xref: /aosp_15_r20/system/chre/apps/test/common/chre_api_test/src/chre_api_test_service.cc (revision 84e339476a462649f82315436d70fd732297a399)
1 /*
2  * Copyright (C) 2023 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 "chre_api_test_manager.h"
18 
19 #include "chre/util/nanoapp/ble.h"
20 #include "chre/util/nanoapp/log.h"
21 #include "chre/util/nanoapp/string.h"
22 
23 using ::chre::copyString;
24 using ::chre::createBleGenericFilter;
25 
26 namespace {
27 
28 /**
29  * The following constants are defined in chre_api_test.options.
30  */
31 constexpr size_t kMaxNameStringBufferSize = 100;
32 constexpr size_t kMaxHostEndpointNameBufferSize = 51;
33 constexpr size_t kMaxHostEndpointTagBufferSize = 51;
34 }  // namespace
35 
validateInputAndCallChreBleGetCapabilities(const google_protobuf_Empty &,chre_rpc_Capabilities & response)36 bool ChreApiTestService::validateInputAndCallChreBleGetCapabilities(
37     const google_protobuf_Empty & /* request */,
38     chre_rpc_Capabilities &response) {
39   response.capabilities = chreBleGetCapabilities();
40   LOGD("ChreBleGetCapabilities: capabilities: %" PRIu32, response.capabilities);
41   return true;
42 }
43 
validateInputAndCallChreBleGetFilterCapabilities(const google_protobuf_Empty &,chre_rpc_Capabilities & response)44 bool ChreApiTestService::validateInputAndCallChreBleGetFilterCapabilities(
45     const google_protobuf_Empty & /* request */,
46     chre_rpc_Capabilities &response) {
47   response.capabilities = chreBleGetFilterCapabilities();
48   LOGD("ChreBleGetFilterCapabilities: capabilities: %" PRIu32,
49        response.capabilities);
50   return true;
51 }
52 
validateInputAndCallChreBleStartScanAsync(const chre_rpc_ChreBleStartScanAsyncInput & request,chre_rpc_Status & response)53 bool ChreApiTestService::validateInputAndCallChreBleStartScanAsync(
54     const chre_rpc_ChreBleStartScanAsyncInput &request,
55     chre_rpc_Status &response) {
56   if (request.mode < _chre_rpc_ChreBleScanMode_MIN ||
57       request.mode > _chre_rpc_ChreBleScanMode_MAX ||
58       request.mode == chre_rpc_ChreBleScanMode_INVALID) {
59     LOGE("ChreBleStartScanAsync: invalid mode");
60     return false;
61   }
62 
63   if (!request.hasFilter) {
64     auto mode = static_cast<chreBleScanMode>(request.mode);
65     response.status =
66         chreBleStartScanAsync(mode, request.reportDelayMs, nullptr);
67 
68     LOGD("ChreBleStartScanAsync: mode: %s, reportDelayMs: %" PRIu32
69          ", filter: nullptr, status: %s",
70          mode == CHRE_BLE_SCAN_MODE_BACKGROUND
71              ? "background"
72              : (mode == CHRE_BLE_SCAN_MODE_FOREGROUND ? "foreground"
73                                                       : "aggressive"),
74          request.reportDelayMs, response.status ? "true" : "false");
75     return true;
76   }
77 
78   if (request.filter.rssiThreshold < std::numeric_limits<int8_t>::min() ||
79       request.filter.rssiThreshold > std::numeric_limits<int8_t>::max()) {
80     LOGE("ChreBleStartScanAsync: invalid filter.rssiThreshold");
81     return false;
82   }
83 
84   if (request.filter.scanFilters_count == 0) {
85     LOGE("ChreBleStartScanAsync: invalid filter.scanFilters_count");
86     return false;
87   }
88 
89   chreBleGenericFilter genericFilters[request.filter.scanFilters_count];
90   if (!validateBleScanFilters(request.filter.scanFilters, genericFilters,
91                               request.filter.scanFilters_count)) {
92     return false;
93   }
94 
95   struct chreBleScanFilter filter;
96   filter.rssiThreshold = request.filter.rssiThreshold;
97   filter.scanFilterCount = request.filter.scanFilters_count;
98   filter.scanFilters = genericFilters;
99 
100   auto mode = static_cast<chreBleScanMode>(request.mode);
101   response.status = chreBleStartScanAsync(mode, request.reportDelayMs, &filter);
102 
103   LOGD("ChreBleStartScanAsync: mode: %s, reportDelayMs: %" PRIu32
104        ", scanFilterCount: %" PRIu16 ", status: %s",
105        mode == CHRE_BLE_SCAN_MODE_BACKGROUND
106            ? "background"
107            : (mode == CHRE_BLE_SCAN_MODE_FOREGROUND ? "foreground"
108                                                     : "aggressive"),
109        request.reportDelayMs, request.filter.scanFilters_count,
110        response.status ? "true" : "false");
111   return true;
112 }
113 
validateInputAndCallChreBleStopScanAsync(const google_protobuf_Empty &,chre_rpc_Status & response)114 bool ChreApiTestService::validateInputAndCallChreBleStopScanAsync(
115     const google_protobuf_Empty & /* request */, chre_rpc_Status &response) {
116   response.status = chreBleStopScanAsync();
117   LOGD("ChreBleStopScanAsync: status: %s", response.status ? "true" : "false");
118   return true;
119 }
120 
validateInputAndCallChreSensorFindDefault(const chre_rpc_ChreSensorFindDefaultInput & request,chre_rpc_ChreSensorFindDefaultOutput & response)121 bool ChreApiTestService::validateInputAndCallChreSensorFindDefault(
122     const chre_rpc_ChreSensorFindDefaultInput &request,
123     chre_rpc_ChreSensorFindDefaultOutput &response) {
124   if (request.sensorType > std::numeric_limits<uint8_t>::max()) {
125     return false;
126   }
127 
128   auto sensorType = static_cast<uint8_t>(request.sensorType);
129   response.foundSensor =
130       chreSensorFindDefault(sensorType, &response.sensorHandle);
131 
132   LOGD("ChreSensorFindDefault: foundSensor: %s, sensorHandle: %" PRIu32,
133        response.foundSensor ? "true" : "false", response.sensorHandle);
134   return true;
135 }
136 
validateInputAndCallChreGetSensorInfo(const chre_rpc_ChreHandleInput & request,chre_rpc_ChreGetSensorInfoOutput & response)137 bool ChreApiTestService::validateInputAndCallChreGetSensorInfo(
138     const chre_rpc_ChreHandleInput &request,
139     chre_rpc_ChreGetSensorInfoOutput &response) {
140   struct chreSensorInfo sensorInfo;
141   memset(&sensorInfo, 0, sizeof(sensorInfo));
142 
143   response.status = chreGetSensorInfo(request.handle, &sensorInfo);
144 
145   if (response.status) {
146     copyString(response.sensorName, sensorInfo.sensorName,
147                kMaxNameStringBufferSize);
148     response.sensorType = sensorInfo.sensorType;
149     response.isOnChange = sensorInfo.isOnChange;
150     response.isOneShot = sensorInfo.isOneShot;
151     response.reportsBiasEvents = sensorInfo.reportsBiasEvents;
152     response.supportsPassiveMode = sensorInfo.supportsPassiveMode;
153     response.unusedFlags = sensorInfo.unusedFlags;
154     response.minInterval = sensorInfo.minInterval;
155     response.sensorIndex = sensorInfo.sensorIndex;
156 
157     LOGD("ChreGetSensorInfo: status: true, sensorType: %" PRIu32
158          ", isOnChange: %" PRIu32
159          ", "
160          "isOneShot: %" PRIu32 ", reportsBiasEvents: %" PRIu32
161          ", supportsPassiveMode: %" PRIu32 ", unusedFlags: %" PRIu32
162          ", minInterval: %" PRIu64 ", sensorIndex: %" PRIu32,
163          response.sensorType, response.isOnChange, response.isOneShot,
164          response.reportsBiasEvents, response.supportsPassiveMode,
165          response.unusedFlags, response.minInterval, response.sensorIndex);
166   } else {
167     LOGD("ChreGetSensorInfo: status: false");
168   }
169 
170   return true;
171 }
172 
validateInputAndCallChreGetSensorSamplingStatus(const chre_rpc_ChreHandleInput & request,chre_rpc_ChreGetSensorSamplingStatusOutput & response)173 bool ChreApiTestService::validateInputAndCallChreGetSensorSamplingStatus(
174     const chre_rpc_ChreHandleInput &request,
175     chre_rpc_ChreGetSensorSamplingStatusOutput &response) {
176   struct chreSensorSamplingStatus samplingStatus;
177   memset(&samplingStatus, 0, sizeof(samplingStatus));
178 
179   response.status =
180       chreGetSensorSamplingStatus(request.handle, &samplingStatus);
181   if (response.status) {
182     response.interval = samplingStatus.interval;
183     response.latency = samplingStatus.latency;
184     response.enabled = samplingStatus.enabled;
185 
186     LOGD("ChreGetSensorSamplingStatus: status: true, interval: %" PRIu64
187          ", latency: %" PRIu64 ", enabled: %s",
188          response.interval, response.latency,
189          response.enabled ? "true" : "false");
190   } else {
191     LOGD("ChreGetSensorSamplingStatus: status: false");
192   }
193 
194   return true;
195 }
196 
validateInputAndCallChreSensorConfigure(const chre_rpc_ChreSensorConfigureInput & request,chre_rpc_Status & response)197 bool ChreApiTestService::validateInputAndCallChreSensorConfigure(
198     const chre_rpc_ChreSensorConfigureInput &request,
199     chre_rpc_Status &response) {
200   auto mode = static_cast<chreSensorConfigureMode>(request.mode);
201   response.status = chreSensorConfigure(request.sensorHandle, mode,
202                                         request.interval, request.latency);
203 
204   LOGD("ChreSensorConfigure: status: %s", response.status ? "true" : "false");
205   return true;
206 }
207 
validateInputAndCallChreSensorConfigureModeOnly(const chre_rpc_ChreSensorConfigureModeOnlyInput & request,chre_rpc_Status & response)208 bool ChreApiTestService::validateInputAndCallChreSensorConfigureModeOnly(
209     const chre_rpc_ChreSensorConfigureModeOnlyInput &request,
210     chre_rpc_Status &response) {
211   auto mode = static_cast<chreSensorConfigureMode>(request.mode);
212   response.status = chreSensorConfigureModeOnly(request.sensorHandle, mode);
213 
214   LOGD("ChreSensorConfigureModeOnly: status: %s",
215        response.status ? "true" : "false");
216   return true;
217 }
218 
validateInputAndCallChreAudioGetSource(const chre_rpc_ChreHandleInput & request,chre_rpc_ChreAudioGetSourceOutput & response)219 bool ChreApiTestService::validateInputAndCallChreAudioGetSource(
220     const chre_rpc_ChreHandleInput &request,
221     chre_rpc_ChreAudioGetSourceOutput &response) {
222   struct chreAudioSource audioSource;
223   memset(&audioSource, 0, sizeof(audioSource));
224   response.status = chreAudioGetSource(request.handle, &audioSource);
225 
226   if (response.status) {
227     copyString(response.name, audioSource.name, kMaxNameStringBufferSize);
228     response.sampleRate = audioSource.sampleRate;
229     response.minBufferDuration = audioSource.minBufferDuration;
230     response.maxBufferDuration = audioSource.maxBufferDuration;
231     response.format = audioSource.format;
232 
233     LOGD("ChreAudioGetSource: status: true, name: %s, sampleRate %" PRIu32
234          ", minBufferDuration: %" PRIu64 ", maxBufferDuration %" PRIu64
235          ", format: %" PRIu32,
236          response.name, response.sampleRate, response.minBufferDuration,
237          response.maxBufferDuration, response.format);
238   } else {
239     LOGD("ChreAudioGetSource: status: false");
240   }
241 
242   return true;
243 }
244 
validateInputAndCallChreAudioConfigureSource(const chre_rpc_ChreAudioConfigureSourceInput & request,chre_rpc_Status & response)245 bool ChreApiTestService::validateInputAndCallChreAudioConfigureSource(
246     const chre_rpc_ChreAudioConfigureSourceInput &request,
247     chre_rpc_Status &response) {
248   response.status = chreAudioConfigureSource(request.handle, request.enable,
249                                              request.bufferDuration,
250                                              request.deliveryInterval);
251   LOGD("ChreAudioConfigureSource: status: %s",
252        response.status ? "true" : "false");
253 
254   return true;
255 }
256 
validateInputAndCallChreAudioGetStatus(const chre_rpc_ChreHandleInput & request,chre_rpc_ChreAudioGetStatusOutput & response)257 bool ChreApiTestService::validateInputAndCallChreAudioGetStatus(
258     const chre_rpc_ChreHandleInput &request,
259     chre_rpc_ChreAudioGetStatusOutput &response) {
260   UNUSED_VAR(request);
261   UNUSED_VAR(response);
262   // TODO(b/174590023): Fill in when chreAudioGetStatus is implemented
263   return false;
264 }
265 
266 bool ChreApiTestService::
validateInputAndCallChreConfigureHostEndpointNotifications(const chre_rpc_ChreConfigureHostEndpointNotificationsInput & request,chre_rpc_Status & response)267     validateInputAndCallChreConfigureHostEndpointNotifications(
268         const chre_rpc_ChreConfigureHostEndpointNotificationsInput &request,
269         chre_rpc_Status &response) {
270   if (request.hostEndpointId > std::numeric_limits<uint16_t>::max()) {
271     LOGE("Host Endpoint Id cannot exceed max of uint16_t");
272     return false;
273   }
274 
275   response.status = chreConfigureHostEndpointNotifications(
276       request.hostEndpointId, request.enable);
277   LOGD("ChreConfigureHostEndpointNotifications: status: %s",
278        response.status ? "true" : "false");
279   return true;
280 }
281 
validateInputAndCallChreGetHostEndpointInfo(const chre_rpc_ChreGetHostEndpointInfoInput & request,chre_rpc_ChreGetHostEndpointInfoOutput & response)282 bool ChreApiTestService::validateInputAndCallChreGetHostEndpointInfo(
283     const chre_rpc_ChreGetHostEndpointInfoInput &request,
284     chre_rpc_ChreGetHostEndpointInfoOutput &response) {
285   if (request.hostEndpointId > std::numeric_limits<uint16_t>::max()) {
286     LOGE("Host Endpoint Id cannot exceed max of uint16_t");
287     return false;
288   }
289 
290   struct chreHostEndpointInfo hostEndpointInfo;
291   memset(&hostEndpointInfo, 0, sizeof(hostEndpointInfo));
292   response.status =
293       chreGetHostEndpointInfo(request.hostEndpointId, &hostEndpointInfo);
294 
295   if (response.status) {
296     response.hostEndpointId = hostEndpointInfo.hostEndpointId;
297     response.hostEndpointType = hostEndpointInfo.hostEndpointType;
298     response.isNameValid = hostEndpointInfo.isNameValid;
299     response.isTagValid = hostEndpointInfo.isTagValid;
300     if (hostEndpointInfo.isNameValid) {
301       copyString(response.endpointName, hostEndpointInfo.endpointName,
302                  kMaxHostEndpointNameBufferSize);
303     } else {
304       memset(response.endpointName, 0, kMaxHostEndpointNameBufferSize);
305     }
306     if (hostEndpointInfo.isTagValid) {
307       copyString(response.endpointTag, hostEndpointInfo.endpointTag,
308                  kMaxHostEndpointTagBufferSize);
309     } else {
310       memset(response.endpointTag, 0, kMaxHostEndpointTagBufferSize);
311     }
312 
313     LOGD("ChreGetHostEndpointInfo: status: true, hostEndpointID: %" PRIu32
314          ", hostEndpointType: %" PRIu32
315          ", isNameValid: %s, isTagValid: %s, endpointName: %s, endpointTag: %s",
316          response.hostEndpointId, response.hostEndpointType,
317          response.isNameValid ? "true" : "false",
318          response.isTagValid ? "true" : "false", response.endpointName,
319          response.endpointTag);
320   } else {
321     LOGD("ChreGetHostEndpointInfo: status: false");
322   }
323   return true;
324 }
325 
validateBleScanFilters(const chre_rpc_ChreBleGenericFilter * scanFilters,chreBleGenericFilter * outputScanFilters,uint32_t scanFilterCount)326 bool ChreApiTestService::validateBleScanFilters(
327     const chre_rpc_ChreBleGenericFilter *scanFilters,
328     chreBleGenericFilter *outputScanFilters, uint32_t scanFilterCount) {
329   if (scanFilters == nullptr || outputScanFilters == nullptr) {
330     return false;
331   }
332 
333   for (uint32_t i = 0; i < scanFilterCount; ++i) {
334     const chre_rpc_ChreBleGenericFilter &scanFilter = scanFilters[i];
335     if (scanFilter.type > std::numeric_limits<uint8_t>::max() ||
336         scanFilter.length > std::numeric_limits<uint8_t>::max()) {
337       LOGE(
338           "validateBleScanFilters: invalid request.filter.scanFilters member: "
339           "type: %" PRIu32 " or length: %" PRIu32,
340           scanFilter.type, scanFilter.length);
341       return false;
342     }
343 
344     if (scanFilter.data.size < scanFilter.length ||
345         scanFilter.mask.size < scanFilter.length) {
346       LOGE(
347           "validateBleScanFilters: invalid request.filter.scanFilters member: "
348           "data or mask size");
349       return false;
350     }
351 
352     outputScanFilters[i] =
353         createBleGenericFilter(scanFilter.type, scanFilter.length,
354                                scanFilter.data.bytes, scanFilter.mask.bytes);
355   }
356 
357   return true;
358 }
359