1 /*
2 * Copyright (C) 2011 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17
18 /* This HAL simulates triggers from the DSP.
19 * To send a trigger from the command line you can type:
20 *
21 * adb forward tcp:14035 tcp:14035
22 *
23 * telnet localhost 14035
24 *
25 * Commands include:
26 * ls : Lists all models that have been loaded.
27 * trig <uuid> : Sends a recognition event for the model at the given uuid
28 * update <uuid> : Sends a model update event for the model at the given uuid.
29 * close : Closes the network connection.
30 *
31 * To enable this file, you can make with command line parameter
32 * SOUND_TRIGGER_USE_STUB_MODULE=1
33 */
34
35 #define LOG_TAG "sound_trigger_hw_default"
36 #define LOG_NDEBUG 1
37 #define PARSE_BUF_LEN 1024 // Length of the parsing buffer.S
38
39 #define EVENT_RECOGNITION 1
40 #define EVENT_SOUND_MODEL 2
41
42 // The following commands work with the network port:
43 #define COMMAND_LS "ls"
44 #define COMMAND_RECOGNITION_TRIGGER "trig" // Argument: model index.
45 #define COMMAND_RECOGNITION_ABORT "abort" // Argument: model index.
46 #define COMMAND_RECOGNITION_FAILURE "fail" // Argument: model index.
47 #define COMMAND_UPDATE "update" // Argument: model index.
48 #define COMMAND_CLEAR "clear" // Removes all models from the list.
49 #define COMMAND_CLOSE "close" // Close just closes the network port, keeps thread running.
50 #define COMMAND_END "end" // Closes connection and stops the thread.
51
52 #define ERROR_BAD_COMMAND "Bad command"
53
54 #include <arpa/inet.h>
55 #include <errno.h>
56 #include <pthread.h>
57 #include <netinet/in.h>
58 #include <stdarg.h>
59 #include <stdio.h>
60 #include <stdlib.h>
61 #include <string.h>
62 #include <sys/prctl.h>
63 #include <sys/types.h>
64 #include <sys/socket.h>
65 #include <unistd.h>
66
67 #include <log/log.h>
68
69 #include <hardware/hardware.h>
70 #include <system/sound_trigger.h>
71 #include <hardware/sound_trigger.h>
72
73 static const struct sound_trigger_properties hw_properties = {
74 "The Android Open Source Project", // implementor
75 "Sound Trigger stub HAL", // description
76 1, // version
77 { 0xed7a7d60, 0xc65e, 0x11e3, 0x9be4, { 0x00, 0x02, 0xa5, 0xd5, 0xc5, 0x1b } }, // uuid
78 4, // max_sound_models
79 1, // max_key_phrases
80 1, // max_users
81 RECOGNITION_MODE_VOICE_TRIGGER, // recognition_modes
82 false, // capture_transition
83 0, // max_buffer_ms
84 true, // concurrent_capture
85 false, // trigger_in_event
86 0 // power_consumption_mw
87 };
88
89 struct recognition_context {
90 // Sound Model information, added in method load_sound_model
91 sound_model_handle_t model_handle;
92 sound_trigger_uuid_t model_uuid;
93 sound_trigger_sound_model_type_t model_type;
94 sound_model_callback_t model_callback;
95 void *model_cookie;
96
97 // Sound Model information, added in start_recognition
98 struct sound_trigger_recognition_config *config;
99 recognition_callback_t recognition_callback;
100 void *recognition_cookie;
101
102 bool model_started;
103
104 // Next recognition_context in the linked list
105 struct recognition_context *next;
106 };
107
108 char tmp_write_buffer[PARSE_BUF_LEN];
109
110 struct stub_sound_trigger_device {
111 struct sound_trigger_hw_device device;
112 pthread_mutex_t lock;
113
114 // This thread opens a port that can be used to monitor and inject events
115 // into the stub HAL.
116 pthread_t control_thread;
117
118 // Recognition contexts are stored as a linked list
119 struct recognition_context *root_model_context;
120
121 int next_sound_model_id;
122 };
123
check_uuid_equality(sound_trigger_uuid_t uuid1,sound_trigger_uuid_t uuid2)124 static bool check_uuid_equality(sound_trigger_uuid_t uuid1, sound_trigger_uuid_t uuid2) {
125 if (uuid1.timeLow != uuid2.timeLow ||
126 uuid1.timeMid != uuid2.timeMid ||
127 uuid1.timeHiAndVersion != uuid2.timeHiAndVersion ||
128 uuid1.clockSeq != uuid2.clockSeq) {
129 return false;
130 }
131 for (int i = 0; i < 6; i++) {
132 if(uuid1.node[i] != uuid2.node[i]) {
133 return false;
134 }
135 }
136 return true;
137 }
138
str_to_uuid(char * uuid_str,sound_trigger_uuid_t * uuid)139 bool str_to_uuid(char* uuid_str, sound_trigger_uuid_t* uuid) {
140 if (uuid_str == NULL) {
141 ALOGI("Invalid str_to_uuid input.");
142 return false;
143 }
144
145 int tmp[10];
146 if (sscanf(uuid_str, "%08x-%04x-%04x-%04x-%02x%02x%02x%02x%02x%02x",
147 tmp, tmp+1, tmp+2, tmp+3, tmp+4, tmp+5, tmp+6, tmp+7, tmp+8, tmp+9) < 10) {
148 ALOGI("Invalid UUID, got: %s", uuid_str);
149 return false;
150 }
151 uuid->timeLow = (unsigned int)tmp[0];
152 uuid->timeMid = (unsigned short)tmp[1];
153 uuid->timeHiAndVersion = (unsigned short)tmp[2];
154 uuid->clockSeq = (unsigned short)tmp[3];
155 uuid->node[0] = (unsigned char)tmp[4];
156 uuid->node[1] = (unsigned char)tmp[5];
157 uuid->node[2] = (unsigned char)tmp[6];
158 uuid->node[3] = (unsigned char)tmp[7];
159 uuid->node[4] = (unsigned char)tmp[8];
160 uuid->node[5] = (unsigned char)tmp[9];
161 return true;
162 }
163
write_bad_command_error(int conn_socket,char * command)164 void write_bad_command_error(int conn_socket, char* command) {
165 int num = snprintf(tmp_write_buffer, PARSE_BUF_LEN, "Bad command received: %s", command);
166 tmp_write_buffer[PARSE_BUF_LEN - 1] = '\0'; // Just to be sure.
167 tmp_write_buffer[PARSE_BUF_LEN - 2] = '\n';
168 write(conn_socket, tmp_write_buffer, num);
169 }
170
write_string(int conn_socket,char * str)171 void write_string(int conn_socket, char* str) {
172 int num = snprintf(tmp_write_buffer, PARSE_BUF_LEN, "%s", str);
173 tmp_write_buffer[PARSE_BUF_LEN - 1] = '\0';
174 tmp_write_buffer[PARSE_BUF_LEN - 2] = '\n';
175 write(conn_socket, tmp_write_buffer, num);
176 }
177
write_vastr(int conn_socket,char * format,...)178 void write_vastr(int conn_socket, char* format, ...) {
179 va_list argptr;
180 va_start(argptr, format);
181 int num = vsnprintf(tmp_write_buffer, PARSE_BUF_LEN, format, argptr);
182 va_end(argptr);
183 tmp_write_buffer[PARSE_BUF_LEN - 1] = '\0';
184 tmp_write_buffer[PARSE_BUF_LEN - 2] = '\n';
185 write(conn_socket, tmp_write_buffer, num);
186 }
187
print_uuid(sound_trigger_uuid_t uuid)188 static void print_uuid(sound_trigger_uuid_t uuid) {
189 ALOGI("%s %08x-%04x-%04x-%04x-%02x%02x%02x%02x%02x%02x", __func__, uuid.timeLow, uuid.timeMid,
190 uuid.timeHiAndVersion, uuid.clockSeq, uuid.node[0], uuid.node[1], uuid.node[2],
191 uuid.node[3], uuid.node[4], uuid.node[5]);
192 }
193
write_uuid(int conn_socket,sound_trigger_uuid_t uuid)194 static void write_uuid(int conn_socket, sound_trigger_uuid_t uuid) {
195 write_vastr(conn_socket, "%08x-%04x-%04x-%04x-%02x%02x%02x%02x%02x%02x\n", uuid.timeLow, uuid.timeMid,
196 uuid.timeHiAndVersion, uuid.clockSeq, uuid.node[0], uuid.node[1], uuid.node[2],
197 uuid.node[3], uuid.node[4], uuid.node[5]);
198 }
199
200 // Returns model at the given index, null otherwise (error, doesn't exist, etc).
201 // Note that here index starts from zero.
fetch_model_with_handle(struct stub_sound_trigger_device * stdev,sound_model_handle_t * model_handle)202 struct recognition_context* fetch_model_with_handle(
203 struct stub_sound_trigger_device* stdev, sound_model_handle_t* model_handle) {
204 ALOGI("%s", __func__);
205 struct recognition_context *model_context = NULL;
206 struct recognition_context *last_model_context = stdev->root_model_context;
207 while(last_model_context) {
208 if (last_model_context->model_handle == *model_handle) {
209 model_context = last_model_context;
210 break;
211 }
212 last_model_context = last_model_context->next;
213 }
214 return model_context;
215 }
216
217 // Returns the first model that matches the sound model UUID.
get_model_handle_with_uuid(struct stub_sound_trigger_device * stdev,sound_trigger_uuid_t uuid)218 static sound_model_handle_t* get_model_handle_with_uuid(struct stub_sound_trigger_device* stdev,
219 sound_trigger_uuid_t uuid) {
220 sound_model_handle_t* model_handle_str = NULL;
221 struct recognition_context *last_model_context = stdev->root_model_context;
222 while(last_model_context) {
223 if (check_uuid_equality(last_model_context->model_uuid, uuid)) {
224 model_handle_str = &last_model_context->model_handle;
225 break;
226 }
227 last_model_context = last_model_context->next;
228 }
229 return model_handle_str;
230 }
231
232 /* Will reuse ids when overflow occurs */
generate_sound_model_handle(const struct sound_trigger_hw_device * dev)233 static sound_model_handle_t generate_sound_model_handle(const struct sound_trigger_hw_device *dev) {
234 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
235 int new_id = stdev->next_sound_model_id;
236 ++stdev->next_sound_model_id;
237 if (stdev->next_sound_model_id == 0) {
238 stdev->next_sound_model_id = 1;
239 }
240 return (sound_model_handle_t) new_id;
241 }
242
243 bool parse_socket_data(int conn_socket, struct stub_sound_trigger_device* stdev);
244 static void unload_all_sound_models(struct stub_sound_trigger_device *stdev);
245
sound_trigger_keyphrase_event_alloc(sound_model_handle_t handle,struct sound_trigger_recognition_config * config,int recognition_status)246 static char *sound_trigger_keyphrase_event_alloc(sound_model_handle_t handle,
247 struct sound_trigger_recognition_config *config,
248 int recognition_status) {
249 struct sound_trigger_phrase_recognition_event *event =
250 calloc(1, sizeof(struct sound_trigger_phrase_recognition_event));
251 if (!event)
252 return NULL;
253 event->common.status = recognition_status;
254 event->common.type = SOUND_MODEL_TYPE_KEYPHRASE;
255 event->common.model = handle;
256
257 if (config) {
258 unsigned int i;
259
260 event->num_phrases = config->num_phrases;
261 if (event->num_phrases > SOUND_TRIGGER_MAX_PHRASES)
262 event->num_phrases = SOUND_TRIGGER_MAX_PHRASES;
263 for (i=0; i < event->num_phrases; i++)
264 memcpy(&event->phrase_extras[i],
265 &config->phrases[i],
266 sizeof(struct sound_trigger_phrase_recognition_extra));
267 }
268
269 event->num_phrases = 1;
270 event->phrase_extras[0].confidence_level = 100;
271 event->phrase_extras[0].num_levels = 1;
272 event->phrase_extras[0].levels[0].level = 100;
273 event->phrase_extras[0].levels[0].user_id = 0;
274 // Signify that all the data is comming through streaming, not through the buffer.
275 event->common.capture_available = true;
276 event->common.audio_config = AUDIO_CONFIG_INITIALIZER;
277 event->common.audio_config.sample_rate = 16000;
278 event->common.audio_config.channel_mask = AUDIO_CHANNEL_IN_MONO;
279 event->common.audio_config.format = AUDIO_FORMAT_PCM_16_BIT;
280 return (char*) event;
281 }
282
sound_trigger_generic_event_alloc(sound_model_handle_t handle,struct sound_trigger_recognition_config * config,int recognition_status)283 static char *sound_trigger_generic_event_alloc(sound_model_handle_t handle,
284 struct sound_trigger_recognition_config *config,
285 int recognition_status) {
286 struct sound_trigger_generic_recognition_event *event =
287 calloc(1, sizeof(struct sound_trigger_generic_recognition_event));
288 if (!event)
289 return NULL;
290 event->common.status = recognition_status;
291 event->common.type = SOUND_MODEL_TYPE_GENERIC;
292 event->common.model = handle;
293
294 // Signify that all the data is comming through streaming, not through the buffer.
295 event->common.capture_available = true;
296 event->common.audio_config = AUDIO_CONFIG_INITIALIZER;
297 event->common.audio_config.sample_rate = 16000;
298 event->common.audio_config.channel_mask = AUDIO_CHANNEL_IN_MONO;
299 event->common.audio_config.format = AUDIO_FORMAT_PCM_16_BIT;
300 return (char*) event;
301 }
302
send_event_with_handle(sound_model_handle_t * model_handle_str,struct stub_sound_trigger_device * stdev,int event_type,int status)303 void send_event_with_handle(sound_model_handle_t* model_handle_str,
304 struct stub_sound_trigger_device* stdev, int event_type,
305 int status) {
306 ALOGI("%s", __func__);
307 struct recognition_context *model_context = fetch_model_with_handle(stdev, model_handle_str);
308 if (model_context) {
309 if (event_type == EVENT_RECOGNITION) {
310 if (model_context->recognition_callback == NULL) {
311 ALOGI("%s No matching callback", __func__);
312 return;
313 }
314
315 if (model_context->model_type == SOUND_MODEL_TYPE_KEYPHRASE) {
316 struct sound_trigger_phrase_recognition_event *event;
317 event = (struct sound_trigger_phrase_recognition_event *)
318 sound_trigger_keyphrase_event_alloc(model_context->model_handle,
319 model_context->config, status);
320 if (event) {
321 model_context->recognition_callback(event, model_context->recognition_cookie);
322 free(event);
323 }
324 } else if (model_context->model_type == SOUND_MODEL_TYPE_GENERIC) {
325 struct sound_trigger_generic_recognition_event *event;
326 event = (struct sound_trigger_generic_recognition_event *)
327 sound_trigger_generic_event_alloc(model_context->model_handle,
328 model_context->config, status);
329 if (event) {
330 model_context->recognition_callback(event, model_context->recognition_cookie);
331 free(event);
332 }
333 } else {
334 ALOGI("Unknown Sound Model Type, No Event to Send");
335 }
336 } else if (event_type == EVENT_SOUND_MODEL) {
337 struct sound_trigger_model_event *event =
338 calloc(1, sizeof(struct sound_trigger_model_event));
339 if (!event) {
340 ALOGW("%s Could not allocate event", __func__);
341 return;
342 }
343
344 event->status = SOUND_MODEL_STATUS_UPDATED;
345 event->model = model_context->model_handle;
346 if (event) {
347 model_context->model_callback(&event, model_context->model_cookie);
348 free(event);
349 }
350 }
351 } else {
352 ALOGI("No model for this handle");
353 }
354 }
355
send_event(int conn_socket,struct stub_sound_trigger_device * stdev,int event_type,int status)356 static void send_event(int conn_socket, struct stub_sound_trigger_device* stdev, int event_type,
357 int status) {
358 char* model_uuid_str = strtok(NULL, " \r\n");
359 sound_trigger_uuid_t model_uuid;
360 if (str_to_uuid(model_uuid_str, &model_uuid)) {
361 sound_model_handle_t* model_handle_str = get_model_handle_with_uuid(stdev, model_uuid);
362 if (model_handle_str == NULL) {
363 ALOGI("%s Bad sound model handle.", __func__);
364 write_string(conn_socket, "Bad sound model handle.\n");
365 return;
366 }
367 send_event_with_handle(model_handle_str, stdev, event_type, status);
368 } else {
369 ALOGI("%s Not a valid UUID", __func__);
370 write_string(conn_socket, "Not a valid UUID.\n");
371 }
372 }
373
recognition_callback_exists(struct stub_sound_trigger_device * stdev)374 static bool recognition_callback_exists(struct stub_sound_trigger_device *stdev) {
375 bool callback_found = false;
376 if (stdev->root_model_context) {
377 struct recognition_context *current_model_context = stdev->root_model_context;
378 while(current_model_context) {
379 if (current_model_context->recognition_callback != NULL) {
380 callback_found = true;
381 break;
382 }
383 current_model_context = current_model_context->next;
384 }
385 }
386 return callback_found;
387 }
388
get_model_context(struct stub_sound_trigger_device * stdev,sound_model_handle_t handle)389 static struct recognition_context * get_model_context(struct stub_sound_trigger_device *stdev,
390 sound_model_handle_t handle) {
391 struct recognition_context *model_context = NULL;
392 if (stdev->root_model_context) {
393 struct recognition_context *current_model_context = stdev->root_model_context;
394 while(current_model_context) {
395 if (current_model_context->model_handle == handle) {
396 model_context = current_model_context;
397 break;
398 }
399 current_model_context = current_model_context->next;
400 }
401 }
402 return model_context;
403 }
404
control_thread_loop(void * context)405 static void *control_thread_loop(void *context) {
406 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)context;
407 struct sockaddr_in incoming_info;
408 struct sockaddr_in self_info;
409 int self_socket;
410 socklen_t sock_size = sizeof(struct sockaddr_in);
411 memset(&self_info, 0, sizeof(self_info));
412 self_info.sin_family = AF_INET;
413 self_info.sin_addr.s_addr = htonl(INADDR_ANY);
414 self_info.sin_port = htons(14035);
415
416 bool exit = false;
417 while(!exit) {
418 int received_count;
419 int requested_count = 2;
420 char buffer[requested_count];
421 ALOGE("Opening socket");
422 self_socket = socket(AF_INET, SOCK_STREAM, 0);
423 if (self_socket < 0) {
424 ALOGE("Error on socket creation: %s", strerror(errno));
425 exit = true;
426 } else {
427 ALOGI("Socket created");
428 }
429
430 int reuse = 1;
431 if (setsockopt(self_socket, SOL_SOCKET, SO_REUSEADDR, (const char*)&reuse, sizeof(reuse)) < 0) {
432 ALOGE("setsockopt(SO_REUSEADDR) failed");
433 }
434
435 int bind_result = bind(self_socket, (struct sockaddr *)&self_info, sizeof(struct sockaddr));
436 if (bind_result < 0) {
437 ALOGE("Error on bind");
438 exit = true;
439 }
440
441 int listen_result = listen(self_socket, 1);
442 if (listen_result < 0) {
443 ALOGE("Error on Listen");
444 exit = true;
445 }
446
447 while(!exit) {
448 int con_socket = accept(self_socket, (struct sockaddr *)&incoming_info, &sock_size);
449 if (!con_socket) {
450 ALOGE("Lost socket, cannot send trigger");
451 break;
452 }
453 ALOGI("Connection from %s", inet_ntoa(incoming_info.sin_addr));
454 if (!parse_socket_data(con_socket, stdev)) {
455 ALOGI("Done processing commands over network. Stopping thread.");
456 exit = true;
457 }
458 close(con_socket);
459 }
460 ALOGE("Closing socket");
461 close(self_socket);
462 }
463
464 return NULL;
465 }
466
list_models(int conn_socket,char * buffer,struct stub_sound_trigger_device * stdev)467 void list_models(int conn_socket, char* buffer,
468 struct stub_sound_trigger_device* stdev) {
469 ALOGI("%s", __func__);
470 struct recognition_context *last_model_context = stdev->root_model_context;
471 unsigned int model_index = 0;
472 write_string(conn_socket, "-----------------------\n");
473 if (!last_model_context) {
474 ALOGI("ZERO Models exist.");
475 write_string(conn_socket, "Zero models exist.\n");
476 }
477 while (last_model_context) {
478 write_vastr(conn_socket, "Model Index: %d\n", model_index);
479 ALOGI("Model Index: %d", model_index);
480 write_vastr(conn_socket, "Model handle: %d\n", last_model_context->model_handle);
481 ALOGI("Model handle: %d", last_model_context->model_handle);
482 write_uuid(conn_socket, last_model_context->model_uuid);
483 print_uuid(last_model_context->model_uuid);
484 sound_trigger_sound_model_type_t model_type = last_model_context->model_type;
485
486 if (model_type == SOUND_MODEL_TYPE_KEYPHRASE) {
487 write_string(conn_socket, "Keyphrase sound Model.\n");
488 ALOGI("Keyphrase sound Model.");
489 } else if (model_type == SOUND_MODEL_TYPE_GENERIC) {
490 write_string(conn_socket, "Generic sound Model.\n");
491 ALOGI("Generic sound Model.");
492 } else {
493 write_vastr(conn_socket, "Unknown sound model type: %d\n", model_type);
494 ALOGI("Unknown sound model type: %d", model_type);
495 }
496 if (last_model_context->model_started) {
497 write_string(conn_socket, "Model started.\n");
498 ALOGI("Model started.\n");
499 } else {
500 write_string(conn_socket, "Model stopped.\n");
501 ALOGI("Model stopped.\n");
502 }
503 write_string(conn_socket, "-----------------------\n\n");
504 ALOGI("----\n\n");
505 last_model_context = last_model_context->next;
506 model_index++;
507 }
508 }
509
510 // Gets the next word from buffer, replaces '\n' or ' ' with '\0'.
get_command(char * buffer)511 char* get_command(char* buffer) {
512 char* command = strtok(buffer, " ");
513 char* newline = strchr(command, '\n');
514 if (newline != NULL) {
515 *newline = '\0';
516 }
517 return command;
518 }
519
520 // Parses data coming in from the local socket, executes commands. Returns when
521 // done. Return code indicates whether the server should continue listening or
522 // abort (true if continue listening).
parse_socket_data(int conn_socket,struct stub_sound_trigger_device * stdev)523 bool parse_socket_data(int conn_socket, struct stub_sound_trigger_device* stdev) {
524 ALOGI("Calling parse_socket_data");
525 bool input_done = false;
526 char buffer[PARSE_BUF_LEN];
527 FILE* input_fp = fdopen(conn_socket, "r");
528 bool continue_listening = true;
529
530 // Note: Since we acquire a lock inside this loop, do not use break or other
531 // exit methods without releasing this lock.
532 write_string(conn_socket, "\n>>> ");
533 while(!input_done) {
534 if (fgets(buffer, PARSE_BUF_LEN, input_fp) != NULL) {
535 pthread_mutex_lock(&stdev->lock);
536 char* command = strtok(buffer, " \r\n");
537 if (command == NULL) {
538 write_bad_command_error(conn_socket, command);
539 } else if (strncmp(command, COMMAND_LS, 2) == 0) {
540 list_models(conn_socket, buffer, stdev);
541 } else if (strcmp(command, COMMAND_RECOGNITION_TRIGGER) == 0) {
542 send_event(conn_socket, stdev, EVENT_RECOGNITION, RECOGNITION_STATUS_SUCCESS);
543 } else if (strcmp(command, COMMAND_RECOGNITION_ABORT) == 0) {
544 send_event(conn_socket, stdev, EVENT_RECOGNITION, RECOGNITION_STATUS_ABORT);
545 } else if (strcmp(command, COMMAND_RECOGNITION_FAILURE) == 0) {
546 send_event(conn_socket, stdev, EVENT_RECOGNITION, RECOGNITION_STATUS_FAILURE);
547 } else if (strcmp(command, COMMAND_UPDATE) == 0) {
548 send_event(conn_socket, stdev, EVENT_SOUND_MODEL, SOUND_MODEL_STATUS_UPDATED);
549 } else if (strncmp(command, COMMAND_CLEAR, 5) == 0) {
550 unload_all_sound_models(stdev);
551 } else if (strncmp(command, COMMAND_CLOSE, 5) == 0) {
552 ALOGI("Closing this connection.");
553 write_string(conn_socket, "Closing this connection.");
554 input_done = true;
555 } else if (strncmp(command, COMMAND_END, 3) == 0) {
556 ALOGI("End command received.");
557 write_string(conn_socket, "End command received. Stopping connection.");
558 continue_listening = false;
559 input_done = true;
560 } else {
561 write_vastr(conn_socket, "\nBad command %s.\n\n", command);
562 }
563 pthread_mutex_unlock(&stdev->lock);
564 } else {
565 ALOGI("parse_socket_data done (got null)");
566 input_done = true; // break.
567 }
568 write_string(conn_socket, "\n>>> ");
569 }
570 return continue_listening;
571 }
572
send_loop_kill_signal()573 static void send_loop_kill_signal() {
574 ALOGI("Sending loop thread kill signal");
575 int self_socket = socket(AF_INET, SOCK_STREAM, 0);
576 struct sockaddr_in remote_info;
577 memset(&remote_info, 0, sizeof(remote_info));
578 remote_info.sin_family = AF_INET;
579 remote_info.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
580 remote_info.sin_port = htons(14035);
581 if (connect(self_socket, (struct sockaddr *)&remote_info, sizeof(struct sockaddr)) == 0) {
582 send(self_socket, COMMAND_END, 3, 0);
583 } else {
584 ALOGI("Could not connect");
585 }
586 close(self_socket);
587 ALOGI("Sent loop thread kill signal");
588 }
589
stdev_get_properties(const struct sound_trigger_hw_device * dev,struct sound_trigger_properties * properties)590 static int stdev_get_properties(const struct sound_trigger_hw_device *dev,
591 struct sound_trigger_properties *properties) {
592 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
593
594 ALOGI("%s", __func__);
595 if (properties == NULL)
596 return -EINVAL;
597 memcpy(properties, &hw_properties, sizeof(struct sound_trigger_properties));
598 return 0;
599 }
600
stdev_load_sound_model(const struct sound_trigger_hw_device * dev,struct sound_trigger_sound_model * sound_model,sound_model_callback_t callback,void * cookie,sound_model_handle_t * handle)601 static int stdev_load_sound_model(const struct sound_trigger_hw_device *dev,
602 struct sound_trigger_sound_model *sound_model,
603 sound_model_callback_t callback,
604 void *cookie,
605 sound_model_handle_t *handle) {
606 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
607 ALOGI("%s stdev %p", __func__, stdev);
608 int status = 0;
609 pthread_mutex_lock(&stdev->lock);
610
611 if (handle == NULL || sound_model == NULL) {
612 pthread_mutex_unlock(&stdev->lock);
613 return -EINVAL;
614 }
615 if (sound_model->data_size == 0 ||
616 sound_model->data_offset < sizeof(struct sound_trigger_sound_model)) {
617 pthread_mutex_unlock(&stdev->lock);
618 return -EINVAL;
619 }
620
621 struct recognition_context *model_context;
622 model_context = malloc(sizeof(struct recognition_context));
623 if(!model_context) {
624 ALOGW("Could not allocate recognition_context");
625 pthread_mutex_unlock(&stdev->lock);
626 return -ENOSYS;
627 }
628
629 // Add the new model context to the recognition_context linked list
630 if (stdev->root_model_context) {
631 // Find the tail
632 struct recognition_context *current_model_context = stdev->root_model_context;
633 unsigned int model_count = 0;
634 while(current_model_context->next) {
635 current_model_context = current_model_context->next;
636 model_count++;
637 if (model_count >= hw_properties.max_sound_models) {
638 ALOGW("Can't load model: reached max sound model limit");
639 free(model_context);
640 pthread_mutex_unlock(&stdev->lock);
641 return -ENOSYS;
642 }
643 }
644 current_model_context->next = model_context;
645 } else {
646 stdev->root_model_context = model_context;
647 }
648
649 model_context->model_handle = generate_sound_model_handle(dev);
650 *handle = model_context->model_handle;
651 model_context->model_type = sound_model->type;
652
653 char *data = (char *)sound_model + sound_model->data_offset;
654 ALOGI("%s data size %d data %d - %d", __func__,
655 sound_model->data_size, data[0], data[sound_model->data_size - 1]);
656 model_context->model_uuid = sound_model->uuid;
657 model_context->model_callback = callback;
658 model_context->model_cookie = cookie;
659 model_context->config = NULL;
660 model_context->recognition_callback = NULL;
661 model_context->recognition_cookie = NULL;
662 model_context->next = NULL;
663 model_context->model_started = false;
664 ALOGI("Sound model loaded: Handle %d ", *handle);
665
666 pthread_mutex_unlock(&stdev->lock);
667 return status;
668 }
669
unload_all_sound_models(struct stub_sound_trigger_device * stdev)670 static void unload_all_sound_models(struct stub_sound_trigger_device *stdev) {
671 ALOGI("%s", __func__);
672 struct recognition_context *model_context = stdev->root_model_context;
673 stdev->root_model_context = NULL;
674 pthread_mutex_lock(&stdev->lock);
675 while (model_context) {
676 ALOGI("Deleting model with handle: %d", model_context->model_handle);
677 struct recognition_context *temp = model_context;
678 model_context = model_context->next;
679 free(temp->config);
680 free(temp);
681 }
682 pthread_mutex_unlock(&stdev->lock);
683 }
684
stdev_unload_sound_model(const struct sound_trigger_hw_device * dev,sound_model_handle_t handle)685 static int stdev_unload_sound_model(const struct sound_trigger_hw_device *dev,
686 sound_model_handle_t handle) {
687 // If recognizing, stop_recognition must be called for a sound model before unload_sound_model
688 ALOGI("%s", __func__);
689 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
690 int status = 0;
691 ALOGI("unload_sound_model:%d", handle);
692 pthread_mutex_lock(&stdev->lock);
693
694 struct recognition_context *model_context = NULL;
695 struct recognition_context *previous_model_context = NULL;
696 if (stdev->root_model_context) {
697 struct recognition_context *current_model_context = stdev->root_model_context;
698 while(current_model_context) {
699 if (current_model_context->model_handle == handle) {
700 model_context = current_model_context;
701 break;
702 }
703 previous_model_context = current_model_context;
704 current_model_context = current_model_context->next;
705 }
706 }
707 if (!model_context) {
708 ALOGW("Can't find sound model handle %d in registered list", handle);
709 pthread_mutex_unlock(&stdev->lock);
710 return -ENOSYS;
711 }
712 if (previous_model_context) {
713 previous_model_context->next = model_context->next;
714 } else {
715 stdev->root_model_context = model_context->next;
716 }
717 free(model_context->config);
718 free(model_context);
719 pthread_mutex_unlock(&stdev->lock);
720 return status;
721 }
722
stdev_start_recognition(const struct sound_trigger_hw_device * dev,sound_model_handle_t handle,const struct sound_trigger_recognition_config * config,recognition_callback_t callback,void * cookie)723 static int stdev_start_recognition(const struct sound_trigger_hw_device *dev,
724 sound_model_handle_t handle,
725 const struct sound_trigger_recognition_config *config,
726 recognition_callback_t callback,
727 void *cookie) {
728 ALOGI("%s", __func__);
729 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
730 pthread_mutex_lock(&stdev->lock);
731
732 /* If other models running with callbacks, don't start trigger thread */
733 bool other_callbacks_found = recognition_callback_exists(stdev);
734
735 struct recognition_context *model_context = get_model_context(stdev, handle);
736 if (!model_context) {
737 ALOGW("Can't find sound model handle %d in registered list", handle);
738 pthread_mutex_unlock(&stdev->lock);
739 return -ENOSYS;
740 }
741
742 free(model_context->config);
743 model_context->config = NULL;
744 if (config) {
745 model_context->config = malloc(sizeof(*config));
746 if (!model_context->config) {
747 pthread_mutex_unlock(&stdev->lock);
748 return -ENOMEM;
749 }
750 memcpy(model_context->config, config, sizeof(*config));
751 }
752 model_context->recognition_callback = callback;
753 model_context->recognition_cookie = cookie;
754 model_context->model_started = true;
755
756 pthread_mutex_unlock(&stdev->lock);
757 ALOGI("%s done for handle %d", __func__, handle);
758 return 0;
759 }
760
stdev_stop_recognition(const struct sound_trigger_hw_device * dev,sound_model_handle_t handle)761 static int stdev_stop_recognition(const struct sound_trigger_hw_device *dev,
762 sound_model_handle_t handle) {
763 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
764 ALOGI("%s", __func__);
765 pthread_mutex_lock(&stdev->lock);
766
767 struct recognition_context *model_context = get_model_context(stdev, handle);
768 if (!model_context) {
769 ALOGW("Can't find sound model handle %d in registered list", handle);
770 pthread_mutex_unlock(&stdev->lock);
771 return -ENOSYS;
772 }
773
774 free(model_context->config);
775 model_context->config = NULL;
776 model_context->recognition_callback = NULL;
777 model_context->recognition_cookie = NULL;
778 model_context->model_started = false;
779
780 pthread_mutex_unlock(&stdev->lock);
781 ALOGI("%s done for handle %d", __func__, handle);
782
783 return 0;
784 }
785
stdev_stop_all_recognitions(const struct sound_trigger_hw_device * dev)786 static int stdev_stop_all_recognitions(const struct sound_trigger_hw_device *dev) {
787 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
788 ALOGI("%s", __func__);
789 pthread_mutex_lock(&stdev->lock);
790
791 struct recognition_context *model_context = stdev->root_model_context;
792 while (model_context) {
793 free(model_context->config);
794 model_context->config = NULL;
795 model_context->recognition_callback = NULL;
796 model_context->recognition_cookie = NULL;
797 model_context->model_started = false;
798 ALOGI("%s stopped handle %d", __func__, model_context->model_handle);
799
800 model_context = model_context->next;
801 }
802
803 pthread_mutex_unlock(&stdev->lock);
804
805 return 0;
806 }
807
stdev_get_model_state(const struct sound_trigger_hw_device * dev,sound_model_handle_t handle)808 static int stdev_get_model_state(const struct sound_trigger_hw_device *dev,
809 sound_model_handle_t handle) {
810 int ret = 0;
811 struct stub_sound_trigger_device *stdev = (struct stub_sound_trigger_device *)dev;
812 ALOGI("%s", __func__);
813 pthread_mutex_lock(&stdev->lock);
814
815 struct recognition_context *model_context = get_model_context(stdev, handle);
816 if (!model_context) {
817 ALOGW("Can't find sound model handle %d in registered list", handle);
818 ret = -ENOSYS;
819 goto exit;
820 }
821
822 if (!model_context->model_started) {
823 ALOGW("Sound model %d not started", handle);
824 ret = -ENOSYS;
825 goto exit;
826 }
827
828 if (model_context->recognition_callback == NULL) {
829 ALOGW("Sound model %d not initialized", handle);
830 ret = -ENOSYS;
831 goto exit;
832 }
833
834 // TODO(mdooley): trigger recognition event
835
836 exit:
837 pthread_mutex_unlock(&stdev->lock);
838 ALOGI("%s done for handle %d", __func__, handle);
839
840 return ret;
841 }
842
843 __attribute__ ((visibility ("default")))
sound_trigger_open_for_streaming()844 int sound_trigger_open_for_streaming() {
845 int ret = 0;
846 return ret;
847 }
848
849 __attribute__ ((visibility ("default")))
sound_trigger_read_samples(int audio_handle,void * buffer,size_t buffer_len)850 size_t sound_trigger_read_samples(int audio_handle, void *buffer, size_t buffer_len) {
851 size_t ret = 0;
852 return ret;
853 }
854
855 __attribute__ ((visibility ("default")))
sound_trigger_close_for_streaming(int audio_handle __unused)856 int sound_trigger_close_for_streaming(int audio_handle __unused) {
857 return 0;
858 }
859
stdev_close(hw_device_t * device)860 static int stdev_close(hw_device_t *device) {
861 // TODO: Implement the ability to stop the control thread. Since this is a
862 // test hal, we have skipped implementing this for now. A possible method
863 // would register a signal handler for the control thread so that any
864 // blocking socket calls can be interrupted. We would send that signal here
865 // to interrupt and quit the thread.
866 free(device);
867 return 0;
868 }
869
stdev_open(const hw_module_t * module,const char * name,hw_device_t ** device)870 static int stdev_open(const hw_module_t* module, const char* name,
871 hw_device_t** device) {
872 struct stub_sound_trigger_device *stdev;
873 int ret;
874
875 if (strcmp(name, SOUND_TRIGGER_HARDWARE_INTERFACE) != 0)
876 return -EINVAL;
877
878 stdev = calloc(1, sizeof(struct stub_sound_trigger_device));
879 if (!stdev)
880 return -ENOMEM;
881
882 stdev->next_sound_model_id = 1;
883 stdev->root_model_context = NULL;
884
885 stdev->device.common.tag = HARDWARE_DEVICE_TAG;
886 stdev->device.common.version = SOUND_TRIGGER_DEVICE_API_VERSION_1_1;
887 stdev->device.common.module = (struct hw_module_t *) module;
888 stdev->device.common.close = stdev_close;
889 stdev->device.get_properties = stdev_get_properties;
890 stdev->device.load_sound_model = stdev_load_sound_model;
891 stdev->device.unload_sound_model = stdev_unload_sound_model;
892 stdev->device.start_recognition = stdev_start_recognition;
893 stdev->device.stop_recognition = stdev_stop_recognition;
894 stdev->device.stop_all_recognitions = stdev_stop_all_recognitions;
895 stdev->device.get_model_state = stdev_get_model_state;
896
897 pthread_mutex_init(&stdev->lock, (const pthread_mutexattr_t *) NULL);
898
899 *device = &stdev->device.common;
900
901 pthread_create(&stdev->control_thread, (const pthread_attr_t *) NULL,
902 control_thread_loop, stdev);
903 ALOGI("Starting control thread for the stub hal.");
904
905 return 0;
906 }
907
908 static struct hw_module_methods_t hal_module_methods = {
909 .open = stdev_open,
910 };
911
912 struct sound_trigger_module HAL_MODULE_INFO_SYM = {
913 .common = {
914 .tag = HARDWARE_MODULE_TAG,
915 .module_api_version = SOUND_TRIGGER_MODULE_API_VERSION_1_0,
916 .hal_api_version = HARDWARE_HAL_API_VERSION,
917 .id = SOUND_TRIGGER_HARDWARE_MODULE_ID,
918 .name = "Default sound trigger HAL",
919 .author = "The Android Open Source Project",
920 .methods = &hal_module_methods,
921 },
922 };
923