304 lines
10 KiB
C
304 lines
10 KiB
C
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/*
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* Copyright (c) 2011 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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// This file contains structures for describing SSRCs from a media source such
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// as a MediaStreamTrack when it is sent across an RTP session. Multiple media
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// sources may be sent across the same RTP session, each of them will be
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// described by one StreamParams object
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// SsrcGroup is used to describe the relationship between the SSRCs that
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// are used for this media source.
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// E.x: Consider a source that is sent as 3 simulcast streams
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// Let the simulcast elements have SSRC 10, 20, 30.
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// Let each simulcast element use FEC and let the protection packets have
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// SSRC 11,21,31.
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// To describe this 4 SsrcGroups are needed,
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// StreamParams would then contain ssrc = {10,11,20,21,30,31} and
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// ssrc_groups = {{SIM,{10,20,30}, {FEC,{10,11}, {FEC, {20,21}, {FEC {30,31}}}
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// Please see RFC 5576.
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#ifndef WEBRTC_MEDIA_BASE_STREAMPARAMS_H_
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#define WEBRTC_MEDIA_BASE_STREAMPARAMS_H_
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#include <algorithm>
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#include <set>
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#include <string>
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#include <vector>
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#include "webrtc/base/basictypes.h"
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#include "webrtc/base/constructormagic.h"
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namespace cricket {
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extern const char kFecSsrcGroupSemantics[];
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extern const char kFidSsrcGroupSemantics[];
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extern const char kSimSsrcGroupSemantics[];
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struct SsrcGroup {
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SsrcGroup(const std::string& usage, const std::vector<uint32_t>& ssrcs)
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: semantics(usage), ssrcs(ssrcs) {}
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bool operator==(const SsrcGroup& other) const {
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return (semantics == other.semantics && ssrcs == other.ssrcs);
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}
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bool operator!=(const SsrcGroup &other) const {
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return !(*this == other);
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}
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bool has_semantics(const std::string& semantics) const;
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std::string ToString() const;
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std::string semantics; // e.g FIX, FEC, SIM.
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std::vector<uint32_t> ssrcs; // SSRCs of this type.
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};
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struct StreamParams {
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static StreamParams CreateLegacy(uint32_t ssrc) {
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StreamParams stream;
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stream.ssrcs.push_back(ssrc);
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return stream;
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}
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bool operator==(const StreamParams& other) const {
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return (groupid == other.groupid &&
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id == other.id &&
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ssrcs == other.ssrcs &&
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ssrc_groups == other.ssrc_groups &&
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type == other.type &&
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display == other.display &&
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cname == other.cname &&
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sync_label == other.sync_label);
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}
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bool operator!=(const StreamParams &other) const {
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return !(*this == other);
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}
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uint32_t first_ssrc() const {
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if (ssrcs.empty()) {
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return 0;
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}
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return ssrcs[0];
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}
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bool has_ssrcs() const {
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return !ssrcs.empty();
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}
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bool has_ssrc(uint32_t ssrc) const {
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return std::find(ssrcs.begin(), ssrcs.end(), ssrc) != ssrcs.end();
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}
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void add_ssrc(uint32_t ssrc) { ssrcs.push_back(ssrc); }
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bool has_ssrc_groups() const {
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return !ssrc_groups.empty();
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}
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bool has_ssrc_group(const std::string& semantics) const {
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return (get_ssrc_group(semantics) != NULL);
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}
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const SsrcGroup* get_ssrc_group(const std::string& semantics) const {
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for (std::vector<SsrcGroup>::const_iterator it = ssrc_groups.begin();
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it != ssrc_groups.end(); ++it) {
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if (it->has_semantics(semantics)) {
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return &(*it);
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}
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}
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return NULL;
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}
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// Convenience function to add an FID ssrc for a primary_ssrc
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// that's already been added.
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inline bool AddFidSsrc(uint32_t primary_ssrc, uint32_t fid_ssrc) {
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return AddSecondarySsrc(kFidSsrcGroupSemantics, primary_ssrc, fid_ssrc);
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}
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// Convenience function to lookup the FID ssrc for a primary_ssrc.
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// Returns false if primary_ssrc not found or FID not defined for it.
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inline bool GetFidSsrc(uint32_t primary_ssrc, uint32_t* fid_ssrc) const {
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return GetSecondarySsrc(kFidSsrcGroupSemantics, primary_ssrc, fid_ssrc);
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}
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// Convenience to get all the SIM SSRCs if there are SIM ssrcs, or
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// the first SSRC otherwise.
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void GetPrimarySsrcs(std::vector<uint32_t>* ssrcs) const;
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// Convenience to get all the FID SSRCs for the given primary ssrcs.
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// If a given primary SSRC does not have a FID SSRC, the list of FID
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// SSRCS will be smaller than the list of primary SSRCs.
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void GetFidSsrcs(const std::vector<uint32_t>& primary_ssrcs,
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std::vector<uint32_t>* fid_ssrcs) const;
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std::string ToString() const;
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// Resource of the MUC jid of the participant of with this stream.
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// For 1:1 calls, should be left empty (which means remote streams
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// and local streams should not be mixed together).
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std::string groupid;
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// Unique per-groupid, not across all groupids
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std::string id;
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std::vector<uint32_t> ssrcs; // All SSRCs for this source
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std::vector<SsrcGroup> ssrc_groups; // e.g. FID, FEC, SIM
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// Examples: "camera", "screencast"
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std::string type;
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// Friendly name describing stream
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std::string display;
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std::string cname; // RTCP CNAME
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std::string sync_label; // Friendly name of cname.
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private:
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bool AddSecondarySsrc(const std::string& semantics,
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uint32_t primary_ssrc,
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uint32_t secondary_ssrc);
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bool GetSecondarySsrc(const std::string& semantics,
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uint32_t primary_ssrc,
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uint32_t* secondary_ssrc) const;
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};
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// A Stream can be selected by either groupid+id or ssrc.
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struct StreamSelector {
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explicit StreamSelector(uint32_t ssrc) : ssrc(ssrc) {}
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StreamSelector(const std::string& groupid,
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const std::string& streamid) :
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ssrc(0),
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groupid(groupid),
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streamid(streamid) {
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}
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bool Matches(const StreamParams& stream) const {
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if (ssrc == 0) {
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return stream.groupid == groupid && stream.id == streamid;
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} else {
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return stream.has_ssrc(ssrc);
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}
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}
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uint32_t ssrc;
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std::string groupid;
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std::string streamid;
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};
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typedef std::vector<StreamParams> StreamParamsVec;
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// A collection of audio and video and data streams. Most of the
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// methods are merely for convenience. Many of these methods are keyed
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// by ssrc, which is the source identifier in the RTP spec
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// (http://tools.ietf.org/html/rfc3550).
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// TODO(pthatcher): Add basic unit test for these.
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// See https://code.google.com/p/webrtc/issues/detail?id=4107
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struct MediaStreams {
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public:
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MediaStreams() {}
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void CopyFrom(const MediaStreams& sources);
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bool empty() const {
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return audio_.empty() && video_.empty() && data_.empty();
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}
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std::vector<StreamParams>* mutable_audio() { return &audio_; }
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std::vector<StreamParams>* mutable_video() { return &video_; }
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std::vector<StreamParams>* mutable_data() { return &data_; }
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const std::vector<StreamParams>& audio() const { return audio_; }
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const std::vector<StreamParams>& video() const { return video_; }
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const std::vector<StreamParams>& data() const { return data_; }
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// Gets a stream, returning true if found.
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bool GetAudioStream(
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const StreamSelector& selector, StreamParams* stream);
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bool GetVideoStream(
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const StreamSelector& selector, StreamParams* stream);
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bool GetDataStream(
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const StreamSelector& selector, StreamParams* stream);
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// Adds a stream.
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void AddAudioStream(const StreamParams& stream);
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void AddVideoStream(const StreamParams& stream);
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void AddDataStream(const StreamParams& stream);
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// Removes a stream, returning true if found and removed.
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bool RemoveAudioStream(const StreamSelector& selector);
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bool RemoveVideoStream(const StreamSelector& selector);
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bool RemoveDataStream(const StreamSelector& selector);
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private:
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std::vector<StreamParams> audio_;
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std::vector<StreamParams> video_;
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std::vector<StreamParams> data_;
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RTC_DISALLOW_COPY_AND_ASSIGN(MediaStreams);
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};
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template <class Condition>
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const StreamParams* GetStream(const StreamParamsVec& streams,
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Condition condition) {
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StreamParamsVec::const_iterator found =
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std::find_if(streams.begin(), streams.end(), condition);
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return found == streams.end() ? nullptr : &(*found);
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}
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inline const StreamParams* GetStreamBySsrc(const StreamParamsVec& streams,
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uint32_t ssrc) {
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return GetStream(streams,
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[&ssrc](const StreamParams& sp) { return sp.has_ssrc(ssrc); });
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}
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inline const StreamParams* GetStreamByIds(const StreamParamsVec& streams,
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const std::string& groupid,
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const std::string& id) {
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return GetStream(streams,
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[&groupid, &id](const StreamParams& sp) {
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return sp.groupid == groupid && sp.id == id;
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});
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}
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inline const StreamParams* GetStream(const StreamParamsVec& streams,
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const StreamSelector& selector) {
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return GetStream(streams,
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[&selector](const StreamParams& sp) { return selector.Matches(sp); });
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}
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template <class Condition>
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bool RemoveStream(StreamParamsVec* streams, Condition condition) {
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auto iter(std::remove_if(streams->begin(), streams->end(), condition));
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if (iter == streams->end())
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return false;
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streams->erase(iter, streams->end());
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return true;
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}
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// Removes the stream from streams. Returns true if a stream is
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// found and removed.
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inline bool RemoveStream(StreamParamsVec* streams,
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const StreamSelector& selector) {
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return RemoveStream(streams,
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[&selector](const StreamParams& sp) { return selector.Matches(sp); });
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}
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inline bool RemoveStreamBySsrc(StreamParamsVec* streams, uint32_t ssrc) {
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return RemoveStream(streams,
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[&ssrc](const StreamParams& sp) { return sp.has_ssrc(ssrc); });
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}
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inline bool RemoveStreamByIds(StreamParamsVec* streams,
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const std::string& groupid,
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const std::string& id) {
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return RemoveStream(streams,
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[&groupid, &id](const StreamParams& sp) {
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return sp.groupid == groupid && sp.id == id;
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});
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}
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// Checks if |sp| defines parameters for a single primary stream. There may
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// be an RTX stream associated with the primary stream. Leaving as non-static so
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// we can test this function.
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bool IsOneSsrcStream(const StreamParams& sp);
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// Checks if |sp| defines parameters for one Simulcast stream. There may be RTX
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// streams associated with the simulcast streams. Leaving as non-static so we
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// can test this function.
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bool IsSimulcastStream(const StreamParams& sp);
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} // namespace cricket
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#endif // WEBRTC_MEDIA_BASE_STREAMPARAMS_H_
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