ccid-card-emulated.c 19 KB

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  1. /*
  2. * CCID Card Device. Emulated card.
  3. *
  4. * Copyright (c) 2011 Red Hat.
  5. * Written by Alon Levy.
  6. *
  7. * This code is licensed under the GNU LGPL, version 2 or later.
  8. */
  9. /*
  10. * It can be used to provide access to the local hardware in a non exclusive
  11. * way, or it can use certificates. It requires the usb-ccid bus.
  12. *
  13. * Usage 1: standard, mirror hardware reader+card:
  14. * qemu .. -usb -device usb-ccid -device ccid-card-emulated
  15. *
  16. * Usage 2: use certificates, no hardware required
  17. * one time: create the certificates:
  18. * for i in 1 2 3; do
  19. * certutil -d /etc/pki/nssdb -x -t "CT,CT,CT" -S -s "CN=user$i" -n user$i
  20. * done
  21. * qemu .. -usb -device usb-ccid \
  22. * -device ccid-card-emulated,cert1=user1,cert2=user2,cert3=user3
  23. *
  24. * If you use a non default db for the certificates you can specify it using
  25. * the db parameter.
  26. */
  27. #include <eventt.h>
  28. #include <vevent.h>
  29. #include <vreader.h>
  30. #include <vcard_emul.h>
  31. #include "qemu/thread.h"
  32. #include "char/char.h"
  33. #include "monitor/monitor.h"
  34. #include "hw/ccid.h"
  35. #define DPRINTF(card, lvl, fmt, ...) \
  36. do {\
  37. if (lvl <= card->debug) {\
  38. printf("ccid-card-emul: %s: " fmt , __func__, ## __VA_ARGS__);\
  39. } \
  40. } while (0)
  41. #define EMULATED_DEV_NAME "ccid-card-emulated"
  42. #define BACKEND_NSS_EMULATED_NAME "nss-emulated"
  43. #define BACKEND_CERTIFICATES_NAME "certificates"
  44. enum {
  45. BACKEND_NSS_EMULATED = 1,
  46. BACKEND_CERTIFICATES
  47. };
  48. #define DEFAULT_BACKEND BACKEND_NSS_EMULATED
  49. typedef struct EmulatedState EmulatedState;
  50. enum {
  51. EMUL_READER_INSERT = 0,
  52. EMUL_READER_REMOVE,
  53. EMUL_CARD_INSERT,
  54. EMUL_CARD_REMOVE,
  55. EMUL_GUEST_APDU,
  56. EMUL_RESPONSE_APDU,
  57. EMUL_ERROR,
  58. };
  59. static const char *emul_event_to_string(uint32_t emul_event)
  60. {
  61. switch (emul_event) {
  62. case EMUL_READER_INSERT:
  63. return "EMUL_READER_INSERT";
  64. case EMUL_READER_REMOVE:
  65. return "EMUL_READER_REMOVE";
  66. case EMUL_CARD_INSERT:
  67. return "EMUL_CARD_INSERT";
  68. case EMUL_CARD_REMOVE:
  69. return "EMUL_CARD_REMOVE";
  70. case EMUL_GUEST_APDU:
  71. return "EMUL_GUEST_APDU";
  72. case EMUL_RESPONSE_APDU:
  73. return "EMUL_RESPONSE_APDU";
  74. case EMUL_ERROR:
  75. return "EMUL_ERROR";
  76. }
  77. return "UNKNOWN";
  78. }
  79. typedef struct EmulEvent {
  80. QSIMPLEQ_ENTRY(EmulEvent) entry;
  81. union {
  82. struct {
  83. uint32_t type;
  84. } gen;
  85. struct {
  86. uint32_t type;
  87. uint64_t code;
  88. } error;
  89. struct {
  90. uint32_t type;
  91. uint32_t len;
  92. uint8_t data[];
  93. } data;
  94. } p;
  95. } EmulEvent;
  96. #define MAX_ATR_SIZE 40
  97. struct EmulatedState {
  98. CCIDCardState base;
  99. uint8_t debug;
  100. char *backend_str;
  101. uint32_t backend;
  102. char *cert1;
  103. char *cert2;
  104. char *cert3;
  105. char *db;
  106. uint8_t atr[MAX_ATR_SIZE];
  107. uint8_t atr_length;
  108. QSIMPLEQ_HEAD(event_list, EmulEvent) event_list;
  109. QemuMutex event_list_mutex;
  110. QemuThread event_thread_id;
  111. VReader *reader;
  112. QSIMPLEQ_HEAD(guest_apdu_list, EmulEvent) guest_apdu_list;
  113. QemuMutex vreader_mutex; /* and guest_apdu_list mutex */
  114. QemuMutex handle_apdu_mutex;
  115. QemuCond handle_apdu_cond;
  116. int pipe[2];
  117. int quit_apdu_thread;
  118. QemuThread apdu_thread_id;
  119. };
  120. static void emulated_apdu_from_guest(CCIDCardState *base,
  121. const uint8_t *apdu, uint32_t len)
  122. {
  123. EmulatedState *card = DO_UPCAST(EmulatedState, base, base);
  124. EmulEvent *event = (EmulEvent *)g_malloc(sizeof(EmulEvent) + len);
  125. assert(event);
  126. event->p.data.type = EMUL_GUEST_APDU;
  127. event->p.data.len = len;
  128. memcpy(event->p.data.data, apdu, len);
  129. qemu_mutex_lock(&card->vreader_mutex);
  130. QSIMPLEQ_INSERT_TAIL(&card->guest_apdu_list, event, entry);
  131. qemu_mutex_unlock(&card->vreader_mutex);
  132. qemu_mutex_lock(&card->handle_apdu_mutex);
  133. qemu_cond_signal(&card->handle_apdu_cond);
  134. qemu_mutex_unlock(&card->handle_apdu_mutex);
  135. }
  136. static const uint8_t *emulated_get_atr(CCIDCardState *base, uint32_t *len)
  137. {
  138. EmulatedState *card = DO_UPCAST(EmulatedState, base, base);
  139. *len = card->atr_length;
  140. return card->atr;
  141. }
  142. static void emulated_push_event(EmulatedState *card, EmulEvent *event)
  143. {
  144. qemu_mutex_lock(&card->event_list_mutex);
  145. QSIMPLEQ_INSERT_TAIL(&(card->event_list), event, entry);
  146. qemu_mutex_unlock(&card->event_list_mutex);
  147. if (write(card->pipe[1], card, 1) != 1) {
  148. DPRINTF(card, 1, "write to pipe failed\n");
  149. }
  150. }
  151. static void emulated_push_type(EmulatedState *card, uint32_t type)
  152. {
  153. EmulEvent *event = (EmulEvent *)g_malloc(sizeof(EmulEvent));
  154. assert(event);
  155. event->p.gen.type = type;
  156. emulated_push_event(card, event);
  157. }
  158. static void emulated_push_error(EmulatedState *card, uint64_t code)
  159. {
  160. EmulEvent *event = (EmulEvent *)g_malloc(sizeof(EmulEvent));
  161. assert(event);
  162. event->p.error.type = EMUL_ERROR;
  163. event->p.error.code = code;
  164. emulated_push_event(card, event);
  165. }
  166. static void emulated_push_data_type(EmulatedState *card, uint32_t type,
  167. const uint8_t *data, uint32_t len)
  168. {
  169. EmulEvent *event = (EmulEvent *)g_malloc(sizeof(EmulEvent) + len);
  170. assert(event);
  171. event->p.data.type = type;
  172. event->p.data.len = len;
  173. memcpy(event->p.data.data, data, len);
  174. emulated_push_event(card, event);
  175. }
  176. static void emulated_push_reader_insert(EmulatedState *card)
  177. {
  178. emulated_push_type(card, EMUL_READER_INSERT);
  179. }
  180. static void emulated_push_reader_remove(EmulatedState *card)
  181. {
  182. emulated_push_type(card, EMUL_READER_REMOVE);
  183. }
  184. static void emulated_push_card_insert(EmulatedState *card,
  185. const uint8_t *atr, uint32_t len)
  186. {
  187. emulated_push_data_type(card, EMUL_CARD_INSERT, atr, len);
  188. }
  189. static void emulated_push_card_remove(EmulatedState *card)
  190. {
  191. emulated_push_type(card, EMUL_CARD_REMOVE);
  192. }
  193. static void emulated_push_response_apdu(EmulatedState *card,
  194. const uint8_t *apdu, uint32_t len)
  195. {
  196. emulated_push_data_type(card, EMUL_RESPONSE_APDU, apdu, len);
  197. }
  198. #define APDU_BUF_SIZE 270
  199. static void *handle_apdu_thread(void* arg)
  200. {
  201. EmulatedState *card = arg;
  202. uint8_t recv_data[APDU_BUF_SIZE];
  203. int recv_len;
  204. VReaderStatus reader_status;
  205. EmulEvent *event;
  206. while (1) {
  207. qemu_mutex_lock(&card->handle_apdu_mutex);
  208. qemu_cond_wait(&card->handle_apdu_cond, &card->handle_apdu_mutex);
  209. qemu_mutex_unlock(&card->handle_apdu_mutex);
  210. if (card->quit_apdu_thread) {
  211. card->quit_apdu_thread = 0; /* debugging */
  212. break;
  213. }
  214. qemu_mutex_lock(&card->vreader_mutex);
  215. while (!QSIMPLEQ_EMPTY(&card->guest_apdu_list)) {
  216. event = QSIMPLEQ_FIRST(&card->guest_apdu_list);
  217. assert((unsigned long)event > 1000);
  218. QSIMPLEQ_REMOVE_HEAD(&card->guest_apdu_list, entry);
  219. if (event->p.data.type != EMUL_GUEST_APDU) {
  220. DPRINTF(card, 1, "unexpected message in handle_apdu_thread\n");
  221. g_free(event);
  222. continue;
  223. }
  224. if (card->reader == NULL) {
  225. DPRINTF(card, 1, "reader is NULL\n");
  226. g_free(event);
  227. continue;
  228. }
  229. recv_len = sizeof(recv_data);
  230. reader_status = vreader_xfr_bytes(card->reader,
  231. event->p.data.data, event->p.data.len,
  232. recv_data, &recv_len);
  233. DPRINTF(card, 2, "got back apdu of length %d\n", recv_len);
  234. if (reader_status == VREADER_OK) {
  235. emulated_push_response_apdu(card, recv_data, recv_len);
  236. } else {
  237. emulated_push_error(card, reader_status);
  238. }
  239. g_free(event);
  240. }
  241. qemu_mutex_unlock(&card->vreader_mutex);
  242. }
  243. return NULL;
  244. }
  245. static void *event_thread(void *arg)
  246. {
  247. int atr_len = MAX_ATR_SIZE;
  248. uint8_t atr[MAX_ATR_SIZE];
  249. VEvent *event = NULL;
  250. EmulatedState *card = arg;
  251. while (1) {
  252. const char *reader_name;
  253. event = vevent_wait_next_vevent();
  254. if (event == NULL || event->type == VEVENT_LAST) {
  255. break;
  256. }
  257. if (event->type != VEVENT_READER_INSERT) {
  258. if (card->reader == NULL && event->reader != NULL) {
  259. /* Happens after device_add followed by card remove or insert.
  260. * XXX: create synthetic add_reader events if vcard_emul_init
  261. * already called, which happens if device_del and device_add
  262. * are called */
  263. card->reader = vreader_reference(event->reader);
  264. } else {
  265. if (event->reader != card->reader) {
  266. fprintf(stderr,
  267. "ERROR: wrong reader: quiting event_thread\n");
  268. break;
  269. }
  270. }
  271. }
  272. switch (event->type) {
  273. case VEVENT_READER_INSERT:
  274. /* TODO: take a specific reader. i.e. track which reader
  275. * we are seeing here, check it is the one we want (the first,
  276. * or by a particular name), and ignore if we don't want it.
  277. */
  278. reader_name = vreader_get_name(event->reader);
  279. if (card->reader != NULL) {
  280. DPRINTF(card, 2, "READER INSERT - replacing %s with %s\n",
  281. vreader_get_name(card->reader), reader_name);
  282. qemu_mutex_lock(&card->vreader_mutex);
  283. vreader_free(card->reader);
  284. qemu_mutex_unlock(&card->vreader_mutex);
  285. emulated_push_reader_remove(card);
  286. }
  287. qemu_mutex_lock(&card->vreader_mutex);
  288. DPRINTF(card, 2, "READER INSERT %s\n", reader_name);
  289. card->reader = vreader_reference(event->reader);
  290. qemu_mutex_unlock(&card->vreader_mutex);
  291. emulated_push_reader_insert(card);
  292. break;
  293. case VEVENT_READER_REMOVE:
  294. DPRINTF(card, 2, " READER REMOVE: %s\n",
  295. vreader_get_name(event->reader));
  296. qemu_mutex_lock(&card->vreader_mutex);
  297. vreader_free(card->reader);
  298. card->reader = NULL;
  299. qemu_mutex_unlock(&card->vreader_mutex);
  300. emulated_push_reader_remove(card);
  301. break;
  302. case VEVENT_CARD_INSERT:
  303. /* get the ATR (intended as a response to a power on from the
  304. * reader */
  305. atr_len = MAX_ATR_SIZE;
  306. vreader_power_on(event->reader, atr, &atr_len);
  307. card->atr_length = (uint8_t)atr_len;
  308. DPRINTF(card, 2, " CARD INSERT\n");
  309. emulated_push_card_insert(card, atr, atr_len);
  310. break;
  311. case VEVENT_CARD_REMOVE:
  312. DPRINTF(card, 2, " CARD REMOVE\n");
  313. emulated_push_card_remove(card);
  314. break;
  315. case VEVENT_LAST: /* quit */
  316. vevent_delete(event);
  317. return NULL;
  318. break;
  319. default:
  320. break;
  321. }
  322. vevent_delete(event);
  323. }
  324. return NULL;
  325. }
  326. static void pipe_read(void *opaque)
  327. {
  328. EmulatedState *card = opaque;
  329. EmulEvent *event, *next;
  330. char dummy;
  331. int len;
  332. do {
  333. len = read(card->pipe[0], &dummy, sizeof(dummy));
  334. } while (len == sizeof(dummy));
  335. qemu_mutex_lock(&card->event_list_mutex);
  336. QSIMPLEQ_FOREACH_SAFE(event, &card->event_list, entry, next) {
  337. DPRINTF(card, 2, "event %s\n", emul_event_to_string(event->p.gen.type));
  338. switch (event->p.gen.type) {
  339. case EMUL_RESPONSE_APDU:
  340. ccid_card_send_apdu_to_guest(&card->base, event->p.data.data,
  341. event->p.data.len);
  342. break;
  343. case EMUL_READER_INSERT:
  344. ccid_card_ccid_attach(&card->base);
  345. break;
  346. case EMUL_READER_REMOVE:
  347. ccid_card_ccid_detach(&card->base);
  348. break;
  349. case EMUL_CARD_INSERT:
  350. assert(event->p.data.len <= MAX_ATR_SIZE);
  351. card->atr_length = event->p.data.len;
  352. memcpy(card->atr, event->p.data.data, card->atr_length);
  353. ccid_card_card_inserted(&card->base);
  354. break;
  355. case EMUL_CARD_REMOVE:
  356. ccid_card_card_removed(&card->base);
  357. break;
  358. case EMUL_ERROR:
  359. ccid_card_card_error(&card->base, event->p.error.code);
  360. break;
  361. default:
  362. DPRINTF(card, 2, "unexpected event\n");
  363. break;
  364. }
  365. g_free(event);
  366. }
  367. QSIMPLEQ_INIT(&card->event_list);
  368. qemu_mutex_unlock(&card->event_list_mutex);
  369. }
  370. static int init_pipe_signaling(EmulatedState *card)
  371. {
  372. if (pipe(card->pipe) < 0) {
  373. DPRINTF(card, 2, "pipe creation failed\n");
  374. return -1;
  375. }
  376. fcntl(card->pipe[0], F_SETFL, O_NONBLOCK);
  377. fcntl(card->pipe[1], F_SETFL, O_NONBLOCK);
  378. fcntl(card->pipe[0], F_SETOWN, getpid());
  379. qemu_set_fd_handler(card->pipe[0], pipe_read, NULL, card);
  380. return 0;
  381. }
  382. #define CERTIFICATES_DEFAULT_DB "/etc/pki/nssdb"
  383. #define CERTIFICATES_ARGS_TEMPLATE\
  384. "db=\"%s\" use_hw=no soft=(,Virtual Reader,CAC,,%s,%s,%s)"
  385. static int wrap_vcard_emul_init(VCardEmulOptions *options)
  386. {
  387. static int called;
  388. static int options_was_null;
  389. if (called) {
  390. if ((options == NULL) != options_was_null) {
  391. printf("%s: warning: running emulated with certificates"
  392. " and emulated side by side is not supported\n",
  393. __func__);
  394. return VCARD_EMUL_FAIL;
  395. }
  396. vcard_emul_replay_insertion_events();
  397. return VCARD_EMUL_OK;
  398. }
  399. options_was_null = (options == NULL);
  400. called = 1;
  401. return vcard_emul_init(options);
  402. }
  403. static int emulated_initialize_vcard_from_certificates(EmulatedState *card)
  404. {
  405. char emul_args[200];
  406. VCardEmulOptions *options = NULL;
  407. snprintf(emul_args, sizeof(emul_args) - 1, CERTIFICATES_ARGS_TEMPLATE,
  408. card->db ? card->db : CERTIFICATES_DEFAULT_DB,
  409. card->cert1, card->cert2, card->cert3);
  410. options = vcard_emul_options(emul_args);
  411. if (options == NULL) {
  412. printf("%s: warning: not using certificates due to"
  413. " initialization error\n", __func__);
  414. }
  415. return wrap_vcard_emul_init(options);
  416. }
  417. typedef struct EnumTable {
  418. const char *name;
  419. uint32_t value;
  420. } EnumTable;
  421. EnumTable backend_enum_table[] = {
  422. {BACKEND_NSS_EMULATED_NAME, BACKEND_NSS_EMULATED},
  423. {BACKEND_CERTIFICATES_NAME, BACKEND_CERTIFICATES},
  424. {NULL, 0},
  425. };
  426. static uint32_t parse_enumeration(char *str,
  427. EnumTable *table, uint32_t not_found_value)
  428. {
  429. uint32_t ret = not_found_value;
  430. while (table->name != NULL) {
  431. if (strcmp(table->name, str) == 0) {
  432. ret = table->value;
  433. break;
  434. }
  435. table++;
  436. }
  437. return ret;
  438. }
  439. static int emulated_initfn(CCIDCardState *base)
  440. {
  441. EmulatedState *card = DO_UPCAST(EmulatedState, base, base);
  442. VCardEmulError ret;
  443. EnumTable *ptable;
  444. QSIMPLEQ_INIT(&card->event_list);
  445. QSIMPLEQ_INIT(&card->guest_apdu_list);
  446. qemu_mutex_init(&card->event_list_mutex);
  447. qemu_mutex_init(&card->vreader_mutex);
  448. qemu_mutex_init(&card->handle_apdu_mutex);
  449. qemu_cond_init(&card->handle_apdu_cond);
  450. card->reader = NULL;
  451. card->quit_apdu_thread = 0;
  452. if (init_pipe_signaling(card) < 0) {
  453. return -1;
  454. }
  455. card->backend = parse_enumeration(card->backend_str, backend_enum_table, 0);
  456. if (card->backend == 0) {
  457. printf("unknown backend, must be one of:\n");
  458. for (ptable = backend_enum_table; ptable->name != NULL; ++ptable) {
  459. printf("%s\n", ptable->name);
  460. }
  461. return -1;
  462. }
  463. /* TODO: a passthru backened that works on local machine. third card type?*/
  464. if (card->backend == BACKEND_CERTIFICATES) {
  465. if (card->cert1 != NULL && card->cert2 != NULL && card->cert3 != NULL) {
  466. ret = emulated_initialize_vcard_from_certificates(card);
  467. } else {
  468. printf("%s: you must provide all three certs for"
  469. " certificates backend\n", EMULATED_DEV_NAME);
  470. return -1;
  471. }
  472. } else {
  473. if (card->backend != BACKEND_NSS_EMULATED) {
  474. printf("%s: bad backend specified. The options are:\n%s (default),"
  475. " %s.\n", EMULATED_DEV_NAME, BACKEND_NSS_EMULATED_NAME,
  476. BACKEND_CERTIFICATES_NAME);
  477. return -1;
  478. }
  479. if (card->cert1 != NULL || card->cert2 != NULL || card->cert3 != NULL) {
  480. printf("%s: unexpected cert parameters to nss emulated backend\n",
  481. EMULATED_DEV_NAME);
  482. return -1;
  483. }
  484. /* default to mirroring the local hardware readers */
  485. ret = wrap_vcard_emul_init(NULL);
  486. }
  487. if (ret != VCARD_EMUL_OK) {
  488. printf("%s: failed to initialize vcard\n", EMULATED_DEV_NAME);
  489. return -1;
  490. }
  491. qemu_thread_create(&card->event_thread_id, event_thread, card,
  492. QEMU_THREAD_JOINABLE);
  493. qemu_thread_create(&card->apdu_thread_id, handle_apdu_thread, card,
  494. QEMU_THREAD_JOINABLE);
  495. return 0;
  496. }
  497. static int emulated_exitfn(CCIDCardState *base)
  498. {
  499. EmulatedState *card = DO_UPCAST(EmulatedState, base, base);
  500. VEvent *vevent = vevent_new(VEVENT_LAST, NULL, NULL);
  501. vevent_queue_vevent(vevent); /* stop vevent thread */
  502. qemu_thread_join(&card->event_thread_id);
  503. card->quit_apdu_thread = 1; /* stop handle_apdu thread */
  504. qemu_cond_signal(&card->handle_apdu_cond);
  505. qemu_thread_join(&card->apdu_thread_id);
  506. /* threads exited, can destroy all condvars/mutexes */
  507. qemu_cond_destroy(&card->handle_apdu_cond);
  508. qemu_mutex_destroy(&card->handle_apdu_mutex);
  509. qemu_mutex_destroy(&card->vreader_mutex);
  510. qemu_mutex_destroy(&card->event_list_mutex);
  511. return 0;
  512. }
  513. static Property emulated_card_properties[] = {
  514. DEFINE_PROP_STRING("backend", EmulatedState, backend_str),
  515. DEFINE_PROP_STRING("cert1", EmulatedState, cert1),
  516. DEFINE_PROP_STRING("cert2", EmulatedState, cert2),
  517. DEFINE_PROP_STRING("cert3", EmulatedState, cert3),
  518. DEFINE_PROP_STRING("db", EmulatedState, db),
  519. DEFINE_PROP_UINT8("debug", EmulatedState, debug, 0),
  520. DEFINE_PROP_END_OF_LIST(),
  521. };
  522. static void emulated_class_initfn(ObjectClass *klass, void *data)
  523. {
  524. DeviceClass *dc = DEVICE_CLASS(klass);
  525. CCIDCardClass *cc = CCID_CARD_CLASS(klass);
  526. cc->initfn = emulated_initfn;
  527. cc->exitfn = emulated_exitfn;
  528. cc->get_atr = emulated_get_atr;
  529. cc->apdu_from_guest = emulated_apdu_from_guest;
  530. dc->desc = "emulated smartcard";
  531. dc->props = emulated_card_properties;
  532. }
  533. static const TypeInfo emulated_card_info = {
  534. .name = EMULATED_DEV_NAME,
  535. .parent = TYPE_CCID_CARD,
  536. .instance_size = sizeof(EmulatedState),
  537. .class_init = emulated_class_initfn,
  538. };
  539. static void ccid_card_emulated_register_types(void)
  540. {
  541. type_register_static(&emulated_card_info);
  542. }
  543. type_init(ccid_card_emulated_register_types)