blob: afdc2378ffa910a3cb7c9857ebb551b8825dd3f8 [file] [log] [blame]
Naresh Tanniru8b919ac2014-01-30 19:12:53 +05301/*
2 * Copyright (c) 2013-2014, The Linux Foundation. All rights reserved.
3 * Not a Contribution.
4 *
5 * Copyright (C) 2013 The Android Open Source Project
6 *
7 * Licensed under the Apache License, Version 2.0 (the "License");
8 * you may not use this file except in compliance with the License.
9 * You may obtain a copy of the License at
10 *
11 * http://www.apache.org/licenses/LICENSE-2.0
12 *
13 * Unless required by applicable law or agreed to in writing, software
14 * distributed under the License is distributed on an "AS IS" BASIS,
15 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
16 * See the License for the specific language governing permissions and
17 * limitations under the License.
18 */
19
20#define LOG_TAG "msm8916_platform"
21/*#define LOG_NDEBUG 0*/
22#define LOG_NDDEBUG 0
23
24#include <stdlib.h>
25#include <dlfcn.h>
26#include <cutils/log.h>
27#include <cutils/properties.h>
28#include <cutils/str_parms.h>
29#include <audio_hw.h>
30#include <platform_api.h>
31#include "platform.h"
32#include "audio_extn.h"
33#include "voice_extn.h"
34
35#define MIXER_XML_PATH "/system/etc/mixer_paths.xml"
36#define MIXER_XML_PATH_AUXPCM "/system/etc/mixer_paths_auxpcm.xml"
37#define LIB_ACDB_LOADER "libacdbloader.so"
38#define AUDIO_DATA_BLOCK_MIXER_CTL "HDMI EDID"
39
40/*
41 * This file will have a maximum of 38 bytes:
42 *
43 * 4 bytes: number of audio blocks
44 * 4 bytes: total length of Short Audio Descriptor (SAD) blocks
45 * Maximum 10 * 3 bytes: SAD blocks
46 */
47#define MAX_SAD_BLOCKS 10
48#define SAD_BLOCK_SIZE 3
49
50/* EDID format ID for LPCM audio */
51#define EDID_FORMAT_LPCM 1
52
53/* Retry for delay in FW loading*/
54#define RETRY_NUMBER 10
55#define RETRY_US 500000
56#define MAX_SND_CARD 8
57
58#define SAMPLE_RATE_8KHZ 8000
59#define SAMPLE_RATE_16KHZ 16000
60
61#define AUDIO_PARAMETER_KEY_FLUENCE_TYPE "fluence"
62#define AUDIO_PARAMETER_KEY_BTSCO "bt_samplerate"
63#define AUDIO_PARAMETER_KEY_SLOWTALK "st_enable"
64#define AUDIO_PARAMETER_KEY_VOLUME_BOOST "volume_boost"
65
66enum {
67 VOICE_FEATURE_SET_DEFAULT,
68 VOICE_FEATURE_SET_VOLUME_BOOST
69};
70
71struct audio_block_header
72{
73 int reserved;
74 int length;
75};
76
77/* Audio calibration related functions */
78typedef void (*acdb_deallocate_t)();
79typedef int (*acdb_init_t)();
80typedef void (*acdb_send_audio_cal_t)(int, int);
81typedef void (*acdb_send_voice_cal_t)(int, int);
82typedef int (*acdb_reload_vocvoltable_t)(int);
83
84struct platform_data {
85 struct audio_device *adev;
86 bool fluence_in_spkr_mode;
87 bool fluence_in_voice_call;
88 bool fluence_in_voice_rec;
89 bool fluence_in_audio_rec;
90 int fluence_type;
91 int btsco_sample_rate;
92 bool slowtalk;
93 /* Audio calibration related functions */
94 void *acdb_handle;
95 int voice_feature_set;
96 acdb_init_t acdb_init;
97 acdb_deallocate_t acdb_deallocate;
98 acdb_send_audio_cal_t acdb_send_audio_cal;
99 acdb_send_voice_cal_t acdb_send_voice_cal;
100 acdb_reload_vocvoltable_t acdb_reload_vocvoltable;
101
102 void *hw_info;
103 struct csd_data *csd;
104};
105
106static const int pcm_device_table[AUDIO_USECASE_MAX][2] = {
107 [USECASE_AUDIO_PLAYBACK_DEEP_BUFFER] = {DEEP_BUFFER_PCM_DEVICE,
108 DEEP_BUFFER_PCM_DEVICE},
109 [USECASE_AUDIO_PLAYBACK_LOW_LATENCY] = {LOWLATENCY_PCM_DEVICE,
110 LOWLATENCY_PCM_DEVICE},
111 [USECASE_AUDIO_PLAYBACK_MULTI_CH] = {MULTIMEDIA2_PCM_DEVICE,
112 MULTIMEDIA2_PCM_DEVICE},
113 [USECASE_AUDIO_PLAYBACK_OFFLOAD] =
114 {PLAYBACK_OFFLOAD_DEVICE, PLAYBACK_OFFLOAD_DEVICE},
115 [USECASE_AUDIO_RECORD] = {AUDIO_RECORD_PCM_DEVICE, AUDIO_RECORD_PCM_DEVICE},
116 [USECASE_AUDIO_RECORD_COMPRESS] = {COMPRESS_CAPTURE_DEVICE, COMPRESS_CAPTURE_DEVICE},
117 [USECASE_AUDIO_RECORD_LOW_LATENCY] = {LOWLATENCY_PCM_DEVICE,
118 LOWLATENCY_PCM_DEVICE},
119 [USECASE_AUDIO_RECORD_FM_VIRTUAL] = {MULTIMEDIA2_PCM_DEVICE,
120 MULTIMEDIA2_PCM_DEVICE},
121 [USECASE_AUDIO_PLAYBACK_FM] = {FM_PLAYBACK_PCM_DEVICE, FM_CAPTURE_PCM_DEVICE},
122 [USECASE_AUDIO_HFP_SCO] = {HFP_PCM_RX, HFP_SCO_RX},
123 [USECASE_AUDIO_HFP_SCO_WB] = {HFP_PCM_RX, HFP_SCO_RX},
124 [USECASE_VOICE_CALL] = {VOICE_CALL_PCM_DEVICE, VOICE_CALL_PCM_DEVICE},
125 [USECASE_VOICE2_CALL] = {VOICE2_CALL_PCM_DEVICE, VOICE2_CALL_PCM_DEVICE},
126 [USECASE_VOLTE_CALL] = {VOLTE_CALL_PCM_DEVICE, VOLTE_CALL_PCM_DEVICE},
127 [USECASE_QCHAT_CALL] = {QCHAT_CALL_PCM_DEVICE, QCHAT_CALL_PCM_DEVICE},
128 [USECASE_COMPRESS_VOIP_CALL] = {COMPRESS_VOIP_CALL_PCM_DEVICE, COMPRESS_VOIP_CALL_PCM_DEVICE},
129 [USECASE_INCALL_REC_UPLINK] = {AUDIO_RECORD_PCM_DEVICE,
130 AUDIO_RECORD_PCM_DEVICE},
131 [USECASE_INCALL_REC_DOWNLINK] = {AUDIO_RECORD_PCM_DEVICE,
132 AUDIO_RECORD_PCM_DEVICE},
133 [USECASE_INCALL_REC_UPLINK_AND_DOWNLINK] = {AUDIO_RECORD_PCM_DEVICE,
134 AUDIO_RECORD_PCM_DEVICE},
135 [USECASE_INCALL_REC_UPLINK_COMPRESS] = {COMPRESS_CAPTURE_DEVICE,
136 COMPRESS_CAPTURE_DEVICE},
137 [USECASE_INCALL_REC_DOWNLINK_COMPRESS] = {COMPRESS_CAPTURE_DEVICE,
138 COMPRESS_CAPTURE_DEVICE},
139 [USECASE_INCALL_REC_UPLINK_AND_DOWNLINK_COMPRESS] = {COMPRESS_CAPTURE_DEVICE,
140 COMPRESS_CAPTURE_DEVICE},
141 [USECASE_INCALL_MUSIC_UPLINK] = {INCALL_MUSIC_UPLINK_PCM_DEVICE,
142 INCALL_MUSIC_UPLINK_PCM_DEVICE},
143 [USECASE_INCALL_MUSIC_UPLINK2] = {INCALL_MUSIC_UPLINK2_PCM_DEVICE,
144 INCALL_MUSIC_UPLINK2_PCM_DEVICE},
145 [USECASE_AUDIO_SPKR_CALIB_RX] = {SPKR_PROT_CALIB_RX_PCM_DEVICE, -1},
146 [USECASE_AUDIO_SPKR_CALIB_TX] = {-1, SPKR_PROT_CALIB_TX_PCM_DEVICE},
147};
148
149/* Array to store sound devices */
150static const char * const device_table[SND_DEVICE_MAX] = {
151 [SND_DEVICE_NONE] = "none",
152 /* Playback sound devices */
153 [SND_DEVICE_OUT_HANDSET] = "handset",
154 [SND_DEVICE_OUT_SPEAKER] = "speaker",
155 [SND_DEVICE_OUT_SPEAKER_REVERSE] = "speaker-reverse",
156 [SND_DEVICE_OUT_HEADPHONES] = "headphones",
157 [SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES] = "speaker-and-headphones",
158 [SND_DEVICE_OUT_VOICE_HANDSET] = "voice-handset",
159 [SND_DEVICE_OUT_VOICE_SPEAKER] = "voice-speaker",
160 [SND_DEVICE_OUT_VOICE_HEADPHONES] = "voice-headphones",
161 [SND_DEVICE_OUT_HDMI] = "hdmi",
162 [SND_DEVICE_OUT_SPEAKER_AND_HDMI] = "speaker-and-hdmi",
163 [SND_DEVICE_OUT_BT_SCO] = "bt-sco-headset",
164 [SND_DEVICE_OUT_BT_SCO_WB] = "bt-sco-headset-wb",
165 [SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES] = "voice-tty-full-headphones",
166 [SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES] = "voice-tty-vco-headphones",
167 [SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET] = "voice-tty-hco-handset",
168 [SND_DEVICE_OUT_AFE_PROXY] = "afe-proxy",
169 [SND_DEVICE_OUT_USB_HEADSET] = "usb-headphones",
170 [SND_DEVICE_OUT_SPEAKER_AND_USB_HEADSET] = "speaker-and-usb-headphones",
171 [SND_DEVICE_OUT_TRANSMISSION_FM] = "transmission-fm",
172 [SND_DEVICE_OUT_ANC_HEADSET] = "anc-headphones",
173 [SND_DEVICE_OUT_ANC_FB_HEADSET] = "anc-fb-headphones",
174 [SND_DEVICE_OUT_VOICE_ANC_HEADSET] = "voice-anc-headphones",
175 [SND_DEVICE_OUT_VOICE_ANC_FB_HEADSET] = "voice-anc-fb-headphones",
176 [SND_DEVICE_OUT_SPEAKER_AND_ANC_HEADSET] = "speaker-and-anc-headphones",
177 [SND_DEVICE_OUT_ANC_HANDSET] = "anc-handset",
178 [SND_DEVICE_OUT_SPEAKER_PROTECTED] = "speaker-protected",
179
180 /* Capture sound devices */
181 [SND_DEVICE_IN_HANDSET_MIC] = "handset-mic",
182 [SND_DEVICE_IN_HANDSET_MIC_AEC] = "handset-mic",
183 [SND_DEVICE_IN_HANDSET_MIC_NS] = "handset-mic",
184 [SND_DEVICE_IN_HANDSET_MIC_AEC_NS] = "handset-mic",
185 [SND_DEVICE_IN_HANDSET_DMIC] = "dmic-endfire",
186 [SND_DEVICE_IN_HANDSET_DMIC_AEC] = "dmic-endfire",
187 [SND_DEVICE_IN_HANDSET_DMIC_NS] = "dmic-endfire",
188 [SND_DEVICE_IN_HANDSET_DMIC_AEC_NS] = "dmic-endfire",
189 [SND_DEVICE_IN_SPEAKER_MIC] = "speaker-mic",
190 [SND_DEVICE_IN_SPEAKER_MIC_AEC] = "speaker-mic",
191 [SND_DEVICE_IN_SPEAKER_MIC_NS] = "speaker-mic",
192 [SND_DEVICE_IN_SPEAKER_MIC_AEC_NS] = "speaker-mic",
193 [SND_DEVICE_IN_SPEAKER_DMIC] = "speaker-dmic-endfire",
194 [SND_DEVICE_IN_SPEAKER_DMIC_AEC] = "speaker-dmic-endfire",
195 [SND_DEVICE_IN_SPEAKER_DMIC_NS] = "speaker-dmic-endfire",
196 [SND_DEVICE_IN_SPEAKER_DMIC_AEC_NS] = "speaker-dmic-endfire",
197 [SND_DEVICE_IN_HEADSET_MIC] = "headset-mic",
198 [SND_DEVICE_IN_HEADSET_MIC_FLUENCE] = "headset-mic",
199 [SND_DEVICE_IN_VOICE_SPEAKER_MIC] = "voice-speaker-mic",
200 [SND_DEVICE_IN_VOICE_HEADSET_MIC] = "voice-headset-mic",
201 [SND_DEVICE_IN_HDMI_MIC] = "hdmi-mic",
202 [SND_DEVICE_IN_BT_SCO_MIC] = "bt-sco-mic",
203 [SND_DEVICE_IN_BT_SCO_MIC_WB] = "bt-sco-mic-wb",
204 [SND_DEVICE_IN_CAMCORDER_MIC] = "camcorder-mic",
205 [SND_DEVICE_IN_VOICE_DMIC] = "voice-dmic-ef",
206 [SND_DEVICE_IN_VOICE_SPEAKER_DMIC] = "voice-speaker-dmic-ef",
207 [SND_DEVICE_IN_VOICE_SPEAKER_QMIC] = "voice-speaker-qmic",
208 [SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC] = "voice-tty-full-headset-mic",
209 [SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC] = "voice-tty-vco-handset-mic",
210 [SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC] = "voice-tty-hco-headset-mic",
211 [SND_DEVICE_IN_VOICE_REC_MIC] = "voice-rec-mic",
212 [SND_DEVICE_IN_VOICE_REC_MIC_NS] = "voice-rec-mic",
213 [SND_DEVICE_IN_VOICE_REC_DMIC_STEREO] = "voice-rec-dmic-ef",
214 [SND_DEVICE_IN_VOICE_REC_DMIC_FLUENCE] = "voice-rec-dmic-ef-fluence",
215 [SND_DEVICE_IN_USB_HEADSET_MIC] = "usb-headset-mic",
216 [SND_DEVICE_IN_CAPTURE_FM] = "capture-fm",
217 [SND_DEVICE_IN_AANC_HANDSET_MIC] = "aanc-handset-mic",
218 [SND_DEVICE_IN_QUAD_MIC] = "quad-mic",
219 [SND_DEVICE_IN_HANDSET_STEREO_DMIC] = "handset-stereo-dmic-ef",
220 [SND_DEVICE_IN_SPEAKER_STEREO_DMIC] = "speaker-stereo-dmic-ef",
221 [SND_DEVICE_IN_CAPTURE_VI_FEEDBACK] = "vi-feedback",
222};
223
224/* ACDB IDs (audio DSP path configuration IDs) for each sound device */
225static int acdb_device_table[SND_DEVICE_MAX] = {
226 [SND_DEVICE_NONE] = -1,
227 [SND_DEVICE_OUT_HANDSET] = 7,
228 [SND_DEVICE_OUT_SPEAKER] = 14,
229 [SND_DEVICE_OUT_SPEAKER_REVERSE] = 14,
230 [SND_DEVICE_OUT_HEADPHONES] = 10,
231 [SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES] = 10,
232 [SND_DEVICE_OUT_VOICE_HANDSET] = 7,
233 [SND_DEVICE_OUT_VOICE_SPEAKER] = 14,
234 [SND_DEVICE_OUT_VOICE_HEADPHONES] = 10,
235 [SND_DEVICE_OUT_HDMI] = 18,
236 [SND_DEVICE_OUT_SPEAKER_AND_HDMI] = 14,
237 [SND_DEVICE_OUT_BT_SCO] = 22,
238 [SND_DEVICE_OUT_BT_SCO_WB] = 39,
239 [SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES] = 17,
240 [SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES] = 17,
241 [SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET] = 37,
242 [SND_DEVICE_OUT_AFE_PROXY] = 0,
243 [SND_DEVICE_OUT_USB_HEADSET] = 45,
244 [SND_DEVICE_OUT_SPEAKER_AND_USB_HEADSET] = 14,
245 [SND_DEVICE_OUT_TRANSMISSION_FM] = 0,
246 [SND_DEVICE_OUT_ANC_HEADSET] = 26,
247 [SND_DEVICE_OUT_ANC_FB_HEADSET] = 27,
248 [SND_DEVICE_OUT_VOICE_ANC_HEADSET] = 26,
249 [SND_DEVICE_OUT_VOICE_ANC_FB_HEADSET] = 27,
250 [SND_DEVICE_OUT_SPEAKER_AND_ANC_HEADSET] = 26,
251 [SND_DEVICE_OUT_ANC_HANDSET] = 103,
252 [SND_DEVICE_OUT_SPEAKER_PROTECTED] = 101,
253
254 [SND_DEVICE_IN_HANDSET_MIC] = 4,
255 [SND_DEVICE_IN_HANDSET_MIC_AEC] = 106,
256 [SND_DEVICE_IN_HANDSET_MIC_NS] = 107,
257 [SND_DEVICE_IN_HANDSET_MIC_AEC_NS] = 108,
258 [SND_DEVICE_IN_HANDSET_DMIC] = 41,
259 [SND_DEVICE_IN_HANDSET_DMIC_AEC] = 109,
260 [SND_DEVICE_IN_HANDSET_DMIC_NS] = 110,
261 [SND_DEVICE_IN_HANDSET_DMIC_AEC_NS] = 111,
262 [SND_DEVICE_IN_SPEAKER_MIC] = 11,
263 [SND_DEVICE_IN_SPEAKER_MIC_AEC] = 112,
264 [SND_DEVICE_IN_SPEAKER_MIC_NS] = 113,
265 [SND_DEVICE_IN_SPEAKER_MIC_AEC_NS] = 114,
266 [SND_DEVICE_IN_SPEAKER_DMIC] = 43,
267 [SND_DEVICE_IN_SPEAKER_DMIC_AEC] = 115,
268 [SND_DEVICE_IN_SPEAKER_DMIC_NS] = 116,
269 [SND_DEVICE_IN_SPEAKER_DMIC_AEC_NS] = 117,
270 [SND_DEVICE_IN_HEADSET_MIC] = 8,
271 [SND_DEVICE_IN_HEADSET_MIC_FLUENCE] = 47,
272 [SND_DEVICE_IN_VOICE_SPEAKER_MIC] = 11,
273 [SND_DEVICE_IN_VOICE_HEADSET_MIC] = 8,
274 [SND_DEVICE_IN_HDMI_MIC] = 4,
275 [SND_DEVICE_IN_BT_SCO_MIC] = 21,
276 [SND_DEVICE_IN_BT_SCO_MIC_WB] = 38,
277 [SND_DEVICE_IN_CAMCORDER_MIC] = 4,
278 [SND_DEVICE_IN_VOICE_DMIC] = 41,
279 [SND_DEVICE_IN_VOICE_SPEAKER_DMIC] = 43,
280 [SND_DEVICE_IN_VOICE_SPEAKER_QMIC] = 19,
281 [SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC] = 16,
282 [SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC] = 36,
283 [SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC] = 16,
284 [SND_DEVICE_IN_VOICE_REC_MIC] = 4,
285 [SND_DEVICE_IN_VOICE_REC_MIC_NS] = 107,
286 [SND_DEVICE_IN_VOICE_REC_DMIC_STEREO] = 34,
287 [SND_DEVICE_IN_VOICE_REC_DMIC_FLUENCE] = 41,
288 [SND_DEVICE_IN_USB_HEADSET_MIC] = 44,
289 [SND_DEVICE_IN_CAPTURE_FM] = 0,
290 [SND_DEVICE_IN_AANC_HANDSET_MIC] = 104,
291 [SND_DEVICE_IN_QUAD_MIC] = 46,
292 [SND_DEVICE_IN_HANDSET_STEREO_DMIC] = 34,
293 [SND_DEVICE_IN_SPEAKER_STEREO_DMIC] = 35,
294 [SND_DEVICE_IN_CAPTURE_VI_FEEDBACK] = 102,
295};
296
297struct snd_device_index {
298 char name[100];
299 unsigned int index;
300};
301
302#define TO_NAME_INDEX(X) #X, X
303
304/* Used to get index from parsed sting */
305struct snd_device_index snd_device_name_index[SND_DEVICE_MAX] = {
306 {TO_NAME_INDEX(SND_DEVICE_OUT_HANDSET)},
307 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER)},
308 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER_REVERSE)},
309 {TO_NAME_INDEX(SND_DEVICE_OUT_HEADPHONES)},
310 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES)},
311 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_HANDSET)},
312 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_SPEAKER)},
313 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_HEADPHONES)},
314 {TO_NAME_INDEX(SND_DEVICE_OUT_HDMI)},
315 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER_AND_HDMI)},
316 {TO_NAME_INDEX(SND_DEVICE_OUT_BT_SCO)},
317 {TO_NAME_INDEX(SND_DEVICE_OUT_BT_SCO_WB)},
318 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES)},
319 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES)},
320 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET)},
321 {TO_NAME_INDEX(SND_DEVICE_OUT_AFE_PROXY)},
322 {TO_NAME_INDEX(SND_DEVICE_OUT_USB_HEADSET)},
323 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER_AND_USB_HEADSET)},
324 {TO_NAME_INDEX(SND_DEVICE_OUT_TRANSMISSION_FM)},
325 {TO_NAME_INDEX(SND_DEVICE_OUT_ANC_HEADSET)},
326 {TO_NAME_INDEX(SND_DEVICE_OUT_ANC_FB_HEADSET)},
327 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_ANC_HEADSET)},
328 {TO_NAME_INDEX(SND_DEVICE_OUT_VOICE_ANC_FB_HEADSET)},
329 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER_AND_ANC_HEADSET)},
330 {TO_NAME_INDEX(SND_DEVICE_OUT_ANC_HANDSET)},
331 {TO_NAME_INDEX(SND_DEVICE_OUT_SPEAKER_PROTECTED)},
332 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_MIC)},
333 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_MIC_AEC)},
334 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_MIC_NS)},
335 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_MIC_AEC_NS)},
336 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_DMIC)},
337 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_DMIC_AEC)},
338 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_DMIC_NS)},
339 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_DMIC_AEC_NS)},
340 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_MIC)},
341 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_MIC_AEC)},
342 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_MIC_NS)},
343 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_MIC_AEC_NS)},
344 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_DMIC)},
345 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_DMIC_AEC)},
346 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_DMIC_NS)},
347 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_DMIC_AEC_NS)},
348 {TO_NAME_INDEX(SND_DEVICE_IN_HEADSET_MIC)},
349 {TO_NAME_INDEX(SND_DEVICE_IN_HEADSET_MIC_FLUENCE)},
350 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_SPEAKER_MIC)},
351 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_HEADSET_MIC)},
352 {TO_NAME_INDEX(SND_DEVICE_IN_HDMI_MIC)},
353 {TO_NAME_INDEX(SND_DEVICE_IN_BT_SCO_MIC)},
354 {TO_NAME_INDEX(SND_DEVICE_IN_BT_SCO_MIC_WB)},
355 {TO_NAME_INDEX(SND_DEVICE_IN_CAMCORDER_MIC)},
356 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_DMIC)},
357 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_SPEAKER_DMIC)},
358 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_SPEAKER_QMIC)},
359 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC)},
360 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC)},
361 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC)},
362 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_REC_MIC)},
363 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_REC_MIC_NS)},
364 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_REC_DMIC_STEREO)},
365 {TO_NAME_INDEX(SND_DEVICE_IN_VOICE_REC_DMIC_FLUENCE)},
366 {TO_NAME_INDEX(SND_DEVICE_IN_USB_HEADSET_MIC)},
367 {TO_NAME_INDEX(SND_DEVICE_IN_CAPTURE_FM)},
368 {TO_NAME_INDEX(SND_DEVICE_IN_AANC_HANDSET_MIC)},
369 {TO_NAME_INDEX(SND_DEVICE_IN_QUAD_MIC)},
370 {TO_NAME_INDEX(SND_DEVICE_IN_HANDSET_STEREO_DMIC)},
371 {TO_NAME_INDEX(SND_DEVICE_IN_SPEAKER_STEREO_DMIC)},
372 {TO_NAME_INDEX(SND_DEVICE_IN_CAPTURE_VI_FEEDBACK)},
373};
374
375#define DEEP_BUFFER_PLATFORM_DELAY (29*1000LL)
376#define LOW_LATENCY_PLATFORM_DELAY (13*1000LL)
377
378static int set_echo_reference(struct mixer *mixer, const char* ec_ref)
379{
380 struct mixer_ctl *ctl;
381 const char *mixer_ctl_name = "EC_REF_RX";
382
383 ctl = mixer_get_ctl_by_name(mixer, mixer_ctl_name);
384 if (!ctl) {
385 ALOGE("%s: Could not get ctl for mixer cmd - %s",
386 __func__, mixer_ctl_name);
387 return -EINVAL;
388 }
389 ALOGV("Setting EC Reference: %s", ec_ref);
390 mixer_ctl_set_enum_by_string(ctl, ec_ref);
391 return 0;
392}
393
394static struct csd_data *open_csd_client()
395{
396 struct csd_data *csd = calloc(1, sizeof(struct csd_data));
397
398 csd->csd_client = dlopen(LIB_CSD_CLIENT, RTLD_NOW);
399 if (csd->csd_client == NULL) {
400 ALOGE("%s: DLOPEN failed for %s", __func__, LIB_CSD_CLIENT);
401 goto error;
402 } else {
403 ALOGV("%s: DLOPEN successful for %s", __func__, LIB_CSD_CLIENT);
404
405 csd->deinit = (deinit_t)dlsym(csd->csd_client,
406 "csd_client_deinit");
407 if (csd->deinit == NULL) {
408 ALOGE("%s: dlsym error %s for csd_client_deinit", __func__,
409 dlerror());
410 goto error;
411 }
412 csd->disable_device = (disable_device_t)dlsym(csd->csd_client,
413 "csd_client_disable_device");
414 if (csd->disable_device == NULL) {
415 ALOGE("%s: dlsym error %s for csd_client_disable_device",
416 __func__, dlerror());
417 goto error;
418 }
419 csd->enable_device = (enable_device_t)dlsym(csd->csd_client,
420 "csd_client_enable_device");
421 if (csd->enable_device == NULL) {
422 ALOGE("%s: dlsym error %s for csd_client_enable_device",
423 __func__, dlerror());
424 goto error;
425 }
426 csd->start_voice = (start_voice_t)dlsym(csd->csd_client,
427 "csd_client_start_voice");
428 if (csd->start_voice == NULL) {
429 ALOGE("%s: dlsym error %s for csd_client_start_voice",
430 __func__, dlerror());
431 goto error;
432 }
433 csd->stop_voice = (stop_voice_t)dlsym(csd->csd_client,
434 "csd_client_stop_voice");
435 if (csd->stop_voice == NULL) {
436 ALOGE("%s: dlsym error %s for csd_client_stop_voice",
437 __func__, dlerror());
438 goto error;
439 }
440 csd->volume = (volume_t)dlsym(csd->csd_client,
441 "csd_client_volume");
442 if (csd->volume == NULL) {
443 ALOGE("%s: dlsym error %s for csd_client_volume",
444 __func__, dlerror());
445 goto error;
446 }
447 csd->mic_mute = (mic_mute_t)dlsym(csd->csd_client,
448 "csd_client_mic_mute");
449 if (csd->mic_mute == NULL) {
450 ALOGE("%s: dlsym error %s for csd_client_mic_mute",
451 __func__, dlerror());
452 goto error;
453 }
454 csd->slow_talk = (slow_talk_t)dlsym(csd->csd_client,
455 "csd_client_slow_talk");
456 if (csd->slow_talk == NULL) {
457 ALOGE("%s: dlsym error %s for csd_client_slow_talk",
458 __func__, dlerror());
459 goto error;
460 }
461 csd->start_playback = (start_playback_t)dlsym(csd->csd_client,
462 "csd_client_start_playback");
463 if (csd->start_playback == NULL) {
464 ALOGE("%s: dlsym error %s for csd_client_start_playback",
465 __func__, dlerror());
466 goto error;
467 }
468 csd->stop_playback = (stop_playback_t)dlsym(csd->csd_client,
469 "csd_client_stop_playback");
470 if (csd->stop_playback == NULL) {
471 ALOGE("%s: dlsym error %s for csd_client_stop_playback",
472 __func__, dlerror());
473 goto error;
474 }
475 csd->start_record = (start_record_t)dlsym(csd->csd_client,
476 "csd_client_start_record");
477 if (csd->start_record == NULL) {
478 ALOGE("%s: dlsym error %s for csd_client_start_record",
479 __func__, dlerror());
480 goto error;
481 }
482 csd->stop_record = (stop_record_t)dlsym(csd->csd_client,
483 "csd_client_stop_record");
484 if (csd->stop_record == NULL) {
485 ALOGE("%s: dlsym error %s for csd_client_stop_record",
486 __func__, dlerror());
487 goto error;
488 }
489 csd->init = (init_t)dlsym(csd->csd_client, "csd_client_init");
490
491 if (csd->init == NULL) {
492 ALOGE("%s: dlsym error %s for csd_client_init",
493 __func__, dlerror());
494 goto error;
495 } else {
496 csd->init();
497 }
498 }
499 return csd;
500
501error:
502 free(csd);
503 csd = NULL;
504 return csd;
505}
506
507void close_csd_client(struct csd_data *csd)
508{
509 if (csd != NULL) {
510 csd->deinit();
511 dlclose(csd->csd_client);
512 free(csd);
513 csd = NULL;
514 }
515}
516
517void *platform_init(struct audio_device *adev)
518{
519 char platform[PROPERTY_VALUE_MAX];
520 char baseband[PROPERTY_VALUE_MAX];
521 char value[PROPERTY_VALUE_MAX];
522 struct platform_data *my_data = NULL;
523 int retry_num = 0, snd_card_num = 0;
524 const char *snd_card_name;
525
526 my_data = calloc(1, sizeof(struct platform_data));
527
528 while (snd_card_num < MAX_SND_CARD) {
529 adev->mixer = mixer_open(snd_card_num);
530
531 while (!adev->mixer && retry_num < RETRY_NUMBER) {
532 usleep(RETRY_US);
533 adev->mixer = mixer_open(snd_card_num);
534 retry_num++;
535 }
536
537 if (!adev->mixer) {
538 ALOGE("%s: Unable to open the mixer card: %d", __func__,
539 snd_card_num);
540 retry_num = 0;
541 snd_card_num++;
542 continue;
543 }
544
545 snd_card_name = mixer_get_name(adev->mixer);
546 ALOGV("%s: snd_card_name: %s", __func__, snd_card_name);
547
548 my_data->hw_info = hw_info_init(snd_card_name);
549 if (!my_data->hw_info) {
550 ALOGE("%s: Failed to init hardware info", __func__);
551 } else {
552 if (audio_extn_read_xml(adev, snd_card_num, MIXER_XML_PATH,
553 MIXER_XML_PATH_AUXPCM) == -ENOSYS)
554 adev->audio_route = audio_route_init(snd_card_num,
555 MIXER_XML_PATH);
556 if (!adev->audio_route) {
557 ALOGE("%s: Failed to init audio route controls, aborting.",
558 __func__);
559 free(my_data);
560 return NULL;
561 }
562 adev->snd_card = snd_card_num;
563 ALOGD("%s: Opened sound card:%d", __func__, snd_card_num);
564 break;
565 }
566 retry_num = 0;
567 snd_card_num++;
568 }
569
570 if (snd_card_num >= MAX_SND_CARD) {
571 ALOGE("%s: Unable to find correct sound card, aborting.", __func__);
572 free(my_data);
573 return NULL;
574 }
575
576 my_data->adev = adev;
577 my_data->btsco_sample_rate = SAMPLE_RATE_8KHZ;
578 my_data->fluence_in_spkr_mode = false;
579 my_data->fluence_in_voice_call = false;
580 my_data->fluence_in_voice_rec = false;
581 my_data->fluence_in_audio_rec = false;
582 my_data->fluence_type = FLUENCE_NONE;
583
584 property_get("ro.qc.sdk.audio.fluencetype", value, "");
585 if (!strncmp("fluencepro", value, sizeof("fluencepro"))) {
586 my_data->fluence_type = FLUENCE_QUAD_MIC | FLUENCE_DUAL_MIC;
587 } else if (!strncmp("fluence", value, sizeof("fluence"))) {
588 my_data->fluence_type = FLUENCE_DUAL_MIC;
589 } else {
590 my_data->fluence_type = FLUENCE_NONE;
591 }
592
593 if (my_data->fluence_type != FLUENCE_NONE) {
594 property_get("persist.audio.fluence.voicecall",value,"");
595 if (!strncmp("true", value, sizeof("true"))) {
596 my_data->fluence_in_voice_call = true;
597 }
598
599 property_get("persist.audio.fluence.voicerec",value,"");
600 if (!strncmp("true", value, sizeof("true"))) {
601 my_data->fluence_in_voice_rec = true;
602 }
603
604 property_get("persist.audio.fluence.audiorec",value,"");
605 if (!strncmp("true", value, sizeof("true"))) {
606 my_data->fluence_in_audio_rec = true;
607 }
608
609 property_get("persist.audio.fluence.speaker",value,"");
610 if (!strncmp("true", value, sizeof("true"))) {
611 my_data->fluence_in_spkr_mode = true;
612 }
613 }
614
615 my_data->voice_feature_set = VOICE_FEATURE_SET_DEFAULT;
616 my_data->acdb_handle = dlopen(LIB_ACDB_LOADER, RTLD_NOW);
617 if (my_data->acdb_handle == NULL) {
618 ALOGE("%s: DLOPEN failed for %s", __func__, LIB_ACDB_LOADER);
619 } else {
620 ALOGV("%s: DLOPEN successful for %s", __func__, LIB_ACDB_LOADER);
621 my_data->acdb_deallocate = (acdb_deallocate_t)dlsym(my_data->acdb_handle,
622 "acdb_loader_deallocate_ACDB");
623 if (!my_data->acdb_deallocate)
624 ALOGE("%s: Could not find the symbol acdb_loader_deallocate_ACDB from %s",
625 __func__, LIB_ACDB_LOADER);
626
627 my_data->acdb_send_audio_cal = (acdb_send_audio_cal_t)dlsym(my_data->acdb_handle,
628 "acdb_loader_send_audio_cal");
629 if (!my_data->acdb_send_audio_cal)
630 ALOGE("%s: Could not find the symbol acdb_send_audio_cal from %s",
631 __func__, LIB_ACDB_LOADER);
632
633 my_data->acdb_send_voice_cal = (acdb_send_voice_cal_t)dlsym(my_data->acdb_handle,
634 "acdb_loader_send_voice_cal");
635 if (!my_data->acdb_send_voice_cal)
636 ALOGE("%s: Could not find the symbol acdb_loader_send_voice_cal from %s",
637 __func__, LIB_ACDB_LOADER);
638
639 my_data->acdb_reload_vocvoltable = (acdb_reload_vocvoltable_t)dlsym(my_data->acdb_handle,
640 "acdb_loader_reload_vocvoltable");
641 if (!my_data->acdb_reload_vocvoltable)
642 ALOGE("%s: Could not find the symbol acdb_loader_reload_vocvoltable from %s",
643 __func__, LIB_ACDB_LOADER);
644
645 my_data->acdb_init = (acdb_init_t)dlsym(my_data->acdb_handle,
646 "acdb_loader_init_ACDB");
647 if (my_data->acdb_init == NULL)
648 ALOGE("%s: dlsym error %s for acdb_loader_init_ACDB", __func__, dlerror());
649 else
650 my_data->acdb_init();
651 }
652
653 /* Initialize ACDB ID's */
654 platform_info_init();
655
656 /* init usb */
657 audio_extn_usb_init(adev);
658 /* update sound cards appropriately */
659 audio_extn_usb_set_proxy_sound_card(adev->snd_card);
660
661 /* Read one time ssr property */
662 audio_extn_ssr_update_enabled();
663 audio_extn_spkr_prot_init(adev);
664 return my_data;
665}
666
667void platform_deinit(void *platform)
668{
669 struct platform_data *my_data = (struct platform_data *)platform;
670
671 hw_info_deinit(my_data->hw_info);
672 close_csd_client(my_data->csd);
673
674 free(platform);
675 /* deinit usb */
676 audio_extn_usb_deinit();
677}
678
679const char *platform_get_snd_device_name(snd_device_t snd_device)
680{
681 if (snd_device >= SND_DEVICE_MIN && snd_device < SND_DEVICE_MAX)
682 return device_table[snd_device];
683 else
684 return "";
685}
686
687int platform_get_snd_device_name_extn(void *platform, snd_device_t snd_device,
688 char *device_name)
689{
690 struct platform_data *my_data = (struct platform_data *)platform;
691
692 if (snd_device >= SND_DEVICE_MIN && snd_device < SND_DEVICE_MAX) {
693 strlcpy(device_name, device_table[snd_device], DEVICE_NAME_MAX_SIZE);
694 hw_info_append_hw_type(my_data->hw_info, snd_device, device_name);
695 } else {
696 strlcpy(device_name, "", DEVICE_NAME_MAX_SIZE);
697 return -EINVAL;
698 }
699
700 return 0;
701}
702
703void platform_add_backend_name(char *mixer_path, snd_device_t snd_device)
704{
705 if (snd_device == SND_DEVICE_IN_BT_SCO_MIC)
706 strlcat(mixer_path, " bt-sco", MIXER_PATH_MAX_LENGTH);
707 else if (snd_device == SND_DEVICE_IN_BT_SCO_MIC_WB)
708 strlcat(mixer_path, " bt-sco-wb", MIXER_PATH_MAX_LENGTH);
709 else if(snd_device == SND_DEVICE_OUT_BT_SCO)
710 strlcat(mixer_path, " bt-sco", MIXER_PATH_MAX_LENGTH);
711 else if(snd_device == SND_DEVICE_OUT_BT_SCO_WB)
712 strlcat(mixer_path, " bt-sco-wb", MIXER_PATH_MAX_LENGTH);
713 else if (snd_device == SND_DEVICE_OUT_HDMI)
714 strlcat(mixer_path, " hdmi", MIXER_PATH_MAX_LENGTH);
715 else if (snd_device == SND_DEVICE_OUT_SPEAKER_AND_HDMI)
716 strlcat(mixer_path, " speaker-and-hdmi", MIXER_PATH_MAX_LENGTH);
717 else if (snd_device == SND_DEVICE_OUT_AFE_PROXY)
718 strlcat(mixer_path, " afe-proxy", MIXER_PATH_MAX_LENGTH);
719 else if (snd_device == SND_DEVICE_OUT_USB_HEADSET)
720 strlcat(mixer_path, " usb-headphones", MIXER_PATH_MAX_LENGTH);
721 else if (snd_device == SND_DEVICE_OUT_SPEAKER_AND_USB_HEADSET)
722 strlcat(mixer_path, " speaker-and-usb-headphones",
723 MIXER_PATH_MAX_LENGTH);
724 else if (snd_device == SND_DEVICE_IN_USB_HEADSET_MIC)
725 strlcat(mixer_path, " usb-headset-mic", MIXER_PATH_MAX_LENGTH);
726 else if (snd_device == SND_DEVICE_IN_CAPTURE_FM)
727 strlcat(mixer_path, " capture-fm", MIXER_PATH_MAX_LENGTH);
728 else if (snd_device == SND_DEVICE_OUT_TRANSMISSION_FM)
729 strlcat(mixer_path, " transmission-fm", MIXER_PATH_MAX_LENGTH);
730}
731
732int platform_get_pcm_device_id(audio_usecase_t usecase, int device_type)
733{
734 int device_id;
735 if (device_type == PCM_PLAYBACK)
736 device_id = pcm_device_table[usecase][0];
737 else
738 device_id = pcm_device_table[usecase][1];
739 return device_id;
740}
741
742int platform_get_snd_device_index(char *snd_device_index_name)
743{
744 int ret = 0;
745 int i;
746
747 if (snd_device_index_name == NULL) {
748 ALOGE("%s: snd_device_index_name is NULL", __func__);
749 ret = -ENODEV;
750 goto done;
751 }
752
753 for (i=0; i < SND_DEVICE_MAX; i++) {
754 if(strcmp(snd_device_name_index[i].name, snd_device_index_name) == 0) {
755 ret = snd_device_name_index[i].index;
756 goto done;
757 }
758 }
759 ALOGE("%s: Could not find index for snd_device_index_name = %s",
760 __func__, snd_device_index_name);
761 ret = -ENODEV;
762done:
763 return ret;
764}
765
766int platform_set_snd_device_acdb_id(snd_device_t snd_device, unsigned int acdb_id)
767{
768 int ret = 0;
769
770 if ((snd_device < SND_DEVICE_MIN) || (snd_device >= SND_DEVICE_MAX)) {
771 ALOGE("%s: Invalid snd_device = %d",
772 __func__, snd_device);
773 ret = -EINVAL;
774 goto done;
775 }
776
777 acdb_device_table[snd_device] = acdb_id;
778done:
779 return ret;
780}
781
782int platform_send_audio_calibration(void *platform, snd_device_t snd_device)
783{
784 struct platform_data *my_data = (struct platform_data *)platform;
785 int acdb_dev_id, acdb_dev_type;
786
787 acdb_dev_id = acdb_device_table[snd_device];
788 if (acdb_dev_id < 0) {
789 ALOGE("%s: Could not find acdb id for device(%d)",
790 __func__, snd_device);
791 return -EINVAL;
792 }
793 if (my_data->acdb_send_audio_cal) {
794 ("%s: sending audio calibration for snd_device(%d) acdb_id(%d)",
795 __func__, snd_device, acdb_dev_id);
796 if (snd_device >= SND_DEVICE_OUT_BEGIN &&
797 snd_device < SND_DEVICE_OUT_END)
798 acdb_dev_type = ACDB_DEV_TYPE_OUT;
799 else
800 acdb_dev_type = ACDB_DEV_TYPE_IN;
801 my_data->acdb_send_audio_cal(acdb_dev_id, acdb_dev_type);
802 }
803 return 0;
804}
805
806int platform_switch_voice_call_device_pre(void *platform)
807{
808 struct platform_data *my_data = (struct platform_data *)platform;
809 int ret = 0;
810
811 if (my_data->csd != NULL &&
812 my_data->adev->mode == AUDIO_MODE_IN_CALL) {
813 /* This must be called before disabling mixer controls on APQ side */
814 ret = my_data->csd->disable_device();
815 if (ret < 0) {
816 ALOGE("%s: csd_client_disable_device, failed, error %d",
817 __func__, ret);
818 }
819 }
820 return ret;
821}
822
823int platform_switch_voice_call_device_post(void *platform,
824 snd_device_t out_snd_device,
825 snd_device_t in_snd_device)
826{
827 struct platform_data *my_data = (struct platform_data *)platform;
828 int acdb_rx_id, acdb_tx_id;
829
830 if (my_data->acdb_send_voice_cal == NULL) {
831 ALOGE("%s: dlsym error for acdb_send_voice_call", __func__);
832 } else {
833 acdb_rx_id = acdb_device_table[out_snd_device];
834 acdb_tx_id = acdb_device_table[in_snd_device];
835
836 if (acdb_rx_id > 0 && acdb_tx_id > 0)
837 my_data->acdb_send_voice_cal(acdb_rx_id, acdb_tx_id);
838 else
839 ALOGE("%s: Incorrect ACDB IDs (rx: %d tx: %d)", __func__,
840 acdb_rx_id, acdb_tx_id);
841 }
842
843 return 0;
844}
845
846int platform_switch_voice_call_usecase_route_post(void *platform,
847 snd_device_t out_snd_device,
848 snd_device_t in_snd_device)
849{
850 struct platform_data *my_data = (struct platform_data *)platform;
851 int acdb_rx_id, acdb_tx_id;
852 int ret = 0;
853
854 acdb_rx_id = acdb_device_table[out_snd_device];
855 acdb_tx_id = acdb_device_table[in_snd_device];
856
857 if (my_data->csd != NULL) {
858 if (acdb_rx_id > 0 && acdb_tx_id > 0) {
859 ret = my_data->csd->enable_device(acdb_rx_id, acdb_tx_id,
860 my_data->adev->acdb_settings);
861 if (ret < 0) {
862 ALOGE("%s: csd_enable_device, failed, error %d",
863 __func__, ret);
864 }
865 } else {
866 ALOGE("%s: Incorrect ACDB IDs (rx: %d tx: %d)", __func__,
867 acdb_rx_id, acdb_tx_id);
868 }
869 }
870 return ret;
871}
872
873int platform_start_voice_call(void *platform, uint32_t vsid)
874{
875 struct platform_data *my_data = (struct platform_data *)platform;
876 int ret = 0;
877
878 if (my_data->csd != NULL) {
879 ret = my_data->csd->start_voice(vsid);
880 if (ret < 0) {
881 ALOGE("%s: csd_start_voice error %d\n", __func__, ret);
882 }
883 }
884 return ret;
885}
886
887int platform_stop_voice_call(void *platform, uint32_t vsid)
888{
889 struct platform_data *my_data = (struct platform_data *)platform;
890 int ret = 0;
891
892 if (my_data->csd != NULL) {
893 ret = my_data->csd->stop_voice(vsid);
894 if (ret < 0) {
895 ALOGE("%s: csd_stop_voice error %d\n", __func__, ret);
896 }
897 }
898 return ret;
899}
900
901int platform_set_voice_volume(void *platform, int volume)
902{
903 struct platform_data *my_data = (struct platform_data *)platform;
904 struct audio_device *adev = my_data->adev;
905 struct mixer_ctl *ctl;
906 const char *mixer_ctl_name = "Voice Rx Gain";
907 int vol_index = 0, ret = 0;
908 uint32_t set_values[ ] = {0,
909 ALL_SESSION_VSID,
910 DEFAULT_VOLUME_RAMP_DURATION_MS};
911
912 // Voice volume levels are mapped to adsp volume levels as follows.
913 // 100 -> 5, 80 -> 4, 60 -> 3, 40 -> 2, 20 -> 1 0 -> 0
914 // But this values don't changed in kernel. So, below change is need.
915 vol_index = (int)percent_to_index(volume, MIN_VOL_INDEX, MAX_VOL_INDEX);
916 set_values[0] = vol_index;
917
918 ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
919 if (!ctl) {
920 ALOGE("%s: Could not get ctl for mixer cmd - %s",
921 __func__, mixer_ctl_name);
922 return -EINVAL;
923 }
924 ALOGV("Setting voice volume index: %d", set_values[0]);
925 mixer_ctl_set_array(ctl, set_values, ARRAY_SIZE(set_values));
926
927 if (my_data->csd != NULL) {
928 ret = my_data->csd->volume(ALL_SESSION_VSID, volume);
929 if (ret < 0) {
930 ALOGE("%s: csd_volume error %d", __func__, ret);
931 }
932 }
933 return ret;
934}
935
936int platform_set_mic_mute(void *platform, bool state)
937{
938 struct platform_data *my_data = (struct platform_data *)platform;
939 struct audio_device *adev = my_data->adev;
940 struct mixer_ctl *ctl;
941 const char *mixer_ctl_name = "Voice Tx Mute";
942 int ret = 0;
943 uint32_t set_values[ ] = {0,
944 ALL_SESSION_VSID,
945 DEFAULT_VOLUME_RAMP_DURATION_MS};
946
947 set_values[0] = state;
948 ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
949 if (!ctl) {
950 ALOGE("%s: Could not get ctl for mixer cmd - %s",
951 __func__, mixer_ctl_name);
952 return -EINVAL;
953 }
954 ALOGV("Setting voice mute state: %d", state);
955 mixer_ctl_set_array(ctl, set_values, ARRAY_SIZE(set_values));
956
957 if (my_data->csd != NULL) {
958 ret = my_data->csd->mic_mute(ALL_SESSION_VSID, state);
959 if (ret < 0) {
960 ALOGE("%s: csd_mic_mute error %d", __func__, ret);
961 }
962 }
963 return ret;
964}
965
966snd_device_t platform_get_output_snd_device(void *platform, audio_devices_t devices)
967{
968 struct platform_data *my_data = (struct platform_data *)platform;
969 struct audio_device *adev = my_data->adev;
970 audio_mode_t mode = adev->mode;
971 snd_device_t snd_device = SND_DEVICE_NONE;
972
973 audio_channel_mask_t channel_mask = (adev->active_input == NULL) ?
974 AUDIO_CHANNEL_IN_MONO : adev->active_input->channel_mask;
975 int channel_count = popcount(channel_mask);
976
977 ALOGV("%s: enter: output devices(%#x)", __func__, devices);
978 if (devices == AUDIO_DEVICE_NONE ||
979 devices & AUDIO_DEVICE_BIT_IN) {
980 ALOGV("%s: Invalid output devices (%#x)", __func__, devices);
981 goto exit;
982 }
983
984 if (popcount(devices) == 2) {
985 if (devices == (AUDIO_DEVICE_OUT_WIRED_HEADPHONE |
986 AUDIO_DEVICE_OUT_SPEAKER)) {
987 snd_device = SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES;
988 } else if (devices == (AUDIO_DEVICE_OUT_WIRED_HEADSET |
989 AUDIO_DEVICE_OUT_SPEAKER)) {
990 if (audio_extn_get_anc_enabled())
991 snd_device = SND_DEVICE_OUT_SPEAKER_AND_ANC_HEADSET;
992 else
993 snd_device = SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES;
994 } else if (devices == (AUDIO_DEVICE_OUT_AUX_DIGITAL |
995 AUDIO_DEVICE_OUT_SPEAKER)) {
996 snd_device = SND_DEVICE_OUT_SPEAKER_AND_HDMI;
997 } else if (devices == (AUDIO_DEVICE_OUT_ANLG_DOCK_HEADSET |
998 AUDIO_DEVICE_OUT_SPEAKER)) {
999 snd_device = SND_DEVICE_OUT_SPEAKER_AND_USB_HEADSET;
1000 } else {
1001 ALOGE("%s: Invalid combo device(%#x)", __func__, devices);
1002 goto exit;
1003 }
1004 if (snd_device != SND_DEVICE_NONE) {
1005 goto exit;
1006 }
1007 }
1008
1009 if (popcount(devices) != 1) {
1010 ALOGE("%s: Invalid output devices(%#x)", __func__, devices);
1011 goto exit;
1012 }
1013
1014 if ((mode == AUDIO_MODE_IN_CALL) ||
1015 voice_extn_compress_voip_is_active(adev)) {
1016 if (devices & AUDIO_DEVICE_OUT_WIRED_HEADPHONE ||
1017 devices & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
1018 if ((adev->voice.tty_mode != TTY_MODE_OFF) &&
1019 !voice_extn_compress_voip_is_active(adev)) {
1020 switch (adev->voice.tty_mode) {
1021 case TTY_MODE_FULL:
1022 snd_device = SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES;
1023 break;
1024 case TTY_MODE_VCO:
1025 snd_device = SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES;
1026 break;
1027 case TTY_MODE_HCO:
1028 snd_device = SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET;
1029 break;
1030 default:
1031 ALOGE("%s: Invalid TTY mode (%#x)",
1032 __func__, adev->voice.tty_mode);
1033 }
1034 } else if (audio_extn_get_anc_enabled()) {
1035 if (audio_extn_should_use_fb_anc())
1036 snd_device = SND_DEVICE_OUT_VOICE_ANC_FB_HEADSET;
1037 else
1038 snd_device = SND_DEVICE_OUT_VOICE_ANC_HEADSET;
1039 } else {
1040 snd_device = SND_DEVICE_OUT_VOICE_HEADPHONES;
1041 }
1042 } else if (devices & AUDIO_DEVICE_OUT_ALL_SCO) {
1043 if (my_data->btsco_sample_rate == SAMPLE_RATE_16KHZ)
1044 snd_device = SND_DEVICE_OUT_BT_SCO_WB;
1045 else
1046 snd_device = SND_DEVICE_OUT_BT_SCO;
1047 } else if (devices & AUDIO_DEVICE_OUT_SPEAKER) {
1048 snd_device = SND_DEVICE_OUT_VOICE_SPEAKER;
1049 } else if (devices & AUDIO_DEVICE_OUT_ANLG_DOCK_HEADSET ||
1050 devices & AUDIO_DEVICE_OUT_DGTL_DOCK_HEADSET) {
1051 snd_device = SND_DEVICE_OUT_USB_HEADSET;
1052 } else if (devices & AUDIO_DEVICE_OUT_FM_TX) {
1053 snd_device = SND_DEVICE_OUT_TRANSMISSION_FM;
1054 } else if (devices & AUDIO_DEVICE_OUT_EARPIECE) {
1055 if (audio_extn_should_use_handset_anc(channel_count))
1056 snd_device = SND_DEVICE_OUT_ANC_HANDSET;
1057 else
1058 snd_device = SND_DEVICE_OUT_VOICE_HANDSET;
1059 }
1060 if (snd_device != SND_DEVICE_NONE) {
1061 goto exit;
1062 }
1063 }
1064
1065 if (devices & AUDIO_DEVICE_OUT_WIRED_HEADPHONE ||
1066 devices & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
1067 if (devices & AUDIO_DEVICE_OUT_WIRED_HEADSET
1068 && audio_extn_get_anc_enabled()) {
1069 if (audio_extn_should_use_fb_anc())
1070 snd_device = SND_DEVICE_OUT_ANC_FB_HEADSET;
1071 else
1072 snd_device = SND_DEVICE_OUT_ANC_HEADSET;
1073 }
1074 else
1075 snd_device = SND_DEVICE_OUT_HEADPHONES;
1076 } else if (devices & AUDIO_DEVICE_OUT_SPEAKER) {
1077 if (adev->speaker_lr_swap)
1078 snd_device = SND_DEVICE_OUT_SPEAKER_REVERSE;
1079 else
1080 snd_device = SND_DEVICE_OUT_SPEAKER;
1081 } else if (devices & AUDIO_DEVICE_OUT_ALL_SCO) {
1082 if (my_data->btsco_sample_rate == SAMPLE_RATE_16KHZ)
1083 snd_device = SND_DEVICE_OUT_BT_SCO_WB;
1084 else
1085 snd_device = SND_DEVICE_OUT_BT_SCO;
1086 } else if (devices & AUDIO_DEVICE_OUT_AUX_DIGITAL) {
1087 snd_device = SND_DEVICE_OUT_HDMI ;
1088 } else if (devices & AUDIO_DEVICE_OUT_ANLG_DOCK_HEADSET ||
1089 devices & AUDIO_DEVICE_OUT_DGTL_DOCK_HEADSET) {
1090 snd_device = SND_DEVICE_OUT_USB_HEADSET;
1091 } else if (devices & AUDIO_DEVICE_OUT_FM_TX) {
1092 snd_device = SND_DEVICE_OUT_TRANSMISSION_FM;
1093 } else if (devices & AUDIO_DEVICE_OUT_EARPIECE) {
1094 snd_device = SND_DEVICE_OUT_HANDSET;
1095 } else if (devices & AUDIO_DEVICE_OUT_PROXY) {
1096 ALOGD("%s: setting sink capability for Proxy", __func__);
1097 audio_extn_set_afe_proxy_channel_mixer(adev);
1098 snd_device = SND_DEVICE_OUT_AFE_PROXY;
1099 } else {
1100 ALOGE("%s: Unknown device(s) %#x", __func__, devices);
1101 }
1102exit:
1103 ALOGV("%s: exit: snd_device(%s)", __func__, device_table[snd_device]);
1104 return snd_device;
1105}
1106
1107snd_device_t platform_get_input_snd_device(void *platform, audio_devices_t out_device)
1108{
1109 struct platform_data *my_data = (struct platform_data *)platform;
1110 struct audio_device *adev = my_data->adev;
1111 audio_source_t source = (adev->active_input == NULL) ?
1112 AUDIO_SOURCE_DEFAULT : adev->active_input->source;
1113
1114 audio_mode_t mode = adev->mode;
1115 audio_devices_t in_device = ((adev->active_input == NULL) ?
1116 AUDIO_DEVICE_NONE : adev->active_input->device)
1117 & ~AUDIO_DEVICE_BIT_IN;
1118 audio_channel_mask_t channel_mask = (adev->active_input == NULL) ?
1119 AUDIO_CHANNEL_IN_MONO : adev->active_input->channel_mask;
1120 snd_device_t snd_device = SND_DEVICE_NONE;
1121 int channel_count = popcount(channel_mask);
1122
1123 ALOGV("%s: enter: out_device(%#x) in_device(%#x)",
1124 __func__, out_device, in_device);
1125 if ((out_device != AUDIO_DEVICE_NONE) && ((mode == AUDIO_MODE_IN_CALL) ||
1126 voice_extn_compress_voip_is_active(adev))) {
1127 if ((adev->voice.tty_mode != TTY_MODE_OFF) &&
1128 !voice_extn_compress_voip_is_active(adev)) {
1129 if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADPHONE ||
1130 out_device & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
1131 switch (adev->voice.tty_mode) {
1132 case TTY_MODE_FULL:
1133 snd_device = SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC;
1134 break;
1135 case TTY_MODE_VCO:
1136 snd_device = SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC;
1137 break;
1138 case TTY_MODE_HCO:
1139 snd_device = SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC;
1140 break;
1141 default:
1142 ALOGE("%s: Invalid TTY mode (%#x)",
1143 __func__, adev->voice.tty_mode);
1144 }
1145 goto exit;
1146 }
1147 }
1148 if (out_device & AUDIO_DEVICE_OUT_EARPIECE ||
1149 out_device & AUDIO_DEVICE_OUT_WIRED_HEADPHONE) {
1150 if (out_device & AUDIO_DEVICE_OUT_EARPIECE &&
1151 audio_extn_should_use_handset_anc(channel_count)) {
1152 snd_device = SND_DEVICE_IN_AANC_HANDSET_MIC;
1153 } else if (my_data->fluence_type == FLUENCE_NONE ||
1154 my_data->fluence_in_voice_call == false) {
1155 snd_device = SND_DEVICE_IN_HANDSET_MIC;
1156 set_echo_reference(adev->mixer, EC_REF_RX);
1157 } else {
1158 snd_device = SND_DEVICE_IN_VOICE_DMIC;
1159 adev->acdb_settings |= DMIC_FLAG;
1160 }
1161 } else if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
1162 snd_device = SND_DEVICE_IN_VOICE_HEADSET_MIC;
1163 } else if (out_device & AUDIO_DEVICE_OUT_ALL_SCO) {
1164 if (my_data->btsco_sample_rate == SAMPLE_RATE_16KHZ)
1165 snd_device = SND_DEVICE_IN_BT_SCO_MIC_WB;
1166 else
1167 snd_device = SND_DEVICE_IN_BT_SCO_MIC;
1168 } else if (out_device & AUDIO_DEVICE_OUT_SPEAKER) {
1169 if (my_data->fluence_type != FLUENCE_NONE &&
1170 my_data->fluence_in_voice_call &&
1171 my_data->fluence_in_spkr_mode) {
1172 if(my_data->fluence_type & FLUENCE_QUAD_MIC) {
1173 adev->acdb_settings |= QMIC_FLAG;
1174 snd_device = SND_DEVICE_IN_VOICE_SPEAKER_QMIC;
1175 } else {
1176 adev->acdb_settings |= DMIC_FLAG;
1177 snd_device = SND_DEVICE_IN_VOICE_SPEAKER_DMIC;
1178 }
1179 } else {
1180 snd_device = SND_DEVICE_IN_VOICE_SPEAKER_MIC;
1181 }
1182 }
1183 } else if (source == AUDIO_SOURCE_CAMCORDER) {
1184 if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC ||
1185 in_device & AUDIO_DEVICE_IN_BACK_MIC) {
1186 snd_device = SND_DEVICE_IN_CAMCORDER_MIC;
1187 }
1188 } else if (source == AUDIO_SOURCE_VOICE_RECOGNITION) {
1189 if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
1190 if (channel_count == 2) {
1191 snd_device = SND_DEVICE_IN_VOICE_REC_DMIC_STEREO;
1192 adev->acdb_settings |= DMIC_FLAG;
1193 } else if (adev->active_input->enable_ns)
1194 snd_device = SND_DEVICE_IN_VOICE_REC_MIC_NS;
1195 else if (my_data->fluence_type != FLUENCE_NONE &&
1196 my_data->fluence_in_voice_rec) {
1197 snd_device = SND_DEVICE_IN_VOICE_REC_DMIC_FLUENCE;
1198 adev->acdb_settings |= DMIC_FLAG;
1199 } else {
1200 snd_device = SND_DEVICE_IN_VOICE_REC_MIC;
1201 }
1202 }
1203 } else if (source == AUDIO_SOURCE_VOICE_COMMUNICATION) {
1204 if (out_device & AUDIO_DEVICE_OUT_SPEAKER)
1205 in_device = AUDIO_DEVICE_IN_BACK_MIC;
1206 if (adev->active_input) {
1207 if (adev->active_input->enable_aec &&
1208 adev->active_input->enable_ns) {
1209 if (in_device & AUDIO_DEVICE_IN_BACK_MIC) {
1210 if (my_data->fluence_type & FLUENCE_DUAL_MIC &&
1211 my_data->fluence_in_spkr_mode) {
1212 snd_device = SND_DEVICE_IN_SPEAKER_DMIC_AEC_NS;
1213 adev->acdb_settings |= DMIC_FLAG;
1214 } else
1215 snd_device = SND_DEVICE_IN_SPEAKER_MIC_AEC_NS;
1216 } else if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
1217 if (my_data->fluence_type & FLUENCE_DUAL_MIC) {
1218 snd_device = SND_DEVICE_IN_HANDSET_DMIC_AEC_NS;
1219 adev->acdb_settings |= DMIC_FLAG;
1220 } else
1221 snd_device = SND_DEVICE_IN_HANDSET_MIC_AEC_NS;
1222 } else if (in_device & AUDIO_DEVICE_IN_WIRED_HEADSET) {
1223 snd_device = SND_DEVICE_IN_HEADSET_MIC_FLUENCE;
1224 }
1225 set_echo_reference(adev->mixer, EC_REF_RX);
1226 } else if (adev->active_input->enable_aec) {
1227 if (in_device & AUDIO_DEVICE_IN_BACK_MIC) {
1228 if (my_data->fluence_type & FLUENCE_DUAL_MIC) {
1229 snd_device = SND_DEVICE_IN_SPEAKER_DMIC_AEC;
1230 adev->acdb_settings |= DMIC_FLAG;
1231 } else
1232 snd_device = SND_DEVICE_IN_SPEAKER_MIC_AEC;
1233 } else if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
1234 if (my_data->fluence_type & FLUENCE_DUAL_MIC) {
1235 snd_device = SND_DEVICE_IN_HANDSET_DMIC_AEC;
1236 adev->acdb_settings |= DMIC_FLAG;
1237 } else
1238 snd_device = SND_DEVICE_IN_HANDSET_MIC_AEC;
1239 } else if (in_device & AUDIO_DEVICE_IN_WIRED_HEADSET) {
1240 snd_device = SND_DEVICE_IN_HEADSET_MIC_FLUENCE;
1241 }
1242 set_echo_reference(adev->mixer, EC_REF_RX);
1243 } else if (adev->active_input->enable_ns) {
1244 if (in_device & AUDIO_DEVICE_IN_BACK_MIC) {
1245 if (my_data->fluence_type & FLUENCE_DUAL_MIC) {
1246 snd_device = SND_DEVICE_IN_SPEAKER_DMIC_NS;
1247 adev->acdb_settings |= DMIC_FLAG;
1248 } else
1249 snd_device = SND_DEVICE_IN_SPEAKER_MIC_NS;
1250 } else if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
1251 if (my_data->fluence_type & FLUENCE_DUAL_MIC) {
1252 snd_device = SND_DEVICE_IN_HANDSET_DMIC_NS;
1253 adev->acdb_settings |= DMIC_FLAG;
1254 } else
1255 snd_device = SND_DEVICE_IN_HANDSET_MIC_NS;
1256 } else if (in_device & AUDIO_DEVICE_IN_WIRED_HEADSET) {
1257 snd_device = SND_DEVICE_IN_HEADSET_MIC_FLUENCE;
1258 }
1259 set_echo_reference(adev->mixer, "NONE");
1260 } else
1261 set_echo_reference(adev->mixer, "NONE");
1262 }
1263 } else if (source == AUDIO_SOURCE_MIC) {
1264 if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC &&
1265 channel_count == 1 ) {
1266 if(my_data->fluence_type & FLUENCE_DUAL_MIC &&
1267 my_data->fluence_in_audio_rec)
1268 snd_device = SND_DEVICE_IN_HANDSET_DMIC;
1269 }
1270 } else if (source == AUDIO_SOURCE_FM_RX ||
1271 source == AUDIO_SOURCE_FM_RX_A2DP) {
1272 snd_device = SND_DEVICE_IN_CAPTURE_FM;
1273 } else if (source == AUDIO_SOURCE_DEFAULT) {
1274 goto exit;
1275 }
1276
1277
1278 if (snd_device != SND_DEVICE_NONE) {
1279 goto exit;
1280 }
1281
1282 if (in_device != AUDIO_DEVICE_NONE &&
1283 !(in_device & AUDIO_DEVICE_IN_VOICE_CALL) &&
1284 !(in_device & AUDIO_DEVICE_IN_COMMUNICATION)) {
1285 if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
1286 if (audio_extn_ssr_get_enabled() && channel_count == 6)
1287 snd_device = SND_DEVICE_IN_QUAD_MIC;
1288 else if (channel_count == 2)
1289 snd_device = SND_DEVICE_IN_HANDSET_STEREO_DMIC;
1290 else
1291 snd_device = SND_DEVICE_IN_HANDSET_MIC;
1292 } else if (in_device & AUDIO_DEVICE_IN_BACK_MIC) {
1293 snd_device = SND_DEVICE_IN_SPEAKER_MIC;
1294 } else if (in_device & AUDIO_DEVICE_IN_WIRED_HEADSET) {
1295 snd_device = SND_DEVICE_IN_HEADSET_MIC;
1296 } else if (in_device & AUDIO_DEVICE_IN_BLUETOOTH_SCO_HEADSET) {
1297 if (my_data->btsco_sample_rate == SAMPLE_RATE_16KHZ)
1298 snd_device = SND_DEVICE_IN_BT_SCO_MIC_WB;
1299 else
1300 snd_device = SND_DEVICE_IN_BT_SCO_MIC;
1301 } else if (in_device & AUDIO_DEVICE_IN_AUX_DIGITAL) {
1302 snd_device = SND_DEVICE_IN_HDMI_MIC;
1303 } else if (in_device & AUDIO_DEVICE_IN_ANLG_DOCK_HEADSET ||
1304 in_device & AUDIO_DEVICE_IN_DGTL_DOCK_HEADSET) {
1305 snd_device = SND_DEVICE_IN_USB_HEADSET_MIC;
1306 } else if (in_device & AUDIO_DEVICE_IN_FM_RX) {
1307 snd_device = SND_DEVICE_IN_CAPTURE_FM;
1308 } else {
1309 ALOGE("%s: Unknown input device(s) %#x", __func__, in_device);
1310 ALOGW("%s: Using default handset-mic", __func__);
1311 snd_device = SND_DEVICE_IN_HANDSET_MIC;
1312 }
1313 } else {
1314 if (out_device & AUDIO_DEVICE_OUT_EARPIECE) {
1315 snd_device = SND_DEVICE_IN_HANDSET_MIC;
1316 } else if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
1317 snd_device = SND_DEVICE_IN_HEADSET_MIC;
1318 } else if (out_device & AUDIO_DEVICE_OUT_SPEAKER) {
1319 if (channel_count > 1)
1320 snd_device = SND_DEVICE_IN_SPEAKER_STEREO_DMIC;
1321 else
1322 snd_device = SND_DEVICE_IN_SPEAKER_MIC;
1323 } else if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADPHONE) {
1324 snd_device = SND_DEVICE_IN_HANDSET_MIC;
1325 } else if (out_device & AUDIO_DEVICE_OUT_BLUETOOTH_SCO_HEADSET) {
1326 if (my_data->btsco_sample_rate == SAMPLE_RATE_16KHZ)
1327 snd_device = SND_DEVICE_IN_BT_SCO_MIC_WB;
1328 else
1329 snd_device = SND_DEVICE_IN_BT_SCO_MIC;
1330 } else if (out_device & AUDIO_DEVICE_OUT_AUX_DIGITAL) {
1331 snd_device = SND_DEVICE_IN_HDMI_MIC;
1332 } else if (out_device & AUDIO_DEVICE_OUT_ANLG_DOCK_HEADSET ||
1333 out_device & AUDIO_DEVICE_OUT_DGTL_DOCK_HEADSET) {
1334 snd_device = SND_DEVICE_IN_USB_HEADSET_MIC;
1335 } else {
1336 ALOGE("%s: Unknown output device(s) %#x", __func__, out_device);
1337 ALOGW("%s: Using default handset-mic", __func__);
1338 snd_device = SND_DEVICE_IN_HANDSET_MIC;
1339 }
1340 }
1341exit:
1342 ALOGV("%s: exit: in_snd_device(%s)", __func__, device_table[snd_device]);
1343 return snd_device;
1344}
1345
1346int platform_set_hdmi_channels(void *platform, int channel_count)
1347{
1348 struct platform_data *my_data = (struct platform_data *)platform;
1349 struct audio_device *adev = my_data->adev;
1350 struct mixer_ctl *ctl;
1351 const char *channel_cnt_str = NULL;
1352 const char *mixer_ctl_name = "HDMI_RX Channels";
1353 switch (channel_count) {
1354 case 8:
1355 channel_cnt_str = "Eight"; break;
1356 case 7:
1357 channel_cnt_str = "Seven"; break;
1358 case 6:
1359 channel_cnt_str = "Six"; break;
1360 case 5:
1361 channel_cnt_str = "Five"; break;
1362 case 4:
1363 channel_cnt_str = "Four"; break;
1364 case 3:
1365 channel_cnt_str = "Three"; break;
1366 default:
1367 channel_cnt_str = "Two"; break;
1368 }
1369 ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
1370 if (!ctl) {
1371 ALOGE("%s: Could not get ctl for mixer cmd - %s",
1372 __func__, mixer_ctl_name);
1373 return -EINVAL;
1374 }
1375 ALOGV("HDMI channel count: %s", channel_cnt_str);
1376 mixer_ctl_set_enum_by_string(ctl, channel_cnt_str);
1377 return 0;
1378}
1379
1380int platform_edid_get_max_channels(void *platform)
1381{
1382 struct platform_data *my_data = (struct platform_data *)platform;
1383 struct audio_device *adev = my_data->adev;
1384 char block[MAX_SAD_BLOCKS * SAD_BLOCK_SIZE];
1385 char *sad = block;
1386 int num_audio_blocks;
1387 int channel_count;
1388 int max_channels = 0;
1389 int i, ret, count;
1390
1391 struct mixer_ctl *ctl;
1392
1393 ctl = mixer_get_ctl_by_name(adev->mixer, AUDIO_DATA_BLOCK_MIXER_CTL);
1394 if (!ctl) {
1395 ALOGE("%s: Could not get ctl for mixer cmd - %s",
1396 __func__, AUDIO_DATA_BLOCK_MIXER_CTL);
1397 return 0;
1398 }
1399
1400 mixer_ctl_update(ctl);
1401
1402 count = mixer_ctl_get_num_values(ctl);
1403
1404 /* Read SAD blocks, clamping the maximum size for safety */
1405 if (count > (int)sizeof(block))
1406 count = (int)sizeof(block);
1407
1408 ret = mixer_ctl_get_array(ctl, block, count);
1409 if (ret != 0) {
1410 ALOGE("%s: mixer_ctl_get_array() failed to get EDID info", __func__);
1411 return 0;
1412 }
1413
1414 /* Calculate the number of SAD blocks */
1415 num_audio_blocks = count / SAD_BLOCK_SIZE;
1416
1417 for (i = 0; i < num_audio_blocks; i++) {
1418 /* Only consider LPCM blocks */
1419 if ((sad[0] >> 3) != EDID_FORMAT_LPCM) {
1420 sad += 3;
1421 continue;
1422 }
1423
1424 channel_count = (sad[0] & 0x7) + 1;
1425 if (channel_count > max_channels)
1426 max_channels = channel_count;
1427
1428 /* Advance to next block */
1429 sad += 3;
1430 }
1431
1432 return max_channels;
1433}
1434
1435static int platform_set_slowtalk(struct platform_data *my_data, bool state)
1436{
1437 int ret = 0;
1438 struct audio_device *adev = my_data->adev;
1439 struct mixer_ctl *ctl;
1440 const char *mixer_ctl_name = "Slowtalk Enable";
1441 uint32_t set_values[ ] = {0,
1442 ALL_SESSION_VSID};
1443
1444 set_values[0] = state;
1445 ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
1446 if (!ctl) {
1447 ALOGE("%s: Could not get ctl for mixer cmd - %s",
1448 __func__, mixer_ctl_name);
1449 ret = -EINVAL;
1450 } else {
1451 ALOGV("Setting slowtalk state: %d", state);
1452 ret = mixer_ctl_set_array(ctl, set_values, ARRAY_SIZE(set_values));
1453 my_data->slowtalk = state;
1454 }
1455
1456 if (my_data->csd != NULL) {
1457 ret = my_data->csd->slow_talk(ALL_SESSION_VSID, state);
1458 if (ret < 0) {
1459 ALOGE("%s: csd_client_disable_device, failed, error %d",
1460 __func__, ret);
1461 }
1462 }
1463 return ret;
1464}
1465
1466int platform_set_parameters(void *platform, struct str_parms *parms)
1467{
1468 struct platform_data *my_data = (struct platform_data *)platform;
1469 char *str;
1470 char value[256] = {0};
1471 int val;
1472 int ret = 0, err;
1473
1474 ALOGV("%s: enter: %s", __func__, str_parms_to_str(parms));
1475
1476 err = str_parms_get_int(parms, AUDIO_PARAMETER_KEY_BTSCO, &val);
1477 if (err >= 0) {
1478 str_parms_del(parms, AUDIO_PARAMETER_KEY_BTSCO);
1479 my_data->btsco_sample_rate = val;
1480 if (val == SAMPLE_RATE_16KHZ) {
1481 audio_route_apply_path(my_data->adev->audio_route,
1482 "bt-sco-wb-samplerate");
1483 audio_route_update_mixer(my_data->adev->audio_route);
1484 }
1485 }
1486
1487 err = str_parms_get_str(parms, AUDIO_PARAMETER_KEY_SLOWTALK, value, sizeof(value));
1488 if (err >= 0) {
1489 bool state = false;
1490 if (!strncmp("true", value, sizeof("true"))) {
1491 state = true;
1492 }
1493
1494 str_parms_del(parms, AUDIO_PARAMETER_KEY_SLOWTALK);
1495 ret = platform_set_slowtalk(my_data, state);
1496 if (ret)
1497 ALOGE("%s: Failed to set slow talk err: %d", __func__, ret);
1498 }
1499
1500 err = str_parms_get_str(parms, AUDIO_PARAMETER_KEY_VOLUME_BOOST,
1501 value, sizeof(value));
1502 if (err >= 0) {
1503 str_parms_del(parms, AUDIO_PARAMETER_KEY_VOLUME_BOOST);
1504
1505 if (my_data->acdb_reload_vocvoltable == NULL) {
1506 ALOGE("%s: acdb_reload_vocvoltable is NULL", __func__);
1507 } else if (!strcmp(value, "on")) {
1508 if (!my_data->acdb_reload_vocvoltable(VOICE_FEATURE_SET_VOLUME_BOOST)) {
1509 my_data->voice_feature_set = 1;
1510 }
1511 } else {
1512 if (!my_data->acdb_reload_vocvoltable(VOICE_FEATURE_SET_DEFAULT)) {
1513 my_data->voice_feature_set = 0;
1514 }
1515 }
1516 }
1517
1518 ALOGV("%s: exit with code(%d)", __func__, ret);
1519 return ret;
1520}
1521
1522int platform_set_incall_recording_session_id(void *platform,
1523 uint32_t session_id, int rec_mode)
1524{
1525 int ret = 0;
1526 struct platform_data *my_data = (struct platform_data *)platform;
1527 struct audio_device *adev = my_data->adev;
1528 struct mixer_ctl *ctl;
1529 const char *mixer_ctl_name = "Voc VSID";
1530 int num_ctl_values;
1531 int i;
1532
1533 ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
1534 if (!ctl) {
1535 ALOGE("%s: Could not get ctl for mixer cmd - %s",
1536 __func__, mixer_ctl_name);
1537 ret = -EINVAL;
1538 } else {
1539 num_ctl_values = mixer_ctl_get_num_values(ctl);
1540 for (i = 0; i < num_ctl_values; i++) {
1541 if (mixer_ctl_set_value(ctl, i, session_id)) {
1542 ALOGV("Error: invalid session_id: %x", session_id);
1543 ret = -EINVAL;
1544 break;
1545 }
1546 }
1547 }
1548
1549 if (my_data->csd != NULL) {
1550 ret = my_data->csd->start_record(ALL_SESSION_VSID, rec_mode);
1551 if (ret < 0) {
1552 ALOGE("%s: csd_client_start_record failed, error %d",
1553 __func__, ret);
1554 }
1555 }
1556
1557 return ret;
1558}
1559
1560int platform_stop_incall_recording_usecase(void *platform)
1561{
1562 int ret = 0;
1563 struct platform_data *my_data = (struct platform_data *)platform;
1564
1565 if (my_data->csd != NULL) {
1566 ret = my_data->csd->stop_record(ALL_SESSION_VSID);
1567 if (ret < 0) {
1568 ALOGE("%s: csd_client_stop_record failed, error %d",
1569 __func__, ret);
1570 }
1571 }
1572
1573 return ret;
1574}
1575
1576int platform_start_incall_music_usecase(void *platform)
1577{
1578 int ret = 0;
1579 struct platform_data *my_data = (struct platform_data *)platform;
1580
1581 if (my_data->csd != NULL) {
1582 ret = my_data->csd->start_playback(ALL_SESSION_VSID);
1583 if (ret < 0) {
1584 ALOGE("%s: csd_client_start_playback failed, error %d",
1585 __func__, ret);
1586 }
1587 }
1588
1589 return ret;
1590}
1591
1592int platform_stop_incall_music_usecase(void *platform)
1593{
1594 int ret = 0;
1595 struct platform_data *my_data = (struct platform_data *)platform;
1596
1597 if (my_data->csd != NULL) {
1598 ret = my_data->csd->stop_playback(ALL_SESSION_VSID);
1599 if (ret < 0) {
1600 ALOGE("%s: csd_client_stop_playback failed, error %d",
1601 __func__, ret);
1602 }
1603 }
1604
1605 return ret;
1606}
1607
1608void platform_get_parameters(void *platform,
1609 struct str_parms *query,
1610 struct str_parms *reply)
1611{
1612 struct platform_data *my_data = (struct platform_data *)platform;
1613 char *str = NULL;
1614 char value[256] = {0};
1615 int ret;
1616 int fluence_type;
1617
1618 ret = str_parms_get_str(query, AUDIO_PARAMETER_KEY_FLUENCE_TYPE,
1619 value, sizeof(value));
1620 if (ret >= 0) {
1621 if (my_data->fluence_type & FLUENCE_QUAD_MIC) {
1622 strlcpy(value, "fluencepro", sizeof(value));
1623 } else if (my_data->fluence_type & FLUENCE_DUAL_MIC) {
1624 strlcpy(value, "fluence", sizeof(value));
1625 } else {
1626 strlcpy(value, "none", sizeof(value));
1627 }
1628
1629 str_parms_add_str(reply, AUDIO_PARAMETER_KEY_FLUENCE_TYPE, value);
1630 }
1631
1632 memset(value, 0, sizeof(value));
1633 ret = str_parms_get_str(query, AUDIO_PARAMETER_KEY_SLOWTALK,
1634 value, sizeof(value));
1635 if (ret >= 0) {
1636 str_parms_add_str(reply, AUDIO_PARAMETER_KEY_SLOWTALK,
1637 my_data->slowtalk?"true":"false");
1638 }
1639
1640 ret = str_parms_get_str(query, AUDIO_PARAMETER_KEY_VOLUME_BOOST,
1641 value, sizeof(value));
1642 if (ret >= 0) {
1643 if (my_data->voice_feature_set == VOICE_FEATURE_SET_VOLUME_BOOST) {
1644 strlcpy(value, "on", sizeof(value));
1645 } else {
1646 strlcpy(value, "off", sizeof(value));
1647 }
1648
1649 str_parms_add_str(reply, AUDIO_PARAMETER_KEY_VOLUME_BOOST, value);
1650 }
1651
1652 ALOGV("%s: exit: returns - %s", __func__, str_parms_to_str(reply));
1653}
1654
1655/* Delay in Us */
1656int64_t platform_render_latency(audio_usecase_t usecase)
1657{
1658 switch (usecase) {
1659 case USECASE_AUDIO_PLAYBACK_DEEP_BUFFER:
1660 return DEEP_BUFFER_PLATFORM_DELAY;
1661 case USECASE_AUDIO_PLAYBACK_LOW_LATENCY:
1662 return LOW_LATENCY_PLATFORM_DELAY;
1663 default:
1664 return 0;
1665 }
1666}
1667
1668int platform_update_usecase_from_source(int source, int usecase)
1669{
1670 ALOGV("%s: input source :%d", __func__, source);
1671 if(source == AUDIO_SOURCE_FM_RX_A2DP)
1672 usecase = USECASE_AUDIO_RECORD_FM_VIRTUAL;
1673 return usecase;
1674}
1675
1676bool platform_listen_update_status(snd_device_t snd_device)
1677{
1678 if ((snd_device >= SND_DEVICE_IN_BEGIN) &&
1679 (snd_device < SND_DEVICE_IN_END) &&
1680 (snd_device != SND_DEVICE_IN_CAPTURE_FM) &&
1681 (snd_device != SND_DEVICE_IN_CAPTURE_VI_FEEDBACK))
1682 return true;
1683 else
1684 return false;
1685}