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1 // Copyright 2016 The Chromium Authors. All rights reserved. | |
2 // Use of this source code is governed by a BSD-style license that can be | |
3 // found in the LICENSE file. | |
4 | |
5 #include "base/sys_info.h" | |
6 #include "base/version.h" | |
7 #include "device/generic_sensor/generic_sensor_consts.h" | |
8 #include "device/generic_sensor/linux/sensor_data_linux.h" | |
9 #include "device/generic_sensor/public/cpp/sensor_reading.h" | |
10 | |
11 namespace device { | |
12 | |
13 namespace { | |
14 | |
15 using mojom::SensorType; | |
16 | |
17 #if defined(OS_CHROMEOS) | |
18 // ChromeOS kernel version, when axes were changed to XYZ. Before 3.18, | |
19 // they were YXZ. | |
20 const char kChangedAxisKernelVersion[] = "3.18.0"; | |
21 #endif | |
22 | |
23 void InitAmbientLightSensorData(SensorPathsLinux* data) { | |
24 std::vector<std::string> file_names{ | |
25 "in_illuminance0_input", "in_illuminance_input", "in_illuminance0_raw", | |
26 "in_illuminance_raw", "in_intensity_both_raw"}; | |
27 data->sensor_file_names.push_back(std::move(file_names)); | |
28 data->sensor_frequency_file_name = "in_intensity_sampling_frequency"; | |
29 data->sensor_scale_name = "in_intensity_scale"; | |
30 data->apply_scaling_func = base::Bind( | |
31 [](double scaling_value, double offset, SensorReading& reading) { | |
32 reading.values[0] = scaling_value * (reading.values[0] + offset); | |
33 }); | |
34 data->default_configuration = | |
35 PlatformSensorConfiguration(kDefaultAmbientLightFrequencyHz); | |
36 } | |
37 | |
38 // Depending on a kernel version, CrOS has a different axes plane. | |
39 // Before 3.18 it was YXZ and after XYZ. | |
40 // TODO(maksims): Track crbug.com/501184. 3.14 will have the same sensor stack | |
41 // as 3.18 has, which will probably change the order of axes. | |
42 void MaybeCheckKernelVersionAndAssignFileNames( | |
43 const std::vector<std::string>& file_names_x, | |
44 const std::vector<std::string>& file_names_y, | |
45 const std::vector<std::string>& file_names_z, | |
46 SensorPathsLinux* data) { | |
47 #if defined(OS_CHROMEOS) | |
48 const base::Version checked_kernel_version(kChangedAxisKernelVersion); | |
49 DCHECK(checked_kernel_version.IsValid()); | |
50 const base::Version current_version(base::SysInfo::OperatingSystemVersion()); | |
51 if (current_version.IsValid() && current_version < checked_kernel_version) { | |
52 data->sensor_file_names.push_back(file_names_y); | |
53 data->sensor_file_names.push_back(file_names_x); | |
54 } else { | |
55 data->sensor_file_names.push_back(file_names_x); | |
56 data->sensor_file_names.push_back(file_names_y); | |
57 } | |
58 data->sensor_file_names.push_back(file_names_z); | |
59 #else | |
60 data->sensor_file_names.push_back(file_names_x); | |
61 data->sensor_file_names.push_back(file_names_y); | |
62 data->sensor_file_names.push_back(file_names_z); | |
63 #endif | |
64 } | |
65 | |
66 // TODO(maksims): add support for lid accelerometer on chromeos. | |
67 void InitAccelerometerSensorData(SensorPathsLinux* data) { | |
68 std::vector<std::string> file_names_x{"in_accel_x_base_raw", | |
69 "in_accel_x_raw"}; | |
70 std::vector<std::string> file_names_y{"in_accel_y_base_raw", | |
71 "in_accel_y_raw"}; | |
72 std::vector<std::string> file_names_z{"in_accel_z_base_raw", | |
73 "in_accel_z_raw"}; | |
74 | |
75 #if defined(OS_CHROMEOS) | |
76 data->sensor_scale_name = "in_accel_base_scale"; | |
77 data->sensor_frequency_file_name = "in_accel_base_sampling_frequency"; | |
78 data->apply_scaling_func = base::Bind( | |
79 [](double scaling_value, double offset, SensorReading& reading) { | |
80 double scaling = kMeanGravity / scaling_value; | |
81 reading.values[0] = scaling * (reading.values[0] + offset); | |
82 reading.values[1] = scaling * (reading.values[1] + offset); | |
83 reading.values[2] = scaling * (reading.values[2] + offset); | |
84 }); | |
85 #else | |
86 data->sensor_scale_name = "in_accel_scale"; | |
87 data->sensor_offset_file_name = "in_accel_offset"; | |
88 data->sensor_frequency_file_name = "in_accel_sampling_frequency"; | |
89 data->apply_scaling_func = base::Bind( | |
90 [](double scaling_value, double offset, SensorReading& reading) { | |
91 // Adapt Linux reading values to generic sensor api specs. | |
92 reading.values[0] = -scaling_value * (reading.values[0] + offset); | |
93 reading.values[1] = -scaling_value * (reading.values[1] + offset); | |
94 reading.values[2] = -scaling_value * (reading.values[2] + offset); | |
95 }); | |
96 #endif | |
97 | |
98 MaybeCheckKernelVersionAndAssignFileNames(file_names_x, file_names_y, | |
99 file_names_z, data); | |
100 data->default_configuration = | |
101 PlatformSensorConfiguration(kDefaultAccelerometerFrequencyHz); | |
102 } | |
103 | |
104 void InitGyroscopeSensorData(SensorPathsLinux* data) { | |
105 std::vector<std::string> file_names_x{"in_anglvel_x_base_raw", | |
106 "in_anglvel_x_raw"}; | |
107 std::vector<std::string> file_names_y{"in_anglvel_y_base_raw", | |
108 "in_anglvel_y_raw"}; | |
109 std::vector<std::string> file_names_z{"in_anglvel_z_base_raw", | |
110 "in_anglvel_z_raw"}; | |
111 #if defined(OS_CHROMEOS) | |
112 data->sensor_scale_name = "in_anglvel_base_scale"; | |
113 data->sensor_frequency_file_name = "in_anglvel_base_frequency"; | |
114 data->apply_scaling_func = base::Bind( | |
115 [](double scaling_value, double offset, SensorReading& reading) { | |
116 double scaling = kMeanGravity * kRadiansInDegrees / scaling_value; | |
117 // Adapt CrOS reading values to generic sensor api specs. | |
118 reading.values[0] = -scaling * (reading.values[0] + offset); | |
119 reading.values[1] = -scaling * (reading.values[1] + offset); | |
120 reading.values[2] = -scaling * (reading.values[2] + offset); | |
121 }); | |
122 #else | |
123 data->sensor_scale_name = "in_anglvel_scale"; | |
124 data->sensor_offset_file_name = "in_anglvel_offset"; | |
125 data->sensor_frequency_file_name = "in_anglvel_sampling_frequency"; | |
126 data->apply_scaling_func = base::Bind( | |
127 [](double scaling_value, double offset, SensorReading& reading) { | |
128 reading.values[0] = scaling_value * (reading.values[0] + offset); | |
129 reading.values[1] = scaling_value * (reading.values[1] + offset); | |
130 reading.values[2] = scaling_value * (reading.values[2] + offset); | |
131 }); | |
132 #endif | |
133 | |
134 MaybeCheckKernelVersionAndAssignFileNames(file_names_x, file_names_y, | |
135 file_names_z, data); | |
136 data->default_configuration = | |
137 PlatformSensorConfiguration(kDefaultGyroscopeFrequencyHz); | |
138 } | |
139 | |
140 // TODO(maksims): Verify magnitometer works correctly on a chromebook when | |
141 // I get one with that sensor onboard. | |
142 void InitMagnitometerSensorData(SensorPathsLinux* data) { | |
143 std::vector<std::string> file_names_x{"in_magn_x_raw"}; | |
144 std::vector<std::string> file_names_y{"in_magn_y_raw"}; | |
145 std::vector<std::string> file_names_z{"in_magn_z_raw"}; | |
146 | |
147 data->sensor_scale_name = "in_magn_scale"; | |
148 data->sensor_offset_file_name = "in_magn_offset"; | |
149 data->sensor_frequency_file_name = "in_magn_sampling_frequency"; | |
150 data->apply_scaling_func = base::Bind( | |
151 [](double scaling_value, double offset, SensorReading& reading) { | |
152 double scaling = scaling_value * kMicroteslaInGauss; | |
153 reading.values[0] = scaling * (reading.values[0] + offset); | |
154 reading.values[1] = scaling * (reading.values[1] + offset); | |
155 reading.values[2] = scaling * (reading.values[2] + offset); | |
156 }); | |
157 | |
158 MaybeCheckKernelVersionAndAssignFileNames(file_names_x, file_names_y, | |
159 file_names_z, data); | |
160 data->default_configuration = | |
161 PlatformSensorConfiguration(kDefaultMagnetometerFrequencyHz); | |
162 } | |
163 | |
164 } // namespace | |
165 | |
166 SensorPathsLinux::SensorPathsLinux() = default; | |
167 SensorPathsLinux::~SensorPathsLinux() = default; | |
168 SensorPathsLinux::SensorPathsLinux(const SensorPathsLinux& other) = default; | |
169 | |
170 bool InitSensorData(SensorType type, SensorPathsLinux* data) { | |
171 DCHECK(data); | |
172 | |
173 data->type = type; | |
174 switch (type) { | |
175 case SensorType::AMBIENT_LIGHT: | |
176 InitAmbientLightSensorData(data); | |
177 break; | |
178 case SensorType::ACCELEROMETER: | |
179 InitAccelerometerSensorData(data); | |
180 break; | |
181 case SensorType::GYROSCOPE: | |
182 InitGyroscopeSensorData(data); | |
183 break; | |
184 case SensorType::MAGNETOMETER: | |
185 InitMagnitometerSensorData(data); | |
186 break; | |
187 default: | |
188 return false; | |
189 } | |
190 | |
191 return true; | |
192 } | |
193 | |
194 SensorInfoLinux::SensorInfoLinux( | |
195 const std::string& sensor_device_node, | |
196 double sensor_device_frequency, | |
197 double sensor_device_scaling_value, | |
198 double sensor_device_offset_value, | |
199 mojom::ReportingMode mode, | |
200 SensorPathsLinux::ReaderFunctor scaling_func, | |
201 std::vector<base::FilePath> device_reading_files) | |
202 : device_node(sensor_device_node), | |
203 device_frequency(sensor_device_frequency), | |
204 device_scaling_value(sensor_device_scaling_value), | |
205 device_offset_value(sensor_device_offset_value), | |
206 reporting_mode(mode), | |
207 apply_scaling_func(scaling_func), | |
208 device_reading_files(std::move(device_reading_files)) {} | |
209 | |
210 SensorInfoLinux::~SensorInfoLinux() = default; | |
211 | |
212 } // namespace device | |
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