michael@0: // ICoder.h michael@0: michael@0: #ifndef __ICODER_H michael@0: #define __ICODER_H michael@0: michael@0: #include "IStream.h" michael@0: michael@0: // "23170F69-40C1-278A-0000-000400xx0000" michael@0: #define CODER_INTERFACE(i, x) \ michael@0: DEFINE_GUID(IID_ ## i, \ michael@0: 0x23170F69, 0x40C1, 0x278A, 0x00, 0x00, 0x00, 0x04, 0x00, x, 0x00, 0x00); \ michael@0: struct i: public IUnknown michael@0: michael@0: CODER_INTERFACE(ICompressProgressInfo, 0x04) michael@0: { michael@0: STDMETHOD(SetRatioInfo)(const UInt64 *inSize, const UInt64 *outSize) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressCoder, 0x05) michael@0: { michael@0: STDMETHOD(Code)(ISequentialInStream *inStream, michael@0: ISequentialOutStream *outStream, michael@0: const UInt64 *inSize, michael@0: const UInt64 *outSize, michael@0: ICompressProgressInfo *progress) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressCoder2, 0x18) michael@0: { michael@0: STDMETHOD(Code)(ISequentialInStream **inStreams, michael@0: const UInt64 **inSizes, michael@0: UInt32 numInStreams, michael@0: ISequentialOutStream **outStreams, michael@0: const UInt64 **outSizes, michael@0: UInt32 numOutStreams, michael@0: ICompressProgressInfo *progress) PURE; michael@0: }; michael@0: michael@0: namespace NCoderPropID michael@0: { michael@0: enum EEnum michael@0: { michael@0: kDictionarySize = 0x400, michael@0: kUsedMemorySize, michael@0: kOrder, michael@0: kPosStateBits = 0x440, michael@0: kLitContextBits, michael@0: kLitPosBits, michael@0: kNumFastBytes = 0x450, michael@0: kMatchFinder, michael@0: kMatchFinderCycles, michael@0: kNumPasses = 0x460, michael@0: kAlgorithm = 0x470, michael@0: kMultiThread = 0x480, michael@0: kNumThreads, michael@0: kEndMarker = 0x490 michael@0: }; michael@0: } michael@0: michael@0: CODER_INTERFACE(ICompressSetCoderProperties, 0x20) michael@0: { michael@0: STDMETHOD(SetCoderProperties)(const PROPID *propIDs, michael@0: const PROPVARIANT *properties, UInt32 numProperties) PURE; michael@0: }; michael@0: michael@0: /* michael@0: CODER_INTERFACE(ICompressSetCoderProperties, 0x21) michael@0: { michael@0: STDMETHOD(SetDecoderProperties)(ISequentialInStream *inStream) PURE; michael@0: }; michael@0: */ michael@0: michael@0: CODER_INTERFACE(ICompressSetDecoderProperties2, 0x22) michael@0: { michael@0: STDMETHOD(SetDecoderProperties2)(const Byte *data, UInt32 size) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressWriteCoderProperties, 0x23) michael@0: { michael@0: STDMETHOD(WriteCoderProperties)(ISequentialOutStream *outStreams) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressGetInStreamProcessedSize, 0x24) michael@0: { michael@0: STDMETHOD(GetInStreamProcessedSize)(UInt64 *value) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressSetCoderMt, 0x25) michael@0: { michael@0: STDMETHOD(SetNumberOfThreads)(UInt32 numThreads) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressGetSubStreamSize, 0x30) michael@0: { michael@0: STDMETHOD(GetSubStreamSize)(UInt64 subStream, UInt64 *value) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressSetInStream, 0x31) michael@0: { michael@0: STDMETHOD(SetInStream)(ISequentialInStream *inStream) PURE; michael@0: STDMETHOD(ReleaseInStream)() PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressSetOutStream, 0x32) michael@0: { michael@0: STDMETHOD(SetOutStream)(ISequentialOutStream *outStream) PURE; michael@0: STDMETHOD(ReleaseOutStream)() PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressSetInStreamSize, 0x33) michael@0: { michael@0: STDMETHOD(SetInStreamSize)(const UInt64 *inSize) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressSetOutStreamSize, 0x34) michael@0: { michael@0: STDMETHOD(SetOutStreamSize)(const UInt64 *outSize) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICompressFilter, 0x40) michael@0: { michael@0: STDMETHOD(Init)() PURE; michael@0: STDMETHOD_(UInt32, Filter)(Byte *data, UInt32 size) PURE; michael@0: // Filter return outSize (UInt32) michael@0: // if (outSize <= size): Filter have converted outSize bytes michael@0: // if (outSize > size): Filter have not converted anything. michael@0: // and it needs at least outSize bytes to convert one block michael@0: // (it's for crypto block algorithms). michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICryptoProperties, 0x80) michael@0: { michael@0: STDMETHOD(SetKey)(const Byte *data, UInt32 size) PURE; michael@0: STDMETHOD(SetInitVector)(const Byte *data, UInt32 size) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICryptoSetPassword, 0x90) michael@0: { michael@0: STDMETHOD(CryptoSetPassword)(const Byte *data, UInt32 size) PURE; michael@0: }; michael@0: michael@0: CODER_INTERFACE(ICryptoSetCRC, 0xA0) michael@0: { michael@0: STDMETHOD(CryptoSetCRC)(UInt32 crc) PURE; michael@0: }; michael@0: michael@0: ////////////////////// michael@0: // It's for DLL file michael@0: namespace NMethodPropID michael@0: { michael@0: enum EEnum michael@0: { michael@0: kID, michael@0: kName, michael@0: kDecoder, michael@0: kEncoder, michael@0: kInStreams, michael@0: kOutStreams, michael@0: kDescription michael@0: }; michael@0: } michael@0: michael@0: #endif