765 lines
31 KiB
C++
765 lines
31 KiB
C++
/*
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* InstrumentExtensions.cpp
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* ------------------------
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* Purpose: Instrument properties I/O
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* Notes : Welcome to the absolutely horrible abominations that are the "extended instrument properties"
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* which are some of the earliest additions OpenMPT did to the IT / XM format. They are ugly,
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* and the way they work even differs between IT/XM and ITI/XI/ITP.
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* Yes, the world would be a better place without this stuff.
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* Authors: OpenMPT Devs
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* The OpenMPT source code is released under the BSD license. Read LICENSE for more details.
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*/
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#include "stdafx.h"
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#include "Loaders.h"
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OPENMPT_NAMESPACE_BEGIN
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/*---------------------------------------------------------------------------------------------
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-----------------------------------------------------------------------------------------------
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MODULAR (in/out) ModInstrument :
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-----------------------------------------------------------------------------------------------
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* to update:
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------------
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- both following functions need to be updated when adding a new member in ModInstrument :
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void WriteInstrumentHeaderStructOrField(ModInstrument * input, std::ostream &file, uint32 only_this_code, int16 fixedsize);
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bool ReadInstrumentHeaderField(ModInstrument * input, uint32 fcode, int16 fsize, FileReader &file);
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- see below for body declaration.
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* members:
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----------
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- 32bit identification CODE tag (must be unique)
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- 16bit content SIZE in byte(s)
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- member field
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* CODE tag naming convention:
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-----------------------------
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- have a look below in current tag dictionnary
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- take the initial ones of the field name
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- 4 caracters code (not more, not less)
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- must be filled with '.' caracters if code has less than 4 caracters
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- for arrays, must include a '[' caracter following significant caracters ('.' not significant!!!)
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- use only caracters used in full member name, ordered as they appear in it
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- match caracter attribute (small,capital)
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Example with "PanEnv.nLoopEnd" , "PitchEnv.nLoopEnd" & "VolEnv.Values[MAX_ENVPOINTS]" members :
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- use 'PLE.' for PanEnv.nLoopEnd
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- use 'PiLE' for PitchEnv.nLoopEnd
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- use 'VE[.' for VolEnv.Values[MAX_ENVPOINTS]
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* In use CODE tag dictionary (alphabetical order):
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--------------------------------------------------
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!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
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!!! SECTION TO BE UPDATED !!!
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!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
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[EXT] means external (not related) to ModInstrument content
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AUTH [EXT] Song artist
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C... [EXT] nChannels
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ChnS [EXT] IT/MPTM: Channel settings for channels 65-127 if needed (doesn't fit to IT header).
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CS.. nCutSwing
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CUES [EXT] Sample cue points
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CWV. [EXT] dwCreatedWithVersion
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DCT. nDCT;
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dF.. dwFlags;
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DGV. [EXT] nDefaultGlobalVolume
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DT.. [EXT] nDefaultTempo;
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DTFR [EXT] Fractional part of default tempo
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DNA. nDNA;
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EBIH [EXT] embeded instrument header tag (ITP file format)
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FM.. filterMode;
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fn[. filename[12];
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FO.. nFadeOut;
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GV.. nGlobalVol;
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IFC. nIFC;
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IFR. nIFR;
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K[. Keyboard[128];
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LSWV [EXT] Last Saved With Version
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MB.. wMidiBank;
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MC.. nMidiChannel;
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MDK. nMidiDrumKey;
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MIMA [EXT] MIdi MApping directives
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MiP. nMixPlug;
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MP.. nMidiProgram;
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MPTS [EXT] Extra song info tag
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MPTX [EXT] EXTRA INFO tag
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MSF. [EXT] Mod(Specific)Flags
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n[.. name[32];
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NNA. nNNA;
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NM[. NoteMap[128];
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P... nPan;
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PE.. PanEnv.nNodes;
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PE[. PanEnv.Values[MAX_ENVPOINTS];
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PiE. PitchEnv.nNodes;
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PiE[ PitchEnv.Values[MAX_ENVPOINTS];
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PiLE PitchEnv.nLoopEnd;
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PiLS PitchEnv.nLoopStart;
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PiP[ PitchEnv.Ticks[MAX_ENVPOINTS];
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PiSB PitchEnv.nSustainStart;
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PiSE PitchEnv.nSustainEnd;
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PLE. PanEnv.nLoopEnd;
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PLS. PanEnv.nLoopStart;
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PMM. [EXT] nPlugMixMode;
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PP[. PanEnv.Ticks[MAX_ENVPOINTS];
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PPC. nPPC;
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PPS. nPPS;
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PS.. nPanSwing;
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PSB. PanEnv.nSustainStart;
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PSE. PanEnv.nSustainEnd;
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PTTL pitchToTempoLock;
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PTTF pitchToTempoLock (fractional part);
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PVEH pluginVelocityHandling;
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PVOH pluginVolumeHandling;
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R... resampling;
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RP.. [EXT] nRestartPos;
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RPB. [EXT] nRowsPerBeat;
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RPM. [EXT] nRowsPerMeasure;
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RS.. nResSwing;
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RSMP [EXT] Global resampling
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SEP@ [EXT] chunk SEPARATOR tag
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SPA. [EXT] m_nSamplePreAmp;
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TM.. [EXT] nTempoMode;
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VE.. VolEnv.nNodes;
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VE[. VolEnv.Values[MAX_ENVPOINTS];
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VLE. VolEnv.nLoopEnd;
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VLS. VolEnv.nLoopStart;
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VP[. VolEnv.Ticks[MAX_ENVPOINTS];
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VR.. nVolRampUp;
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VS.. nVolSwing;
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VSB. VolEnv.nSustainStart;
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VSE. VolEnv.nSustainEnd;
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VSTV [EXT] nVSTiVolume;
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PERN PitchEnv.nReleaseNode
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AERN PanEnv.nReleaseNode
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VERN VolEnv.nReleaseNode
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PFLG PitchEnv.dwFlag
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AFLG PanEnv.dwFlags
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VFLG VolEnv.dwFlags
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MPWD MIDI Pitch Wheel Depth
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-----------------------------------------------------------------------------------------------
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---------------------------------------------------------------------------------------------*/
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#ifndef MODPLUG_NO_FILESAVE
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template<typename T, bool is_signed> struct IsNegativeFunctor { bool operator()(T val) const { return val < 0; } };
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template<typename T> struct IsNegativeFunctor<T, true> { bool operator()(T val) const { return val < 0; } };
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template<typename T> struct IsNegativeFunctor<T, false> { bool operator()(T /*val*/) const { return false; } };
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template<typename T>
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bool IsNegative(const T &val)
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{
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return IsNegativeFunctor<T, std::numeric_limits<T>::is_signed>()(val);
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}
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// ------------------------------------------------------------------------------------------
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// Convenient macro to help WRITE_HEADER declaration for single type members ONLY (non-array)
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// ------------------------------------------------------------------------------------------
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#define WRITE_MPTHEADER_sized_member(name,type,code) \
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static_assert(sizeof(input->name) == sizeof(type), "Instrument property does match specified type!");\
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fcode = code;\
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fsize = sizeof( type );\
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if(writeAll) \
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{ \
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mpt::IO::WriteIntLE<uint32>(file, fcode); \
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mpt::IO::WriteIntLE<uint16>(file, fsize); \
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} else if(only_this_code == fcode)\
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{ \
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MPT_ASSERT(fixedsize == fsize); \
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} \
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if(only_this_code == fcode || only_this_code == Util::MaxValueOfType(only_this_code)) \
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{ \
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type tmp = (type)(input-> name ); \
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mpt::IO::WriteIntLE(file, tmp); \
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} \
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/**/
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// -----------------------------------------------------------------------------------------------------
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// Convenient macro to help WRITE_HEADER declaration for single type members which are written truncated
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// -----------------------------------------------------------------------------------------------------
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#define WRITE_MPTHEADER_trunc_member(name,type,code) \
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static_assert(sizeof(input->name) > sizeof(type), "Instrument property would not be truncated, use WRITE_MPTHEADER_sized_member instead!");\
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fcode = code;\
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fsize = sizeof( type );\
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if(writeAll) \
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{ \
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mpt::IO::WriteIntLE<uint32>(file, fcode); \
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mpt::IO::WriteIntLE<uint16>(file, fsize); \
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type tmp = (type)(input-> name ); \
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mpt::IO::WriteIntLE(file, tmp); \
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} else if(only_this_code == fcode)\
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{ \
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/* hackish workaround to resolve mismatched size values: */ \
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/* nResampling was a long time declared as uint32 but these macro tables used uint16 and UINT. */ \
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/* This worked fine on little-endian, on big-endian not so much. Thus support writing size-mismatched fields. */ \
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MPT_ASSERT(fixedsize >= fsize); \
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type tmp = (type)(input-> name ); \
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mpt::IO::WriteIntLE(file, tmp); \
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if(fixedsize > fsize) \
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{ \
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for(int16 i = 0; i < fixedsize - fsize; ++i) \
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{ \
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uint8 fillbyte = !IsNegative(tmp) ? 0 : 0xff; /* sign extend */ \
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mpt::IO::WriteIntLE(file, fillbyte); \
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} \
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} \
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} \
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/**/
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// ------------------------------------------------------------------------
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// Convenient macro to help WRITE_HEADER declaration for array members ONLY
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// ------------------------------------------------------------------------
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#define WRITE_MPTHEADER_array_member(name,type,code,arraysize) \
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static_assert(sizeof(type) == sizeof(input-> name [0])); \
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MPT_ASSERT(sizeof(input->name) >= sizeof(type) * arraysize);\
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fcode = code;\
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fsize = sizeof( type ) * arraysize;\
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if(writeAll) \
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{ \
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mpt::IO::WriteIntLE<uint32>(file, fcode); \
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mpt::IO::WriteIntLE<uint16>(file, fsize); \
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} else if(only_this_code == fcode)\
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{ \
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/* MPT_ASSERT(fixedsize <= fsize); */ \
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fsize = fixedsize; /* just trust the size we got passed */ \
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} \
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if(only_this_code == fcode || only_this_code == Util::MaxValueOfType(only_this_code)) \
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{ \
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for(std::size_t i = 0; i < fsize/sizeof(type); ++i) \
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{ \
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type tmp; \
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tmp = input-> name [i]; \
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mpt::IO::WriteIntLE(file, tmp); \
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} \
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} \
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/**/
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// ------------------------------------------------------------------------
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// Convenient macro to help WRITE_HEADER declaration for envelope members ONLY
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// ------------------------------------------------------------------------
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#define WRITE_MPTHEADER_envelope_member(envType,envField,type,code) \
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{\
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const InstrumentEnvelope &env = input->GetEnvelope(envType); \
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static_assert(sizeof(type) == sizeof(env[0]. envField)); \
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fcode = code;\
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fsize = mpt::saturate_cast<int16>(sizeof( type ) * env.size());\
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MPT_ASSERT(size_t(fsize) == sizeof( type ) * env.size()); \
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\
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if(writeAll) \
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{ \
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mpt::IO::WriteIntLE<uint32>(file, fcode); \
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mpt::IO::WriteIntLE<uint16>(file, fsize); \
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} else if(only_this_code == fcode)\
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{ \
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fsize = fixedsize; /* just trust the size we got passed */ \
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} \
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if(only_this_code == fcode || only_this_code == Util::MaxValueOfType(only_this_code)) \
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{ \
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uint32 maxNodes = std::min(static_cast<uint32>(fsize/sizeof(type)), static_cast<uint32>(env.size())); \
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for(uint32 i = 0; i < maxNodes; ++i) \
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{ \
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type tmp; \
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tmp = env[i]. envField ; \
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mpt::IO::WriteIntLE(file, tmp); \
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} \
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/* Not every instrument's envelope will be the same length. fill up with zeros. */ \
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for(uint32 i = maxNodes; i < fsize/sizeof(type); ++i) \
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{ \
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type tmp = 0; \
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mpt::IO::WriteIntLE(file, tmp); \
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} \
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} \
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}\
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/**/
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// Write (in 'file') 'input' ModInstrument with 'code' & 'size' extra field infos for each member
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void WriteInstrumentHeaderStructOrField(ModInstrument * input, std::ostream &file, uint32 only_this_code, uint16 fixedsize)
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{
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uint32 fcode;
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uint16 fsize;
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// If true, all extension are written to the file; otherwise only the specified extension is written.
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// writeAll is true iff we are saving an instrument (or, hypothetically, the legacy ITP format)
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const bool writeAll = only_this_code == Util::MaxValueOfType(only_this_code);
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if(!writeAll)
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{
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MPT_ASSERT(fixedsize > 0);
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}
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WRITE_MPTHEADER_sized_member( nFadeOut , uint32 , MagicBE("FO..") )
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WRITE_MPTHEADER_sized_member( nPan , uint32 , MagicBE("P...") )
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WRITE_MPTHEADER_sized_member( VolEnv.size() , uint32 , MagicBE("VE..") )
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WRITE_MPTHEADER_sized_member( PanEnv.size() , uint32 , MagicBE("PE..") )
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WRITE_MPTHEADER_sized_member( PitchEnv.size() , uint32 , MagicBE("PiE.") )
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WRITE_MPTHEADER_sized_member( wMidiBank , uint16 , MagicBE("MB..") )
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WRITE_MPTHEADER_sized_member( nMidiProgram , uint8 , MagicBE("MP..") )
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WRITE_MPTHEADER_sized_member( nMidiChannel , uint8 , MagicBE("MC..") )
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WRITE_MPTHEADER_envelope_member( ENV_VOLUME , tick , uint16 , MagicBE("VP[.") )
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WRITE_MPTHEADER_envelope_member( ENV_PANNING , tick , uint16 , MagicBE("PP[.") )
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WRITE_MPTHEADER_envelope_member( ENV_PITCH , tick , uint16 , MagicBE("PiP[") )
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WRITE_MPTHEADER_envelope_member( ENV_VOLUME , value , uint8 , MagicBE("VE[.") )
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WRITE_MPTHEADER_envelope_member( ENV_PANNING , value , uint8 , MagicBE("PE[.") )
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WRITE_MPTHEADER_envelope_member( ENV_PITCH , value , uint8 , MagicBE("PiE[") )
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WRITE_MPTHEADER_sized_member( nMixPlug , uint8 , MagicBE("MiP.") )
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WRITE_MPTHEADER_sized_member( nVolRampUp , uint16 , MagicBE("VR..") )
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WRITE_MPTHEADER_sized_member( resampling , uint8 , MagicBE("R...") )
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WRITE_MPTHEADER_sized_member( nCutSwing , uint8 , MagicBE("CS..") )
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WRITE_MPTHEADER_sized_member( nResSwing , uint8 , MagicBE("RS..") )
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WRITE_MPTHEADER_sized_member( filterMode , uint8 , MagicBE("FM..") )
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WRITE_MPTHEADER_sized_member( pluginVelocityHandling , uint8 , MagicBE("PVEH") )
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WRITE_MPTHEADER_sized_member( pluginVolumeHandling , uint8 , MagicBE("PVOH") )
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WRITE_MPTHEADER_trunc_member( pitchToTempoLock.GetInt() , uint16 , MagicBE("PTTL") )
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WRITE_MPTHEADER_trunc_member( pitchToTempoLock.GetFract() , uint16 , MagicLE("PTTF") )
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WRITE_MPTHEADER_sized_member( PitchEnv.nReleaseNode , uint8 , MagicBE("PERN") )
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WRITE_MPTHEADER_sized_member( PanEnv.nReleaseNode , uint8 , MagicBE("AERN") )
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WRITE_MPTHEADER_sized_member( VolEnv.nReleaseNode , uint8 , MagicBE("VERN") )
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WRITE_MPTHEADER_sized_member( PitchEnv.dwFlags , uint8 , MagicBE("PFLG") )
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WRITE_MPTHEADER_sized_member( PanEnv.dwFlags , uint8 , MagicBE("AFLG") )
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WRITE_MPTHEADER_sized_member( VolEnv.dwFlags , uint8 , MagicBE("VFLG") )
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WRITE_MPTHEADER_sized_member( midiPWD , int8 , MagicBE("MPWD") )
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}
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template<typename TIns, typename PropType>
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static bool IsPropertyNeeded(const TIns &Instruments, PropType ModInstrument::*Prop)
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{
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const ModInstrument defaultIns;
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for(const auto &ins : Instruments)
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{
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if(ins != nullptr && defaultIns.*Prop != ins->*Prop)
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return true;
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}
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return false;
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}
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template<typename PropType>
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static void WritePropertyIfNeeded(const CSoundFile &sndFile, PropType ModInstrument::*Prop, uint32 code, uint16 size, std::ostream &f, INSTRUMENTINDEX numInstruments)
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{
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if(IsPropertyNeeded(sndFile.Instruments, Prop))
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{
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sndFile.WriteInstrumentPropertyForAllInstruments(code, size, f, numInstruments);
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}
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}
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// Used only when saving IT, XM and MPTM.
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// ITI, ITP saves using Ericus' macros etc...
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// The reason is that ITs and XMs save [code][size][ins1.Value][ins2.Value]...
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// whereas ITP saves [code][size][ins1.Value][code][size][ins2.Value]...
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// too late to turn back....
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void CSoundFile::SaveExtendedInstrumentProperties(INSTRUMENTINDEX numInstruments, std::ostream &f) const
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{
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uint32 code = MagicBE("MPTX"); // write extension header code
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mpt::IO::WriteIntLE<uint32>(f, code);
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if (numInstruments == 0)
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return;
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WritePropertyIfNeeded(*this, &ModInstrument::nVolRampUp, MagicBE("VR.."), sizeof(ModInstrument::nVolRampUp), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::nMixPlug, MagicBE("MiP."), sizeof(ModInstrument::nMixPlug), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::nMidiChannel, MagicBE("MC.."), sizeof(ModInstrument::nMidiChannel), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::nMidiProgram, MagicBE("MP.."), sizeof(ModInstrument::nMidiProgram), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::wMidiBank, MagicBE("MB.."), sizeof(ModInstrument::wMidiBank), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::resampling, MagicBE("R..."), sizeof(ModInstrument::resampling), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::pluginVelocityHandling, MagicBE("PVEH"), sizeof(ModInstrument::pluginVelocityHandling), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::pluginVolumeHandling, MagicBE("PVOH"), sizeof(ModInstrument::pluginVolumeHandling), f, numInstruments);
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if(!(GetType() & MOD_TYPE_XM))
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{
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// XM instrument headers already stores full-precision fade-out
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WritePropertyIfNeeded(*this, &ModInstrument::nFadeOut, MagicBE("FO.."), sizeof(ModInstrument::nFadeOut), f, numInstruments);
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// XM instrument headers already have support for this
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WritePropertyIfNeeded(*this, &ModInstrument::midiPWD, MagicBE("MPWD"), sizeof(ModInstrument::midiPWD), f, numInstruments);
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// We never supported these as hacks in XM (luckily!)
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WritePropertyIfNeeded(*this, &ModInstrument::nPan, MagicBE("P..."), sizeof(ModInstrument::nPan), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::nCutSwing, MagicBE("CS.."), sizeof(ModInstrument::nCutSwing), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::nResSwing, MagicBE("RS.."), sizeof(ModInstrument::nResSwing), f, numInstruments);
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WritePropertyIfNeeded(*this, &ModInstrument::filterMode, MagicBE("FM.."), sizeof(ModInstrument::filterMode), f, numInstruments);
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if(IsPropertyNeeded(Instruments, &ModInstrument::pitchToTempoLock))
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{
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WriteInstrumentPropertyForAllInstruments(MagicBE("PTTL"), sizeof(uint16), f, numInstruments);
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WriteInstrumentPropertyForAllInstruments(MagicLE("PTTF"), sizeof(uint16), f, numInstruments);
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}
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}
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if(GetType() & MOD_TYPE_MPT)
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{
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uint32 maxNodes[3] = { 0, 0, 0 };
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bool hasReleaseNode[3] = { false, false, false };
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for(INSTRUMENTINDEX i = 1; i <= numInstruments; i++) if(Instruments[i] != nullptr)
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{
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maxNodes[0] = std::max(maxNodes[0], Instruments[i]->VolEnv.size());
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maxNodes[1] = std::max(maxNodes[1], Instruments[i]->PanEnv.size());
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maxNodes[2] = std::max(maxNodes[2], Instruments[i]->PitchEnv.size());
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hasReleaseNode[0] |= (Instruments[i]->VolEnv.nReleaseNode != ENV_RELEASE_NODE_UNSET);
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hasReleaseNode[1] |= (Instruments[i]->PanEnv.nReleaseNode != ENV_RELEASE_NODE_UNSET);
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hasReleaseNode[2] |= (Instruments[i]->PitchEnv.nReleaseNode != ENV_RELEASE_NODE_UNSET);
|
|
}
|
|
// write full envelope information for MPTM files (more env points)
|
|
if(maxNodes[0] > 25)
|
|
{
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("VE.."), sizeof(ModInstrument::VolEnv.size()), f, numInstruments);
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("VP[."), static_cast<uint16>(maxNodes[0] * sizeof(EnvelopeNode::tick)), f, numInstruments);
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("VE[."), static_cast<uint16>(maxNodes[0] * sizeof(EnvelopeNode::value)), f, numInstruments);
|
|
}
|
|
if(maxNodes[1] > 25)
|
|
{
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PE.."), sizeof(ModInstrument::PanEnv.size()), f, numInstruments);
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PP[."), static_cast<uint16>(maxNodes[1] * sizeof(EnvelopeNode::tick)), f, numInstruments);
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PE[."), static_cast<uint16>(maxNodes[1] * sizeof(EnvelopeNode::value)), f, numInstruments);
|
|
}
|
|
if(maxNodes[2] > 25)
|
|
{
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PiE."), sizeof(ModInstrument::PitchEnv.size()), f, numInstruments);
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PiP["), static_cast<uint16>(maxNodes[2] * sizeof(EnvelopeNode::tick)), f, numInstruments);
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PiE["), static_cast<uint16>(maxNodes[2] * sizeof(EnvelopeNode::value)), f, numInstruments);
|
|
}
|
|
if(hasReleaseNode[0])
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("VERN"), sizeof(ModInstrument::VolEnv.nReleaseNode), f, numInstruments);
|
|
if(hasReleaseNode[1])
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("AERN"), sizeof(ModInstrument::PanEnv.nReleaseNode), f, numInstruments);
|
|
if(hasReleaseNode[2])
|
|
WriteInstrumentPropertyForAllInstruments(MagicBE("PERN"), sizeof(ModInstrument::PitchEnv.nReleaseNode), f, numInstruments);
|
|
}
|
|
}
|
|
|
|
void CSoundFile::WriteInstrumentPropertyForAllInstruments(uint32 code, uint16 size, std::ostream &f, INSTRUMENTINDEX nInstruments) const
|
|
{
|
|
mpt::IO::WriteIntLE<uint32>(f, code); //write code
|
|
mpt::IO::WriteIntLE<uint16>(f, size); //write size
|
|
for(INSTRUMENTINDEX i = 1; i <= nInstruments; i++) //for all instruments...
|
|
{
|
|
if (Instruments[i])
|
|
{
|
|
WriteInstrumentHeaderStructOrField(Instruments[i], f, code, size);
|
|
} else
|
|
{
|
|
ModInstrument emptyInstrument;
|
|
WriteInstrumentHeaderStructOrField(&emptyInstrument, f, code, size);
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
#endif // !MODPLUG_NO_FILESAVE
|
|
|
|
|
|
// --------------------------------------------------------------------------------------------
|
|
// Convenient macro to help GET_HEADER declaration for single type members ONLY (non-array)
|
|
// --------------------------------------------------------------------------------------------
|
|
#define GET_MPTHEADER_sized_member(name,type,code) \
|
|
case code: \
|
|
{\
|
|
if( fsize <= sizeof( type ) ) \
|
|
{ \
|
|
/* hackish workaround to resolve mismatched size values: */ \
|
|
/* nResampling was a long time declared as uint32 but these macro tables used uint16 and UINT. */ \
|
|
/* This worked fine on little-endian, on big-endian not so much. Thus support reading size-mismatched fields. */ \
|
|
if(file.CanRead(fsize)) \
|
|
{ \
|
|
type tmp; \
|
|
tmp = file.ReadTruncatedIntLE<type>(fsize); \
|
|
static_assert(sizeof(tmp) == sizeof(input-> name )); \
|
|
input-> name = decltype(input-> name )(tmp); \
|
|
result = true; \
|
|
} \
|
|
} \
|
|
} break;
|
|
|
|
// --------------------------------------------------------------------------------------------
|
|
// Convenient macro to help GET_HEADER declaration for array members ONLY
|
|
// --------------------------------------------------------------------------------------------
|
|
#define GET_MPTHEADER_array_member(name,type,code) \
|
|
case code: \
|
|
{\
|
|
if( fsize <= sizeof( type ) * std::size(input-> name) ) \
|
|
{ \
|
|
FileReader arrayChunk = file.ReadChunk(fsize); \
|
|
for(std::size_t i = 0; i < std::size(input-> name); ++i) \
|
|
{ \
|
|
input-> name [i] = arrayChunk.ReadIntLE<type>(); \
|
|
} \
|
|
result = true; \
|
|
} \
|
|
} break;
|
|
|
|
// --------------------------------------------------------------------------------------------
|
|
// Convenient macro to help GET_HEADER declaration for character buffer members ONLY
|
|
// --------------------------------------------------------------------------------------------
|
|
#define GET_MPTHEADER_charbuf_member(name,type,code) \
|
|
case code: \
|
|
{\
|
|
if( fsize <= sizeof( type ) * input-> name .static_length() ) \
|
|
{ \
|
|
FileReader arrayChunk = file.ReadChunk(fsize); \
|
|
std::string tmp; \
|
|
for(std::size_t i = 0; i < fsize; ++i) \
|
|
{ \
|
|
tmp += arrayChunk.ReadChar(); \
|
|
} \
|
|
input-> name = tmp; \
|
|
result = true; \
|
|
} \
|
|
} break;
|
|
|
|
// --------------------------------------------------------------------------------------------
|
|
// Convenient macro to help GET_HEADER declaration for envelope tick/value members
|
|
// --------------------------------------------------------------------------------------------
|
|
#define GET_MPTHEADER_envelope_member(envType,envField,type,code) \
|
|
case code: \
|
|
{\
|
|
FileReader arrayChunk = file.ReadChunk(fsize); \
|
|
InstrumentEnvelope &env = input->GetEnvelope(envType); \
|
|
for(uint32 i = 0; i < env.size(); i++) \
|
|
{ \
|
|
env[i]. envField = arrayChunk.ReadIntLE<type>(); \
|
|
} \
|
|
result = true; \
|
|
} break;
|
|
|
|
|
|
// Return a pointer on the wanted field in 'input' ModInstrument given field code & size
|
|
bool ReadInstrumentHeaderField(ModInstrument *input, uint32 fcode, uint16 fsize, FileReader &file)
|
|
{
|
|
if(input == nullptr) return false;
|
|
|
|
bool result = false;
|
|
|
|
// Members which can be found in this table but not in the write table are only required in the legacy ITP format.
|
|
switch(fcode)
|
|
{
|
|
GET_MPTHEADER_sized_member( nFadeOut , uint32 , MagicBE("FO..") )
|
|
GET_MPTHEADER_sized_member( dwFlags , uint8 , MagicBE("dF..") )
|
|
GET_MPTHEADER_sized_member( nGlobalVol , uint32 , MagicBE("GV..") )
|
|
GET_MPTHEADER_sized_member( nPan , uint32 , MagicBE("P...") )
|
|
GET_MPTHEADER_sized_member( VolEnv.nLoopStart , uint8 , MagicBE("VLS.") )
|
|
GET_MPTHEADER_sized_member( VolEnv.nLoopEnd , uint8 , MagicBE("VLE.") )
|
|
GET_MPTHEADER_sized_member( VolEnv.nSustainStart , uint8 , MagicBE("VSB.") )
|
|
GET_MPTHEADER_sized_member( VolEnv.nSustainEnd , uint8 , MagicBE("VSE.") )
|
|
GET_MPTHEADER_sized_member( PanEnv.nLoopStart , uint8 , MagicBE("PLS.") )
|
|
GET_MPTHEADER_sized_member( PanEnv.nLoopEnd , uint8 , MagicBE("PLE.") )
|
|
GET_MPTHEADER_sized_member( PanEnv.nSustainStart , uint8 , MagicBE("PSB.") )
|
|
GET_MPTHEADER_sized_member( PanEnv.nSustainEnd , uint8 , MagicBE("PSE.") )
|
|
GET_MPTHEADER_sized_member( PitchEnv.nLoopStart , uint8 , MagicBE("PiLS") )
|
|
GET_MPTHEADER_sized_member( PitchEnv.nLoopEnd , uint8 , MagicBE("PiLE") )
|
|
GET_MPTHEADER_sized_member( PitchEnv.nSustainStart , uint8 , MagicBE("PiSB") )
|
|
GET_MPTHEADER_sized_member( PitchEnv.nSustainEnd , uint8 , MagicBE("PiSE") )
|
|
GET_MPTHEADER_sized_member( nNNA , uint8 , MagicBE("NNA.") )
|
|
GET_MPTHEADER_sized_member( nDCT , uint8 , MagicBE("DCT.") )
|
|
GET_MPTHEADER_sized_member( nDNA , uint8 , MagicBE("DNA.") )
|
|
GET_MPTHEADER_sized_member( nPanSwing , uint8 , MagicBE("PS..") )
|
|
GET_MPTHEADER_sized_member( nVolSwing , uint8 , MagicBE("VS..") )
|
|
GET_MPTHEADER_sized_member( nIFC , uint8 , MagicBE("IFC.") )
|
|
GET_MPTHEADER_sized_member( nIFR , uint8 , MagicBE("IFR.") )
|
|
GET_MPTHEADER_sized_member( wMidiBank , uint16 , MagicBE("MB..") )
|
|
GET_MPTHEADER_sized_member( nMidiProgram , uint8 , MagicBE("MP..") )
|
|
GET_MPTHEADER_sized_member( nMidiChannel , uint8 , MagicBE("MC..") )
|
|
GET_MPTHEADER_sized_member( nPPS , int8 , MagicBE("PPS.") )
|
|
GET_MPTHEADER_sized_member( nPPC , uint8 , MagicBE("PPC.") )
|
|
GET_MPTHEADER_envelope_member(ENV_VOLUME , tick , uint16 , MagicBE("VP[.") )
|
|
GET_MPTHEADER_envelope_member(ENV_PANNING , tick , uint16 , MagicBE("PP[.") )
|
|
GET_MPTHEADER_envelope_member(ENV_PITCH , tick , uint16 , MagicBE("PiP[") )
|
|
GET_MPTHEADER_envelope_member(ENV_VOLUME , value , uint8 , MagicBE("VE[.") )
|
|
GET_MPTHEADER_envelope_member(ENV_PANNING , value , uint8 , MagicBE("PE[.") )
|
|
GET_MPTHEADER_envelope_member(ENV_PITCH , value , uint8 , MagicBE("PiE[") )
|
|
GET_MPTHEADER_array_member( NoteMap , uint8 , MagicBE("NM[.") )
|
|
GET_MPTHEADER_array_member( Keyboard , uint16 , MagicBE("K[..") )
|
|
GET_MPTHEADER_charbuf_member( name , char , MagicBE("n[..") )
|
|
GET_MPTHEADER_charbuf_member( filename , char , MagicBE("fn[.") )
|
|
GET_MPTHEADER_sized_member( nMixPlug , uint8 , MagicBE("MiP.") )
|
|
GET_MPTHEADER_sized_member( nVolRampUp , uint16 , MagicBE("VR..") )
|
|
GET_MPTHEADER_sized_member( nCutSwing , uint8 , MagicBE("CS..") )
|
|
GET_MPTHEADER_sized_member( nResSwing , uint8 , MagicBE("RS..") )
|
|
GET_MPTHEADER_sized_member( filterMode , uint8 , MagicBE("FM..") )
|
|
GET_MPTHEADER_sized_member( pluginVelocityHandling , uint8 , MagicBE("PVEH") )
|
|
GET_MPTHEADER_sized_member( pluginVolumeHandling , uint8 , MagicBE("PVOH") )
|
|
GET_MPTHEADER_sized_member( PitchEnv.nReleaseNode , uint8 , MagicBE("PERN") )
|
|
GET_MPTHEADER_sized_member( PanEnv.nReleaseNode , uint8 , MagicBE("AERN") )
|
|
GET_MPTHEADER_sized_member( VolEnv.nReleaseNode , uint8 , MagicBE("VERN") )
|
|
GET_MPTHEADER_sized_member( PitchEnv.dwFlags , uint8 , MagicBE("PFLG") )
|
|
GET_MPTHEADER_sized_member( PanEnv.dwFlags , uint8 , MagicBE("AFLG") )
|
|
GET_MPTHEADER_sized_member( VolEnv.dwFlags , uint8 , MagicBE("VFLG") )
|
|
GET_MPTHEADER_sized_member( midiPWD , int8 , MagicBE("MPWD") )
|
|
case MagicBE("R..."):
|
|
{
|
|
// Resampling has been written as various sizes including uint16 and uint32 in the past
|
|
uint32 tmp = file.ReadSizedIntLE<uint32>(fsize);
|
|
if(Resampling::IsKnownMode(tmp))
|
|
input->resampling = static_cast<ResamplingMode>(tmp);
|
|
result = true;
|
|
} break;
|
|
case MagicBE("PTTL"):
|
|
{
|
|
// Integer part of pitch/tempo lock
|
|
uint16 tmp = file.ReadSizedIntLE<uint16>(fsize);
|
|
input->pitchToTempoLock.Set(tmp, input->pitchToTempoLock.GetFract());
|
|
result = true;
|
|
} break;
|
|
case MagicLE("PTTF"):
|
|
{
|
|
// Fractional part of pitch/tempo lock
|
|
uint16 tmp = file.ReadSizedIntLE<uint16>(fsize);
|
|
input->pitchToTempoLock.Set(input->pitchToTempoLock.GetInt(), tmp);
|
|
result = true;
|
|
} break;
|
|
case MagicBE("VE.."):
|
|
input->VolEnv.resize(std::min(uint32(MAX_ENVPOINTS), file.ReadSizedIntLE<uint32>(fsize)));
|
|
result = true;
|
|
break;
|
|
case MagicBE("PE.."):
|
|
input->PanEnv.resize(std::min(uint32(MAX_ENVPOINTS), file.ReadSizedIntLE<uint32>(fsize)));
|
|
result = true;
|
|
break;
|
|
case MagicBE("PiE."):
|
|
input->PitchEnv.resize(std::min(uint32(MAX_ENVPOINTS), file.ReadSizedIntLE<uint32>(fsize)));
|
|
result = true;
|
|
break;
|
|
}
|
|
|
|
return result;
|
|
}
|
|
|
|
|
|
// Convert instrument flags which were read from 'dF..' extension to proper internal representation.
|
|
static void ConvertReadExtendedFlags(ModInstrument *pIns)
|
|
{
|
|
// Flags of 'dF..' datafield in extended instrument properties.
|
|
enum
|
|
{
|
|
dFdd_VOLUME = 0x0001,
|
|
dFdd_VOLSUSTAIN = 0x0002,
|
|
dFdd_VOLLOOP = 0x0004,
|
|
dFdd_PANNING = 0x0008,
|
|
dFdd_PANSUSTAIN = 0x0010,
|
|
dFdd_PANLOOP = 0x0020,
|
|
dFdd_PITCH = 0x0040,
|
|
dFdd_PITCHSUSTAIN = 0x0080,
|
|
dFdd_PITCHLOOP = 0x0100,
|
|
dFdd_SETPANNING = 0x0200,
|
|
dFdd_FILTER = 0x0400,
|
|
dFdd_VOLCARRY = 0x0800,
|
|
dFdd_PANCARRY = 0x1000,
|
|
dFdd_PITCHCARRY = 0x2000,
|
|
dFdd_MUTE = 0x4000,
|
|
};
|
|
|
|
const uint32 dwOldFlags = pIns->dwFlags.GetRaw();
|
|
|
|
pIns->VolEnv.dwFlags.set(ENV_ENABLED, (dwOldFlags & dFdd_VOLUME) != 0);
|
|
pIns->VolEnv.dwFlags.set(ENV_SUSTAIN, (dwOldFlags & dFdd_VOLSUSTAIN) != 0);
|
|
pIns->VolEnv.dwFlags.set(ENV_LOOP, (dwOldFlags & dFdd_VOLLOOP) != 0);
|
|
pIns->VolEnv.dwFlags.set(ENV_CARRY, (dwOldFlags & dFdd_VOLCARRY) != 0);
|
|
|
|
pIns->PanEnv.dwFlags.set(ENV_ENABLED, (dwOldFlags & dFdd_PANNING) != 0);
|
|
pIns->PanEnv.dwFlags.set(ENV_SUSTAIN, (dwOldFlags & dFdd_PANSUSTAIN) != 0);
|
|
pIns->PanEnv.dwFlags.set(ENV_LOOP, (dwOldFlags & dFdd_PANLOOP) != 0);
|
|
pIns->PanEnv.dwFlags.set(ENV_CARRY, (dwOldFlags & dFdd_PANCARRY) != 0);
|
|
|
|
pIns->PitchEnv.dwFlags.set(ENV_ENABLED, (dwOldFlags & dFdd_PITCH) != 0);
|
|
pIns->PitchEnv.dwFlags.set(ENV_SUSTAIN, (dwOldFlags & dFdd_PITCHSUSTAIN) != 0);
|
|
pIns->PitchEnv.dwFlags.set(ENV_LOOP, (dwOldFlags & dFdd_PITCHLOOP) != 0);
|
|
pIns->PitchEnv.dwFlags.set(ENV_CARRY, (dwOldFlags & dFdd_PITCHCARRY) != 0);
|
|
pIns->PitchEnv.dwFlags.set(ENV_FILTER, (dwOldFlags & dFdd_FILTER) != 0);
|
|
|
|
pIns->dwFlags.reset();
|
|
pIns->dwFlags.set(INS_SETPANNING, (dwOldFlags & dFdd_SETPANNING) != 0);
|
|
pIns->dwFlags.set(INS_MUTE, (dwOldFlags & dFdd_MUTE) != 0);
|
|
}
|
|
|
|
|
|
void ReadInstrumentExtensionField(ModInstrument* pIns, const uint32 code, const uint16 size, FileReader &file)
|
|
{
|
|
if(code == MagicBE("K[.."))
|
|
{
|
|
// skip keyboard mapping
|
|
file.Skip(size);
|
|
return;
|
|
}
|
|
|
|
bool success = ReadInstrumentHeaderField(pIns, code, size, file);
|
|
|
|
if(!success)
|
|
{
|
|
file.Skip(size);
|
|
return;
|
|
}
|
|
|
|
if(code == MagicBE("dF..")) // 'dF..' field requires additional processing.
|
|
ConvertReadExtendedFlags(pIns);
|
|
}
|
|
|
|
|
|
void ReadExtendedInstrumentProperty(ModInstrument* pIns, const uint32 code, FileReader &file)
|
|
{
|
|
uint16 size = file.ReadUint16LE();
|
|
if(!file.CanRead(size))
|
|
{
|
|
return;
|
|
}
|
|
ReadInstrumentExtensionField(pIns, code, size, file);
|
|
}
|
|
|
|
|
|
void ReadExtendedInstrumentProperties(ModInstrument* pIns, FileReader &file)
|
|
{
|
|
if(!file.ReadMagic("XTPM")) // 'MPTX'
|
|
{
|
|
return;
|
|
}
|
|
|
|
while(file.CanRead(7))
|
|
{
|
|
ReadExtendedInstrumentProperty(pIns, file.ReadUint32LE(), file);
|
|
}
|
|
}
|
|
|
|
|
|
bool CSoundFile::LoadExtendedInstrumentProperties(FileReader &file)
|
|
{
|
|
if(!file.ReadMagic("XTPM")) // 'MPTX'
|
|
{
|
|
return false;
|
|
}
|
|
|
|
while(file.CanRead(6))
|
|
{
|
|
uint32 code = file.ReadUint32LE();
|
|
|
|
if(code == MagicBE("MPTS") // Reached song extensions, break out of this loop
|
|
|| code == MagicLE("228\x04") // Reached MPTM extensions (in case there are no song extensions)
|
|
|| (code & 0x80808080) || !(code & 0x60606060)) // Non-ASCII chunk ID
|
|
{
|
|
file.SkipBack(4);
|
|
break;
|
|
}
|
|
|
|
// Read size of this property for *one* instrument
|
|
const uint16 size = file.ReadUint16LE();
|
|
|
|
for(INSTRUMENTINDEX i = 1; i <= GetNumInstruments(); i++)
|
|
{
|
|
if(Instruments[i])
|
|
{
|
|
ReadInstrumentExtensionField(Instruments[i], code, size, file);
|
|
}
|
|
}
|
|
}
|
|
return true;
|
|
}
|
|
|
|
|
|
OPENMPT_NAMESPACE_END
|