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

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Revision 918 - (hide annotations) (download)
Sat Sep 2 08:45:37 2006 UTC (17 years, 7 months ago) by persson
File size: 61040 byte(s)
* several fixes for the write support

1 schoenebeck 2 /***************************************************************************
2     * *
3     * libgig - C++ cross-platform Gigasampler format file loader library *
4     * *
5 schoenebeck 384 * Copyright (C) 2003-2005 by Christian Schoenebeck *
6     * <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    
24     #include "DLS.h"
25    
26 schoenebeck 800 #include <time.h>
27    
28     #include "helper.h"
29    
30     // macros to decode connection transforms
31     #define CONN_TRANSFORM_SRC(x) ((x >> 10) & 0x000F)
32     #define CONN_TRANSFORM_CTL(x) ((x >> 4) & 0x000F)
33     #define CONN_TRANSFORM_DST(x) (x & 0x000F)
34     #define CONN_TRANSFORM_BIPOLAR_SRC(x) (x & 0x4000)
35     #define CONN_TRANSFORM_BIPOLAR_CTL(x) (x & 0x0100)
36     #define CONN_TRANSFORM_INVERT_SRC(x) (x & 0x8000)
37     #define CONN_TRANSFORM_INVERT_CTL(x) (x & 0x0200)
38    
39     // macros to encode connection transforms
40     #define CONN_TRANSFORM_SRC_ENCODE(x) ((x & 0x000F) << 10)
41     #define CONN_TRANSFORM_CTL_ENCODE(x) ((x & 0x000F) << 4)
42     #define CONN_TRANSFORM_DST_ENCODE(x) (x & 0x000F)
43     #define CONN_TRANSFORM_BIPOLAR_SRC_ENCODE(x) ((x) ? 0x4000 : 0)
44     #define CONN_TRANSFORM_BIPOLAR_CTL_ENCODE(x) ((x) ? 0x0100 : 0)
45     #define CONN_TRANSFORM_INVERT_SRC_ENCODE(x) ((x) ? 0x8000 : 0)
46     #define CONN_TRANSFORM_INVERT_CTL_ENCODE(x) ((x) ? 0x0200 : 0)
47    
48 persson 918 #define DRUM_TYPE_MASK 0x80000000
49 schoenebeck 800
50     #define F_RGN_OPTION_SELFNONEXCLUSIVE 0x0001
51    
52     #define F_WAVELINK_PHASE_MASTER 0x0001
53     #define F_WAVELINK_MULTICHANNEL 0x0002
54    
55     #define F_WSMP_NO_TRUNCATION 0x0001
56     #define F_WSMP_NO_COMPRESSION 0x0002
57    
58     #define MIDI_BANK_COARSE(x) ((x & 0x00007F00) >> 8) // CC0
59     #define MIDI_BANK_FINE(x) (x & 0x0000007F) // CC32
60     #define MIDI_BANK_MERGE(coarse, fine) ((((uint16_t) coarse) << 7) | fine) // CC0 + CC32
61     #define MIDI_BANK_ENCODE(coarse, fine) (((coarse & 0x0000007F) << 8) | (fine & 0x0000007F))
62    
63 schoenebeck 2 namespace DLS {
64    
65     // *************** Connection ***************
66     // *
67    
68     void Connection::Init(conn_block_t* Header) {
69     Source = (conn_src_t) Header->source;
70     Control = (conn_src_t) Header->control;
71     Destination = (conn_dst_t) Header->destination;
72     Scale = Header->scale;
73     SourceTransform = (conn_trn_t) CONN_TRANSFORM_SRC(Header->transform);
74     ControlTransform = (conn_trn_t) CONN_TRANSFORM_CTL(Header->transform);
75     DestinationTransform = (conn_trn_t) CONN_TRANSFORM_DST(Header->transform);
76     SourceInvert = CONN_TRANSFORM_INVERT_SRC(Header->transform);
77     SourceBipolar = CONN_TRANSFORM_BIPOLAR_SRC(Header->transform);
78     ControlInvert = CONN_TRANSFORM_INVERT_CTL(Header->transform);
79     ControlBipolar = CONN_TRANSFORM_BIPOLAR_CTL(Header->transform);
80     }
81    
82 schoenebeck 800 Connection::conn_block_t Connection::ToConnBlock() {
83     conn_block_t c;
84     c.source = Source;
85     c.control = Control;
86     c.destination = Destination;
87     c.scale = Scale;
88     c.transform = CONN_TRANSFORM_SRC_ENCODE(SourceTransform) |
89     CONN_TRANSFORM_CTL_ENCODE(ControlTransform) |
90     CONN_TRANSFORM_DST_ENCODE(DestinationTransform) |
91     CONN_TRANSFORM_INVERT_SRC_ENCODE(SourceInvert) |
92     CONN_TRANSFORM_BIPOLAR_SRC_ENCODE(SourceBipolar) |
93     CONN_TRANSFORM_INVERT_CTL_ENCODE(ControlInvert) |
94     CONN_TRANSFORM_BIPOLAR_CTL_ENCODE(ControlBipolar);
95     return c;
96     }
97 schoenebeck 2
98    
99 schoenebeck 800
100 schoenebeck 2 // *************** Articulation ***************
101     // *
102    
103 schoenebeck 800 /** @brief Constructor.
104     *
105     * Expects an 'artl' or 'art2' chunk to be given where the articulation
106     * connections will be read from.
107     *
108     * @param artl - pointer to an 'artl' or 'art2' chunk
109     * @throws Exception if no 'artl' or 'art2' chunk was given
110     */
111     Articulation::Articulation(RIFF::Chunk* artl) {
112     pArticulationCk = artl;
113     if (artl->GetChunkID() != CHUNK_ID_ART2 &&
114     artl->GetChunkID() != CHUNK_ID_ARTL) {
115     throw DLS::Exception("<artl-ck> or <art2-ck> chunk expected");
116 schoenebeck 2 }
117 schoenebeck 800 HeaderSize = artl->ReadUint32();
118     Connections = artl->ReadUint32();
119     artl->SetPos(HeaderSize);
120 schoenebeck 2
121     pConnections = new Connection[Connections];
122     Connection::conn_block_t connblock;
123 schoenebeck 800 for (uint32_t i = 0; i < Connections; i++) {
124     artl->Read(&connblock.source, 1, 2);
125     artl->Read(&connblock.control, 1, 2);
126     artl->Read(&connblock.destination, 1, 2);
127     artl->Read(&connblock.transform, 1, 2);
128     artl->Read(&connblock.scale, 1, 4);
129 schoenebeck 2 pConnections[i].Init(&connblock);
130     }
131     }
132    
133     Articulation::~Articulation() {
134     if (pConnections) delete[] pConnections;
135     }
136    
137 schoenebeck 800 /**
138     * Apply articulation connections to the respective RIFF chunks. You
139     * have to call File::Save() to make changes persistent.
140     */
141     void Articulation::UpdateChunks() {
142     const int iEntrySize = 12; // 12 bytes per connection block
143     pArticulationCk->Resize(HeaderSize + Connections * iEntrySize);
144     uint8_t* pData = (uint8_t*) pArticulationCk->LoadChunkData();
145 persson 918 memcpy(&pData[0], &HeaderSize, 2);
146     memcpy(&pData[2], &Connections, 2);
147 schoenebeck 800 for (uint32_t i = 0; i < Connections; i++) {
148     Connection::conn_block_t c = pConnections[i].ToConnBlock();
149 persson 918 memcpy(&pData[HeaderSize + i * iEntrySize], &c.source, 2);
150     memcpy(&pData[HeaderSize + i * iEntrySize + 2], &c.control, 2);
151     memcpy(&pData[HeaderSize + i * iEntrySize + 4], &c.destination, 2);
152     memcpy(&pData[HeaderSize + i * iEntrySize + 6], &c.transform, 2);
153     memcpy(&pData[HeaderSize + i * iEntrySize + 8], &c.scale, 4);
154 schoenebeck 800 }
155     }
156 schoenebeck 2
157    
158 schoenebeck 800
159 schoenebeck 2 // *************** Articulator ***************
160     // *
161    
162     Articulator::Articulator(RIFF::List* ParentList) {
163     pParentList = ParentList;
164     pArticulations = NULL;
165     }
166    
167     Articulation* Articulator::GetFirstArticulation() {
168     if (!pArticulations) LoadArticulations();
169     if (!pArticulations) return NULL;
170     ArticulationsIterator = pArticulations->begin();
171     return (ArticulationsIterator != pArticulations->end()) ? *ArticulationsIterator : NULL;
172     }
173    
174     Articulation* Articulator::GetNextArticulation() {
175     if (!pArticulations) return NULL;
176     ArticulationsIterator++;
177     return (ArticulationsIterator != pArticulations->end()) ? *ArticulationsIterator : NULL;
178     }
179    
180     void Articulator::LoadArticulations() {
181     // prefer articulation level 2
182     RIFF::List* lart = pParentList->GetSubList(LIST_TYPE_LAR2);
183     if (!lart) lart = pParentList->GetSubList(LIST_TYPE_LART);
184     if (lart) {
185 schoenebeck 800 uint32_t artCkType = (lart->GetListType() == LIST_TYPE_LAR2) ? CHUNK_ID_ART2
186     : CHUNK_ID_ARTL;
187     RIFF::Chunk* art = lart->GetFirstSubChunk();
188 schoenebeck 2 while (art) {
189 schoenebeck 800 if (art->GetChunkID() == artCkType) {
190 schoenebeck 2 if (!pArticulations) pArticulations = new ArticulationList;
191     pArticulations->push_back(new Articulation(art));
192     }
193 schoenebeck 800 art = lart->GetNextSubChunk();
194 schoenebeck 2 }
195     }
196     }
197    
198     Articulator::~Articulator() {
199     if (pArticulations) {
200     ArticulationList::iterator iter = pArticulations->begin();
201     ArticulationList::iterator end = pArticulations->end();
202     while (iter != end) {
203     delete *iter;
204     iter++;
205     }
206     delete pArticulations;
207     }
208     }
209    
210 schoenebeck 800 /**
211     * Apply all articulations to the respective RIFF chunks. You have to
212     * call File::Save() to make changes persistent.
213     */
214     void Articulator::UpdateChunks() {
215 schoenebeck 804 if (pArticulations) {
216     ArticulationList::iterator iter = pArticulations->begin();
217     ArticulationList::iterator end = pArticulations->end();
218     for (; iter != end; ++iter) {
219     (*iter)->UpdateChunks();
220     }
221 schoenebeck 800 }
222     }
223 schoenebeck 2
224    
225 schoenebeck 800
226 schoenebeck 2 // *************** Info ***************
227     // *
228    
229 schoenebeck 800 /** @brief Constructor.
230     *
231     * Initializes the info strings with values provided by a INFO list chunk.
232     *
233     * @param list - pointer to a list chunk which contains a INFO list chunk
234     */
235 schoenebeck 2 Info::Info(RIFF::List* list) {
236 persson 918 UseFixedLengthStrings = false;
237 schoenebeck 800 pResourceListChunk = list;
238 schoenebeck 2 if (list) {
239     RIFF::List* lstINFO = list->GetSubList(LIST_TYPE_INFO);
240     if (lstINFO) {
241     LoadString(CHUNK_ID_INAM, lstINFO, Name);
242     LoadString(CHUNK_ID_IARL, lstINFO, ArchivalLocation);
243     LoadString(CHUNK_ID_ICRD, lstINFO, CreationDate);
244     LoadString(CHUNK_ID_ICMT, lstINFO, Comments);
245     LoadString(CHUNK_ID_IPRD, lstINFO, Product);
246     LoadString(CHUNK_ID_ICOP, lstINFO, Copyright);
247     LoadString(CHUNK_ID_IART, lstINFO, Artists);
248     LoadString(CHUNK_ID_IGNR, lstINFO, Genre);
249     LoadString(CHUNK_ID_IKEY, lstINFO, Keywords);
250     LoadString(CHUNK_ID_IENG, lstINFO, Engineer);
251     LoadString(CHUNK_ID_ITCH, lstINFO, Technician);
252     LoadString(CHUNK_ID_ISFT, lstINFO, Software);
253     LoadString(CHUNK_ID_IMED, lstINFO, Medium);
254     LoadString(CHUNK_ID_ISRC, lstINFO, Source);
255     LoadString(CHUNK_ID_ISRF, lstINFO, SourceForm);
256     LoadString(CHUNK_ID_ICMS, lstINFO, Commissioned);
257     }
258     }
259     }
260    
261 schoenebeck 823 Info::~Info() {
262     }
263    
264 schoenebeck 800 /** @brief Load given INFO field.
265     *
266     * Load INFO field from INFO chunk with chunk ID \a ChunkID from INFO
267     * list chunk \a lstINFO and save value to \a s.
268     */
269     void Info::LoadString(uint32_t ChunkID, RIFF::List* lstINFO, String& s) {
270     RIFF::Chunk* ck = lstINFO->GetSubChunk(ChunkID);
271     if (ck) {
272 persson 839 const char* str = (char*)ck->LoadChunkData();
273     int size = ck->GetSize();
274     int len;
275     for (len = 0 ; len < size ; len++)
276     if (str[len] == '\0') break;
277     s.assign(str, len);
278 schoenebeck 800 ck->ReleaseChunkData();
279     }
280     }
281 schoenebeck 2
282 schoenebeck 800 /** @brief Apply given INFO field to the respective chunk.
283     *
284     * Apply given info value to info chunk with ID \a ChunkID, which is a
285     * subchunk of INFO list chunk \a lstINFO. If the given chunk already
286 schoenebeck 804 * exists, value \a s will be applied. Otherwise if it doesn't exist yet
287     * and either \a s or \a sDefault is not an empty string, such a chunk
288     * will be created and either \a s or \a sDefault will be applied
289     * (depending on which one is not an empty string, if both are not an
290     * empty string \a s will be preferred).
291 schoenebeck 800 *
292     * @param ChunkID - 32 bit RIFF chunk ID of INFO subchunk
293     * @param lstINFO - parent (INFO) RIFF list chunk
294     * @param s - current value of info field
295     * @param sDefault - default value
296 persson 918 * @param size - wanted size of the INFO chunk. This is ignored if UseFixedLengthStrings is false.
297 schoenebeck 800 */
298 persson 918 void Info::SaveString(uint32_t ChunkID, RIFF::List* lstINFO, const String& s, const String& sDefault, int size) {
299 schoenebeck 800 RIFF::Chunk* ck = lstINFO->GetSubChunk(ChunkID);
300     if (ck) { // if chunk exists already, use 's' as value
301 persson 918 if (!UseFixedLengthStrings) size = s.size() + 1;
302     ck->Resize(size);
303 schoenebeck 800 char* pData = (char*) ck->LoadChunkData();
304 persson 918 strncpy(pData, s.c_str(), size);
305 schoenebeck 804 } else if (s != "" || sDefault != "") { // create chunk
306     const String& sToSave = (s != "") ? s : sDefault;
307 persson 918 if (!UseFixedLengthStrings) size = sToSave.size() + 1;
308     ck = lstINFO->AddSubChunk(ChunkID, size);
309 schoenebeck 800 char* pData = (char*) ck->LoadChunkData();
310 persson 918 strncpy(pData, sToSave.c_str(), size);
311 schoenebeck 800 }
312     }
313 schoenebeck 2
314 schoenebeck 800 /** @brief Update chunks with current info values.
315     *
316     * Apply current INFO field values to the respective INFO chunks. You
317     * have to call File::Save() to make changes persistent.
318     */
319     void Info::UpdateChunks() {
320     if (!pResourceListChunk) return;
321    
322     // make sure INFO list chunk exists
323     RIFF::List* lstINFO = pResourceListChunk->GetSubList(LIST_TYPE_INFO);
324    
325 persson 918 String defaultName = "";
326     String defaultCreationDate = "";
327     String defaultSoftware = "";
328     String defaultComments = "";
329 schoenebeck 800
330 persson 918 uint32_t resourceType = pResourceListChunk->GetListType();
331    
332     if (!lstINFO) {
333     lstINFO = pResourceListChunk->AddSubList(LIST_TYPE_INFO);
334    
335     // assemble default values
336     defaultName = "NONAME";
337    
338     if (resourceType == RIFF_TYPE_DLS) {
339     // get current date
340     time_t now = time(NULL);
341     tm* pNowBroken = localtime(&now);
342     char buf[11];
343     strftime(buf, 11, "%F", pNowBroken);
344     defaultCreationDate = buf;
345    
346     defaultComments = "Created with " + libraryName() + " " + libraryVersion();
347     }
348     if (resourceType == RIFF_TYPE_DLS || resourceType == LIST_TYPE_INS)
349     {
350     defaultSoftware = libraryName() + " " + libraryVersion();
351     }
352     }
353    
354 schoenebeck 800 // save values
355 persson 918
356     // (the string size values are for gig files; they are only
357     // used if UseFixedLengthStrings is set to true)
358     SaveString(CHUNK_ID_INAM, lstINFO, Name, defaultName,
359     resourceType == RIFF_TYPE_DLS ? 128 : 64);
360     SaveString(CHUNK_ID_IARL, lstINFO, ArchivalLocation, String(""), 256);
361     SaveString(CHUNK_ID_ICRD, lstINFO, CreationDate, defaultCreationDate, 128);
362     SaveString(CHUNK_ID_ICMT, lstINFO, Comments, defaultComments, 1024);
363     SaveString(CHUNK_ID_IPRD, lstINFO, Product, String(""), 128);
364     SaveString(CHUNK_ID_ICOP, lstINFO, Copyright, String(""), 128);
365     SaveString(CHUNK_ID_IART, lstINFO, Artists, String(""), 128);
366     SaveString(CHUNK_ID_IGNR, lstINFO, Genre, String(""), 128);
367     SaveString(CHUNK_ID_IKEY, lstINFO, Keywords, String(""), 128);
368     SaveString(CHUNK_ID_IENG, lstINFO, Engineer, String(""), 128);
369     SaveString(CHUNK_ID_ITCH, lstINFO, Technician, String(""), 128);
370     SaveString(CHUNK_ID_ISFT, lstINFO, Software, defaultSoftware,
371     resourceType == LIST_TYPE_INS ?
372     (Software == "" ? defaultSoftware.length() : Software.length()) : 128);
373     SaveString(CHUNK_ID_IMED, lstINFO, Medium, String(""), 128);
374     SaveString(CHUNK_ID_ISRC, lstINFO, Source, String(""), 128);
375     SaveString(CHUNK_ID_ISRF, lstINFO, SourceForm, String(""), 128);
376     SaveString(CHUNK_ID_ICMS, lstINFO, Commissioned, String(""), 128);
377 schoenebeck 800 }
378    
379    
380    
381 schoenebeck 2 // *************** Resource ***************
382     // *
383    
384 schoenebeck 800 /** @brief Constructor.
385     *
386     * Initializes the 'Resource' object with values provided by a given
387     * INFO list chunk and a DLID chunk (the latter optional).
388     *
389     * @param Parent - pointer to parent 'Resource', NULL if this is
390     * the toplevel 'Resource' object
391     * @param lstResource - pointer to an INFO list chunk
392     */
393 schoenebeck 2 Resource::Resource(Resource* Parent, RIFF::List* lstResource) {
394     pParent = Parent;
395 schoenebeck 800 pResourceList = lstResource;
396 schoenebeck 2
397     pInfo = new Info(lstResource);
398    
399     RIFF::Chunk* ckDLSID = lstResource->GetSubChunk(CHUNK_ID_DLID);
400     if (ckDLSID) {
401     pDLSID = new dlsid_t;
402 schoenebeck 11 ckDLSID->Read(&pDLSID->ulData1, 1, 4);
403     ckDLSID->Read(&pDLSID->usData2, 1, 2);
404     ckDLSID->Read(&pDLSID->usData3, 1, 2);
405     ckDLSID->Read(pDLSID->abData, 8, 1);
406 schoenebeck 2 }
407     else pDLSID = NULL;
408     }
409    
410     Resource::~Resource() {
411     if (pDLSID) delete pDLSID;
412     if (pInfo) delete pInfo;
413     }
414    
415 schoenebeck 800 /** @brief Update chunks with current Resource data.
416     *
417     * Apply Resource data persistently below the previously given resource
418     * list chunk. This will currently only include the INFO data. The DLSID
419     * will not be applied at the moment (yet).
420     *
421     * You have to call File::Save() to make changes persistent.
422     */
423     void Resource::UpdateChunks() {
424     pInfo->UpdateChunks();
425     //TODO: save DLSID
426     }
427 schoenebeck 2
428    
429 schoenebeck 800
430 schoenebeck 2 // *************** Sampler ***************
431     // *
432    
433     Sampler::Sampler(RIFF::List* ParentList) {
434 schoenebeck 800 pParentList = ParentList;
435 schoenebeck 2 RIFF::Chunk* wsmp = ParentList->GetSubChunk(CHUNK_ID_WSMP);
436 schoenebeck 800 if (wsmp) {
437     uiHeaderSize = wsmp->ReadUint32();
438     UnityNote = wsmp->ReadUint16();
439     FineTune = wsmp->ReadInt16();
440     Gain = wsmp->ReadInt32();
441     SamplerOptions = wsmp->ReadUint32();
442     SampleLoops = wsmp->ReadUint32();
443     } else { // 'wsmp' chunk missing
444     uiHeaderSize = 0;
445     UnityNote = 64;
446     FineTune = 0; // +- 0 cents
447     Gain = 0; // 0 dB
448     SamplerOptions = F_WSMP_NO_COMPRESSION;
449     SampleLoops = 0;
450     }
451 schoenebeck 2 NoSampleDepthTruncation = SamplerOptions & F_WSMP_NO_TRUNCATION;
452     NoSampleCompression = SamplerOptions & F_WSMP_NO_COMPRESSION;
453     pSampleLoops = (SampleLoops) ? new sample_loop_t[SampleLoops] : NULL;
454 schoenebeck 800 if (SampleLoops) {
455     wsmp->SetPos(uiHeaderSize);
456     for (uint32_t i = 0; i < SampleLoops; i++) {
457     wsmp->Read(pSampleLoops + i, 4, 4);
458     if (pSampleLoops[i].Size > sizeof(sample_loop_t)) { // if loop struct was extended
459     wsmp->SetPos(pSampleLoops[i].Size - sizeof(sample_loop_t), RIFF::stream_curpos);
460     }
461 schoenebeck 2 }
462     }
463     }
464    
465     Sampler::~Sampler() {
466     if (pSampleLoops) delete[] pSampleLoops;
467     }
468    
469 schoenebeck 800 /**
470     * Apply all sample player options to the respective RIFF chunk. You
471     * have to call File::Save() to make changes persistent.
472     */
473     void Sampler::UpdateChunks() {
474     // make sure 'wsmp' chunk exists
475     RIFF::Chunk* wsmp = pParentList->GetSubChunk(CHUNK_ID_WSMP);
476     if (!wsmp) {
477     uiHeaderSize = 20;
478     wsmp = pParentList->AddSubChunk(CHUNK_ID_WSMP, uiHeaderSize + SampleLoops * 16);
479     }
480     uint8_t* pData = (uint8_t*) wsmp->LoadChunkData();
481     // update headers size
482 persson 918 memcpy(&pData[0], &uiHeaderSize, 4);
483 schoenebeck 800 // update respective sampler options bits
484     SamplerOptions = (NoSampleDepthTruncation) ? SamplerOptions | F_WSMP_NO_TRUNCATION
485     : SamplerOptions & (~F_WSMP_NO_TRUNCATION);
486     SamplerOptions = (NoSampleCompression) ? SamplerOptions | F_WSMP_NO_COMPRESSION
487     : SamplerOptions & (~F_WSMP_NO_COMPRESSION);
488     // update loop definitions
489     for (uint32_t i = 0; i < SampleLoops; i++) {
490     //FIXME: this does not handle extended loop structs correctly
491 persson 918 memcpy(&pData[uiHeaderSize + i * 16], pSampleLoops + i, 4 * 4);
492 schoenebeck 800 }
493     }
494 schoenebeck 2
495    
496 schoenebeck 800
497 schoenebeck 2 // *************** Sample ***************
498     // *
499    
500 schoenebeck 800 /** @brief Constructor.
501     *
502     * Load an existing sample or create a new one. A 'wave' list chunk must
503     * be given to this constructor. In case the given 'wave' list chunk
504     * contains a 'fmt' and 'data' chunk, the format and sample data will be
505     * loaded from there, otherwise default values will be used and those
506     * chunks will be created when File::Save() will be called later on.
507     *
508     * @param pFile - pointer to DLS::File where this sample is
509     * located (or will be located)
510     * @param waveList - pointer to 'wave' list chunk which is (or
511     * will be) associated with this sample
512     * @param WavePoolOffset - offset of this sample data from wave pool
513     * ('wvpl') list chunk
514     */
515 schoenebeck 2 Sample::Sample(File* pFile, RIFF::List* waveList, unsigned long WavePoolOffset) : Resource(pFile, waveList) {
516 schoenebeck 800 pWaveList = waveList;
517 schoenebeck 2 ulWavePoolOffset = WavePoolOffset - LIST_HEADER_SIZE;
518     pCkFormat = waveList->GetSubChunk(CHUNK_ID_FMT);
519     pCkData = waveList->GetSubChunk(CHUNK_ID_DATA);
520 schoenebeck 800 if (pCkFormat) {
521     // common fields
522     FormatTag = pCkFormat->ReadUint16();
523     Channels = pCkFormat->ReadUint16();
524     SamplesPerSecond = pCkFormat->ReadUint32();
525     AverageBytesPerSecond = pCkFormat->ReadUint32();
526     BlockAlign = pCkFormat->ReadUint16();
527     // PCM format specific
528     if (FormatTag == WAVE_FORMAT_PCM) {
529     BitDepth = pCkFormat->ReadUint16();
530     FrameSize = (FormatTag == WAVE_FORMAT_PCM) ? (BitDepth / 8) * Channels
531     : 0;
532     } else { // unsupported sample data format
533     BitDepth = 0;
534     FrameSize = 0;
535     }
536     } else { // 'fmt' chunk missing
537     FormatTag = WAVE_FORMAT_PCM;
538     BitDepth = 16;
539     Channels = 1;
540     SamplesPerSecond = 44100;
541     AverageBytesPerSecond = (BitDepth / 8) * SamplesPerSecond * Channels;
542     FrameSize = (BitDepth / 8) * Channels;
543     BlockAlign = FrameSize;
544 schoenebeck 2 }
545 schoenebeck 800 SamplesTotal = (pCkData) ? (FormatTag == WAVE_FORMAT_PCM) ? pCkData->GetSize() / FrameSize
546     : 0
547     : 0;
548 schoenebeck 2 }
549    
550 schoenebeck 800 /** @brief Destructor.
551     *
552     * Removes RIFF chunks associated with this Sample and frees all
553     * memory occupied by this sample.
554     */
555     Sample::~Sample() {
556     RIFF::List* pParent = pWaveList->GetParent();
557     pParent->DeleteSubChunk(pWaveList);
558     }
559    
560     /** @brief Load sample data into RAM.
561     *
562     * In case the respective 'data' chunk exists, the sample data will be
563     * loaded into RAM (if not done already) and a pointer to the data in
564     * RAM will be returned. If this is a new sample, you have to call
565     * Resize() with the desired sample size to create the mandatory RIFF
566     * chunk for the sample wave data.
567     *
568     * You can call LoadChunkData() again if you previously scheduled to
569     * enlarge the sample data RIFF chunk with a Resize() call. In that case
570     * the buffer will be enlarged to the new, scheduled size and you can
571     * already place the sample wave data to the buffer and finally call
572     * File::Save() to enlarge the sample data's chunk physically and write
573     * the new sample wave data in one rush. This approach is definitely
574     * recommended if you have to enlarge and write new sample data to a lot
575     * of samples.
576     *
577     * <b>Caution:</b> the buffer pointer will be invalidated once
578     * File::Save() was called. You have to call LoadChunkData() again to
579     * get a new, valid pointer whenever File::Save() was called.
580     *
581     * @returns pointer to sample data in RAM, NULL in case respective
582     * 'data' chunk does not exist (yet)
583     * @throws Exception if data buffer could not be enlarged
584     * @see Resize(), File::Save()
585     */
586 schoenebeck 2 void* Sample::LoadSampleData() {
587 schoenebeck 800 return (pCkData) ? pCkData->LoadChunkData() : NULL;
588 schoenebeck 2 }
589    
590 schoenebeck 800 /** @brief Free sample data from RAM.
591     *
592     * In case sample data was previously successfully loaded into RAM with
593     * LoadSampleData(), this method will free the sample data from RAM.
594     */
595 schoenebeck 2 void Sample::ReleaseSampleData() {
596 schoenebeck 800 if (pCkData) pCkData->ReleaseChunkData();
597 schoenebeck 2 }
598    
599 schoenebeck 800 /** @brief Returns sample size.
600     *
601     * Returns the sample wave form's data size (in sample points). This is
602     * actually the current, physical size (converted to sample points) of
603     * the RIFF chunk which encapsulates the sample's wave data. The
604     * returned value is dependant to the current FrameSize value.
605     *
606     * @returns number of sample points or 0 if FormatTag != WAVE_FORMAT_PCM
607     * @see FrameSize, FormatTag
608     */
609     unsigned long Sample::GetSize() {
610     if (FormatTag != WAVE_FORMAT_PCM) return 0;
611     return (pCkData) ? pCkData->GetSize() / FrameSize : 0;
612     }
613    
614     /** @brief Resize sample.
615     *
616     * Resizes the sample's wave form data, that is the actual size of
617     * sample wave data possible to be written for this sample. This call
618     * will return immediately and just schedule the resize operation. You
619     * should call File::Save() to actually perform the resize operation(s)
620     * "physically" to the file. As this can take a while on large files, it
621     * is recommended to call Resize() first on all samples which have to be
622     * resized and finally to call File::Save() to perform all those resize
623     * operations in one rush.
624     *
625     * The actual size (in bytes) is dependant to the current FrameSize
626     * value. You may want to set FrameSize before calling Resize().
627     *
628     * <b>Caution:</b> You cannot directly write to enlarged samples before
629     * calling File::Save() as this might exceed the current sample's
630     * boundary!
631     *
632     * Also note: only WAVE_FORMAT_PCM is currently supported, that is
633     * FormatTag must be WAVE_FORMAT_PCM. Trying to resize samples with
634     * other formats will fail!
635     *
636     * @param iNewSize - new sample wave data size in sample points (must be
637     * greater than zero)
638     * @throws Excecption if FormatTag != WAVE_FORMAT_PCM
639     * @throws Exception if \a iNewSize is less than 1
640     * @see File::Save(), FrameSize, FormatTag
641     */
642     void Sample::Resize(int iNewSize) {
643     if (FormatTag != WAVE_FORMAT_PCM) throw Exception("Sample's format is not WAVE_FORMAT_PCM");
644     if (iNewSize < 1) throw Exception("Sample size must be at least one sample point");
645     const int iSizeInBytes = iNewSize * FrameSize;
646     pCkData = pWaveList->GetSubChunk(CHUNK_ID_DATA);
647     if (pCkData) pCkData->Resize(iSizeInBytes);
648     else pCkData = pWaveList->AddSubChunk(CHUNK_ID_DATA, iSizeInBytes);
649     }
650    
651 schoenebeck 2 /**
652     * Sets the position within the sample (in sample points, not in
653     * bytes). Use this method and <i>Read()</i> if you don't want to load
654     * the sample into RAM, thus for disk streaming.
655     *
656 schoenebeck 800 * Also note: only WAVE_FORMAT_PCM is currently supported, that is
657     * FormatTag must be WAVE_FORMAT_PCM. Trying to reposition the sample
658     * with other formats will fail!
659     *
660 schoenebeck 2 * @param SampleCount number of sample points
661     * @param Whence to which relation \a SampleCount refers to
662 schoenebeck 800 * @returns new position within the sample, 0 if
663     * FormatTag != WAVE_FORMAT_PCM
664     * @throws Exception if no data RIFF chunk was created for the sample yet
665     * @see FrameSize, FormatTag
666 schoenebeck 2 */
667     unsigned long Sample::SetPos(unsigned long SampleCount, RIFF::stream_whence_t Whence) {
668     if (FormatTag != WAVE_FORMAT_PCM) return 0; // failed: wave data not PCM format
669 schoenebeck 800 if (!pCkData) throw Exception("No data chunk created for sample yet, call Sample::Resize() to create one");
670 schoenebeck 2 unsigned long orderedBytes = SampleCount * FrameSize;
671     unsigned long result = pCkData->SetPos(orderedBytes, Whence);
672     return (result == orderedBytes) ? SampleCount
673     : result / FrameSize;
674     }
675    
676     /**
677     * Reads \a SampleCount number of sample points from the current
678     * position into the buffer pointed by \a pBuffer and increments the
679     * position within the sample. Use this method and <i>SetPos()</i> if you
680     * don't want to load the sample into RAM, thus for disk streaming.
681     *
682     * @param pBuffer destination buffer
683     * @param SampleCount number of sample points to read
684     */
685     unsigned long Sample::Read(void* pBuffer, unsigned long SampleCount) {
686     if (FormatTag != WAVE_FORMAT_PCM) return 0; // failed: wave data not PCM format
687 schoenebeck 11 return pCkData->Read(pBuffer, SampleCount, FrameSize); // FIXME: channel inversion due to endian correction?
688 schoenebeck 2 }
689    
690 schoenebeck 800 /** @brief Write sample wave data.
691     *
692     * Writes \a SampleCount number of sample points from the buffer pointed
693     * by \a pBuffer and increments the position within the sample. Use this
694     * method to directly write the sample data to disk, i.e. if you don't
695     * want or cannot load the whole sample data into RAM.
696     *
697     * You have to Resize() the sample to the desired size and call
698     * File::Save() <b>before</b> using Write().
699     *
700     * @param pBuffer - source buffer
701     * @param SampleCount - number of sample points to write
702     * @throws Exception if current sample size is too small
703     * @see LoadSampleData()
704     */
705     unsigned long Sample::Write(void* pBuffer, unsigned long SampleCount) {
706     if (FormatTag != WAVE_FORMAT_PCM) return 0; // failed: wave data not PCM format
707     if (GetSize() < SampleCount) throw Exception("Could not write sample data, current sample size to small");
708     return pCkData->Write(pBuffer, SampleCount, FrameSize); // FIXME: channel inversion due to endian correction?
709     }
710 schoenebeck 2
711 schoenebeck 800 /**
712     * Apply sample and its settings to the respective RIFF chunks. You have
713     * to call File::Save() to make changes persistent.
714     *
715     * @throws Exception if FormatTag != WAVE_FORMAT_PCM or no sample data
716     * was provided yet
717     */
718     void Sample::UpdateChunks() {
719     if (FormatTag != WAVE_FORMAT_PCM)
720     throw Exception("Could not save sample, only PCM format is supported");
721     // we refuse to do anything if not sample wave form was provided yet
722     if (!pCkData)
723     throw Exception("Could not save sample, there is no sample data to save");
724     // update chunks of base class as well
725     Resource::UpdateChunks();
726     // make sure 'fmt' chunk exists
727     RIFF::Chunk* pCkFormat = pWaveList->GetSubChunk(CHUNK_ID_FMT);
728     if (!pCkFormat) pCkFormat = pWaveList->AddSubChunk(CHUNK_ID_FMT, 16); // assumes PCM format
729     uint8_t* pData = (uint8_t*) pCkFormat->LoadChunkData();
730     // update 'fmt' chunk
731 persson 918 memcpy(&pData[0], &FormatTag, 2);
732     memcpy(&pData[2], &Channels, 2);
733     memcpy(&pData[4], &SamplesPerSecond, 4);
734     memcpy(&pData[8], &AverageBytesPerSecond, 4);
735     memcpy(&pData[12], &BlockAlign, 2);
736     memcpy(&pData[14], &BitDepth, 2); // assuming PCM format
737 schoenebeck 800 }
738 schoenebeck 2
739 schoenebeck 800
740    
741 schoenebeck 2 // *************** Region ***************
742     // *
743    
744     Region::Region(Instrument* pInstrument, RIFF::List* rgnList) : Resource(pInstrument, rgnList), Articulator(rgnList), Sampler(rgnList) {
745     pCkRegion = rgnList;
746    
747 schoenebeck 800 // articulation informations
748 schoenebeck 2 RIFF::Chunk* rgnh = rgnList->GetSubChunk(CHUNK_ID_RGNH);
749 schoenebeck 800 if (rgnh) {
750     rgnh->Read(&KeyRange, 2, 2);
751     rgnh->Read(&VelocityRange, 2, 2);
752     FormatOptionFlags = rgnh->ReadUint16();
753     KeyGroup = rgnh->ReadUint16();
754     // Layer is optional
755     if (rgnh->RemainingBytes() >= sizeof(uint16_t)) {
756     rgnh->Read(&Layer, 1, sizeof(uint16_t));
757     } else Layer = 0;
758     } else { // 'rgnh' chunk is missing
759     KeyRange.low = 0;
760     KeyRange.high = 127;
761     VelocityRange.low = 0;
762     VelocityRange.high = 127;
763     FormatOptionFlags = F_RGN_OPTION_SELFNONEXCLUSIVE;
764     KeyGroup = 0;
765     Layer = 0;
766 schoenebeck 2 }
767 schoenebeck 800 SelfNonExclusive = FormatOptionFlags & F_RGN_OPTION_SELFNONEXCLUSIVE;
768 schoenebeck 2
769 schoenebeck 800 // sample informations
770 schoenebeck 2 RIFF::Chunk* wlnk = rgnList->GetSubChunk(CHUNK_ID_WLNK);
771 schoenebeck 800 if (wlnk) {
772     WaveLinkOptionFlags = wlnk->ReadUint16();
773     PhaseGroup = wlnk->ReadUint16();
774     Channel = wlnk->ReadUint32();
775     WavePoolTableIndex = wlnk->ReadUint32();
776     } else { // 'wlnk' chunk is missing
777     WaveLinkOptionFlags = 0;
778     PhaseGroup = 0;
779     Channel = 0; // mono
780     WavePoolTableIndex = 0; // first entry in wave pool table
781     }
782     PhaseMaster = WaveLinkOptionFlags & F_WAVELINK_PHASE_MASTER;
783     MultiChannel = WaveLinkOptionFlags & F_WAVELINK_MULTICHANNEL;
784 schoenebeck 2
785     pSample = NULL;
786     }
787    
788 schoenebeck 800 /** @brief Destructor.
789     *
790     * Removes RIFF chunks associated with this Region.
791     */
792 schoenebeck 2 Region::~Region() {
793 schoenebeck 800 RIFF::List* pParent = pCkRegion->GetParent();
794     pParent->DeleteSubChunk(pCkRegion);
795 schoenebeck 2 }
796    
797     Sample* Region::GetSample() {
798     if (pSample) return pSample;
799     File* file = (File*) GetParent()->GetParent();
800     unsigned long soughtoffset = file->pWavePoolTable[WavePoolTableIndex];
801     Sample* sample = file->GetFirstSample();
802     while (sample) {
803     if (sample->ulWavePoolOffset == soughtoffset) return (pSample = sample);
804     sample = file->GetNextSample();
805     }
806     return NULL;
807     }
808    
809 schoenebeck 800 /**
810     * Assign another sample to this Region.
811     *
812     * @param pSample - sample to be assigned
813     */
814     void Region::SetSample(Sample* pSample) {
815     this->pSample = pSample;
816     WavePoolTableIndex = 0; // we update this offset when we Save()
817     }
818 schoenebeck 2
819 schoenebeck 800 /**
820     * Apply Region settings to the respective RIFF chunks. You have to
821     * call File::Save() to make changes persistent.
822     *
823     * @throws Exception - if the Region's sample could not be found
824     */
825     void Region::UpdateChunks() {
826     // make sure 'rgnh' chunk exists
827     RIFF::Chunk* rgnh = pCkRegion->GetSubChunk(CHUNK_ID_RGNH);
828 persson 918 if (!rgnh) rgnh = pCkRegion->AddSubChunk(CHUNK_ID_RGNH, Layer ? 14 : 12);
829 schoenebeck 800 uint8_t* pData = (uint8_t*) rgnh->LoadChunkData();
830     FormatOptionFlags = (SelfNonExclusive)
831     ? FormatOptionFlags | F_RGN_OPTION_SELFNONEXCLUSIVE
832     : FormatOptionFlags & (~F_RGN_OPTION_SELFNONEXCLUSIVE);
833     // update 'rgnh' chunk
834 persson 918 memcpy(&pData[0], &KeyRange, 2 * 2);
835     memcpy(&pData[4], &VelocityRange, 2 * 2);
836     memcpy(&pData[8], &FormatOptionFlags, 2);
837     memcpy(&pData[10], &KeyGroup, 2);
838     if (rgnh->GetSize() >= 14) memcpy(&pData[12], &Layer, 2);
839 schoenebeck 2
840 persson 918 // update chunks of base classes as well (but skip Resource,
841     // as a rgn doesn't seem to have dlid and INFO chunks)
842 schoenebeck 800 Articulator::UpdateChunks();
843     Sampler::UpdateChunks();
844    
845     // make sure 'wlnk' chunk exists
846     RIFF::Chunk* wlnk = pCkRegion->GetSubChunk(CHUNK_ID_WLNK);
847     if (!wlnk) wlnk = pCkRegion->AddSubChunk(CHUNK_ID_WLNK, 12);
848     pData = (uint8_t*) wlnk->LoadChunkData();
849     WaveLinkOptionFlags = (PhaseMaster)
850     ? WaveLinkOptionFlags | F_WAVELINK_PHASE_MASTER
851     : WaveLinkOptionFlags & (~F_WAVELINK_PHASE_MASTER);
852     WaveLinkOptionFlags = (MultiChannel)
853     ? WaveLinkOptionFlags | F_WAVELINK_MULTICHANNEL
854     : WaveLinkOptionFlags & (~F_WAVELINK_MULTICHANNEL);
855     // get sample's wave pool table index
856     int index = -1;
857     File* pFile = (File*) GetParent()->GetParent();
858 schoenebeck 804 if (pFile->pSamples) {
859     File::SampleList::iterator iter = pFile->pSamples->begin();
860     File::SampleList::iterator end = pFile->pSamples->end();
861     for (int i = 0; iter != end; ++iter, i++) {
862     if (*iter == pSample) {
863     index = i;
864     break;
865     }
866 schoenebeck 800 }
867     }
868     if (index < 0) throw Exception("Could not save Region, could not find Region's sample");
869     WavePoolTableIndex = index;
870     // update 'wlnk' chunk
871 persson 918 memcpy(&pData[0], &WaveLinkOptionFlags, 2);
872     memcpy(&pData[2], &PhaseGroup, 2);
873     memcpy(&pData[4], &Channel, 4);
874     memcpy(&pData[8], &WavePoolTableIndex, 4);
875 schoenebeck 800 }
876    
877    
878    
879 schoenebeck 2 // *************** Instrument ***************
880     // *
881    
882 schoenebeck 800 /** @brief Constructor.
883     *
884     * Load an existing instrument definition or create a new one. An 'ins'
885     * list chunk must be given to this constructor. In case this 'ins' list
886     * chunk contains a 'insh' chunk, the instrument data fields will be
887     * loaded from there, otherwise default values will be used and the
888     * 'insh' chunk will be created once File::Save() was called.
889     *
890     * @param pFile - pointer to DLS::File where this instrument is
891     * located (or will be located)
892     * @param insList - pointer to 'ins' list chunk which is (or will be)
893     * associated with this instrument
894     */
895 schoenebeck 2 Instrument::Instrument(File* pFile, RIFF::List* insList) : Resource(pFile, insList), Articulator(insList) {
896     pCkInstrument = insList;
897    
898 schoenebeck 800 midi_locale_t locale;
899 schoenebeck 2 RIFF::Chunk* insh = pCkInstrument->GetSubChunk(CHUNK_ID_INSH);
900 schoenebeck 800 if (insh) {
901     Regions = insh->ReadUint32();
902     insh->Read(&locale, 2, 4);
903     } else { // 'insh' chunk missing
904     Regions = 0;
905     locale.bank = 0;
906     locale.instrument = 0;
907     }
908    
909 schoenebeck 2 MIDIProgram = locale.instrument;
910     IsDrum = locale.bank & DRUM_TYPE_MASK;
911     MIDIBankCoarse = (uint8_t) MIDI_BANK_COARSE(locale.bank);
912     MIDIBankFine = (uint8_t) MIDI_BANK_FINE(locale.bank);
913     MIDIBank = MIDI_BANK_MERGE(MIDIBankCoarse, MIDIBankFine);
914    
915 schoenebeck 800 pRegions = NULL;
916 schoenebeck 2 }
917    
918     Region* Instrument::GetFirstRegion() {
919     if (!pRegions) LoadRegions();
920     if (!pRegions) return NULL;
921     RegionsIterator = pRegions->begin();
922     return (RegionsIterator != pRegions->end()) ? *RegionsIterator : NULL;
923     }
924    
925     Region* Instrument::GetNextRegion() {
926     if (!pRegions) return NULL;
927     RegionsIterator++;
928     return (RegionsIterator != pRegions->end()) ? *RegionsIterator : NULL;
929     }
930    
931     void Instrument::LoadRegions() {
932 schoenebeck 823 if (!pRegions) pRegions = new RegionList;
933 schoenebeck 2 RIFF::List* lrgn = pCkInstrument->GetSubList(LIST_TYPE_LRGN);
934 schoenebeck 823 if (lrgn) {
935     uint32_t regionCkType = (lrgn->GetSubList(LIST_TYPE_RGN2)) ? LIST_TYPE_RGN2 : LIST_TYPE_RGN; // prefer regions level 2
936     RIFF::List* rgn = lrgn->GetFirstSubList();
937     while (rgn) {
938     if (rgn->GetListType() == regionCkType) {
939     pRegions->push_back(new Region(this, rgn));
940     }
941     rgn = lrgn->GetNextSubList();
942 schoenebeck 2 }
943     }
944     }
945    
946 schoenebeck 800 Region* Instrument::AddRegion() {
947 schoenebeck 823 if (!pRegions) LoadRegions();
948 schoenebeck 800 RIFF::List* lrgn = pCkInstrument->GetSubList(LIST_TYPE_LRGN);
949     if (!lrgn) lrgn = pCkInstrument->AddSubList(LIST_TYPE_LRGN);
950     RIFF::List* rgn = lrgn->AddSubList(LIST_TYPE_RGN);
951     Region* pNewRegion = new Region(this, rgn);
952     pRegions->push_back(pNewRegion);
953 schoenebeck 823 Regions = pRegions->size();
954 schoenebeck 800 return pNewRegion;
955     }
956    
957     void Instrument::DeleteRegion(Region* pRegion) {
958 schoenebeck 802 if (!pRegions) return;
959 schoenebeck 800 RegionList::iterator iter = find(pRegions->begin(), pRegions->end(), pRegion);
960     if (iter == pRegions->end()) return;
961     pRegions->erase(iter);
962 schoenebeck 823 Regions = pRegions->size();
963 schoenebeck 800 delete pRegion;
964     }
965    
966     /**
967     * Apply Instrument with all its Regions to the respective RIFF chunks.
968     * You have to call File::Save() to make changes persistent.
969     *
970     * @throws Exception - on errors
971     */
972     void Instrument::UpdateChunks() {
973     // first update base classes' chunks
974     Resource::UpdateChunks();
975     Articulator::UpdateChunks();
976     // make sure 'insh' chunk exists
977     RIFF::Chunk* insh = pCkInstrument->GetSubChunk(CHUNK_ID_INSH);
978     if (!insh) insh = pCkInstrument->AddSubChunk(CHUNK_ID_INSH, 12);
979     uint8_t* pData = (uint8_t*) insh->LoadChunkData();
980     // update 'insh' chunk
981 schoenebeck 804 Regions = (pRegions) ? pRegions->size() : 0;
982 schoenebeck 800 midi_locale_t locale;
983     locale.instrument = MIDIProgram;
984     locale.bank = MIDI_BANK_ENCODE(MIDIBankCoarse, MIDIBankFine);
985     locale.bank = (IsDrum) ? locale.bank | DRUM_TYPE_MASK : locale.bank & (~DRUM_TYPE_MASK);
986     MIDIBank = MIDI_BANK_MERGE(MIDIBankCoarse, MIDIBankFine); // just a sync, when we're at it
987 persson 918 memcpy(&pData[0], &Regions, 4);
988     memcpy(&pData[4], &locale, 2 * 4);
989 schoenebeck 800 // update Region's chunks
990 schoenebeck 804 if (!pRegions) return;
991 schoenebeck 800 RegionList::iterator iter = pRegions->begin();
992     RegionList::iterator end = pRegions->end();
993     for (; iter != end; ++iter) {
994     (*iter)->UpdateChunks();
995     }
996     }
997    
998     /** @brief Destructor.
999     *
1000     * Removes RIFF chunks associated with this Instrument and frees all
1001     * memory occupied by this instrument.
1002     */
1003 schoenebeck 2 Instrument::~Instrument() {
1004     if (pRegions) {
1005     RegionList::iterator iter = pRegions->begin();
1006     RegionList::iterator end = pRegions->end();
1007     while (iter != end) {
1008     delete *iter;
1009     iter++;
1010     }
1011     delete pRegions;
1012     }
1013 schoenebeck 800 // remove instrument's chunks
1014     RIFF::List* pParent = pCkInstrument->GetParent();
1015     pParent->DeleteSubChunk(pCkInstrument);
1016 schoenebeck 2 }
1017    
1018    
1019    
1020     // *************** File ***************
1021     // *
1022    
1023 schoenebeck 800 /** @brief Constructor.
1024     *
1025     * Default constructor, use this to create an empty DLS file. You have
1026     * to add samples, instruments and finally call Save() to actually write
1027     * a DLS file.
1028     */
1029 schoenebeck 802 File::File() : Resource(NULL, pRIFF = new RIFF::File(RIFF_TYPE_DLS)) {
1030 schoenebeck 800 pVersion = new version_t;
1031     pVersion->major = 0;
1032     pVersion->minor = 0;
1033     pVersion->release = 0;
1034     pVersion->build = 0;
1035    
1036     Instruments = 0;
1037     WavePoolCount = 0;
1038     pWavePoolTable = NULL;
1039     pWavePoolTableHi = NULL;
1040     WavePoolHeaderSize = 8;
1041    
1042     pSamples = NULL;
1043     pInstruments = NULL;
1044    
1045     b64BitWavePoolOffsets = false;
1046     }
1047    
1048     /** @brief Constructor.
1049     *
1050     * Load an existing DLS file.
1051     *
1052     * @param pRIFF - pointer to a RIFF file which is actually the DLS file
1053     * to load
1054     * @throws Exception if given file is not a DLS file, expected chunks
1055     * are missing
1056     */
1057 schoenebeck 2 File::File(RIFF::File* pRIFF) : Resource(NULL, pRIFF) {
1058     if (!pRIFF) throw DLS::Exception("NULL pointer reference to RIFF::File object.");
1059     this->pRIFF = pRIFF;
1060    
1061     RIFF::Chunk* ckVersion = pRIFF->GetSubChunk(CHUNK_ID_VERS);
1062     if (ckVersion) {
1063     pVersion = new version_t;
1064 schoenebeck 11 ckVersion->Read(pVersion, 4, 2);
1065 schoenebeck 2 }
1066     else pVersion = NULL;
1067    
1068     RIFF::Chunk* colh = pRIFF->GetSubChunk(CHUNK_ID_COLH);
1069     if (!colh) throw DLS::Exception("Mandatory chunks in RIFF list chunk not found.");
1070     Instruments = colh->ReadUint32();
1071    
1072     RIFF::Chunk* ptbl = pRIFF->GetSubChunk(CHUNK_ID_PTBL);
1073 persson 902 if (!ptbl) { // pool table is missing - this is probably an ".art" file
1074     WavePoolCount = 0;
1075     pWavePoolTable = NULL;
1076     pWavePoolTableHi = NULL;
1077     WavePoolHeaderSize = 8;
1078     b64BitWavePoolOffsets = false;
1079     } else {
1080     WavePoolHeaderSize = ptbl->ReadUint32();
1081     WavePoolCount = ptbl->ReadUint32();
1082     pWavePoolTable = new uint32_t[WavePoolCount];
1083     pWavePoolTableHi = new uint32_t[WavePoolCount];
1084     ptbl->SetPos(WavePoolHeaderSize);
1085 schoenebeck 2
1086 persson 902 // Check for 64 bit offsets (used in gig v3 files)
1087     b64BitWavePoolOffsets = (ptbl->GetSize() - WavePoolHeaderSize == WavePoolCount * 8);
1088     if (b64BitWavePoolOffsets) {
1089     for (int i = 0 ; i < WavePoolCount ; i++) {
1090     pWavePoolTableHi[i] = ptbl->ReadUint32();
1091     pWavePoolTable[i] = ptbl->ReadUint32();
1092     if (pWavePoolTable[i] & 0x80000000)
1093     throw DLS::Exception("Files larger than 2 GB not yet supported");
1094     }
1095     } else { // conventional 32 bit offsets
1096     ptbl->Read(pWavePoolTable, WavePoolCount, sizeof(uint32_t));
1097     for (int i = 0 ; i < WavePoolCount ; i++) pWavePoolTableHi[i] = 0;
1098 schoenebeck 317 }
1099 persson 666 }
1100 schoenebeck 317
1101 schoenebeck 2 pSamples = NULL;
1102     pInstruments = NULL;
1103     }
1104    
1105     File::~File() {
1106     if (pInstruments) {
1107     InstrumentList::iterator iter = pInstruments->begin();
1108     InstrumentList::iterator end = pInstruments->end();
1109     while (iter != end) {
1110     delete *iter;
1111     iter++;
1112     }
1113     delete pInstruments;
1114     }
1115    
1116     if (pSamples) {
1117     SampleList::iterator iter = pSamples->begin();
1118     SampleList::iterator end = pSamples->end();
1119     while (iter != end) {
1120     delete *iter;
1121     iter++;
1122     }
1123     delete pSamples;
1124     }
1125    
1126     if (pWavePoolTable) delete[] pWavePoolTable;
1127 persson 666 if (pWavePoolTableHi) delete[] pWavePoolTableHi;
1128 schoenebeck 2 if (pVersion) delete pVersion;
1129 persson 834 for (std::list<RIFF::File*>::iterator i = ExtensionFiles.begin() ; i != ExtensionFiles.end() ; i++)
1130     delete *i;
1131 schoenebeck 2 }
1132    
1133     Sample* File::GetFirstSample() {
1134     if (!pSamples) LoadSamples();
1135     if (!pSamples) return NULL;
1136     SamplesIterator = pSamples->begin();
1137     return (SamplesIterator != pSamples->end()) ? *SamplesIterator : NULL;
1138     }
1139    
1140     Sample* File::GetNextSample() {
1141     if (!pSamples) return NULL;
1142     SamplesIterator++;
1143     return (SamplesIterator != pSamples->end()) ? *SamplesIterator : NULL;
1144     }
1145    
1146     void File::LoadSamples() {
1147 schoenebeck 823 if (!pSamples) pSamples = new SampleList;
1148 schoenebeck 2 RIFF::List* wvpl = pRIFF->GetSubList(LIST_TYPE_WVPL);
1149     if (wvpl) {
1150     unsigned long wvplFileOffset = wvpl->GetFilePos();
1151     RIFF::List* wave = wvpl->GetFirstSubList();
1152     while (wave) {
1153     if (wave->GetListType() == LIST_TYPE_WAVE) {
1154     unsigned long waveFileOffset = wave->GetFilePos();
1155     pSamples->push_back(new Sample(this, wave, waveFileOffset - wvplFileOffset));
1156     }
1157     wave = wvpl->GetNextSubList();
1158     }
1159     }
1160     else { // Seen a dwpl list chunk instead of a wvpl list chunk in some file (officially not DLS compliant)
1161     RIFF::List* dwpl = pRIFF->GetSubList(LIST_TYPE_DWPL);
1162     if (dwpl) {
1163     unsigned long dwplFileOffset = dwpl->GetFilePos();
1164     RIFF::List* wave = dwpl->GetFirstSubList();
1165     while (wave) {
1166     if (wave->GetListType() == LIST_TYPE_WAVE) {
1167     unsigned long waveFileOffset = wave->GetFilePos();
1168     pSamples->push_back(new Sample(this, wave, waveFileOffset - dwplFileOffset));
1169     }
1170     wave = dwpl->GetNextSubList();
1171     }
1172     }
1173     }
1174     }
1175    
1176 schoenebeck 800 /** @brief Add a new sample.
1177     *
1178     * This will create a new Sample object for the DLS file. You have to
1179     * call Save() to make this persistent to the file.
1180     *
1181     * @returns pointer to new Sample object
1182     */
1183     Sample* File::AddSample() {
1184 schoenebeck 809 if (!pSamples) LoadSamples();
1185 schoenebeck 800 __ensureMandatoryChunksExist();
1186     RIFF::List* wvpl = pRIFF->GetSubList(LIST_TYPE_WVPL);
1187     // create new Sample object and its respective 'wave' list chunk
1188     RIFF::List* wave = wvpl->AddSubList(LIST_TYPE_WAVE);
1189     Sample* pSample = new Sample(this, wave, 0 /*arbitrary value, we update offsets when we save*/);
1190     pSamples->push_back(pSample);
1191     return pSample;
1192     }
1193    
1194     /** @brief Delete a sample.
1195     *
1196     * This will delete the given Sample object from the DLS file. You have
1197     * to call Save() to make this persistent to the file.
1198     *
1199     * @param pSample - sample to delete
1200     */
1201     void File::DeleteSample(Sample* pSample) {
1202 schoenebeck 802 if (!pSamples) return;
1203 schoenebeck 800 SampleList::iterator iter = find(pSamples->begin(), pSamples->end(), pSample);
1204     if (iter == pSamples->end()) return;
1205     pSamples->erase(iter);
1206     delete pSample;
1207     }
1208    
1209 schoenebeck 2 Instrument* File::GetFirstInstrument() {
1210     if (!pInstruments) LoadInstruments();
1211     if (!pInstruments) return NULL;
1212     InstrumentsIterator = pInstruments->begin();
1213     return (InstrumentsIterator != pInstruments->end()) ? *InstrumentsIterator : NULL;
1214     }
1215    
1216     Instrument* File::GetNextInstrument() {
1217     if (!pInstruments) return NULL;
1218     InstrumentsIterator++;
1219     return (InstrumentsIterator != pInstruments->end()) ? *InstrumentsIterator : NULL;
1220     }
1221    
1222     void File::LoadInstruments() {
1223 schoenebeck 823 if (!pInstruments) pInstruments = new InstrumentList;
1224 schoenebeck 2 RIFF::List* lstInstruments = pRIFF->GetSubList(LIST_TYPE_LINS);
1225     if (lstInstruments) {
1226     RIFF::List* lstInstr = lstInstruments->GetFirstSubList();
1227     while (lstInstr) {
1228     if (lstInstr->GetListType() == LIST_TYPE_INS) {
1229     pInstruments->push_back(new Instrument(this, lstInstr));
1230     }
1231     lstInstr = lstInstruments->GetNextSubList();
1232     }
1233     }
1234     }
1235    
1236 schoenebeck 800 /** @brief Add a new instrument definition.
1237     *
1238     * This will create a new Instrument object for the DLS file. You have
1239     * to call Save() to make this persistent to the file.
1240     *
1241     * @returns pointer to new Instrument object
1242     */
1243     Instrument* File::AddInstrument() {
1244 schoenebeck 809 if (!pInstruments) LoadInstruments();
1245 schoenebeck 800 __ensureMandatoryChunksExist();
1246     RIFF::List* lstInstruments = pRIFF->GetSubList(LIST_TYPE_LINS);
1247     RIFF::List* lstInstr = lstInstruments->AddSubList(LIST_TYPE_INS);
1248     Instrument* pInstrument = new Instrument(this, lstInstr);
1249     pInstruments->push_back(pInstrument);
1250     return pInstrument;
1251     }
1252 schoenebeck 2
1253 schoenebeck 809 /** @brief Delete an instrument.
1254 schoenebeck 800 *
1255     * This will delete the given Instrument object from the DLS file. You
1256     * have to call Save() to make this persistent to the file.
1257     *
1258     * @param pInstrument - instrument to delete
1259     */
1260     void File::DeleteInstrument(Instrument* pInstrument) {
1261 schoenebeck 802 if (!pInstruments) return;
1262 schoenebeck 800 InstrumentList::iterator iter = find(pInstruments->begin(), pInstruments->end(), pInstrument);
1263     if (iter == pInstruments->end()) return;
1264     pInstruments->erase(iter);
1265     delete pInstrument;
1266     }
1267 schoenebeck 2
1268 schoenebeck 800 /**
1269     * Apply all the DLS file's current instruments, samples and settings to
1270     * the respective RIFF chunks. You have to call Save() to make changes
1271     * persistent.
1272     *
1273     * @throws Exception - on errors
1274     */
1275     void File::UpdateChunks() {
1276     // first update base class's chunks
1277     Resource::UpdateChunks();
1278    
1279     // if version struct exists, update 'vers' chunk
1280     if (pVersion) {
1281     RIFF::Chunk* ckVersion = pRIFF->GetSubChunk(CHUNK_ID_VERS);
1282     if (!ckVersion) ckVersion = pRIFF->AddSubChunk(CHUNK_ID_VERS, 8);
1283     uint8_t* pData = (uint8_t*) ckVersion->LoadChunkData();
1284 persson 918 memcpy(pData, pVersion, 2 * 4);
1285 schoenebeck 800 }
1286    
1287     // update 'colh' chunk
1288     Instruments = (pInstruments) ? pInstruments->size() : 0;
1289     RIFF::Chunk* colh = pRIFF->GetSubChunk(CHUNK_ID_COLH);
1290     if (!colh) colh = pRIFF->AddSubChunk(CHUNK_ID_COLH, 4);
1291     uint8_t* pData = (uint8_t*) colh->LoadChunkData();
1292 persson 918 memcpy(pData, &Instruments, 4);
1293 schoenebeck 800
1294     // update instrument's chunks
1295     if (pInstruments) {
1296     InstrumentList::iterator iter = pInstruments->begin();
1297     InstrumentList::iterator end = pInstruments->end();
1298     for (; iter != end; ++iter) {
1299     (*iter)->UpdateChunks();
1300     }
1301     }
1302    
1303     // update 'ptbl' chunk
1304     const int iSamples = (pSamples) ? pSamples->size() : 0;
1305     const int iPtblOffsetSize = (b64BitWavePoolOffsets) ? 8 : 4;
1306     RIFF::Chunk* ptbl = pRIFF->GetSubChunk(CHUNK_ID_PTBL);
1307     if (!ptbl) ptbl = pRIFF->AddSubChunk(CHUNK_ID_PTBL, 1 /*anything, we'll resize*/);
1308     const int iPtblSize = WavePoolHeaderSize + iPtblOffsetSize * iSamples;
1309     ptbl->Resize(iPtblSize);
1310     pData = (uint8_t*) ptbl->LoadChunkData();
1311     WavePoolCount = iSamples;
1312 persson 918 memcpy(&pData[4], &WavePoolCount, 4);
1313 schoenebeck 800 // we actually update the sample offsets in the pool table when we Save()
1314     memset(&pData[WavePoolHeaderSize], 0, iPtblSize - WavePoolHeaderSize);
1315    
1316     // update sample's chunks
1317     if (pSamples) {
1318     SampleList::iterator iter = pSamples->begin();
1319     SampleList::iterator end = pSamples->end();
1320     for (; iter != end; ++iter) {
1321     (*iter)->UpdateChunks();
1322     }
1323     }
1324     }
1325    
1326     /** @brief Save changes to another file.
1327     *
1328     * Make all changes persistent by writing them to another file.
1329     * <b>Caution:</b> this method is optimized for writing to
1330     * <b>another</b> file, do not use it to save the changes to the same
1331     * file! Use Save() (without path argument) in that case instead!
1332     * Ignoring this might result in a corrupted file!
1333     *
1334     * After calling this method, this File object will be associated with
1335     * the new file (given by \a Path) afterwards.
1336     *
1337     * @param Path - path and file name where everything should be written to
1338     */
1339     void File::Save(const String& Path) {
1340     UpdateChunks();
1341     pRIFF->Save(Path);
1342     __UpdateWavePoolTableChunk();
1343     }
1344    
1345     /** @brief Save changes to same file.
1346     *
1347     * Make all changes persistent by writing them to the actual (same)
1348     * file. The file might temporarily grow to a higher size than it will
1349     * have at the end of the saving process.
1350     *
1351     * @throws RIFF::Exception if any kind of IO error occured
1352     * @throws DLS::Exception if any kind of DLS specific error occured
1353     */
1354     void File::Save() {
1355     UpdateChunks();
1356     pRIFF->Save();
1357     __UpdateWavePoolTableChunk();
1358     }
1359    
1360     /**
1361     * Checks if all (for DLS) mandatory chunks exist, if not they will be
1362     * created. Note that those chunks will not be made persistent until
1363     * Save() was called.
1364     */
1365     void File::__ensureMandatoryChunksExist() {
1366     // enusre 'lins' list chunk exists (mandatory for instrument definitions)
1367     RIFF::List* lstInstruments = pRIFF->GetSubList(LIST_TYPE_LINS);
1368     if (!lstInstruments) pRIFF->AddSubList(LIST_TYPE_LINS);
1369     // ensure 'ptbl' chunk exists (mandatory for samples)
1370     RIFF::Chunk* ptbl = pRIFF->GetSubChunk(CHUNK_ID_PTBL);
1371     if (!ptbl) {
1372     const int iOffsetSize = (b64BitWavePoolOffsets) ? 8 : 4;
1373     ptbl = pRIFF->AddSubChunk(CHUNK_ID_PTBL, WavePoolHeaderSize + iOffsetSize);
1374     }
1375     // enusre 'wvpl' list chunk exists (mandatory for samples)
1376     RIFF::List* wvpl = pRIFF->GetSubList(LIST_TYPE_WVPL);
1377     if (!wvpl) pRIFF->AddSubList(LIST_TYPE_WVPL);
1378     }
1379    
1380     /**
1381     * Updates (persistently) the wave pool table with offsets to all
1382     * currently available samples. <b>Caution:</b> this method assumes the
1383 schoenebeck 804 * 'ptbl' chunk to be already of the correct size and the file to be
1384     * writable, so usually this method is only called after a Save() call.
1385 schoenebeck 800 *
1386     * @throws Exception - if 'ptbl' chunk is too small (should only occur
1387     * if there's a bug)
1388     */
1389     void File::__UpdateWavePoolTableChunk() {
1390     __UpdateWavePoolTable();
1391     RIFF::Chunk* ptbl = pRIFF->GetSubChunk(CHUNK_ID_PTBL);
1392     const int iOffsetSize = (b64BitWavePoolOffsets) ? 8 : 4;
1393     // check if 'ptbl' chunk is large enough
1394 schoenebeck 802 WavePoolCount = (pSamples) ? pSamples->size() : 0;
1395 schoenebeck 800 const unsigned long ulRequiredSize = WavePoolHeaderSize + iOffsetSize * WavePoolCount;
1396     if (ptbl->GetSize() < ulRequiredSize) throw Exception("Fatal error, 'ptbl' chunk too small");
1397 schoenebeck 804 // save the 'ptbl' chunk's current read/write position
1398     unsigned long ulOriginalPos = ptbl->GetPos();
1399 schoenebeck 800 // update headers
1400 schoenebeck 804 ptbl->SetPos(0);
1401     ptbl->WriteUint32(&WavePoolHeaderSize);
1402     ptbl->WriteUint32(&WavePoolCount);
1403 schoenebeck 800 // update offsets
1404 schoenebeck 804 ptbl->SetPos(WavePoolHeaderSize);
1405 schoenebeck 800 if (b64BitWavePoolOffsets) {
1406     for (int i = 0 ; i < WavePoolCount ; i++) {
1407 schoenebeck 804 ptbl->WriteUint32(&pWavePoolTableHi[i]);
1408     ptbl->WriteUint32(&pWavePoolTable[i]);
1409 schoenebeck 800 }
1410     } else { // conventional 32 bit offsets
1411     for (int i = 0 ; i < WavePoolCount ; i++)
1412 schoenebeck 804 ptbl->WriteUint32(&pWavePoolTable[i]);
1413 schoenebeck 800 }
1414 schoenebeck 804 // restore 'ptbl' chunk's original read/write position
1415     ptbl->SetPos(ulOriginalPos);
1416 schoenebeck 800 }
1417    
1418     /**
1419     * Updates the wave pool table with offsets to all currently available
1420     * samples. <b>Caution:</b> this method assumes the 'wvpl' list chunk
1421     * exists already.
1422     */
1423     void File::__UpdateWavePoolTable() {
1424 schoenebeck 802 WavePoolCount = (pSamples) ? pSamples->size() : 0;
1425 schoenebeck 800 // resize wave pool table arrays
1426     if (pWavePoolTable) delete[] pWavePoolTable;
1427     if (pWavePoolTableHi) delete[] pWavePoolTableHi;
1428     pWavePoolTable = new uint32_t[WavePoolCount];
1429     pWavePoolTableHi = new uint32_t[WavePoolCount];
1430 schoenebeck 802 if (!pSamples) return;
1431 schoenebeck 800 // update offsets int wave pool table
1432     RIFF::List* wvpl = pRIFF->GetSubList(LIST_TYPE_WVPL);
1433     uint64_t wvplFileOffset = wvpl->GetFilePos();
1434     if (b64BitWavePoolOffsets) {
1435     SampleList::iterator iter = pSamples->begin();
1436     SampleList::iterator end = pSamples->end();
1437     for (int i = 0 ; iter != end ; ++iter, i++) {
1438 schoenebeck 804 uint64_t _64BitOffset = (*iter)->pWaveList->GetFilePos() - wvplFileOffset - LIST_HEADER_SIZE;
1439 schoenebeck 800 (*iter)->ulWavePoolOffset = _64BitOffset;
1440     pWavePoolTableHi[i] = (uint32_t) (_64BitOffset >> 32);
1441     pWavePoolTable[i] = (uint32_t) _64BitOffset;
1442     }
1443     } else { // conventional 32 bit offsets
1444     SampleList::iterator iter = pSamples->begin();
1445     SampleList::iterator end = pSamples->end();
1446     for (int i = 0 ; iter != end ; ++iter, i++) {
1447 schoenebeck 804 uint64_t _64BitOffset = (*iter)->pWaveList->GetFilePos() - wvplFileOffset - LIST_HEADER_SIZE;
1448 schoenebeck 800 (*iter)->ulWavePoolOffset = _64BitOffset;
1449     pWavePoolTable[i] = (uint32_t) _64BitOffset;
1450     }
1451     }
1452     }
1453    
1454    
1455    
1456 schoenebeck 2 // *************** Exception ***************
1457     // *
1458    
1459     Exception::Exception(String Message) : RIFF::Exception(Message) {
1460     }
1461    
1462     void Exception::PrintMessage() {
1463     std::cout << "DLS::Exception: " << Message << std::endl;
1464     }
1465    
1466 schoenebeck 518
1467     // *************** functions ***************
1468     // *
1469    
1470     /**
1471     * Returns the name of this C++ library. This is usually "libgig" of
1472     * course. This call is equivalent to RIFF::libraryName() and
1473     * gig::libraryName().
1474     */
1475     String libraryName() {
1476     return PACKAGE;
1477     }
1478    
1479     /**
1480     * Returns version of this C++ library. This call is equivalent to
1481     * RIFF::libraryVersion() and gig::libraryVersion().
1482     */
1483     String libraryVersion() {
1484     return VERSION;
1485     }
1486    
1487 schoenebeck 2 } // namespace DLS

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