tpm.c 28 KB

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  1. /*
  2. * Copyright (C) 2004 IBM Corporation
  3. *
  4. * Authors:
  5. * Leendert van Doorn <leendert@watson.ibm.com>
  6. * Dave Safford <safford@watson.ibm.com>
  7. * Reiner Sailer <sailer@watson.ibm.com>
  8. * Kylene Hall <kjhall@us.ibm.com>
  9. *
  10. * Maintained by: <tpmdd-devel@lists.sourceforge.net>
  11. *
  12. * Device driver for TCG/TCPA TPM (trusted platform module).
  13. * Specifications at www.trustedcomputinggroup.org
  14. *
  15. * This program is free software; you can redistribute it and/or
  16. * modify it under the terms of the GNU General Public License as
  17. * published by the Free Software Foundation, version 2 of the
  18. * License.
  19. *
  20. * Note, the TPM chip is not interrupt driven (only polling)
  21. * and can have very long timeouts (minutes!). Hence the unusual
  22. * calls to msleep.
  23. *
  24. */
  25. #include <linux/poll.h>
  26. #include <linux/mutex.h>
  27. #include <linux/spinlock.h>
  28. #include <linux/smp_lock.h>
  29. #include "tpm.h"
  30. enum tpm_const {
  31. TPM_MINOR = 224, /* officially assigned */
  32. TPM_BUFSIZE = 2048,
  33. TPM_NUM_DEVICES = 256,
  34. };
  35. enum tpm_duration {
  36. TPM_SHORT = 0,
  37. TPM_MEDIUM = 1,
  38. TPM_LONG = 2,
  39. TPM_UNDEFINED,
  40. };
  41. #define TPM_MAX_ORDINAL 243
  42. #define TPM_MAX_PROTECTED_ORDINAL 12
  43. #define TPM_PROTECTED_ORDINAL_MASK 0xFF
  44. static LIST_HEAD(tpm_chip_list);
  45. static DEFINE_SPINLOCK(driver_lock);
  46. static DECLARE_BITMAP(dev_mask, TPM_NUM_DEVICES);
  47. /*
  48. * Array with one entry per ordinal defining the maximum amount
  49. * of time the chip could take to return the result. The ordinal
  50. * designation of short, medium or long is defined in a table in
  51. * TCG Specification TPM Main Part 2 TPM Structures Section 17. The
  52. * values of the SHORT, MEDIUM, and LONG durations are retrieved
  53. * from the chip during initialization with a call to tpm_get_timeouts.
  54. */
  55. static const u8 tpm_protected_ordinal_duration[TPM_MAX_PROTECTED_ORDINAL] = {
  56. TPM_UNDEFINED, /* 0 */
  57. TPM_UNDEFINED,
  58. TPM_UNDEFINED,
  59. TPM_UNDEFINED,
  60. TPM_UNDEFINED,
  61. TPM_UNDEFINED, /* 5 */
  62. TPM_UNDEFINED,
  63. TPM_UNDEFINED,
  64. TPM_UNDEFINED,
  65. TPM_UNDEFINED,
  66. TPM_SHORT, /* 10 */
  67. TPM_SHORT,
  68. };
  69. static const u8 tpm_ordinal_duration[TPM_MAX_ORDINAL] = {
  70. TPM_UNDEFINED, /* 0 */
  71. TPM_UNDEFINED,
  72. TPM_UNDEFINED,
  73. TPM_UNDEFINED,
  74. TPM_UNDEFINED,
  75. TPM_UNDEFINED, /* 5 */
  76. TPM_UNDEFINED,
  77. TPM_UNDEFINED,
  78. TPM_UNDEFINED,
  79. TPM_UNDEFINED,
  80. TPM_SHORT, /* 10 */
  81. TPM_SHORT,
  82. TPM_MEDIUM,
  83. TPM_LONG,
  84. TPM_LONG,
  85. TPM_MEDIUM, /* 15 */
  86. TPM_SHORT,
  87. TPM_SHORT,
  88. TPM_MEDIUM,
  89. TPM_LONG,
  90. TPM_SHORT, /* 20 */
  91. TPM_SHORT,
  92. TPM_MEDIUM,
  93. TPM_MEDIUM,
  94. TPM_MEDIUM,
  95. TPM_SHORT, /* 25 */
  96. TPM_SHORT,
  97. TPM_MEDIUM,
  98. TPM_SHORT,
  99. TPM_SHORT,
  100. TPM_MEDIUM, /* 30 */
  101. TPM_LONG,
  102. TPM_MEDIUM,
  103. TPM_SHORT,
  104. TPM_SHORT,
  105. TPM_SHORT, /* 35 */
  106. TPM_MEDIUM,
  107. TPM_MEDIUM,
  108. TPM_UNDEFINED,
  109. TPM_UNDEFINED,
  110. TPM_MEDIUM, /* 40 */
  111. TPM_LONG,
  112. TPM_MEDIUM,
  113. TPM_SHORT,
  114. TPM_SHORT,
  115. TPM_SHORT, /* 45 */
  116. TPM_SHORT,
  117. TPM_SHORT,
  118. TPM_SHORT,
  119. TPM_LONG,
  120. TPM_MEDIUM, /* 50 */
  121. TPM_MEDIUM,
  122. TPM_UNDEFINED,
  123. TPM_UNDEFINED,
  124. TPM_UNDEFINED,
  125. TPM_UNDEFINED, /* 55 */
  126. TPM_UNDEFINED,
  127. TPM_UNDEFINED,
  128. TPM_UNDEFINED,
  129. TPM_UNDEFINED,
  130. TPM_MEDIUM, /* 60 */
  131. TPM_MEDIUM,
  132. TPM_MEDIUM,
  133. TPM_SHORT,
  134. TPM_SHORT,
  135. TPM_MEDIUM, /* 65 */
  136. TPM_UNDEFINED,
  137. TPM_UNDEFINED,
  138. TPM_UNDEFINED,
  139. TPM_UNDEFINED,
  140. TPM_SHORT, /* 70 */
  141. TPM_SHORT,
  142. TPM_UNDEFINED,
  143. TPM_UNDEFINED,
  144. TPM_UNDEFINED,
  145. TPM_UNDEFINED, /* 75 */
  146. TPM_UNDEFINED,
  147. TPM_UNDEFINED,
  148. TPM_UNDEFINED,
  149. TPM_UNDEFINED,
  150. TPM_LONG, /* 80 */
  151. TPM_UNDEFINED,
  152. TPM_MEDIUM,
  153. TPM_LONG,
  154. TPM_SHORT,
  155. TPM_UNDEFINED, /* 85 */
  156. TPM_UNDEFINED,
  157. TPM_UNDEFINED,
  158. TPM_UNDEFINED,
  159. TPM_UNDEFINED,
  160. TPM_SHORT, /* 90 */
  161. TPM_SHORT,
  162. TPM_SHORT,
  163. TPM_SHORT,
  164. TPM_SHORT,
  165. TPM_UNDEFINED, /* 95 */
  166. TPM_UNDEFINED,
  167. TPM_UNDEFINED,
  168. TPM_UNDEFINED,
  169. TPM_UNDEFINED,
  170. TPM_MEDIUM, /* 100 */
  171. TPM_SHORT,
  172. TPM_SHORT,
  173. TPM_UNDEFINED,
  174. TPM_UNDEFINED,
  175. TPM_UNDEFINED, /* 105 */
  176. TPM_UNDEFINED,
  177. TPM_UNDEFINED,
  178. TPM_UNDEFINED,
  179. TPM_UNDEFINED,
  180. TPM_SHORT, /* 110 */
  181. TPM_SHORT,
  182. TPM_SHORT,
  183. TPM_SHORT,
  184. TPM_SHORT,
  185. TPM_SHORT, /* 115 */
  186. TPM_SHORT,
  187. TPM_SHORT,
  188. TPM_UNDEFINED,
  189. TPM_UNDEFINED,
  190. TPM_LONG, /* 120 */
  191. TPM_LONG,
  192. TPM_MEDIUM,
  193. TPM_UNDEFINED,
  194. TPM_SHORT,
  195. TPM_SHORT, /* 125 */
  196. TPM_SHORT,
  197. TPM_LONG,
  198. TPM_SHORT,
  199. TPM_SHORT,
  200. TPM_SHORT, /* 130 */
  201. TPM_MEDIUM,
  202. TPM_UNDEFINED,
  203. TPM_SHORT,
  204. TPM_MEDIUM,
  205. TPM_UNDEFINED, /* 135 */
  206. TPM_UNDEFINED,
  207. TPM_UNDEFINED,
  208. TPM_UNDEFINED,
  209. TPM_UNDEFINED,
  210. TPM_SHORT, /* 140 */
  211. TPM_SHORT,
  212. TPM_UNDEFINED,
  213. TPM_UNDEFINED,
  214. TPM_UNDEFINED,
  215. TPM_UNDEFINED, /* 145 */
  216. TPM_UNDEFINED,
  217. TPM_UNDEFINED,
  218. TPM_UNDEFINED,
  219. TPM_UNDEFINED,
  220. TPM_SHORT, /* 150 */
  221. TPM_MEDIUM,
  222. TPM_MEDIUM,
  223. TPM_SHORT,
  224. TPM_SHORT,
  225. TPM_UNDEFINED, /* 155 */
  226. TPM_UNDEFINED,
  227. TPM_UNDEFINED,
  228. TPM_UNDEFINED,
  229. TPM_UNDEFINED,
  230. TPM_SHORT, /* 160 */
  231. TPM_SHORT,
  232. TPM_SHORT,
  233. TPM_SHORT,
  234. TPM_UNDEFINED,
  235. TPM_UNDEFINED, /* 165 */
  236. TPM_UNDEFINED,
  237. TPM_UNDEFINED,
  238. TPM_UNDEFINED,
  239. TPM_UNDEFINED,
  240. TPM_LONG, /* 170 */
  241. TPM_UNDEFINED,
  242. TPM_UNDEFINED,
  243. TPM_UNDEFINED,
  244. TPM_UNDEFINED,
  245. TPM_UNDEFINED, /* 175 */
  246. TPM_UNDEFINED,
  247. TPM_UNDEFINED,
  248. TPM_UNDEFINED,
  249. TPM_UNDEFINED,
  250. TPM_MEDIUM, /* 180 */
  251. TPM_SHORT,
  252. TPM_MEDIUM,
  253. TPM_MEDIUM,
  254. TPM_MEDIUM,
  255. TPM_MEDIUM, /* 185 */
  256. TPM_SHORT,
  257. TPM_UNDEFINED,
  258. TPM_UNDEFINED,
  259. TPM_UNDEFINED,
  260. TPM_UNDEFINED, /* 190 */
  261. TPM_UNDEFINED,
  262. TPM_UNDEFINED,
  263. TPM_UNDEFINED,
  264. TPM_UNDEFINED,
  265. TPM_UNDEFINED, /* 195 */
  266. TPM_UNDEFINED,
  267. TPM_UNDEFINED,
  268. TPM_UNDEFINED,
  269. TPM_UNDEFINED,
  270. TPM_SHORT, /* 200 */
  271. TPM_UNDEFINED,
  272. TPM_UNDEFINED,
  273. TPM_UNDEFINED,
  274. TPM_SHORT,
  275. TPM_SHORT, /* 205 */
  276. TPM_SHORT,
  277. TPM_SHORT,
  278. TPM_SHORT,
  279. TPM_SHORT,
  280. TPM_MEDIUM, /* 210 */
  281. TPM_UNDEFINED,
  282. TPM_MEDIUM,
  283. TPM_MEDIUM,
  284. TPM_MEDIUM,
  285. TPM_UNDEFINED, /* 215 */
  286. TPM_MEDIUM,
  287. TPM_UNDEFINED,
  288. TPM_UNDEFINED,
  289. TPM_SHORT,
  290. TPM_SHORT, /* 220 */
  291. TPM_SHORT,
  292. TPM_SHORT,
  293. TPM_SHORT,
  294. TPM_SHORT,
  295. TPM_UNDEFINED, /* 225 */
  296. TPM_UNDEFINED,
  297. TPM_UNDEFINED,
  298. TPM_UNDEFINED,
  299. TPM_UNDEFINED,
  300. TPM_SHORT, /* 230 */
  301. TPM_LONG,
  302. TPM_MEDIUM,
  303. TPM_UNDEFINED,
  304. TPM_UNDEFINED,
  305. TPM_UNDEFINED, /* 235 */
  306. TPM_UNDEFINED,
  307. TPM_UNDEFINED,
  308. TPM_UNDEFINED,
  309. TPM_UNDEFINED,
  310. TPM_SHORT, /* 240 */
  311. TPM_UNDEFINED,
  312. TPM_MEDIUM,
  313. };
  314. static void user_reader_timeout(unsigned long ptr)
  315. {
  316. struct tpm_chip *chip = (struct tpm_chip *) ptr;
  317. schedule_work(&chip->work);
  318. }
  319. static void timeout_work(struct work_struct *work)
  320. {
  321. struct tpm_chip *chip = container_of(work, struct tpm_chip, work);
  322. mutex_lock(&chip->buffer_mutex);
  323. atomic_set(&chip->data_pending, 0);
  324. memset(chip->data_buffer, 0, TPM_BUFSIZE);
  325. mutex_unlock(&chip->buffer_mutex);
  326. }
  327. /*
  328. * Returns max number of jiffies to wait
  329. */
  330. unsigned long tpm_calc_ordinal_duration(struct tpm_chip *chip,
  331. u32 ordinal)
  332. {
  333. int duration_idx = TPM_UNDEFINED;
  334. int duration = 0;
  335. if (ordinal < TPM_MAX_ORDINAL)
  336. duration_idx = tpm_ordinal_duration[ordinal];
  337. else if ((ordinal & TPM_PROTECTED_ORDINAL_MASK) <
  338. TPM_MAX_PROTECTED_ORDINAL)
  339. duration_idx =
  340. tpm_protected_ordinal_duration[ordinal &
  341. TPM_PROTECTED_ORDINAL_MASK];
  342. if (duration_idx != TPM_UNDEFINED)
  343. duration = chip->vendor.duration[duration_idx];
  344. if (duration <= 0)
  345. return 2 * 60 * HZ;
  346. else
  347. return duration;
  348. }
  349. EXPORT_SYMBOL_GPL(tpm_calc_ordinal_duration);
  350. /*
  351. * Internal kernel interface to transmit TPM commands
  352. */
  353. static ssize_t tpm_transmit(struct tpm_chip *chip, const char *buf,
  354. size_t bufsiz)
  355. {
  356. ssize_t rc;
  357. u32 count, ordinal;
  358. unsigned long stop;
  359. count = be32_to_cpu(*((__be32 *) (buf + 2)));
  360. ordinal = be32_to_cpu(*((__be32 *) (buf + 6)));
  361. if (count == 0)
  362. return -ENODATA;
  363. if (count > bufsiz) {
  364. dev_err(chip->dev,
  365. "invalid count value %x %zx \n", count, bufsiz);
  366. return -E2BIG;
  367. }
  368. mutex_lock(&chip->tpm_mutex);
  369. if ((rc = chip->vendor.send(chip, (u8 *) buf, count)) < 0) {
  370. dev_err(chip->dev,
  371. "tpm_transmit: tpm_send: error %zd\n", rc);
  372. goto out;
  373. }
  374. if (chip->vendor.irq)
  375. goto out_recv;
  376. stop = jiffies + tpm_calc_ordinal_duration(chip, ordinal);
  377. do {
  378. u8 status = chip->vendor.status(chip);
  379. if ((status & chip->vendor.req_complete_mask) ==
  380. chip->vendor.req_complete_val)
  381. goto out_recv;
  382. if ((status == chip->vendor.req_canceled)) {
  383. dev_err(chip->dev, "Operation Canceled\n");
  384. rc = -ECANCELED;
  385. goto out;
  386. }
  387. msleep(TPM_TIMEOUT); /* CHECK */
  388. rmb();
  389. } while (time_before(jiffies, stop));
  390. chip->vendor.cancel(chip);
  391. dev_err(chip->dev, "Operation Timed out\n");
  392. rc = -ETIME;
  393. goto out;
  394. out_recv:
  395. rc = chip->vendor.recv(chip, (u8 *) buf, bufsiz);
  396. if (rc < 0)
  397. dev_err(chip->dev,
  398. "tpm_transmit: tpm_recv: error %zd\n", rc);
  399. out:
  400. mutex_unlock(&chip->tpm_mutex);
  401. return rc;
  402. }
  403. #define TPM_DIGEST_SIZE 20
  404. #define TPM_ERROR_SIZE 10
  405. #define TPM_RET_CODE_IDX 6
  406. #define TPM_GET_CAP_RET_SIZE_IDX 10
  407. #define TPM_GET_CAP_RET_UINT32_1_IDX 14
  408. #define TPM_GET_CAP_RET_UINT32_2_IDX 18
  409. #define TPM_GET_CAP_RET_UINT32_3_IDX 22
  410. #define TPM_GET_CAP_RET_UINT32_4_IDX 26
  411. #define TPM_GET_CAP_PERM_DISABLE_IDX 16
  412. #define TPM_GET_CAP_PERM_INACTIVE_IDX 18
  413. #define TPM_GET_CAP_RET_BOOL_1_IDX 14
  414. #define TPM_GET_CAP_TEMP_INACTIVE_IDX 16
  415. #define TPM_CAP_IDX 13
  416. #define TPM_CAP_SUBCAP_IDX 21
  417. enum tpm_capabilities {
  418. TPM_CAP_FLAG = 4,
  419. TPM_CAP_PROP = 5,
  420. };
  421. enum tpm_sub_capabilities {
  422. TPM_CAP_PROP_PCR = 0x1,
  423. TPM_CAP_PROP_MANUFACTURER = 0x3,
  424. TPM_CAP_FLAG_PERM = 0x8,
  425. TPM_CAP_FLAG_VOL = 0x9,
  426. TPM_CAP_PROP_OWNER = 0x11,
  427. TPM_CAP_PROP_TIS_TIMEOUT = 0x15,
  428. TPM_CAP_PROP_TIS_DURATION = 0x20,
  429. };
  430. /*
  431. * This is a semi generic GetCapability command for use
  432. * with the capability type TPM_CAP_PROP or TPM_CAP_FLAG
  433. * and their associated sub_capabilities.
  434. */
  435. static const u8 tpm_cap[] = {
  436. 0, 193, /* TPM_TAG_RQU_COMMAND */
  437. 0, 0, 0, 22, /* length */
  438. 0, 0, 0, 101, /* TPM_ORD_GetCapability */
  439. 0, 0, 0, 0, /* TPM_CAP_<TYPE> */
  440. 0, 0, 0, 4, /* TPM_CAP_SUB_<TYPE> size */
  441. 0, 0, 1, 0 /* TPM_CAP_SUB_<TYPE> */
  442. };
  443. static ssize_t transmit_cmd(struct tpm_chip *chip, u8 *data, int len,
  444. char *desc)
  445. {
  446. int err;
  447. len = tpm_transmit(chip, data, len);
  448. if (len < 0)
  449. return len;
  450. if (len == TPM_ERROR_SIZE) {
  451. err = be32_to_cpu(*((__be32 *) (data + TPM_RET_CODE_IDX)));
  452. dev_dbg(chip->dev, "A TPM error (%d) occurred %s\n", err, desc);
  453. return err;
  454. }
  455. return 0;
  456. }
  457. void tpm_gen_interrupt(struct tpm_chip *chip)
  458. {
  459. u8 data[max_t(int, ARRAY_SIZE(tpm_cap), 30)];
  460. ssize_t rc;
  461. memcpy(data, tpm_cap, sizeof(tpm_cap));
  462. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  463. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_TIS_TIMEOUT;
  464. rc = transmit_cmd(chip, data, sizeof(data),
  465. "attempting to determine the timeouts");
  466. }
  467. EXPORT_SYMBOL_GPL(tpm_gen_interrupt);
  468. void tpm_get_timeouts(struct tpm_chip *chip)
  469. {
  470. u8 data[max_t(int, ARRAY_SIZE(tpm_cap), 30)];
  471. ssize_t rc;
  472. u32 timeout;
  473. memcpy(data, tpm_cap, sizeof(tpm_cap));
  474. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  475. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_TIS_TIMEOUT;
  476. rc = transmit_cmd(chip, data, sizeof(data),
  477. "attempting to determine the timeouts");
  478. if (rc)
  479. goto duration;
  480. if (be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_SIZE_IDX)))
  481. != 4 * sizeof(u32))
  482. goto duration;
  483. /* Don't overwrite default if value is 0 */
  484. timeout =
  485. be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_UINT32_1_IDX)));
  486. if (timeout)
  487. chip->vendor.timeout_a = msecs_to_jiffies(timeout);
  488. timeout =
  489. be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_UINT32_2_IDX)));
  490. if (timeout)
  491. chip->vendor.timeout_b = msecs_to_jiffies(timeout);
  492. timeout =
  493. be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_UINT32_3_IDX)));
  494. if (timeout)
  495. chip->vendor.timeout_c = msecs_to_jiffies(timeout);
  496. timeout =
  497. be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_UINT32_4_IDX)));
  498. if (timeout)
  499. chip->vendor.timeout_d = msecs_to_jiffies(timeout);
  500. duration:
  501. memcpy(data, tpm_cap, sizeof(tpm_cap));
  502. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  503. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_TIS_DURATION;
  504. rc = transmit_cmd(chip, data, sizeof(data),
  505. "attempting to determine the durations");
  506. if (rc)
  507. return;
  508. if (be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_SIZE_IDX)))
  509. != 3 * sizeof(u32))
  510. return;
  511. chip->vendor.duration[TPM_SHORT] =
  512. msecs_to_jiffies(be32_to_cpu
  513. (*((__be32 *) (data +
  514. TPM_GET_CAP_RET_UINT32_1_IDX))));
  515. chip->vendor.duration[TPM_MEDIUM] =
  516. msecs_to_jiffies(be32_to_cpu
  517. (*((__be32 *) (data +
  518. TPM_GET_CAP_RET_UINT32_2_IDX))));
  519. chip->vendor.duration[TPM_LONG] =
  520. msecs_to_jiffies(be32_to_cpu
  521. (*((__be32 *) (data +
  522. TPM_GET_CAP_RET_UINT32_3_IDX))));
  523. }
  524. EXPORT_SYMBOL_GPL(tpm_get_timeouts);
  525. void tpm_continue_selftest(struct tpm_chip *chip)
  526. {
  527. u8 data[] = {
  528. 0, 193, /* TPM_TAG_RQU_COMMAND */
  529. 0, 0, 0, 10, /* length */
  530. 0, 0, 0, 83, /* TPM_ORD_GetCapability */
  531. };
  532. tpm_transmit(chip, data, sizeof(data));
  533. }
  534. EXPORT_SYMBOL_GPL(tpm_continue_selftest);
  535. #define TPM_INTERNAL_RESULT_SIZE 200
  536. ssize_t tpm_show_enabled(struct device * dev, struct device_attribute * attr,
  537. char *buf)
  538. {
  539. u8 *data;
  540. ssize_t rc;
  541. struct tpm_chip *chip = dev_get_drvdata(dev);
  542. if (chip == NULL)
  543. return -ENODEV;
  544. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  545. if (!data)
  546. return -ENOMEM;
  547. memcpy(data, tpm_cap, sizeof(tpm_cap));
  548. data[TPM_CAP_IDX] = TPM_CAP_FLAG;
  549. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_FLAG_PERM;
  550. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  551. "attemtping to determine the permanent enabled state");
  552. if (rc) {
  553. kfree(data);
  554. return 0;
  555. }
  556. rc = sprintf(buf, "%d\n", !data[TPM_GET_CAP_PERM_DISABLE_IDX]);
  557. kfree(data);
  558. return rc;
  559. }
  560. EXPORT_SYMBOL_GPL(tpm_show_enabled);
  561. ssize_t tpm_show_active(struct device * dev, struct device_attribute * attr,
  562. char *buf)
  563. {
  564. u8 *data;
  565. ssize_t rc;
  566. struct tpm_chip *chip = dev_get_drvdata(dev);
  567. if (chip == NULL)
  568. return -ENODEV;
  569. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  570. if (!data)
  571. return -ENOMEM;
  572. memcpy(data, tpm_cap, sizeof(tpm_cap));
  573. data[TPM_CAP_IDX] = TPM_CAP_FLAG;
  574. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_FLAG_PERM;
  575. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  576. "attemtping to determine the permanent active state");
  577. if (rc) {
  578. kfree(data);
  579. return 0;
  580. }
  581. rc = sprintf(buf, "%d\n", !data[TPM_GET_CAP_PERM_INACTIVE_IDX]);
  582. kfree(data);
  583. return rc;
  584. }
  585. EXPORT_SYMBOL_GPL(tpm_show_active);
  586. ssize_t tpm_show_owned(struct device * dev, struct device_attribute * attr,
  587. char *buf)
  588. {
  589. u8 *data;
  590. ssize_t rc;
  591. struct tpm_chip *chip = dev_get_drvdata(dev);
  592. if (chip == NULL)
  593. return -ENODEV;
  594. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  595. if (!data)
  596. return -ENOMEM;
  597. memcpy(data, tpm_cap, sizeof(tpm_cap));
  598. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  599. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_OWNER;
  600. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  601. "attempting to determine the owner state");
  602. if (rc) {
  603. kfree(data);
  604. return 0;
  605. }
  606. rc = sprintf(buf, "%d\n", data[TPM_GET_CAP_RET_BOOL_1_IDX]);
  607. kfree(data);
  608. return rc;
  609. }
  610. EXPORT_SYMBOL_GPL(tpm_show_owned);
  611. ssize_t tpm_show_temp_deactivated(struct device * dev,
  612. struct device_attribute * attr, char *buf)
  613. {
  614. u8 *data;
  615. ssize_t rc;
  616. struct tpm_chip *chip = dev_get_drvdata(dev);
  617. if (chip == NULL)
  618. return -ENODEV;
  619. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  620. if (!data)
  621. return -ENOMEM;
  622. memcpy(data, tpm_cap, sizeof(tpm_cap));
  623. data[TPM_CAP_IDX] = TPM_CAP_FLAG;
  624. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_FLAG_VOL;
  625. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  626. "attempting to determine the temporary state");
  627. if (rc) {
  628. kfree(data);
  629. return 0;
  630. }
  631. rc = sprintf(buf, "%d\n", data[TPM_GET_CAP_TEMP_INACTIVE_IDX]);
  632. kfree(data);
  633. return rc;
  634. }
  635. EXPORT_SYMBOL_GPL(tpm_show_temp_deactivated);
  636. static const u8 pcrread[] = {
  637. 0, 193, /* TPM_TAG_RQU_COMMAND */
  638. 0, 0, 0, 14, /* length */
  639. 0, 0, 0, 21, /* TPM_ORD_PcrRead */
  640. 0, 0, 0, 0 /* PCR index */
  641. };
  642. ssize_t tpm_show_pcrs(struct device *dev, struct device_attribute *attr,
  643. char *buf)
  644. {
  645. u8 *data;
  646. ssize_t rc;
  647. int i, j, num_pcrs;
  648. __be32 index;
  649. char *str = buf;
  650. struct tpm_chip *chip = dev_get_drvdata(dev);
  651. if (chip == NULL)
  652. return -ENODEV;
  653. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  654. if (!data)
  655. return -ENOMEM;
  656. memcpy(data, tpm_cap, sizeof(tpm_cap));
  657. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  658. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_PCR;
  659. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  660. "attempting to determine the number of PCRS");
  661. if (rc) {
  662. kfree(data);
  663. return 0;
  664. }
  665. num_pcrs = be32_to_cpu(*((__be32 *) (data + 14)));
  666. for (i = 0; i < num_pcrs; i++) {
  667. memcpy(data, pcrread, sizeof(pcrread));
  668. index = cpu_to_be32(i);
  669. memcpy(data + 10, &index, 4);
  670. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  671. "attempting to read a PCR");
  672. if (rc)
  673. goto out;
  674. str += sprintf(str, "PCR-%02d: ", i);
  675. for (j = 0; j < TPM_DIGEST_SIZE; j++)
  676. str += sprintf(str, "%02X ", *(data + 10 + j));
  677. str += sprintf(str, "\n");
  678. }
  679. out:
  680. kfree(data);
  681. return str - buf;
  682. }
  683. EXPORT_SYMBOL_GPL(tpm_show_pcrs);
  684. #define READ_PUBEK_RESULT_SIZE 314
  685. static const u8 readpubek[] = {
  686. 0, 193, /* TPM_TAG_RQU_COMMAND */
  687. 0, 0, 0, 30, /* length */
  688. 0, 0, 0, 124, /* TPM_ORD_ReadPubek */
  689. };
  690. ssize_t tpm_show_pubek(struct device *dev, struct device_attribute *attr,
  691. char *buf)
  692. {
  693. u8 *data;
  694. ssize_t err;
  695. int i, rc;
  696. char *str = buf;
  697. struct tpm_chip *chip = dev_get_drvdata(dev);
  698. if (chip == NULL)
  699. return -ENODEV;
  700. data = kzalloc(READ_PUBEK_RESULT_SIZE, GFP_KERNEL);
  701. if (!data)
  702. return -ENOMEM;
  703. memcpy(data, readpubek, sizeof(readpubek));
  704. err = transmit_cmd(chip, data, READ_PUBEK_RESULT_SIZE,
  705. "attempting to read the PUBEK");
  706. if (err)
  707. goto out;
  708. /*
  709. ignore header 10 bytes
  710. algorithm 32 bits (1 == RSA )
  711. encscheme 16 bits
  712. sigscheme 16 bits
  713. parameters (RSA 12->bytes: keybit, #primes, expbit)
  714. keylenbytes 32 bits
  715. 256 byte modulus
  716. ignore checksum 20 bytes
  717. */
  718. str +=
  719. sprintf(str,
  720. "Algorithm: %02X %02X %02X %02X\nEncscheme: %02X %02X\n"
  721. "Sigscheme: %02X %02X\nParameters: %02X %02X %02X %02X"
  722. " %02X %02X %02X %02X %02X %02X %02X %02X\n"
  723. "Modulus length: %d\nModulus: \n",
  724. data[10], data[11], data[12], data[13], data[14],
  725. data[15], data[16], data[17], data[22], data[23],
  726. data[24], data[25], data[26], data[27], data[28],
  727. data[29], data[30], data[31], data[32], data[33],
  728. be32_to_cpu(*((__be32 *) (data + 34))));
  729. for (i = 0; i < 256; i++) {
  730. str += sprintf(str, "%02X ", data[i + 38]);
  731. if ((i + 1) % 16 == 0)
  732. str += sprintf(str, "\n");
  733. }
  734. out:
  735. rc = str - buf;
  736. kfree(data);
  737. return rc;
  738. }
  739. EXPORT_SYMBOL_GPL(tpm_show_pubek);
  740. #define CAP_VERSION_1_1 6
  741. #define CAP_VERSION_1_2 0x1A
  742. #define CAP_VERSION_IDX 13
  743. static const u8 cap_version[] = {
  744. 0, 193, /* TPM_TAG_RQU_COMMAND */
  745. 0, 0, 0, 18, /* length */
  746. 0, 0, 0, 101, /* TPM_ORD_GetCapability */
  747. 0, 0, 0, 0,
  748. 0, 0, 0, 0
  749. };
  750. ssize_t tpm_show_caps(struct device *dev, struct device_attribute *attr,
  751. char *buf)
  752. {
  753. u8 *data;
  754. ssize_t rc;
  755. char *str = buf;
  756. struct tpm_chip *chip = dev_get_drvdata(dev);
  757. if (chip == NULL)
  758. return -ENODEV;
  759. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  760. if (!data)
  761. return -ENOMEM;
  762. memcpy(data, tpm_cap, sizeof(tpm_cap));
  763. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  764. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_MANUFACTURER;
  765. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  766. "attempting to determine the manufacturer");
  767. if (rc) {
  768. kfree(data);
  769. return 0;
  770. }
  771. str += sprintf(str, "Manufacturer: 0x%x\n",
  772. be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_UINT32_1_IDX))));
  773. memcpy(data, cap_version, sizeof(cap_version));
  774. data[CAP_VERSION_IDX] = CAP_VERSION_1_1;
  775. rc = transmit_cmd(chip, data, TPM_INTERNAL_RESULT_SIZE,
  776. "attempting to determine the 1.1 version");
  777. if (rc)
  778. goto out;
  779. str += sprintf(str,
  780. "TCG version: %d.%d\nFirmware version: %d.%d\n",
  781. (int) data[14], (int) data[15], (int) data[16],
  782. (int) data[17]);
  783. out:
  784. kfree(data);
  785. return str - buf;
  786. }
  787. EXPORT_SYMBOL_GPL(tpm_show_caps);
  788. ssize_t tpm_show_caps_1_2(struct device * dev,
  789. struct device_attribute * attr, char *buf)
  790. {
  791. u8 *data;
  792. ssize_t len;
  793. char *str = buf;
  794. struct tpm_chip *chip = dev_get_drvdata(dev);
  795. if (chip == NULL)
  796. return -ENODEV;
  797. data = kzalloc(TPM_INTERNAL_RESULT_SIZE, GFP_KERNEL);
  798. if (!data)
  799. return -ENOMEM;
  800. memcpy(data, tpm_cap, sizeof(tpm_cap));
  801. data[TPM_CAP_IDX] = TPM_CAP_PROP;
  802. data[TPM_CAP_SUBCAP_IDX] = TPM_CAP_PROP_MANUFACTURER;
  803. len = tpm_transmit(chip, data, TPM_INTERNAL_RESULT_SIZE);
  804. if (len <= TPM_ERROR_SIZE) {
  805. dev_dbg(chip->dev, "A TPM error (%d) occurred "
  806. "attempting to determine the manufacturer\n",
  807. be32_to_cpu(*((__be32 *) (data + TPM_RET_CODE_IDX))));
  808. kfree(data);
  809. return 0;
  810. }
  811. str += sprintf(str, "Manufacturer: 0x%x\n",
  812. be32_to_cpu(*((__be32 *) (data + TPM_GET_CAP_RET_UINT32_1_IDX))));
  813. memcpy(data, cap_version, sizeof(cap_version));
  814. data[CAP_VERSION_IDX] = CAP_VERSION_1_2;
  815. len = tpm_transmit(chip, data, TPM_INTERNAL_RESULT_SIZE);
  816. if (len <= TPM_ERROR_SIZE) {
  817. dev_err(chip->dev, "A TPM error (%d) occurred "
  818. "attempting to determine the 1.2 version\n",
  819. be32_to_cpu(*((__be32 *) (data + TPM_RET_CODE_IDX))));
  820. goto out;
  821. }
  822. str += sprintf(str,
  823. "TCG version: %d.%d\nFirmware version: %d.%d\n",
  824. (int) data[16], (int) data[17], (int) data[18],
  825. (int) data[19]);
  826. out:
  827. kfree(data);
  828. return str - buf;
  829. }
  830. EXPORT_SYMBOL_GPL(tpm_show_caps_1_2);
  831. ssize_t tpm_store_cancel(struct device *dev, struct device_attribute *attr,
  832. const char *buf, size_t count)
  833. {
  834. struct tpm_chip *chip = dev_get_drvdata(dev);
  835. if (chip == NULL)
  836. return 0;
  837. chip->vendor.cancel(chip);
  838. return count;
  839. }
  840. EXPORT_SYMBOL_GPL(tpm_store_cancel);
  841. /*
  842. * Device file system interface to the TPM
  843. *
  844. * It's assured that the chip will be opened just once,
  845. * by the check of is_open variable, which is protected
  846. * by driver_lock.
  847. */
  848. int tpm_open(struct inode *inode, struct file *file)
  849. {
  850. int minor = iminor(inode);
  851. struct tpm_chip *chip = NULL, *pos;
  852. rcu_read_lock();
  853. list_for_each_entry_rcu(pos, &tpm_chip_list, list) {
  854. if (pos->vendor.miscdev.minor == minor) {
  855. chip = pos;
  856. get_device(chip->dev);
  857. break;
  858. }
  859. }
  860. rcu_read_unlock();
  861. if (!chip)
  862. return -ENODEV;
  863. if (test_and_set_bit(0, &chip->is_open)) {
  864. dev_dbg(chip->dev, "Another process owns this TPM\n");
  865. put_device(chip->dev);
  866. return -EBUSY;
  867. }
  868. chip->data_buffer = kmalloc(TPM_BUFSIZE * sizeof(u8), GFP_KERNEL);
  869. if (chip->data_buffer == NULL) {
  870. clear_bit(0, &chip->is_open);
  871. put_device(chip->dev);
  872. return -ENOMEM;
  873. }
  874. atomic_set(&chip->data_pending, 0);
  875. file->private_data = chip;
  876. return 0;
  877. }
  878. EXPORT_SYMBOL_GPL(tpm_open);
  879. /*
  880. * Called on file close
  881. */
  882. int tpm_release(struct inode *inode, struct file *file)
  883. {
  884. struct tpm_chip *chip = file->private_data;
  885. flush_scheduled_work();
  886. file->private_data = NULL;
  887. del_singleshot_timer_sync(&chip->user_read_timer);
  888. atomic_set(&chip->data_pending, 0);
  889. kfree(chip->data_buffer);
  890. clear_bit(0, &chip->is_open);
  891. put_device(chip->dev);
  892. return 0;
  893. }
  894. EXPORT_SYMBOL_GPL(tpm_release);
  895. ssize_t tpm_write(struct file *file, const char __user *buf,
  896. size_t size, loff_t *off)
  897. {
  898. struct tpm_chip *chip = file->private_data;
  899. size_t in_size = size, out_size;
  900. /* cannot perform a write until the read has cleared
  901. either via tpm_read or a user_read_timer timeout */
  902. while (atomic_read(&chip->data_pending) != 0)
  903. msleep(TPM_TIMEOUT);
  904. mutex_lock(&chip->buffer_mutex);
  905. if (in_size > TPM_BUFSIZE)
  906. in_size = TPM_BUFSIZE;
  907. if (copy_from_user
  908. (chip->data_buffer, (void __user *) buf, in_size)) {
  909. mutex_unlock(&chip->buffer_mutex);
  910. return -EFAULT;
  911. }
  912. /* atomic tpm command send and result receive */
  913. out_size = tpm_transmit(chip, chip->data_buffer, TPM_BUFSIZE);
  914. atomic_set(&chip->data_pending, out_size);
  915. mutex_unlock(&chip->buffer_mutex);
  916. /* Set a timeout by which the reader must come claim the result */
  917. mod_timer(&chip->user_read_timer, jiffies + (60 * HZ));
  918. return in_size;
  919. }
  920. EXPORT_SYMBOL_GPL(tpm_write);
  921. ssize_t tpm_read(struct file *file, char __user *buf,
  922. size_t size, loff_t *off)
  923. {
  924. struct tpm_chip *chip = file->private_data;
  925. ssize_t ret_size;
  926. del_singleshot_timer_sync(&chip->user_read_timer);
  927. flush_scheduled_work();
  928. ret_size = atomic_read(&chip->data_pending);
  929. atomic_set(&chip->data_pending, 0);
  930. if (ret_size > 0) { /* relay data */
  931. if (size < ret_size)
  932. ret_size = size;
  933. mutex_lock(&chip->buffer_mutex);
  934. if (copy_to_user(buf, chip->data_buffer, ret_size))
  935. ret_size = -EFAULT;
  936. mutex_unlock(&chip->buffer_mutex);
  937. }
  938. return ret_size;
  939. }
  940. EXPORT_SYMBOL_GPL(tpm_read);
  941. void tpm_remove_hardware(struct device *dev)
  942. {
  943. struct tpm_chip *chip = dev_get_drvdata(dev);
  944. if (chip == NULL) {
  945. dev_err(dev, "No device data found\n");
  946. return;
  947. }
  948. spin_lock(&driver_lock);
  949. list_del_rcu(&chip->list);
  950. spin_unlock(&driver_lock);
  951. synchronize_rcu();
  952. misc_deregister(&chip->vendor.miscdev);
  953. sysfs_remove_group(&dev->kobj, chip->vendor.attr_group);
  954. tpm_bios_log_teardown(chip->bios_dir);
  955. /* write it this way to be explicit (chip->dev == dev) */
  956. put_device(chip->dev);
  957. }
  958. EXPORT_SYMBOL_GPL(tpm_remove_hardware);
  959. /*
  960. * We are about to suspend. Save the TPM state
  961. * so that it can be restored.
  962. */
  963. int tpm_pm_suspend(struct device *dev, pm_message_t pm_state)
  964. {
  965. struct tpm_chip *chip = dev_get_drvdata(dev);
  966. u8 savestate[] = {
  967. 0, 193, /* TPM_TAG_RQU_COMMAND */
  968. 0, 0, 0, 10, /* blob length (in bytes) */
  969. 0, 0, 0, 152 /* TPM_ORD_SaveState */
  970. };
  971. if (chip == NULL)
  972. return -ENODEV;
  973. tpm_transmit(chip, savestate, sizeof(savestate));
  974. return 0;
  975. }
  976. EXPORT_SYMBOL_GPL(tpm_pm_suspend);
  977. /*
  978. * Resume from a power safe. The BIOS already restored
  979. * the TPM state.
  980. */
  981. int tpm_pm_resume(struct device *dev)
  982. {
  983. struct tpm_chip *chip = dev_get_drvdata(dev);
  984. if (chip == NULL)
  985. return -ENODEV;
  986. return 0;
  987. }
  988. EXPORT_SYMBOL_GPL(tpm_pm_resume);
  989. /*
  990. * Once all references to platform device are down to 0,
  991. * release all allocated structures.
  992. * In case vendor provided release function, call it too.
  993. */
  994. static void tpm_dev_release(struct device *dev)
  995. {
  996. struct tpm_chip *chip = dev_get_drvdata(dev);
  997. if (chip->vendor.release)
  998. chip->vendor.release(dev);
  999. chip->release(dev);
  1000. clear_bit(chip->dev_num, dev_mask);
  1001. kfree(chip->vendor.miscdev.name);
  1002. kfree(chip);
  1003. }
  1004. /*
  1005. * Called from tpm_<specific>.c probe function only for devices
  1006. * the driver has determined it should claim. Prior to calling
  1007. * this function the specific probe function has called pci_enable_device
  1008. * upon errant exit from this function specific probe function should call
  1009. * pci_disable_device
  1010. */
  1011. struct tpm_chip *tpm_register_hardware(struct device *dev,
  1012. const struct tpm_vendor_specific *entry)
  1013. {
  1014. #define DEVNAME_SIZE 7
  1015. char *devname;
  1016. struct tpm_chip *chip;
  1017. /* Driver specific per-device data */
  1018. chip = kzalloc(sizeof(*chip), GFP_KERNEL);
  1019. devname = kmalloc(DEVNAME_SIZE, GFP_KERNEL);
  1020. if (chip == NULL || devname == NULL) {
  1021. kfree(chip);
  1022. kfree(devname);
  1023. return NULL;
  1024. }
  1025. mutex_init(&chip->buffer_mutex);
  1026. mutex_init(&chip->tpm_mutex);
  1027. INIT_LIST_HEAD(&chip->list);
  1028. INIT_WORK(&chip->work, timeout_work);
  1029. setup_timer(&chip->user_read_timer, user_reader_timeout,
  1030. (unsigned long)chip);
  1031. memcpy(&chip->vendor, entry, sizeof(struct tpm_vendor_specific));
  1032. chip->dev_num = find_first_zero_bit(dev_mask, TPM_NUM_DEVICES);
  1033. if (chip->dev_num >= TPM_NUM_DEVICES) {
  1034. dev_err(dev, "No available tpm device numbers\n");
  1035. kfree(chip);
  1036. return NULL;
  1037. } else if (chip->dev_num == 0)
  1038. chip->vendor.miscdev.minor = TPM_MINOR;
  1039. else
  1040. chip->vendor.miscdev.minor = MISC_DYNAMIC_MINOR;
  1041. set_bit(chip->dev_num, dev_mask);
  1042. scnprintf(devname, DEVNAME_SIZE, "%s%d", "tpm", chip->dev_num);
  1043. chip->vendor.miscdev.name = devname;
  1044. chip->vendor.miscdev.parent = dev;
  1045. chip->dev = get_device(dev);
  1046. chip->release = dev->release;
  1047. dev->release = tpm_dev_release;
  1048. dev_set_drvdata(dev, chip);
  1049. if (misc_register(&chip->vendor.miscdev)) {
  1050. dev_err(chip->dev,
  1051. "unable to misc_register %s, minor %d\n",
  1052. chip->vendor.miscdev.name,
  1053. chip->vendor.miscdev.minor);
  1054. put_device(chip->dev);
  1055. return NULL;
  1056. }
  1057. if (sysfs_create_group(&dev->kobj, chip->vendor.attr_group)) {
  1058. misc_deregister(&chip->vendor.miscdev);
  1059. put_device(chip->dev);
  1060. return NULL;
  1061. }
  1062. chip->bios_dir = tpm_bios_log_setup(devname);
  1063. /* Make chip available */
  1064. spin_lock(&driver_lock);
  1065. list_add_rcu(&chip->list, &tpm_chip_list);
  1066. spin_unlock(&driver_lock);
  1067. return chip;
  1068. }
  1069. EXPORT_SYMBOL_GPL(tpm_register_hardware);
  1070. MODULE_AUTHOR("Leendert van Doorn (leendert@watson.ibm.com)");
  1071. MODULE_DESCRIPTION("TPM Driver");
  1072. MODULE_VERSION("2.0");
  1073. MODULE_LICENSE("GPL");