blob: d10a7b93308a68995339fff0c3f79e81c3a497eb [file] [log] [blame]
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#define LOG_TAG "vehicle-hal-tool"
18
19#include <inttypes.h>
20#include <stdlib.h>
21#include <string.h>
22#include <hardware/hardware.h>
23#include <hardware/vehicle.h>
24
25#include <cutils/log.h>
26
27void usage() {
28 printf("Usage: "
29 "./vehicle-hal-tool [-l] [-m -p -t [-v]]\n"
30 "-l - List properties\n"
31 "-m - Mode (cannot be used with -l). Accepted strings: get, set or sub.\n"
32 "-p - Property (only used with -m)\n"
33 "-t - Type (only used with -m)\n"
34 "-w - Wait time in seconds (only used with -m set to sub)\n"
35 "-v - Value to which vehicle_prop_value is set\n"
36 "Depending on the type pass the value:\n"
37 "Int: pass a quoted integer\n"
38 "Float: pass a quoted float\n"
39 "Int array: pass a quoted space delimited int array, eg: \"1 2 3 4\" for\n:"
40 "setting int32_array's all 4 elements (see VEHICLE_VALUE_TYPE_INT32_VEC4\n"
41 "String: pass a normal string\n\n"
42 "The configurations to use the tool are as follows:\n"
43 "List Properties\n"
44 "---------------\n"
45 "./vehicle-hal-tool -l \n"
46 "Lists the various properties defined in HAL implementation. Use this to check if "
47 "the HAL implementation is correctly set up and exposing the capabilities correctly.\n"
48
49 "Get Properties\n"
50 "---------------\n"
51 "./vehicle-hal-tool -m get -p <prop> -t <type> [-v <vehicle_prop_value>]\n"
52 "Example: ./vehicle-hal-tool -m get -p 1028 -t 3 # VEHICLE_PROPERTY_DRIVING_STATUS\n"
53 "./vehicle-hal-tool -m get -p 257 -t 1 # VEHICLE_PROPERTY_INFO_MAKE\n"
54 "./vehicle-hal-tool -m get -p 2049 -t 19 -v \"3 0 0 0\"\n"
55 " # VEHICLE_PROPERTY_RADIO_PRESET\n"
56 "with preset value set to 3.\n\n"
57 "Set properties\n"
58 "--------------\n"
59 "./vehicle-hal-tool -m set -p 10 -t 1 -v random_property\n"
60 "Set properties may not be applicable to most properties\n\n"
61 "Subscribe properties\n"
62 "--------------------\n"
63 "Subscribes to be notified about a property change (depending on whether\n"
64 "it is a on change property or a continuous property) for seconds provided\n"
65 "as -w paramter.\n"
66 "./vehicle-hal-tool -m sub -p 1028 -w 10\n"
67 );
68}
69
70void list_all_properties(vehicle_hw_device_t *device) {
71 int num_configs = -1;
72 const vehicle_prop_config_t *configs = device->list_properties(device, &num_configs);
73 if (num_configs < 0) {
74 printf("List configs error. %d", num_configs);
75 exit(1);
76 }
77
78 printf("Listing configs\n--------------------\n");
79 int i = 0;
80 for (i = 0; i < num_configs; i++) {
81 const vehicle_prop_config_t *config_temp = configs + i;
82 printf("Property ID: %d\n"
83 "Property config_flags: %d\n"
84 "Property change mode: %d\n"
85 "Property min sample rate: %f\n"
86 "Property max sample rate: %f\n",
87 config_temp->prop, config_temp->config_flags, config_temp->change_mode,
88 config_temp->min_sample_rate, config_temp->max_sample_rate);
89 }
90}
91
92void get_property(
93 vehicle_hw_device_t *device, int32_t property, int32_t type, char *value_string) {
94 vehicle_prop_value_t *data = (vehicle_prop_value_t *) malloc (sizeof(vehicle_prop_value_t));
95
96 // Parse the string according to type.
97 if (value_string != NULL && strlen(value_string) > 0) {
98 switch (type) {
99 case VEHICLE_VALUE_TYPE_INT32:
100 sscanf(value_string, "%d", &(data->value.int32_value));
101 break;
102 case VEHICLE_VALUE_TYPE_INT32_VEC4:
103 {
104 int32_t vec[4];
105 sscanf(value_string, "%d %d %d %d", &vec[0], &vec[1], &vec[2], &vec[3]);
106 memcpy(data->value.int32_array, vec, sizeof(vec));
107 break;
108 }
109 default:
110 printf("%s Setting value type not supported: %d\n", __func__, type);
111 exit(1);
112 }
113 }
114
115 data->prop = property;
116 int ret_code = device->get(device, data);
117 if (ret_code != 0) {
118 printf("Cannot get property: %d\n", ret_code);
119 exit(1);
120 }
121
122 // We simply convert the data into the type mentioned by the result of the
123 // get call.
124 printf("Get output\n------------\n");
125 switch (data->value_type) {
126 case VEHICLE_VALUE_TYPE_FLOAT:
127 printf("Value type: FLOAT\nValue: %f\n", data->value.float_value);
128 break;
129 case VEHICLE_VALUE_TYPE_INT32:
130 printf("Value type: INT32\nValue: %d\n", data->value.int32_value);
131 break;
132 case VEHICLE_VALUE_TYPE_INT64:
133 printf("Value type: INT64\nValue: %" PRId64 "\n", data->value.int64_value);
134 break;
135 case VEHICLE_VALUE_TYPE_BOOLEAN:
136 printf("Value type: BOOLEAN\nValue: %d\n", data->value.boolean_value);
137 break;
138 case VEHICLE_VALUE_TYPE_STRING:
139 printf("Value type: STRING\n Size: %d\n", data->value.str_value.len);
140 // This implementation only supports ASCII.
141 char *ascii_out = (char *) malloc((data->value.str_value.len + 1) * sizeof(char));
142 memcpy(ascii_out, data->value.str_value.data, data->value.str_value.len);
143 ascii_out[data->value.str_value.len] = '\0';
144 printf("Value: %s\n", ascii_out);
145 break;
146 case VEHICLE_VALUE_TYPE_ZONED_FLOAT:
147 printf("Value type: ZONED_FLOAT\nZone: %d\n", data->value.zoned_float_value.zone);
148 printf("Value type: ZONED_FLOAT\nValue: %f\n", data->value.zoned_float_value.value);
149 break;
150 case VEHICLE_VALUE_TYPE_INT32_VEC3:
151 printf("Value type: INT32_VEC3\nValue[0]: %d\n", data->value.int32_array[0]);
152 printf("Value type: INT32_VEC3\nValue[1]: %d\n", data->value.int32_array[1]);
153 printf("Value type: INT32_VEC3\nValue[2]: %d\n", data->value.int32_array[2]);
154 break;
155 case VEHICLE_VALUE_TYPE_INT32_VEC4:
156 printf("Value type: INT32_VEC4\nValue[0]: %d\n", data->value.int32_array[0]);
157 printf("Value type: INT32_VEC4\nValue[1]: %d\n", data->value.int32_array[1]);
158 printf("Value type: INT32_VEC4\nValue[2]: %d\n", data->value.int32_array[2]);
159 printf("Value type: INT32_VEC4\nValue[3]: %d\n", data->value.int32_array[3]);
160 break;
161 default:
162 printf("Value type not yet handled: %d.\n", data->value_type);
163 }
164 free(data);
165}
166
167void set_property(vehicle_hw_device_t *device,
168 int32_t property,
169 int32_t type,
170 char *data) {
171 vehicle_prop_value_t vehicle_data;
172 vehicle_data.prop = property;
173 vehicle_data.value_type = type;
174 int32_t zone = 0;
175 float value = 0.0;
176 switch (type) {
177 case VEHICLE_VALUE_TYPE_FLOAT:
178 vehicle_data.value.float_value = atof(data);
179 break;
180 case VEHICLE_VALUE_TYPE_INT32:
181 vehicle_data.value.int32_value = atoi(data);
182 break;
183 case VEHICLE_VALUE_TYPE_INT64:
184 vehicle_data.value.int64_value = atoi(data);
185 break;
186 case VEHICLE_VALUE_TYPE_BOOLEAN:
187 vehicle_data.value.boolean_value = atoi(data);
188 break;
189 case VEHICLE_VALUE_TYPE_STRING:
190 // TODO: Make the code generic to UTF8 characters.
191 vehicle_data.value.str_value.len = strlen(data);
192 vehicle_data.value.str_value.data =
193 (uint8_t *) malloc (strlen(data) * sizeof(uint8_t));
194 memcpy(vehicle_data.value.str_value.data, data, strlen(data) + 1);
195 break;
196 case VEHICLE_VALUE_TYPE_ZONED_FLOAT:
197 sscanf(data, "%d %f", &zone, &value);
198 vehicle_data.value.zoned_float_value.zone = zone;
199 vehicle_data.value.zoned_float_value.value = value;
200 printf("Value type: ZONED_FLOAT\nZone: %d\n", vehicle_data.value.zoned_float_value.zone);
201 printf("Value type: ZONED_FLOAT\nValue: %f\n", vehicle_data.value.zoned_float_value.value);
202 break;
203 case VEHICLE_VALUE_TYPE_INT32_VEC2:
204 sscanf(data, "%d %d", &vehicle_data.value.int32_array[0],
205 &vehicle_data.value.int32_array[1]);
206 printf("Setting: Value type INT32_VEC2: %d %d\n",
207 vehicle_data.value.int32_array[0],
208 vehicle_data.value.int32_array[1]);
209 break;
210 case VEHICLE_VALUE_TYPE_INT32_VEC3:
211 sscanf(data, "%d %d %d", &vehicle_data.value.int32_array[0],
212 &vehicle_data.value.int32_array[1],
213 &vehicle_data.value.int32_array[2]);
214 printf("Setting: Value type INT32_VEC3: %d %d %d\n",
215 vehicle_data.value.int32_array[0],
216 vehicle_data.value.int32_array[1],
217 vehicle_data.value.int32_array[2]);
218 break;
219 case VEHICLE_VALUE_TYPE_INT32_VEC4:
220 sscanf(data, "%d %d %d %d", &vehicle_data.value.int32_array[0],
221 &vehicle_data.value.int32_array[1],
222 &vehicle_data.value.int32_array[2],
223 &vehicle_data.value.int32_array[3]);
224 printf("Setting: Value type INT32_VEC4: %d %d %d %d\n",
225 vehicle_data.value.int32_array[0],
226 vehicle_data.value.int32_array[1],
227 vehicle_data.value.int32_array[2],
228 vehicle_data.value.int32_array[3]);
229 break;
230 default:
231 printf("set_property: Value type not yet handled: %d\n", type);
232 exit(1);
233 }
234 printf("Property id: %d\n", vehicle_data.prop);
235 int ret_code = device->set(device, &vehicle_data);
236 if (ret_code != 0) {
237 printf("Cannot set property: %d\n", ret_code);
238 exit(1);
239 }
240}
241
242int vehicle_event_callback(const vehicle_prop_value_t *event_data) {
243 // Print what we got.
244 printf("Got some value from callback property: %d\n", event_data->prop);
245 printf("Timestamp: %" PRId64 "\n", event_data->timestamp);
246 char *ascii_out;
247 switch (event_data->value_type) {
248 case VEHICLE_VALUE_TYPE_FLOAT:
249 printf("Float value: %f\n", event_data->value.float_value);
250 break;
251 case VEHICLE_VALUE_TYPE_INT32:
252 printf("int32 value: %d\n", event_data->value.int32_value);
253 break;
254 case VEHICLE_VALUE_TYPE_INT64:
255 printf("int64 value: %" PRId64 "\n", event_data->value.int64_value);
256 break;
257 case VEHICLE_VALUE_TYPE_BOOLEAN:
258 printf("bool value: %d\n", event_data->value.boolean_value);
259 break;
260 case VEHICLE_VALUE_TYPE_STRING:
261 // TODO: Make the code generic to UTF8 characters.
262 ascii_out = (char *) malloc ((event_data->value.str_value.len + 1) * sizeof(char));
263 memcpy(ascii_out, event_data->value.str_value.data, event_data->value.str_value.len);
264 ascii_out[event_data->value.str_value.len] = '\0';
265 printf("Ascii value: %s\n", ascii_out);
266 break;
267 case VEHICLE_VALUE_TYPE_ZONED_FLOAT:
268 printf("Value type: ZONED_FLOAT\nZone: %d\n", event_data->value.zoned_float_value.zone);
269 printf("Value type: ZONED_FLOAT\nValue: %f\n", event_data->value.zoned_float_value.value);
270 break;
271 case VEHICLE_VALUE_TYPE_INT32_VEC4:
272 printf("Value type: INT32_VEC4\nValue[0]: %d Value[1] %d Value[2] %d Value[3] %d\n",
273 event_data->value.int32_array[0], event_data->value.int32_array[1],
274 event_data->value.int32_array[2], event_data->value.int32_array[3]);
275 break;
276 default:
277 printf("vehicle_event_callback: Value type not yet handled: %d\n",
278 event_data->value_type);
279 exit(1);
280 }
281 return 0;
282}
283int vehicle_error_callback(int32_t error_code, int32_t property, int32_t operation) {
284 // Print what we got.
285 printf("Error code obtained: %d\n", error_code);
286 return 0;
287}
288void subscribe_to_property(
289 vehicle_hw_device_t *device,
290 int32_t prop,
291 float sample_rate,
292 uint32_t wait_in_seconds) {
293 // Init the device with a callback.
294 device->init(device, vehicle_event_callback, vehicle_error_callback);
Keun-young Parkbf877a72015-12-21 14:16:05 -0800295 int ret_code = device->subscribe(device, prop, 0, 0);
Sanket Agarwalfb636682015-08-11 14:34:29 -0700296 if (ret_code != 0) {
297 printf("Could not subscribe: %d\n", ret_code);
298 exit(1);
299 }
300
301 // Callbacks will happen on one of the threads created by the HAL hence we
302 // can simply sleep here and see the output.
303 sleep(wait_in_seconds);
304
305 // Unsubscribe and uninit.
306 ret_code = device->unsubscribe(device, prop);
307 if (ret_code != 0) {
308 printf("Error unsubscribing the HAL, still continuining to uninit HAL ...");
309 }
310
311 ret_code = device->release(device);
312 if (ret_code != 0) {
313 printf("Error uniniting HAL, exiting anyways.");
314 }
315}
316
317int main(int argc, char* argv[]) {
318 // Open the vehicle module and just ask for the list of properties.
319 const hw_module_t *hw_module = NULL;
320 int ret_code = hw_get_module(VEHICLE_HARDWARE_MODULE_ID, &hw_module);
321 if (ret_code != 0) {
322 printf("Cannot open the hw module. Does the HAL exist? %d\n", ret_code);
323 return -1;
324 }
325
326 vehicle_module_t *vehicle_module = (vehicle_module_t *)(hw_module);
327 hw_device_t *device = NULL;
328 ret_code = vehicle_module->common.methods->open(hw_module, NULL, &device);
329 if (!device) {
330 printf("Cannot open the hw device: %d\n", ret_code);
331 return -1;
332 }
333 vehicle_hw_device_t *vehicle_device = (vehicle_hw_device_t *) (device);
334 printf("HAL Loaded!\n");
335
336 // If this is a list properties command - we check for -l command.
337 int list_properties = 0;
338 // Type of the property (see #defines in vehicle.h).
339 int property = -1;
340 // Type of the value of the property (see enum vehicle_value_type).
341 int type = -1;
342 // Whether the mode is "get" or "set".
343 char mode[100] = "";
344 // Actual value as a string representation (supports only PODs for now).
345 // TODO: Support structures and complex types in the tool.
346 char value[100] = "";
347 // Wait time for the subscribe type of calls.
348 // We keep a default in case the user does not specify one.
349 int wait_time_in_sec = 10;
350 // Sample rate for subscribe type of calls.
351 // Default value is 0 for onchange type of properties.
352 int sample_rate = 0;
353 // Int array string which represents the vehicle_value_t in array of
354 // numbers. See vehicle_prop_value_t.value.int32_array.
355 char int_array_string[1000]; int_array_string[0] = '\0';
356
357 int opt;
Keun-young Parkbf877a72015-12-21 14:16:05 -0800358 //TODO allow passing zone
Sanket Agarwalfb636682015-08-11 14:34:29 -0700359 while ((opt = getopt(argc, argv, "lm:p:t:v:w:s:")) != -1) {
360 switch (opt) {
361 case 'l':
362 list_properties = 1;
363 break;
364 case 'm':
365 strcpy(mode, optarg);
366 break;
367 case 'p':
368 property = atoi(optarg);
369 break;
370 case 't':
371 type = atoi(optarg);
372 break;
373 case 'v':
374 strcpy(value, optarg);
375 break;
376 case 'w':
377 wait_time_in_sec = atoi(optarg);
378 break;
379 case 's':
380 sample_rate = atoi(optarg);
381 break;
382 }
383 }
384
385 // We should have atleast one of list properties or mode (for get or set).
386 if (!list_properties &&
387 !(!strcmp(mode, "get") || !strcmp(mode, "set") || !strcmp(mode, "sub"))) {
388 usage();
389 exit(1);
390 }
391
392 if (list_properties) {
393 printf("Listing properties...\n");
394 list_all_properties(vehicle_device);
395 } else if (!strcmp(mode, "get")) {
396 printf("Getting property ...\n");
397 if (property == -1) {
398 printf("Use -p to pass a valid Property.\n");
399 usage();
400 exit(1);
401 }
402
403 int32_t int_array_list[4];
404 int count = -1;
405 if (strlen(int_array_string) > 0) {
406 count = sscanf(int_array_string, "%d%d%d%d",
407 &int_array_list[0], &int_array_list[1], &int_array_list[2], &int_array_list[3]);
408 }
409
410 get_property(vehicle_device, property, type, value);
411 } else if (!strcmp(mode, "set")) {
412 printf("Setting property ...\n");
413 if (property == -1 || type == -1) {
414 printf("Use -p to pass a valid Property and -t to pass a valid Type.\n");
415 usage();
416 exit(1);
417 }
418 set_property(vehicle_device, property, type, value);
419 } else if (!strcmp(mode, "sub")) {
420 printf("Subscribing property ...\n");
421 if (property == -1 || wait_time_in_sec <= 0) {
422 printf("Use -p to pass a valid property and -w to pass a valid wait time(s)\n");
423 usage();
424 exit(1);
425 }
426 subscribe_to_property(vehicle_device, property, sample_rate, wait_time_in_sec);
427 }
428 return 0;
429}