418 lines
13 KiB
C++
418 lines
13 KiB
C++
// Copyright 2014 Google Inc. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file or at
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// https://developers.google.com/open-source/licenses/bsd
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#include "mpd/base/mpd_builder.h"
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#include <string>
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#include "base/logging.h"
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#include "base/memory/scoped_ptr.h"
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#include "base/strings/string_number_conversions.h"
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#include "mpd/base/content_protection_element.h"
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#include "mpd/base/mpd_utils.h"
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#include "mpd/base/xml/xml_node.h"
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#include "third_party/libxml/src/include/libxml/tree.h"
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#include "third_party/libxml/src/include/libxml/xmlstring.h"
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namespace dash_packager {
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using xml::XmlNode;
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using xml::RepresentationXmlNode;
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using xml::AdaptationSetXmlNode;
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namespace {
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std::string GetMimeType(
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const std::string& prefix,
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MediaInfo::ContainerType container_type) {
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switch (container_type) {
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case MediaInfo::CONTAINER_MP4:
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return prefix + "/mp4";
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case MediaInfo::CONTAINER_MPEG2_TS:
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// NOTE: DASH MPD spec uses lowercase but RFC3555 says uppercase.
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return prefix + "/MP2T";
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case MediaInfo::CONTAINER_WEBM:
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return prefix + "/webm";
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default:
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break;
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}
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// Unsupported container types should be rejected/handled by the caller.
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NOTREACHED() << "Unrecognized container type: " << container_type;
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return std::string();
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}
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void AddMpdNameSpaceInfo(XmlNode* mpd) {
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DCHECK(mpd);
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static const char kXmlNamespace[] = "urn:mpeg:DASH:schema:MPD:2011";
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mpd->SetStringAttribute("xmlns", kXmlNamespace);
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static const char kXmlNamespaceXsi[] = "http://www.w3.org/2001/XMLSchema-instance";
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mpd->SetStringAttribute("xmlns:xsi", kXmlNamespaceXsi);
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static const char kXmlNamespaceXlink[] = "http://www.w3.org/1999/xlink";
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mpd->SetStringAttribute("xmlns:xlink", kXmlNamespaceXlink);
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static const char kDashSchemaMpd2011[] =
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"urn:mpeg:DASH:schema:MPD:2011 DASH-MPD.xsd";
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mpd->SetStringAttribute("xsi:schemaLocation", kDashSchemaMpd2011);
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}
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bool IsPeriodNode(xmlNodePtr node) {
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DCHECK(node);
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int kEqual = 0;
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return xmlStrcmp(node->name, reinterpret_cast<const xmlChar*>("Period")) ==
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kEqual;
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}
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// Find the first <Period> element. This does not recurse down the tree,
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// only checks direct children. Returns the pointer to Period element on
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// success, otherwise returns false.
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// As noted here, we must traverse.
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// http://www.xmlsoft.org/tutorial/ar01s04.html
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xmlNodePtr FindPeriodNode(XmlNode* xml_node) {
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for (xmlNodePtr node = xml_node->GetRawPtr()->xmlChildrenNode;
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node != NULL;
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node = node->next) {
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if (IsPeriodNode(node))
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return node;
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}
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return NULL;
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}
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} // namespace
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MpdBuilder::MpdBuilder(MpdType type)
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: type_(type),
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adaptation_sets_deleter_(&adaptation_sets_) {}
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MpdBuilder::~MpdBuilder() {}
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void MpdBuilder::AddBaseUrl(const std::string& base_url) {
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base::AutoLock scoped_lock(lock_);
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base_urls_.push_back(base_url);
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}
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AdaptationSet* MpdBuilder::AddAdaptationSet() {
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base::AutoLock scoped_lock(lock_);
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scoped_ptr<AdaptationSet> adaptation_set(new AdaptationSet(
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adaptation_set_counter_.GetNext(), &representation_counter_));
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DCHECK(adaptation_set);
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adaptation_sets_.push_back(adaptation_set.get());
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return adaptation_set.release();
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}
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bool MpdBuilder::ToString(std::string* output) {
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base::AutoLock scoped_lock(lock_);
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return ToStringImpl(output);
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}
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bool MpdBuilder::ToStringImpl(std::string* output) {
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xmlInitParser();
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xml::ScopedXmlPtr<xmlDoc>::type doc(GenerateMpd());
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if (!doc.get())
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return false;
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static const int kNiceFormat = 1;
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int doc_str_size = 0;
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xmlChar* doc_str = NULL;
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xmlDocDumpFormatMemoryEnc(
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doc.get(), &doc_str, &doc_str_size, "UTF-8", kNiceFormat);
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output->assign(doc_str, doc_str + doc_str_size);
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xmlFree(doc_str);
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DLOG(INFO) << *output;
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// Cleanup, free the doc then cleanup parser.
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doc.reset();
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xmlCleanupParser();
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return true;
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}
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xmlDocPtr MpdBuilder::GenerateMpd() {
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// Setup nodes.
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static const char kXmlVersion[] = "1.0";
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xml::ScopedXmlPtr<xmlDoc>::type doc(xmlNewDoc(BAD_CAST kXmlVersion));
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XmlNode mpd("MPD");
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AddMpdNameSpaceInfo(&mpd);
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const float kMinBufferTime = 2.0f;
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mpd.SetStringAttribute("minBufferTime", SecondsToXmlDuration(kMinBufferTime));
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// Iterate thru AdaptationSets and add them to one big Period element.
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XmlNode period("Period");
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std::list<AdaptationSet*>::iterator adaptation_sets_it =
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adaptation_sets_.begin();
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for (; adaptation_sets_it != adaptation_sets_.end(); ++adaptation_sets_it) {
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xml::ScopedXmlPtr<xmlNode>::type child((*adaptation_sets_it)->GetXml());
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if (!child.get() || !period.AddChild(child.Pass()))
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return NULL;
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}
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// Add baseurls to MPD.
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std::list<std::string>::const_iterator base_urls_it = base_urls_.begin();
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for (; base_urls_it != base_urls_.end(); ++base_urls_it) {
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XmlNode base_url("BaseURL");
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base_url.SetContent(*base_urls_it);
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if (!mpd.AddChild(base_url.PassScopedPtr()))
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return NULL;
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}
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if (!mpd.AddChild(period.PassScopedPtr()))
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return NULL;
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switch (type_) {
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case kStatic:
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AddStaticMpdInfo(&mpd);
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break;
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case kDynamic:
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NOTIMPLEMENTED() << "MPD for live is not implemented.";
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break;
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default:
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NOTREACHED() << "Unknown MPD type: " << type_;
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break;
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}
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DCHECK(doc);
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xmlDocSetRootElement(doc.get(), mpd.Release());
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return doc.release();
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}
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void MpdBuilder::AddStaticMpdInfo(XmlNode* mpd_node) {
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DCHECK(mpd_node);
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DCHECK_EQ(MpdBuilder::kStatic, type_);
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static const char kStaticMpdType[] = "static";
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static const char kStaticMpdProfile[] =
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"urn:mpeg:dash:profile:isoff-on-demand:2011";
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mpd_node->SetStringAttribute("type", kStaticMpdType);
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mpd_node->SetStringAttribute("profiles", kStaticMpdProfile);
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mpd_node->SetStringAttribute(
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"mediaPresentationDuration",
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SecondsToXmlDuration(GetStaticMpdDuration(mpd_node)));
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}
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float MpdBuilder::GetStaticMpdDuration(XmlNode* mpd_node) {
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DCHECK(mpd_node);
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DCHECK_EQ(MpdBuilder::kStatic, type_);
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xmlNodePtr period_node = FindPeriodNode(mpd_node);
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DCHECK(period_node) << "Period element must be a child of mpd_node.";
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DCHECK(IsPeriodNode(period_node));
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// Attribute mediaPresentationDuration must be present for 'static' MPD. So
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// setting "PT0S" is required even if none of the representaions have duration
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// attribute.
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float max_duration = 0.0f;
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for (xmlNodePtr adaptation_set = xmlFirstElementChild(period_node);
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adaptation_set;
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adaptation_set = xmlNextElementSibling(adaptation_set)) {
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for (xmlNodePtr representation = xmlFirstElementChild(adaptation_set);
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representation;
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representation = xmlNextElementSibling(representation)) {
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float duration = 0.0f;
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if (GetDurationAttribute(representation, &duration)) {
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max_duration = max_duration > duration ? max_duration : duration;
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// 'duration' attribute is there only to help generate MPD, not
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// necessary for MPD, remove the attribute.
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xmlUnsetProp(representation, BAD_CAST "duration");
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}
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}
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}
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return max_duration;
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}
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AdaptationSet::AdaptationSet(uint32 adaptation_set_id,
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base::AtomicSequenceNumber* counter)
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: representations_deleter_(&representations_),
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representation_counter_(counter),
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id_(adaptation_set_id) {
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DCHECK(counter);
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}
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AdaptationSet::~AdaptationSet() {}
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Representation* AdaptationSet::AddRepresentation(const MediaInfo& media_info) {
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base::AutoLock scoped_lock(lock_);
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scoped_ptr<Representation> representation(
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new Representation(media_info, representation_counter_->GetNext()));
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if (!representation->Init())
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return NULL;
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representations_.push_back(representation.get());
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return representation.release();
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}
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void AdaptationSet::AddContentProtectionElement(
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const ContentProtectionElement& content_protection_element) {
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base::AutoLock scoped_lock(lock_);
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content_protection_elements_.push_back(content_protection_element);
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RemoveDuplicateAttributes(&content_protection_elements_.back());
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}
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// Creates a copy of <AdaptationSet> xml element, iterate thru all the
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// <Representation> (child) elements and add them to the copy.
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xml::ScopedXmlPtr<xmlNode>::type AdaptationSet::GetXml() {
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base::AutoLock scoped_lock(lock_);
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AdaptationSetXmlNode adaptation_set;
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if (!adaptation_set.AddContentProtectionElements(
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content_protection_elements_)) {
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return xml::ScopedXmlPtr<xmlNode>::type();
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}
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std::list<Representation*>::iterator representation_it =
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representations_.begin();
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for (; representation_it != representations_.end(); ++representation_it) {
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xml::ScopedXmlPtr<xmlNode>::type child((*representation_it)->GetXml());
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if (!child.get() || !adaptation_set.AddChild(child.Pass()))
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return xml::ScopedXmlPtr<xmlNode>::type();
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}
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adaptation_set.SetId(id_);
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return adaptation_set.PassScopedPtr();
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}
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Representation::Representation(const MediaInfo& media_info, uint32 id)
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: media_info_(media_info), id_(id) {}
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Representation::~Representation() {}
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bool Representation::Init() {
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if (!HasRequiredMediaInfoFields())
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return false;
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codecs_ = GetCodecs(media_info_);
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if (codecs_.empty()) {
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LOG(ERROR) << "Missing codec info in MediaInfo.";
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return false;
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}
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const bool has_video_info = media_info_.video_info_size() > 0;
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const bool has_audio_info = media_info_.audio_info_size() > 0;
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if (!has_video_info && !has_audio_info) {
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// This is an error. Segment information can be in AdaptationSet, Period, or
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// MPD but the interface does not provide a way to set them.
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// See 5.3.9.1 ISO 23009-1:2012 for segment info.
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LOG(ERROR) << "Representation needs video or audio.";
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return false;
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}
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if (media_info_.container_type() == MediaInfo::CONTAINER_UNKNOWN) {
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LOG(ERROR) << "'container_type' in MediaInfo cannot be CONTAINER_UNKNOWN.";
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return false;
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}
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// Check video and then audio. Usually when there is audio + video, we take
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// video/<type>.
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if (has_video_info) {
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mime_type_ = GetVideoMimeType();
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} else if (has_audio_info) {
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mime_type_ = GetAudioMimeType();
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}
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return true;
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}
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void Representation::AddContentProtectionElement(
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const ContentProtectionElement& content_protection_element) {
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base::AutoLock scoped_lock(lock_);
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content_protection_elements_.push_back(content_protection_element);
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RemoveDuplicateAttributes(&content_protection_elements_.back());
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}
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bool Representation::AddNewSegment(uint64 start_time, uint64 duration) {
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base::AutoLock scoped_lock(lock_);
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segment_starttime_duration_pairs_.push_back(
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std::pair<uint64, uint64>(start_time, duration));
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return true;
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}
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// Uses info in |media_info_| and |content_protection_elements_| to create a
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// "Representation" node.
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// MPD schema has strict ordering. The following must be done in order.
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// AddVideoInfo() (possibly adds FramePacking elements), AddAudioInfo() (Adds
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// AudioChannelConfig elements), AddContentProtectionElements*(), and
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// AddVODOnlyInfo() (Adds segment info).
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xml::ScopedXmlPtr<xmlNode>::type Representation::GetXml() {
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base::AutoLock scoped_lock(lock_);
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DCHECK(!(HasVODOnlyFields(media_info_) && HasLiveOnlyFields(media_info_)));
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DCHECK(media_info_.has_bandwidth());
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RepresentationXmlNode representation;
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// Mandatory fields for Representation.
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representation.SetId(id_);
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representation.SetIntegerAttribute("bandwidth", media_info_.bandwidth());
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representation.SetStringAttribute("codecs", codecs_);
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representation.SetStringAttribute("mimeType", mime_type_);
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const bool has_video_info = media_info_.video_info_size() > 0;
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const bool has_audio_info = media_info_.audio_info_size() > 0;
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if (has_video_info &&
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!representation.AddVideoInfo(media_info_.video_info())) {
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LOG(ERROR) << "Failed to add video info to Representation XML.";
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return xml::ScopedXmlPtr<xmlNode>::type();
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}
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if (has_audio_info &&
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!representation.AddAudioInfo(media_info_.audio_info())) {
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LOG(ERROR) << "Failed to add audio info to Representation XML.";
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return xml::ScopedXmlPtr<xmlNode>::type();
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}
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if (!representation.AddContentProtectionElements(
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content_protection_elements_)) {
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return xml::ScopedXmlPtr<xmlNode>::type();
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}
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if (!representation.AddContentProtectionElementsFromMediaInfo(media_info_))
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return xml::ScopedXmlPtr<xmlNode>::type();
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if (HasVODOnlyFields(media_info_) &&
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!representation.AddVODOnlyInfo(media_info_)) {
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LOG(ERROR) << "Failed to add VOD segment info.";
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return xml::ScopedXmlPtr<xmlNode>::type();
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}
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return representation.PassScopedPtr();
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}
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bool Representation::HasRequiredMediaInfoFields() {
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if (HasVODOnlyFields(media_info_) && HasLiveOnlyFields(media_info_)) {
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LOG(ERROR) << "MediaInfo cannot have both VOD and Live fields.";
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return false;
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}
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if (!media_info_.has_bandwidth()) {
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LOG(ERROR) << "MediaInfo missing required field: bandwidth.";
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return false;
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}
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if (!media_info_.has_container_type()) {
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LOG(ERROR) << "MediaInfo missing required field: container_type.";
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return false;
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}
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return true;
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}
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std::string Representation::GetVideoMimeType() const {
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return GetMimeType("video", media_info_.container_type());
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}
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std::string Representation::GetAudioMimeType() const {
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return GetMimeType("audio", media_info_.container_type());
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}
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} // namespace dash_packager
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