86fe7268c1cc80581dbcd3139d4bd507799c337a
[project/umbim.git] / cli.c
1 /*
2 * umbim
3 * Copyright (C) 2014 John Crispin <blogic@openwrt.org>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2
7 * as published by the Free Software Foundation
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 */
14
15 #define __STDC_FORMAT_MACROS
16 #include <inttypes.h>
17
18 #include <sys/types.h>
19 #include <sys/stat.h>
20
21 #include <alloca.h>
22 #include <fcntl.h>
23 #include <stdio.h>
24 #include <stdlib.h>
25 #include <string.h>
26 #include <unistd.h>
27 #include <ctype.h>
28
29 #include <libubox/utils.h>
30 #include <libubox/uloop.h>
31
32 #include "mbim.h"
33
34 #include "data/mbim-service-basic-connect.h"
35
36 int return_code = -1;
37 int verbose;
38
39 struct mbim_handler *current_handler;
40 static uint8_t uuid_context_type_internet[16] = { 0x7E, 0x5E, 0x2A, 0x7E, 0x4E, 0x6F, 0x72, 0x72, 0x73, 0x6B, 0x65, 0x6E, 0x7E, 0x5E, 0x2A, 0x7E };
41 static int _argc;
42 static char **_argv;
43
44 static int
45 mbim_device_caps_response(void *buffer, int len)
46 {
47 struct mbim_basic_connect_device_caps_r *caps = (struct mbim_basic_connect_device_caps_r *) buffer;
48 char *deviceid, *firmwareinfo, *hardwareinfo;
49
50 if (len < sizeof(struct mbim_basic_connect_device_caps_r)) {
51 fprintf(stderr, "message not long enough\n");
52 return -1;
53 }
54
55 deviceid = mbim_get_string(&caps->deviceid, buffer);
56 firmwareinfo = mbim_get_string(&caps->firmwareinfo, buffer);
57 hardwareinfo = mbim_get_string(&caps->hardwareinfo, buffer);
58
59 printf(" devicetype: %04X - %s\n", le32toh(caps->devicetype),
60 mbim_enum_string(mbim_device_type_values, le32toh(caps->devicetype)));
61 printf(" cellularclass: %04X\n", le32toh(caps->cellularclass));
62 printf(" voiceclass: %04X - %s\n", le32toh(caps->voiceclass),
63 mbim_enum_string(mbim_voice_class_values, le32toh(caps->voiceclass)));
64 printf(" simclass: %04X\n", le32toh(caps->simclass));
65 printf(" dataclass: %04X\n", le32toh(caps->dataclass));
66 printf(" smscaps: %04X\n", le32toh(caps->smscaps));
67 printf(" controlcaps: %04X\n", le32toh(caps->controlcaps));
68 printf(" maxsessions: %04X\n", le32toh(caps->maxsessions));
69 printf(" deviceid: %s\n", deviceid);
70 printf(" firmwareinfo: %s\n", firmwareinfo);
71 printf(" hardwareinfo: %s\n", hardwareinfo);
72
73 return 0;
74 }
75
76 static int
77 mbim_pin_state_response(void *buffer, int len)
78 {
79 struct mbim_basic_connect_pin_r *pin = (struct mbim_basic_connect_pin_r *) buffer;
80
81 if (len < sizeof(struct mbim_basic_connect_pin_r)) {
82 fprintf(stderr, "message not long enough\n");
83 return -1;
84 }
85
86 if (le32toh(pin->pinstate) != MBIM_PIN_STATE_UNLOCKED) {
87 fprintf(stderr, "required pin: %d - %s\n",
88 le32toh(pin->pintype), mbim_enum_string(mbim_pin_type_values, le32toh(pin->pintype)));
89 fprintf(stderr, "remaining attempts: %d\n", le32toh(pin->remainingattempts));
90 return le32toh(pin->pintype);
91 }
92
93 fprintf(stderr, "Pin Unlocked\n");
94
95 return 0;
96 }
97
98 static int
99 mbim_registration_response(void *buffer, int len)
100 {
101 struct mbim_basic_connect_register_state_r *state = (struct mbim_basic_connect_register_state_r *) buffer;
102 char *provider_id, *provider_name, *roamingtext;
103
104 if (len < sizeof(struct mbim_basic_connect_register_state_r)) {
105 fprintf(stderr, "message not long enough\n");
106 return -1;
107 }
108
109 provider_id = mbim_get_string(&state->providerid, buffer);
110 provider_name = mbim_get_string(&state->providername, buffer);
111 roamingtext = mbim_get_string(&state->roamingtext, buffer);
112
113 printf(" nwerror: %04X - %s\n", le32toh(state->nwerror),
114 mbim_enum_string(mbim_nw_error_values, le32toh(state->nwerror)));
115 printf(" registerstate: %04X - %s\n", le32toh(state->registerstate),
116 mbim_enum_string(mbim_register_state_values, le32toh(state->registerstate)));
117 printf(" registermode: %04X - %s\n", le32toh(state->registermode),
118 mbim_enum_string(mbim_register_mode_values, le32toh(state->registermode)));
119 printf(" availabledataclasses: %04X - %s\n", le32toh(state->availabledataclasses),
120 mbim_enum_string(mbim_data_class_values, le32toh(state->availabledataclasses)));
121 printf(" currentcellularclass: %04X - %s\n", le32toh(state->currentcellularclass),
122 mbim_enum_string(mbim_cellular_class_values, le32toh(state->currentcellularclass)));
123 printf(" provider_id: %s\n", provider_id);
124 printf(" provider_name: %s\n", provider_name);
125 printf(" roamingtext: %s\n", roamingtext);
126
127 if (le32toh(state->registerstate) == MBIM_REGISTER_STATE_HOME)
128 return 0;
129
130 return le32toh(state->registerstate);
131 }
132
133 static int
134 mbim_subscriber_response(void *buffer, int len)
135 {
136 struct mbim_basic_connect_subscriber_ready_status_r *state = (struct mbim_basic_connect_subscriber_ready_status_r *) buffer;
137 char *subscriberid, *simiccid;
138 int nr;
139
140 if (len < sizeof(struct mbim_basic_connect_subscriber_ready_status_r)) {
141 fprintf(stderr, "message not long enough\n");
142 return -1;
143 }
144
145 subscriberid = mbim_get_string(&state->subscriberid, buffer);
146 simiccid = mbim_get_string(&state->simiccid, buffer);
147
148 printf(" readystate: %04X - %s\n", le32toh(state->readystate),
149 mbim_enum_string(mbim_subscriber_ready_state_values, le32toh(state->readystate)));
150 printf(" simiccid: %s\n", simiccid);
151 printf(" subscriberid: %s\n", subscriberid);
152 if (le32toh(state->readyinfo) & MBIM_READY_INFO_FLAG_PROTECT_UNIQUE_ID)
153 printf(" dont display subscriberID: 1\n");
154 for (nr = 0; nr < le32toh(state->telephonenumberscount); nr++) {
155 struct mbim_string *str = buffer + le32toh(state->telephonenumbers) + (nr * sizeof(struct mbim_string));
156 char *number = mbim_get_string(str, buffer);
157 printf(" number: %s\n", number);
158 }
159
160 if (MBIM_SUBSCRIBER_READY_STATE_INITIALIZED == le32toh(state->readystate))
161 return 0;
162
163 return le32toh(state->readystate);
164 }
165
166 static int
167 mbim_attach_response(void *buffer, int len)
168 {
169 struct mbim_basic_connect_packet_service_r *ps = (struct mbim_basic_connect_packet_service_r *) buffer;
170
171 if (len < sizeof(struct mbim_basic_connect_packet_service_r)) {
172 fprintf(stderr, "message not long enough\n");
173 return -1;
174 }
175
176 printf(" nwerror: %04X - %s\n", le32toh(ps->nwerror),
177 mbim_enum_string(mbim_nw_error_values, le32toh(ps->nwerror)));
178 printf(" packetservicestate: %04X - %s\n", le32toh(ps->packetservicestate),
179 mbim_enum_string(mbim_packet_service_state_values, le32toh(ps->packetservicestate)));
180 printf(" uplinkspeed: %"PRIu64"\n", le64toh(ps->uplinkspeed));
181 printf(" downlinkspeed: %"PRIu64"\n", le64toh(ps->downlinkspeed));
182
183 if (MBIM_PACKET_SERVICE_STATE_ATTACHED == le32toh(ps->packetservicestate))
184 return 0;
185
186 return le32toh(ps->packetservicestate);
187 }
188
189 static int
190 mbim_connect_response(void *buffer, int len)
191 {
192 struct mbim_basic_connect_connect_r *c = (struct mbim_basic_connect_connect_r *) buffer;
193
194 if (len < sizeof(struct mbim_basic_connect_connect_r)) {
195 fprintf(stderr, "message not long enough\n");
196 return -1;
197 }
198
199 printf(" sessionid: %d\n", le32toh(c->sessionid));
200 printf(" activationstate: %04X - %s\n", le32toh(c->activationstate),
201 mbim_enum_string(mbim_activation_state_values, le32toh(c->activationstate)));
202 printf(" voicecallstate: %04X - %s\n", le32toh(c->voicecallstate),
203 mbim_enum_string(mbim_voice_call_state_values, le32toh(c->voicecallstate)));
204 printf(" nwerror: %04X - %s\n", le32toh(c->nwerror),
205 mbim_enum_string(mbim_nw_error_values, le32toh(c->nwerror)));
206 printf(" iptype: %04X - %s\n", le32toh(c->iptype),
207 mbim_enum_string(mbim_context_ip_type_values, le32toh(c->iptype)));
208
209 if (MBIM_ACTIVATION_STATE_ACTIVATED == le32toh(c->activationstate))
210 return 0;
211
212 return le32toh(c->activationstate);
213 }
214
215 static int
216 mbim_config_response(void *buffer, int len)
217 {
218 struct mbim_basic_connect_ip_configuration_r *ip = (struct mbim_basic_connect_ip_configuration_r *) buffer;
219 char ipv4[16];
220 int i;
221
222 if (len < sizeof(struct mbim_basic_connect_ip_configuration_r)) {
223 fprintf(stderr, "message not long enough\n");
224 return -1;
225 }
226
227 if (le32toh(ip->ipv4configurationavailable) & MBIM_IP_CONFIGURATION_AVAILABLE_FLAG_ADDRESS)
228 for (i = 0; i < le32toh(ip->ipv4addresscount); i++) {
229 mbim_get_ipv4(buffer, ipv4, ip->ipv4address + (i * 4));
230 printf(" ipv4address: %s\n", ipv4);
231 }
232 if (le32toh(ip->ipv4configurationavailable) & MBIM_IP_CONFIGURATION_AVAILABLE_FLAG_DNS) {
233 mbim_get_ipv4(buffer, ipv4, ip->ipv4gateway);
234 printf(" ipv4gateway: %s\n", ipv4);
235 }
236 if (le32toh(ip->ipv4configurationavailable) & MBIM_IP_CONFIGURATION_AVAILABLE_FLAG_MTU)
237 printf(" ipv4mtu: %d\n", le32toh(ip->ipv4mtu));
238 if (le32toh(ip->ipv4configurationavailable) & MBIM_IP_CONFIGURATION_AVAILABLE_FLAG_DNS)
239 for (i = 0; i < le32toh(ip->ipv4dnsservercount); i++) {
240 mbim_get_ipv4(buffer, ipv4, ip->ipv4dnsserver + (i * 4));
241 printf(" ipv4dnsserver: %s\n", ipv4);
242 }
243
244 printf(" ipv6configurationavailable: %04X\n", le32toh(ip->ipv6configurationavailable));
245
246 return 0;
247 }
248
249 static int
250 mbim_device_caps_request(void)
251 {
252 mbim_setup_command_msg(basic_connect, MBIM_MESSAGE_COMMAND_TYPE_QUERY, MBIM_CMD_BASIC_CONNECT_DEVICE_CAPS, 0);
253
254 return mbim_send_command_msg();
255 }
256
257 static int
258 mbim_pin_state_request(void)
259 {
260 mbim_setup_command_msg(basic_connect, MBIM_MESSAGE_COMMAND_TYPE_QUERY, MBIM_CMD_BASIC_CONNECT_PIN, 0);
261
262 return mbim_send_command_msg();
263 }
264
265 static int
266 mbim_registration_request(void)
267 {
268 mbim_setup_command_msg(basic_connect, MBIM_MESSAGE_COMMAND_TYPE_QUERY, MBIM_CMD_BASIC_CONNECT_REGISTER_STATE, 0);
269
270 return mbim_send_command_msg();
271 }
272
273 static int
274 mbim_subscriber_request(void)
275 {
276 mbim_setup_command_msg(basic_connect, MBIM_MESSAGE_COMMAND_TYPE_QUERY, MBIM_CMD_BASIC_CONNECT_SUBSCRIBER_READY_STATUS, 0);
277
278 return mbim_send_command_msg();
279 }
280
281 static int
282 _mbim_attach_request(int action)
283 {
284 struct mbim_basic_connect_packet_service_s *ps =
285 (struct mbim_basic_connect_packet_service_s *) mbim_setup_command_msg(basic_connect,
286 MBIM_MESSAGE_COMMAND_TYPE_SET, MBIM_CMD_BASIC_CONNECT_PACKET_SERVICE,
287 sizeof(struct mbim_basic_connect_packet_service_s));
288
289 ps->packetserviceaction = htole32(action);
290
291 return mbim_send_command_msg();
292 }
293
294 static int
295 mbim_attach_request(void)
296 {
297 return _mbim_attach_request(MBIM_PACKET_SERVICE_ACTION_ATTACH);
298 }
299
300 static int
301 mbim_detach_request(void)
302 {
303 return _mbim_attach_request(MBIM_PACKET_SERVICE_ACTION_DETACH);
304 }
305
306 static int
307 mbim_connect_request(void)
308 {
309 struct mbim_basic_connect_connect_s *c =
310 (struct mbim_basic_connect_connect_s *) mbim_setup_command_msg(basic_connect,
311 MBIM_MESSAGE_COMMAND_TYPE_SET, MBIM_CMD_BASIC_CONNECT_CONNECT,
312 sizeof(struct mbim_basic_connect_connect_s));
313
314 c->activationcommand = htole32(MBIM_ACTIVATION_COMMAND_ACTIVATE);
315 c->iptype = htole32(MBIM_CONTEXT_IP_TYPE_DEFAULT);
316 memcpy(c->contexttype, uuid_context_type_internet, 16);
317 if (_argc > 0)
318 mbim_encode_string(&c->accessstring, *_argv);
319
320 return mbim_send_command_msg();
321 }
322
323 static int
324 mbim_disconnect_request(void)
325 {
326 struct mbim_basic_connect_connect_s *c =
327 (struct mbim_basic_connect_connect_s *) mbim_setup_command_msg(basic_connect,
328 MBIM_MESSAGE_COMMAND_TYPE_SET, MBIM_CMD_BASIC_CONNECT_CONNECT,
329 sizeof(struct mbim_basic_connect_connect_s));
330
331 c->activationcommand = htole32(MBIM_ACTIVATION_COMMAND_DEACTIVATE);
332 memcpy(c->contexttype, uuid_context_type_internet, 16);
333
334 no_close = 0;
335
336 return mbim_send_command_msg();
337 }
338
339 static char*
340 mbim_pin_sanitize(char *pin)
341 {
342 char *p;
343
344 while (*pin && !isdigit(*pin))
345 pin++;
346 p = pin;
347 if (!*p)
348 return NULL;
349 while (*pin && isdigit(*pin))
350 pin++;
351 if (*pin)
352 *pin = '\0';
353
354 return p;
355 }
356
357 static int
358 mbim_pin_unlock_request(void)
359 {
360 struct mbim_basic_connect_pin_s *p =
361 (struct mbim_basic_connect_pin_s *) mbim_setup_command_msg(basic_connect,
362 MBIM_MESSAGE_COMMAND_TYPE_SET, MBIM_CMD_BASIC_CONNECT_PIN,
363 sizeof(struct mbim_basic_connect_pin_s));
364 char *pin = mbim_pin_sanitize(_argv[0]);
365
366 if (!pin || !strlen(pin)) {
367 fprintf(stderr, "failed to sanitize the pincode\n");
368 return -1;
369 }
370
371 p->pintype = htole32(MBIM_PIN_TYPE_PIN1);
372 p->pinoperation = htole32(MBIM_PIN_OPERATION_ENTER);
373 mbim_encode_string(&p->pin, _argv[0]);
374
375 return mbim_send_command_msg();
376 }
377
378 static int
379 mbim_config_request(void)
380 {
381 mbim_setup_command_msg(basic_connect,
382 MBIM_MESSAGE_COMMAND_TYPE_QUERY, MBIM_CMD_BASIC_CONNECT_IP_CONFIGURATION,
383 sizeof(struct mbim_basic_connect_ip_configuration_q));
384
385 return mbim_send_command_msg();
386 }
387
388 static struct mbim_handler handlers[] = {
389 { "caps", 0, mbim_device_caps_request, mbim_device_caps_response },
390 { "pinstate", 0, mbim_pin_state_request, mbim_pin_state_response },
391 { "unlock", 1, mbim_pin_unlock_request, mbim_pin_state_response },
392 { "registration", 0, mbim_registration_request, mbim_registration_response },
393 { "subscriber", 0, mbim_subscriber_request, mbim_subscriber_response },
394 { "attach", 0, mbim_attach_request, mbim_attach_response },
395 { "detach", 0, mbim_detach_request, mbim_attach_response },
396 { "connect", 0, mbim_connect_request, mbim_connect_response },
397 { "disconnect", 0, mbim_disconnect_request, mbim_connect_response },
398 { "config", 0, mbim_config_request, mbim_config_response },
399 };
400
401 static int
402 usage(void)
403 {
404 fprintf(stderr, "Usage: mbim <caps|pinstate|unlock|connect|disconnect> [options]\n"
405 "Options:\n"
406 " -d <device> the device (/dev/cdc-wdmX)\n"
407 " -t <transaction> the transaction id\n"
408 " -n no close\n\n"
409 " -v verbose\n\n");
410 return 1;
411 }
412
413 int
414 main(int argc, char **argv)
415 {
416 char *cmd, *device = NULL;
417 int no_open = 0, ch, i;
418
419 while ((ch = getopt(argc, argv, "nvd:t:")) != -1) {
420 switch (ch) {
421 case 'v':
422 verbose = 1;
423 break;
424 case 'n':
425 no_close = 1;
426 break;
427 case 'd':
428 device = optarg;
429 break;
430 case 't':
431 no_open = 1;
432 transaction_id = atoi(optarg);
433 break;
434 default:
435 return usage();
436 }
437 }
438
439 if (!device || optind == argc)
440 return usage();
441
442 cmd = argv[optind];
443 optind++;
444
445 _argc = argc - optind;
446 _argv = &argv[optind];
447
448 for (i = 0; i < ARRAY_SIZE(handlers); i++)
449 if (!strcmp(cmd, handlers[i].name))
450 current_handler = &handlers[i];
451
452 if (!current_handler || (optind + current_handler->argc > argc))
453 return usage();
454
455 uloop_init();
456
457 mbim_open(device);
458 if (!no_open)
459 mbim_send_open_msg();
460 else if (current_handler->request() < 0)
461 return -1;
462
463 uloop_run();
464 uloop_done();
465
466 return return_code;
467 }