1/*
2 * Copyright (C) 2013 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#include <hardware/sensors.h>
18#include <fcntl.h>
19#include <errno.h>
20#include <dirent.h>
21#include <math.h>
22#include <poll.h>
23#include <pthread.h>
24#include <cutils/atomic.h>
25
26#define LOG_NDEBUG 1
27#include <cutils/log.h>
28
29#include <vector>
30#include <map>
31#include <string>
32
33#include <stdio.h>
34#include <dlfcn.h>
35#include <SensorEventQueue.h>
36
37
38static const char* CONFIG_FILENAME = "/system/etc/sensors/hals.conf";
39static const char* LEGAL_SUBHAL_PATH_PREFIX = "/system/lib/hw/";
40static const char* LEGAL_SUBHAL_ALTERNATE_PATH_PREFIX = "/system/vendor/lib/";
41static const int MAX_CONF_LINE_LENGTH = 1024;
42
43static pthread_mutex_t init_modules_mutex = PTHREAD_MUTEX_INITIALIZER;
44static pthread_mutex_t init_sensors_mutex = PTHREAD_MUTEX_INITIALIZER;
45
46// This mutex is shared by all queues
47static pthread_mutex_t queue_mutex = PTHREAD_MUTEX_INITIALIZER;
48
49// Used to pause the multihal poll(). Broadcasted by sub-polling tasks if waiting_for_data.
50static pthread_cond_t data_available_cond = PTHREAD_COND_INITIALIZER;
51bool waiting_for_data = false;
52
53/*
54 * Vector of sub modules, whose indexes are referred to in this file as module_index.
55 */
56static std::vector<hw_module_t *> *sub_hw_modules = NULL;
57
58/*
59 * Comparable class that globally identifies a sensor, by module index and local handle.
60 * A module index is the module's index in sub_hw_modules.
61 * A local handle is the handle the sub-module assigns to a sensor.
62 */
63struct FullHandle {
64    int moduleIndex;
65    int localHandle;
66
67    bool operator<(const FullHandle &that) const {
68        if (moduleIndex < that.moduleIndex) {
69            return true;
70        }
71        if (moduleIndex > that.moduleIndex) {
72            return false;
73        }
74        return localHandle < that.localHandle;
75    }
76
77    bool operator==(const FullHandle &that) const {
78        return moduleIndex == that.moduleIndex && localHandle == that.localHandle;
79    }
80};
81
82std::map<int, FullHandle> global_to_full;
83std::map<FullHandle, int> full_to_global;
84int next_global_handle = 1;
85
86static int assign_global_handle(int module_index, int local_handle) {
87    int global_handle = next_global_handle++;
88    FullHandle full_handle;
89    full_handle.moduleIndex = module_index;
90    full_handle.localHandle = local_handle;
91    full_to_global[full_handle] = global_handle;
92    global_to_full[global_handle] = full_handle;
93    return global_handle;
94}
95
96// Returns the local handle, or -1 if it does not exist.
97static int get_local_handle(int global_handle) {
98    if (global_to_full.count(global_handle) == 0) {
99        ALOGW("Unknown global_handle %d", global_handle);
100        return -1;
101    }
102    return global_to_full[global_handle].localHandle;
103}
104
105// Returns the sub_hw_modules index of the module that contains the sensor associates with this
106// global_handle, or -1 if that global_handle does not exist.
107static int get_module_index(int global_handle) {
108    if (global_to_full.count(global_handle) == 0) {
109        ALOGW("Unknown global_handle %d", global_handle);
110        return -1;
111    }
112    FullHandle f = global_to_full[global_handle];
113    ALOGV("FullHandle for global_handle %d: moduleIndex %d, localHandle %d",
114            global_handle, f.moduleIndex, f.localHandle);
115    return f.moduleIndex;
116}
117
118// Returns the global handle for this full_handle, or -1 if the full_handle is unknown.
119static int get_global_handle(FullHandle* full_handle) {
120    int global_handle = -1;
121    if (full_to_global.count(*full_handle)) {
122        global_handle = full_to_global[*full_handle];
123    } else {
124        ALOGW("Unknown FullHandle: moduleIndex %d, localHandle %d",
125            full_handle->moduleIndex, full_handle->localHandle);
126    }
127    return global_handle;
128}
129
130static const int SENSOR_EVENT_QUEUE_CAPACITY = 20;
131
132struct TaskContext {
133  sensors_poll_device_t* device;
134  SensorEventQueue* queue;
135};
136
137void *writerTask(void* ptr) {
138    ALOGV("writerTask STARTS");
139    TaskContext* ctx = (TaskContext*)ptr;
140    sensors_poll_device_t* device = ctx->device;
141    SensorEventQueue* queue = ctx->queue;
142    sensors_event_t* buffer;
143    int eventsPolled;
144    while (1) {
145        pthread_mutex_lock(&queue_mutex);
146        if (queue->waitForSpace(&queue_mutex)) {
147            ALOGV("writerTask waited for space");
148        }
149        int bufferSize = queue->getWritableRegion(SENSOR_EVENT_QUEUE_CAPACITY, &buffer);
150        // Do blocking poll outside of lock
151        pthread_mutex_unlock(&queue_mutex);
152
153        ALOGV("writerTask before poll() - bufferSize = %d", bufferSize);
154        eventsPolled = device->poll(device, buffer, bufferSize);
155        ALOGV("writerTask poll() got %d events.", eventsPolled);
156        if (eventsPolled == 0) {
157            continue;
158        }
159        pthread_mutex_lock(&queue_mutex);
160        queue->markAsWritten(eventsPolled);
161        ALOGV("writerTask wrote %d events", eventsPolled);
162        if (waiting_for_data) {
163            ALOGV("writerTask - broadcast data_available_cond");
164            pthread_cond_broadcast(&data_available_cond);
165        }
166        pthread_mutex_unlock(&queue_mutex);
167    }
168    // never actually returns
169    return NULL;
170}
171
172/*
173 * Cache of all sensors, with original handles replaced by global handles.
174 * This will be handled to get_sensors_list() callers.
175 */
176static struct sensor_t const* global_sensors_list = NULL;
177static int global_sensors_count = -1;
178
179/*
180 * Extends a sensors_poll_device_1 by including all the sub-module's devices.
181 */
182struct sensors_poll_context_t {
183    /*
184     * This is the device that SensorDevice.cpp uses to make API calls
185     * to the multihal, which fans them out to sub-HALs.
186     */
187    sensors_poll_device_1 proxy_device; // must be first
188
189    void addSubHwDevice(struct hw_device_t*);
190
191    int activate(int handle, int enabled);
192    int setDelay(int handle, int64_t ns);
193    int poll(sensors_event_t* data, int count);
194    int batch(int handle, int flags, int64_t period_ns, int64_t timeout);
195    int flush(int handle);
196    int close();
197
198    std::vector<hw_device_t*> sub_hw_devices;
199    std::vector<SensorEventQueue*> queues;
200    std::vector<pthread_t> threads;
201    int nextReadIndex;
202
203    sensors_poll_device_t* get_v0_device_by_handle(int global_handle);
204    sensors_poll_device_1_t* get_v1_device_by_handle(int global_handle);
205    int get_device_version_by_handle(int global_handle);
206
207    void copy_event_remap_handle(sensors_event_t* src, sensors_event_t* dest, int sub_index);
208};
209
210void sensors_poll_context_t::addSubHwDevice(struct hw_device_t* sub_hw_device) {
211    ALOGV("addSubHwDevice");
212    this->sub_hw_devices.push_back(sub_hw_device);
213
214    SensorEventQueue *queue = new SensorEventQueue(SENSOR_EVENT_QUEUE_CAPACITY);
215    this->queues.push_back(queue);
216
217    TaskContext* taskContext = new TaskContext();
218    taskContext->device = (sensors_poll_device_t*) sub_hw_device;
219    taskContext->queue = queue;
220
221    pthread_t writerThread;
222    pthread_create(&writerThread, NULL, writerTask, taskContext);
223    this->threads.push_back(writerThread);
224}
225
226// Returns the device pointer, or NULL if the global handle is invalid.
227sensors_poll_device_t* sensors_poll_context_t::get_v0_device_by_handle(int global_handle) {
228    int sub_index = get_module_index(global_handle);
229    if (sub_index < 0 || sub_index >= this->sub_hw_devices.size()) {
230        return NULL;
231    }
232    return (sensors_poll_device_t*) this->sub_hw_devices[sub_index];
233}
234
235// Returns the device pointer, or NULL if the global handle is invalid.
236sensors_poll_device_1_t* sensors_poll_context_t::get_v1_device_by_handle(int global_handle) {
237    int sub_index = get_module_index(global_handle);
238    if (sub_index < 0 || sub_index >= this->sub_hw_devices.size()) {
239        return NULL;
240    }
241    return (sensors_poll_device_1_t*) this->sub_hw_devices[sub_index];
242}
243
244// Returns the device version, or -1 if the handle is invalid.
245int sensors_poll_context_t::get_device_version_by_handle(int handle) {
246    sensors_poll_device_t* v0 = this->get_v0_device_by_handle(handle);
247    if (v0) {
248        return v0->common.version;
249    } else {
250        return -1;
251    }
252}
253
254// Android L requires sensor HALs to be either 1_0 or 1_3 compliant
255#define HAL_VERSION_IS_COMPLIANT(version)  \
256    (version == SENSORS_DEVICE_API_VERSION_1_0 || version >= SENSORS_DEVICE_API_VERSION_1_3)
257
258// Returns true if HAL is compliant, false if HAL is not compliant or if handle is invalid
259static bool halIsCompliant(sensors_poll_context_t *ctx, int handle) {
260    int version = ctx->get_device_version_by_handle(handle);
261    return version != -1 && HAL_VERSION_IS_COMPLIANT(version);
262}
263
264const char *apiNumToStr(int version) {
265    switch(version) {
266    case SENSORS_DEVICE_API_VERSION_1_0:
267        return "SENSORS_DEVICE_API_VERSION_1_0";
268    case SENSORS_DEVICE_API_VERSION_1_1:
269        return "SENSORS_DEVICE_API_VERSION_1_1";
270    case SENSORS_DEVICE_API_VERSION_1_2:
271        return "SENSORS_DEVICE_API_VERSION_1_2";
272    case SENSORS_DEVICE_API_VERSION_1_3:
273        return "SENSORS_DEVICE_API_VERSION_1_3";
274    default:
275        return "UNKNOWN";
276    }
277}
278
279int sensors_poll_context_t::activate(int handle, int enabled) {
280    int retval = -EINVAL;
281    ALOGV("activate");
282    int local_handle = get_local_handle(handle);
283    sensors_poll_device_t* v0 = this->get_v0_device_by_handle(handle);
284    if (halIsCompliant(this, handle) && local_handle >= 0 && v0) {
285        retval = v0->activate(v0, local_handle, enabled);
286    } else {
287        ALOGE("IGNORING activate(enable %d) call to non-API-compliant sensor handle=%d !",
288                enabled, handle);
289    }
290    ALOGV("retval %d", retval);
291    return retval;
292}
293
294int sensors_poll_context_t::setDelay(int handle, int64_t ns) {
295    int retval = -EINVAL;
296    ALOGV("setDelay");
297    int local_handle = get_local_handle(handle);
298    sensors_poll_device_t* v0 = this->get_v0_device_by_handle(handle);
299    if (halIsCompliant(this, handle) && local_handle >= 0 && v0) {
300        retval = v0->setDelay(v0, local_handle, ns);
301    } else {
302        ALOGE("IGNORING setDelay() call for non-API-compliant sensor handle=%d !", handle);
303    }
304    ALOGV("retval %d", retval);
305    return retval;
306}
307
308void sensors_poll_context_t::copy_event_remap_handle(sensors_event_t* dest, sensors_event_t* src,
309        int sub_index) {
310    memcpy(dest, src, sizeof(struct sensors_event_t));
311    // A normal event's "sensor" field is a local handle. Convert it to a global handle.
312    // A meta-data event must have its sensor set to 0, but it has a nested event
313    // with a local handle that needs to be converted to a global handle.
314    FullHandle full_handle;
315    full_handle.moduleIndex = sub_index;
316
317    // If it's a metadata event, rewrite the inner payload, not the sensor field.
318    // If the event's sensor field is unregistered for any reason, rewrite the sensor field
319    // with a -1, instead of writing an incorrect but plausible sensor number, because
320    // get_global_handle() returns -1 for unknown FullHandles.
321    if (dest->type == SENSOR_TYPE_META_DATA) {
322        full_handle.localHandle = dest->meta_data.sensor;
323        dest->meta_data.sensor = get_global_handle(&full_handle);
324    } else {
325        full_handle.localHandle = dest->sensor;
326        dest->sensor = get_global_handle(&full_handle);
327    }
328}
329
330int sensors_poll_context_t::poll(sensors_event_t *data, int maxReads) {
331    ALOGV("poll");
332    int empties = 0;
333    int queueCount = 0;
334    int eventsRead = 0;
335
336    pthread_mutex_lock(&queue_mutex);
337    queueCount = (int)this->queues.size();
338    while (eventsRead == 0) {
339        while (empties < queueCount && eventsRead < maxReads) {
340            SensorEventQueue* queue = this->queues.at(this->nextReadIndex);
341            sensors_event_t* event = queue->peek();
342            if (event == NULL) {
343                empties++;
344            } else {
345                empties = 0;
346                this->copy_event_remap_handle(&data[eventsRead], event, nextReadIndex);
347                if (data[eventsRead].sensor == -1) {
348                    // Bad handle, do not pass corrupted event upstream !
349                    ALOGW("Dropping bad local handle event packet on the floor");
350                } else {
351                    eventsRead++;
352                }
353                queue->dequeue();
354            }
355            this->nextReadIndex = (this->nextReadIndex + 1) % queueCount;
356        }
357        if (eventsRead == 0) {
358            // The queues have been scanned and none contain data, so wait.
359            ALOGV("poll stopping to wait for data");
360            waiting_for_data = true;
361            pthread_cond_wait(&data_available_cond, &queue_mutex);
362            waiting_for_data = false;
363            empties = 0;
364        }
365    }
366    pthread_mutex_unlock(&queue_mutex);
367    ALOGV("poll returning %d events.", eventsRead);
368
369    return eventsRead;
370}
371
372int sensors_poll_context_t::batch(int handle, int flags, int64_t period_ns, int64_t timeout) {
373    ALOGV("batch");
374    int retval = -EINVAL;
375    int local_handle = get_local_handle(handle);
376    sensors_poll_device_1_t* v1 = this->get_v1_device_by_handle(handle);
377    if (halIsCompliant(this, handle) && local_handle >= 0 && v1) {
378        retval = v1->batch(v1, local_handle, flags, period_ns, timeout);
379    } else {
380        ALOGE("IGNORING batch() call to non-API-compliant sensor handle=%d !", handle);
381    }
382    ALOGV("retval %d", retval);
383    return retval;
384}
385
386int sensors_poll_context_t::flush(int handle) {
387    ALOGV("flush");
388    int retval = -EINVAL;
389    int local_handle = get_local_handle(handle);
390    sensors_poll_device_1_t* v1 = this->get_v1_device_by_handle(handle);
391    if (halIsCompliant(this, handle) && local_handle >= 0 && v1) {
392        retval = v1->flush(v1, local_handle);
393    } else {
394        ALOGE("IGNORING flush() call to non-API-compliant sensor handle=%d !", handle);
395    }
396    ALOGV("retval %d", retval);
397    return retval;
398}
399
400int sensors_poll_context_t::close() {
401    ALOGV("close");
402    for (std::vector<hw_device_t*>::iterator it = this->sub_hw_devices.begin();
403            it != this->sub_hw_devices.end(); it++) {
404        hw_device_t* dev = *it;
405        int retval = dev->close(dev);
406        ALOGV("retval %d", retval);
407    }
408    return 0;
409}
410
411
412static int device__close(struct hw_device_t *dev) {
413    sensors_poll_context_t* ctx = (sensors_poll_context_t*) dev;
414    if (ctx != NULL) {
415        int retval = ctx->close();
416        delete ctx;
417    }
418    return 0;
419}
420
421static int device__activate(struct sensors_poll_device_t *dev, int handle,
422        int enabled) {
423    sensors_poll_context_t* ctx = (sensors_poll_context_t*) dev;
424    return ctx->activate(handle, enabled);
425}
426
427static int device__setDelay(struct sensors_poll_device_t *dev, int handle,
428        int64_t ns) {
429    sensors_poll_context_t* ctx = (sensors_poll_context_t*) dev;
430    return ctx->setDelay(handle, ns);
431}
432
433static int device__poll(struct sensors_poll_device_t *dev, sensors_event_t* data,
434        int count) {
435    sensors_poll_context_t* ctx = (sensors_poll_context_t*) dev;
436    return ctx->poll(data, count);
437}
438
439static int device__batch(struct sensors_poll_device_1 *dev, int handle,
440        int flags, int64_t period_ns, int64_t timeout) {
441    sensors_poll_context_t* ctx = (sensors_poll_context_t*) dev;
442    return ctx->batch(handle, flags, period_ns, timeout);
443}
444
445static int device__flush(struct sensors_poll_device_1 *dev, int handle) {
446    sensors_poll_context_t* ctx = (sensors_poll_context_t*) dev;
447    return ctx->flush(handle);
448}
449
450static int open_sensors(const struct hw_module_t* module, const char* name,
451        struct hw_device_t** device);
452
453static bool starts_with(const char* s, const char* prefix) {
454    if (s == NULL || prefix == NULL) {
455        return false;
456    }
457    size_t s_size = strlen(s);
458    size_t prefix_size = strlen(prefix);
459    return s_size >= prefix_size && strncmp(s, prefix, prefix_size) == 0;
460}
461
462/*
463 * Adds valid paths from the config file to the vector passed in.
464 * The vector must not be null.
465 */
466static void get_so_paths(std::vector<char*> *so_paths) {
467    FILE *conf_file = fopen(CONFIG_FILENAME, "r");
468    if (conf_file == NULL) {
469        ALOGW("No multihal config file found at %s", CONFIG_FILENAME);
470        return;
471    }
472    ALOGV("Multihal config file found at %s", CONFIG_FILENAME);
473    char *line = NULL;
474    size_t len = 0;
475    int line_count = 0;
476    while (getline(&line, &len, conf_file) != -1) {
477        // overwrite trailing eoln with null char
478        char* pch = strchr(line, '\n');
479        if (pch != NULL) {
480            *pch = '\0';
481        }
482        ALOGV("config file line #%d: '%s'", ++line_count, line);
483        char *real_path = realpath(line, NULL);
484        if (starts_with(real_path, LEGAL_SUBHAL_PATH_PREFIX) ||
485		starts_with(real_path, LEGAL_SUBHAL_ALTERNATE_PATH_PREFIX)) {
486            ALOGV("accepting valid path '%s'", real_path);
487            char* compact_line = new char[strlen(real_path) + 1];
488            strcpy(compact_line, real_path);
489            so_paths->push_back(compact_line);
490        } else {
491            ALOGW("rejecting path '%s' because it does not start with '%s' or '%s'",
492                    real_path, LEGAL_SUBHAL_PATH_PREFIX, LEGAL_SUBHAL_ALTERNATE_PATH_PREFIX);
493        }
494        free(real_path);
495    }
496    free(line);
497    fclose(conf_file);
498    ALOGV("hals.conf contained %d lines", line_count);
499}
500
501/*
502 * Ensures that the sub-module array is initialized.
503 * This can be first called from get_sensors_list or from open_sensors.
504 */
505static void lazy_init_modules() {
506    pthread_mutex_lock(&init_modules_mutex);
507    if (sub_hw_modules != NULL) {
508        pthread_mutex_unlock(&init_modules_mutex);
509        return;
510    }
511    std::vector<char*> *so_paths = new std::vector<char*>();
512    get_so_paths(so_paths);
513
514    // dlopen the module files and cache their module symbols in sub_hw_modules
515    sub_hw_modules = new std::vector<hw_module_t *>();
516    dlerror(); // clear any old errors
517    const char* sym = HAL_MODULE_INFO_SYM_AS_STR;
518    for (std::vector<char*>::iterator it = so_paths->begin(); it != so_paths->end(); it++) {
519        char* path = *it;
520        void* lib_handle = dlopen(path, RTLD_LAZY);
521        if (lib_handle == NULL) {
522            ALOGW("dlerror(): %s", dlerror());
523        } else {
524            ALOGI("Loaded library from %s", path);
525            ALOGV("Opening symbol \"%s\"", sym);
526            // clear old errors
527            dlerror();
528            struct hw_module_t* module = (hw_module_t*) dlsym(lib_handle, sym);
529            const char* error;
530            if ((error = dlerror()) != NULL) {
531                ALOGW("Error calling dlsym: %s", error);
532            } else if (module == NULL) {
533                ALOGW("module == NULL");
534            } else {
535                ALOGV("Loaded symbols from \"%s\"", sym);
536                sub_hw_modules->push_back(module);
537            }
538        }
539    }
540    pthread_mutex_unlock(&init_modules_mutex);
541}
542
543/*
544 * Lazy-initializes global_sensors_count, global_sensors_list, and module_sensor_handles.
545 */
546static void lazy_init_sensors_list() {
547    ALOGV("lazy_init_sensors_list");
548    pthread_mutex_lock(&init_sensors_mutex);
549    if (global_sensors_list != NULL) {
550        // already initialized
551        pthread_mutex_unlock(&init_sensors_mutex);
552        ALOGV("lazy_init_sensors_list - early return");
553        return;
554    }
555
556    ALOGV("lazy_init_sensors_list needs to do work");
557    lazy_init_modules();
558
559    // Count all the sensors, then allocate an array of blanks.
560    global_sensors_count = 0;
561    const struct sensor_t *subhal_sensors_list;
562    for (std::vector<hw_module_t*>::iterator it = sub_hw_modules->begin();
563            it != sub_hw_modules->end(); it++) {
564        struct sensors_module_t *module = (struct sensors_module_t*) *it;
565        global_sensors_count += module->get_sensors_list(module, &subhal_sensors_list);
566        ALOGV("increased global_sensors_count to %d", global_sensors_count);
567    }
568
569    // The global_sensors_list is full of consts.
570    // Manipulate this non-const list, and point the const one to it when we're done.
571    sensor_t* mutable_sensor_list = new sensor_t[global_sensors_count];
572
573    // index of the next sensor to set in mutable_sensor_list
574    int mutable_sensor_index = 0;
575    int module_index = 0;
576
577    for (std::vector<hw_module_t*>::iterator it = sub_hw_modules->begin();
578            it != sub_hw_modules->end(); it++) {
579        hw_module_t *hw_module = *it;
580        ALOGV("examine one module");
581        // Read the sub-module's sensor list.
582        struct sensors_module_t *module = (struct sensors_module_t*) hw_module;
583        int module_sensor_count = module->get_sensors_list(module, &subhal_sensors_list);
584        ALOGV("the module has %d sensors", module_sensor_count);
585
586        // Copy the HAL's sensor list into global_sensors_list,
587        // with the handle changed to be a global handle.
588        for (int i = 0; i < module_sensor_count; i++) {
589            ALOGV("examining one sensor");
590            const struct sensor_t *local_sensor = &subhal_sensors_list[i];
591            int local_handle = local_sensor->handle;
592            memcpy(&mutable_sensor_list[mutable_sensor_index], local_sensor,
593                sizeof(struct sensor_t));
594
595            // Overwrite the global version's handle with a global handle.
596            int global_handle = assign_global_handle(module_index, local_handle);
597
598            mutable_sensor_list[mutable_sensor_index].handle = global_handle;
599            ALOGV("module_index %d, local_handle %d, global_handle %d",
600                    module_index, local_handle, global_handle);
601
602            mutable_sensor_index++;
603        }
604        module_index++;
605    }
606    // Set the const static global_sensors_list to the mutable one allocated by this function.
607    global_sensors_list = mutable_sensor_list;
608
609    pthread_mutex_unlock(&init_sensors_mutex);
610    ALOGV("end lazy_init_sensors_list");
611}
612
613static int module__get_sensors_list(__unused struct sensors_module_t* module,
614        struct sensor_t const** list) {
615    ALOGV("module__get_sensors_list start");
616    lazy_init_sensors_list();
617    *list = global_sensors_list;
618    ALOGV("global_sensors_count: %d", global_sensors_count);
619    for (int i = 0; i < global_sensors_count; i++) {
620        ALOGV("sensor type: %d", global_sensors_list[i].type);
621    }
622    return global_sensors_count;
623}
624
625static struct hw_module_methods_t sensors_module_methods = {
626    open : open_sensors
627};
628
629struct sensors_module_t HAL_MODULE_INFO_SYM = {
630    common :{
631        tag : HARDWARE_MODULE_TAG,
632        version_major : 1,
633        version_minor : 1,
634        id : SENSORS_HARDWARE_MODULE_ID,
635        name : "MultiHal Sensor Module",
636        author : "Google, Inc",
637        methods : &sensors_module_methods,
638        dso : NULL,
639        reserved : {0},
640    },
641    get_sensors_list : module__get_sensors_list
642};
643
644static int open_sensors(const struct hw_module_t* hw_module, const char* name,
645        struct hw_device_t** hw_device_out) {
646    ALOGV("open_sensors begin...");
647
648    lazy_init_modules();
649
650    // Create proxy device, to return later.
651    sensors_poll_context_t *dev = new sensors_poll_context_t();
652    memset(dev, 0, sizeof(sensors_poll_device_1_t));
653    dev->proxy_device.common.tag = HARDWARE_DEVICE_TAG;
654    dev->proxy_device.common.version = SENSORS_DEVICE_API_VERSION_1_3;
655    dev->proxy_device.common.module = const_cast<hw_module_t*>(hw_module);
656    dev->proxy_device.common.close = device__close;
657    dev->proxy_device.activate = device__activate;
658    dev->proxy_device.setDelay = device__setDelay;
659    dev->proxy_device.poll = device__poll;
660    dev->proxy_device.batch = device__batch;
661    dev->proxy_device.flush = device__flush;
662
663    dev->nextReadIndex = 0;
664
665    // Open() the subhal modules. Remember their devices in a vector parallel to sub_hw_modules.
666    for (std::vector<hw_module_t*>::iterator it = sub_hw_modules->begin();
667            it != sub_hw_modules->end(); it++) {
668        sensors_module_t *sensors_module = (sensors_module_t*) *it;
669        struct hw_device_t* sub_hw_device;
670        int sub_open_result = sensors_module->common.methods->open(*it, name, &sub_hw_device);
671        if (!sub_open_result) {
672            if (!HAL_VERSION_IS_COMPLIANT(sub_hw_device->version)) {
673                ALOGE("SENSORS_DEVICE_API_VERSION_1_3 is required for all sensor HALs");
674                ALOGE("This HAL reports non-compliant API level : %s",
675                        apiNumToStr(sub_hw_device->version));
676                ALOGE("Sensors belonging to this HAL will get ignored !");
677            }
678            dev->addSubHwDevice(sub_hw_device);
679        }
680    }
681
682    // Prepare the output param and return
683    *hw_device_out = &dev->proxy_device.common;
684    ALOGV("...open_sensors end");
685    return 0;
686}
687