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webrtc/webrtc/modules/audio_coding/neteq4/audio_multi_vector.h
henrik.lundin@webrtc.org d94659dc27 Initial upload of NetEq4
This is the first public upload of the new NetEq, version 4.

It has been through extensive internal review during the course of
the project.

TEST=trybots

Review URL: https://webrtc-codereview.appspot.com/1073005

git-svn-id: http://webrtc.googlecode.com/svn/trunk@3425 4adac7df-926f-26a2-2b94-8c16560cd09d
2013-01-29 12:09:21 +00:00

133 lines
5.3 KiB
C++

/*
* Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
*
* Use of this source code is governed by a BSD-style license
* that can be found in the LICENSE file in the root of the source
* tree. An additional intellectual property rights grant can be found
* in the file PATENTS. All contributing project authors may
* be found in the AUTHORS file in the root of the source tree.
*/
#ifndef WEBRTC_MODULES_AUDIO_CODING_NETEQ4_AUDIO_MULTI_VECTOR_H_
#define WEBRTC_MODULES_AUDIO_CODING_NETEQ4_AUDIO_MULTI_VECTOR_H_
#include <cstring> // Access to size_t.
#include <vector>
#include "webrtc/modules/audio_coding/neteq4/audio_vector.h"
#include "webrtc/system_wrappers/interface/constructor_magic.h"
namespace webrtc {
template <typename T>
class AudioMultiVector {
public:
// Creates an empty AudioMultiVector with |N| audio channels. |N| must be
// larger than 0.
explicit AudioMultiVector(size_t N);
// Creates an AudioMultiVector with |N| audio channels, each channel having
// an initial size. |N| must be larger than 0.
AudioMultiVector(size_t N, size_t initial_size);
virtual ~AudioMultiVector();
// Deletes all values and make the vector empty.
virtual void Clear();
// Clears the vector and inserts |length| zeros into each channel.
virtual void Zeros(size_t length);
// Copies all values from this vector to |copy_to|. Any contents in |copy_to|
// are deleted. After the operation is done, |copy_to| will be an exact
// replica of this object. The source and the destination must have the same
// number of channels.
virtual void CopyFrom(AudioMultiVector<T>* copy_to) const;
// Appends the contents of array |append_this| to the end of this
// object. The array is assumed to be channel-interleaved. |length| must be
// an even multiple of this object's number of channels.
// The length of this object is increased with the |length| divided by the
// number of channels.
virtual void PushBackInterleaved(const T* append_this, size_t length);
// Appends the contents of AudioMultiVector |append_this| to this object. The
// length of this object is increased with the length of |append_this|.
virtual void PushBack(const AudioMultiVector<T>& append_this);
// Appends the contents of AudioMultiVector |append_this| to this object,
// taken from |index| up until the end of |append_this|. The length of this
// object is increased.
virtual void PushBackFromIndex(const AudioMultiVector<T>& append_this,
size_t index);
// Removes |length| elements from the beginning of this object, from each
// channel.
virtual void PopFront(size_t length);
// Removes |length| elements from the end of this object, from each
// channel.
virtual void PopBack(size_t length);
// Reads |length| samples from each channel and writes them interleaved to
// |destination|. The total number of elements written to |destination| is
// returned, i.e., |length| * number of channels. If the AudioMultiVector
// contains less than |length| samples per channel, this is reflected in the
// return value.
virtual size_t ReadInterleaved(size_t length, T* destination) const;
// Like ReadInterleaved() above, but reads from |start_index| instead of from
// the beginning.
virtual size_t ReadInterleavedFromIndex(size_t start_index,
size_t length,
T* destination) const;
// Like ReadInterleaved() above, but reads from the end instead of from
// the beginning.
virtual size_t ReadInterleavedFromEnd(size_t length,
T* destination) const;
// Overwrites each channel in this AudioMultiVector with values taken from
// |insert_this|. The values are taken from the beginning of |insert_this| and
// are inserted starting at |position|. |length| values are written into each
// channel. If |length| and |position| are selected such that the new data
// extends beyond the end of the current AudioVector, the vector is extended
// to accommodate the new data. |length| is limited to the length of
// |insert_this|.
virtual void OverwriteAt(const AudioMultiVector<T>& insert_this,
size_t length,
size_t position);
// Appends |append_this| to the end of the current vector. Lets the two
// vectors overlap by |fade_length| samples (per channel), and cross-fade
// linearly in this region.
virtual void CrossFade(const AudioMultiVector<T>& append_this,
size_t fade_length);
// Returns the number of channels.
virtual size_t Channels() const { return channels_.size(); }
// Returns the number of elements per channel in this AudioMultiVector.
virtual size_t Size() const;
// Verify that each channel can hold at least |required_size| elements. If
// not, extend accordingly.
virtual void AssertSize(size_t required_size);
virtual bool Empty() const;
// Accesses and modifies a channel (i.e., an AudioVector object) of this
// AudioMultiVector.
const AudioVector<T>& operator[](size_t index) const;
AudioVector<T>& operator[](size_t index);
protected:
std::vector<AudioVector<T>*> channels_;
private:
DISALLOW_COPY_AND_ASSIGN(AudioMultiVector);
};
} // namespace webrtc
#endif // WEBRTC_MODULES_AUDIO_CODING_NETEQ4_AUDIO_MULTI_VECTOR_H_