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1 /*
2  * Copyright (c) 2021 Huawei Device Co., Ltd.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at
6  *
7  *     http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 
16 #include "sensor_callback_impl.h"
17 #include "sensor_type.h"
18 #include "osal_mem.h"
19 
20 namespace OHOS {
21 namespace HDI {
22 namespace Sensor {
23 namespace V1_0 {
24 uint32_t SensorCallbackImpl::sensorDataFlag = 1;
25 namespace {
26     struct SensorValueRange {
27         float highThreshold;
28         float lowThreshold;
29     };
30 
31     struct SensorDevelopmentList {
32         int32_t sensorTypeId;
33         char sensorName[SENSOR_NAME_MAX_LEN];
34         int32_t dataForm;    // 0: fixed, 1: range
35         int32_t dataDimension;
36         struct SensorValueRange *valueRange;
37     };
38 
39     struct SensorValueRange g_testRange[] = {{1e5, 0.0}};
40     struct SensorValueRange g_accelRange[] = {{78.0, -78.0}, {78.0, -78.0}, {78.0, -78.0}};
41     struct SensorValueRange g_alsRange[] = {{10000.0, 0.0}};
42     struct SensorValueRange g_pedometerRange[] = {{10000.0, 0.0}};
43     struct SensorValueRange g_proximityRange[] = {{5.0, 0.0}};
44     struct SensorValueRange g_hallRange[] = {{1.0, 0.0}};
45     struct SensorValueRange g_barometerRange[] = {{1100.0, -1100.0}, {1100.0, -1100.0}};
46     struct SensorValueRange g_magneticRange[] = {{2000.0, -2000.0}, {2000.0, -2000.0}, {2000.0, -2000.0}};
47     struct SensorValueRange g_gyroscopeRange[] = {{35.0, -35.0}, {35.0, -35.0}, {35.0, -35.0}};
48     struct SensorValueRange g_gravityRange[] = {{78.0, -78.0}, {78.0, -78.0}, {78.0, -78.0}};
49 
50     struct SensorDevelopmentList g_sensorList[] = {
51         {SENSOR_TYPE_NONE, "sensor_test",  1, 1, g_testRange},
52         {SENSOR_TYPE_ACCELEROMETER, "accelerometer",  1, 3, g_accelRange},
53         {SENSOR_TYPE_PEDOMETER, "pedometer", 1, 1, g_pedometerRange},
54         {SENSOR_TYPE_PROXIMITY, "proximity",  0, 1, g_proximityRange},
55         {SENSOR_TYPE_HALL, "hallrometer",  0, 1, g_hallRange},
56         {SENSOR_TYPE_BAROMETER, "barometer",  1, 2, g_barometerRange},
57         {SENSOR_TYPE_AMBIENT_LIGHT, "als", 1, 1, g_alsRange},
58         {SENSOR_TYPE_MAGNETIC_FIELD, "magnetometer",  1, 3, g_magneticRange},
59         {SENSOR_TYPE_GYROSCOPE, "gyroscope", 1, 3, g_gyroscopeRange},
60         {SENSOR_TYPE_GRAVITY, "gravity", 1, 3, g_gravityRange}
61     };
62 
63     constexpr int g_listNum = sizeof(g_sensorList) / sizeof(g_sensorList[0]);
64     constexpr float EPSINON = 1e-6;
65 
SensorDataVerification(const float & data,const struct SensorDevelopmentList & sensorNode)66     void SensorDataVerification(const float &data, const struct SensorDevelopmentList &sensorNode)
67     {
68         for (int32_t j = 0; j < sensorNode.dataDimension; ++j) {
69             printf("sensor id :[%d], data[%d]: %f\n\r", sensorNode.sensorTypeId, j + 1, *(&data + j));
70             if (sensorNode.dataForm == 0) {
71                 if (abs(*(&data + j) - sensorNode.valueRange[j].highThreshold) < EPSINON ||
72                     abs(*(&data + j) - sensorNode.valueRange[j].lowThreshold) < EPSINON) {
73                     SensorCallbackImpl::sensorDataFlag &= 1;
74                 } else {
75                     SensorCallbackImpl::sensorDataFlag = 0;
76                     printf("%s: %s Not expected\n\r", __func__, sensorNode.sensorName);
77                 }
78             }
79 
80             if (sensorNode.dataForm == 1) {
81                 if (*(&data + j) > sensorNode.valueRange[j].lowThreshold &&
82                     *(&data + j) < sensorNode.valueRange[j].highThreshold) {
83                     SensorCallbackImpl::sensorDataFlag &= 1;
84                     printf("sensorDataFlag = 1;");
85                 } else {
86                     SensorCallbackImpl::sensorDataFlag = 0;
87                     printf("%s: %s Not expected\n\r", __func__, sensorNode.sensorName);
88                 }
89             }
90         }
91     }
92 }
93 
OnDataEvent(const HdfSensorEvents & event)94 int32_t SensorCallbackImpl::OnDataEvent(const HdfSensorEvents& event)
95 {
96     void *origin = OsalMemCalloc(sizeof(uint8_t) * (event.dataLen));
97     uint8_t *tmp = static_cast<uint8_t*>(origin);
98     uint8_t *eventData = tmp;
99     for (auto value : event.data) {
100        *tmp++ = value;
101     }
102 
103     for (int i = 0; i < g_listNum; ++i) {
104         if (event.sensorId == g_sensorList[i].sensorTypeId) {
105             float *data = (float*)eventData;
106             SensorDataVerification(*data, g_sensorList[i]);
107         }
108     }
109     OsalMemFree(origin);
110     return HDF_SUCCESS;
111 }
112 } // V1_0
113 } // Sensor
114 } // HDI
115 } // OHOS
116