enable-libgme --enable-libgsm --enable-libilbc --enable-libmodplug --enable-libmp3lame --enable-libopencore-amrnb --enable-libopencore-amrw
    b --enable-libopenjpeg --enable-libopus --enable-librtmp --enable-libschroedinger --enable-libsoxr --enable-libspeex --enable-libtheora --enable-libtwolame --enable-libvidstab --enable-libvo-aacenc --
    enable-libvo-amrwbenc --enable-libvorbis --enable-libvpx --enable-libwavpack --enable-libwebp --enable-libx264 --enable-libx265 --enable-libxavs --enable-libxvid --enable-lzma --enable-decklink --enab
    le-zlib
     libavutil      54. 19.100 / 54. 19.100
     libavcodec     56. 26.100 / 56. 26.100
     libavformat    56. 23.105 / 56. 23.105
     libavdevice    56.  4.100 / 56.  4.100
     libavfilter     5. 11.101 /  5. 11.101
     libswscale      3.  1.101 /  3.  1.101
     libswresample   1.  1.100 /  1.  1.100
     libpostproc    53.  3.100 / 53.  3.100
    Input #0, avi, from 'input.avi':
     Duration: 00:00:03.93, start: 0.000000, bitrate: 3255 kb/s
       Stream #0:0: Video: msrle ([1][0][0][0] / 0x0001), pal8, 300x250, 3301 kb/s, 15 fps, 15 tbr, 15 tbn, 15 tbc
    [libx264 @ 002ec860] using cpu capabilities: MMX2 SSE2Fast SSSE3 SSE4.2
    [libx264 @ 002ec860] profile High, level 2.2
    [libx264 @ 002ec860] 264 - core 144 r2525 40bb568 - H.264/MPEG-4 AVC codec - Copyleft 2003-2014 - http://www.videolan.org/x264.html - options: cabac=1 ref=5 deblock=1:0:0 analyse=0x3:0x113 me=umh subm
    e=8 psy=1 psy_rd=1.00:0.00 mixed_ref=1 me_range=16 chroma_me=1 trellis=1 8x8dct=1 cqm=0 deadzone=21,11 fast_pskip=1 chroma_qp_offset=-2 threads=6 lookahead_threads=1 sliced_threads=0 nr=0 decimate=1 i
    nterlaced=0 bluray_compat=0 constrained_intra=0 bframes=3 b_pyramid=2 b_adapt=2 b_bias=0 direct=3 weightb=1 open_gop=0 weightp=2 keyint=250 keyint_min=15 scenecut=40 intra_refresh=0 rc_lookahead=50 rc
    =cbr mbtree=1 bitrate=500 ratetol=1.0 qcomp=0.60 qpmin=0 qpmax=69 qpstep=4 vbv_maxrate=500 vbv_bufsize=1000 nal_hrd=none filler=0 ip_ratio=1.40 aq=1:1.00
    Output #0, mp4, to 'output.mp4':
     Metadata:
       encoder         : Lavf56.23.105
       Stream #0:0: Video: h264 (libx264) ([33][0][0][0] / 0x0021), yuv420p, 576x480, q=-1--1, 500 kb/s, 15 fps, 15360 tbn, 15 tbc
       Metadata:
         encoder         : Lavc56.26.100 libx264
    Stream mapping:
     Stream #0:0 -> #0:0 (msrle (native) -> h264 (libx264))
    Press [q] to stop, [?] for help
    frame=   59 fps= 30 q=-1.0 Lsize=     229kB time=00:00:03.80 bitrate= 493.5kbits/s
    video:227kB audio:0kB subtitle:0kB other streams:0kB global headers:0kB muxing overhead: 0.637976%
    [libx264 @ 002ec860] frame I:3     Avg QP:26.53  size: 10657
    [libx264 @ 002ec860] frame P:25    Avg QP:30.49  size:  5608
    [libx264 @ 002ec860] frame B:31    Avg QP:32.26  size:  1935
    [libx264 @ 002ec860] consecutive B-frames: 22.0% 16.9% 20.3% 40.7%
    [libx264 @ 002ec860] mb I  I16..4: 16.7% 69.0% 14.4%
    [libx264 @ 002ec860] mb P  I16..4: 11.1% 29.9%  3.8%  P16..4: 21.3%  6.8%  2.6%  0.0%  0.0%    skip:24.6%
    [libx264 @ 002ec860] mb B  I16..4:  1.7%  3.0%  0.3%  B16..8: 29.7%  5.6%  0.8%  direct: 2.1%  skip:56.8%  L0:50.5% L1:45.6% BI: 3.9%
    [libx264 @ 002ec860] 8x8 transform intra:66.5% inter:79.4%
    [libx264 @ 002ec860] direct mvs  spatial:93.5% temporal:6.5%
    [libx264 @ 002ec860] coded y,uvDC,uvAC intra: 40.3% 48.8% 25.7% inter: 12.4% 8.4% 1.4%
    [libx264 @ 002ec860] i16 v,h,dc,p: 19% 59%  6% 17%
    [libx264 @ 002ec860] i8 v,h,dc,ddl,ddr,vr,hd,vl,hu: 10% 25% 16%  7%  8%  6% 11%  7% 10%
    [libx264 @ 002ec860] i4 v,h,dc,ddl,ddr,vr,hd,vl,hu: 20% 21%  9%  7%  9%  8% 10%  7% 10%
    [libx264 @ 002ec860] i8c dc,h,v,p: 41% 33% 13% 13%
    [libx264 @ 002ec860] Weighted P-Frames: Y:0.0% UV:0.0%
    [libx264 @ 002ec860] ref P L0: 67.6%  8.1%  9.6%  5.4%  6.6%  2.8%
    [libx264 @ 002ec860] ref B L0: 84.6% 10.5%  3.9%  1.0%
    [libx264 @ 002ec860] ref B L1: 95.9%  4.1%
    [libx264 @ 002ec860] kb/s:472.20