171 lines
5.8 KiB
C++
171 lines
5.8 KiB
C++
#pragma once
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#ifdef FOOBAR2000_HAVE_DSP
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//! \since 1.1
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//! This service is essentially a special workaround to easily decode DTS/HDCD content stored in files pretending to contain plain PCM data. \n
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//! Callers: Instead of calling this directly, you probably want to use input_postprocessed template. \n
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//! Implementers: This service is called only by specific decoders, not by all of them! Implementing your own to provide additional functionality is not recommended!
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class decode_postprocessor_instance : public service_base {
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FB2K_MAKE_SERVICE_INTERFACE(decode_postprocessor_instance, service_base);
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public:
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enum {
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//! End of stream. Flush any buffered data during this call.
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flag_eof = 1 << 0,
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//! Stream has already been altered by another instance.
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flag_altered = 1 << 1,
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};
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//! @returns True if the chunk list has been altered by the call, false if not - to tell possible other running instances whether the stream has already been altered or not.
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virtual bool run(dsp_chunk_list & p_chunk_list,t_uint32 p_flags,abort_callback & p_abort) = 0;
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virtual bool get_dynamic_info(file_info & p_out) = 0;
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virtual void flush() = 0;
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virtual double get_buffer_ahead() = 0;
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};
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//! \since 1.1
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//! Entrypoint class for instantiating decode_postprocessor_instance. See decode_postprocessor_instance documentation for more information. \n
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//! Instead of calling this directly, you probably want to use input_postprocessed template.
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class decode_postprocessor_entry : public service_base {
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FB2K_MAKE_SERVICE_INTERFACE_ENTRYPOINT(decode_postprocessor_entry)
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public:
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virtual bool instantiate(const file_info & info, decode_postprocessor_instance::ptr & out) = 0;
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};
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//! Helper class for managing decode_postprocessor_instance objects. See also: input_postprocessed.
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class decode_postprocessor {
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public:
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typedef decode_postprocessor_instance::ptr item;
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void initialize(const file_info & info) {
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m_items.remove_all();
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service_enum_t<decode_postprocessor_entry> e;
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decode_postprocessor_entry::ptr ptr;
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while(e.next(ptr)) {
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item i;
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if (ptr->instantiate(info, i)) m_items += i;
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}
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}
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void run(dsp_chunk_list & p_chunk_list,bool p_eof,abort_callback & p_abort) {
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t_uint32 flags = p_eof ? decode_postprocessor_instance::flag_eof : 0;
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for(t_size walk = 0; walk < m_items.get_size(); ++walk) {
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if (m_items[walk]->run(p_chunk_list, flags, p_abort)) flags |= decode_postprocessor_instance::flag_altered;
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}
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}
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void flush() {
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for(t_size walk = 0; walk < m_items.get_size(); ++walk) {
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m_items[walk]->flush();
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}
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}
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static bool should_bother() {
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return service_factory_base::is_service_present(decode_postprocessor_entry::class_guid);
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}
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bool is_active() const {
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return m_items.get_size() > 0;
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}
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bool get_dynamic_info(file_info & p_out) {
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bool rv = false;
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for(t_size walk = 0; walk < m_items.get_size(); ++walk) {
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if (m_items[walk]->get_dynamic_info(p_out)) rv = true;
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}
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return rv;
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}
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void close() {
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m_items.remove_all();
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}
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double get_buffer_ahead() {
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double acc = 0;
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for(t_size walk = 0; walk < m_items.get_size(); ++walk) {
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pfc::max_acc(acc, m_items[walk]->get_buffer_ahead());
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}
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return acc;
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}
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private:
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pfc::list_t<item> m_items;
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};
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//! Generic template to add decode_postprocessor support to your input class. Works with both single-track and multi-track inputs.
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template<typename baseclass> class input_postprocessed : public baseclass {
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public:
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void decode_initialize(t_uint32 p_subsong,unsigned p_flags,abort_callback & p_abort) {
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m_chunks.remove_all();
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m_haveEOF = false;
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m_toSkip = 0;
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m_postproc.close();
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if ((p_flags & input_flag_no_postproc) == 0 && m_postproc.should_bother()) {
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file_info_impl info;
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this->get_info(p_subsong, info, p_abort);
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m_postproc.initialize(info);
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}
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baseclass::decode_initialize(p_subsong, p_flags, p_abort);
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}
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void decode_initialize(unsigned p_flags,abort_callback & p_abort) {
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m_chunks.remove_all();
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m_haveEOF = false;
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m_toSkip = 0;
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m_postproc.close();
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if ((p_flags & input_flag_no_postproc) == 0 && m_postproc.should_bother()) {
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file_info_impl info;
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this->get_info(info, p_abort);
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m_postproc.initialize(info);
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}
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baseclass::decode_initialize(p_flags, p_abort);
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}
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bool decode_run(audio_chunk & p_chunk,abort_callback & p_abort) {
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if (m_postproc.is_active()) {
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for(;;) {
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p_abort.check();
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if (m_chunks.get_count() > 0) {
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audio_chunk * c = m_chunks.get_item(0);
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if (m_toSkip > 0) {
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if (!c->process_skip(m_toSkip)) {
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m_chunks.remove_by_idx(0);
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continue;
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}
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}
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p_chunk = *c;
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m_chunks.remove_by_idx(0);
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return true;
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}
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if (m_haveEOF) return false;
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if (!baseclass::decode_run(*m_chunks.insert_item(0), p_abort)) {
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m_haveEOF = true;
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m_chunks.remove_by_idx(0);
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}
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m_postproc.run(m_chunks, m_haveEOF, p_abort);
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}
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} else {
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return baseclass::decode_run(p_chunk, p_abort);
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}
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}
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bool decode_run_raw(audio_chunk & p_chunk, mem_block_container & p_raw, abort_callback & p_abort) {
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if (m_postproc.is_active()) {
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throw pfc::exception_not_implemented();
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} else {
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return baseclass::decode_run_raw(p_chunk, p_raw, p_abort);
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}
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}
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bool decode_get_dynamic_info(file_info & p_out, double & p_timestamp_delta) {
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bool rv = baseclass::decode_get_dynamic_info(p_out, p_timestamp_delta);
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if (m_postproc.get_dynamic_info(p_out)) rv = true;
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return rv;
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}
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void decode_seek(double p_seconds,abort_callback & p_abort) {
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m_chunks.remove_all();
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m_haveEOF = false;
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m_postproc.flush();
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double target = pfc::max_t<double>(0, p_seconds - m_postproc.get_buffer_ahead());
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m_toSkip = p_seconds - target;
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baseclass::decode_seek(target, p_abort);
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}
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private:
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dsp_chunk_list_impl m_chunks;
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bool m_haveEOF;
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double m_toSkip;
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decode_postprocessor m_postproc;
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};
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#else // FOOBAR2000_HAVE_DSP
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template<typename baseclass> class input_postprocessed : public baseclass {};
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#endif // FOOBAR2000_HAVE_DSP
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