• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * bebob_focusrite.c - a part of driver for BeBoB based devices
3  *
4  * Copyright (c) 2013-2014 Takashi Sakamoto
5  *
6  * Licensed under the terms of the GNU General Public License, version 2.
7  */
8 
9 #include "./bebob.h"
10 
11 #define ANA_IN	"Analog In"
12 #define DIG_IN	"Digital In"
13 #define ANA_OUT	"Analog Out"
14 #define DIG_OUT	"Digital Out"
15 #define STM_IN	"Stream In"
16 
17 #define SAFFIRE_ADDRESS_BASE			0x000100000000ULL
18 
19 #define SAFFIRE_OFFSET_CLOCK_SOURCE		0x00f8
20 #define SAFFIREPRO_OFFSET_CLOCK_SOURCE		0x0174
21 
22 /* whether sync to external device or not */
23 #define SAFFIRE_OFFSET_CLOCK_SYNC_EXT		0x013c
24 #define SAFFIRE_LE_OFFSET_CLOCK_SYNC_EXT	0x0432
25 #define SAFFIREPRO_OFFSET_CLOCK_SYNC_EXT	0x0164
26 
27 #define SAFFIRE_CLOCK_SOURCE_INTERNAL		0
28 #define SAFFIRE_CLOCK_SOURCE_SPDIF		1
29 
30 /* clock sources as returned from register of Saffire Pro 10 and 26 */
31 #define SAFFIREPRO_CLOCK_SOURCE_SELECT_MASK	0x000000ff
32 #define SAFFIREPRO_CLOCK_SOURCE_DETECT_MASK	0x0000ff00
33 #define SAFFIREPRO_CLOCK_SOURCE_INTERNAL	0
34 #define SAFFIREPRO_CLOCK_SOURCE_SKIP		1 /* never used on hardware */
35 #define SAFFIREPRO_CLOCK_SOURCE_SPDIF		2
36 #define SAFFIREPRO_CLOCK_SOURCE_ADAT1		3 /* not used on s.pro. 10 */
37 #define SAFFIREPRO_CLOCK_SOURCE_ADAT2		4 /* not used on s.pro. 10 */
38 #define SAFFIREPRO_CLOCK_SOURCE_WORDCLOCK	5
39 #define SAFFIREPRO_CLOCK_SOURCE_COUNT		6
40 
41 /* S/PDIF, ADAT1, ADAT2 is enabled or not. three quadlets */
42 #define SAFFIREPRO_ENABLE_DIG_IFACES		0x01a4
43 
44 /* saffirepro has its own parameter for sampling frequency */
45 #define SAFFIREPRO_RATE_NOREBOOT		0x01cc
46 /* index is the value for this register */
47 static const unsigned int rates[] = {
48 	[0] = 0,
49 	[1] = 44100,
50 	[2] = 48000,
51 	[3] = 88200,
52 	[4] = 96000,
53 	[5] = 176400,
54 	[6] = 192000
55 };
56 
57 /* saffire(no label)/saffire LE has metering */
58 #define SAFFIRE_OFFSET_METER			0x0100
59 #define SAFFIRE_LE_OFFSET_METER			0x0168
60 
61 static inline int
saffire_read_block(struct snd_bebob * bebob,u64 offset,u32 * buf,unsigned int size)62 saffire_read_block(struct snd_bebob *bebob, u64 offset,
63 		   u32 *buf, unsigned int size)
64 {
65 	unsigned int i;
66 	int err;
67 	__be32 *tmp = (__be32 *)buf;
68 
69 	err =  snd_fw_transaction(bebob->unit, TCODE_READ_BLOCK_REQUEST,
70 				  SAFFIRE_ADDRESS_BASE + offset,
71 				  tmp, size, 0);
72 	if (err < 0)
73 		goto end;
74 
75 	for (i = 0; i < size / sizeof(u32); i++)
76 		buf[i] = be32_to_cpu(tmp[i]);
77 end:
78 	return err;
79 }
80 
81 static inline int
saffire_read_quad(struct snd_bebob * bebob,u64 offset,u32 * value)82 saffire_read_quad(struct snd_bebob *bebob, u64 offset, u32 *value)
83 {
84 	int err;
85 	__be32 tmp;
86 
87 	err = snd_fw_transaction(bebob->unit, TCODE_READ_QUADLET_REQUEST,
88 				 SAFFIRE_ADDRESS_BASE + offset,
89 				 &tmp, sizeof(__be32), 0);
90 	if (err < 0)
91 		goto end;
92 
93 	*value = be32_to_cpu(tmp);
94 end:
95 	return err;
96 }
97 
98 static inline int
saffire_write_quad(struct snd_bebob * bebob,u64 offset,u32 value)99 saffire_write_quad(struct snd_bebob *bebob, u64 offset, u32 value)
100 {
101 	__be32 data = cpu_to_be32(value);
102 
103 	return snd_fw_transaction(bebob->unit, TCODE_WRITE_QUADLET_REQUEST,
104 				  SAFFIRE_ADDRESS_BASE + offset,
105 				  &data, sizeof(__be32), 0);
106 }
107 
108 static enum snd_bebob_clock_type saffirepro_10_clk_src_types[] = {
109 	SND_BEBOB_CLOCK_TYPE_INTERNAL,
110 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,	/* S/PDIF */
111 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,	/* Word Clock */
112 };
113 static enum snd_bebob_clock_type saffirepro_26_clk_src_types[] = {
114 	SND_BEBOB_CLOCK_TYPE_INTERNAL,
115 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,	/* S/PDIF */
116 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,	/* ADAT1 */
117 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,	/* ADAT2 */
118 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,	/* Word Clock */
119 };
120 /* Value maps between registers and labels for SaffirePro 10/26. */
121 static const signed char saffirepro_clk_maps[][SAFFIREPRO_CLOCK_SOURCE_COUNT] = {
122 	/* SaffirePro 10 */
123 	[0] = {
124 		[SAFFIREPRO_CLOCK_SOURCE_INTERNAL]  =  0,
125 		[SAFFIREPRO_CLOCK_SOURCE_SKIP]      = -1, /* not supported */
126 		[SAFFIREPRO_CLOCK_SOURCE_SPDIF]     =  1,
127 		[SAFFIREPRO_CLOCK_SOURCE_ADAT1]     = -1, /* not supported */
128 		[SAFFIREPRO_CLOCK_SOURCE_ADAT2]     = -1, /* not supported */
129 		[SAFFIREPRO_CLOCK_SOURCE_WORDCLOCK] =  2,
130 	},
131 	/* SaffirePro 26 */
132 	[1] = {
133 		[SAFFIREPRO_CLOCK_SOURCE_INTERNAL]  =  0,
134 		[SAFFIREPRO_CLOCK_SOURCE_SKIP]      = -1, /* not supported */
135 		[SAFFIREPRO_CLOCK_SOURCE_SPDIF]     =  1,
136 		[SAFFIREPRO_CLOCK_SOURCE_ADAT1]     =  2,
137 		[SAFFIREPRO_CLOCK_SOURCE_ADAT2]     =  3,
138 		[SAFFIREPRO_CLOCK_SOURCE_WORDCLOCK] =  4,
139 	}
140 };
141 
142 static int
saffirepro_both_clk_freq_get(struct snd_bebob * bebob,unsigned int * rate)143 saffirepro_both_clk_freq_get(struct snd_bebob *bebob, unsigned int *rate)
144 {
145 	u32 id;
146 	int err;
147 
148 	err = saffire_read_quad(bebob, SAFFIREPRO_RATE_NOREBOOT, &id);
149 	if (err < 0)
150 		goto end;
151 	if (id >= ARRAY_SIZE(rates))
152 		err = -EIO;
153 	else
154 		*rate = rates[id];
155 end:
156 	return err;
157 }
158 static int
saffirepro_both_clk_freq_set(struct snd_bebob * bebob,unsigned int rate)159 saffirepro_both_clk_freq_set(struct snd_bebob *bebob, unsigned int rate)
160 {
161 	u32 id;
162 
163 	for (id = 0; id < ARRAY_SIZE(rates); id++) {
164 		if (rates[id] == rate)
165 			break;
166 	}
167 	if (id == ARRAY_SIZE(rates))
168 		return -EINVAL;
169 
170 	return saffire_write_quad(bebob, SAFFIREPRO_RATE_NOREBOOT, id);
171 }
172 
173 /*
174  * query hardware for current clock source, return our internally
175  * used clock index in *id, depending on hardware.
176  */
177 static int
saffirepro_both_clk_src_get(struct snd_bebob * bebob,unsigned int * id)178 saffirepro_both_clk_src_get(struct snd_bebob *bebob, unsigned int *id)
179 {
180 	int err;
181 	u32 value;       /* clock source read from hw register */
182 	const signed char *map;
183 
184 	err = saffire_read_quad(bebob, SAFFIREPRO_OFFSET_CLOCK_SOURCE, &value);
185 	if (err < 0)
186 		goto end;
187 
188 	/* depending on hardware, use a different mapping */
189 	if (bebob->spec->clock->types == saffirepro_10_clk_src_types)
190 		map = saffirepro_clk_maps[0];
191 	else
192 		map = saffirepro_clk_maps[1];
193 
194 	/* In a case that this driver cannot handle the value of register. */
195 	value &= SAFFIREPRO_CLOCK_SOURCE_SELECT_MASK;
196 	if (value >= SAFFIREPRO_CLOCK_SOURCE_COUNT || map[value] < 0) {
197 		err = -EIO;
198 		goto end;
199 	}
200 
201 	*id = (unsigned int)map[value];
202 end:
203 	return err;
204 }
205 
206 const struct snd_bebob_spec saffire_le_spec;
207 static enum snd_bebob_clock_type saffire_both_clk_src_types[] = {
208 	SND_BEBOB_CLOCK_TYPE_INTERNAL,
209 	SND_BEBOB_CLOCK_TYPE_EXTERNAL,
210 };
211 static int
saffire_both_clk_src_get(struct snd_bebob * bebob,unsigned int * id)212 saffire_both_clk_src_get(struct snd_bebob *bebob, unsigned int *id)
213 {
214 	int err;
215 	u32 value;
216 
217 	err = saffire_read_quad(bebob, SAFFIRE_OFFSET_CLOCK_SOURCE, &value);
218 	if (err >= 0)
219 		*id = 0xff & value;
220 
221 	return err;
222 };
223 static const char *const saffire_le_meter_labels[] = {
224 	ANA_IN, ANA_IN, DIG_IN,
225 	ANA_OUT, ANA_OUT, ANA_OUT, ANA_OUT,
226 	STM_IN, STM_IN
227 };
228 static const char *const saffire_meter_labels[] = {
229 	ANA_IN, ANA_IN,
230 	STM_IN, STM_IN, STM_IN, STM_IN, STM_IN,
231 };
232 static int
saffire_meter_get(struct snd_bebob * bebob,u32 * buf,unsigned int size)233 saffire_meter_get(struct snd_bebob *bebob, u32 *buf, unsigned int size)
234 {
235 	const struct snd_bebob_meter_spec *spec = bebob->spec->meter;
236 	unsigned int channels;
237 	u64 offset;
238 	int err;
239 
240 	if (spec->labels == saffire_le_meter_labels)
241 		offset = SAFFIRE_LE_OFFSET_METER;
242 	else
243 		offset = SAFFIRE_OFFSET_METER;
244 
245 	channels = spec->num * 2;
246 	if (size < channels * sizeof(u32))
247 		return -EIO;
248 
249 	err = saffire_read_block(bebob, offset, buf, size);
250 	if (err >= 0 && spec->labels == saffire_le_meter_labels) {
251 		swap(buf[1], buf[3]);
252 		swap(buf[2], buf[3]);
253 		swap(buf[3], buf[4]);
254 
255 		swap(buf[7], buf[10]);
256 		swap(buf[8], buf[10]);
257 		swap(buf[9], buf[11]);
258 		swap(buf[11], buf[12]);
259 
260 		swap(buf[15], buf[16]);
261 	}
262 
263 	return err;
264 }
265 
266 static const struct snd_bebob_rate_spec saffirepro_both_rate_spec = {
267 	.get	= &saffirepro_both_clk_freq_get,
268 	.set	= &saffirepro_both_clk_freq_set,
269 };
270 /* Saffire Pro 26 I/O  */
271 static const struct snd_bebob_clock_spec saffirepro_26_clk_spec = {
272 	.num	= ARRAY_SIZE(saffirepro_26_clk_src_types),
273 	.types	= saffirepro_26_clk_src_types,
274 	.get	= &saffirepro_both_clk_src_get,
275 };
276 const struct snd_bebob_spec saffirepro_26_spec = {
277 	.clock	= &saffirepro_26_clk_spec,
278 	.rate	= &saffirepro_both_rate_spec,
279 	.meter	= NULL
280 };
281 /* Saffire Pro 10 I/O */
282 static const struct snd_bebob_clock_spec saffirepro_10_clk_spec = {
283 	.num	= ARRAY_SIZE(saffirepro_10_clk_src_types),
284 	.types	= saffirepro_10_clk_src_types,
285 	.get	= &saffirepro_both_clk_src_get,
286 };
287 const struct snd_bebob_spec saffirepro_10_spec = {
288 	.clock	= &saffirepro_10_clk_spec,
289 	.rate	= &saffirepro_both_rate_spec,
290 	.meter	= NULL
291 };
292 
293 static const struct snd_bebob_rate_spec saffire_both_rate_spec = {
294 	.get	= &snd_bebob_stream_get_rate,
295 	.set	= &snd_bebob_stream_set_rate,
296 };
297 static const struct snd_bebob_clock_spec saffire_both_clk_spec = {
298 	.num	= ARRAY_SIZE(saffire_both_clk_src_types),
299 	.types	= saffire_both_clk_src_types,
300 	.get	= &saffire_both_clk_src_get,
301 };
302 /* Saffire LE */
303 static const struct snd_bebob_meter_spec saffire_le_meter_spec = {
304 	.num	= ARRAY_SIZE(saffire_le_meter_labels),
305 	.labels	= saffire_le_meter_labels,
306 	.get	= &saffire_meter_get,
307 };
308 const struct snd_bebob_spec saffire_le_spec = {
309 	.clock	= &saffire_both_clk_spec,
310 	.rate	= &saffire_both_rate_spec,
311 	.meter	= &saffire_le_meter_spec
312 };
313 /* Saffire */
314 static const struct snd_bebob_meter_spec saffire_meter_spec = {
315 	.num	= ARRAY_SIZE(saffire_meter_labels),
316 	.labels	= saffire_meter_labels,
317 	.get	= &saffire_meter_get,
318 };
319 const struct snd_bebob_spec saffire_spec = {
320 	.clock	= &saffire_both_clk_spec,
321 	.rate	= &saffire_both_rate_spec,
322 	.meter	= &saffire_meter_spec
323 };
324