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flac/src/libFLAC++/stream_encoder.cpp

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/* libFLAC++ - Free Lossless Audio Codec library
* Copyright (C) 2002 Josh Coalson
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public
* License along with this library; if not, write to the
* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
* Boston, MA 02111-1307, USA.
*/
#include "FLAC++/encoder.h"
#include "FLAC/assert.h"
namespace FLAC {
namespace Encoder {
const char *Stream::State::resolved_as_cstring(const Stream &encoder) const
{
if(state_ == ::FLAC__STREAM_ENCODER_VERIFY_DECODER_ERROR)
return encoder.get_verify_decoder_state().as_cstring();
else
return as_cstring();
}
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Stream::Stream():
encoder_(::FLAC__stream_encoder_new())
{ }
Stream::~Stream()
{
if(0 != encoder_) {
::FLAC__stream_encoder_finish(encoder_);
::FLAC__stream_encoder_delete(encoder_);
}
}
bool Stream::is_valid() const
{
return 0 != encoder_;
}
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bool Stream::set_verify(bool value)
{
FLAC__ASSERT(is_valid());
return (bool)::FLAC__stream_encoder_set_verify(encoder_, value);
}
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bool Stream::set_streamable_subset(bool value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_streamable_subset(encoder_, value);
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}
bool Stream::set_do_mid_side_stereo(bool value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_do_mid_side_stereo(encoder_, value);
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}
bool Stream::set_loose_mid_side_stereo(bool value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_loose_mid_side_stereo(encoder_, value);
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}
bool Stream::set_channels(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_channels(encoder_, value);
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}
bool Stream::set_bits_per_sample(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_bits_per_sample(encoder_, value);
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}
bool Stream::set_sample_rate(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_sample_rate(encoder_, value);
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}
bool Stream::set_blocksize(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_blocksize(encoder_, value);
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}
bool Stream::set_max_lpc_order(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_max_lpc_order(encoder_, value);
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}
bool Stream::set_qlp_coeff_precision(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_qlp_coeff_precision(encoder_, value);
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}
bool Stream::set_do_qlp_coeff_prec_search(bool value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_do_qlp_coeff_prec_search(encoder_, value);
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}
bool Stream::set_do_escape_coding(bool value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_do_escape_coding(encoder_, value);
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}
bool Stream::set_do_exhaustive_model_search(bool value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_do_exhaustive_model_search(encoder_, value);
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}
bool Stream::set_min_residual_partition_order(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_min_residual_partition_order(encoder_, value);
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}
bool Stream::set_max_residual_partition_order(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_max_residual_partition_order(encoder_, value);
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}
bool Stream::set_rice_parameter_search_dist(unsigned value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_rice_parameter_search_dist(encoder_, value);
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}
bool Stream::set_total_samples_estimate(FLAC__uint64 value)
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_total_samples_estimate(encoder_, value);
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}
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bool Stream::set_metadata(::FLAC__StreamMetadata **metadata, unsigned num_blocks)
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{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_set_metadata(encoder_, metadata, num_blocks);
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}
Stream::State Stream::get_state() const
{
FLAC__ASSERT(is_valid());
return State(::FLAC__stream_encoder_get_state(encoder_));
}
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Decoder::Stream::State Stream::get_verify_decoder_state() const
{
FLAC__ASSERT(is_valid());
return Decoder::Stream::State(::FLAC__stream_encoder_get_verify_decoder_state(encoder_));
}
void Stream::get_verify_decoder_error_stats(FLAC__uint64 *absolute_sample, unsigned *frame_number, unsigned *channel, unsigned *sample, FLAC__int32 *expected, FLAC__int32 *got)
{
FLAC__ASSERT(is_valid());
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::FLAC__stream_encoder_get_verify_decoder_error_stats(encoder_, absolute_sample, frame_number, channel, sample, expected, got);
}
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bool Stream::get_verify() const
{
FLAC__ASSERT(is_valid());
return (bool)::FLAC__stream_encoder_get_verify(encoder_);
}
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bool Stream::get_streamable_subset() const
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_get_streamable_subset(encoder_);
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}
bool Stream::get_do_mid_side_stereo() const
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_get_do_mid_side_stereo(encoder_);
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}
bool Stream::get_loose_mid_side_stereo() const
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_get_loose_mid_side_stereo(encoder_);
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}
unsigned Stream::get_channels() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_channels(encoder_);
}
unsigned Stream::get_bits_per_sample() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_bits_per_sample(encoder_);
}
unsigned Stream::get_sample_rate() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_sample_rate(encoder_);
}
unsigned Stream::get_blocksize() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_blocksize(encoder_);
}
unsigned Stream::get_max_lpc_order() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_max_lpc_order(encoder_);
}
unsigned Stream::get_qlp_coeff_precision() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_qlp_coeff_precision(encoder_);
}
bool Stream::get_do_qlp_coeff_prec_search() const
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_get_do_qlp_coeff_prec_search(encoder_);
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}
bool Stream::get_do_escape_coding() const
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_get_do_escape_coding(encoder_);
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}
bool Stream::get_do_exhaustive_model_search() const
{
FLAC__ASSERT(is_valid());
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return (bool)::FLAC__stream_encoder_get_do_exhaustive_model_search(encoder_);
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}
unsigned Stream::get_min_residual_partition_order() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_min_residual_partition_order(encoder_);
}
unsigned Stream::get_max_residual_partition_order() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_max_residual_partition_order(encoder_);
}
unsigned Stream::get_rice_parameter_search_dist() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_rice_parameter_search_dist(encoder_);
}
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FLAC__uint64 Stream::get_total_samples_estimate() const
{
FLAC__ASSERT(is_valid());
return ::FLAC__stream_encoder_get_total_samples_estimate(encoder_);
}
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Stream::State Stream::init()
{
FLAC__ASSERT(is_valid());
::FLAC__stream_encoder_set_write_callback(encoder_, write_callback_);
::FLAC__stream_encoder_set_metadata_callback(encoder_, metadata_callback_);
::FLAC__stream_encoder_set_client_data(encoder_, (void*)this);
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return State(::FLAC__stream_encoder_init(encoder_));
}
void Stream::finish()
{
FLAC__ASSERT(is_valid());
::FLAC__stream_encoder_finish(encoder_);
}
bool Stream::process(const FLAC__int32 * const buffer[], unsigned samples)
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{
FLAC__ASSERT(is_valid());
return (bool)::FLAC__stream_encoder_process(encoder_, buffer, samples);
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}
bool Stream::process_interleaved(const FLAC__int32 buffer[], unsigned samples)
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{
FLAC__ASSERT(is_valid());
return (bool)::FLAC__stream_encoder_process_interleaved(encoder_, buffer, samples);
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}
::FLAC__StreamEncoderWriteStatus Stream::write_callback_(const ::FLAC__StreamEncoder *encoder, const FLAC__byte buffer[], unsigned bytes, unsigned samples, unsigned current_frame, void *client_data)
{
(void)encoder;
FLAC__ASSERT(0 != client_data);
Stream *instance = reinterpret_cast<Stream *>(client_data);
FLAC__ASSERT(0 != instance);
return instance->write_callback(buffer, bytes, samples, current_frame);
}
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void Stream::metadata_callback_(const ::FLAC__StreamEncoder *encoder, const ::FLAC__StreamMetadata *metadata, void *client_data)
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{
(void)encoder;
FLAC__ASSERT(0 != client_data);
Stream *instance = reinterpret_cast<Stream *>(client_data);
FLAC__ASSERT(0 != instance);
instance->metadata_callback(metadata);
}
};
};