tee_core.c 22 KB

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  1. /*
  2. * Copyright (c) 2015-2016, Linaro Limited
  3. *
  4. * This software is licensed under the terms of the GNU General Public
  5. * License version 2, as published by the Free Software Foundation, and
  6. * may be copied, distributed, and modified under those terms.
  7. *
  8. * This program is distributed in the hope that it will be useful,
  9. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. * GNU General Public License for more details.
  12. *
  13. */
  14. #define pr_fmt(fmt) "%s: " fmt, __func__
  15. #include <linux/cdev.h>
  16. #include <linux/device.h>
  17. #include <linux/fs.h>
  18. #include <linux/idr.h>
  19. #include <linux/module.h>
  20. #include <linux/slab.h>
  21. #include <linux/tee_drv.h>
  22. #include <linux/uaccess.h>
  23. #include "tee_private.h"
  24. #define TEE_NUM_DEVICES 32
  25. #define TEE_IOCTL_PARAM_SIZE(x) (sizeof(struct tee_param) * (x))
  26. /*
  27. * Unprivileged devices in the lower half range and privileged devices in
  28. * the upper half range.
  29. */
  30. static DECLARE_BITMAP(dev_mask, TEE_NUM_DEVICES);
  31. static DEFINE_SPINLOCK(driver_lock);
  32. static struct class *tee_class;
  33. static dev_t tee_devt;
  34. static int tee_open(struct inode *inode, struct file *filp)
  35. {
  36. int rc;
  37. struct tee_device *teedev;
  38. struct tee_context *ctx;
  39. teedev = container_of(inode->i_cdev, struct tee_device, cdev);
  40. if (!tee_device_get(teedev))
  41. return -EINVAL;
  42. ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
  43. if (!ctx) {
  44. rc = -ENOMEM;
  45. goto err;
  46. }
  47. ctx->teedev = teedev;
  48. INIT_LIST_HEAD(&ctx->list_shm);
  49. filp->private_data = ctx;
  50. rc = teedev->desc->ops->open(ctx);
  51. if (rc)
  52. goto err;
  53. return 0;
  54. err:
  55. kfree(ctx);
  56. tee_device_put(teedev);
  57. return rc;
  58. }
  59. static int tee_release(struct inode *inode, struct file *filp)
  60. {
  61. struct tee_context *ctx = filp->private_data;
  62. struct tee_device *teedev = ctx->teedev;
  63. struct tee_shm *shm;
  64. ctx->teedev->desc->ops->release(ctx);
  65. mutex_lock(&ctx->teedev->mutex);
  66. list_for_each_entry(shm, &ctx->list_shm, link)
  67. shm->ctx = NULL;
  68. mutex_unlock(&ctx->teedev->mutex);
  69. kfree(ctx);
  70. tee_device_put(teedev);
  71. return 0;
  72. }
  73. static int tee_ioctl_version(struct tee_context *ctx,
  74. struct tee_ioctl_version_data __user *uvers)
  75. {
  76. struct tee_ioctl_version_data vers;
  77. ctx->teedev->desc->ops->get_version(ctx->teedev, &vers);
  78. if (copy_to_user(uvers, &vers, sizeof(vers)))
  79. return -EFAULT;
  80. return 0;
  81. }
  82. static int tee_ioctl_shm_alloc(struct tee_context *ctx,
  83. struct tee_ioctl_shm_alloc_data __user *udata)
  84. {
  85. long ret;
  86. struct tee_ioctl_shm_alloc_data data;
  87. struct tee_shm *shm;
  88. if (copy_from_user(&data, udata, sizeof(data)))
  89. return -EFAULT;
  90. /* Currently no input flags are supported */
  91. if (data.flags)
  92. return -EINVAL;
  93. data.id = -1;
  94. shm = tee_shm_alloc(ctx, data.size, TEE_SHM_MAPPED | TEE_SHM_DMA_BUF);
  95. if (IS_ERR(shm))
  96. return PTR_ERR(shm);
  97. data.id = shm->id;
  98. data.flags = shm->flags;
  99. data.size = shm->size;
  100. if (copy_to_user(udata, &data, sizeof(data)))
  101. ret = -EFAULT;
  102. else
  103. ret = tee_shm_get_fd(shm);
  104. /*
  105. * When user space closes the file descriptor the shared memory
  106. * should be freed or if tee_shm_get_fd() failed then it will
  107. * be freed immediately.
  108. */
  109. tee_shm_put(shm);
  110. return ret;
  111. }
  112. static int params_from_user(struct tee_context *ctx, struct tee_param *params,
  113. size_t num_params,
  114. struct tee_ioctl_param __user *uparams)
  115. {
  116. size_t n;
  117. for (n = 0; n < num_params; n++) {
  118. struct tee_shm *shm;
  119. struct tee_ioctl_param ip;
  120. if (copy_from_user(&ip, uparams + n, sizeof(ip)))
  121. return -EFAULT;
  122. /* All unused attribute bits has to be zero */
  123. if (ip.attr & ~TEE_IOCTL_PARAM_ATTR_TYPE_MASK)
  124. return -EINVAL;
  125. params[n].attr = ip.attr;
  126. switch (ip.attr) {
  127. case TEE_IOCTL_PARAM_ATTR_TYPE_NONE:
  128. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_OUTPUT:
  129. break;
  130. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_INPUT:
  131. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_INOUT:
  132. params[n].u.value.a = ip.a;
  133. params[n].u.value.b = ip.b;
  134. params[n].u.value.c = ip.c;
  135. break;
  136. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INPUT:
  137. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_OUTPUT:
  138. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INOUT:
  139. /*
  140. * If we fail to get a pointer to a shared memory
  141. * object (and increase the ref count) from an
  142. * identifier we return an error. All pointers that
  143. * has been added in params have an increased ref
  144. * count. It's the callers responibility to do
  145. * tee_shm_put() on all resolved pointers.
  146. */
  147. shm = tee_shm_get_from_id(ctx, ip.c);
  148. if (IS_ERR(shm))
  149. return PTR_ERR(shm);
  150. params[n].u.memref.shm_offs = ip.a;
  151. params[n].u.memref.size = ip.b;
  152. params[n].u.memref.shm = shm;
  153. break;
  154. default:
  155. /* Unknown attribute */
  156. return -EINVAL;
  157. }
  158. }
  159. return 0;
  160. }
  161. static int params_to_user(struct tee_ioctl_param __user *uparams,
  162. size_t num_params, struct tee_param *params)
  163. {
  164. size_t n;
  165. for (n = 0; n < num_params; n++) {
  166. struct tee_ioctl_param __user *up = uparams + n;
  167. struct tee_param *p = params + n;
  168. switch (p->attr) {
  169. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_OUTPUT:
  170. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_INOUT:
  171. if (put_user(p->u.value.a, &up->a) ||
  172. put_user(p->u.value.b, &up->b) ||
  173. put_user(p->u.value.c, &up->c))
  174. return -EFAULT;
  175. break;
  176. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_OUTPUT:
  177. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INOUT:
  178. if (put_user((u64)p->u.memref.size, &up->b))
  179. return -EFAULT;
  180. default:
  181. break;
  182. }
  183. }
  184. return 0;
  185. }
  186. static bool param_is_memref(struct tee_param *param)
  187. {
  188. switch (param->attr & TEE_IOCTL_PARAM_ATTR_TYPE_MASK) {
  189. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INPUT:
  190. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_OUTPUT:
  191. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INOUT:
  192. return true;
  193. default:
  194. return false;
  195. }
  196. }
  197. static int tee_ioctl_open_session(struct tee_context *ctx,
  198. struct tee_ioctl_buf_data __user *ubuf)
  199. {
  200. int rc;
  201. size_t n;
  202. struct tee_ioctl_buf_data buf;
  203. struct tee_ioctl_open_session_arg __user *uarg;
  204. struct tee_ioctl_open_session_arg arg;
  205. struct tee_ioctl_param __user *uparams = NULL;
  206. struct tee_param *params = NULL;
  207. bool have_session = false;
  208. if (!ctx->teedev->desc->ops->open_session)
  209. return -EINVAL;
  210. if (copy_from_user(&buf, ubuf, sizeof(buf)))
  211. return -EFAULT;
  212. if (buf.buf_len > TEE_MAX_ARG_SIZE ||
  213. buf.buf_len < sizeof(struct tee_ioctl_open_session_arg))
  214. return -EINVAL;
  215. uarg = u64_to_user_ptr(buf.buf_ptr);
  216. if (copy_from_user(&arg, uarg, sizeof(arg)))
  217. return -EFAULT;
  218. if (sizeof(arg) + TEE_IOCTL_PARAM_SIZE(arg.num_params) != buf.buf_len)
  219. return -EINVAL;
  220. if (arg.num_params) {
  221. params = kcalloc(arg.num_params, sizeof(struct tee_param),
  222. GFP_KERNEL);
  223. if (!params)
  224. return -ENOMEM;
  225. uparams = uarg->params;
  226. rc = params_from_user(ctx, params, arg.num_params, uparams);
  227. if (rc)
  228. goto out;
  229. }
  230. rc = ctx->teedev->desc->ops->open_session(ctx, &arg, params);
  231. if (rc)
  232. goto out;
  233. have_session = true;
  234. if (put_user(arg.session, &uarg->session) ||
  235. put_user(arg.ret, &uarg->ret) ||
  236. put_user(arg.ret_origin, &uarg->ret_origin)) {
  237. rc = -EFAULT;
  238. goto out;
  239. }
  240. rc = params_to_user(uparams, arg.num_params, params);
  241. out:
  242. /*
  243. * If we've succeeded to open the session but failed to communicate
  244. * it back to user space, close the session again to avoid leakage.
  245. */
  246. if (rc && have_session && ctx->teedev->desc->ops->close_session)
  247. ctx->teedev->desc->ops->close_session(ctx, arg.session);
  248. if (params) {
  249. /* Decrease ref count for all valid shared memory pointers */
  250. for (n = 0; n < arg.num_params; n++)
  251. if (param_is_memref(params + n) &&
  252. params[n].u.memref.shm)
  253. tee_shm_put(params[n].u.memref.shm);
  254. kfree(params);
  255. }
  256. return rc;
  257. }
  258. static int tee_ioctl_invoke(struct tee_context *ctx,
  259. struct tee_ioctl_buf_data __user *ubuf)
  260. {
  261. int rc;
  262. size_t n;
  263. struct tee_ioctl_buf_data buf;
  264. struct tee_ioctl_invoke_arg __user *uarg;
  265. struct tee_ioctl_invoke_arg arg;
  266. struct tee_ioctl_param __user *uparams = NULL;
  267. struct tee_param *params = NULL;
  268. if (!ctx->teedev->desc->ops->invoke_func)
  269. return -EINVAL;
  270. if (copy_from_user(&buf, ubuf, sizeof(buf)))
  271. return -EFAULT;
  272. if (buf.buf_len > TEE_MAX_ARG_SIZE ||
  273. buf.buf_len < sizeof(struct tee_ioctl_invoke_arg))
  274. return -EINVAL;
  275. uarg = u64_to_user_ptr(buf.buf_ptr);
  276. if (copy_from_user(&arg, uarg, sizeof(arg)))
  277. return -EFAULT;
  278. if (sizeof(arg) + TEE_IOCTL_PARAM_SIZE(arg.num_params) != buf.buf_len)
  279. return -EINVAL;
  280. if (arg.num_params) {
  281. params = kcalloc(arg.num_params, sizeof(struct tee_param),
  282. GFP_KERNEL);
  283. if (!params)
  284. return -ENOMEM;
  285. uparams = uarg->params;
  286. rc = params_from_user(ctx, params, arg.num_params, uparams);
  287. if (rc)
  288. goto out;
  289. }
  290. rc = ctx->teedev->desc->ops->invoke_func(ctx, &arg, params);
  291. if (rc)
  292. goto out;
  293. if (put_user(arg.ret, &uarg->ret) ||
  294. put_user(arg.ret_origin, &uarg->ret_origin)) {
  295. rc = -EFAULT;
  296. goto out;
  297. }
  298. rc = params_to_user(uparams, arg.num_params, params);
  299. out:
  300. if (params) {
  301. /* Decrease ref count for all valid shared memory pointers */
  302. for (n = 0; n < arg.num_params; n++)
  303. if (param_is_memref(params + n) &&
  304. params[n].u.memref.shm)
  305. tee_shm_put(params[n].u.memref.shm);
  306. kfree(params);
  307. }
  308. return rc;
  309. }
  310. static int tee_ioctl_cancel(struct tee_context *ctx,
  311. struct tee_ioctl_cancel_arg __user *uarg)
  312. {
  313. struct tee_ioctl_cancel_arg arg;
  314. if (!ctx->teedev->desc->ops->cancel_req)
  315. return -EINVAL;
  316. if (copy_from_user(&arg, uarg, sizeof(arg)))
  317. return -EFAULT;
  318. return ctx->teedev->desc->ops->cancel_req(ctx, arg.cancel_id,
  319. arg.session);
  320. }
  321. static int
  322. tee_ioctl_close_session(struct tee_context *ctx,
  323. struct tee_ioctl_close_session_arg __user *uarg)
  324. {
  325. struct tee_ioctl_close_session_arg arg;
  326. if (!ctx->teedev->desc->ops->close_session)
  327. return -EINVAL;
  328. if (copy_from_user(&arg, uarg, sizeof(arg)))
  329. return -EFAULT;
  330. return ctx->teedev->desc->ops->close_session(ctx, arg.session);
  331. }
  332. static int params_to_supp(struct tee_context *ctx,
  333. struct tee_ioctl_param __user *uparams,
  334. size_t num_params, struct tee_param *params)
  335. {
  336. size_t n;
  337. for (n = 0; n < num_params; n++) {
  338. struct tee_ioctl_param ip;
  339. struct tee_param *p = params + n;
  340. ip.attr = p->attr & TEE_IOCTL_PARAM_ATTR_TYPE_MASK;
  341. switch (p->attr) {
  342. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_INPUT:
  343. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_INOUT:
  344. ip.a = p->u.value.a;
  345. ip.b = p->u.value.b;
  346. ip.c = p->u.value.c;
  347. break;
  348. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INPUT:
  349. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_OUTPUT:
  350. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INOUT:
  351. ip.b = p->u.memref.size;
  352. if (!p->u.memref.shm) {
  353. ip.a = 0;
  354. ip.c = (u64)-1; /* invalid shm id */
  355. break;
  356. }
  357. ip.a = p->u.memref.shm_offs;
  358. ip.c = p->u.memref.shm->id;
  359. break;
  360. default:
  361. ip.a = 0;
  362. ip.b = 0;
  363. ip.c = 0;
  364. break;
  365. }
  366. if (copy_to_user(uparams + n, &ip, sizeof(ip)))
  367. return -EFAULT;
  368. }
  369. return 0;
  370. }
  371. static int tee_ioctl_supp_recv(struct tee_context *ctx,
  372. struct tee_ioctl_buf_data __user *ubuf)
  373. {
  374. int rc;
  375. struct tee_ioctl_buf_data buf;
  376. struct tee_iocl_supp_recv_arg __user *uarg;
  377. struct tee_param *params;
  378. u32 num_params;
  379. u32 func;
  380. if (!ctx->teedev->desc->ops->supp_recv)
  381. return -EINVAL;
  382. if (copy_from_user(&buf, ubuf, sizeof(buf)))
  383. return -EFAULT;
  384. if (buf.buf_len > TEE_MAX_ARG_SIZE ||
  385. buf.buf_len < sizeof(struct tee_iocl_supp_recv_arg))
  386. return -EINVAL;
  387. uarg = u64_to_user_ptr(buf.buf_ptr);
  388. if (get_user(num_params, &uarg->num_params))
  389. return -EFAULT;
  390. if (sizeof(*uarg) + TEE_IOCTL_PARAM_SIZE(num_params) != buf.buf_len)
  391. return -EINVAL;
  392. params = kcalloc(num_params, sizeof(struct tee_param), GFP_KERNEL);
  393. if (!params)
  394. return -ENOMEM;
  395. rc = ctx->teedev->desc->ops->supp_recv(ctx, &func, &num_params, params);
  396. if (rc)
  397. goto out;
  398. if (put_user(func, &uarg->func) ||
  399. put_user(num_params, &uarg->num_params)) {
  400. rc = -EFAULT;
  401. goto out;
  402. }
  403. rc = params_to_supp(ctx, uarg->params, num_params, params);
  404. out:
  405. kfree(params);
  406. return rc;
  407. }
  408. static int params_from_supp(struct tee_param *params, size_t num_params,
  409. struct tee_ioctl_param __user *uparams)
  410. {
  411. size_t n;
  412. for (n = 0; n < num_params; n++) {
  413. struct tee_param *p = params + n;
  414. struct tee_ioctl_param ip;
  415. if (copy_from_user(&ip, uparams + n, sizeof(ip)))
  416. return -EFAULT;
  417. /* All unused attribute bits has to be zero */
  418. if (ip.attr & ~TEE_IOCTL_PARAM_ATTR_TYPE_MASK)
  419. return -EINVAL;
  420. p->attr = ip.attr;
  421. switch (ip.attr) {
  422. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_OUTPUT:
  423. case TEE_IOCTL_PARAM_ATTR_TYPE_VALUE_INOUT:
  424. /* Only out and in/out values can be updated */
  425. p->u.value.a = ip.a;
  426. p->u.value.b = ip.b;
  427. p->u.value.c = ip.c;
  428. break;
  429. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_OUTPUT:
  430. case TEE_IOCTL_PARAM_ATTR_TYPE_MEMREF_INOUT:
  431. /*
  432. * Only the size of the memref can be updated.
  433. * Since we don't have access to the original
  434. * parameters here, only store the supplied size.
  435. * The driver will copy the updated size into the
  436. * original parameters.
  437. */
  438. p->u.memref.shm = NULL;
  439. p->u.memref.shm_offs = 0;
  440. p->u.memref.size = ip.b;
  441. break;
  442. default:
  443. memset(&p->u, 0, sizeof(p->u));
  444. break;
  445. }
  446. }
  447. return 0;
  448. }
  449. static int tee_ioctl_supp_send(struct tee_context *ctx,
  450. struct tee_ioctl_buf_data __user *ubuf)
  451. {
  452. long rc;
  453. struct tee_ioctl_buf_data buf;
  454. struct tee_iocl_supp_send_arg __user *uarg;
  455. struct tee_param *params;
  456. u32 num_params;
  457. u32 ret;
  458. /* Not valid for this driver */
  459. if (!ctx->teedev->desc->ops->supp_send)
  460. return -EINVAL;
  461. if (copy_from_user(&buf, ubuf, sizeof(buf)))
  462. return -EFAULT;
  463. if (buf.buf_len > TEE_MAX_ARG_SIZE ||
  464. buf.buf_len < sizeof(struct tee_iocl_supp_send_arg))
  465. return -EINVAL;
  466. uarg = u64_to_user_ptr(buf.buf_ptr);
  467. if (get_user(ret, &uarg->ret) ||
  468. get_user(num_params, &uarg->num_params))
  469. return -EFAULT;
  470. if (sizeof(*uarg) + TEE_IOCTL_PARAM_SIZE(num_params) > buf.buf_len)
  471. return -EINVAL;
  472. params = kcalloc(num_params, sizeof(struct tee_param), GFP_KERNEL);
  473. if (!params)
  474. return -ENOMEM;
  475. rc = params_from_supp(params, num_params, uarg->params);
  476. if (rc)
  477. goto out;
  478. rc = ctx->teedev->desc->ops->supp_send(ctx, ret, num_params, params);
  479. out:
  480. kfree(params);
  481. return rc;
  482. }
  483. static long tee_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
  484. {
  485. struct tee_context *ctx = filp->private_data;
  486. void __user *uarg = (void __user *)arg;
  487. switch (cmd) {
  488. case TEE_IOC_VERSION:
  489. return tee_ioctl_version(ctx, uarg);
  490. case TEE_IOC_SHM_ALLOC:
  491. return tee_ioctl_shm_alloc(ctx, uarg);
  492. case TEE_IOC_OPEN_SESSION:
  493. return tee_ioctl_open_session(ctx, uarg);
  494. case TEE_IOC_INVOKE:
  495. return tee_ioctl_invoke(ctx, uarg);
  496. case TEE_IOC_CANCEL:
  497. return tee_ioctl_cancel(ctx, uarg);
  498. case TEE_IOC_CLOSE_SESSION:
  499. return tee_ioctl_close_session(ctx, uarg);
  500. case TEE_IOC_SUPPL_RECV:
  501. return tee_ioctl_supp_recv(ctx, uarg);
  502. case TEE_IOC_SUPPL_SEND:
  503. return tee_ioctl_supp_send(ctx, uarg);
  504. default:
  505. return -EINVAL;
  506. }
  507. }
  508. static const struct file_operations tee_fops = {
  509. .owner = THIS_MODULE,
  510. .open = tee_open,
  511. .release = tee_release,
  512. .unlocked_ioctl = tee_ioctl,
  513. .compat_ioctl = tee_ioctl,
  514. };
  515. static void tee_release_device(struct device *dev)
  516. {
  517. struct tee_device *teedev = container_of(dev, struct tee_device, dev);
  518. spin_lock(&driver_lock);
  519. clear_bit(teedev->id, dev_mask);
  520. spin_unlock(&driver_lock);
  521. mutex_destroy(&teedev->mutex);
  522. idr_destroy(&teedev->idr);
  523. kfree(teedev);
  524. }
  525. /**
  526. * tee_device_alloc() - Allocate a new struct tee_device instance
  527. * @teedesc: Descriptor for this driver
  528. * @dev: Parent device for this device
  529. * @pool: Shared memory pool, NULL if not used
  530. * @driver_data: Private driver data for this device
  531. *
  532. * Allocates a new struct tee_device instance. The device is
  533. * removed by tee_device_unregister().
  534. *
  535. * @returns a pointer to a 'struct tee_device' or an ERR_PTR on failure
  536. */
  537. struct tee_device *tee_device_alloc(const struct tee_desc *teedesc,
  538. struct device *dev,
  539. struct tee_shm_pool *pool,
  540. void *driver_data)
  541. {
  542. struct tee_device *teedev;
  543. void *ret;
  544. int rc;
  545. int offs = 0;
  546. if (!teedesc || !teedesc->name || !teedesc->ops ||
  547. !teedesc->ops->get_version || !teedesc->ops->open ||
  548. !teedesc->ops->release || !pool)
  549. return ERR_PTR(-EINVAL);
  550. teedev = kzalloc(sizeof(*teedev), GFP_KERNEL);
  551. if (!teedev) {
  552. ret = ERR_PTR(-ENOMEM);
  553. goto err;
  554. }
  555. if (teedesc->flags & TEE_DESC_PRIVILEGED)
  556. offs = TEE_NUM_DEVICES / 2;
  557. spin_lock(&driver_lock);
  558. teedev->id = find_next_zero_bit(dev_mask, TEE_NUM_DEVICES, offs);
  559. if (teedev->id < TEE_NUM_DEVICES)
  560. set_bit(teedev->id, dev_mask);
  561. spin_unlock(&driver_lock);
  562. if (teedev->id >= TEE_NUM_DEVICES) {
  563. ret = ERR_PTR(-ENOMEM);
  564. goto err;
  565. }
  566. snprintf(teedev->name, sizeof(teedev->name), "tee%s%d",
  567. teedesc->flags & TEE_DESC_PRIVILEGED ? "priv" : "",
  568. teedev->id - offs);
  569. teedev->dev.class = tee_class;
  570. teedev->dev.release = tee_release_device;
  571. teedev->dev.parent = dev;
  572. teedev->dev.devt = MKDEV(MAJOR(tee_devt), teedev->id);
  573. rc = dev_set_name(&teedev->dev, "%s", teedev->name);
  574. if (rc) {
  575. ret = ERR_PTR(rc);
  576. goto err_devt;
  577. }
  578. cdev_init(&teedev->cdev, &tee_fops);
  579. teedev->cdev.owner = teedesc->owner;
  580. teedev->cdev.kobj.parent = &teedev->dev.kobj;
  581. dev_set_drvdata(&teedev->dev, driver_data);
  582. device_initialize(&teedev->dev);
  583. /* 1 as tee_device_unregister() does one final tee_device_put() */
  584. teedev->num_users = 1;
  585. init_completion(&teedev->c_no_users);
  586. mutex_init(&teedev->mutex);
  587. idr_init(&teedev->idr);
  588. teedev->desc = teedesc;
  589. teedev->pool = pool;
  590. return teedev;
  591. err_devt:
  592. unregister_chrdev_region(teedev->dev.devt, 1);
  593. err:
  594. pr_err("could not register %s driver\n",
  595. teedesc->flags & TEE_DESC_PRIVILEGED ? "privileged" : "client");
  596. if (teedev && teedev->id < TEE_NUM_DEVICES) {
  597. spin_lock(&driver_lock);
  598. clear_bit(teedev->id, dev_mask);
  599. spin_unlock(&driver_lock);
  600. }
  601. kfree(teedev);
  602. return ret;
  603. }
  604. EXPORT_SYMBOL_GPL(tee_device_alloc);
  605. static ssize_t implementation_id_show(struct device *dev,
  606. struct device_attribute *attr, char *buf)
  607. {
  608. struct tee_device *teedev = container_of(dev, struct tee_device, dev);
  609. struct tee_ioctl_version_data vers;
  610. teedev->desc->ops->get_version(teedev, &vers);
  611. return scnprintf(buf, PAGE_SIZE, "%d\n", vers.impl_id);
  612. }
  613. static DEVICE_ATTR_RO(implementation_id);
  614. static struct attribute *tee_dev_attrs[] = {
  615. &dev_attr_implementation_id.attr,
  616. NULL
  617. };
  618. static const struct attribute_group tee_dev_group = {
  619. .attrs = tee_dev_attrs,
  620. };
  621. /**
  622. * tee_device_register() - Registers a TEE device
  623. * @teedev: Device to register
  624. *
  625. * tee_device_unregister() need to be called to remove the @teedev if
  626. * this function fails.
  627. *
  628. * @returns < 0 on failure
  629. */
  630. int tee_device_register(struct tee_device *teedev)
  631. {
  632. int rc;
  633. if (teedev->flags & TEE_DEVICE_FLAG_REGISTERED) {
  634. dev_err(&teedev->dev, "attempt to register twice\n");
  635. return -EINVAL;
  636. }
  637. rc = cdev_add(&teedev->cdev, teedev->dev.devt, 1);
  638. if (rc) {
  639. dev_err(&teedev->dev,
  640. "unable to cdev_add() %s, major %d, minor %d, err=%d\n",
  641. teedev->name, MAJOR(teedev->dev.devt),
  642. MINOR(teedev->dev.devt), rc);
  643. return rc;
  644. }
  645. rc = device_add(&teedev->dev);
  646. if (rc) {
  647. dev_err(&teedev->dev,
  648. "unable to device_add() %s, major %d, minor %d, err=%d\n",
  649. teedev->name, MAJOR(teedev->dev.devt),
  650. MINOR(teedev->dev.devt), rc);
  651. goto err_device_add;
  652. }
  653. rc = sysfs_create_group(&teedev->dev.kobj, &tee_dev_group);
  654. if (rc) {
  655. dev_err(&teedev->dev,
  656. "failed to create sysfs attributes, err=%d\n", rc);
  657. goto err_sysfs_create_group;
  658. }
  659. teedev->flags |= TEE_DEVICE_FLAG_REGISTERED;
  660. return 0;
  661. err_sysfs_create_group:
  662. device_del(&teedev->dev);
  663. err_device_add:
  664. cdev_del(&teedev->cdev);
  665. return rc;
  666. }
  667. EXPORT_SYMBOL_GPL(tee_device_register);
  668. void tee_device_put(struct tee_device *teedev)
  669. {
  670. mutex_lock(&teedev->mutex);
  671. /* Shouldn't put in this state */
  672. if (!WARN_ON(!teedev->desc)) {
  673. teedev->num_users--;
  674. if (!teedev->num_users) {
  675. teedev->desc = NULL;
  676. complete(&teedev->c_no_users);
  677. }
  678. }
  679. mutex_unlock(&teedev->mutex);
  680. }
  681. bool tee_device_get(struct tee_device *teedev)
  682. {
  683. mutex_lock(&teedev->mutex);
  684. if (!teedev->desc) {
  685. mutex_unlock(&teedev->mutex);
  686. return false;
  687. }
  688. teedev->num_users++;
  689. mutex_unlock(&teedev->mutex);
  690. return true;
  691. }
  692. /**
  693. * tee_device_unregister() - Removes a TEE device
  694. * @teedev: Device to unregister
  695. *
  696. * This function should be called to remove the @teedev even if
  697. * tee_device_register() hasn't been called yet. Does nothing if
  698. * @teedev is NULL.
  699. */
  700. void tee_device_unregister(struct tee_device *teedev)
  701. {
  702. if (!teedev)
  703. return;
  704. if (teedev->flags & TEE_DEVICE_FLAG_REGISTERED) {
  705. sysfs_remove_group(&teedev->dev.kobj, &tee_dev_group);
  706. cdev_del(&teedev->cdev);
  707. device_del(&teedev->dev);
  708. }
  709. tee_device_put(teedev);
  710. wait_for_completion(&teedev->c_no_users);
  711. /*
  712. * No need to take a mutex any longer now since teedev->desc was
  713. * set to NULL before teedev->c_no_users was completed.
  714. */
  715. teedev->pool = NULL;
  716. put_device(&teedev->dev);
  717. }
  718. EXPORT_SYMBOL_GPL(tee_device_unregister);
  719. /**
  720. * tee_get_drvdata() - Return driver_data pointer
  721. * @teedev: Device containing the driver_data pointer
  722. * @returns the driver_data pointer supplied to tee_register().
  723. */
  724. void *tee_get_drvdata(struct tee_device *teedev)
  725. {
  726. return dev_get_drvdata(&teedev->dev);
  727. }
  728. EXPORT_SYMBOL_GPL(tee_get_drvdata);
  729. static int __init tee_init(void)
  730. {
  731. int rc;
  732. tee_class = class_create(THIS_MODULE, "tee");
  733. if (IS_ERR(tee_class)) {
  734. pr_err("couldn't create class\n");
  735. return PTR_ERR(tee_class);
  736. }
  737. rc = alloc_chrdev_region(&tee_devt, 0, TEE_NUM_DEVICES, "tee");
  738. if (rc) {
  739. pr_err("failed to allocate char dev region\n");
  740. class_destroy(tee_class);
  741. tee_class = NULL;
  742. }
  743. return rc;
  744. }
  745. static void __exit tee_exit(void)
  746. {
  747. class_destroy(tee_class);
  748. tee_class = NULL;
  749. unregister_chrdev_region(tee_devt, TEE_NUM_DEVICES);
  750. }
  751. subsys_initcall(tee_init);
  752. module_exit(tee_exit);
  753. MODULE_AUTHOR("Linaro");
  754. MODULE_DESCRIPTION("TEE Driver");
  755. MODULE_VERSION("1.0");
  756. MODULE_LICENSE("GPL v2");