Converted to new libmist JSON support, added dtscfix for metadata rewriting.
This commit is contained in:
parent
61abc0e0a1
commit
b54ee2dcd2
6 changed files with 185 additions and 37 deletions
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@ -10,7 +10,8 @@
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#include <string.h>
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#include <unistd.h>
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#include <signal.h>
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#include <mist/dtsc.h> //DTSC support
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#include <mist/dtsc.h>
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#include <mist/json.h>
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#include <mist/config.h>
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/// Reads DTSC from stdin and outputs human-readable information to stderr.
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@ -50,6 +51,9 @@ int main(int argc, char ** argv) {
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if (!doneheader){
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doneheader = true;
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Strm.metadata.Print();
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JSON::Value mdata = JSON::fromDTMI(Strm.metadata.Pack(false));
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std::cout << mdata.toString() << std::endl;
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std::cout << mdata.toPrettyString() << std::endl;
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}
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Strm.getPacket().Print();
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//get current timestamp
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@ -25,14 +25,14 @@
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namespace Connector_HTTP{
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/// Returns a F4M-format manifest file
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std::string BuildManifest(std::string MovieId) {
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std::string BuildManifest(std::string MovieId, JSON::Value & metadata) {
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std::string Result="<?xml version=\"1.0\" encoding=\"utf-8\"?>\n"
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"<manifest xmlns=\"http://ns.adobe.com/f4m/1.0\">\n"
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"<id>" + MovieId + "</id>\n"
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"<mimeType>video/mp4</mimeType>\n"
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"<streamType>live</streamType>\n"
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"<deliveryType>streaming</deliveryType>\n"
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"<bootstrapInfo profile=\"named\" id=\"bootstrap1\">" + Base64::encode(MP4::GenerateLiveBootstrap(1)) + "</bootstrapInfo>\n"
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"<bootstrapInfo profile=\"named\" id=\"bootstrap1\">" + Base64::encode(MP4::GenerateLiveBootstrap(metadata)) + "</bootstrapInfo>\n"
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"<media streamId=\"1\" bootstrapInfoId=\"bootstrap1\" url=\"" + MovieId + "/\">\n"
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"</media>\n"
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"</manifest>\n";
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@ -49,6 +49,7 @@ namespace Connector_HTTP{
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HTTP::Parser HTTP_R, HTTP_S;//HTTP Receiver en HTTP Sender.
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bool ready4data = false;//Set to true when streaming is to begin.
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bool pending_manifest = false;
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bool inited = false;
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Socket::Connection ss(-1);
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std::string streamname;
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@ -84,15 +85,7 @@ namespace Connector_HTTP{
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Flash_RequestPending++;
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}else{
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streamname = HTTP_R.url.substr(1,HTTP_R.url.find("/",1)-1);
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HTTP_S.Clean();
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HTTP_S.SetHeader("Content-Type","text/xml");
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HTTP_S.SetHeader("Cache-Control","no-cache");
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std::string manifest = BuildManifest(Movie);
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HTTP_S.SetBody(manifest);
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conn.Send(HTTP_S.BuildResponse("200", "OK"));
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#if DEBUG >= 3
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printf("Sent manifest\n");
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#endif
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pending_manifest = true;
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}
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ready4data = true;
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HTTP_R.Clean(); //clean for any possible next requests
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@ -141,6 +134,19 @@ namespace Connector_HTTP{
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if (ss.spool() || ss.Received() != ""){
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if (Strm.parsePacket(ss.Received())){
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tag.DTSCLoader(Strm);
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if (pending_manifest){
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JSON::Value meta = JSON::fromDTMI(Strm.metadata.Pack(false));
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HTTP_S.Clean();
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HTTP_S.SetHeader("Content-Type","text/xml");
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HTTP_S.SetHeader("Cache-Control","no-cache");
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std::string manifest = BuildManifest(Movie, meta);
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HTTP_S.SetBody(manifest);
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conn.Send(HTTP_S.BuildResponse("200", "OK"));
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#if DEBUG >= 3
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printf("Sent manifest\n");
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#endif
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pending_manifest = false;
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}
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if (Strm.getPacket(0).getContentP("keyframe")){
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if (FlashBuf != ""){
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Flash_FragBuffer.push(FlashBuf);
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@ -140,7 +140,7 @@ int Connector_RTMP::Connector_RTMP(Socket::Connection conn){
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/// Tries to get and parse one RTMP chunk at a time.
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void Connector_RTMP::parseChunk(std::string & inbuffer){
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//for DTSC conversion
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static DTSC::DTMI meta_out;
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static JSON::Value meta_out;
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static std::stringstream prebuffer; // Temporary buffer before sending real data
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static bool sending = false;
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static unsigned int counter = 0;
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@ -222,23 +222,37 @@ void Connector_RTMP::parseChunk(std::string & inbuffer){
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case 18://meta data
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if (SS.connected()){
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F.ChunkLoader(next);
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DTSC::DTMI pack_out = F.toDTSC(meta_out);
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if (!pack_out.isEmpty()){
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JSON::Value pack_out = F.toJSON(meta_out);
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if (!pack_out.isNull()){
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if (!sending){
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counter++;
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if (counter > 8){
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sending = true;
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meta_out.Pack(true);//pack metadata
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meta_out.packed.replace(0, 4, DTSC::Magic_Header);//prepare proper header
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SS.write(meta_out.packed);//write header/metadata
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std::string packed = meta_out.toPacked();
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unsigned int size = htonl(packed.size());
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SS.write(std::string(DTSC::Magic_Header, 4));
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SS.write(std::string((char*)&size, 4));
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SS.write(packed);
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SS.write(prebuffer.str());//write buffer
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prebuffer.str("");//clear buffer
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SS.write(pack_out.Pack(true));//simply write
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packed = pack_out.toPacked();
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size = htonl(packed.size());
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SS.write(std::string(DTSC::Magic_Packet, 4));
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SS.write(std::string((char*)&size, 4));
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SS.write(packed);
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}else{
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prebuffer << pack_out.Pack(true);//buffer
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std::string packed = pack_out.toPacked();
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unsigned int size = htonl(packed.size());
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prebuffer << std::string(DTSC::Magic_Packet, 4);
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prebuffer << std::string((char*)&size, 4);
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prebuffer << packed;
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}
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}else{
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SS.write(pack_out.Pack(true));//simple write
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std::string packed = pack_out.toPacked();
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unsigned int size = htonl(packed.size());
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SS.write(std::string(DTSC::Magic_Packet, 4));
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SS.write(std::string((char*)&size, 4));
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SS.write(packed);
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}
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}
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}else{
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@ -1,5 +1,6 @@
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AM_CPPFLAGS = $(MIST_CFLAGS)
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LDADD = $(MIST_LIBS)
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bin_PROGRAMS=MistDTSC2FLV MistFLV2DTSC
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bin_PROGRAMS=MistDTSC2FLV MistFLV2DTSC MistDTSCFix
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MistDTSC2FLV_SOURCES=dtsc2flv.cpp
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MistFLV2DTSC_SOURCES=flv2dtsc.cpp
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MistDTSCFix_SOURCES=dtscfix.cpp
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117
src/converters/dtscfix.cpp
Normal file
117
src/converters/dtscfix.cpp
Normal file
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@ -0,0 +1,117 @@
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/// \file dtscfix.cpp
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/// Contains the code that will attempt to fix the metadata contained in an DTSC file.
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#include <string>
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#include <mist/dtsc.h>
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#include <mist/json.h>
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#include <mist/config.h>
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/// Holds all code that converts filetypes to/from to DTSC.
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namespace Converters{
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/// Reads an DTSC file and attempts to fix the metadata in it.
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int DTSCFix(Util::Config & conf) {
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DTSC::File F(conf.getString("filename"));
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std::string loader = F.getHeader();
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JSON::Value meta = JSON::fromDTMI(loader);
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JSON::Value pack;
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long long unsigned int firstpack = 0;
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long long unsigned int nowpack = 0;
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long long unsigned int lastaudio = 0;
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long long unsigned int lastvideo = 0;
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long long unsigned int lastkey = 0;
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long long unsigned int totalvideo = 0;
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long long unsigned int totalaudio = 0;
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long long unsigned int keyframes = 0;
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long long unsigned int key_min = 0xffffffff;
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long long unsigned int key_max = 0;
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long long unsigned int vid_min = 0xffffffff;
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long long unsigned int vid_max = 0;
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long long unsigned int aud_min = 0xffffffff;
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long long unsigned int aud_max = 0;
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long long unsigned int bfrm_min = 0xffffffff;
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long long unsigned int bfrm_max = 0;
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long long unsigned int bps = 0;
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while (loader.size() != 0){
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loader = F.getPacket();
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if (loader.size() != 0){
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pack = JSON::fromDTMI(loader);
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nowpack = pack["time"].asInt();
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if (firstpack == 0){firstpack = nowpack;}
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if (pack["datatype"].asString() == "audio"){
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if (lastaudio != 0 && (nowpack - lastaudio) != 0){
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bps = pack["data"].asString().size() / (nowpack - lastaudio);
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if (bps < aud_min){aud_min = bps;}
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if (bps > aud_max){aud_max = bps;}
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}
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totalaudio += pack["data"].asString().size();
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lastaudio = nowpack;
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}
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if (pack["datatype"].asString() == "video"){
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if (lastvideo != 0 && (nowpack - lastvideo) != 0){
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bps = pack["data"].asString().size() / (nowpack - lastvideo);
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if (bps < vid_min){vid_min = bps;}
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if (bps > vid_max){vid_max = bps;}
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}
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if (pack["keyframe"].asInt() != 0){
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if (lastkey != 0){
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bps = nowpack - lastkey;
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if (bps < key_min){key_min = bps;}
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if (bps > key_max){key_max = bps;}
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}
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keyframes++;
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lastkey = nowpack;
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}
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if (pack["offset"].asInt() != 0){
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bps = pack["offset"].asInt();
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if (bps < bfrm_min){bfrm_min = bps;}
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if (bps > bfrm_max){bfrm_max = bps;}
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}
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totalvideo += pack["data"].asString().size();
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lastvideo = nowpack;
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}
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}
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}
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std::cout << std::endl << "Summary:" << std::endl;
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meta["length"] = (long long int)((nowpack - firstpack)/1000);
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if (meta.isMember("audio")){
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meta["audio"]["bps"] = (long long int)(totalaudio / ((lastaudio - firstpack) / 1000));
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std::cout << " Audio: " << meta["audio"]["codec"].asString() << std::endl;
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std::cout << " Bitrate: " << meta["audio"]["bps"].asInt() << std::endl;
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}
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if (meta.isMember("video")){
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meta["video"]["bps"] = (long long int)(totalvideo / ((lastvideo - firstpack) / 1000));
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meta["video"]["keyms"] = (long long int)((lastvideo - firstpack) / keyframes);
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if (meta["video"]["keyms"].asInt() - key_min > key_max - meta["video"]["keyms"].asInt()){
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meta["video"]["keyvar"] = (long long int)(meta["video"]["keyms"].asInt() - key_min);
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}else{
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meta["video"]["keyvar"] = (long long int)(key_max - meta["video"]["keyms"].asInt());
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}
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std::cout << " Video: " << meta["video"]["codec"].asString() << std::endl;
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std::cout << " Bitrate: " << meta["video"]["bps"].asInt() << std::endl;
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std::cout << " Keyframes: " << meta["video"]["keyms"].asInt() << "~" << meta["video"]["keyvar"].asInt() << std::endl;
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std::cout << " B-frames: " << bfrm_min << " - " << bfrm_max << std::endl;
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}
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std::cerr << "Re-writing header..." << std::endl;
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loader = meta.toPacked();
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if (F.writeHeader(loader)){
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return 0;
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}else{
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return -1;
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}
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}//DTSCFix
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};
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/// Entry point for FLV2DTSC, simply calls Converters::FLV2DTSC().
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int main(int argc, char ** argv){
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Util::Config conf = Util::Config(argv[0], PACKAGE_VERSION);
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conf.addOption("filename", JSON::fromString("{\"arg_num\":1, \"arg\":\"string\", \"help\":\"Filename of the file to attempt to fix.\"}"));
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conf.parseArgs(argc, argv);
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return Converters::DTSCFix(conf);
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}//main
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@ -10,9 +10,10 @@
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#include <string.h>
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#include <unistd.h>
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#include <signal.h>
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#include <mist/flv_tag.h> //FLV support
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#include <mist/dtsc.h> //DTSC support
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#include <mist/amf.h> //AMF support
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#include <mist/flv_tag.h>
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#include <mist/dtsc.h>
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#include <mist/json.h>
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#include <mist/amf.h>
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#include <mist/config.h>
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/// Holds all code that converts filetypes to/from to DTSC.
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@ -21,41 +22,46 @@ namespace Converters{
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/// Reads FLV from STDIN, outputs DTSC to STDOUT.
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int FLV2DTSC() {
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FLV::Tag FLV_in; // Temporary storage for incoming FLV data.
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DTSC::DTMI meta_out; // Storage for outgoing DTMI header data.
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DTSC::DTMI pack_out; // Storage for outgoing DTMI data.
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JSON::Value meta_out; // Storage for outgoing header data.
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JSON::Value pack_out; // Storage for outgoing data.
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std::stringstream prebuffer; // Temporary buffer before sending real data
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bool sending = false;
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unsigned int counter = 0;
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while (!feof(stdin)){
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if (FLV_in.FileLoader(stdin)){
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pack_out = FLV_in.toDTSC(meta_out);
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if (pack_out.isEmpty()){continue;}
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pack_out = FLV_in.toJSON(meta_out);
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if (pack_out.isNull()){continue;}
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if (!sending){
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counter++;
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if (counter > 8){
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sending = true;
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meta_out.Pack(true);
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meta_out.packed.replace(0, 4, DTSC::Magic_Header);
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std::cout << meta_out.packed;
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std::string packed_header = meta_out.toPacked();
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unsigned int size = htonl(packed_header.size());
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std::cout << std::string(DTSC::Magic_Header, 4) << std::string((char*)&size, 4) << packed_header;
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std::cout << prebuffer.rdbuf();
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prebuffer.str("");
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std::cerr << "Buffer done, starting real-time output..." << std::endl;
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}else{
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prebuffer << pack_out.Pack(true);//buffer
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std::string packed_out = pack_out.toPacked();
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unsigned int size = htonl(packed_out.size());
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prebuffer << std::string(DTSC::Magic_Packet, 4) << std::string((char*)&size, 4) << packed_out;
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continue;//don't also write
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}
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}
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std::cout << pack_out.Pack(true);//simply write
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//simply write
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std::string packed_out = pack_out.toPacked();
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unsigned int size = htonl(packed_out.size());
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std::cout << std::string(DTSC::Magic_Packet, 4) << std::string((char*)&size, 4) << packed_out;
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}
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}
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// if the FLV input is very short, do output it correctly...
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if (!sending){
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std::cerr << "EOF - outputting buffer..." << std::endl;
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meta_out.Pack(true);
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meta_out.packed.replace(0, 4, DTSC::Magic_Header);
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std::cout << meta_out.packed;
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std::string packed_header = meta_out.toPacked();
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unsigned int size = htonl(packed_header.size());
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std::cout << std::string(DTSC::Magic_Header, 4) << std::string((char*)&size, 4) << packed_header;
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std::cout << prebuffer.rdbuf();
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}
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std::cerr << "Done!" << std::endl;
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