/[svn]/libgig/trunk/src/RIFF.cpp
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Annotation of /libgig/trunk/src/RIFF.cpp

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Revision 3481 - (hide annotations) (download)
Fri Feb 22 12:12:50 2019 UTC (5 years, 1 month ago) by schoenebeck
File size: 99319 byte(s)
* gig.h, gig.cpp: Added File::GetRiffFile() method.
* DLS.h, DLS.cpp: Added File::GetRiffFile() method.
* sf2.h, sf2.cpp: Added Sample::GetFile() and
  File::GetRiffFile() methods.
* RIFF.h, RIFF.cpp: Added a 2nd (overridden)
  progress_t::subdivide() method which allows a more
  fine graded control into which portions the subtasks
  are divided to.
* RIFF Fix: API doc comment for Chunk::GetFilePos() was
  completely wrong.
* Bumped version (4.1.0.svn14).

1 schoenebeck 2 /***************************************************************************
2     * *
3 schoenebeck 933 * libgig - C++ cross-platform Gigasampler format file access library *
4 schoenebeck 2 * *
5 schoenebeck 3478 * Copyright (C) 2003-2019 by Christian Schoenebeck *
6 schoenebeck 384 * <cuse@users.sourceforge.net> *
7 schoenebeck 2 * *
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 schoenebeck 780
24 persson 1713 #include <algorithm>
25 schoenebeck 1953 #include <set>
26 schoenebeck 780 #include <string.h>
27    
28 schoenebeck 2 #include "RIFF.h"
29    
30 schoenebeck 800 #include "helper.h"
31    
32 schoenebeck 2675 #if POSIX
33     # include <errno.h>
34     #endif
35    
36 schoenebeck 2 namespace RIFF {
37    
38 schoenebeck 1105 // *************** Internal functions **************
39     // *
40    
41     /// Returns a human readable path of the given chunk.
42 schoenebeck 1383 static String __resolveChunkPath(Chunk* pCk) {
43 schoenebeck 1105 String sPath;
44     for (Chunk* pChunk = pCk; pChunk; pChunk = pChunk->GetParent()) {
45     if (pChunk->GetChunkID() == CHUNK_ID_LIST) {
46     List* pList = (List*) pChunk;
47     sPath = "->'" + pList->GetListTypeString() + "'" + sPath;
48     } else {
49     sPath = "->'" + pChunk->GetChunkIDString() + "'" + sPath;
50     }
51     }
52     return sPath;
53     }
54    
55    
56    
57 schoenebeck 2682 // *************** progress_t ***************
58     // *
59    
60     progress_t::progress_t() {
61     callback = NULL;
62     custom = NULL;
63     __range_min = 0.0f;
64     __range_max = 1.0f;
65     }
66    
67 schoenebeck 3478 /**
68 schoenebeck 3481 * Divides this progress task into the requested amount of equal weighted
69     * sub-progress tasks and returns a vector with those subprogress tasks.
70 schoenebeck 3478 *
71     * @param iSubtasks - total amount sub tasks this task should be subdivided
72     * @returns subtasks
73     */
74     std::vector<progress_t> progress_t::subdivide(int iSubtasks) {
75     std::vector<progress_t> v;
76     for (int i = 0; i < iSubtasks; ++i) {
77     progress_t p;
78     __divide_progress(this, &p, iSubtasks, i);
79     v.push_back(p);
80     }
81     return v;
82     }
83 schoenebeck 2682
84 schoenebeck 3481 /**
85     * Divides this progress task into the requested amount of sub-progress
86     * tasks, where each one of those new sub-progress tasks is created with its
87     * requested individual weight / portion, and finally returns a vector
88     * with those new subprogress tasks.
89     *
90     * The amount of subprogresses to be created is determined by this method
91     * by calling @c vSubTaskPortions.size() .
92     *
93     * Example: consider you wanted to create 3 subprogresses where the 1st
94     * subtask should be assigned 10% of the new 3 subprogresses' overall
95     * progress, the 2nd subtask should be assigned 50% of the new 3
96     * subprogresses' overall progress, and the 3rd subtask should be assigned
97     * 40%, then you might call this method like this:
98     * @code
99     * std::vector<progress_t> subprogresses = progress.subdivide({0.1, 0.5, 0.4});
100     * @endcode
101     *
102     * @param vSubTaskPortions - amount and individual weight of subtasks to be
103     * created
104     * @returns subtasks
105     */
106     std::vector<progress_t> progress_t::subdivide(std::vector<float> vSubTaskPortions) {
107     float fTotal = 0.f; // usually 1.0, but we sum the portions up below to be sure
108     for (int i = 0; i < vSubTaskPortions.size(); ++i)
109     fTotal += vSubTaskPortions[i];
110 schoenebeck 2682
111 schoenebeck 3481 float fLow = 0.f, fHigh = 0.f;
112     std::vector<progress_t> v;
113     for (int i = 0; i < vSubTaskPortions.size(); ++i) {
114     fLow = fHigh;
115     fHigh = vSubTaskPortions[i];
116     progress_t p;
117     __divide_progress(this, &p, fTotal, fLow, fHigh);
118     v.push_back(p);
119     }
120     return v;
121     }
122 schoenebeck 3478
123 schoenebeck 3481
124    
125 schoenebeck 2 // *************** Chunk **************
126     // *
127    
128 schoenebeck 780 Chunk::Chunk(File* pFile) {
129 schoenebeck 3057 #if DEBUG_RIFF
130 schoenebeck 780 std::cout << "Chunk::Chunk(File* pFile)" << std::endl;
131 schoenebeck 3057 #endif // DEBUG_RIFF
132 schoenebeck 2912 ullPos = 0;
133 schoenebeck 2 pParent = NULL;
134     pChunkData = NULL;
135 schoenebeck 2912 ullCurrentChunkSize = 0;
136     ullNewChunkSize = 0;
137     ullChunkDataSize = 0;
138 schoenebeck 798 ChunkID = CHUNK_ID_RIFF;
139 schoenebeck 780 this->pFile = pFile;
140 schoenebeck 2 }
141    
142 schoenebeck 2912 Chunk::Chunk(File* pFile, file_offset_t StartPos, List* Parent) {
143 schoenebeck 3057 #if DEBUG_RIFF
144 schoenebeck 2912 std::cout << "Chunk::Chunk(File*,file_offset_t,List*),StartPos=" << StartPos << std::endl;
145 schoenebeck 3057 #endif // DEBUG_RIFF
146 schoenebeck 780 this->pFile = pFile;
147 schoenebeck 2912 ullStartPos = StartPos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize);
148 schoenebeck 2 pParent = Parent;
149 schoenebeck 2912 ullPos = 0;
150 schoenebeck 2 pChunkData = NULL;
151 schoenebeck 2912 ullCurrentChunkSize = 0;
152     ullNewChunkSize = 0;
153     ullChunkDataSize = 0;
154 schoenebeck 2 ReadHeader(StartPos);
155     }
156    
157 schoenebeck 2912 Chunk::Chunk(File* pFile, List* pParent, uint32_t uiChunkID, file_offset_t ullBodySize) {
158 schoenebeck 780 this->pFile = pFile;
159 schoenebeck 2912 ullStartPos = 0; // arbitrary usually, since it will be updated when we write the chunk
160 schoenebeck 780 this->pParent = pParent;
161 schoenebeck 2912 ullPos = 0;
162 schoenebeck 780 pChunkData = NULL;
163 schoenebeck 1863 ChunkID = uiChunkID;
164 schoenebeck 2912 ullChunkDataSize = 0;
165     ullCurrentChunkSize = 0;
166     ullNewChunkSize = ullBodySize;
167 schoenebeck 780 }
168    
169 schoenebeck 2 Chunk::~Chunk() {
170     if (pChunkData) delete[] pChunkData;
171     }
172    
173 schoenebeck 2912 void Chunk::ReadHeader(file_offset_t filePos) {
174 schoenebeck 3057 #if DEBUG_RIFF
175 schoenebeck 2912 std::cout << "Chunk::Readheader(" << filePos << ") ";
176 schoenebeck 3057 #endif // DEBUG_RIFF
177 schoenebeck 1863 ChunkID = 0;
178 schoenebeck 2912 ullNewChunkSize = ullCurrentChunkSize = 0;
179 schoenebeck 2 #if POSIX
180 schoenebeck 2912 if (lseek(pFile->hFileRead, filePos, SEEK_SET) != -1) {
181 schoenebeck 780 read(pFile->hFileRead, &ChunkID, 4);
182 schoenebeck 2912 read(pFile->hFileRead, &ullCurrentChunkSize, pFile->FileOffsetSize);
183 schoenebeck 1050 #elif defined(WIN32)
184 schoenebeck 2915 LARGE_INTEGER liFilePos;
185     liFilePos.QuadPart = filePos;
186 schoenebeck 2914 if (SetFilePointerEx(pFile->hFileRead, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN)) {
187 schoenebeck 1050 DWORD dwBytesRead;
188     ReadFile(pFile->hFileRead, &ChunkID, 4, &dwBytesRead, NULL);
189 schoenebeck 2912 ReadFile(pFile->hFileRead, &ullCurrentChunkSize, pFile->FileOffsetSize, &dwBytesRead, NULL);
190 schoenebeck 2 #else
191 schoenebeck 2912 if (!fseeko(pFile->hFileRead, filePos, SEEK_SET)) {
192 schoenebeck 780 fread(&ChunkID, 4, 1, pFile->hFileRead);
193 schoenebeck 2912 fread(&ullCurrentChunkSize, pFile->FileOffsetSize, 1, pFile->hFileRead);
194 schoenebeck 2 #endif // POSIX
195     #if WORDS_BIGENDIAN
196     if (ChunkID == CHUNK_ID_RIFF) {
197 schoenebeck 808 pFile->bEndianNative = false;
198 schoenebeck 2 }
199     #else // little endian
200     if (ChunkID == CHUNK_ID_RIFX) {
201 schoenebeck 780 pFile->bEndianNative = false;
202 schoenebeck 2 ChunkID = CHUNK_ID_RIFF;
203     }
204     #endif // WORDS_BIGENDIAN
205 schoenebeck 780 if (!pFile->bEndianNative) {
206 schoenebeck 11 //swapBytes_32(&ChunkID);
207 schoenebeck 2912 if (pFile->FileOffsetSize == 4)
208     swapBytes_32(&ullCurrentChunkSize);
209     else
210     swapBytes_64(&ullCurrentChunkSize);
211 schoenebeck 2 }
212 schoenebeck 3057 #if DEBUG_RIFF
213 schoenebeck 11 std::cout << "ckID=" << convertToString(ChunkID) << " ";
214 schoenebeck 2912 std::cout << "ckSize=" << ullCurrentChunkSize << " ";
215 schoenebeck 1863 std::cout << "bEndianNative=" << pFile->bEndianNative << std::endl;
216 schoenebeck 3057 #endif // DEBUG_RIFF
217 schoenebeck 2912 ullNewChunkSize = ullCurrentChunkSize;
218 schoenebeck 2 }
219     }
220    
221 schoenebeck 2912 void Chunk::WriteHeader(file_offset_t filePos) {
222 schoenebeck 780 uint32_t uiNewChunkID = ChunkID;
223     if (ChunkID == CHUNK_ID_RIFF) {
224     #if WORDS_BIGENDIAN
225     if (pFile->bEndianNative) uiNewChunkID = CHUNK_ID_RIFX;
226     #else // little endian
227     if (!pFile->bEndianNative) uiNewChunkID = CHUNK_ID_RIFX;
228     #endif // WORDS_BIGENDIAN
229     }
230    
231 schoenebeck 2912 uint64_t ullNewChunkSize = this->ullNewChunkSize;
232 schoenebeck 780 if (!pFile->bEndianNative) {
233 schoenebeck 2912 if (pFile->FileOffsetSize == 4)
234     swapBytes_32(&ullNewChunkSize);
235     else
236     swapBytes_64(&ullNewChunkSize);
237 schoenebeck 780 }
238    
239     #if POSIX
240 schoenebeck 2912 if (lseek(pFile->hFileWrite, filePos, SEEK_SET) != -1) {
241 schoenebeck 780 write(pFile->hFileWrite, &uiNewChunkID, 4);
242 schoenebeck 2912 write(pFile->hFileWrite, &ullNewChunkSize, pFile->FileOffsetSize);
243 schoenebeck 780 }
244 schoenebeck 1050 #elif defined(WIN32)
245 schoenebeck 2915 LARGE_INTEGER liFilePos;
246     liFilePos.QuadPart = filePos;
247 schoenebeck 2914 if (SetFilePointerEx(pFile->hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN)) {
248 schoenebeck 1050 DWORD dwBytesWritten;
249     WriteFile(pFile->hFileWrite, &uiNewChunkID, 4, &dwBytesWritten, NULL);
250 schoenebeck 2912 WriteFile(pFile->hFileWrite, &ullNewChunkSize, pFile->FileOffsetSize, &dwBytesWritten, NULL);
251 schoenebeck 1050 }
252 schoenebeck 780 #else
253 schoenebeck 2912 if (!fseeko(pFile->hFileWrite, filePos, SEEK_SET)) {
254 schoenebeck 780 fwrite(&uiNewChunkID, 4, 1, pFile->hFileWrite);
255 schoenebeck 2912 fwrite(&ullNewChunkSize, pFile->FileOffsetSize, 1, pFile->hFileWrite);
256 schoenebeck 780 }
257     #endif // POSIX
258     }
259    
260 schoenebeck 11 /**
261     * Returns the String representation of the chunk's ID (e.g. "RIFF",
262     * "LIST").
263     */
264 schoenebeck 2912 String Chunk::GetChunkIDString() const {
265 schoenebeck 2 return convertToString(ChunkID);
266     }
267    
268 schoenebeck 11 /**
269     * Sets the position within the chunk body, thus within the data portion
270     * of the chunk (in bytes).
271     *
272 schoenebeck 780 * <b>Caution:</b> the position will be reset to zero whenever
273     * File::Save() was called.
274     *
275 schoenebeck 11 * @param Where - position offset (in bytes)
276     * @param Whence - optional: defines to what <i>\a Where</i> relates to,
277     * if omitted \a Where relates to beginning of the chunk
278     * data
279     */
280 schoenebeck 2912 file_offset_t Chunk::SetPos(file_offset_t Where, stream_whence_t Whence) {
281 schoenebeck 3057 #if DEBUG_RIFF
282 schoenebeck 2912 std::cout << "Chunk::SetPos(file_offset_t,stream_whence_t)" << std::endl;
283 schoenebeck 3057 #endif // DEBUG_RIFF
284 schoenebeck 2 switch (Whence) {
285     case stream_curpos:
286 schoenebeck 2912 ullPos += Where;
287 schoenebeck 2 break;
288     case stream_end:
289 schoenebeck 2912 ullPos = ullCurrentChunkSize - 1 - Where;
290 schoenebeck 2 break;
291     case stream_backward:
292 schoenebeck 2912 ullPos -= Where;
293 schoenebeck 2 break;
294     case stream_start: default:
295 schoenebeck 2912 ullPos = Where;
296 schoenebeck 2 break;
297     }
298 schoenebeck 2912 if (ullPos > ullCurrentChunkSize) ullPos = ullCurrentChunkSize;
299     return ullPos;
300 schoenebeck 2 }
301    
302 schoenebeck 11 /**
303     * Returns the number of bytes left to read in the chunk body.
304     * When reading data from the chunk using the Read*() Methods, the
305     * position within the chunk data (that is the chunk body) will be
306     * incremented by the number of read bytes and RemainingBytes() returns
307     * how much data is left to read from the current position to the end
308     * of the chunk data.
309     *
310     * @returns number of bytes left to read
311     */
312 schoenebeck 2912 file_offset_t Chunk::RemainingBytes() const {
313 schoenebeck 3057 #if DEBUG_RIFF
314 schoenebeck 2912 std::cout << "Chunk::Remainingbytes()=" << ullCurrentChunkSize - ullPos << std::endl;
315 schoenebeck 3057 #endif // DEBUG_RIFF
316 schoenebeck 2912 return (ullCurrentChunkSize > ullPos) ? ullCurrentChunkSize - ullPos : 0;
317 schoenebeck 2 }
318    
319 schoenebeck 11 /**
320 schoenebeck 2912 * Returns the actual total size in bytes (including header) of this Chunk
321     * if being stored to a file.
322     *
323     * @param fileOffsetSize - RIFF file offset size (in bytes) assumed when
324     * being saved to a file
325     */
326     file_offset_t Chunk::RequiredPhysicalSize(int fileOffsetSize) {
327     return CHUNK_HEADER_SIZE(fileOffsetSize) + // RIFF chunk header
328     ullNewChunkSize + // chunks's actual data body
329     ullNewChunkSize % 2; // optional pad byte
330     }
331    
332     /**
333 schoenebeck 11 * Returns the current state of the chunk object.
334     * Following values are possible:
335     * - RIFF::stream_ready :
336     * chunk data can be read (this is the usual case)
337     * - RIFF::stream_closed :
338     * the data stream was closed somehow, no more reading possible
339     * - RIFF::stream_end_reached :
340 schoenebeck 1383 * already reached the end of the chunk data, no more reading
341 schoenebeck 11 * possible without SetPos()
342     */
343 schoenebeck 2912 stream_state_t Chunk::GetState() const {
344 schoenebeck 3057 #if DEBUG_RIFF
345 schoenebeck 2912 std::cout << "Chunk::GetState()" << std::endl;
346 schoenebeck 3057 #endif // DEBUG_RIFF
347 schoenebeck 2 #if POSIX
348 schoenebeck 1050 if (pFile->hFileRead == 0) return stream_closed;
349     #elif defined (WIN32)
350     if (pFile->hFileRead == INVALID_HANDLE_VALUE)
351     return stream_closed;
352 schoenebeck 2 #else
353 schoenebeck 780 if (pFile->hFileRead == NULL) return stream_closed;
354 schoenebeck 2 #endif // POSIX
355 schoenebeck 2912 if (ullPos < ullCurrentChunkSize) return stream_ready;
356     else return stream_end_reached;
357 schoenebeck 2 }
358    
359     /**
360     * Reads \a WordCount number of data words with given \a WordSize and
361     * copies it into a buffer pointed by \a pData. The buffer has to be
362     * allocated and be sure to provide the correct \a WordSize, as this
363     * will be important and taken into account for eventual endian
364     * correction (swapping of bytes due to different native byte order of
365     * a system). The position within the chunk will automatically be
366     * incremented.
367     *
368     * @param pData destination buffer
369     * @param WordCount number of data words to read
370     * @param WordSize size of each data word to read
371     * @returns number of successfully read data words or 0 if end
372 schoenebeck 3048 * of file reached or error occurred
373 schoenebeck 2 */
374 schoenebeck 2912 file_offset_t Chunk::Read(void* pData, file_offset_t WordCount, file_offset_t WordSize) {
375 schoenebeck 3057 #if DEBUG_RIFF
376 schoenebeck 2912 std::cout << "Chunk::Read(void*,file_offset_t,file_offset_t)" << std::endl;
377 schoenebeck 3057 #endif // DEBUG_RIFF
378 schoenebeck 2543 //if (ulStartPos == 0) return 0; // is only 0 if this is a new chunk, so nothing to read (yet)
379 schoenebeck 2912 if (ullPos >= ullCurrentChunkSize) return 0;
380     if (ullPos + WordCount * WordSize >= ullCurrentChunkSize) WordCount = (ullCurrentChunkSize - ullPos) / WordSize;
381 schoenebeck 2 #if POSIX
382 schoenebeck 2912 if (lseek(pFile->hFileRead, ullStartPos + ullPos, SEEK_SET) < 0) return 0;
383 schoenebeck 2685 ssize_t readWords = read(pFile->hFileRead, pData, WordCount * WordSize);
384     if (readWords < 1) {
385 schoenebeck 3057 #if DEBUG_RIFF
386 schoenebeck 2685 std::cerr << "POSIX read() failed: " << strerror(errno) << std::endl << std::flush;
387 schoenebeck 3057 #endif // DEBUG_RIFF
388 schoenebeck 2685 return 0;
389     }
390 schoenebeck 2 readWords /= WordSize;
391 schoenebeck 1050 #elif defined(WIN32)
392 schoenebeck 2915 LARGE_INTEGER liFilePos;
393     liFilePos.QuadPart = ullStartPos + ullPos;
394 schoenebeck 2914 if (!SetFilePointerEx(pFile->hFileRead, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN))
395 schoenebeck 2912 return 0;
396 schoenebeck 1050 DWORD readWords;
397 schoenebeck 2912 ReadFile(pFile->hFileRead, pData, WordCount * WordSize, &readWords, NULL); //FIXME: does not work for reading buffers larger than 2GB (even though this should rarely be the case in practice)
398 schoenebeck 1050 if (readWords < 1) return 0;
399     readWords /= WordSize;
400 schoenebeck 2 #else // standard C functions
401 schoenebeck 2912 if (fseeko(pFile->hFileRead, ullStartPos + ullPos, SEEK_SET)) return 0;
402     file_offset_t readWords = fread(pData, WordSize, WordCount, pFile->hFileRead);
403 schoenebeck 2 #endif // POSIX
404 schoenebeck 780 if (!pFile->bEndianNative && WordSize != 1) {
405 schoenebeck 2 switch (WordSize) {
406     case 2:
407 schoenebeck 2912 for (file_offset_t iWord = 0; iWord < readWords; iWord++)
408 schoenebeck 2 swapBytes_16((uint16_t*) pData + iWord);
409     break;
410     case 4:
411 schoenebeck 2912 for (file_offset_t iWord = 0; iWord < readWords; iWord++)
412 schoenebeck 2 swapBytes_32((uint32_t*) pData + iWord);
413     break;
414 schoenebeck 2912 case 8:
415     for (file_offset_t iWord = 0; iWord < readWords; iWord++)
416     swapBytes_64((uint64_t*) pData + iWord);
417     break;
418 schoenebeck 2 default:
419 schoenebeck 2912 for (file_offset_t iWord = 0; iWord < readWords; iWord++)
420 schoenebeck 2 swapBytes((uint8_t*) pData + iWord * WordSize, WordSize);
421     break;
422     }
423     }
424     SetPos(readWords * WordSize, stream_curpos);
425     return readWords;
426     }
427    
428 schoenebeck 780 /**
429     * Writes \a WordCount number of data words with given \a WordSize from
430     * the buffer pointed by \a pData. Be sure to provide the correct
431     * \a WordSize, as this will be important and taken into account for
432     * eventual endian correction (swapping of bytes due to different
433     * native byte order of a system). The position within the chunk will
434     * automatically be incremented.
435     *
436     * @param pData source buffer (containing the data)
437     * @param WordCount number of data words to write
438     * @param WordSize size of each data word to write
439     * @returns number of successfully written data words
440     * @throws RIFF::Exception if write operation would exceed current
441 schoenebeck 3048 * chunk size or any IO error occurred
442 schoenebeck 780 * @see Resize()
443     */
444 schoenebeck 2912 file_offset_t Chunk::Write(void* pData, file_offset_t WordCount, file_offset_t WordSize) {
445 schoenebeck 798 if (pFile->Mode != stream_mode_read_write)
446     throw Exception("Cannot write data to chunk, file has to be opened in read+write mode first");
447 schoenebeck 2912 if (ullPos >= ullCurrentChunkSize || ullPos + WordCount * WordSize > ullCurrentChunkSize)
448 schoenebeck 780 throw Exception("End of chunk reached while trying to write data");
449     if (!pFile->bEndianNative && WordSize != 1) {
450     switch (WordSize) {
451     case 2:
452 schoenebeck 2912 for (file_offset_t iWord = 0; iWord < WordCount; iWord++)
453 schoenebeck 780 swapBytes_16((uint16_t*) pData + iWord);
454     break;
455     case 4:
456 schoenebeck 2912 for (file_offset_t iWord = 0; iWord < WordCount; iWord++)
457 schoenebeck 780 swapBytes_32((uint32_t*) pData + iWord);
458     break;
459 schoenebeck 2912 case 8:
460     for (file_offset_t iWord = 0; iWord < WordCount; iWord++)
461     swapBytes_64((uint64_t*) pData + iWord);
462     break;
463 schoenebeck 780 default:
464 schoenebeck 2912 for (file_offset_t iWord = 0; iWord < WordCount; iWord++)
465 schoenebeck 780 swapBytes((uint8_t*) pData + iWord * WordSize, WordSize);
466     break;
467     }
468     }
469     #if POSIX
470 schoenebeck 2912 if (lseek(pFile->hFileWrite, ullStartPos + ullPos, SEEK_SET) < 0) {
471     throw Exception("Could not seek to position " + ToString(ullPos) +
472     " in chunk (" + ToString(ullStartPos + ullPos) + " in file)");
473 schoenebeck 780 }
474 schoenebeck 2912 ssize_t writtenWords = write(pFile->hFileWrite, pData, WordCount * WordSize);
475 schoenebeck 780 if (writtenWords < 1) throw Exception("POSIX IO Error while trying to write chunk data");
476     writtenWords /= WordSize;
477 schoenebeck 1050 #elif defined(WIN32)
478 schoenebeck 2915 LARGE_INTEGER liFilePos;
479     liFilePos.QuadPart = ullStartPos + ullPos;
480 schoenebeck 2914 if (!SetFilePointerEx(pFile->hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN)) {
481 schoenebeck 2912 throw Exception("Could not seek to position " + ToString(ullPos) +
482     " in chunk (" + ToString(ullStartPos + ullPos) + " in file)");
483 schoenebeck 1050 }
484     DWORD writtenWords;
485 schoenebeck 2912 WriteFile(pFile->hFileWrite, pData, WordCount * WordSize, &writtenWords, NULL); //FIXME: does not work for writing buffers larger than 2GB (even though this should rarely be the case in practice)
486 schoenebeck 1050 if (writtenWords < 1) throw Exception("Windows IO Error while trying to write chunk data");
487     writtenWords /= WordSize;
488 schoenebeck 780 #else // standard C functions
489 schoenebeck 2912 if (fseeko(pFile->hFileWrite, ullStartPos + ullPos, SEEK_SET)) {
490     throw Exception("Could not seek to position " + ToString(ullPos) +
491     " in chunk (" + ToString(ullStartPos + ullPos) + " in file)");
492 schoenebeck 780 }
493 schoenebeck 2912 file_offset_t writtenWords = fwrite(pData, WordSize, WordCount, pFile->hFileWrite);
494 schoenebeck 780 #endif // POSIX
495     SetPos(writtenWords * WordSize, stream_curpos);
496     return writtenWords;
497     }
498    
499 schoenebeck 2 /** Just an internal wrapper for the main <i>Read()</i> method with additional Exception throwing on errors. */
500 schoenebeck 2912 file_offset_t Chunk::ReadSceptical(void* pData, file_offset_t WordCount, file_offset_t WordSize) {
501     file_offset_t readWords = Read(pData, WordCount, WordSize);
502 schoenebeck 2 if (readWords != WordCount) throw RIFF::Exception("End of chunk data reached.");
503     return readWords;
504     }
505    
506     /**
507     * Reads \a WordCount number of 8 Bit signed integer words and copies it
508     * into the buffer pointed by \a pData. The buffer has to be allocated.
509     * The position within the chunk will automatically be incremented.
510     *
511     * @param pData destination buffer
512     * @param WordCount number of 8 Bit signed integers to read
513     * @returns number of read integers
514 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
515 schoenebeck 2 * \a WordCount integers could be read!
516     */
517 schoenebeck 2912 file_offset_t Chunk::ReadInt8(int8_t* pData, file_offset_t WordCount) {
518 schoenebeck 3057 #if DEBUG_RIFF
519 schoenebeck 2912 std::cout << "Chunk::ReadInt8(int8_t*,file_offset_t)" << std::endl;
520 schoenebeck 3057 #endif // DEBUG_RIFF
521 schoenebeck 2 return ReadSceptical(pData, WordCount, 1);
522     }
523    
524     /**
525 schoenebeck 780 * Writes \a WordCount number of 8 Bit signed integer words from the
526     * buffer pointed by \a pData to the chunk's body, directly to the
527     * actual "physical" file. The position within the chunk will
528     * automatically be incremented. Note: you cannot write beyond the
529     * boundaries of the chunk, to append data to the chunk call Resize()
530     * before.
531     *
532     * @param pData source buffer (containing the data)
533     * @param WordCount number of 8 Bit signed integers to write
534     * @returns number of written integers
535 schoenebeck 3048 * @throws RIFF::Exception if an IO error occurred
536 schoenebeck 780 * @see Resize()
537     */
538 schoenebeck 2912 file_offset_t Chunk::WriteInt8(int8_t* pData, file_offset_t WordCount) {
539 schoenebeck 780 return Write(pData, WordCount, 1);
540     }
541    
542     /**
543 schoenebeck 2 * Reads \a WordCount number of 8 Bit unsigned integer words and copies
544     * it into the buffer pointed by \a pData. The buffer has to be
545     * allocated. The position within the chunk will automatically be
546     * incremented.
547     *
548     * @param pData destination buffer
549     * @param WordCount number of 8 Bit unsigned integers to read
550     * @returns number of read integers
551 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
552 schoenebeck 2 * \a WordCount integers could be read!
553     */
554 schoenebeck 2912 file_offset_t Chunk::ReadUint8(uint8_t* pData, file_offset_t WordCount) {
555 schoenebeck 3057 #if DEBUG_RIFF
556 schoenebeck 2912 std::cout << "Chunk::ReadUint8(uint8_t*,file_offset_t)" << std::endl;
557 schoenebeck 3057 #endif // DEBUG_RIFF
558 schoenebeck 2 return ReadSceptical(pData, WordCount, 1);
559     }
560    
561     /**
562 schoenebeck 780 * Writes \a WordCount number of 8 Bit unsigned integer words from the
563     * buffer pointed by \a pData to the chunk's body, directly to the
564     * actual "physical" file. The position within the chunk will
565     * automatically be incremented. Note: you cannot write beyond the
566     * boundaries of the chunk, to append data to the chunk call Resize()
567     * before.
568     *
569     * @param pData source buffer (containing the data)
570     * @param WordCount number of 8 Bit unsigned integers to write
571     * @returns number of written integers
572 schoenebeck 3048 * @throws RIFF::Exception if an IO error occurred
573 schoenebeck 780 * @see Resize()
574     */
575 schoenebeck 2912 file_offset_t Chunk::WriteUint8(uint8_t* pData, file_offset_t WordCount) {
576 schoenebeck 780 return Write(pData, WordCount, 1);
577     }
578    
579     /**
580 schoenebeck 2 * Reads \a WordCount number of 16 Bit signed integer words and copies
581     * it into the buffer pointed by \a pData. The buffer has to be
582     * allocated. Endian correction will automatically be done if needed.
583     * The position within the chunk will automatically be incremented.
584     *
585     * @param pData destination buffer
586     * @param WordCount number of 16 Bit signed integers to read
587     * @returns number of read integers
588 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
589 schoenebeck 2 * \a WordCount integers could be read!
590     */
591 schoenebeck 2912 file_offset_t Chunk::ReadInt16(int16_t* pData, file_offset_t WordCount) {
592 schoenebeck 3057 #if DEBUG_RIFF
593 schoenebeck 2912 std::cout << "Chunk::ReadInt16(int16_t*,file_offset_t)" << std::endl;
594 schoenebeck 3057 #endif // DEBUG_RIFF
595 schoenebeck 2 return ReadSceptical(pData, WordCount, 2);
596     }
597    
598     /**
599 schoenebeck 780 * Writes \a WordCount number of 16 Bit signed integer words from the
600     * buffer pointed by \a pData to the chunk's body, directly to the
601     * actual "physical" file. The position within the chunk will
602     * automatically be incremented. Note: you cannot write beyond the
603     * boundaries of the chunk, to append data to the chunk call Resize()
604     * before.
605     *
606     * @param pData source buffer (containing the data)
607     * @param WordCount number of 16 Bit signed integers to write
608     * @returns number of written integers
609 schoenebeck 3048 * @throws RIFF::Exception if an IO error occurred
610 schoenebeck 780 * @see Resize()
611     */
612 schoenebeck 2912 file_offset_t Chunk::WriteInt16(int16_t* pData, file_offset_t WordCount) {
613 schoenebeck 780 return Write(pData, WordCount, 2);
614     }
615    
616     /**
617 schoenebeck 2 * Reads \a WordCount number of 16 Bit unsigned integer words and copies
618     * it into the buffer pointed by \a pData. The buffer has to be
619     * allocated. Endian correction will automatically be done if needed.
620     * The position within the chunk will automatically be incremented.
621     *
622     * @param pData destination buffer
623     * @param WordCount number of 8 Bit unsigned integers to read
624     * @returns number of read integers
625 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
626 schoenebeck 2 * \a WordCount integers could be read!
627     */
628 schoenebeck 2912 file_offset_t Chunk::ReadUint16(uint16_t* pData, file_offset_t WordCount) {
629 schoenebeck 3057 #if DEBUG_RIFF
630 schoenebeck 2912 std::cout << "Chunk::ReadUint16(uint16_t*,file_offset_t)" << std::endl;
631 schoenebeck 3057 #endif // DEBUG_RIFF
632 schoenebeck 2 return ReadSceptical(pData, WordCount, 2);
633     }
634    
635     /**
636 schoenebeck 780 * Writes \a WordCount number of 16 Bit unsigned integer words from the
637     * buffer pointed by \a pData to the chunk's body, directly to the
638     * actual "physical" file. The position within the chunk will
639     * automatically be incremented. Note: you cannot write beyond the
640     * boundaries of the chunk, to append data to the chunk call Resize()
641     * before.
642     *
643     * @param pData source buffer (containing the data)
644     * @param WordCount number of 16 Bit unsigned integers to write
645     * @returns number of written integers
646 schoenebeck 3048 * @throws RIFF::Exception if an IO error occurred
647 schoenebeck 780 * @see Resize()
648     */
649 schoenebeck 2912 file_offset_t Chunk::WriteUint16(uint16_t* pData, file_offset_t WordCount) {
650 schoenebeck 780 return Write(pData, WordCount, 2);
651     }
652    
653     /**
654 schoenebeck 2 * Reads \a WordCount number of 32 Bit signed integer words and copies
655     * it into the buffer pointed by \a pData. The buffer has to be
656     * allocated. Endian correction will automatically be done if needed.
657     * The position within the chunk will automatically be incremented.
658     *
659     * @param pData destination buffer
660     * @param WordCount number of 32 Bit signed integers to read
661     * @returns number of read integers
662 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
663 schoenebeck 2 * \a WordCount integers could be read!
664     */
665 schoenebeck 2912 file_offset_t Chunk::ReadInt32(int32_t* pData, file_offset_t WordCount) {
666 schoenebeck 3057 #if DEBUG_RIFF
667 schoenebeck 2912 std::cout << "Chunk::ReadInt32(int32_t*,file_offset_t)" << std::endl;
668 schoenebeck 3057 #endif // DEBUG_RIFF
669 schoenebeck 2 return ReadSceptical(pData, WordCount, 4);
670     }
671    
672     /**
673 schoenebeck 780 * Writes \a WordCount number of 32 Bit signed integer words from the
674     * buffer pointed by \a pData to the chunk's body, directly to the
675     * actual "physical" file. The position within the chunk will
676     * automatically be incremented. Note: you cannot write beyond the
677     * boundaries of the chunk, to append data to the chunk call Resize()
678     * before.
679     *
680     * @param pData source buffer (containing the data)
681     * @param WordCount number of 32 Bit signed integers to write
682     * @returns number of written integers
683 schoenebeck 3048 * @throws RIFF::Exception if an IO error occurred
684 schoenebeck 780 * @see Resize()
685     */
686 schoenebeck 2912 file_offset_t Chunk::WriteInt32(int32_t* pData, file_offset_t WordCount) {
687 schoenebeck 780 return Write(pData, WordCount, 4);
688     }
689    
690     /**
691 schoenebeck 2 * Reads \a WordCount number of 32 Bit unsigned integer words and copies
692     * it into the buffer pointed by \a pData. The buffer has to be
693     * allocated. Endian correction will automatically be done if needed.
694     * The position within the chunk will automatically be incremented.
695     *
696     * @param pData destination buffer
697     * @param WordCount number of 32 Bit unsigned integers to read
698     * @returns number of read integers
699 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
700 schoenebeck 2 * \a WordCount integers could be read!
701     */
702 schoenebeck 2912 file_offset_t Chunk::ReadUint32(uint32_t* pData, file_offset_t WordCount) {
703 schoenebeck 3057 #if DEBUG_RIFF
704 schoenebeck 2912 std::cout << "Chunk::ReadUint32(uint32_t*,file_offset_t)" << std::endl;
705 schoenebeck 3057 #endif // DEBUG_RIFF
706 schoenebeck 2 return ReadSceptical(pData, WordCount, 4);
707     }
708    
709     /**
710 persson 2450 * Reads a null-padded string of size characters and copies it
711     * into the string \a s. The position within the chunk will
712     * automatically be incremented.
713     *
714     * @param s destination string
715     * @param size number of characters to read
716 schoenebeck 3048 * @throws RIFF::Exception if an error occurred or less than
717 persson 2450 * \a size characters could be read!
718     */
719     void Chunk::ReadString(String& s, int size) {
720     char* buf = new char[size];
721     ReadSceptical(buf, 1, size);
722     s.assign(buf, std::find(buf, buf + size, '\0'));
723     delete[] buf;
724     }
725    
726     /**
727 schoenebeck 780 * Writes \a WordCount number of 32 Bit unsigned integer words from the
728     * buffer pointed by \a pData to the chunk's body, directly to the
729     * actual "physical" file. The position within the chunk will
730     * automatically be incremented. Note: you cannot write beyond the
731     * boundaries of the chunk, to append data to the chunk call Resize()
732     * before.
733     *
734     * @param pData source buffer (containing the data)
735     * @param WordCount number of 32 Bit unsigned integers to write
736     * @returns number of written integers
737 schoenebeck 3048 * @throws RIFF::Exception if an IO error occurred
738 schoenebeck 780 * @see Resize()
739     */
740 schoenebeck 2912 file_offset_t Chunk::WriteUint32(uint32_t* pData, file_offset_t WordCount) {
741 schoenebeck 780 return Write(pData, WordCount, 4);
742     }
743    
744     /**
745 schoenebeck 2 * Reads one 8 Bit signed integer word and increments the position within
746     * the chunk.
747     *
748     * @returns read integer word
749 schoenebeck 3048 * @throws RIFF::Exception if an error occurred
750 schoenebeck 2 */
751     int8_t Chunk::ReadInt8() {
752 schoenebeck 3057 #if DEBUG_RIFF
753 schoenebeck 2912 std::cout << "Chunk::ReadInt8()" << std::endl;
754 schoenebeck 3057 #endif // DEBUG_RIFF
755 schoenebeck 2 int8_t word;
756     ReadSceptical(&word,1,1);
757     return word;
758     }
759    
760     /**
761     * Reads one 8 Bit unsigned integer word and increments the position
762     * within the chunk.
763     *
764     * @returns read integer word
765 schoenebeck 3048 * @throws RIFF::Exception if an error occurred
766 schoenebeck 2 */
767     uint8_t Chunk::ReadUint8() {
768 schoenebeck 3057 #if DEBUG_RIFF
769 schoenebeck 2912 std::cout << "Chunk::ReadUint8()" << std::endl;
770 schoenebeck 3057 #endif // DEBUG_RIFF
771 schoenebeck 2 uint8_t word;
772     ReadSceptical(&word,1,1);
773     return word;
774     }
775    
776     /**
777     * Reads one 16 Bit signed integer word and increments the position
778     * within the chunk. Endian correction will automatically be done if
779     * needed.
780     *
781     * @returns read integer word
782 schoenebeck 3048 * @throws RIFF::Exception if an error occurred
783 schoenebeck 2 */
784     int16_t Chunk::ReadInt16() {
785 schoenebeck 3057 #if DEBUG_RIFF
786 schoenebeck 2912 std::cout << "Chunk::ReadInt16()" << std::endl;
787 schoenebeck 3057 #endif // DEBUG_RIFF
788 schoenebeck 2 int16_t word;
789     ReadSceptical(&word,1,2);
790     return word;
791     }
792    
793     /**
794     * Reads one 16 Bit unsigned integer word and increments the position
795     * within the chunk. Endian correction will automatically be done if
796     * needed.
797     *
798     * @returns read integer word
799 schoenebeck 3048 * @throws RIFF::Exception if an error occurred
800 schoenebeck 2 */
801     uint16_t Chunk::ReadUint16() {
802 schoenebeck 3057 #if DEBUG_RIFF
803 schoenebeck 2912 std::cout << "Chunk::ReadUint16()" << std::endl;
804 schoenebeck 3057 #endif // DEBUG_RIFF
805 schoenebeck 2 uint16_t word;
806     ReadSceptical(&word,1,2);
807     return word;
808     }
809    
810     /**
811     * Reads one 32 Bit signed integer word and increments the position
812     * within the chunk. Endian correction will automatically be done if
813     * needed.
814     *
815     * @returns read integer word
816 schoenebeck 3048 * @throws RIFF::Exception if an error occurred
817 schoenebeck 2 */
818     int32_t Chunk::ReadInt32() {
819 schoenebeck 3057 #if DEBUG_RIFF
820 schoenebeck 2912 std::cout << "Chunk::ReadInt32()" << std::endl;
821 schoenebeck 3057 #endif // DEBUG_RIFF
822 schoenebeck 2 int32_t word;
823     ReadSceptical(&word,1,4);
824     return word;
825     }
826    
827     /**
828     * Reads one 32 Bit unsigned integer word and increments the position
829     * within the chunk. Endian correction will automatically be done if
830     * needed.
831     *
832     * @returns read integer word
833 schoenebeck 3048 * @throws RIFF::Exception if an error occurred
834 schoenebeck 2 */
835     uint32_t Chunk::ReadUint32() {
836 schoenebeck 3057 #if DEBUG_RIFF
837 schoenebeck 2912 std::cout << "Chunk::ReadUint32()" << std::endl;
838 schoenebeck 3057 #endif // DEBUG_RIFF
839 schoenebeck 2 uint32_t word;
840     ReadSceptical(&word,1,4);
841     return word;
842     }
843    
844 schoenebeck 780 /** @brief Load chunk body into RAM.
845     *
846     * Loads the whole chunk body into memory. You can modify the data in
847     * RAM and save the data by calling File::Save() afterwards.
848     *
849     * <b>Caution:</b> the buffer pointer will be invalidated once
850     * File::Save() was called. You have to call LoadChunkData() again to
851 schoenebeck 800 * get a new, valid pointer whenever File::Save() was called.
852 schoenebeck 780 *
853 schoenebeck 800 * You can call LoadChunkData() again if you previously scheduled to
854     * enlarge this chunk with a Resize() call. In that case the buffer will
855     * be enlarged to the new, scheduled chunk size and you can already
856     * place the new chunk data to the buffer and finally call File::Save()
857     * to enlarge the chunk physically and write the new data in one rush.
858     * This approach is definitely recommended if you have to enlarge and
859     * write new data to a lot of chunks.
860     *
861 schoenebeck 780 * @returns a pointer to the data in RAM on success, NULL otherwise
862 schoenebeck 800 * @throws Exception if data buffer could not be enlarged
863 schoenebeck 780 * @see ReleaseChunkData()
864     */
865 schoenebeck 2 void* Chunk::LoadChunkData() {
866 schoenebeck 2543 if (!pChunkData && pFile->Filename != "" /*&& ulStartPos != 0*/) {
867 schoenebeck 2 #if POSIX
868 schoenebeck 2912 if (lseek(pFile->hFileRead, ullStartPos, SEEK_SET) == -1) return NULL;
869 schoenebeck 1050 #elif defined(WIN32)
870 schoenebeck 2915 LARGE_INTEGER liFilePos;
871     liFilePos.QuadPart = ullStartPos;
872 schoenebeck 2914 if (!SetFilePointerEx(pFile->hFileRead, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN)) return NULL;
873 schoenebeck 800 #else
874 schoenebeck 2912 if (fseeko(pFile->hFileRead, ullStartPos, SEEK_SET)) return NULL;
875 schoenebeck 800 #endif // POSIX
876 schoenebeck 2912 file_offset_t ullBufferSize = (ullCurrentChunkSize > ullNewChunkSize) ? ullCurrentChunkSize : ullNewChunkSize;
877     pChunkData = new uint8_t[ullBufferSize];
878 schoenebeck 2 if (!pChunkData) return NULL;
879 schoenebeck 2912 memset(pChunkData, 0, ullBufferSize);
880 schoenebeck 800 #if POSIX
881 schoenebeck 2912 file_offset_t readWords = read(pFile->hFileRead, pChunkData, GetSize());
882 schoenebeck 1050 #elif defined(WIN32)
883     DWORD readWords;
884 schoenebeck 2912 ReadFile(pFile->hFileRead, pChunkData, GetSize(), &readWords, NULL); //FIXME: won't load chunks larger than 2GB !
885 schoenebeck 2 #else
886 schoenebeck 2912 file_offset_t readWords = fread(pChunkData, 1, GetSize(), pFile->hFileRead);
887 schoenebeck 2 #endif // POSIX
888     if (readWords != GetSize()) {
889     delete[] pChunkData;
890     return (pChunkData = NULL);
891     }
892 schoenebeck 2912 ullChunkDataSize = ullBufferSize;
893     } else if (ullNewChunkSize > ullChunkDataSize) {
894     uint8_t* pNewBuffer = new uint8_t[ullNewChunkSize];
895     if (!pNewBuffer) throw Exception("Could not enlarge chunk data buffer to " + ToString(ullNewChunkSize) + " bytes");
896     memset(pNewBuffer, 0 , ullNewChunkSize);
897     memcpy(pNewBuffer, pChunkData, ullChunkDataSize);
898 schoenebeck 800 delete[] pChunkData;
899 schoenebeck 2912 pChunkData = pNewBuffer;
900     ullChunkDataSize = ullNewChunkSize;
901 schoenebeck 2 }
902     return pChunkData;
903     }
904    
905 schoenebeck 780 /** @brief Free loaded chunk body from RAM.
906     *
907     * Frees loaded chunk body data from memory (RAM). You should call
908     * File::Save() before calling this method if you modified the data to
909     * make the changes persistent.
910     */
911 schoenebeck 2 void Chunk::ReleaseChunkData() {
912     if (pChunkData) {
913     delete[] pChunkData;
914     pChunkData = NULL;
915     }
916     }
917    
918 schoenebeck 780 /** @brief Resize chunk.
919     *
920     * Resizes this chunk's body, that is the actual size of data possible
921     * to be written to this chunk. This call will return immediately and
922     * just schedule the resize operation. You should call File::Save() to
923     * actually perform the resize operation(s) "physically" to the file.
924     * As this can take a while on large files, it is recommended to call
925     * Resize() first on all chunks which have to be resized and finally to
926     * call File::Save() to perform all those resize operations in one rush.
927     *
928     * <b>Caution:</b> You cannot directly write to enlarged chunks before
929     * calling File::Save() as this might exceed the current chunk's body
930 schoenebeck 800 * boundary!
931 schoenebeck 780 *
932 schoenebeck 2912 * @param NewSize - new chunk body size in bytes (must be greater than zero)
933 schoenebeck 2922 * @throws RIFF::Exception if \a NewSize is less than 1 or unrealistic large
934 schoenebeck 780 * @see File::Save()
935     */
936 schoenebeck 2912 void Chunk::Resize(file_offset_t NewSize) {
937     if (NewSize == 0)
938 schoenebeck 1105 throw Exception("There is at least one empty chunk (zero size): " + __resolveChunkPath(this));
939 schoenebeck 2912 if ((NewSize >> 48) != 0)
940     throw Exception("Unrealistic high chunk size detected: " + __resolveChunkPath(this));
941     if (ullNewChunkSize == NewSize) return;
942     ullNewChunkSize = NewSize;
943 schoenebeck 780 }
944 schoenebeck 2
945 schoenebeck 780 /** @brief Write chunk persistently e.g. to disk.
946     *
947     * Stores the chunk persistently to its actual "physical" file.
948     *
949 schoenebeck 2912 * @param ullWritePos - position within the "physical" file where this
950 schoenebeck 780 * chunk should be written to
951 schoenebeck 2912 * @param ullCurrentDataOffset - offset of current (old) data within
952 schoenebeck 780 * the file
953 schoenebeck 2682 * @param pProgress - optional: callback function for progress notification
954 schoenebeck 780 * @returns new write position in the "physical" file, that is
955 schoenebeck 2912 * \a ullWritePos incremented by this chunk's new size
956 schoenebeck 780 * (including its header size of course)
957     */
958 schoenebeck 2912 file_offset_t Chunk::WriteChunk(file_offset_t ullWritePos, file_offset_t ullCurrentDataOffset, progress_t* pProgress) {
959     const file_offset_t ullOriginalPos = ullWritePos;
960     ullWritePos += CHUNK_HEADER_SIZE(pFile->FileOffsetSize);
961 schoenebeck 2
962 schoenebeck 798 if (pFile->Mode != stream_mode_read_write)
963     throw Exception("Cannot write list chunk, file has to be opened in read+write mode");
964    
965 schoenebeck 780 // if the whole chunk body was loaded into RAM
966     if (pChunkData) {
967 schoenebeck 800 // make sure chunk data buffer in RAM is at least as large as the new chunk size
968     LoadChunkData();
969 schoenebeck 780 // write chunk data from RAM persistently to the file
970     #if POSIX
971 schoenebeck 2912 lseek(pFile->hFileWrite, ullWritePos, SEEK_SET);
972     if (write(pFile->hFileWrite, pChunkData, ullNewChunkSize) != ullNewChunkSize) {
973 schoenebeck 780 throw Exception("Writing Chunk data (from RAM) failed");
974     }
975 schoenebeck 1050 #elif defined(WIN32)
976 schoenebeck 2915 LARGE_INTEGER liFilePos;
977     liFilePos.QuadPart = ullWritePos;
978 schoenebeck 2914 SetFilePointerEx(pFile->hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
979 schoenebeck 1050 DWORD dwBytesWritten;
980 schoenebeck 2912 WriteFile(pFile->hFileWrite, pChunkData, ullNewChunkSize, &dwBytesWritten, NULL); //FIXME: won't save chunks larger than 2GB !
981     if (dwBytesWritten != ullNewChunkSize) {
982 schoenebeck 1050 throw Exception("Writing Chunk data (from RAM) failed");
983     }
984 schoenebeck 780 #else
985 schoenebeck 2912 fseeko(pFile->hFileWrite, ullWritePos, SEEK_SET);
986     if (fwrite(pChunkData, 1, ullNewChunkSize, pFile->hFileWrite) != ullNewChunkSize) {
987 schoenebeck 780 throw Exception("Writing Chunk data (from RAM) failed");
988     }
989     #endif // POSIX
990     } else {
991     // move chunk data from the end of the file to the appropriate position
992     int8_t* pCopyBuffer = new int8_t[4096];
993 schoenebeck 2912 file_offset_t ullToMove = (ullNewChunkSize < ullCurrentChunkSize) ? ullNewChunkSize : ullCurrentChunkSize;
994 schoenebeck 1050 #if defined(WIN32)
995     DWORD iBytesMoved = 1; // we have to pass it via pointer to the Windows API, thus the correct size must be ensured
996     #else
997 schoenebeck 780 int iBytesMoved = 1;
998 schoenebeck 1050 #endif
999 schoenebeck 2912 for (file_offset_t ullOffset = 0; ullToMove > 0 && iBytesMoved > 0; ullOffset += iBytesMoved, ullToMove -= iBytesMoved) {
1000 schoenebeck 3053 iBytesMoved = (ullToMove < 4096) ? int(ullToMove) : 4096;
1001 schoenebeck 780 #if POSIX
1002 schoenebeck 2912 lseek(pFile->hFileRead, ullStartPos + ullCurrentDataOffset + ullOffset, SEEK_SET);
1003 schoenebeck 3053 iBytesMoved = (int) read(pFile->hFileRead, pCopyBuffer, (size_t) iBytesMoved);
1004 schoenebeck 2912 lseek(pFile->hFileWrite, ullWritePos + ullOffset, SEEK_SET);
1005 schoenebeck 3053 iBytesMoved = (int) write(pFile->hFileWrite, pCopyBuffer, (size_t) iBytesMoved);
1006 schoenebeck 1050 #elif defined(WIN32)
1007 schoenebeck 2915 LARGE_INTEGER liFilePos;
1008     liFilePos.QuadPart = ullStartPos + ullCurrentDataOffset + ullOffset;
1009 schoenebeck 2914 SetFilePointerEx(pFile->hFileRead, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1010 schoenebeck 1050 ReadFile(pFile->hFileRead, pCopyBuffer, iBytesMoved, &iBytesMoved, NULL);
1011 schoenebeck 2914 liFilePos.QuadPart = ullWritePos + ullOffset;
1012     SetFilePointerEx(pFile->hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1013 schoenebeck 1050 WriteFile(pFile->hFileWrite, pCopyBuffer, iBytesMoved, &iBytesMoved, NULL);
1014 schoenebeck 780 #else
1015 schoenebeck 2912 fseeko(pFile->hFileRead, ullStartPos + ullCurrentDataOffset + ullOffset, SEEK_SET);
1016 schoenebeck 780 iBytesMoved = fread(pCopyBuffer, 1, iBytesMoved, pFile->hFileRead);
1017 schoenebeck 2912 fseeko(pFile->hFileWrite, ullWritePos + ullOffset, SEEK_SET);
1018 schoenebeck 780 iBytesMoved = fwrite(pCopyBuffer, 1, iBytesMoved, pFile->hFileWrite);
1019     #endif
1020     }
1021     delete[] pCopyBuffer;
1022     if (iBytesMoved < 0) throw Exception("Writing Chunk data (from file) failed");
1023     }
1024    
1025     // update this chunk's header
1026 schoenebeck 2912 ullCurrentChunkSize = ullNewChunkSize;
1027     WriteHeader(ullOriginalPos);
1028 schoenebeck 780
1029 schoenebeck 2682 __notify_progress(pProgress, 1.0); // notify done
1030    
1031 schoenebeck 780 // update chunk's position pointers
1032 schoenebeck 2912 ullStartPos = ullOriginalPos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize);
1033     ullPos = 0;
1034 schoenebeck 780
1035     // add pad byte if needed
1036 schoenebeck 2912 if ((ullStartPos + ullNewChunkSize) % 2 != 0) {
1037 schoenebeck 798 const char cPadByte = 0;
1038 schoenebeck 780 #if POSIX
1039 schoenebeck 2912 lseek(pFile->hFileWrite, ullStartPos + ullNewChunkSize, SEEK_SET);
1040 schoenebeck 780 write(pFile->hFileWrite, &cPadByte, 1);
1041 schoenebeck 1050 #elif defined(WIN32)
1042 schoenebeck 2915 LARGE_INTEGER liFilePos;
1043     liFilePos.QuadPart = ullStartPos + ullNewChunkSize;
1044 schoenebeck 2914 SetFilePointerEx(pFile->hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1045 schoenebeck 1050 DWORD dwBytesWritten;
1046     WriteFile(pFile->hFileWrite, &cPadByte, 1, &dwBytesWritten, NULL);
1047 schoenebeck 780 #else
1048 schoenebeck 2912 fseeko(pFile->hFileWrite, ullStartPos + ullNewChunkSize, SEEK_SET);
1049 schoenebeck 780 fwrite(&cPadByte, 1, 1, pFile->hFileWrite);
1050     #endif
1051 schoenebeck 2912 return ullStartPos + ullNewChunkSize + 1;
1052 schoenebeck 780 }
1053    
1054 schoenebeck 2912 return ullStartPos + ullNewChunkSize;
1055 schoenebeck 780 }
1056    
1057     void Chunk::__resetPos() {
1058 schoenebeck 2912 ullPos = 0;
1059 schoenebeck 780 }
1060    
1061    
1062    
1063 schoenebeck 2 // *************** List ***************
1064     // *
1065    
1066 schoenebeck 780 List::List(File* pFile) : Chunk(pFile) {
1067 schoenebeck 3057 #if DEBUG_RIFF
1068 schoenebeck 2912 std::cout << "List::List(File* pFile)" << std::endl;
1069 schoenebeck 3057 #endif // DEBUG_RIFF
1070 schoenebeck 2 pSubChunks = NULL;
1071     pSubChunksMap = NULL;
1072     }
1073    
1074 schoenebeck 2912 List::List(File* pFile, file_offset_t StartPos, List* Parent)
1075 schoenebeck 780 : Chunk(pFile, StartPos, Parent) {
1076 schoenebeck 3057 #if DEBUG_RIFF
1077 schoenebeck 2912 std::cout << "List::List(File*,file_offset_t,List*)" << std::endl;
1078 schoenebeck 3057 #endif // DEBUG_RIFF
1079 schoenebeck 2 pSubChunks = NULL;
1080     pSubChunksMap = NULL;
1081     ReadHeader(StartPos);
1082 schoenebeck 2912 ullStartPos = StartPos + LIST_HEADER_SIZE(pFile->FileOffsetSize);
1083 schoenebeck 2 }
1084    
1085 schoenebeck 780 List::List(File* pFile, List* pParent, uint32_t uiListID)
1086     : Chunk(pFile, pParent, CHUNK_ID_LIST, 0) {
1087     pSubChunks = NULL;
1088     pSubChunksMap = NULL;
1089     ListType = uiListID;
1090     }
1091    
1092 schoenebeck 2 List::~List() {
1093 schoenebeck 3057 #if DEBUG_RIFF
1094 schoenebeck 2912 std::cout << "List::~List()" << std::endl;
1095 schoenebeck 3057 #endif // DEBUG_RIFF
1096 persson 1869 DeleteChunkList();
1097     }
1098    
1099     void List::DeleteChunkList() {
1100 schoenebeck 2 if (pSubChunks) {
1101     ChunkList::iterator iter = pSubChunks->begin();
1102     ChunkList::iterator end = pSubChunks->end();
1103     while (iter != end) {
1104     delete *iter;
1105     iter++;
1106     }
1107     delete pSubChunks;
1108 persson 1869 pSubChunks = NULL;
1109 schoenebeck 2 }
1110 persson 1869 if (pSubChunksMap) {
1111     delete pSubChunksMap;
1112     pSubChunksMap = NULL;
1113     }
1114 schoenebeck 2 }
1115    
1116 schoenebeck 11 /**
1117     * Returns subchunk with chunk ID <i>\a ChunkID</i> within this chunk
1118     * list. Use this method if you expect only one subchunk of that type in
1119     * the list. It there are more than one, it's undetermined which one of
1120     * them will be returned! If there are no subchunks with that desired
1121     * chunk ID, NULL will be returned.
1122     *
1123     * @param ChunkID - chunk ID of the sought subchunk
1124     * @returns pointer to the subchunk or NULL if there is none of
1125     * that ID
1126     */
1127 schoenebeck 2 Chunk* List::GetSubChunk(uint32_t ChunkID) {
1128 schoenebeck 3057 #if DEBUG_RIFF
1129 schoenebeck 2912 std::cout << "List::GetSubChunk(uint32_t)" << std::endl;
1130 schoenebeck 3057 #endif // DEBUG_RIFF
1131 schoenebeck 2 if (!pSubChunksMap) LoadSubChunks();
1132     return (*pSubChunksMap)[ChunkID];
1133     }
1134    
1135 schoenebeck 11 /**
1136     * Returns sublist chunk with list type <i>\a ListType</i> within this
1137     * chunk list. Use this method if you expect only one sublist chunk of
1138 schoenebeck 2922 * that type in the list. If there are more than one, it's undetermined
1139 schoenebeck 11 * which one of them will be returned! If there are no sublists with
1140     * that desired list type, NULL will be returned.
1141     *
1142     * @param ListType - list type of the sought sublist
1143     * @returns pointer to the sublist or NULL if there is none of
1144     * that type
1145     */
1146 schoenebeck 2 List* List::GetSubList(uint32_t ListType) {
1147 schoenebeck 3057 #if DEBUG_RIFF
1148 schoenebeck 2 std::cout << "List::GetSubList(uint32_t)" << std::endl;
1149 schoenebeck 3057 #endif // DEBUG_RIFF
1150 schoenebeck 2 if (!pSubChunks) LoadSubChunks();
1151     ChunkList::iterator iter = pSubChunks->begin();
1152     ChunkList::iterator end = pSubChunks->end();
1153     while (iter != end) {
1154     if ((*iter)->GetChunkID() == CHUNK_ID_LIST) {
1155     List* l = (List*) *iter;
1156     if (l->GetListType() == ListType) return l;
1157     }
1158     iter++;
1159     }
1160     return NULL;
1161     }
1162    
1163 schoenebeck 11 /**
1164 schoenebeck 2922 * Returns the first subchunk within the list (which may be an ordinary
1165     * chunk as well as a list chunk). You have to call this
1166 schoenebeck 11 * method before you can call GetNextSubChunk(). Recall it when you want
1167     * to start from the beginning of the list again.
1168     *
1169     * @returns pointer to the first subchunk within the list, NULL
1170     * otherwise
1171     */
1172 schoenebeck 2 Chunk* List::GetFirstSubChunk() {
1173 schoenebeck 3057 #if DEBUG_RIFF
1174 schoenebeck 2 std::cout << "List::GetFirstSubChunk()" << std::endl;
1175 schoenebeck 3057 #endif // DEBUG_RIFF
1176 schoenebeck 2 if (!pSubChunks) LoadSubChunks();
1177     ChunksIterator = pSubChunks->begin();
1178     return (ChunksIterator != pSubChunks->end()) ? *ChunksIterator : NULL;
1179     }
1180    
1181 schoenebeck 11 /**
1182 schoenebeck 2922 * Returns the next subchunk within the list (which may be an ordinary
1183     * chunk as well as a list chunk). You have to call
1184 schoenebeck 11 * GetFirstSubChunk() before you can use this method!
1185     *
1186     * @returns pointer to the next subchunk within the list or NULL if
1187     * end of list is reached
1188     */
1189 schoenebeck 2 Chunk* List::GetNextSubChunk() {
1190 schoenebeck 3057 #if DEBUG_RIFF
1191 schoenebeck 2 std::cout << "List::GetNextSubChunk()" << std::endl;
1192 schoenebeck 3057 #endif // DEBUG_RIFF
1193 schoenebeck 2 if (!pSubChunks) return NULL;
1194     ChunksIterator++;
1195     return (ChunksIterator != pSubChunks->end()) ? *ChunksIterator : NULL;
1196     }
1197    
1198 schoenebeck 11 /**
1199     * Returns the first sublist within the list (that is a subchunk with
1200     * chunk ID "LIST"). You have to call this method before you can call
1201     * GetNextSubList(). Recall it when you want to start from the beginning
1202     * of the list again.
1203     *
1204     * @returns pointer to the first sublist within the list, NULL
1205     * otherwise
1206     */
1207 schoenebeck 2 List* List::GetFirstSubList() {
1208 schoenebeck 3057 #if DEBUG_RIFF
1209 schoenebeck 2 std::cout << "List::GetFirstSubList()" << std::endl;
1210 schoenebeck 3057 #endif // DEBUG_RIFF
1211 schoenebeck 2 if (!pSubChunks) LoadSubChunks();
1212     ListIterator = pSubChunks->begin();
1213     ChunkList::iterator end = pSubChunks->end();
1214     while (ListIterator != end) {
1215     if ((*ListIterator)->GetChunkID() == CHUNK_ID_LIST) return (List*) *ListIterator;
1216     ListIterator++;
1217     }
1218     return NULL;
1219     }
1220    
1221 schoenebeck 11 /**
1222     * Returns the next sublist (that is a subchunk with chunk ID "LIST")
1223     * within the list. You have to call GetFirstSubList() before you can
1224     * use this method!
1225     *
1226     * @returns pointer to the next sublist within the list, NULL if
1227     * end of list is reached
1228     */
1229 schoenebeck 2 List* List::GetNextSubList() {
1230 schoenebeck 3057 #if DEBUG_RIFF
1231 schoenebeck 2 std::cout << "List::GetNextSubList()" << std::endl;
1232 schoenebeck 3057 #endif // DEBUG_RIFF
1233 schoenebeck 2 if (!pSubChunks) return NULL;
1234     if (ListIterator == pSubChunks->end()) return NULL;
1235     ListIterator++;
1236     ChunkList::iterator end = pSubChunks->end();
1237     while (ListIterator != end) {
1238     if ((*ListIterator)->GetChunkID() == CHUNK_ID_LIST) return (List*) *ListIterator;
1239     ListIterator++;
1240     }
1241     return NULL;
1242     }
1243    
1244 schoenebeck 11 /**
1245 schoenebeck 2922 * Returns number of subchunks within the list (including list chunks).
1246 schoenebeck 11 */
1247 schoenebeck 2922 size_t List::CountSubChunks() {
1248 schoenebeck 2 if (!pSubChunks) LoadSubChunks();
1249     return pSubChunks->size();
1250     }
1251    
1252 schoenebeck 11 /**
1253     * Returns number of subchunks within the list with chunk ID
1254     * <i>\a ChunkId</i>.
1255     */
1256 schoenebeck 2922 size_t List::CountSubChunks(uint32_t ChunkID) {
1257     size_t result = 0;
1258 schoenebeck 2 if (!pSubChunks) LoadSubChunks();
1259     ChunkList::iterator iter = pSubChunks->begin();
1260     ChunkList::iterator end = pSubChunks->end();
1261     while (iter != end) {
1262     if ((*iter)->GetChunkID() == ChunkID) {
1263     result++;
1264     }
1265     iter++;
1266     }
1267     return result;
1268     }
1269    
1270 schoenebeck 11 /**
1271     * Returns number of sublists within the list.
1272     */
1273 schoenebeck 2922 size_t List::CountSubLists() {
1274 schoenebeck 2 return CountSubChunks(CHUNK_ID_LIST);
1275     }
1276    
1277 schoenebeck 11 /**
1278     * Returns number of sublists within the list with list type
1279     * <i>\a ListType</i>
1280     */
1281 schoenebeck 2922 size_t List::CountSubLists(uint32_t ListType) {
1282     size_t result = 0;
1283 schoenebeck 2 if (!pSubChunks) LoadSubChunks();
1284     ChunkList::iterator iter = pSubChunks->begin();
1285     ChunkList::iterator end = pSubChunks->end();
1286     while (iter != end) {
1287     if ((*iter)->GetChunkID() == CHUNK_ID_LIST) {
1288     List* l = (List*) *iter;
1289     if (l->GetListType() == ListType) result++;
1290     }
1291     iter++;
1292     }
1293     return result;
1294     }
1295    
1296 schoenebeck 780 /** @brief Creates a new sub chunk.
1297     *
1298     * Creates and adds a new sub chunk to this list chunk. Note that the
1299 schoenebeck 2912 * chunk's body size given by \a ullBodySize must be greater than zero.
1300 schoenebeck 780 * You have to call File::Save() to make this change persistent to the
1301     * actual file and <b>before</b> performing any data write operations
1302     * on the new chunk!
1303     *
1304     * @param uiChunkID - chunk ID of the new chunk
1305 schoenebeck 2912 * @param ullBodySize - size of the new chunk's body, that is its actual
1306     * data size (without header)
1307     * @throws RIFF::Exception if \a ullBodySize equals zero
1308 schoenebeck 780 */
1309 schoenebeck 2912 Chunk* List::AddSubChunk(uint32_t uiChunkID, file_offset_t ullBodySize) {
1310     if (ullBodySize == 0) throw Exception("Chunk body size must be at least 1 byte");
1311 schoenebeck 780 if (!pSubChunks) LoadSubChunks();
1312 schoenebeck 798 Chunk* pNewChunk = new Chunk(pFile, this, uiChunkID, 0);
1313 schoenebeck 780 pSubChunks->push_back(pNewChunk);
1314     (*pSubChunksMap)[uiChunkID] = pNewChunk;
1315 schoenebeck 2912 pNewChunk->Resize(ullBodySize);
1316     ullNewChunkSize += CHUNK_HEADER_SIZE(pFile->FileOffsetSize);
1317 schoenebeck 780 return pNewChunk;
1318     }
1319    
1320 schoenebeck 2584 /** @brief Moves a sub chunk witin this list.
1321 persson 1102 *
1322 schoenebeck 2584 * Moves a sub chunk from one position in this list to another
1323 persson 1102 * position in the same list. The pSrc chunk is placed before the
1324     * pDst chunk.
1325     *
1326     * @param pSrc - sub chunk to be moved
1327     * @param pDst - the position to move to. pSrc will be placed
1328     * before pDst. If pDst is 0, pSrc will be placed
1329     * last in list.
1330     */
1331     void List::MoveSubChunk(Chunk* pSrc, Chunk* pDst) {
1332     if (!pSubChunks) LoadSubChunks();
1333     pSubChunks->remove(pSrc);
1334     ChunkList::iterator iter = find(pSubChunks->begin(), pSubChunks->end(), pDst);
1335     pSubChunks->insert(iter, pSrc);
1336     }
1337    
1338 schoenebeck 2584 /** @brief Moves a sub chunk from this list to another list.
1339     *
1340     * Moves a sub chunk from this list list to the end of another
1341     * list.
1342     *
1343     * @param pSrc - sub chunk to be moved
1344     * @param pDst - destination list where the chunk shall be moved to
1345     */
1346     void List::MoveSubChunk(Chunk* pSrc, List* pNewParent) {
1347     if (pNewParent == this || !pNewParent) return;
1348     if (!pSubChunks) LoadSubChunks();
1349     if (!pNewParent->pSubChunks) pNewParent->LoadSubChunks();
1350     pSubChunks->remove(pSrc);
1351     pNewParent->pSubChunks->push_back(pSrc);
1352     // update chunk id map of this List
1353     if ((*pSubChunksMap)[pSrc->GetChunkID()] == pSrc) {
1354     pSubChunksMap->erase(pSrc->GetChunkID());
1355     // try to find another chunk of the same chunk ID
1356     ChunkList::iterator iter = pSubChunks->begin();
1357     ChunkList::iterator end = pSubChunks->end();
1358     for (; iter != end; ++iter) {
1359     if ((*iter)->GetChunkID() == pSrc->GetChunkID()) {
1360     (*pSubChunksMap)[pSrc->GetChunkID()] = *iter;
1361     break; // we're done, stop search
1362     }
1363     }
1364     }
1365     // update chunk id map of other list
1366     if (!(*pNewParent->pSubChunksMap)[pSrc->GetChunkID()])
1367     (*pNewParent->pSubChunksMap)[pSrc->GetChunkID()] = pSrc;
1368     }
1369    
1370 schoenebeck 780 /** @brief Creates a new list sub chunk.
1371     *
1372     * Creates and adds a new list sub chunk to this list chunk. Note that
1373     * you have to add sub chunks / sub list chunks to the new created chunk
1374     * <b>before</b> trying to make this change persisten to the actual
1375     * file with File::Save()!
1376     *
1377     * @param uiListType - list ID of the new list chunk
1378     */
1379     List* List::AddSubList(uint32_t uiListType) {
1380     if (!pSubChunks) LoadSubChunks();
1381     List* pNewListChunk = new List(pFile, this, uiListType);
1382     pSubChunks->push_back(pNewListChunk);
1383     (*pSubChunksMap)[CHUNK_ID_LIST] = pNewListChunk;
1384 schoenebeck 2912 ullNewChunkSize += LIST_HEADER_SIZE(pFile->FileOffsetSize);
1385 schoenebeck 780 return pNewListChunk;
1386     }
1387    
1388     /** @brief Removes a sub chunk.
1389     *
1390     * Removes the sub chunk given by \a pSubChunk from this list and frees
1391     * it completely from RAM. The given chunk can either be a normal sub
1392 schoenebeck 1093 * chunk or a list sub chunk. In case the given chunk is a list chunk,
1393     * all its subchunks (if any) will be removed recursively as well. You
1394     * should call File::Save() to make this change persistent at any time.
1395 schoenebeck 780 *
1396     * @param pSubChunk - sub chunk or sub list chunk to be removed
1397     */
1398     void List::DeleteSubChunk(Chunk* pSubChunk) {
1399     if (!pSubChunks) LoadSubChunks();
1400     pSubChunks->remove(pSubChunk);
1401     if ((*pSubChunksMap)[pSubChunk->GetChunkID()] == pSubChunk) {
1402     pSubChunksMap->erase(pSubChunk->GetChunkID());
1403     // try to find another chunk of the same chunk ID
1404     ChunkList::iterator iter = pSubChunks->begin();
1405     ChunkList::iterator end = pSubChunks->end();
1406     for (; iter != end; ++iter) {
1407     if ((*iter)->GetChunkID() == pSubChunk->GetChunkID()) {
1408     (*pSubChunksMap)[pSubChunk->GetChunkID()] = *iter;
1409     break; // we're done, stop search
1410     }
1411     }
1412     }
1413     delete pSubChunk;
1414     }
1415    
1416 schoenebeck 2912 /**
1417     * Returns the actual total size in bytes (including List chunk header and
1418     * all subchunks) of this List Chunk if being stored to a file.
1419     *
1420     * @param fileOffsetSize - RIFF file offset size (in bytes) assumed when
1421     * being saved to a file
1422     */
1423     file_offset_t List::RequiredPhysicalSize(int fileOffsetSize) {
1424     if (!pSubChunks) LoadSubChunks();
1425     file_offset_t size = LIST_HEADER_SIZE(fileOffsetSize);
1426     ChunkList::iterator iter = pSubChunks->begin();
1427     ChunkList::iterator end = pSubChunks->end();
1428     for (; iter != end; ++iter)
1429     size += (*iter)->RequiredPhysicalSize(fileOffsetSize);
1430     return size;
1431     }
1432    
1433     void List::ReadHeader(file_offset_t filePos) {
1434 schoenebeck 3057 #if DEBUG_RIFF
1435 schoenebeck 2912 std::cout << "List::Readheader(file_offset_t) ";
1436 schoenebeck 3057 #endif // DEBUG_RIFF
1437 schoenebeck 2912 Chunk::ReadHeader(filePos);
1438     if (ullCurrentChunkSize < 4) return;
1439     ullNewChunkSize = ullCurrentChunkSize -= 4;
1440 schoenebeck 2 #if POSIX
1441 schoenebeck 2912 lseek(pFile->hFileRead, filePos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize), SEEK_SET);
1442 schoenebeck 780 read(pFile->hFileRead, &ListType, 4);
1443 schoenebeck 1050 #elif defined(WIN32)
1444 schoenebeck 2915 LARGE_INTEGER liFilePos;
1445     liFilePos.QuadPart = filePos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize);
1446 schoenebeck 2914 SetFilePointerEx(pFile->hFileRead, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1447 schoenebeck 1050 DWORD dwBytesRead;
1448     ReadFile(pFile->hFileRead, &ListType, 4, &dwBytesRead, NULL);
1449 schoenebeck 2 #else
1450 schoenebeck 2912 fseeko(pFile->hFileRead, filePos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize), SEEK_SET);
1451 schoenebeck 780 fread(&ListType, 4, 1, pFile->hFileRead);
1452 schoenebeck 2 #endif // POSIX
1453 schoenebeck 3057 #if DEBUG_RIFF
1454 schoenebeck 2912 std::cout << "listType=" << convertToString(ListType) << std::endl;
1455 schoenebeck 3057 #endif // DEBUG_RIFF
1456 schoenebeck 780 if (!pFile->bEndianNative) {
1457 schoenebeck 11 //swapBytes_32(&ListType);
1458 schoenebeck 2 }
1459     }
1460    
1461 schoenebeck 2912 void List::WriteHeader(file_offset_t filePos) {
1462 schoenebeck 780 // the four list type bytes officially belong the chunk's body in the RIFF format
1463 schoenebeck 2912 ullNewChunkSize += 4;
1464     Chunk::WriteHeader(filePos);
1465     ullNewChunkSize -= 4; // just revert the +4 incrementation
1466 schoenebeck 780 #if POSIX
1467 schoenebeck 2912 lseek(pFile->hFileWrite, filePos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize), SEEK_SET);
1468 schoenebeck 780 write(pFile->hFileWrite, &ListType, 4);
1469 schoenebeck 1050 #elif defined(WIN32)
1470 schoenebeck 2915 LARGE_INTEGER liFilePos;
1471     liFilePos.QuadPart = filePos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize);
1472 schoenebeck 2914 SetFilePointerEx(pFile->hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1473 schoenebeck 1050 DWORD dwBytesWritten;
1474     WriteFile(pFile->hFileWrite, &ListType, 4, &dwBytesWritten, NULL);
1475 schoenebeck 780 #else
1476 schoenebeck 2912 fseeko(pFile->hFileWrite, filePos + CHUNK_HEADER_SIZE(pFile->FileOffsetSize), SEEK_SET);
1477 schoenebeck 780 fwrite(&ListType, 4, 1, pFile->hFileWrite);
1478     #endif // POSIX
1479     }
1480    
1481 schoenebeck 2682 void List::LoadSubChunks(progress_t* pProgress) {
1482 schoenebeck 3057 #if DEBUG_RIFF
1483 schoenebeck 2912 std::cout << "List::LoadSubChunks()";
1484 schoenebeck 3057 #endif // DEBUG_RIFF
1485 schoenebeck 2 if (!pSubChunks) {
1486     pSubChunks = new ChunkList();
1487     pSubChunksMap = new ChunkMap();
1488 persson 1301 #if defined(WIN32)
1489     if (pFile->hFileRead == INVALID_HANDLE_VALUE) return;
1490     #else
1491 schoenebeck 780 if (!pFile->hFileRead) return;
1492 persson 1301 #endif
1493 schoenebeck 2912 file_offset_t ullOriginalPos = GetPos();
1494 schoenebeck 515 SetPos(0); // jump to beginning of list chunk body
1495 schoenebeck 2912 while (RemainingBytes() >= CHUNK_HEADER_SIZE(pFile->FileOffsetSize)) {
1496 schoenebeck 2 Chunk* ck;
1497 schoenebeck 11 uint32_t ckid;
1498     Read(&ckid, 4, 1);
1499 schoenebeck 3057 #if DEBUG_RIFF
1500 schoenebeck 2912 std::cout << " ckid=" << convertToString(ckid) << std::endl;
1501 schoenebeck 3057 #endif // DEBUG_RIFF
1502 schoenebeck 2 if (ckid == CHUNK_ID_LIST) {
1503 schoenebeck 2912 ck = new RIFF::List(pFile, ullStartPos + ullPos - 4, this);
1504     SetPos(ck->GetSize() + LIST_HEADER_SIZE(pFile->FileOffsetSize) - 4, RIFF::stream_curpos);
1505 schoenebeck 2 }
1506     else { // simple chunk
1507 schoenebeck 2912 ck = new RIFF::Chunk(pFile, ullStartPos + ullPos - 4, this);
1508     SetPos(ck->GetSize() + CHUNK_HEADER_SIZE(pFile->FileOffsetSize) - 4, RIFF::stream_curpos);
1509 schoenebeck 2 }
1510     pSubChunks->push_back(ck);
1511     (*pSubChunksMap)[ckid] = ck;
1512     if (GetPos() % 2 != 0) SetPos(1, RIFF::stream_curpos); // jump over pad byte
1513     }
1514 schoenebeck 2912 SetPos(ullOriginalPos); // restore position before this call
1515 schoenebeck 2 }
1516 schoenebeck 2682 __notify_progress(pProgress, 1.0); // notify done
1517 schoenebeck 2 }
1518    
1519 schoenebeck 2682 void List::LoadSubChunksRecursively(progress_t* pProgress) {
1520 schoenebeck 3053 const int n = (int) CountSubLists();
1521 schoenebeck 2682 int i = 0;
1522     for (List* pList = GetFirstSubList(); pList; pList = GetNextSubList(), ++i) {
1523     // divide local progress into subprogress
1524     progress_t subprogress;
1525     __divide_progress(pProgress, &subprogress, n, i);
1526     // do the actual work
1527     pList->LoadSubChunksRecursively(&subprogress);
1528     }
1529     __notify_progress(pProgress, 1.0); // notify done
1530 schoenebeck 833 }
1531    
1532 schoenebeck 780 /** @brief Write list chunk persistently e.g. to disk.
1533     *
1534     * Stores the list chunk persistently to its actual "physical" file. All
1535     * subchunks (including sub list chunks) will be stored recursively as
1536     * well.
1537     *
1538 schoenebeck 2912 * @param ullWritePos - position within the "physical" file where this
1539 schoenebeck 780 * list chunk should be written to
1540 schoenebeck 2912 * @param ullCurrentDataOffset - offset of current (old) data within
1541 schoenebeck 780 * the file
1542 schoenebeck 2682 * @param pProgress - optional: callback function for progress notification
1543 schoenebeck 780 * @returns new write position in the "physical" file, that is
1544 schoenebeck 2912 * \a ullWritePos incremented by this list chunk's new size
1545 schoenebeck 780 * (including its header size of course)
1546     */
1547 schoenebeck 2912 file_offset_t List::WriteChunk(file_offset_t ullWritePos, file_offset_t ullCurrentDataOffset, progress_t* pProgress) {
1548     const file_offset_t ullOriginalPos = ullWritePos;
1549     ullWritePos += LIST_HEADER_SIZE(pFile->FileOffsetSize);
1550 schoenebeck 780
1551 schoenebeck 798 if (pFile->Mode != stream_mode_read_write)
1552     throw Exception("Cannot write list chunk, file has to be opened in read+write mode");
1553    
1554 schoenebeck 780 // write all subchunks (including sub list chunks) recursively
1555     if (pSubChunks) {
1556 schoenebeck 2922 size_t i = 0;
1557     const size_t n = pSubChunks->size();
1558 schoenebeck 2682 for (ChunkList::iterator iter = pSubChunks->begin(), end = pSubChunks->end(); iter != end; ++iter, ++i) {
1559     // divide local progress into subprogress for loading current Instrument
1560     progress_t subprogress;
1561     __divide_progress(pProgress, &subprogress, n, i);
1562     // do the actual work
1563 schoenebeck 2912 ullWritePos = (*iter)->WriteChunk(ullWritePos, ullCurrentDataOffset, &subprogress);
1564 schoenebeck 780 }
1565     }
1566    
1567     // update this list chunk's header
1568 schoenebeck 2912 ullCurrentChunkSize = ullNewChunkSize = ullWritePos - ullOriginalPos - LIST_HEADER_SIZE(pFile->FileOffsetSize);
1569     WriteHeader(ullOriginalPos);
1570 schoenebeck 780
1571 schoenebeck 798 // offset of this list chunk in new written file may have changed
1572 schoenebeck 2912 ullStartPos = ullOriginalPos + LIST_HEADER_SIZE(pFile->FileOffsetSize);
1573 schoenebeck 798
1574 schoenebeck 2682 __notify_progress(pProgress, 1.0); // notify done
1575    
1576 schoenebeck 2912 return ullWritePos;
1577 schoenebeck 780 }
1578    
1579     void List::__resetPos() {
1580     Chunk::__resetPos();
1581     if (pSubChunks) {
1582     for (ChunkList::iterator iter = pSubChunks->begin(), end = pSubChunks->end(); iter != end; ++iter) {
1583     (*iter)->__resetPos();
1584     }
1585     }
1586     }
1587    
1588 schoenebeck 11 /**
1589     * Returns string representation of the lists's id
1590     */
1591 schoenebeck 2912 String List::GetListTypeString() const {
1592 schoenebeck 2 return convertToString(ListType);
1593     }
1594    
1595    
1596    
1597     // *************** File ***************
1598     // *
1599    
1600 schoenebeck 780 /** @brief Create new RIFF file.
1601     *
1602     * Use this constructor if you want to create a new RIFF file completely
1603     * "from scratch". Note: there must be no empty chunks or empty list
1604     * chunks when trying to make the new RIFF file persistent with Save()!
1605     *
1606 persson 1207 * Note: by default, the RIFF file will be saved in native endian
1607     * format; that is, as a RIFF file on little-endian machines and
1608     * as a RIFX file on big-endian. To change this behaviour, call
1609     * SetByteOrder() before calling Save().
1610     *
1611 schoenebeck 798 * @param FileType - four-byte identifier of the RIFF file type
1612 persson 1207 * @see AddSubChunk(), AddSubList(), SetByteOrder()
1613 schoenebeck 780 */
1614 schoenebeck 2543 File::File(uint32_t FileType)
1615 schoenebeck 2912 : List(this), bIsNewFile(true), Layout(layout_standard),
1616     FileOffsetPreference(offset_size_auto)
1617 schoenebeck 2543 {
1618 schoenebeck 1050 #if defined(WIN32)
1619     hFileRead = hFileWrite = INVALID_HANDLE_VALUE;
1620     #else
1621 schoenebeck 780 hFileRead = hFileWrite = 0;
1622 schoenebeck 1050 #endif
1623 schoenebeck 798 Mode = stream_mode_closed;
1624 schoenebeck 780 bEndianNative = true;
1625 schoenebeck 798 ListType = FileType;
1626 schoenebeck 2912 FileOffsetSize = 4;
1627     ullStartPos = RIFF_HEADER_SIZE(FileOffsetSize);
1628 schoenebeck 780 }
1629    
1630     /** @brief Load existing RIFF file.
1631     *
1632     * Loads an existing RIFF file with all its chunks.
1633     *
1634     * @param path - path and file name of the RIFF file to open
1635 schoenebeck 3048 * @throws RIFF::Exception if error occurred while trying to load the
1636 schoenebeck 780 * given RIFF file
1637     */
1638 schoenebeck 2543 File::File(const String& path)
1639 schoenebeck 2912 : List(this), Filename(path), bIsNewFile(false), Layout(layout_standard),
1640     FileOffsetPreference(offset_size_auto)
1641 schoenebeck 2543 {
1642 schoenebeck 3057 #if DEBUG_RIFF
1643 schoenebeck 2912 std::cout << "File::File("<<path<<")" << std::endl;
1644 schoenebeck 3057 #endif // DEBUG_RIFF
1645 schoenebeck 2543 bEndianNative = true;
1646 schoenebeck 2912 FileOffsetSize = 4;
1647 persson 2155 try {
1648 schoenebeck 2543 __openExistingFile(path);
1649 persson 2155 if (ChunkID != CHUNK_ID_RIFF && ChunkID != CHUNK_ID_RIFX) {
1650     throw RIFF::Exception("Not a RIFF file");
1651     }
1652 schoenebeck 2 }
1653 persson 2155 catch (...) {
1654     Cleanup();
1655     throw;
1656 schoenebeck 1050 }
1657 schoenebeck 2 }
1658    
1659 schoenebeck 2543 /** @brief Load existing RIFF-like file.
1660     *
1661     * Loads an existing file, which is not a "real" RIFF file, but similar to
1662     * an ordinary RIFF file.
1663     *
1664     * A "real" RIFF file contains at top level a List chunk either with chunk
1665     * ID "RIFF" or "RIFX". The simple constructor above expects this to be
1666     * case, and if it finds the toplevel List chunk to have another chunk ID
1667     * than one of those two expected ones, it would throw an Exception and
1668     * would refuse to load the file accordingly.
1669     *
1670     * Since there are however a lot of file formats which use the same simple
1671     * principles of the RIFF format, with another toplevel List chunk ID
1672     * though, you can use this alternative constructor here to be able to load
1673     * and handle those files in the same way as you would do with "real" RIFF
1674     * files.
1675     *
1676     * @param path - path and file name of the RIFF-alike file to be opened
1677     * @param FileType - expected toplevel List chunk ID (this is the very
1678     * first chunk found in the file)
1679     * @param Endian - whether the file uses little endian or big endian layout
1680     * @param layout - general file structure type
1681 schoenebeck 2912 * @param fileOffsetSize - (optional) preference how to deal with large files
1682 schoenebeck 3048 * @throws RIFF::Exception if error occurred while trying to load the
1683 schoenebeck 2543 * given RIFF-alike file
1684     */
1685 schoenebeck 2912 File::File(const String& path, uint32_t FileType, endian_t Endian, layout_t layout, offset_size_t fileOffsetSize)
1686     : List(this), Filename(path), bIsNewFile(false), Layout(layout),
1687     FileOffsetPreference(fileOffsetSize)
1688 schoenebeck 2543 {
1689     SetByteOrder(Endian);
1690 schoenebeck 2912 if (fileOffsetSize < offset_size_auto || fileOffsetSize > offset_size_64bit)
1691     throw Exception("Invalid RIFF::offset_size_t");
1692     FileOffsetSize = 4;
1693 schoenebeck 2543 try {
1694     __openExistingFile(path, &FileType);
1695     }
1696     catch (...) {
1697     Cleanup();
1698     throw;
1699     }
1700     }
1701    
1702     /**
1703     * Opens an already existing RIFF file or RIFF-alike file. This method
1704     * shall only be called once (in a File class constructor).
1705     *
1706     * @param path - path and file name of the RIFF file or RIFF-alike file to
1707     * be opened
1708     * @param FileType - (optional) expected chunk ID of first chunk in file
1709 schoenebeck 3048 * @throws RIFF::Exception if error occurred while trying to load the
1710 schoenebeck 2543 * given RIFF file or RIFF-alike file
1711     */
1712     void File::__openExistingFile(const String& path, uint32_t* FileType) {
1713     #if POSIX
1714     hFileRead = hFileWrite = open(path.c_str(), O_RDONLY | O_NONBLOCK);
1715 schoenebeck 2675 if (hFileRead == -1) {
1716 schoenebeck 2543 hFileRead = hFileWrite = 0;
1717 schoenebeck 2675 String sError = strerror(errno);
1718     throw RIFF::Exception("Can't open \"" + path + "\": " + sError);
1719 schoenebeck 2543 }
1720     #elif defined(WIN32)
1721     hFileRead = hFileWrite = CreateFile(
1722     path.c_str(), GENERIC_READ,
1723     FILE_SHARE_READ | FILE_SHARE_WRITE,
1724     NULL, OPEN_EXISTING,
1725     FILE_ATTRIBUTE_NORMAL |
1726     FILE_FLAG_RANDOM_ACCESS, NULL
1727     );
1728     if (hFileRead == INVALID_HANDLE_VALUE) {
1729     hFileRead = hFileWrite = INVALID_HANDLE_VALUE;
1730     throw RIFF::Exception("Can't open \"" + path + "\"");
1731     }
1732     #else
1733     hFileRead = hFileWrite = fopen(path.c_str(), "rb");
1734     if (!hFileRead) throw RIFF::Exception("Can't open \"" + path + "\"");
1735     #endif // POSIX
1736     Mode = stream_mode_read;
1737 schoenebeck 2912
1738     // determine RIFF file offset size to be used (in RIFF chunk headers)
1739     // according to the current file offset preference
1740     FileOffsetSize = FileOffsetSizeFor(GetCurrentFileSize());
1741    
1742 schoenebeck 2543 switch (Layout) {
1743     case layout_standard: // this is a normal RIFF file
1744 schoenebeck 2912 ullStartPos = RIFF_HEADER_SIZE(FileOffsetSize);
1745 schoenebeck 2543 ReadHeader(0);
1746     if (FileType && ChunkID != *FileType)
1747     throw RIFF::Exception("Invalid file container ID");
1748     break;
1749     case layout_flat: // non-standard RIFF-alike file
1750 schoenebeck 2912 ullStartPos = 0;
1751     ullNewChunkSize = ullCurrentChunkSize = GetCurrentFileSize();
1752 schoenebeck 2543 if (FileType) {
1753     uint32_t ckid;
1754     if (Read(&ckid, 4, 1) != 4) {
1755     throw RIFF::Exception("Invalid file header ID (premature end of header)");
1756     } else if (ckid != *FileType) {
1757     String s = " (expected '" + convertToString(*FileType) + "' but got '" + convertToString(ckid) + "')";
1758     throw RIFF::Exception("Invalid file header ID" + s);
1759     }
1760     SetPos(0); // reset to first byte of file
1761     }
1762     LoadSubChunks();
1763     break;
1764     }
1765     }
1766    
1767 schoenebeck 2912 String File::GetFileName() const {
1768 schoenebeck 780 return Filename;
1769     }
1770 schoenebeck 2482
1771     void File::SetFileName(const String& path) {
1772     Filename = path;
1773     }
1774 schoenebeck 780
1775 schoenebeck 2912 stream_mode_t File::GetMode() const {
1776 schoenebeck 780 return Mode;
1777     }
1778    
1779 schoenebeck 2543 layout_t File::GetLayout() const {
1780     return Layout;
1781     }
1782    
1783 schoenebeck 780 /** @brief Change file access mode.
1784     *
1785     * Changes files access mode either to read-only mode or to read/write
1786     * mode.
1787     *
1788     * @param NewMode - new file access mode
1789     * @returns true if mode was changed, false if current mode already
1790     * equals new mode
1791     * @throws RIFF::Exception if new file access mode is unknown
1792     */
1793     bool File::SetMode(stream_mode_t NewMode) {
1794     if (NewMode != Mode) {
1795     switch (NewMode) {
1796     case stream_mode_read:
1797     #if POSIX
1798     if (hFileRead) close(hFileRead);
1799     hFileRead = hFileWrite = open(Filename.c_str(), O_RDONLY | O_NONBLOCK);
1800 schoenebeck 2675 if (hFileRead == -1) {
1801 schoenebeck 780 hFileRead = hFileWrite = 0;
1802 schoenebeck 2675 String sError = strerror(errno);
1803     throw Exception("Could not (re)open file \"" + Filename + "\" in read mode: " + sError);
1804 schoenebeck 780 }
1805 schoenebeck 1050 #elif defined(WIN32)
1806     if (hFileRead != INVALID_HANDLE_VALUE) CloseHandle(hFileRead);
1807     hFileRead = hFileWrite = CreateFile(
1808     Filename.c_str(), GENERIC_READ,
1809     FILE_SHARE_READ | FILE_SHARE_WRITE,
1810     NULL, OPEN_EXISTING,
1811 schoenebeck 1459 FILE_ATTRIBUTE_NORMAL |
1812     FILE_FLAG_RANDOM_ACCESS,
1813     NULL
1814 schoenebeck 1050 );
1815     if (hFileRead == INVALID_HANDLE_VALUE) {
1816     hFileRead = hFileWrite = INVALID_HANDLE_VALUE;
1817     throw Exception("Could not (re)open file \"" + Filename + "\" in read mode");
1818     }
1819 schoenebeck 780 #else
1820     if (hFileRead) fclose(hFileRead);
1821 schoenebeck 1050 hFileRead = hFileWrite = fopen(Filename.c_str(), "rb");
1822 schoenebeck 780 if (!hFileRead) throw Exception("Could not (re)open file \"" + Filename + "\" in read mode");
1823     #endif
1824     __resetPos(); // reset read/write position of ALL 'Chunk' objects
1825 schoenebeck 798 break;
1826 schoenebeck 780 case stream_mode_read_write:
1827     #if POSIX
1828     if (hFileRead) close(hFileRead);
1829     hFileRead = hFileWrite = open(Filename.c_str(), O_RDWR | O_NONBLOCK);
1830 schoenebeck 2675 if (hFileRead == -1) {
1831 schoenebeck 780 hFileRead = hFileWrite = open(Filename.c_str(), O_RDONLY | O_NONBLOCK);
1832 schoenebeck 2675 String sError = strerror(errno);
1833     throw Exception("Could not open file \"" + Filename + "\" in read+write mode: " + sError);
1834 schoenebeck 780 }
1835 schoenebeck 1050 #elif defined(WIN32)
1836     if (hFileRead != INVALID_HANDLE_VALUE) CloseHandle(hFileRead);
1837     hFileRead = hFileWrite = CreateFile(
1838     Filename.c_str(),
1839     GENERIC_READ | GENERIC_WRITE,
1840     FILE_SHARE_READ,
1841     NULL, OPEN_ALWAYS,
1842 schoenebeck 1459 FILE_ATTRIBUTE_NORMAL |
1843     FILE_FLAG_RANDOM_ACCESS,
1844     NULL
1845 schoenebeck 1050 );
1846     if (hFileRead == INVALID_HANDLE_VALUE) {
1847     hFileRead = hFileWrite = CreateFile(
1848     Filename.c_str(), GENERIC_READ,
1849     FILE_SHARE_READ | FILE_SHARE_WRITE,
1850     NULL, OPEN_EXISTING,
1851 schoenebeck 1459 FILE_ATTRIBUTE_NORMAL |
1852     FILE_FLAG_RANDOM_ACCESS,
1853     NULL
1854 schoenebeck 1050 );
1855 persson 1301 throw Exception("Could not (re)open file \"" + Filename + "\" in read+write mode");
1856 schoenebeck 1050 }
1857 schoenebeck 780 #else
1858     if (hFileRead) fclose(hFileRead);
1859 schoenebeck 1050 hFileRead = hFileWrite = fopen(Filename.c_str(), "r+b");
1860 schoenebeck 780 if (!hFileRead) {
1861 schoenebeck 1050 hFileRead = hFileWrite = fopen(Filename.c_str(), "rb");
1862 schoenebeck 780 throw Exception("Could not open file \"" + Filename + "\" in read+write mode");
1863     }
1864     #endif
1865     __resetPos(); // reset read/write position of ALL 'Chunk' objects
1866 schoenebeck 798 break;
1867     case stream_mode_closed:
1868     #if POSIX
1869     if (hFileRead) close(hFileRead);
1870     if (hFileWrite) close(hFileWrite);
1871 schoenebeck 3412 hFileRead = hFileWrite = 0;
1872 schoenebeck 1050 #elif defined(WIN32)
1873     if (hFileRead != INVALID_HANDLE_VALUE) CloseHandle(hFileRead);
1874     if (hFileWrite != INVALID_HANDLE_VALUE) CloseHandle(hFileWrite);
1875 schoenebeck 3412 hFileRead = hFileWrite = INVALID_HANDLE_VALUE;
1876 schoenebeck 798 #else
1877     if (hFileRead) fclose(hFileRead);
1878     if (hFileWrite) fclose(hFileWrite);
1879 schoenebeck 3412 hFileRead = hFileWrite = NULL;
1880 schoenebeck 798 #endif
1881     break;
1882 schoenebeck 780 default:
1883     throw Exception("Unknown file access mode");
1884     }
1885 schoenebeck 798 Mode = NewMode;
1886     return true;
1887 schoenebeck 780 }
1888     return false;
1889     }
1890    
1891 persson 1184 /** @brief Set the byte order to be used when saving.
1892     *
1893     * Set the byte order to be used in the file. A value of
1894     * endian_little will create a RIFF file, endian_big a RIFX file
1895     * and endian_native will create a RIFF file on little-endian
1896     * machines and RIFX on big-endian machines.
1897     *
1898     * @param Endian - endianess to use when file is saved.
1899     */
1900     void File::SetByteOrder(endian_t Endian) {
1901     #if WORDS_BIGENDIAN
1902     bEndianNative = Endian != endian_little;
1903     #else
1904     bEndianNative = Endian != endian_big;
1905     #endif
1906     }
1907    
1908 schoenebeck 780 /** @brief Save changes to same file.
1909     *
1910     * Make all changes of all chunks persistent by writing them to the
1911 schoenebeck 2912 * actual (same) file.
1912 schoenebeck 780 *
1913 schoenebeck 2682 * @param pProgress - optional: callback function for progress notification
1914 schoenebeck 780 * @throws RIFF::Exception if there is an empty chunk or empty list
1915 schoenebeck 3048 * chunk or any kind of IO error occurred
1916 schoenebeck 780 */
1917 schoenebeck 2682 void File::Save(progress_t* pProgress) {
1918 schoenebeck 2543 //TODO: implementation for the case where first chunk is not a global container (List chunk) is not implemented yet (i.e. Korg files)
1919     if (Layout == layout_flat)
1920     throw Exception("Saving a RIFF file with layout_flat is not implemented yet");
1921    
1922 schoenebeck 833 // make sure the RIFF tree is built (from the original file)
1923 schoenebeck 2682 {
1924     // divide progress into subprogress
1925     progress_t subprogress;
1926     __divide_progress(pProgress, &subprogress, 3.f, 0.f); // arbitrarily subdivided into 1/3 of total progress
1927     // do the actual work
1928     LoadSubChunksRecursively(&subprogress);
1929     // notify subprogress done
1930     __notify_progress(&subprogress, 1.f);
1931     }
1932 schoenebeck 833
1933 schoenebeck 780 // reopen file in write mode
1934 schoenebeck 798 SetMode(stream_mode_read_write);
1935 schoenebeck 780
1936 schoenebeck 2912 // get the current file size as it is now still physically stored on disk
1937     const file_offset_t workingFileSize = GetCurrentFileSize();
1938    
1939     // get the overall file size required to save this file
1940     const file_offset_t newFileSize = GetRequiredFileSize(FileOffsetPreference);
1941    
1942     // determine whether this file will yield in a large file (>=4GB) and
1943     // the RIFF file offset size to be used accordingly for all chunks
1944     FileOffsetSize = FileOffsetSizeFor(newFileSize);
1945    
1946 schoenebeck 780 // to be able to save the whole file without loading everything into
1947     // RAM and without having to store the data in a temporary file, we
1948 schoenebeck 2912 // enlarge the file with the overall positive file size change,
1949     // then move current data towards the end of the file by the calculated
1950     // positive file size difference and finally update / rewrite the file
1951     // by copying the old data back to the right position at the beginning
1952     // of the file
1953 schoenebeck 780
1954 schoenebeck 2912 // if there are positive size changes...
1955     file_offset_t positiveSizeDiff = 0;
1956     if (newFileSize > workingFileSize) {
1957     positiveSizeDiff = newFileSize - workingFileSize;
1958 schoenebeck 780
1959 schoenebeck 2682 // divide progress into subprogress
1960     progress_t subprogress;
1961     __divide_progress(pProgress, &subprogress, 3.f, 1.f); // arbitrarily subdivided into 1/3 of total progress
1962    
1963 schoenebeck 780 // ... we enlarge this file first ...
1964 schoenebeck 2912 ResizeFile(newFileSize);
1965    
1966 schoenebeck 780 // ... and move current data by the same amount towards end of file.
1967     int8_t* pCopyBuffer = new int8_t[4096];
1968 schoenebeck 1050 #if defined(WIN32)
1969     DWORD iBytesMoved = 1; // we have to pass it via pointer to the Windows API, thus the correct size must be ensured
1970     #else
1971 schoenebeck 2922 ssize_t iBytesMoved = 1;
1972 schoenebeck 1050 #endif
1973 schoenebeck 2912 for (file_offset_t ullPos = workingFileSize, iNotif = 0; iBytesMoved > 0; ++iNotif) {
1974     iBytesMoved = (ullPos < 4096) ? ullPos : 4096;
1975     ullPos -= iBytesMoved;
1976 schoenebeck 780 #if POSIX
1977 schoenebeck 2912 lseek(hFileRead, ullPos, SEEK_SET);
1978 schoenebeck 780 iBytesMoved = read(hFileRead, pCopyBuffer, iBytesMoved);
1979 schoenebeck 2912 lseek(hFileWrite, ullPos + positiveSizeDiff, SEEK_SET);
1980 schoenebeck 780 iBytesMoved = write(hFileWrite, pCopyBuffer, iBytesMoved);
1981 schoenebeck 1050 #elif defined(WIN32)
1982 schoenebeck 2915 LARGE_INTEGER liFilePos;
1983     liFilePos.QuadPart = ullPos;
1984 schoenebeck 2914 SetFilePointerEx(hFileRead, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1985 schoenebeck 1050 ReadFile(hFileRead, pCopyBuffer, iBytesMoved, &iBytesMoved, NULL);
1986 schoenebeck 2914 liFilePos.QuadPart = ullPos + positiveSizeDiff;
1987     SetFilePointerEx(hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN);
1988 schoenebeck 1050 WriteFile(hFileWrite, pCopyBuffer, iBytesMoved, &iBytesMoved, NULL);
1989 schoenebeck 780 #else
1990 schoenebeck 2912 fseeko(hFileRead, ullPos, SEEK_SET);
1991 schoenebeck 780 iBytesMoved = fread(pCopyBuffer, 1, iBytesMoved, hFileRead);
1992 schoenebeck 2912 fseeko(hFileWrite, ullPos + positiveSizeDiff, SEEK_SET);
1993 schoenebeck 780 iBytesMoved = fwrite(pCopyBuffer, 1, iBytesMoved, hFileWrite);
1994     #endif
1995 schoenebeck 2682 if (!(iNotif % 8) && iBytesMoved > 0)
1996 schoenebeck 2912 __notify_progress(&subprogress, float(workingFileSize - ullPos) / float(workingFileSize));
1997 schoenebeck 780 }
1998     delete[] pCopyBuffer;
1999     if (iBytesMoved < 0) throw Exception("Could not modify file while trying to enlarge it");
2000 schoenebeck 2682
2001     __notify_progress(&subprogress, 1.f); // notify subprogress done
2002 schoenebeck 780 }
2003    
2004 schoenebeck 2682 // rebuild / rewrite complete RIFF tree ...
2005    
2006     // divide progress into subprogress
2007     progress_t subprogress;
2008     __divide_progress(pProgress, &subprogress, 3.f, 2.f); // arbitrarily subdivided into 1/3 of total progress
2009     // do the actual work
2010 schoenebeck 2912 const file_offset_t finalSize = WriteChunk(0, positiveSizeDiff, &subprogress);
2011     const file_offset_t finalActualSize = __GetFileSize(hFileWrite);
2012 schoenebeck 2682 // notify subprogress done
2013     __notify_progress(&subprogress, 1.f);
2014 schoenebeck 780
2015     // resize file to the final size
2016 schoenebeck 2912 if (finalSize < finalActualSize) ResizeFile(finalSize);
2017 schoenebeck 780
2018 schoenebeck 2682 __notify_progress(pProgress, 1.0); // notify done
2019 schoenebeck 780 }
2020    
2021     /** @brief Save changes to another file.
2022     *
2023     * Make all changes of all chunks persistent by writing them to another
2024     * file. <b>Caution:</b> this method is optimized for writing to
2025     * <b>another</b> file, do not use it to save the changes to the same
2026 schoenebeck 798 * file! Use File::Save() in that case instead! Ignoring this might
2027     * result in a corrupted file, especially in case chunks were resized!
2028 schoenebeck 780 *
2029     * After calling this method, this File object will be associated with
2030     * the new file (given by \a path) afterwards.
2031     *
2032     * @param path - path and file name where everything should be written to
2033 schoenebeck 2682 * @param pProgress - optional: callback function for progress notification
2034 schoenebeck 780 */
2035 schoenebeck 2682 void File::Save(const String& path, progress_t* pProgress) {
2036 schoenebeck 798 //TODO: we should make a check here if somebody tries to write to the same file and automatically call the other Save() method in that case
2037    
2038 schoenebeck 2543 //TODO: implementation for the case where first chunk is not a global container (List chunk) is not implemented yet (i.e. Korg files)
2039     if (Layout == layout_flat)
2040     throw Exception("Saving a RIFF file with layout_flat is not implemented yet");
2041    
2042 schoenebeck 833 // make sure the RIFF tree is built (from the original file)
2043 schoenebeck 2682 {
2044     // divide progress into subprogress
2045     progress_t subprogress;
2046     __divide_progress(pProgress, &subprogress, 2.f, 0.f); // arbitrarily subdivided into 1/2 of total progress
2047     // do the actual work
2048     LoadSubChunksRecursively(&subprogress);
2049     // notify subprogress done
2050     __notify_progress(&subprogress, 1.f);
2051     }
2052 schoenebeck 833
2053 schoenebeck 2482 if (!bIsNewFile) SetMode(stream_mode_read);
2054 schoenebeck 780 // open the other (new) file for writing and truncate it to zero size
2055     #if POSIX
2056 schoenebeck 798 hFileWrite = open(path.c_str(), O_RDWR | O_CREAT, S_IRUSR | S_IWUSR | S_IRGRP);
2057 schoenebeck 2675 if (hFileWrite == -1) {
2058 schoenebeck 780 hFileWrite = hFileRead;
2059 schoenebeck 2675 String sError = strerror(errno);
2060     throw Exception("Could not open file \"" + path + "\" for writing: " + sError);
2061 schoenebeck 780 }
2062 schoenebeck 1050 #elif defined(WIN32)
2063     hFileWrite = CreateFile(
2064     path.c_str(), GENERIC_WRITE, FILE_SHARE_READ,
2065 schoenebeck 1459 NULL, OPEN_ALWAYS, FILE_ATTRIBUTE_NORMAL |
2066     FILE_FLAG_RANDOM_ACCESS, NULL
2067 schoenebeck 1050 );
2068     if (hFileWrite == INVALID_HANDLE_VALUE) {
2069     hFileWrite = hFileRead;
2070     throw Exception("Could not open file \"" + path + "\" for writing");
2071     }
2072 schoenebeck 780 #else
2073     hFileWrite = fopen(path.c_str(), "w+b");
2074     if (!hFileWrite) {
2075     hFileWrite = hFileRead;
2076     throw Exception("Could not open file \"" + path + "\" for writing");
2077     }
2078     #endif // POSIX
2079 schoenebeck 798 Mode = stream_mode_read_write;
2080 schoenebeck 780
2081 schoenebeck 2912 // get the overall file size required to save this file
2082     const file_offset_t newFileSize = GetRequiredFileSize(FileOffsetPreference);
2083    
2084     // determine whether this file will yield in a large file (>=4GB) and
2085     // the RIFF file offset size to be used accordingly for all chunks
2086     FileOffsetSize = FileOffsetSizeFor(newFileSize);
2087    
2088 schoenebeck 780 // write complete RIFF tree to the other (new) file
2089 schoenebeck 2912 file_offset_t ullTotalSize;
2090 schoenebeck 2682 {
2091     // divide progress into subprogress
2092     progress_t subprogress;
2093     __divide_progress(pProgress, &subprogress, 2.f, 1.f); // arbitrarily subdivided into 1/2 of total progress
2094     // do the actual work
2095 schoenebeck 2912 ullTotalSize = WriteChunk(0, 0, &subprogress);
2096 schoenebeck 2682 // notify subprogress done
2097     __notify_progress(&subprogress, 1.f);
2098     }
2099 schoenebeck 2912 file_offset_t ullActualSize = __GetFileSize(hFileWrite);
2100 schoenebeck 780
2101 schoenebeck 798 // resize file to the final size (if the file was originally larger)
2102 schoenebeck 2912 if (ullActualSize > ullTotalSize) ResizeFile(ullTotalSize);
2103 schoenebeck 798
2104 persson 1301 #if POSIX
2105     if (hFileWrite) close(hFileWrite);
2106     #elif defined(WIN32)
2107     if (hFileWrite != INVALID_HANDLE_VALUE) CloseHandle(hFileWrite);
2108     #else
2109     if (hFileWrite) fclose(hFileWrite);
2110     #endif
2111     hFileWrite = hFileRead;
2112 schoenebeck 798
2113 schoenebeck 780 // associate new file with this File object from now on
2114     Filename = path;
2115 schoenebeck 2482 bIsNewFile = false;
2116 schoenebeck 798 Mode = (stream_mode_t) -1; // Just set it to an undefined mode ...
2117     SetMode(stream_mode_read_write); // ... so SetMode() has to reopen the file handles.
2118 schoenebeck 2682
2119     __notify_progress(pProgress, 1.0); // notify done
2120 schoenebeck 780 }
2121    
2122 schoenebeck 2912 void File::ResizeFile(file_offset_t ullNewSize) {
2123 schoenebeck 780 #if POSIX
2124 schoenebeck 2912 if (ftruncate(hFileWrite, ullNewSize) < 0)
2125 schoenebeck 780 throw Exception("Could not resize file \"" + Filename + "\"");
2126 schoenebeck 1050 #elif defined(WIN32)
2127 schoenebeck 2915 LARGE_INTEGER liFilePos;
2128     liFilePos.QuadPart = ullNewSize;
2129 schoenebeck 1050 if (
2130 schoenebeck 2914 !SetFilePointerEx(hFileWrite, liFilePos, NULL/*new pos pointer*/, FILE_BEGIN) ||
2131 schoenebeck 1050 !SetEndOfFile(hFileWrite)
2132     ) throw Exception("Could not resize file \"" + Filename + "\"");
2133 schoenebeck 780 #else
2134 schoenebeck 1050 # error Sorry, this version of libgig only supports POSIX and Windows systems yet.
2135 schoenebeck 798 # error Reason: portable implementation of RIFF::File::ResizeFile() is missing (yet)!
2136 schoenebeck 780 #endif
2137     }
2138    
2139 schoenebeck 2 File::~File() {
2140 schoenebeck 3057 #if DEBUG_RIFF
2141 schoenebeck 2912 std::cout << "File::~File()" << std::endl;
2142 schoenebeck 3057 #endif // DEBUG_RIFF
2143 persson 2155 Cleanup();
2144     }
2145 schoenebeck 2912
2146 schoenebeck 2482 /**
2147     * Returns @c true if this file has been created new from scratch and
2148     * has not been stored to disk yet.
2149     */
2150     bool File::IsNew() const {
2151     return bIsNewFile;
2152     }
2153 persson 2155
2154     void File::Cleanup() {
2155 schoenebeck 2 #if POSIX
2156 schoenebeck 780 if (hFileRead) close(hFileRead);
2157 schoenebeck 1050 #elif defined(WIN32)
2158     if (hFileRead != INVALID_HANDLE_VALUE) CloseHandle(hFileRead);
2159 schoenebeck 2 #else
2160 schoenebeck 780 if (hFileRead) fclose(hFileRead);
2161 schoenebeck 2 #endif // POSIX
2162 persson 1869 DeleteChunkList();
2163     pFile = NULL;
2164 schoenebeck 2 }
2165    
2166 schoenebeck 2912 /**
2167     * Returns the current size of this file (in bytes) as it is currently
2168     * yet stored on disk. If this file does not yet exist on disk (i.e. when
2169     * this RIFF File has just been created from scratch and Save() has not
2170     * been called yet) then this method returns 0.
2171     */
2172     file_offset_t File::GetCurrentFileSize() const {
2173     file_offset_t size = 0;
2174     try {
2175     size = __GetFileSize(hFileRead);
2176     } catch (...) {
2177     size = 0;
2178     }
2179     return size;
2180 schoenebeck 780 }
2181    
2182 schoenebeck 2912 /**
2183     * Returns the required size (in bytes) for this RIFF File to be saved to
2184     * disk. The precise size of the final file on disk depends on the RIFF
2185     * file offset size actually used internally in all headers of the RIFF
2186     * chunks. By default libgig handles the required file offset size
2187     * automatically for you; that means it is using 32 bit offsets for files
2188     * smaller than 4 GB and 64 bit offsets for files equal or larger than
2189     * 4 GB. You may however also override this default behavior by passing the
2190     * respective option to the RIFF File constructor to force one particular
2191     * offset size. In the latter case this method will return the file size
2192     * for the requested forced file offset size that will be used when calling
2193     * Save() later on.
2194     *
2195     * You may also use the overridden method below to get the file size for
2196     * an arbitrary other file offset size instead.
2197     *
2198     * @see offset_size_t
2199     * @see GetFileOffsetSize()
2200     */
2201     file_offset_t File::GetRequiredFileSize() {
2202     return GetRequiredFileSize(FileOffsetPreference);
2203 schoenebeck 1095 }
2204    
2205 schoenebeck 2912 /**
2206     * Returns the rquired size (in bytes) for this RIFF file to be saved to
2207     * disk, assuming the passed @a fileOffsestSize would be used for the
2208     * Save() operation.
2209     *
2210     * This overridden method essentialy behaves like the above method, with
2211     * the difference that you must provide a specific RIFF @a fileOffsetSize
2212     * for calculating the theoretical final file size.
2213     *
2214     * @see GetFileOffsetSize()
2215     */
2216     file_offset_t File::GetRequiredFileSize(offset_size_t fileOffsetSize) {
2217     switch (fileOffsetSize) {
2218     case offset_size_auto: {
2219     file_offset_t fileSize = GetRequiredFileSize(offset_size_32bit);
2220     if (fileSize >> 32)
2221     return GetRequiredFileSize(offset_size_64bit);
2222     else
2223     return fileSize;
2224     }
2225     case offset_size_32bit: break;
2226     case offset_size_64bit: break;
2227     default: throw Exception("Internal error: Invalid RIFF::offset_size_t");
2228     }
2229     return RequiredPhysicalSize(FileOffsetSize);
2230 schoenebeck 798 }
2231    
2232 schoenebeck 2912 int File::FileOffsetSizeFor(file_offset_t fileSize) const {
2233     switch (FileOffsetPreference) {
2234     case offset_size_auto:
2235     return (fileSize >> 32) ? 8 : 4;
2236     case offset_size_32bit:
2237     return 4;
2238     case offset_size_64bit:
2239     return 8;
2240     default:
2241     throw Exception("Internal error: Invalid RIFF::offset_size_t");
2242     }
2243     }
2244    
2245     /**
2246     * Returns the current size (in bytes) of file offsets stored in the
2247     * headers of all chunks of this file.
2248     *
2249     * Most RIFF files are using 32 bit file offsets internally, which limits
2250     * them to a maximum file size of less than 4 GB though. In contrast to the
2251     * common standard, this RIFF File class implementation supports handling of
2252     * RIFF files equal or larger than 4 GB. In such cases 64 bit file offsets
2253     * have to be used in all headers of all RIFF Chunks when being stored to a
2254     * physical file. libgig by default automatically selects the correct file
2255     * offset size for you. You may however also force one particular file
2256     * offset size by supplying the respective option to the RIFF::File
2257     * constructor.
2258     *
2259     * This method can be used to check which RIFF file offset size is currently
2260     * being used for this RIFF File.
2261     *
2262     * @returns current RIFF file offset size used (in bytes)
2263     * @see offset_size_t
2264     */
2265     int File::GetFileOffsetSize() const {
2266     return FileOffsetSize;
2267     }
2268    
2269     /**
2270     * Returns the required size (in bytes) of file offsets stored in the
2271     * headers of all chunks of this file if the current RIFF tree would be
2272     * saved to disk by calling Save().
2273     *
2274     * See GetFileOffsetSize() for mor details about RIFF file offsets.
2275     *
2276     * @returns RIFF file offset size required (in bytes) if being saved
2277     * @see offset_size_t
2278     */
2279     int File::GetRequiredFileOffsetSize() {
2280     return FileOffsetSizeFor(GetCurrentFileSize());
2281     }
2282    
2283 schoenebeck 798 #if POSIX
2284 schoenebeck 2912 file_offset_t File::__GetFileSize(int hFile) const {
2285 schoenebeck 2 struct stat filestat;
2286 schoenebeck 2912 if (fstat(hFile, &filestat) == -1)
2287     throw Exception("POSIX FS error: could not determine file size");
2288     return filestat.st_size;
2289 schoenebeck 2 }
2290 schoenebeck 1050 #elif defined(WIN32)
2291 schoenebeck 2912 file_offset_t File::__GetFileSize(HANDLE hFile) const {
2292 schoenebeck 2914 LARGE_INTEGER size;
2293 schoenebeck 2912 if (!GetFileSizeEx(hFile, &size))
2294 schoenebeck 1063 throw Exception("Windows FS error: could not determine file size");
2295 schoenebeck 2914 return size.QuadPart;
2296 schoenebeck 1050 }
2297 schoenebeck 798 #else // standard C functions
2298 schoenebeck 2912 file_offset_t File::__GetFileSize(FILE* hFile) const {
2299     off_t curpos = ftello(hFile);
2300     if (fseeko(hFile, 0, SEEK_END) == -1)
2301     throw Exception("FS error: could not determine file size");
2302     off_t size = ftello(hFile);
2303     fseeko(hFile, curpos, SEEK_SET);
2304 schoenebeck 798 return size;
2305     }
2306     #endif
2307 schoenebeck 2
2308    
2309     // *************** Exception ***************
2310     // *
2311    
2312 schoenebeck 3198 Exception::Exception() {
2313     }
2314    
2315     Exception::Exception(String format, ...) {
2316     va_list arg;
2317     va_start(arg, format);
2318     Message = assemble(format, arg);
2319     va_end(arg);
2320     }
2321    
2322     Exception::Exception(String format, va_list arg) {
2323     Message = assemble(format, arg);
2324     }
2325    
2326 schoenebeck 2 void Exception::PrintMessage() {
2327     std::cout << "RIFF::Exception: " << Message << std::endl;
2328     }
2329    
2330 schoenebeck 3198 String Exception::assemble(String format, va_list arg) {
2331     char* buf = NULL;
2332     vasprintf(&buf, format.c_str(), arg);
2333     String s = buf;
2334     free(buf);
2335     return s;
2336     }
2337 schoenebeck 518
2338 schoenebeck 3198
2339 schoenebeck 518 // *************** functions ***************
2340     // *
2341    
2342     /**
2343     * Returns the name of this C++ library. This is usually "libgig" of
2344     * course. This call is equivalent to DLS::libraryName() and
2345     * gig::libraryName().
2346     */
2347     String libraryName() {
2348     return PACKAGE;
2349     }
2350    
2351     /**
2352     * Returns version of this C++ library. This call is equivalent to
2353     * DLS::libraryVersion() and gig::libraryVersion().
2354     */
2355     String libraryVersion() {
2356     return VERSION;
2357     }
2358    
2359 schoenebeck 2 } // namespace RIFF

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