vserver 1.9.5.x5
[linux-2.6.git] / sound / core / seq / instr / ainstr_gf1.c
1 /*
2  *   GF1 (GUS) Patch - Instrument routines
3  *   Copyright (c) 1999 by Jaroslav Kysela <perex@suse.cz>
4  *
5  *   This program is free software; you can redistribute it and/or modify
6  *   it under the terms of the GNU General Public License as published by
7  *   the Free Software Foundation; either version 2 of the License, or
8  *   (at your option) any later version.
9  *
10  *   This program is distributed in the hope that it will be useful,
11  *   but WITHOUT ANY WARRANTY; without even the implied warranty of
12  *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  *   GNU General Public License for more details.
14  *
15  *   You should have received a copy of the GNU General Public License
16  *   along with this program; if not, write to the Free Software
17  *   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
18  *
19  */
20  
21 #include <sound/driver.h>
22 #include <linux/init.h>
23 #include <linux/sched.h>
24 #include <linux/slab.h>
25 #include <sound/core.h>
26 #include <sound/ainstr_gf1.h>
27 #include <sound/initval.h>
28 #include <asm/uaccess.h>
29
30 MODULE_AUTHOR("Jaroslav Kysela <perex@suse.cz>");
31 MODULE_DESCRIPTION("Advanced Linux Sound Architecture GF1 (GUS) Patch support.");
32 MODULE_LICENSE("GPL");
33
34 static unsigned int snd_seq_gf1_size(unsigned int size, unsigned int format)
35 {
36         unsigned int result = size;
37         
38         if (format & GF1_WAVE_16BIT)
39                 result <<= 1;
40         if (format & GF1_WAVE_STEREO)
41                 result <<= 1;
42         return format;
43 }
44
45 static int snd_seq_gf1_copy_wave_from_stream(snd_gf1_ops_t *ops,
46                                              gf1_instrument_t *ip,
47                                              char __user **data,
48                                              long *len,
49                                              int atomic)
50 {
51         gf1_wave_t *wp, *prev;
52         gf1_xwave_t xp;
53         int err, gfp_mask;
54         unsigned int real_size;
55         
56         gfp_mask = atomic ? GFP_ATOMIC : GFP_KERNEL;
57         if (*len < (long)sizeof(xp))
58                 return -EINVAL;
59         if (copy_from_user(&xp, *data, sizeof(xp)))
60                 return -EFAULT;
61         *data += sizeof(xp);
62         *len -= sizeof(xp);
63         wp = kcalloc(1, sizeof(*wp), gfp_mask);
64         if (wp == NULL)
65                 return -ENOMEM;
66         wp->share_id[0] = le32_to_cpu(xp.share_id[0]);
67         wp->share_id[1] = le32_to_cpu(xp.share_id[1]);
68         wp->share_id[2] = le32_to_cpu(xp.share_id[2]);
69         wp->share_id[3] = le32_to_cpu(xp.share_id[3]);
70         wp->format = le32_to_cpu(xp.format);
71         wp->size = le32_to_cpu(xp.size);
72         wp->start = le32_to_cpu(xp.start);
73         wp->loop_start = le32_to_cpu(xp.loop_start);
74         wp->loop_end = le32_to_cpu(xp.loop_end);
75         wp->loop_repeat = le16_to_cpu(xp.loop_repeat);
76         wp->flags = xp.flags;
77         wp->sample_rate = le32_to_cpu(xp.sample_rate);
78         wp->low_frequency = le32_to_cpu(xp.low_frequency);
79         wp->high_frequency = le32_to_cpu(xp.high_frequency);
80         wp->root_frequency = le32_to_cpu(xp.root_frequency);
81         wp->tune = le16_to_cpu(xp.tune);
82         wp->balance = xp.balance;
83         memcpy(wp->envelope_rate, xp.envelope_rate, 6);
84         memcpy(wp->envelope_offset, xp.envelope_offset, 6);
85         wp->tremolo_sweep = xp.tremolo_sweep;
86         wp->tremolo_rate = xp.tremolo_rate;
87         wp->tremolo_depth = xp.tremolo_depth;
88         wp->vibrato_sweep = xp.vibrato_sweep;
89         wp->vibrato_rate = xp.vibrato_rate;
90         wp->vibrato_depth = xp.vibrato_depth;
91         wp->scale_frequency = le16_to_cpu(xp.scale_frequency);
92         wp->scale_factor = le16_to_cpu(xp.scale_factor);
93         real_size = snd_seq_gf1_size(wp->size, wp->format);
94         if ((long)real_size > *len) {
95                 kfree(wp);
96                 return -ENOMEM;
97         }
98         if (ops->put_sample) {
99                 err = ops->put_sample(ops->private_data, wp,
100                                       *data, real_size, atomic);
101                 if (err < 0) {
102                         kfree(wp);
103                         return err;
104                 }
105         }
106         *data += real_size;
107         *len -= real_size;
108         prev = ip->wave;
109         if (prev) {
110                 while (prev->next) prev = prev->next;
111                 prev->next = wp;
112         } else {
113                 ip->wave = wp;
114         }
115         return 0;
116 }
117
118 static void snd_seq_gf1_wave_free(snd_gf1_ops_t *ops,
119                                   gf1_wave_t *wave,
120                                   int atomic)
121 {
122         if (ops->remove_sample)
123                 ops->remove_sample(ops->private_data, wave, atomic);
124         kfree(wave);
125 }
126
127 static void snd_seq_gf1_instr_free(snd_gf1_ops_t *ops,
128                                    gf1_instrument_t *ip,
129                                    int atomic)
130 {
131         gf1_wave_t *wave;
132         
133         while ((wave = ip->wave) != NULL) {
134                 ip->wave = wave->next;
135                 snd_seq_gf1_wave_free(ops, wave, atomic);
136         }
137 }
138
139 static int snd_seq_gf1_put(void *private_data, snd_seq_kinstr_t *instr,
140                            char __user *instr_data, long len, int atomic,
141                            int cmd)
142 {
143         snd_gf1_ops_t *ops = (snd_gf1_ops_t *)private_data;
144         gf1_instrument_t *ip;
145         gf1_xinstrument_t ix;
146         int err, gfp_mask;
147
148         if (cmd != SNDRV_SEQ_INSTR_PUT_CMD_CREATE)
149                 return -EINVAL;
150         gfp_mask = atomic ? GFP_ATOMIC : GFP_KERNEL;
151         /* copy instrument data */
152         if (len < (long)sizeof(ix))
153                 return -EINVAL;
154         if (copy_from_user(&ix, instr_data, sizeof(ix)))
155                 return -EFAULT;
156         if (ix.stype != GF1_STRU_INSTR)
157                 return -EINVAL;
158         instr_data += sizeof(ix);
159         len -= sizeof(ix);
160         ip = (gf1_instrument_t *)KINSTR_DATA(instr);
161         ip->exclusion = le16_to_cpu(ix.exclusion);
162         ip->exclusion_group = le16_to_cpu(ix.exclusion_group);
163         ip->effect1 = ix.effect1;
164         ip->effect1_depth = ix.effect1_depth;
165         ip->effect2 = ix.effect2;
166         ip->effect2_depth = ix.effect2_depth;
167         /* copy layers */
168         while (len > (long)sizeof(__u32)) {
169                 __u32 stype;
170
171                 if (copy_from_user(&stype, instr_data, sizeof(stype)))
172                         return -EFAULT;
173                 if (stype != GF1_STRU_WAVE) {
174                         snd_seq_gf1_instr_free(ops, ip, atomic);
175                         return -EINVAL;
176                 }
177                 err = snd_seq_gf1_copy_wave_from_stream(ops,
178                                                         ip,
179                                                         &instr_data,
180                                                         &len,
181                                                         atomic);
182                 if (err < 0) {
183                         snd_seq_gf1_instr_free(ops, ip, atomic);
184                         return err;
185                 }
186         }
187         return 0;
188 }
189
190 static int snd_seq_gf1_copy_wave_to_stream(snd_gf1_ops_t *ops,
191                                            gf1_instrument_t *ip,
192                                            char __user **data,
193                                            long *len,
194                                            int atomic)
195 {
196         gf1_wave_t *wp;
197         gf1_xwave_t xp;
198         int err;
199         unsigned int real_size;
200         
201         for (wp = ip->wave; wp; wp = wp->next) {
202                 if (*len < (long)sizeof(xp))
203                         return -ENOMEM;
204                 memset(&xp, 0, sizeof(xp));
205                 xp.stype = GF1_STRU_WAVE;
206                 xp.share_id[0] = cpu_to_le32(wp->share_id[0]);
207                 xp.share_id[1] = cpu_to_le32(wp->share_id[1]);
208                 xp.share_id[2] = cpu_to_le32(wp->share_id[2]);
209                 xp.share_id[3] = cpu_to_le32(wp->share_id[3]);
210                 xp.format = cpu_to_le32(wp->format);
211                 xp.size = cpu_to_le32(wp->size);
212                 xp.start = cpu_to_le32(wp->start);
213                 xp.loop_start = cpu_to_le32(wp->loop_start);
214                 xp.loop_end = cpu_to_le32(wp->loop_end);
215                 xp.loop_repeat = cpu_to_le32(wp->loop_repeat);
216                 xp.flags = wp->flags;
217                 xp.sample_rate = cpu_to_le32(wp->sample_rate);
218                 xp.low_frequency = cpu_to_le32(wp->low_frequency);
219                 xp.high_frequency = cpu_to_le32(wp->high_frequency);
220                 xp.root_frequency = cpu_to_le32(wp->root_frequency);
221                 xp.tune = cpu_to_le16(wp->tune);
222                 xp.balance = wp->balance;
223                 memcpy(xp.envelope_rate, wp->envelope_rate, 6);
224                 memcpy(xp.envelope_offset, wp->envelope_offset, 6);
225                 xp.tremolo_sweep = wp->tremolo_sweep;
226                 xp.tremolo_rate = wp->tremolo_rate;
227                 xp.tremolo_depth = wp->tremolo_depth;
228                 xp.vibrato_sweep = wp->vibrato_sweep;
229                 xp.vibrato_rate = wp->vibrato_rate;
230                 xp.vibrato_depth = wp->vibrato_depth;
231                 xp.scale_frequency = cpu_to_le16(wp->scale_frequency);
232                 xp.scale_factor = cpu_to_le16(wp->scale_factor);
233                 if (copy_to_user(*data, &xp, sizeof(xp)))
234                         return -EFAULT;
235                 *data += sizeof(xp);
236                 *len -= sizeof(xp);
237                 real_size = snd_seq_gf1_size(wp->size, wp->format);
238                 if (*len < (long)real_size)
239                         return -ENOMEM;
240                 if (ops->get_sample) {
241                         err = ops->get_sample(ops->private_data, wp,
242                                               *data, real_size, atomic);
243                         if (err < 0)
244                                 return err;
245                 }
246                 *data += wp->size;
247                 *len -= wp->size;
248         }
249         return 0;
250 }
251
252 static int snd_seq_gf1_get(void *private_data, snd_seq_kinstr_t *instr,
253                            char __user *instr_data, long len, int atomic,
254                            int cmd)
255 {
256         snd_gf1_ops_t *ops = (snd_gf1_ops_t *)private_data;
257         gf1_instrument_t *ip;
258         gf1_xinstrument_t ix;
259         
260         if (cmd != SNDRV_SEQ_INSTR_GET_CMD_FULL)
261                 return -EINVAL;
262         if (len < (long)sizeof(ix))
263                 return -ENOMEM;
264         memset(&ix, 0, sizeof(ix));
265         ip = (gf1_instrument_t *)KINSTR_DATA(instr);
266         ix.stype = GF1_STRU_INSTR;
267         ix.exclusion = cpu_to_le16(ip->exclusion);
268         ix.exclusion_group = cpu_to_le16(ip->exclusion_group);
269         ix.effect1 = cpu_to_le16(ip->effect1);
270         ix.effect1_depth = cpu_to_le16(ip->effect1_depth);
271         ix.effect2 = ip->effect2;
272         ix.effect2_depth = ip->effect2_depth;
273         if (copy_to_user(instr_data, &ix, sizeof(ix)))
274                 return -EFAULT;
275         instr_data += sizeof(ix);
276         len -= sizeof(ix);
277         return snd_seq_gf1_copy_wave_to_stream(ops,
278                                                ip,
279                                                &instr_data,
280                                                &len,
281                                                atomic);
282 }
283
284 static int snd_seq_gf1_get_size(void *private_data, snd_seq_kinstr_t *instr,
285                                 long *size)
286 {
287         long result;
288         gf1_instrument_t *ip;
289         gf1_wave_t *wp;
290
291         *size = 0;
292         ip = (gf1_instrument_t *)KINSTR_DATA(instr);
293         result = sizeof(gf1_xinstrument_t);
294         for (wp = ip->wave; wp; wp = wp->next) {
295                 result += sizeof(gf1_xwave_t);
296                 result += wp->size;
297         }
298         *size = result;
299         return 0;
300 }
301
302 static int snd_seq_gf1_remove(void *private_data,
303                               snd_seq_kinstr_t *instr,
304                               int atomic)
305 {
306         snd_gf1_ops_t *ops = (snd_gf1_ops_t *)private_data;
307         gf1_instrument_t *ip;
308
309         ip = (gf1_instrument_t *)KINSTR_DATA(instr);
310         snd_seq_gf1_instr_free(ops, ip, atomic);
311         return 0;
312 }
313
314 static void snd_seq_gf1_notify(void *private_data,
315                                snd_seq_kinstr_t *instr,
316                                int what)
317 {
318         snd_gf1_ops_t *ops = (snd_gf1_ops_t *)private_data;
319
320         if (ops->notify)
321                 ops->notify(ops->private_data, instr, what);
322 }
323
324 int snd_seq_gf1_init(snd_gf1_ops_t *ops,
325                      void *private_data,
326                      snd_seq_kinstr_ops_t *next)
327 {
328         memset(ops, 0, sizeof(*ops));
329         ops->private_data = private_data;
330         ops->kops.private_data = ops;
331         ops->kops.add_len = sizeof(gf1_instrument_t);
332         ops->kops.instr_type = SNDRV_SEQ_INSTR_ID_GUS_PATCH;
333         ops->kops.put = snd_seq_gf1_put;
334         ops->kops.get = snd_seq_gf1_get;
335         ops->kops.get_size = snd_seq_gf1_get_size;
336         ops->kops.remove = snd_seq_gf1_remove;
337         ops->kops.notify = snd_seq_gf1_notify;
338         ops->kops.next = next;
339         return 0;
340 }
341
342 /*
343  *  Init part
344  */
345
346 static int __init alsa_ainstr_gf1_init(void)
347 {
348         return 0;
349 }
350
351 static void __exit alsa_ainstr_gf1_exit(void)
352 {
353 }
354
355 module_init(alsa_ainstr_gf1_init)
356 module_exit(alsa_ainstr_gf1_exit)
357
358 EXPORT_SYMBOL(snd_seq_gf1_init);