/[svn]/libgig/trunk/src/RIFF.h
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Revision 2703 - (show annotations) (download) (as text)
Tue Jan 13 15:28:37 2015 UTC (9 years, 3 months ago) by schoenebeck
File MIME type: text/x-c++hdr
File size: 17679 byte(s)
* RIFF: Cleanup of an old DLL binary backward compatibility hack.
* Bumped version (3.3.0.svn28).

1 /***************************************************************************
2 * *
3 * libgig - C++ cross-platform Gigasampler format file access library *
4 * *
5 * Copyright (C) 2003-2015 by Christian Schoenebeck *
6 * <cuse@users.sourceforge.net> *
7 * *
8 * This library is free software; you can redistribute it and/or modify *
9 * it under the terms of the GNU General Public License as published by *
10 * the Free Software Foundation; either version 2 of the License, or *
11 * (at your option) any later version. *
12 * *
13 * This library is distributed in the hope that it will be useful, *
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
16 * GNU General Public License for more details. *
17 * *
18 * You should have received a copy of the GNU General Public License *
19 * along with this library; if not, write to the Free Software *
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, *
21 * MA 02111-1307 USA *
22 ***************************************************************************/
23
24 #ifndef __RIFF_H__
25 #define __RIFF_H__
26
27 #ifdef WIN32
28 # define POSIX 0
29 #endif
30
31 #ifndef POSIX
32 # define POSIX 1
33 #endif
34
35 #ifndef DEBUG
36 # define DEBUG 0
37 #endif
38
39 #include <string>
40 #include <list>
41 #include <map>
42 #include <set>
43 #include <iostream>
44
45 #ifdef HAVE_CONFIG_H
46 # include <config.h>
47 #endif
48
49 #if POSIX
50 # include <sys/types.h>
51 # include <sys/stat.h>
52 # include <fcntl.h>
53 # include <unistd.h>
54 #endif // POSIX
55
56 #ifdef _MSC_VER
57 // Visual C++ 2008 doesn't have stdint.h
58 typedef __int8 int8_t;
59 typedef __int16 int16_t;
60 typedef __int32 int32_t;
61 typedef __int64 int64_t;
62 typedef unsigned __int8 uint8_t;
63 typedef unsigned __int16 uint16_t;
64 typedef unsigned __int32 uint32_t;
65 typedef unsigned __int64 uint64_t;
66 #else
67 #include <stdint.h>
68 #endif
69
70 #ifdef WIN32
71 # include <windows.h>
72 typedef unsigned int uint;
73 #endif // WIN32
74
75 #include <stdio.h>
76
77 #if WORDS_BIGENDIAN
78 # define CHUNK_ID_RIFF 0x52494646
79 # define CHUNK_ID_RIFX 0x52494658
80 # define CHUNK_ID_LIST 0x4C495354
81
82 # define LIST_TYPE_INFO 0x494E464F
83 # define CHUNK_ID_ICMT 0x49434D54
84 # define CHUNK_ID_ICOP 0x49434F50
85 # define CHUNK_ID_ICRD 0x49435244
86 # define CHUNK_ID_IENG 0x49454E47
87 # define CHUNK_ID_INAM 0x494E414D
88 # define CHUNK_ID_IPRD 0x49505244
89 # define CHUNK_ID_ISFT 0x49534654
90
91 # define CHUNK_ID_SMPL 0x736D706C
92
93 #else // little endian
94 # define CHUNK_ID_RIFF 0x46464952
95 # define CHUNK_ID_RIFX 0x58464952
96 # define CHUNK_ID_LIST 0x5453494C
97
98 # define LIST_TYPE_INFO 0x4F464E49
99 # define CHUNK_ID_ICMT 0x544D4349
100 # define CHUNK_ID_ICOP 0x504F4349
101 # define CHUNK_ID_ICRD 0x44524349
102 # define CHUNK_ID_IENG 0x474E4549
103 # define CHUNK_ID_INAM 0x4D414E49
104 # define CHUNK_ID_IPRD 0x44525049
105 # define CHUNK_ID_ISFT 0x54465349
106
107 # define CHUNK_ID_SMPL 0x6C706D73
108
109 #endif // WORDS_BIGENDIAN
110
111 #define CHUNK_HEADER_SIZE 8
112 #define LIST_HEADER_SIZE 12
113 #define RIFF_HEADER_SIZE 12
114
115
116 /**
117 * @brief RIFF specific classes and definitions
118 *
119 * The Resource Interchange File Format (RIFF) is a generic tree-structured
120 * meta-format which stores data in so called "chunks". It can be compared
121 * to XML, but in contrast to XML, RIFF is entirely binary encoded, that is
122 * not ASCII based. RIFF is used as basis for many file formats like AVI,
123 * WAV, DLS and of course the Gigasampler file format. ;-)
124 *
125 * RIFF chunks can be seen as containers for data. There are two distinct
126 * types of chunks:
127 *
128 * - @e ordinary @e chunks are the leafs of the data tree which encapsulate
129 * the actual data of the file (i.e. the sample data of a .wav file)
130 *
131 * - @e list @e chunks are the nodes of the data tree which hold an
132 * arbitrary amount of subchunks (can be both, list chunks and/or ordinary
133 * chunks)
134 */
135 namespace RIFF {
136
137 /* just symbol prototyping */
138 class Chunk;
139 class List;
140 class File;
141
142 typedef std::string String;
143
144 /** Whether file stream is open in read or in read/write mode. */
145 typedef enum {
146 stream_mode_read = 0,
147 stream_mode_read_write = 1,
148 stream_mode_closed = 2
149 } stream_mode_t;
150
151 /** Current state of the file stream. */
152 typedef enum {
153 stream_ready = 0,
154 stream_end_reached = 1,
155 stream_closed = 2
156 } stream_state_t;
157
158 /** File stream position dependent to these relations. */
159 typedef enum {
160 stream_start = 0,
161 stream_curpos = 1,
162 stream_backward = 2,
163 stream_end = 3
164 } stream_whence_t;
165
166 /** Alignment of data bytes in memory (system dependant). */
167 typedef enum {
168 endian_little = 0,
169 endian_big = 1,
170 endian_native = 2
171 } endian_t;
172
173 /** General chunk structure of a file. */
174 enum layout_t {
175 layout_standard = 0, ///< Standard RIFF file layout: First chunk in file is a List chunk which contains all other chunks and there are no chunks outside the scope of that very first (List) chunk.
176 layout_flat = 1 ///< Not a "real" RIFF file: First chunk in file is an ordinary data chunk, not a List chunk, and there might be other chunks after that first chunk.
177 };
178
179 /**
180 * @brief Used for indicating the progress of a certain task.
181 *
182 * The function pointer argument has to be supplied with a valid
183 * function of the given signature which will then be called on
184 * progress changes. An equivalent progress_t structure will be passed
185 * back as argument to the callback function on each progress change.
186 * The factor field of the supplied progress_t structure will then
187 * reflect the current progress as value between 0.0 and 1.0. You might
188 * want to use the custom field for data needed in your callback
189 * function.
190 */
191 struct progress_t {
192 void (*callback)(progress_t*); ///< Callback function pointer which has to be assigned to a function for progress notification.
193 float factor; ///< Reflects current progress as value between 0.0 and 1.0.
194 void* custom; ///< This pointer can be used for arbitrary data.
195 float __range_min; ///< Only for internal usage, do not modify!
196 float __range_max; ///< Only for internal usage, do not modify!
197 progress_t();
198 };
199
200 /** @brief Ordinary RIFF Chunk
201 *
202 * Provides convenient methods to access data of ordinary RIFF chunks
203 * in general.
204 */
205 class Chunk {
206 public:
207 Chunk(File* pFile, unsigned long StartPos, List* Parent);
208 String GetChunkIDString();
209 uint32_t GetChunkID() { return ChunkID; } ///< Chunk ID in unsigned integer representation.
210 File* GetFile() { return pFile; } ///< Returns pointer to the chunk's File object.
211 List* GetParent() { return pParent; } ///< Returns pointer to the chunk's parent list chunk.
212 unsigned long GetSize() const { return CurrentChunkSize; } ///< Chunk size in bytes (without header, thus the chunk data body)
213 unsigned long GetNewSize() { return NewChunkSize; } ///< New chunk size if it was modified with Resize().
214 unsigned long GetPos() { return ulPos; } ///< Position within the chunk data body
215 unsigned long GetFilePos() { return ulStartPos + ulPos; } ///< Current, actual offset in file.
216 unsigned long SetPos(unsigned long Where, stream_whence_t Whence = stream_start);
217 unsigned long RemainingBytes();
218 stream_state_t GetState();
219 unsigned long Read(void* pData, unsigned long WordCount, unsigned long WordSize);
220 unsigned long ReadInt8(int8_t* pData, unsigned long WordCount = 1);
221 unsigned long ReadUint8(uint8_t* pData, unsigned long WordCount = 1);
222 unsigned long ReadInt16(int16_t* pData, unsigned long WordCount = 1);
223 unsigned long ReadUint16(uint16_t* pData, unsigned long WordCount = 1);
224 unsigned long ReadInt32(int32_t* pData, unsigned long WordCount = 1);
225 unsigned long ReadUint32(uint32_t* pData, unsigned long WordCount = 1);
226 int8_t ReadInt8();
227 uint8_t ReadUint8();
228 int16_t ReadInt16();
229 uint16_t ReadUint16();
230 int32_t ReadInt32();
231 uint32_t ReadUint32();
232 void ReadString(String& s, int size);
233 unsigned long Write(void* pData, unsigned long WordCount, unsigned long WordSize);
234 unsigned long WriteInt8(int8_t* pData, unsigned long WordCount = 1);
235 unsigned long WriteUint8(uint8_t* pData, unsigned long WordCount = 1);
236 unsigned long WriteInt16(int16_t* pData, unsigned long WordCount = 1);
237 unsigned long WriteUint16(uint16_t* pData, unsigned long WordCount = 1);
238 unsigned long WriteInt32(int32_t* pData, unsigned long WordCount = 1);
239 unsigned long WriteUint32(uint32_t* pData, unsigned long WordCount = 1);
240 void* LoadChunkData();
241 void ReleaseChunkData();
242 void Resize(int iNewSize);
243 virtual ~Chunk();
244 protected:
245 uint32_t ChunkID;
246 uint32_t CurrentChunkSize; /* in bytes */
247 uint32_t NewChunkSize; /* in bytes (if chunk was scheduled to be resized) */
248 List* pParent;
249 File* pFile;
250 unsigned long ulStartPos; /* actual position in file where chunk (without header) starts */
251 unsigned long ulPos; /* # of bytes from ulStartPos */
252 uint8_t* pChunkData;
253 unsigned long ulChunkDataSize;
254
255 Chunk(File* pFile);
256 Chunk(File* pFile, List* pParent, uint32_t uiChunkID, uint uiBodySize);
257 void ReadHeader(unsigned long fPos);
258 void WriteHeader(unsigned long fPos);
259 unsigned long ReadSceptical(void* pData, unsigned long WordCount, unsigned long WordSize);
260 inline void swapBytes_16(void* Word) {
261 uint8_t byteCache = *((uint8_t*) Word);
262 *((uint8_t*) Word) = *((uint8_t*) Word + 1);
263 *((uint8_t*) Word + 1) = byteCache;
264 }
265 inline void swapBytes_32(void* Word) {
266 uint8_t byteCache = *((uint8_t*) Word);
267 *((uint8_t*) Word) = *((uint8_t*) Word + 3);
268 *((uint8_t*) Word + 3) = byteCache;
269 byteCache = *((uint8_t*) Word + 1);
270 *((uint8_t*) Word + 1) = *((uint8_t*) Word + 2);
271 *((uint8_t*) Word + 2) = byteCache;
272 }
273 inline void swapBytes(void* Word, unsigned long WordSize) {
274 uint8_t byteCache;
275 unsigned long lo = 0, hi = WordSize - 1;
276 for (; lo < hi; hi--, lo++) {
277 byteCache = *((uint8_t*) Word + lo);
278 *((uint8_t*) Word + lo) = *((uint8_t*) Word + hi);
279 *((uint8_t*) Word + hi) = byteCache;
280 }
281 }
282 inline String convertToString(uint32_t word) {
283 String result;
284 for (int i = 0; i < 4; i++) {
285 uint8_t byte = *((uint8_t*)(&word) + i);
286 char c = byte;
287 result += c;
288 }
289 return result;
290 }
291 virtual unsigned long WriteChunk(unsigned long ulWritePos, unsigned long ulCurrentDataOffset, progress_t* pProgress = NULL);
292 virtual void __resetPos(); ///< Sets Chunk's read/write position to zero.
293
294 friend class List;
295 };
296
297 /** @brief RIFF List Chunk
298 *
299 * Provides convenient methods to access data of RIFF list chunks and
300 * their subchunks.
301 */
302 class List : public Chunk {
303 public:
304 List(File* pFile, unsigned long StartPos, List* Parent);
305 String GetListTypeString();
306 uint32_t GetListType() { return ListType; } ///< Returns unsigned integer representation of the list's ID
307 Chunk* GetSubChunk(uint32_t ChunkID);
308 List* GetSubList(uint32_t ListType);
309 Chunk* GetFirstSubChunk();
310 Chunk* GetNextSubChunk();
311 List* GetFirstSubList();
312 List* GetNextSubList();
313 unsigned int CountSubChunks();
314 unsigned int CountSubChunks(uint32_t ChunkID);
315 unsigned int CountSubLists();
316 unsigned int CountSubLists(uint32_t ListType);
317 Chunk* AddSubChunk(uint32_t uiChunkID, uint uiBodySize);
318 List* AddSubList(uint32_t uiListType);
319 void DeleteSubChunk(Chunk* pSubChunk);
320 void MoveSubChunk(Chunk* pSrc, Chunk* pDst); // read API doc comments !!!
321 void MoveSubChunk(Chunk* pSrc, List* pNewParent);
322 virtual ~List();
323 protected:
324 typedef std::map<uint32_t, RIFF::Chunk*> ChunkMap;
325 typedef std::list<Chunk*> ChunkList;
326 typedef std::set<Chunk*> ChunkSet;
327
328 uint32_t ListType;
329 ChunkList* pSubChunks;
330 ChunkMap* pSubChunksMap;
331 ChunkList::iterator ChunksIterator;
332 ChunkList::iterator ListIterator;
333
334 List(File* pFile);
335 List(File* pFile, List* pParent, uint32_t uiListID);
336 void ReadHeader(unsigned long fPos);
337 void WriteHeader(unsigned long fPos);
338 void LoadSubChunks(progress_t* pProgress = NULL);
339 void LoadSubChunksRecursively(progress_t* pProgress = NULL);
340 virtual unsigned long WriteChunk(unsigned long ulWritePos, unsigned long ulCurrentDataOffset, progress_t* pProgress = NULL);
341 virtual void __resetPos(); ///< Sets List Chunk's read/write position to zero and causes all sub chunks to do the same.
342 void DeleteChunkList();
343 };
344
345 /** @brief RIFF File
346 *
347 * Handles arbitrary RIFF files and provides together with its base
348 * classes convenient methods to walk through, read and modify the
349 * file's RIFF tree.
350 */
351 class File : public List {
352 public:
353 File(uint32_t FileType);
354 File(const String& path);
355 File(const String& path, uint32_t FileType, endian_t Endian, layout_t layout);
356 stream_mode_t GetMode();
357 bool SetMode(stream_mode_t NewMode);
358 void SetByteOrder(endian_t Endian);
359 String GetFileName();
360 void SetFileName(const String& path);
361 bool IsNew() const;
362 layout_t GetLayout() const;
363 virtual void Save(progress_t* pProgress = NULL);
364 virtual void Save(const String& path, progress_t* pProgress = NULL);
365 virtual ~File();
366 protected:
367 #if POSIX
368 int hFileRead; ///< handle / descriptor for reading from file
369 int hFileWrite; ///< handle / descriptor for writing to (some) file
370 #elif defined(WIN32)
371 HANDLE hFileRead; ///< handle / descriptor for reading from file
372 HANDLE hFileWrite; ///< handle / descriptor for writing to (some) file
373 #else
374 FILE* hFileRead; ///< handle / descriptor for reading from file
375 FILE* hFileWrite; ///< handle / descriptor for writing to (some) file
376 #endif // POSIX
377 String Filename;
378 bool bEndianNative;
379 bool bIsNewFile;
380 layout_t Layout; ///< An ordinary RIFF file is always set to layout_standard.
381
382 void LogAsResized(Chunk* pResizedChunk);
383 void UnlogResized(Chunk* pResizedChunk);
384 friend class Chunk;
385 friend class List;
386 private:
387 stream_mode_t Mode;
388 ChunkSet ResizedChunks; ///< All chunks which have been resized (enlarged / shortened).
389
390 void __openExistingFile(const String& path, uint32_t* FileType = NULL);
391 unsigned long GetFileSize();
392 void ResizeFile(unsigned long ulNewSize);
393 #if POSIX
394 unsigned long __GetFileSize(int hFile);
395 #elif defined(WIN32)
396 unsigned long __GetFileSize(HANDLE hFile);
397 #else
398 unsigned long __GetFileSize(FILE* hFile);
399 #endif
400 void Cleanup();
401 };
402
403 /**
404 * Will be thrown whenever an error occurs while handling a RIFF file.
405 */
406 class Exception {
407 public:
408 String Message;
409
410 Exception(String Message) { Exception::Message = Message; }
411 void PrintMessage();
412 virtual ~Exception() {}
413 };
414
415 String libraryName();
416 String libraryVersion();
417
418 } // namespace RIFF
419 #endif // __RIFF_H__

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