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Sanket Agarwalfb636682015-08-11 14:34:29 -07001/*
2 * Copyright (C) 2015 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#ifndef ANDROID_VEHICLE_INTERFACE_H
18#define ANDROID_VEHICLE_INTERFACE_H
19
20#include <stdint.h>
21#include <sys/cdefs.h>
22#include <sys/types.h>
23#include <errno.h>
24
25#include <hardware/hardware.h>
26#include <cutils/native_handle.h>
27
28__BEGIN_DECLS
29
30/*****************************************************************************/
31
32#define VEHICLE_HEADER_VERSION 1
33#define VEHICLE_MODULE_API_VERSION_1_0 HARDWARE_MODULE_API_VERSION(1, 0)
34#define VEHICLE_DEVICE_API_VERSION_1_0 HARDWARE_DEVICE_API_VERSION_2(1, 0, VEHICLE_HEADER_VERSION)
35
36/**
37 * Vehicle HAL to provide interfaces to various Car related sensors. The HAL is
38 * designed in a property, value maping where each property has a value which
39 * can be "get", "set" and "(un)subscribed" to. Subscribing will require the
40 * user of this HAL to provide parameters such as sampling rate.
41 */
42
43
44/*
45 * The id of this module
46 */
47#define VEHICLE_HARDWARE_MODULE_ID "vehicle"
48
49/**
50 * Name of the vehicle device to open
51 */
52#define VEHICLE_HARDWARE_DEVICE "vehicle_hw_device"
53
54/**
55 * Each vehicle property is defined with various annotations to specify the type of information.
56 * Annotations will be used by scripts to run some type check or generate some boiler-plate codes.
57 * Also the annotations are the specification for each property, and each HAL implementation should
58 * follow what is specified as annotations.
59 * Here is the list of annotations with explanation on what it does:
60 * @value_type: Type of data for this property. One of the value from vehicle_value_type should be
61 * set here.
62 * @change_mode: How this property changes. Value set is from vehicle_prop_change_mode. Some
63 * properties can allow either on change or continuous mode and it is up to HAL
64 * implementation to choose which mode to use.
65 * @access: Define how this property can be accessed. read only, write only or R/W from
66 * vehicle_prop_access
67 * @data_member: Name of member from vehicle_value union to access this data.
68 * @data_enum: enum type that should be used for the data.
69 * @unit: Unit of data. Should be from vehicle_unit_type.
Keun-young Parkbf877a72015-12-21 14:16:05 -080070 * @config_flags: Usage of config_flags in vehicle_prop_config
71 * @config_array: Usage of config_array in vehicle_prop_config. When this is specified,
72 * @config_flags will not be used.
Sanket Agarwalfb636682015-08-11 14:34:29 -070073 * @config_string: Explains the usage of config_string in vehicle_prop_config. Property with
74 * this annotation is expected to have additional information in config_string
75 * for that property to work.
Keun-young Park14f09002016-01-22 16:29:22 -080076 * @zone_type type of zoned used. defined for zoned property
Sanket Agarwalfb636682015-08-11 14:34:29 -070077 * @range_start, @range_end : define range of specific property values.
78 */
79//===== Vehicle Information ====
80
81/**
82 * Invalid property value used for argument where invalid property gives different result.
83 * @range_start
84 */
85#define VEHICLE_PROPERTY_INVALID (0x0)
86
87/**
88 * VIN of vehicle
89 * @value_type VEHICLE_VALUE_TYPE_STRING
90 * @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
91 * @access VEHICLE_PROP_ACCESS_READ
92 * @data_member info_vin
93 */
94#define VEHICLE_PROPERTY_INFO_VIN (0x00000100)
95
96/**
97 * Maker name of vehicle
98 * @value_type VEHICLE_VALUE_TYPE_STRING
99 * @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
100 * @access VEHICLE_PROP_ACCESS_READ
101 * @data_member info_make
102 */
103#define VEHICLE_PROPERTY_INFO_MAKE (0x00000101)
104
105/**
106 * Model of vehicle
107 * @value_type VEHICLE_VALUE_TYPE_STRING
108 * @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
109 * @access VEHICLE_PROP_ACCESS_READ
110 * @data_member info_model
111 */
112#define VEHICLE_PROPERTY_INFO_MODEL (0x00000102)
113
114/**
115 * Model year of vehicle.
116 * @value_type VEHICLE_VALUE_TYPE_INT32
117 * @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
118 * @access VEHICLE_PROP_ACCESS_READ
119 * @data_member info_model_year
120 * @unit VEHICLE_UNIT_TYPE_YEAR
121 */
122#define VEHICLE_PROPERTY_INFO_MODEL_YEAR (0x00000103)
123
124/**
125 * Fuel capacity of the vehicle
126 * @value_type VEHICLE_VALUE_TYPE_FLOAT
127 * @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
128 * @access VEHICLE_PROP_ACCESS_READ
129 * @data_member info_fuel_capacity
130 * @unit VEHICLE_UNIT_TYPE_VEHICLE_UNIT_TYPE_MILLILITER
131 */
132#define VEHICLE_PROPERTY_INFO_FUEL_CAPACITY (0x00000104)
133
134
135//==== Vehicle Performance Sensors ====
136
137/**
138 * Current odometer value of the vehicle
139 * @value_type VEHICLE_VALUE_TYPE_FLOAT
140 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
141 * @access VEHICLE_PROP_ACCESS_READ
142 * @data_member odometer
143 * @unit VEHICLE_UNIT_TYPE_KILOMETER
144 */
145#define VEHICLE_PROPERTY_PERF_ODOMETER (0x00000204)
146
147/**
148 * Speed of the vehicle
149 * @value_type VEHICLE_VALUE_TYPE_FLOAT
150 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
151 * @access VEHICLE_PROP_ACCESS_READ
152 * @data_member vehicle_speed
153 * @unit VEHICLE_UNIT_TYPE_METER_PER_SEC
154 */
155#define VEHICLE_PROPERTY_PERF_VEHICLE_SPEED (0x00000207)
156
157
158//==== Engine Sensors ====
159
160/**
161 * Temperature of engine coolant
162 * @value_type VEHICLE_VALUE_TYPE_FLOAT
163 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
164 * @access VEHICLE_PROP_ACCESS_READ
165 * @data_member engine_coolant_temperature
166 * @unit VEHICLE_UNIT_TYPE_CELCIUS
167 */
168#define VEHICLE_PROPERTY_ENGINE_COOLANT_TEMP (0x00000301)
169
170/**
171 * Temperature of engine oil
172 * @value_type VEHICLE_VALUE_TYPE_FLOAT
173 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
174 * @access VEHICLE_PROP_ACCESS_READ
175 * @data_member engine_oil_temperature
176 * @unit VEHICLE_UNIT_TYPE_CELCIUS
177 */
178#define VEHICLE_PROPERTY_ENGINE_OIL_TEMP (0x00000304)
179/**
180 * Engine rpm
181 * @value_type VEHICLE_VALUE_TYPE_FLOAT
182 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
183 * @access VEHICLE_PROP_ACCESS_READ
184 * @data_member engine_rpm
185 * @unit VEHICLE_UNIT_TYPE_RPM
186 */
187#define VEHICLE_PROPERTY_ENGINE_RPM (0x00000305)
188
189//==== Event Sensors ====
190
191/**
192 * Currently selected gear
193 * @value_type VEHICLE_VALUE_TYPE_INT32
194 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
195 * @access VEHICLE_PROP_ACCESS_READ
196 * @data_member gear_selection
197 * @data_enum vehicle_gear
198 */
199#define VEHICLE_PROPERTY_GEAR_SELECTION (0x00000400)
200
201/**
202 * Current gear. In non-manual case, selected gear does not necessarily match the current gear
203 * @value_type VEHICLE_VALUE_TYPE_INT32
204 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
205 * @access VEHICLE_PROP_ACCESS_READ
206 * @data_member gear_current_gear
207 * @data_enum vehicle_gear
208 */
209#define VEHICLE_PROPERTY_CURRENT_GEAR (0x00000401)
210
211/**
212 * Parking brake state.
213 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
214 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
215 * @access VEHICLE_PROP_ACCESS_READ
216 * @data_member parking_brake
217 * @data_enum vehicle_boolean
218 */
219#define VEHICLE_PROPERTY_PARKING_BRAKE_ON (0x00000402)
220
221/**
222 * Driving status policy.
223 * @value_type VEHICLE_VALUE_TYPE_INT32
224 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
225 * @access VEHICLE_PROP_ACCESS_READ
226 * @data_member driving_status
227 * @data_enum vehicle_driving_status
228 */
229#define VEHICLE_PROPERTY_DRIVING_STATUS (0x00000404)
230
231/**
232 * Warning for fuel low level.
233 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
234 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
235 * @access VEHICLE_PROP_ACCESS_READ
236 * @data_member is_fuel_level_low
237 * @data_enum vehicle_boolean
238 */
239#define VEHICLE_PROPERTY_FUEL_LEVEL_LOW (0x00000405)
240
241/**
242 * Night mode or not.
243 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
244 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
245 * @access VEHICLE_PROP_ACCESS_READ
246 * @data_member night_mode
247 * @data_enum vehicle_boolean
248 */
249#define VEHICLE_PROPERTY_NIGHT_MODE (0x00000407)
250
251
252
253 //==== HVAC Properties ====
254
255/**
256 * Fan speed setting
257 * @value_type VEHICLE_VALUE_TYPE_ZONED_INT32
258 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
259 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800260 * @config_flags Supported zones
Sanket Agarwalfb636682015-08-11 14:34:29 -0700261 * @data_member hvac.fan_speed
Keun-young Park14f09002016-01-22 16:29:22 -0800262 * @zone_type VEHICLE_ZONE
Sanket Agarwalfb636682015-08-11 14:34:29 -0700263 * @data_enum TODO
264 */
265#define VEHICLE_PROPERTY_HVAC_FAN_SPEED (0x00000500)
266
267/**
268 * Fan direction setting
269 * @value_type VEHICLE_VALUE_TYPE_ZONED_INT32
270 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
271 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800272 * @config_flags Supported zones
Sanket Agarwalfb636682015-08-11 14:34:29 -0700273 * @data_member hvac.fan_direction
Keun-young Park14f09002016-01-22 16:29:22 -0800274 * @zone_type VEHICLE_ZONE
Sanket Agarwalfb636682015-08-11 14:34:29 -0700275 * @data_enum TODO
276 */
277#define VEHICLE_PROPERTY_HVAC_FAN_DIRECTION (0x00000501)
278
Steve Paikd2ba70f2015-12-10 14:58:27 -0800279/*
280 * Bit flags for fan direction
281 */
Steve Paik159349e2016-02-09 18:45:58 -0800282enum vehicle_hvac_fan_direction {
283 VEHICLE_HVAC_FAN_DIRECTION_FACE = 0x1,
284 VEHICLE_HVAC_FAN_DIRECTION_FLOOR = 0x2,
285 VEHICLE_HVAC_FAN_DIRECTION_FACE_AND_FLOOR = 0x3,
286 VEHICLE_HVAC_FAN_DIRECTION_DEFROST = 0x4,
287 VEHICLE_HVAC_FAN_DIRECTION_DEFROST_AND_FLOOR = 0x5
Steve Paikd2ba70f2015-12-10 14:58:27 -0800288};
289
Sanket Agarwalfb636682015-08-11 14:34:29 -0700290/**
291 * HVAC current temperature.
292 * @value_type VEHICLE_VALUE_TYPE_ZONED_FLOAT
293 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
294 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800295 * @config_flags Supported zones
Keun-young Park14f09002016-01-22 16:29:22 -0800296 * @zone_type VEHICLE_ZONE
Sanket Agarwalfb636682015-08-11 14:34:29 -0700297 * @data_member hvac.temperature_current
298 */
299#define VEHICLE_PROPERTY_HVAC_TEMPERATURE_CURRENT (0x00000502)
300
301/**
302 * HVAC, target temperature set.
303 * @value_type VEHICLE_VALUE_TYPE_ZONED_FLOAT
304 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
Keun-young Parkbf877a72015-12-21 14:16:05 -0800305 * @config_flags Supported zones
Sanket Agarwalfb636682015-08-11 14:34:29 -0700306 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Park14f09002016-01-22 16:29:22 -0800307 * @zone_type VEHICLE_ZONE
Sanket Agarwalfb636682015-08-11 14:34:29 -0700308 * @data_member hvac.temperature_set
309 */
310#define VEHICLE_PROPERTY_HVAC_TEMPERATURE_SET (0x00000503)
311
312/**
313 * On/off defrost
314 * @value_type VEHICLE_VALUE_TYPE_ZONED_BOOLEAN
315 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
316 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800317 * @config_flags Supported zones
Sanket Agarwalfb636682015-08-11 14:34:29 -0700318 * @data_member hvac.defrost_on
319 */
320#define VEHICLE_PROPERTY_HVAC_DEFROSTER (0x00000504)
321
322/**
323 * On/off AC
324 * @value_type VEHICLE_VALUE_TYPE_ZONED_BOOLEAN
325 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
326 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800327 * @config_flags Supported zones
Keun-young Park14f09002016-01-22 16:29:22 -0800328 * @zone_type VEHICLE_ZONE
Sanket Agarwalfb636682015-08-11 14:34:29 -0700329 * @data_member hvac.ac_on
330 */
331#define VEHICLE_PROPERTY_HVAC_AC_ON (0x00000505)
332
333/**
Steve Paikd2ba70f2015-12-10 14:58:27 -0800334 * On/off max AC
335 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
336 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
337 * @access VEHICLE_PROP_ACCESS_READ_WRITE
338 * @data_member hvac.max_ac_on
339 */
340#define VEHICLE_PROPERTY_HVAC_MAX_AC_ON (0x00000506)
341
342/**
343 * On/off max defrost
344 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
345 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
346 * @access VEHICLE_PROP_ACCESS_READ_WRITE
347 * @data_member hvac.max_defrost_on
348 */
349#define VEHICLE_PROPERTY_HVAC_MAX_DEFROST_ON (0x00000507)
350
351/**
352 * On/off re-circulation
353 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
354 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
355 * @access VEHICLE_PROP_ACCESS_READ_WRITE
356 * @data_member hvac.max_recirc_on
357 */
358#define VEHICLE_PROPERTY_HVAC_RECIRC_ON (0x00000508)
359
360/**
361 * On/off dual
362 * @value_type VEHICLE_VALUE_TYPE_BOOLEAN
363 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
364 * @access VEHICLE_PROP_ACCESS_READ_WRITE
365 * @data_member hvac.dual_on
366 */
367#define VEHICLE_PROPERTY_HVAC_DUAL_ON (0x00000509)
368
369/**
Sanket Agarwalfb636682015-08-11 14:34:29 -0700370 * Outside temperature
371 * @value_type VEHICLE_VALUE_TYPE_FLOAT
372 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
373 * @access VEHICLE_PROP_ACCESS_READ
374 * @data_member outside_temperature
375 * @unit VEHICLE_UNIT_TYPE_CELCIUS
376 */
Keun-young Parkcb354502016-02-08 18:15:55 -0800377#define VEHICLE_PROPERTY_ENV_OUTSIDE_TEMPERATURE (0x00000703)
378
379
380/**
381 * Cabin temperature
382 * @value_type VEHICLE_VALUE_TYPE_FLOAT
383 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE|VEHICLE_PROP_CHANGE_MODE_CONTINUOUS
384 * @access VEHICLE_PROP_ACCESS_READ
385 * @data_member cabin_temperature
386 * @unit VEHICLE_UNIT_TYPE_CELCIUS
387 */
388#define VEHICLE_PROPERTY_ENV_CABIN_TEMPERATURE (0x00000704)
Sanket Agarwalfb636682015-08-11 14:34:29 -0700389
390
391/*
392 * Radio features.
393 */
394/**
395 * Radio presets stored on the Car radio module. The data type used is int32
396 * array with the following fields:
397 * <ul>
398 * <li> int32_array[0]: Preset number </li>
399 * <li> int32_array[1]: Band type (see #RADIO_BAND_FM in
400 * system/core/include/system/radio.h).
401 * <li> int32_array[2]: Channel number </li>
402 * <li> int32_array[3]: Sub channel number </li>
403 * </ul>
404 *
405 * NOTE: When getting a current preset config ONLY set preset number (i.e.
406 * int32_array[0]). For setting a preset other fields are required.
407 *
408 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC4
409 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
410 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800411 * @config_flags Number of presets supported
Sanket Agarwalfb636682015-08-11 14:34:29 -0700412 * @data_member int32_array
413 */
414#define VEHICLE_PROPERTY_RADIO_PRESET (0x0000801)
415
416/**
417 * Constants relevant to radio.
418 */
419enum vehicle_radio_consts {
420 /** Minimum value for the radio preset */
421 VEHICLE_RADIO_PRESET_MIN_VALUE = 1,
422};
423
424/**
425 * Represents audio focus state of Android side. Note that car's audio module will own audio
426 * focus and grant audio focus to Android side when requested by Android side. The focus has both
427 * per stream characteristics and global characteristics.
428 *
429 * Focus request (get of this property) will take the following form in int32_vec4:
Keun-young Park08c255e2015-12-09 13:47:30 -0800430 * int32_array[0]: vehicle_audio_focus_request type
Sanket Agarwalfb636682015-08-11 14:34:29 -0700431 * int32_array[1]: bit flags of streams requested by this focus request. There can be up to
432 * 32 streams.
433 * int32_array[2]: External focus state flags. For request, only flag like
434 * VEHICLE_AUDIO_EXT_FOCUS_CAR_PLAY_ONLY_FLAG can be used.
435 * This is for case like radio where android side app still needs to hold focus
436 * but playback is done outside Android.
437 * Note that each focus request can request multiple streams that is expected to be used for
438 * the current request. But focus request itself is global behavior as GAIN or GAIN_TRANSIENT
439 * expects all sounds played by car's audio module to stop. Note that stream already allocated to
440 * android before this focus request should not be affected by focus request.
441 *
442 * Focus response (set and subscription callback for this property) will take the following form:
Keun-young Park08c255e2015-12-09 13:47:30 -0800443 * int32_array[0]: vehicle_audio_focus_state type
Sanket Agarwalfb636682015-08-11 14:34:29 -0700444 * int32_array[1]: bit flags of streams allowed.
445 * int32_array[2]: External focus state: bit flags of currently active audio focus in car
446 * side (outside Android). Active audio focus does not necessarily mean currently
447 * playing, but represents the state of having focus or waiting for focus
448 * (pause state).
449 * One or combination of flags from vehicle_audio_ext_focus_flag.
450 * 0 means no active audio focus holder outside Android.
451 * The state will have following values for each vehicle_audio_focus_state_type:
452 * GAIN: 0 or VEHICLE_AUDIO_EXT_FOCUS_CAR_PLAY_ONLY when radio is active in
453 * Android side.
454 * GAIN_TRANSIENT: 0. Can be VEHICLE_AUDIO_EXT_FOCUS_CAR_PERMANENT or
455 * VEHICLE_AUDIO_EXT_FOCUS_CAR_TRANSIENT if android side has requested
456 * GAIN_TRANSIENT_MAY_DUCK and car side is ducking.
457 * LOSS: 0 when no focus is audio is active in car side.
458 * VEHICLE_AUDIO_EXT_FOCUS_CAR_PERMANENT when car side is playing something
459 * permanent.
460 * LOSS_TRANSIENT: always should be VEHICLE_AUDIO_EXT_FOCUS_CAR_TRANSIENT
461 *
462 * If car does not support VEHICLE_PROPERTY_AUDIO_FOCUS, focus is assumed to be granted always.
463 *
464 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC3
465 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
466 * @access VEHICLE_PROP_ACCESS_READ_WRITE
467 * @data_member int32_array
468 */
469#define VEHICLE_PROPERTY_AUDIO_FOCUS (0x00000900)
470
471enum vehicle_audio_focus_request {
472 VEHICLE_AUDIO_FOCUS_REQUEST_GAIN = 0x1,
473 VEHICLE_AUDIO_FOCUS_REQUEST_GAIN_TRANSIENT = 0x2,
474 VEHICLE_AUDIO_FOCUS_REQUEST_GAIN_TRANSIENT_MAY_DUCK = 0x3,
Keun-young Parkcb354502016-02-08 18:15:55 -0800475 /**
476 * This is for the case where android side plays sound like UI feedback
477 * and car side does not need to duck existing playback as long as
478 * requested stream is available.
479 */
480 VEHICLE_AUDIO_FOCUS_REQUEST_GAIN_TRANSIENT_NO_DUCK = 0x4,
481 VEHICLE_AUDIO_FOCUS_REQUEST_RELEASE = 0x5,
Sanket Agarwalfb636682015-08-11 14:34:29 -0700482};
483
484enum vehicle_audio_focus_state {
485 /**
486 * Android side has permanent focus and can play allowed streams.
487 */
488 VEHICLE_AUDIO_FOCUS_STATE_GAIN = 0x1,
489 /**
490 * Android side has transient focus and can play allowed streams.
491 */
492 VEHICLE_AUDIO_FOCUS_STATE_GAIN_TRANSIENT = 0x2,
493 /**
494 * Car audio module is playing guidance kind of sound outside Android. Android side can
495 * still play through allowed streams with ducking.
496 */
497 VEHICLE_AUDIO_FOCUS_STATE_LOSS_TRANSIENT_CAN_DUCK = 0x3,
498 /**
499 * Car audio module is playing transient sound outside Android. Android side should stop
500 * playing any sounds.
501 */
502 VEHICLE_AUDIO_FOCUS_STATE_LOSS_TRANSIENT = 0x4,
503 /**
504 * Android side has lost focus and cannot play any sound.
505 */
506 VEHICLE_AUDIO_FOCUS_STATE_LOSS = 0x5,
507 /**
508 * car audio module is playing safety critical sound, and Android side cannot request focus
509 * until the current state is finished. car audio module should restore it to the previous
510 * state when it can allow Android to play.
511 */
512 VEHICLE_AUDIO_FOCUS_STATE_LOSS_TRANSIENT_EXLCUSIVE = 0x6,
513};
514
515/**
516 * Flags to represent multiple streams by combining these.
517 */
518enum vehicle_audio_stream_flag {
519 VEHICLE_AUDIO_STREAM_STREAM0_FLAG = (0x1<<0),
520 VEHICLE_AUDIO_STREAM_STREAM1_FLAG = (0x1<<1),
521 VEHICLE_AUDIO_STREAM_STREAM2_FLAG = (0x1<<2),
522};
523
524/**
525 * Represents stream number (always 0 to N -1 where N is max number of streams).
526 * Can be used for audio related property expecting one stream.
527 */
528enum vehicle_audio_stream {
529 VEHICLE_AUDIO_STREAM0 = 0,
530 VEHICLE_AUDIO_STREAM1 = 1,
531};
532
533/**
534 * Flag to represent external focus state (outside Android).
535 */
536enum vehicle_audio_ext_focus_flag {
537 /**
538 * No external focus holder.
539 */
540 VEHICLE_AUDIO_EXT_FOCUS_NONE_FLAG = 0x0,
541 /**
542 * Car side (outside Android) has component holding GAIN kind of focus state.
543 */
544 VEHICLE_AUDIO_EXT_FOCUS_CAR_PERMANENT_FLAG = 0x1,
545 /**
546 * Car side (outside Android) has component holding GAIN_TRANSIENT kind of focus state.
547 */
548 VEHICLE_AUDIO_EXT_FOCUS_CAR_TRANSIENT_FLAG = 0x2,
549 /**
550 * Car side is expected to play something while focus is held by Android side. One example
551 * can be radio attached in car side. But Android's radio app still should have focus,
552 * and Android side should be in GAIN state, but media stream will not be allocated to Android
553 * side and car side can play radio any time while this flag is active.
554 */
555 VEHICLE_AUDIO_EXT_FOCUS_CAR_PLAY_ONLY_FLAG = 0x4,
556};
557
558/**
559 * Index in int32_array for VEHICLE_PROPERTY_AUDIO_FOCUS property.
560 */
561enum vehicle_audio_focus_index {
562 VEHICLE_AUDIO_FOCUS_INDEX_FOCUS = 0,
563 VEHICLE_AUDIO_FOCUS_INDEX_STREAMS = 1,
564 VEHICLE_AUDIO_FOCUS_INDEX_EXTERNAL_FOCUS_STATE = 2,
565};
566
567/**
Keun-young Parkbf877a72015-12-21 14:16:05 -0800568 * Property to control audio volume of each audio context.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700569 *
570 * Data type looks like:
Keun-young Parkbf877a72015-12-21 14:16:05 -0800571 * int32_array[0] : stream context as defined in vehicle_audio_context_flag.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700572 * int32_array[1] : volume level, valid range is 0 to int32_max_value defined in config.
573 * 0 will be mute state. int32_min_value in config should be always 0.
574 * int32_array[2] : One of vehicle_audio_volume_state.
575 *
576 * This property requires per stream based get. HAL implementation should check stream number
577 * in get call to return the right volume.
578 *
579 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC3
580 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
581 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800582 * @config_flags all audio contexts supported.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700583 * @data_member int32_array
584 */
585#define VEHICLE_PROPERTY_AUDIO_VOLUME (0x00000901)
586
587/**
588 * enum to represent audio volume state.
589 */
590enum vehicle_audio_volume_state {
591 VEHICLE_AUDIO_VOLUME_STATE_OK = 0,
592 /**
593 * Audio volume has reached volume limit set in VEHICLE_PROPERTY_AUDIO_VOLUME_LIMIT
594 * and user's request to increase volume further is not allowed.
595 */
596 VEHICLE_AUDIO_VOLUME_STATE_LIMIT_REACHED = 1,
597};
598
599/**
600 * Index in int32_array for VEHICLE_PROPERTY_AUDIO_VOLUME property.
601 */
602enum vehicle_audio_volume_index {
603 VEHICLE_AUDIO_VOLUME_INDEX_STREAM = 0,
604 VEHICLE_AUDIO_VOLUME_INDEX_VOLUME = 1,
605 VEHICLE_AUDIO_VOLUME_INDEX_STATE = 2,
606};
607
608/**
609 * Property for handling volume limit set by user. This limits maximum volume that can be set
Keun-young Parkbf877a72015-12-21 14:16:05 -0800610 * per each context.
611 * int32_array[0] : stream context as defined in vehicle_audio_context_flag.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700612 * int32_array[1] : maximum volume set to the stream. If there is no restriction, this value
613 * will be bigger than VEHICLE_PROPERTY_AUDIO_VOLUME's max value.
614 *
615 * If car does not support this feature, this property should not be populated by HAL.
616 * This property requires per stream based get. HAL implementation should check stream number
617 * in get call to return the right volume.
618 *
619 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC2
620 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
621 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800622 * @config_flags all audio contexts supported.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700623 * @data_member int32_array
624 */
625#define VEHICLE_PROPERTY_AUDIO_VOLUME_LIMIT (0x00000902)
626
627/**
628 * Index in int32_array for VEHICLE_PROPERTY_AUDIO_VOLUME_LIMIT property.
629 */
630enum vehicle_audio_volume_limit_index {
631 VEHICLE_AUDIO_VOLUME_LIMIT_INDEX_STREAM = 0,
632 VEHICLE_AUDIO_VOLUME_LIMIT_INDEX_MAX_VOLUME = 1,
633};
634
635/**
636 * Property to share audio routing policy of android side. This property is set at the beginning
637 * to pass audio policy in android side down to vehicle HAL and car audio module.
638 * This can be used as a hint to adjust audio policy or other policy decision.
639 *
640 * int32_array[0] : audio stream where the audio for the application context will be routed
641 * by default. Note that this is the default setting from system, but each app
642 * may still use different audio stream for whatever reason.
Keun-young Parkbf877a72015-12-21 14:16:05 -0800643 * int32_array[1] : All audio contexts that will be sent through the physical stream. Flag
644 * is defined in vehicle_audio_context_flag.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700645
646 * Setting of this property will be done for all available physical streams based on audio H/W
647 * variant information acquired from VEHICLE_PROPERTY_AUDIO_HW_VARIANT property.
648 *
649 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC2
650 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
651 * @access VEHICLE_PROP_ACCESS_WRITE
652 * @data_member int32_array
653 */
654#define VEHICLE_PROPERTY_AUDIO_ROUTING_POLICY (0x00000903)
655
656/**
657 * Index in int32_array for VEHICLE_PROPERTY_AUDIO_ROUTING_POLICY property.
658 */
659enum vehicle_audio_routing_policy_index {
660 VEHICLE_AUDIO_ROUTING_POLICY_INDEX_STREAM = 0,
661 VEHICLE_AUDIO_ROUTING_POLICY_INDEX_CONTEXTS = 1,
662};
663
664/**
665* Property to return audio H/W variant type used in this car. This allows android side to
666* support different audio policy based on H/W variant used. Note that other components like
667* CarService may need overlay update to support additional variants. If this property does not
668* exist, default audio policy will be used.
669*
670* @value_type VEHICLE_VALUE_TYPE_INT32
671* @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
672* @access VEHICLE_PROP_ACCESS_READ
Keun-young Parkbf877a72015-12-21 14:16:05 -0800673* @config_flags Additional info on audio H/W. Should use vehicle_audio_hw_variant_config_flag for
674* this.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700675* @data_member int32_value
676*/
677#define VEHICLE_PROPERTY_AUDIO_HW_VARIANT (0x00000904)
678
679/**
680 * Flag to be used in vehicle_prop_config.config_flags for VEHICLE_PROPERTY_AUDIO_HW_VARIANT.
681 */
682enum vehicle_audio_hw_variant_config_flag {
683 /**
684 * This is a flag to disable the default behavior of not sending focus request for radio module.
685 * By default, when radio app request audio focus, that focus request is filtered out and
686 * is not sent to car audio module as radio is supposed to be played by car radio module and
687 * android side should have have audio focus for media stream.
688 * But in some H/W, radio may be directly played from android side, and in that case,
689 * android side should take focus for media stream. This flag should be enabled in such case.
690 */
691 VEHICLE_AUDIO_HW_VARIANT_FLAG_PASS_RADIO_AUDIO_FOCUS_FLAG = 0x1,
692};
693
694/**
Keun-young Parkcb8c8872016-01-08 09:41:19 -0800695 * Property to share currently active audio context in android side.
696 * This can be used as a hint to adjust audio policy or other policy decision. Note that there
697 * can be multiple context active at the same time.
698 *
699 * @value_type VEHICLE_VALUE_TYPE_INT32
700 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
701 * @access VEHICLE_PROP_ACCESS_WRITE
702 * @data_member int32
703 */
704#define VEHICLE_PROPERTY_AUDIO_CONTEXT (0x00000905)
705/**
706 * Flags to tell the current audio context.
707 */
708enum vehicle_audio_context_flag {
709 /** Music playback is currently active. */
710 VEHICLE_AUDIO_CONTEXT_MUSIC_FLAG = 0x1,
711 /** Navigation is currently running. */
712 VEHICLE_AUDIO_CONTEXT_NAVIGATION_FLAG = 0x2,
713 /** Voice command session is currently running. */
714 VEHICLE_AUDIO_CONTEXT_VOICE_COMMAND_FLAG = 0x4,
715 /** Voice call is currently active. */
716 VEHICLE_AUDIO_CONTEXT_CALL_FLAG = 0x8,
717 /** Alarm is active. This may be only used in VEHICLE_PROPERTY_AUDIO_ROUTING_POLICY. */
718 VEHICLE_AUDIO_CONTEXT_ALARM_FLAG = 0x10,
719 /**
720 * Notification sound is active. This may be only used in VEHICLE_PROPERTY_AUDIO_ROUTING_POLICY.
721 */
722 VEHICLE_AUDIO_CONTEXT_NOTIFICATION_FLAG = 0x20,
723 /**
724 * Context unknown. Only used for VEHICLE_PROPERTY_AUDIO_ROUTING_POLICY to represent default
725 * stream for unknown contents.
726 */
727 VEHICLE_AUDIO_CONTEXT_UNKNOWN_FLAG = 0x40,
728 /** Safety alert / warning is played. */
729 VEHICLE_AUDIO_CONTEXT_SAFETY_ALERT_FLAG = 0x80,
730 /** CD / DVD kind of audio is played */
731 VEHICLE_AUDIO_CONTEXT_CD_ROM = 0x100,
732 /** Aux audio input is played */
733 VEHICLE_AUDIO_CONTEXT_AUX_AUDIO = 0x200,
Keun-young Parkfc6f0d82016-02-09 19:50:45 -0800734 /** system sound like UI feedback */
735 VEHICLE_AUDIO_CONTEXT_SYSTEM_SOUND = 0x400,
Keun-young Parkcb8c8872016-01-08 09:41:19 -0800736};
737
738/**
Sanket Agarwalfb636682015-08-11 14:34:29 -0700739 * Property to control power state of application processor.
740 *
741 * It is assumed that AP's power state is controller by separate power controller.
742 *
743 * For configuration information, vehicle_prop_config.config_flags can have bit flag combining
744 * values in vehicle_ap_power_state_config_type.
745 *
746 * For get / notification, data type looks like this:
747 * int32_array[0] : vehicle_ap_power_state_type
748 * int32_array[1] : additional parameter relevant for each state. should be 0 if not used.
749 * For set, data type looks like this:
750 * int32_array[0] : vehicle_ap_power_state_set_type
751 * int32_array[1] : additional parameter relevant for each request. should be 0 if not used.
752 *
753 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC2
754 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
755 * @access VEHICLE_PROP_ACCESS_READ_WRITE
Keun-young Parkbf877a72015-12-21 14:16:05 -0800756 * @config_flags Additional info on power state. Should use vehicle_ap_power_state_config_flag.
Sanket Agarwalfb636682015-08-11 14:34:29 -0700757 * @data_member int32_array
758 */
759#define VEHICLE_PROPERTY_AP_POWER_STATE (0x00000A00)
760
761enum vehicle_ap_power_state_config_flag {
762 /**
763 * AP can enter deep sleep state. If not set, AP will always shutdown from
764 * VEHICLE_AP_POWER_STATE_SHUTDOWN_PREPARE power state.
765 */
766 VEHICLE_AP_POWER_STATE_CONFIG_ENABLE_DEEP_SLEEP_FLAG = 0x1,
767
768 /**
769 * The power controller can power on AP from off state after timeout specified in
770 * VEHICLE_AP_POWER_SET_SHUTDOWN_READY message.
771 */
772 VEHICLE_AP_POWER_STATE_CONFIG_SUPPORT_TIMER_POWER_ON_FLAG = 0x2,
773};
774
775enum vehicle_ap_power_state {
776 /** vehicle HAL will never publish this state to AP */
777 VEHICLE_AP_POWER_STATE_OFF = 0,
778 /** vehicle HAL will never publish this state to AP */
779 VEHICLE_AP_POWER_STATE_DEEP_SLEEP = 1,
780 /** AP is on but display should be off. */
781 VEHICLE_AP_POWER_STATE_ON_DISP_OFF = 2,
782 /** AP is on with display on. This state allows full user interaction. */
783 VEHICLE_AP_POWER_STATE_ON_FULL = 3,
784 /**
785 * The power controller has requested AP to shutdown. AP can either enter sleep state or start
786 * full shutdown. AP can also request postponing shutdown by sending
787 * VEHICLE_AP_POWER_SET_SHUTDOWN_POSTPONE message. The power controller should change power
788 * state to this state to shutdown system.
789 *
790 * int32_array[1] : one of enum_vehicle_ap_power_state_shutdown_param_type
791 */
792 VEHICLE_AP_POWER_STATE_SHUTDOWN_PREPARE = 4,
793};
794
795enum vehicle_ap_power_state_shutdown_param {
796 /** AP should shutdown immediately. Postponing is not allowed. */
797 VEHICLE_AP_POWER_SHUTDOWN_PARAM_SHUTDOWN_IMMEDIATELY = 1,
798 /** AP can enter deep sleep instead of shutting down completely. */
799 VEHICLE_AP_POWER_SHUTDOWN_PARAM_CAN_SLEEP = 2,
800 /** AP can only shutdown with postponing allowed. */
801 VEHICLE_AP_POWER_SHUTDOWN_PARAM_SHUTDOWN_ONLY = 3,
802};
803
804enum vehicle_ap_power_set_state {
805 /**
806 * AP has finished boot up, and can start shutdown if requested by power controller.
807 */
808 VEHICLE_AP_POWER_SET_BOOT_COMPLETE = 0x1,
809 /**
810 * AP is entering deep sleep state. How this state is implemented may vary depending on
811 * each H/W, but AP's power should be kept in this state.
812 */
813 VEHICLE_AP_POWER_SET_DEEP_SLEEP_ENTRY = 0x2,
814 /**
815 * AP is exiting from deep sleep state, and is in VEHICLE_AP_POWER_STATE_SHUTDOWN_PREPARE state.
816 * The power controller may change state to other ON states based on the current state.
817 */
818 VEHICLE_AP_POWER_SET_DEEP_SLEEP_EXIT = 0x3,
819 /**
820 * int32_array[1]: Time to postpone shutdown in ms. Maximum value can be 5000 ms.
821 * If AP needs more time, it will send another POSTPONE message before
822 * the previous one expires.
823 */
824 VEHICLE_AP_POWER_SET_SHUTDOWN_POSTPONE = 0x4,
825 /**
826 * AP is starting shutting down. When system completes shutdown, everything will stop in AP
827 * as kernel will stop all other contexts. It is responsibility of vehicle HAL or lower level
828 * to synchronize that state with external power controller. As an example, some kind of ping
829 * with timeout in power controller can be a solution.
830 *
831 * int32_array[1]: Time to turn on AP in secs. Power controller may turn on AP after specified
832 * time so that AP can run tasks like update. If it is set to 0, there is no
833 * wake up, and power controller may not necessarily support wake-up.
834 * If power controller turns on AP due to timer, it should start with
835 * VEHICLE_AP_POWER_STATE_ON_DISP_OFF state, and after receiving
836 * VEHICLE_AP_POWER_SET_BOOT_COMPLETE, it shall do state transition to
837 * VEHICLE_AP_POWER_STATE_SHUTDOWN_PREPARE.
838 */
839 VEHICLE_AP_POWER_SET_SHUTDOWN_START = 0x5,
840 /**
841 * User has requested to turn off headunit's display, which is detected in android side.
842 * The power controller may change the power state to VEHICLE_AP_POWER_STATE_ON_DISP_OFF.
843 */
844 VEHICLE_AP_POWER_SET_DISPLAY_OFF = 0x6,
845 /**
846 * User has requested to turn on headunit's display, most probably from power key input which
847 * is attached to headunit. The power controller may change the power state to
848 * VEHICLE_AP_POWER_STATE_ON_FULL.
849 */
850 VEHICLE_AP_POWER_SET_DISPLAY_ON = 0x7,
851};
852
853/**
854 * Property to represent brightness of the display. Some cars have single control for
855 * the brightness of all displays and this property is to share change in that control.
856 *
857 * If this is writable, android side can set this value when user changes display brightness
858 * from Settings. If this is read only, user may still change display brightness from Settings,
859 * but that will not be reflected to other displays.
860 *
861 * @value_type VEHICLE_VALUE_TYPE_INT32
862 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
863 * @access VEHICLE_PROP_ACCESS_READ|VEHICLE_PROP_ACCESS_READ_WRITE
864 * @data_member int32
865 */
866#define VEHICLE_PROPERTY_DISPLAY_BRIGHTNESS (0x00000A01)
867
868
869/**
870 * Index in int32_array for VEHICLE_PROPERTY_AP_POWER_STATE property.
871 */
872enum vehicle_ap_power_state_index {
873 VEHICLE_AP_POWER_STATE_INDEX_STATE = 0,
874 VEHICLE_AP_POWER_STATE_INDEX_ADDITIONAL = 1,
875};
876
877/**
878* Property to report bootup reason for the current power on. This is a static property that will
879* not change for the whole duration until power off. For example, even if user presses power on
880* button after automatic power on with door unlock, bootup reason should stay with
881* VEHICLE_AP_POWER_BOOTUP_REASON_USER_UNLOCK.
882*
883* int32_value should be vehicle_ap_power_bootup_reason.
884*
885* @value_type VEHICLE_VALUE_TYPE_INT32
886* @change_mode VEHICLE_PROP_CHANGE_MODE_STATIC
887* @access VEHICLE_PROP_ACCESS_READ
888* @data_member int32_value
889*/
890#define VEHICLE_PROPERTY_AP_POWER_BOOTUP_REASON (0x00000A02)
891
892/**
893 * Enum to represent bootup reason.
894 */
895enum vehicle_ap_power_bootup_reason {
896 /**
897 * Power on due to user's pressing of power key or rotating of ignition switch.
898 */
899 VEHICLE_AP_POWER_BOOTUP_REASON_USER_POWER_ON = 0,
900 /**
901 * Automatic power on triggered by door unlock or any other kind of automatic user detection.
902 */
903 VEHICLE_AP_POWER_BOOTUP_REASON_USER_UNLOCK = 1,
904 /**
905 * Automatic power on triggered by timer. This only happens when AP has asked wake-up after
906 * certain time through time specified in VEHICLE_AP_POWER_SET_SHUTDOWN_START.
907 */
908 VEHICLE_AP_POWER_BOOTUP_REASON_TIMER = 2,
909};
910
Keun-young Parkcb354502016-02-08 18:15:55 -0800911
912/**
913 * Property to feed H/W input events to android
914 *
915 * int32_array[0] : action defined by vehicle_hw_key_input_action
916 * int32_array[1] : key code, should use standard android key code
917 * int32_array[2] : target display defined in vehicle_display. Events not tied
918 * to specific display should be sent to DISPLAY_MAIN.
919 * int32_array[3] : reserved for now. should be zero
920 * @value_type VEHICLE_VALUE_TYPE_INT32_VEC4
921 * @change_mode VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
922 * @access VEHICLE_PROP_ACCESS_READ
923 * @config_flags
924 * @data_member int32_array
925 */
926#define VEHICLE_PROPERTY_HW_KEY_INPUT (0x00000A10)
927
928enum vehicle_hw_key_input_action {
929 /** Key down */
930 VEHICLE_HW_KEY_INPUT_ACTION_DOWN = 0,
931 /** Key up */
932 VEHICLE_HW_KEY_INPUT_ACTION_UP = 1,
933};
934
935enum vehicle_display {
936 /** center console */
937 VEHICLE_DISPLAY_MAIN = 0,
938 VEHICLE_DISPLAY_INSTRUMENT_CLUSTER = 1,
939};
940
Sanket Agarwalfb636682015-08-11 14:34:29 -0700941/**
Sanket Agarwalfb636682015-08-11 14:34:29 -0700942 * H/W specific, non-standard property can be added as necessary. Such property should use
943 * property number in range of [VEHICLE_PROPERTY_CUSTOM_START, VEHICLE_PROPERTY_CUSTOM_END].
944 * Definition of property in this range is completely up to each HAL implementation.
945 * For such property, it is recommended to fill vehicle_prop_config.config_string with some
946 * additional information to help debugging. For example, company XYZ's custom extension may
947 * include config_string of "com.XYZ.some_further_details".
948 * @range_start
949 */
Keun-young Park77d3c392016-01-25 11:37:24 -0800950#define VEHICLE_PROPERTY_CUSTOM_START (0x70000000)
Sanket Agarwalfb636682015-08-11 14:34:29 -0700951/** @range_end */
Keun-young Park77d3c392016-01-25 11:37:24 -0800952#define VEHICLE_PROPERTY_CUSTOM_END (0x73ffffff)
Sanket Agarwalfb636682015-08-11 14:34:29 -0700953
954/**
955 * Property range allocated for system's internal usage like testing. HAL should never declare
956 * property in this range.
957 * @range_start
958 */
Keun-young Park77d3c392016-01-25 11:37:24 -0800959#define VEHICLE_PROPERTY_INTERNAL_START (0x74000000)
Sanket Agarwalfb636682015-08-11 14:34:29 -0700960/**
961 * @range_end
962 */
Keun-young Park77d3c392016-01-25 11:37:24 -0800963#define VEHICLE_PROPERTY_INTERNAL_END (0x74ffffff)
Sanket Agarwalfb636682015-08-11 14:34:29 -0700964
965/**
966 * Value types for various properties.
967 */
968enum vehicle_value_type {
969 VEHICLE_VALUE_TYPE_SHOUD_NOT_USE = 0x00, // value_type should never set to 0.
970 VEHICLE_VALUE_TYPE_STRING = 0x01,
971 VEHICLE_VALUE_TYPE_BYTES = 0x02,
972 VEHICLE_VALUE_TYPE_BOOLEAN = 0x03,
Keun-young Park73d7f222016-01-14 11:02:38 -0800973 VEHICLE_VALUE_TYPE_ZONED_BOOLEAN = 0x04,
974 VEHICLE_VALUE_TYPE_INT64 = 0x05,
Sanket Agarwalfb636682015-08-11 14:34:29 -0700975 VEHICLE_VALUE_TYPE_FLOAT = 0x10,
976 VEHICLE_VALUE_TYPE_FLOAT_VEC2 = 0x11,
977 VEHICLE_VALUE_TYPE_FLOAT_VEC3 = 0x12,
978 VEHICLE_VALUE_TYPE_FLOAT_VEC4 = 0x13,
979 VEHICLE_VALUE_TYPE_INT32 = 0x20,
980 VEHICLE_VALUE_TYPE_INT32_VEC2 = 0x21,
981 VEHICLE_VALUE_TYPE_INT32_VEC3 = 0x22,
982 VEHICLE_VALUE_TYPE_INT32_VEC4 = 0x23,
Keun-young Park73d7f222016-01-14 11:02:38 -0800983 VEHICLE_VALUE_TYPE_ZONED_FLOAT = 0x30,
984 VEHICLE_VALUE_TYPE_ZONED_FLOAT_VEC2 = 0x31,
985 VEHICLE_VALUE_TYPE_ZONED_FLOAT_VEC3 = 0x32,
986 VEHICLE_VALUE_TYPE_ZONED_INT32 = 0x40,
987 VEHICLE_VALUE_TYPE_ZONED_INT32_VEC2 = 0x41,
988 VEHICLE_VALUE_TYPE_ZONED_INT32_VEC3 = 0x42,
Sanket Agarwalfb636682015-08-11 14:34:29 -0700989};
990
991/**
992 * Units used for int or float type with no attached enum types.
993 */
994enum vehicle_unit_type {
995 VEHICLE_UNIT_TYPE_SHOULD_NOT_USE = 0x00000000,
996 // speed related items
997 VEHICLE_UNIT_TYPE_METER_PER_SEC = 0x00000001,
998 VEHICLE_UNIT_TYPE_RPM = 0x00000002,
999 VEHICLE_UNIT_TYPE_HZ = 0x00000003,
1000 // kind of ratio
1001 VEHICLE_UNIT_TYPE_PERCENTILE = 0x00000010,
1002 // length
1003 VEHICLE_UNIT_TYPE_MILLIMETER = 0x00000020,
1004 VEHICLE_UNIT_TYPE_METER = 0x00000021,
1005 VEHICLE_UNIT_TYPE_KILOMETER = 0x00000023,
1006 // temperature
1007 VEHICLE_UNIT_TYPE_CELCIUS = 0x00000030,
1008 // volume
1009 VEHICLE_UNIT_TYPE_MILLILITER = 0x00000040,
1010 // time
1011 VEHICLE_UNIT_TYPE_NANO_SECS = 0x00000050,
1012 VEHICLE_UNOT_TYPE_SECS = 0x00000053,
1013 VEHICLE_UNIT_TYPE_YEAR = 0x00000059,
1014};
1015
1016/**
1017 * Error code used in HAL implemnentation. Follows utils/Errors.h
1018 */
1019enum vehicle_error_code {
1020 VEHICLE_NO_ERROR = 0x0,
1021 VEHICLE_ERROR_UNKNOWN = (-2147483647 - 1), // INT32_MIN value
1022 VEHICLE_ERROR_NO_MEMORY = -12, //ENOMEM
1023 VEHICLE_ERROR_INVALID_OPERATION = -38, //ENOSYS
1024 VEHICLE_ERROR_BAD_VALUE = -22, //EINVAL
1025 VEHICLE_ERROR_BAD_TYPE = (VEHICLE_ERROR_UNKNOWN + 1),
1026 VEHICLE_ERROR_NAME_NOT_FOUND = -2, //ENOENT
1027 VEHICLE_ERROR_PERMISSION_DENIED = -1, //EPERM
1028 VEHICLE_ERROR_NO_INIT = -19, //ENODEV
1029 VEHICLE_ERROR_ALREADY_EXISTS = -17, //EEXIST
1030 VEHICLE_ERROR_DEAD_OBJECT = -32, //EPIPE
1031 VEHICLE_ERROR_FAILED_TRANSACTION = (VEHICLE_ERROR_UNKNOWN + 2),
1032 VEHICLE_ERROR_BAD_INDEX = -75, //EOVERFLOW
1033 VEHICLE_ERROR_NOT_ENOUGH_DATA = -61, //ENODATA
1034 VEHICLE_ERROR_WOULD_BLOCK = -11, //EWOULDBLOCK
1035 VEHICLE_ERROR_TIMED_OUT = -110, //ETIMEDOUT
1036 VEHICLE_ERROR_UNKNOWN_TRANSACTION = -74, //EBADMSG
1037 VEHICLE_FDS_NOT_ALLOWED = (VEHICLE_ERROR_UNKNOWN + 7),
1038};
1039
1040/**
1041 * This describes how value of property can change.
1042 */
1043enum vehicle_prop_change_mode {
1044 /**
1045 * Property of this type will *never* change. This property will not support subscription, but
1046 * will support get
1047 */
1048 VEHICLE_PROP_CHANGE_MODE_STATIC = 0x00,
1049 /**
1050 * Property of this type will be reported when there is a change. get should return the
1051 * current value.
1052 */
1053 VEHICLE_PROP_CHANGE_MODE_ON_CHANGE = 0x01,
1054 /**
1055 * Property of this type change continuously and requires fixed rate of sampling to retrieve
1056 * the data.
1057 */
1058 VEHICLE_PROP_CHANGE_MODE_CONTINUOUS = 0x02,
1059};
1060
1061/**
1062 * Property config defines the capabilities of it. User of the API
1063 * should first get the property config to understand the output from get()
1064 * commands and also to ensure that set() or events commands are in sync with
1065 * the expected output.
1066 */
1067enum vehicle_prop_access {
1068 VEHICLE_PROP_ACCESS_READ = 0x01,
1069 VEHICLE_PROP_ACCESS_WRITE = 0x02,
1070 VEHICLE_PROP_ACCESS_READ_WRITE = 0x03
1071};
1072
1073/**
1074 * These permissions define how the OEMs want to distribute their information and security they
1075 * want to apply. On top of these restrictions, android will have additional
1076 * 'app-level' permissions that the apps will need to ask the user before the apps have the
1077 * information.
1078 * This information should be kept in vehicle_prop_config.permission_model.
1079 */
1080enum vehicle_permission_model {
1081 /**
1082 * No special restriction, but each property can still require specific android app-level
1083 * permission.
1084 */
1085 VEHICLE_PERMISSION_NO_RESTRICTION = 0,
1086 /** Signature only. Only APKs signed with OEM keys are allowed. */
1087 VEHICLE_PERMISSION_OEM_ONLY = 0x1,
1088 /** System only. APKs built-in to system can access the property. */
1089 VEHICLE_PERMISSION_SYSTEM_APP_ONLY = 0x2,
1090 /** Equivalent to “system|signature” */
1091 VEHICLE_PERMISSION_OEM_OR_SYSTEM_APP = 0x3
1092};
1093
1094/**
1095 * Car states.
1096 *
1097 * The driving states determine what features of the UI will be accessible.
1098 */
1099enum vehicle_driving_status {
1100 VEHICLE_DRIVING_STATUS_UNRESTRICTED = 0x00,
1101 VEHICLE_DRIVING_STATUS_NO_VIDEO = 0x01,
1102 VEHICLE_DRIVING_STATUS_NO_KEYBOARD_INPUT = 0x02,
1103 VEHICLE_DRIVING_STATUS_NO_VOICE_INPUT = 0x04,
1104 VEHICLE_DRIVING_STATUS_NO_CONFIG = 0x08,
1105 VEHICLE_DRIVING_STATUS_LIMIT_MESSAGE_LEN = 0x10
1106};
1107
1108/**
1109 * Various gears which can be selected by user and chosen in system.
1110 */
1111enum vehicle_gear {
1112 // Gear selections present in both automatic and manual cars.
1113 VEHICLE_GEAR_NEUTRAL = 0x0001,
1114 VEHICLE_GEAR_REVERSE = 0x0002,
1115
1116 // Gear selections (mostly) present only in automatic cars.
1117 VEHICLE_GEAR_PARKING = 0x0004,
1118 VEHICLE_GEAR_DRIVE = 0x0008,
1119 VEHICLE_GEAR_L = 0x0010,
1120
1121 // Other possible gear selections (maybe present in manual or automatic
1122 // cars).
1123 VEHICLE_GEAR_1 = 0x0010,
1124 VEHICLE_GEAR_2 = 0x0020,
1125 VEHICLE_GEAR_3 = 0x0040,
1126 VEHICLE_GEAR_4 = 0x0080,
1127 VEHICLE_GEAR_5 = 0x0100,
1128 VEHICLE_GEAR_6 = 0x0200,
1129 VEHICLE_GEAR_7 = 0x0400,
1130 VEHICLE_GEAR_8 = 0x0800,
1131 VEHICLE_GEAR_9 = 0x1000
1132};
1133
1134
1135/**
1136 * Various zones in the car.
1137 *
1138 * Zones are used for Air Conditioning purposes and divide the car into physical
1139 * area zones.
1140 */
1141enum vehicle_zone {
1142 VEHICLE_ZONE_ROW_1_LEFT = 0x00000001,
1143 VEHICLE_ZONE_ROW_1_CENTER = 0x00000002,
1144 VEHICLE_ZONE_ROW_1_RIGHT = 0x00000004,
1145 VEHICLE_ZONE_ROW_1_ALL = 0x00000008,
1146 VEHICLE_ZONE_ROW_2_LEFT = 0x00000010,
1147 VEHICLE_ZONE_ROW_2_CENTER = 0x00000020,
1148 VEHICLE_ZONE_ROW_2_RIGHT = 0x00000040,
1149 VEHICLE_ZONE_ROW_2_ALL = 0x00000080,
1150 VEHICLE_ZONE_ROW_3_LEFT = 0x00000100,
1151 VEHICLE_ZONE_ROW_3_CENTER = 0x00000200,
1152 VEHICLE_ZONE_ROW_3_RIGHT = 0x00000400,
1153 VEHICLE_ZONE_ROW_3_ALL = 0x00000800,
1154 VEHICLE_ZONE_ROW_4_LEFT = 0x00001000,
1155 VEHICLE_ZONE_ROW_4_CENTER = 0x00002000,
1156 VEHICLE_ZONE_ROW_4_RIGHT = 0x00004000,
1157 VEHICLE_ZONE_ROW_4_ALL = 0x00008000,
1158 VEHICLE_ZONE_ALL = 0x80000000,
1159};
1160
1161/**
1162 * Various Seats in the car.
1163 */
1164enum vehicle_seat {
Keun-young Parka384f832016-02-11 16:50:42 -08001165 VEHICLE_SEAT_DRIVER_LHD = 0x0001,
1166 VEHICLE_SEAT_DRIVER_RHD = 0x0002,
1167 VEHICLE_SEAT_ROW_1_PASSENGER_LEFT = 0x0010,
1168 VEHICLE_SEAT_ROW_1_PASSENGER_CENTER = 0x0020,
1169 VEHICLE_SEAT_ROW_1_PASSENGER_RIGHT = 0x0040,
1170 VEHICLE_SEAT_ROW_2_PASSENGER_LEFT = 0x0100,
1171 VEHICLE_SEAT_ROW_2_PASSENGER_CENTER = 0x0200,
1172 VEHICLE_SEAT_ROW_2_PASSENGER_RIGHT = 0x0400,
1173 VEHICLE_SEAT_ROW_3_PASSENGER_LEFT = 0x1000,
1174 VEHICLE_SEAT_ROW_3_PASSENGER_CENTER = 0x2000,
1175 VEHICLE_SEAT_ROW_3_PASSENGER_RIGHT = 0x4000
Sanket Agarwalfb636682015-08-11 14:34:29 -07001176};
1177
1178/**
1179 * Various windshields/windows in the car.
1180 */
1181enum vehicle_window {
1182 VEHICLE_WINDOW_FRONT_WINDSHIELD = 0x0001,
1183 VEHICLE_WINDOW_REAR_WINDSHIELD = 0x0002,
1184 VEHICLE_WINDOW_ROOF_TOP = 0x0004,
1185 VEHICLE_WINDOW_ROW_1_LEFT = 0x0010,
1186 VEHICLE_WINDOW_ROW_1_RIGHT = 0x0020,
1187 VEHICLE_WINDOW_ROW_2_LEFT = 0x0100,
1188 VEHICLE_WINDOW_ROW_2_RIGHT = 0x0200,
1189 VEHICLE_WINDOW_ROW_3_LEFT = 0x1000,
1190 VEHICLE_WINDOW_ROW_3_RIGHT = 0x2000,
1191};
1192
Keun-young Parkcb354502016-02-08 18:15:55 -08001193enum vehicle_door {
1194 VEHICLE_DOOR_ROW_1_LEFT = 0x00000001,
1195 VEHICLE_DOOR_ROW_1_RIGHT = 0x00000004,
1196 VEHICLE_DOOR_ROW_2_LEFT = 0x00000010,
1197 VEHICLE_DOOR_ROW_2_RIGHT = 0x00000040,
1198 VEHICLE_DOOR_ROW_3_LEFT = 0x00000100,
1199 VEHICLE_DOOR_ROW_3_RIGHT = 0x00000400,
1200 VEHICLE_DOOR_HOOD = 0x10000000,
1201 VEHICLE_DOOR_REAR = 0x20000000,
1202};
1203
1204enum vehicle_mirror {
1205 VEHICLE_MIRROR_DRIVER_LEFT = 0x00000001,
1206 VEHICLE_MIRROR_DRIVER_RIGHT = 0x00000002,
1207 VEHICLE_MIRROR_DRIVER_CENTER = 0x00000004,
1208};
Sanket Agarwalfb636682015-08-11 14:34:29 -07001209enum vehicle_turn_signal {
1210 VEHICLE_SIGNAL_NONE = 0x00,
1211 VEHICLE_SIGNAL_RIGHT = 0x01,
1212 VEHICLE_SIGNAL_LEFT = 0x02,
1213 VEHICLE_SIGNAL_EMERGENCY = 0x04
1214};
1215
1216/*
1217 * Boolean type.
1218 */
1219enum vehicle_boolean {
1220 VEHICLE_FALSE = 0x00,
1221 VEHICLE_TRUE = 0x01
1222};
1223
1224typedef int32_t vehicle_boolean_t;
1225
1226/**
1227 * Vehicle string.
1228 *
1229 * Defines a UTF8 encoded sequence of bytes that should be used for string
1230 * representation throughout.
1231 */
1232typedef struct vehicle_str {
1233 uint8_t* data;
1234 int32_t len;
1235} vehicle_str_t;
1236
1237/**
1238 * Vehicle byte array.
1239 * This is for passing generic raw data.
1240 */
1241typedef vehicle_str_t vehicle_bytes_t;
1242
1243typedef struct vehicle_zoned_int32 {
1244 union {
1245 int32_t zone;
1246 int32_t seat;
1247 int32_t window;
1248 };
1249 int32_t value;
1250} vehicle_zoned_int32_t;
1251
Keun-young Park73d7f222016-01-14 11:02:38 -08001252typedef struct vehicle_zoned_int32_array {
1253 union {
1254 int32_t zone;
1255 int32_t seat;
1256 int32_t window;
1257 };
1258 int32_t values[3];
1259} vehicle_zoned_int32_array_t;
1260
Sanket Agarwalfb636682015-08-11 14:34:29 -07001261typedef struct vehicle_zoned_float {
1262 union {
1263 int32_t zone;
1264 int32_t seat;
1265 int32_t window;
1266 };
1267 float value;
1268} vehicle_zoned_float_t;
1269
Keun-young Park73d7f222016-01-14 11:02:38 -08001270typedef struct vehicle_zoned_float_array {
1271 union {
1272 int32_t zone;
1273 int32_t seat;
1274 int32_t window;
1275 };
1276 float values[3];
1277} vehicle_zoned_float_array_t;
1278
Sanket Agarwalfb636682015-08-11 14:34:29 -07001279typedef struct vehicle_zoned_boolean {
1280 union {
1281 int32_t zone;
1282 int32_t seat;
1283 int32_t window;
1284 };
1285 vehicle_boolean_t value;
1286} vehicle_zoned_boolean_t;
1287
1288
1289typedef struct vehicle_prop_config {
1290 int32_t prop;
1291
1292 /**
1293 * Defines if the property is read or write. Value should be one of
1294 * enum vehicle_prop_access.
1295 */
1296 int32_t access;
1297
1298 /**
1299 * Defines if the property is continuous or on-change. Value should be one
1300 * of enum vehicle_prop_change_mode.
1301 */
1302 int32_t change_mode;
1303
1304 /**
1305 * Type of data used for this property. This type is fixed per each property.
1306 * Check vehicle_value_type for allowed value.
1307 */
1308 int32_t value_type;
1309
1310 /**
1311 * Define necessary permission model to access the data.
1312 */
1313 int32_t permission_model;
1314 /**
1315 * Some of the properties may have associated zones (such as hvac), in these
1316 * cases the config should contain an ORed value for the associated zone.
1317 */
1318 union {
1319 /**
1320 * For generic configuration information
1321 */
1322 int32_t config_flags;
1323
1324 /**
1325 * The value is derived by ORing one or more of enum vehicle_zone members.
1326 */
1327 int32_t vehicle_zone_flags;
1328 /** The value is derived by ORing one or more of enum vehicle_seat members. */
1329 int32_t vehicle_seat_flags;
1330 /** The value is derived by ORing one or more of enum vehicle_window members. */
1331 int32_t vehicle_window_flags;
1332
1333 /** The number of presets that are stored by the radio module. Pass 0 if
1334 * there are no presets available. The range of presets is defined to be
1335 * from 1 (see VEHICLE_RADIO_PRESET_MIN_VALUE) to vehicle_radio_num_presets.
1336 */
1337 int32_t vehicle_radio_num_presets;
Keun-young Parkbf877a72015-12-21 14:16:05 -08001338 int32_t config_array[4];
Sanket Agarwalfb636682015-08-11 14:34:29 -07001339 };
1340
1341 /**
1342 * Some properties may require additional information passed over this string. Most properties
1343 * do not need to set this and in that case, config_string.data should be NULL and
1344 * config_string.len should be 0.
1345 */
1346 vehicle_str_t config_string;
1347
1348 /**
1349 * Specify minimum allowed value for the property. This is necessary for property which does
1350 * not have specified enum.
1351 */
1352 union {
1353 float float_min_value;
1354 int32_t int32_min_value;
1355 int64_t int64_min_value;
1356 };
1357
1358 /**
1359 * Specify maximum allowed value for the property. This is necessary for property which does
1360 * not have specified enum.
1361 */
1362 union {
1363 float float_max_value;
1364 int32_t int32_max_value;
1365 int64_t int64_max_value;
1366 };
1367
1368 /**
1369 * Min sample rate in Hz. Should be 0 for sensor type of VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
1370 */
1371 float min_sample_rate;
1372 /**
1373 * Max sample rate in Hz. Should be 0 for sensor type of VEHICLE_PROP_CHANGE_MODE_ON_CHANGE
1374 */
1375 float max_sample_rate;
1376 /**
1377 * Place holder for putting HAL implementation specific data. Usage is wholly up to HAL
1378 * implementation.
1379 */
1380 void* hal_data;
1381} vehicle_prop_config_t;
1382
1383/**
1384 * HVAC property fields.
1385 *
1386 * Defines various HVAC properties which are packed into vehicle_hvac_t (see
1387 * below). We define these properties outside in global scope so that HAL
1388 * implementation and HAL users (JNI) can typecast vehicle_hvac correctly.
1389 */
1390typedef vehicle_zoned_int32_t vehicle_hvac_fan_speed_t;
1391
1392typedef vehicle_zoned_int32_t vehicle_hvac_fan_direction_t;
1393
1394typedef vehicle_zoned_float_t vehicle_hvac_zone_temperature_t;
1395
1396//TODO Typical seat heat/cooling is done in fixed steps. Needs better definition.
1397//typedef struct vehicle_hvac_seat_temperature {
1398// // Value should be one of enum vehicle_seat.
1399// int32_t seat;
1400// float temperature;
1401//} vehicle_hvac_heated_seat_temperature_t;
1402
1403typedef vehicle_zoned_boolean_t vehicle_hvac_defrost_on_t;
1404
1405typedef vehicle_zoned_boolean_t vehicle_hvac_ac_on_t;
1406
Steve Paikd2ba70f2015-12-10 14:58:27 -08001407typedef vehicle_boolean_t vehicle_hvac_max_ac_on_t;
1408
1409typedef vehicle_boolean_t vehicle_hvac_max_defrost_on_t;
1410
1411typedef vehicle_boolean_t vehicle_hvac_recirc_on_t;
1412
1413typedef vehicle_boolean_t vehicle_hvac_dual_on_t;
1414
Sanket Agarwalfb636682015-08-11 14:34:29 -07001415typedef struct vehicle_hvac {
1416 /**
1417 * Define one structure for each possible HVAC property.
1418 * NOTES:
1419 * a) Zone is defined in enum vehicle_zone.
1420 * b) Fan speed is a number from (0 - 6) where 6 is the highest speed. (TODO define enum)
1421 * c) Temperature is a floating point Celcius scale.
1422 * d) Direction is defined in enum vehicle_fan_direction.
1423 *
1424 * The HAL should create #entries number of vehicle_hvac_properties and
1425 * assign it to "properties" variable below.
1426 */
1427 union {
1428 vehicle_hvac_fan_speed_t fan_speed;
1429 vehicle_hvac_fan_direction_t fan_direction;
1430 vehicle_hvac_ac_on_t ac_on;
Steve Paikd2ba70f2015-12-10 14:58:27 -08001431 vehicle_hvac_max_ac_on_t max_ac_on;
1432 vehicle_hvac_max_defrost_on_t max_defrost_on;
1433 vehicle_hvac_recirc_on_t recirc_on;
1434 vehicle_hvac_dual_on_t dual_on;
Sanket Agarwalfb636682015-08-11 14:34:29 -07001435
1436 vehicle_hvac_zone_temperature_t temperature_current;
1437 vehicle_hvac_zone_temperature_t temperature_set;
1438
1439 //TODO Heated seat.
1440 //vehicle_hvac_heated_seat_t heated_seat;
1441
1442 vehicle_hvac_defrost_on_t defrost_on;
1443 };
1444} vehicle_hvac_t;
1445
1446/*
1447 * Defines how the values for various properties are represented.
1448 *
1449 * There are two ways to populate and access the fields:
1450 * a) Using the individual fields. Use this mechanism (see
1451 * info_manufacture_date, fuel_capacity fields etc).
1452 * b) Using the union accessors (see uint32_value, float_value etc).
1453 *
1454 * To add a new field make sure that it does not exceed the total union size
1455 * (defined in int_array) and it is one of the vehicle_value_type. Then add the
1456 * field name with its unit to union. If the field type is not yet defined (as
1457 * of this draft, we don't use int64_t) then add that type to vehicle_value_type
1458 * and have an accessor (so for int64_t it will be int64_t int64_value).
1459 */
1460typedef union vehicle_value {
1461 /** Define the max size of this structure. */
1462 int32_t int32_array[4];
1463 float float_array[4];
1464
1465 // Easy accessors for union members (HAL implementation SHOULD NOT USE these
1466 // fields while populating, use the property specific fields below instead).
1467 int32_t int32_value;
1468 int64_t int64_value;
1469 float float_value;
1470 vehicle_str_t str_value;
1471 vehicle_bytes_t bytes_value;
1472 vehicle_boolean_t boolean_value;
1473 vehicle_zoned_int32_t zoned_int32_value;
Keun-young Park73d7f222016-01-14 11:02:38 -08001474 vehicle_zoned_int32_array_t zoned_int32_array;
Sanket Agarwalfb636682015-08-11 14:34:29 -07001475 vehicle_zoned_float_t zoned_float_value;
Keun-young Park73d7f222016-01-14 11:02:38 -08001476 vehicle_zoned_float_array_t zoned_float_array;
Sanket Agarwalfb636682015-08-11 14:34:29 -07001477 vehicle_zoned_boolean_t zoned_boolean_value;
1478
1479 // Vehicle Information.
1480 vehicle_str_t info_vin;
1481 vehicle_str_t info_make;
1482 vehicle_str_t info_model;
1483 int32_t info_model_year;
1484
1485 // Represented in milliliters.
1486 float info_fuel_capacity;
1487
1488 float vehicle_speed;
1489 float odometer;
1490
1491 // Engine sensors.
1492
1493 // Represented in milliliters.
1494 //float engine_coolant_level;
1495 // Represented in celcius.
1496 float engine_coolant_temperature;
1497 // Represented in a percentage value.
1498 //float engine_oil_level;
1499 // Represented in celcius.
1500 float engine_oil_temperature;
1501 float engine_rpm;
1502
1503 // Event sensors.
1504 // Value should be one of enum vehicle_gear_selection.
1505 int32_t gear_selection;
1506 // Value should be one of enum vehicle_gear.
1507 int32_t gear_current_gear;
1508 // Value should be one of enum vehicle_boolean.
1509 int32_t parking_brake;
1510 // If cruise_set_speed > 0 then cruise is ON otherwise cruise is OFF.
1511 // Unit: meters / second (m/s).
1512 //int32_t cruise_set_speed;
1513 // Value should be one of enum vehicle_boolean.
1514 int32_t is_fuel_level_low;
1515 // Value should be one of enum vehicle_driving_status.
1516 int32_t driving_status;
1517 int32_t night_mode;
1518 // Value should be one of emum vehicle_turn_signal.
1519 int32_t turn_signals;
1520 // Value should be one of enum vehicle_boolean.
1521 //int32_t engine_on;
1522
1523 // HVAC properties.
1524 vehicle_hvac_t hvac;
1525
1526 float outside_temperature;
Keun-young Parkcb354502016-02-08 18:15:55 -08001527 float cabin_temperature;
1528
Sanket Agarwalfb636682015-08-11 14:34:29 -07001529} vehicle_value_t;
1530
1531/*
1532 * Encapsulates the property name and the associated value. It
1533 * is used across various API calls to set values, get values or to register for
1534 * events.
1535 */
1536typedef struct vehicle_prop_value {
1537 /* property identifier */
1538 int32_t prop;
1539
1540 /* value type of property for quick conversion from union to appropriate
1541 * value. The value must be one of enum vehicle_value_type.
1542 */
1543 int32_t value_type;
1544
1545 /** time is elapsed nanoseconds since boot */
1546 int64_t timestamp;
1547
1548 vehicle_value_t value;
1549} vehicle_prop_value_t;
1550
1551/*
1552 * Event callback happens whenever a variable that the API user has subscribed
1553 * to needs to be reported. This may be based purely on threshold and frequency
1554 * (a regular subscription, see subscribe call's arguments) or when the set()
1555 * command is executed and the actual change needs to be reported.
1556 *
1557 * event_data is OWNED by the HAL and should be copied before the callback
1558 * finishes.
1559 */
1560typedef int (*vehicle_event_callback_fn)(const vehicle_prop_value_t *event_data);
1561
1562
1563/**
1564 * Represent the operation where the current error has happened.
1565 */
1566enum vehicle_property_operation {
1567 /** Generic error to this property which is not tied to any operation. */
1568 VEHICLE_OPERATION_GENERIC = 0,
1569 /** Error happened while handling property set. */
1570 VEHICLE_OPERATION_SET = 1,
1571 /** Error happened while handling property get. */
1572 VEHICLE_OPERATION_GET = 2,
1573 /** Error happened while handling property subscription. */
1574 VEHICLE_OPERATION_SUBSCRIBE = 3,
1575};
1576
1577/*
1578 * Suggests that an error condition has occured. error_code should be one of
1579 * enum vehicle_error_code.
1580 *
1581 * @param error_code Error code. It should be one of enum vehicle_error_code.
1582 * See error code for details.
1583 * @parm property Note a property where error has happened. If this is generic error, property
1584 * should be VEHICLE_PROPERTY_INVALID.
1585 * @param operation Represent the operation where the error has happened. Should be one of
1586 * vehicle_property_operation.
1587 */
1588typedef int (*vehicle_error_callback_fn)(int32_t error_code, int32_t property, int32_t operation);
1589
1590/************************************************************************************/
1591
1592/*
1593 * Every hardware module must have a data structure named HAL_MODULE_INFO_SYM
1594 * and the fields of this data structure must begin with hw_module_t
1595 * followed by module specific information.
1596 */
1597typedef struct vehicle_module {
1598 struct hw_module_t common;
1599} vehicle_module_t;
1600
1601
1602typedef struct vehicle_hw_device {
1603 struct hw_device_t common;
1604
1605 /**
1606 * After calling open on device the user should register callbacks for event and error
1607 * functions.
1608 */
1609 int (*init)(struct vehicle_hw_device* device,
1610 vehicle_event_callback_fn event_fn, vehicle_error_callback_fn err_fn);
1611 /**
1612 * Before calling close the user should destroy the registered callback
1613 * functions.
1614 * In case the unsubscribe() call is not called on all properties before
1615 * release() then release() will unsubscribe the properties itself.
1616 */
1617 int (*release)(struct vehicle_hw_device* device);
1618
1619 /**
1620 * Enumerate all available properties. The list is returned in "list".
1621 * @param num_properties number of properties contained in the retuned array.
1622 * @return array of property configs supported by this car. Note that returned data is const
1623 * and caller cannot modify it. HAL implementation should keep this memory until HAL
1624 * is released to avoid copying this again.
1625 */
1626 vehicle_prop_config_t const *(*list_properties)(struct vehicle_hw_device* device,
1627 int* num_properties);
1628
1629 /**
1630 * Get a vehicle property value immediately. data should be allocated
1631 * properly.
1632 * The caller of the API OWNS the data field.
Keun-young Park08c255e2015-12-09 13:47:30 -08001633 * Caller will set data->prop, data->value_type, and optionally zone value for zoned property.
1634 * But HAL implementation needs to fill all entries properly when returning.
Sanket Agarwalfb636682015-08-11 14:34:29 -07001635 * For pointer type, HAL implementation should allocate necessary memory and caller is
1636 * responsible for freeing memory for the pointer.
1637 * For VEHICLE_PROP_CHANGE_MODE_STATIC type of property, get should return the same value
1638 * always.
1639 * For VEHICLE_PROP_CHANGE_MODE_ON_CHANGE type of property, it should return the latest value.
1640 */
1641 int (*get)(struct vehicle_hw_device* device, vehicle_prop_value_t *data);
1642
1643 /**
1644 * Set a vehicle property value. data should be allocated properly and not
1645 * NULL.
1646 * The caller of the API OWNS the data field.
1647 * timestamp of data will be ignored for set operation.
1648 */
1649 int (*set)(struct vehicle_hw_device* device, const vehicle_prop_value_t *data);
1650
1651 /**
1652 * Subscribe to events.
1653 * Depending on output of list_properties if the property is:
1654 * a) on-change: sample_rate should be set to 0.
1655 * b) supports frequency: sample_rate should be set from min_sample_rate to
1656 * max_sample_rate.
1657 * Subscribing to properties in-correctly may result in error callbacks and
1658 * will depend on HAL implementation.
1659 * @param device
1660 * @param prop
1661 * @param sample_rate
Keun-young Parkbf877a72015-12-21 14:16:05 -08001662 * @param zones All subscribed zones for zoned property. can be ignored for non-zoned property.
1663 * 0 means all zones supported instead of no zone.
Sanket Agarwalfb636682015-08-11 14:34:29 -07001664 */
Keun-young Parkbf877a72015-12-21 14:16:05 -08001665 int (*subscribe)(struct vehicle_hw_device* device, int32_t prop, float sample_rate,
1666 int32_t zones);
Sanket Agarwalfb636682015-08-11 14:34:29 -07001667
1668 /** Cancel subscription on a property. */
1669 int (*unsubscribe)(struct vehicle_hw_device* device, int32_t prop);
1670} vehicle_hw_device_t;
1671
1672__END_DECLS
1673
1674#endif // ANDROID_VEHICLE_INTERFACE_H