fifo.c 26 KB

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  1. /*
  2. * Renesas USB driver
  3. *
  4. * Copyright (C) 2011 Renesas Solutions Corp.
  5. * Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>
  6. *
  7. * This program is distributed in the hope that it will be useful,
  8. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. * GNU General Public License for more details.
  11. *
  12. * You should have received a copy of the GNU General Public License
  13. * along with this program; if not, write to the Free Software
  14. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  15. *
  16. */
  17. #include <linux/delay.h>
  18. #include <linux/io.h>
  19. #include <linux/scatterlist.h>
  20. #include "./common.h"
  21. #include "./pipe.h"
  22. #define usbhsf_get_cfifo(p) (&((p)->fifo_info.cfifo))
  23. #define usbhsf_get_d0fifo(p) (&((p)->fifo_info.d0fifo))
  24. #define usbhsf_get_d1fifo(p) (&((p)->fifo_info.d1fifo))
  25. #define usbhsf_fifo_is_busy(f) ((f)->pipe) /* see usbhs_pipe_select_fifo */
  26. /*
  27. * packet initialize
  28. */
  29. void usbhs_pkt_init(struct usbhs_pkt *pkt)
  30. {
  31. pkt->dma = DMA_ADDR_INVALID;
  32. INIT_LIST_HEAD(&pkt->node);
  33. }
  34. /*
  35. * packet control function
  36. */
  37. static int usbhsf_null_handle(struct usbhs_pkt *pkt, int *is_done)
  38. {
  39. struct usbhs_priv *priv = usbhs_pipe_to_priv(pkt->pipe);
  40. struct device *dev = usbhs_priv_to_dev(priv);
  41. dev_err(dev, "null handler\n");
  42. return -EINVAL;
  43. }
  44. static struct usbhs_pkt_handle usbhsf_null_handler = {
  45. .prepare = usbhsf_null_handle,
  46. .try_run = usbhsf_null_handle,
  47. };
  48. void usbhs_pkt_push(struct usbhs_pipe *pipe, struct usbhs_pkt *pkt,
  49. void (*done)(struct usbhs_priv *priv,
  50. struct usbhs_pkt *pkt),
  51. void *buf, int len, int zero)
  52. {
  53. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  54. struct device *dev = usbhs_priv_to_dev(priv);
  55. unsigned long flags;
  56. if (!done) {
  57. dev_err(dev, "no done function\n");
  58. return;
  59. }
  60. /******************** spin lock ********************/
  61. usbhs_lock(priv, flags);
  62. if (!pipe->handler) {
  63. dev_err(dev, "no handler function\n");
  64. pipe->handler = &usbhsf_null_handler;
  65. }
  66. list_del_init(&pkt->node);
  67. list_add_tail(&pkt->node, &pipe->list);
  68. /*
  69. * each pkt must hold own handler.
  70. * because handler might be changed by its situation.
  71. * dma handler -> pio handler.
  72. */
  73. pkt->pipe = pipe;
  74. pkt->buf = buf;
  75. pkt->handler = pipe->handler;
  76. pkt->length = len;
  77. pkt->zero = zero;
  78. pkt->actual = 0;
  79. pkt->done = done;
  80. usbhs_unlock(priv, flags);
  81. /******************** spin unlock ******************/
  82. }
  83. static void __usbhsf_pkt_del(struct usbhs_pkt *pkt)
  84. {
  85. list_del_init(&pkt->node);
  86. }
  87. static struct usbhs_pkt *__usbhsf_pkt_get(struct usbhs_pipe *pipe)
  88. {
  89. if (list_empty(&pipe->list))
  90. return NULL;
  91. return list_entry(pipe->list.next, struct usbhs_pkt, node);
  92. }
  93. struct usbhs_pkt *usbhs_pkt_pop(struct usbhs_pipe *pipe, struct usbhs_pkt *pkt)
  94. {
  95. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  96. unsigned long flags;
  97. /******************** spin lock ********************/
  98. usbhs_lock(priv, flags);
  99. if (!pkt)
  100. pkt = __usbhsf_pkt_get(pipe);
  101. if (pkt)
  102. __usbhsf_pkt_del(pkt);
  103. usbhs_unlock(priv, flags);
  104. /******************** spin unlock ******************/
  105. return pkt;
  106. }
  107. enum {
  108. USBHSF_PKT_PREPARE,
  109. USBHSF_PKT_TRY_RUN,
  110. USBHSF_PKT_DMA_DONE,
  111. };
  112. static int usbhsf_pkt_handler(struct usbhs_pipe *pipe, int type)
  113. {
  114. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  115. struct usbhs_pkt *pkt;
  116. struct device *dev = usbhs_priv_to_dev(priv);
  117. int (*func)(struct usbhs_pkt *pkt, int *is_done);
  118. unsigned long flags;
  119. int ret = 0;
  120. int is_done = 0;
  121. /******************** spin lock ********************/
  122. usbhs_lock(priv, flags);
  123. pkt = __usbhsf_pkt_get(pipe);
  124. if (!pkt)
  125. goto __usbhs_pkt_handler_end;
  126. switch (type) {
  127. case USBHSF_PKT_PREPARE:
  128. func = pkt->handler->prepare;
  129. break;
  130. case USBHSF_PKT_TRY_RUN:
  131. func = pkt->handler->try_run;
  132. break;
  133. case USBHSF_PKT_DMA_DONE:
  134. func = pkt->handler->dma_done;
  135. break;
  136. default:
  137. dev_err(dev, "unknown pkt hander\n");
  138. goto __usbhs_pkt_handler_end;
  139. }
  140. ret = func(pkt, &is_done);
  141. if (is_done)
  142. __usbhsf_pkt_del(pkt);
  143. __usbhs_pkt_handler_end:
  144. usbhs_unlock(priv, flags);
  145. /******************** spin unlock ******************/
  146. if (is_done) {
  147. pkt->done(priv, pkt);
  148. usbhs_pkt_start(pipe);
  149. }
  150. return ret;
  151. }
  152. void usbhs_pkt_start(struct usbhs_pipe *pipe)
  153. {
  154. usbhsf_pkt_handler(pipe, USBHSF_PKT_PREPARE);
  155. }
  156. /*
  157. * irq enable/disable function
  158. */
  159. #define usbhsf_irq_empty_ctrl(p, e) usbhsf_irq_callback_ctrl(p, bempsts, e)
  160. #define usbhsf_irq_ready_ctrl(p, e) usbhsf_irq_callback_ctrl(p, brdysts, e)
  161. #define usbhsf_irq_callback_ctrl(pipe, status, enable) \
  162. ({ \
  163. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe); \
  164. struct usbhs_mod *mod = usbhs_mod_get_current(priv); \
  165. u16 status = (1 << usbhs_pipe_number(pipe)); \
  166. if (!mod) \
  167. return; \
  168. if (enable) \
  169. mod->irq_##status |= status; \
  170. else \
  171. mod->irq_##status &= ~status; \
  172. usbhs_irq_callback_update(priv, mod); \
  173. })
  174. static void usbhsf_tx_irq_ctrl(struct usbhs_pipe *pipe, int enable)
  175. {
  176. /*
  177. * And DCP pipe can NOT use "ready interrupt" for "send"
  178. * it should use "empty" interrupt.
  179. * see
  180. * "Operation" - "Interrupt Function" - "BRDY Interrupt"
  181. *
  182. * on the other hand, normal pipe can use "ready interrupt" for "send"
  183. * even though it is single/double buffer
  184. */
  185. if (usbhs_pipe_is_dcp(pipe))
  186. usbhsf_irq_empty_ctrl(pipe, enable);
  187. else
  188. usbhsf_irq_ready_ctrl(pipe, enable);
  189. }
  190. static void usbhsf_rx_irq_ctrl(struct usbhs_pipe *pipe, int enable)
  191. {
  192. usbhsf_irq_ready_ctrl(pipe, enable);
  193. }
  194. /*
  195. * FIFO ctrl
  196. */
  197. static void usbhsf_send_terminator(struct usbhs_pipe *pipe,
  198. struct usbhs_fifo *fifo)
  199. {
  200. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  201. usbhs_bset(priv, fifo->ctr, BVAL, BVAL);
  202. }
  203. static int usbhsf_fifo_barrier(struct usbhs_priv *priv,
  204. struct usbhs_fifo *fifo)
  205. {
  206. int timeout = 1024;
  207. do {
  208. /* The FIFO port is accessible */
  209. if (usbhs_read(priv, fifo->ctr) & FRDY)
  210. return 0;
  211. udelay(10);
  212. } while (timeout--);
  213. return -EBUSY;
  214. }
  215. static void usbhsf_fifo_clear(struct usbhs_pipe *pipe,
  216. struct usbhs_fifo *fifo)
  217. {
  218. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  219. if (!usbhs_pipe_is_dcp(pipe))
  220. usbhsf_fifo_barrier(priv, fifo);
  221. usbhs_write(priv, fifo->ctr, BCLR);
  222. }
  223. static int usbhsf_fifo_rcv_len(struct usbhs_priv *priv,
  224. struct usbhs_fifo *fifo)
  225. {
  226. return usbhs_read(priv, fifo->ctr) & DTLN_MASK;
  227. }
  228. static void usbhsf_fifo_unselect(struct usbhs_pipe *pipe,
  229. struct usbhs_fifo *fifo)
  230. {
  231. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  232. usbhs_pipe_select_fifo(pipe, NULL);
  233. usbhs_write(priv, fifo->sel, 0);
  234. }
  235. static int usbhsf_fifo_select(struct usbhs_pipe *pipe,
  236. struct usbhs_fifo *fifo,
  237. int write)
  238. {
  239. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  240. struct device *dev = usbhs_priv_to_dev(priv);
  241. int timeout = 1024;
  242. u16 mask = ((1 << 5) | 0xF); /* mask of ISEL | CURPIPE */
  243. u16 base = usbhs_pipe_number(pipe); /* CURPIPE */
  244. if (usbhs_pipe_is_busy(pipe) ||
  245. usbhsf_fifo_is_busy(fifo))
  246. return -EBUSY;
  247. if (usbhs_pipe_is_dcp(pipe)) {
  248. base |= (1 == write) << 5; /* ISEL */
  249. if (usbhs_mod_is_host(priv))
  250. usbhs_dcp_dir_for_host(pipe, write);
  251. }
  252. /* "base" will be used below */
  253. usbhs_write(priv, fifo->sel, base | MBW_32);
  254. /* check ISEL and CURPIPE value */
  255. while (timeout--) {
  256. if (base == (mask & usbhs_read(priv, fifo->sel))) {
  257. usbhs_pipe_select_fifo(pipe, fifo);
  258. return 0;
  259. }
  260. udelay(10);
  261. }
  262. dev_err(dev, "fifo select error\n");
  263. return -EIO;
  264. }
  265. /*
  266. * DCP status stage
  267. */
  268. static int usbhs_dcp_dir_switch_to_write(struct usbhs_pkt *pkt, int *is_done)
  269. {
  270. struct usbhs_pipe *pipe = pkt->pipe;
  271. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  272. struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
  273. struct device *dev = usbhs_priv_to_dev(priv);
  274. int ret;
  275. usbhs_pipe_disable(pipe);
  276. ret = usbhsf_fifo_select(pipe, fifo, 1);
  277. if (ret < 0) {
  278. dev_err(dev, "%s() faile\n", __func__);
  279. return ret;
  280. }
  281. usbhs_pipe_sequence_data1(pipe); /* DATA1 */
  282. usbhsf_fifo_clear(pipe, fifo);
  283. usbhsf_send_terminator(pipe, fifo);
  284. usbhsf_fifo_unselect(pipe, fifo);
  285. usbhsf_tx_irq_ctrl(pipe, 1);
  286. usbhs_pipe_enable(pipe);
  287. return ret;
  288. }
  289. static int usbhs_dcp_dir_switch_to_read(struct usbhs_pkt *pkt, int *is_done)
  290. {
  291. struct usbhs_pipe *pipe = pkt->pipe;
  292. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  293. struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
  294. struct device *dev = usbhs_priv_to_dev(priv);
  295. int ret;
  296. usbhs_pipe_disable(pipe);
  297. ret = usbhsf_fifo_select(pipe, fifo, 0);
  298. if (ret < 0) {
  299. dev_err(dev, "%s() fail\n", __func__);
  300. return ret;
  301. }
  302. usbhs_pipe_sequence_data1(pipe); /* DATA1 */
  303. usbhsf_fifo_clear(pipe, fifo);
  304. usbhsf_fifo_unselect(pipe, fifo);
  305. usbhsf_rx_irq_ctrl(pipe, 1);
  306. usbhs_pipe_enable(pipe);
  307. return ret;
  308. }
  309. static int usbhs_dcp_dir_switch_done(struct usbhs_pkt *pkt, int *is_done)
  310. {
  311. struct usbhs_pipe *pipe = pkt->pipe;
  312. if (pkt->handler == &usbhs_dcp_status_stage_in_handler)
  313. usbhsf_tx_irq_ctrl(pipe, 0);
  314. else
  315. usbhsf_rx_irq_ctrl(pipe, 0);
  316. pkt->actual = pkt->length;
  317. *is_done = 1;
  318. return 0;
  319. }
  320. struct usbhs_pkt_handle usbhs_dcp_status_stage_in_handler = {
  321. .prepare = usbhs_dcp_dir_switch_to_write,
  322. .try_run = usbhs_dcp_dir_switch_done,
  323. };
  324. struct usbhs_pkt_handle usbhs_dcp_status_stage_out_handler = {
  325. .prepare = usbhs_dcp_dir_switch_to_read,
  326. .try_run = usbhs_dcp_dir_switch_done,
  327. };
  328. /*
  329. * DCP data stage (push)
  330. */
  331. static int usbhsf_dcp_data_stage_try_push(struct usbhs_pkt *pkt, int *is_done)
  332. {
  333. struct usbhs_pipe *pipe = pkt->pipe;
  334. usbhs_pipe_sequence_data1(pipe); /* DATA1 */
  335. /*
  336. * change handler to PIO push
  337. */
  338. pkt->handler = &usbhs_fifo_pio_push_handler;
  339. return pkt->handler->prepare(pkt, is_done);
  340. }
  341. struct usbhs_pkt_handle usbhs_dcp_data_stage_out_handler = {
  342. .prepare = usbhsf_dcp_data_stage_try_push,
  343. };
  344. /*
  345. * DCP data stage (pop)
  346. */
  347. static int usbhsf_dcp_data_stage_prepare_pop(struct usbhs_pkt *pkt,
  348. int *is_done)
  349. {
  350. struct usbhs_pipe *pipe = pkt->pipe;
  351. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  352. struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv);
  353. if (usbhs_pipe_is_busy(pipe))
  354. return 0;
  355. /*
  356. * prepare pop for DCP should
  357. * - change DCP direction,
  358. * - clear fifo
  359. * - DATA1
  360. */
  361. usbhs_pipe_disable(pipe);
  362. usbhs_pipe_sequence_data1(pipe); /* DATA1 */
  363. usbhsf_fifo_select(pipe, fifo, 0);
  364. usbhsf_fifo_clear(pipe, fifo);
  365. usbhsf_fifo_unselect(pipe, fifo);
  366. /*
  367. * change handler to PIO pop
  368. */
  369. pkt->handler = &usbhs_fifo_pio_pop_handler;
  370. return pkt->handler->prepare(pkt, is_done);
  371. }
  372. struct usbhs_pkt_handle usbhs_dcp_data_stage_in_handler = {
  373. .prepare = usbhsf_dcp_data_stage_prepare_pop,
  374. };
  375. /*
  376. * PIO push handler
  377. */
  378. static int usbhsf_pio_try_push(struct usbhs_pkt *pkt, int *is_done)
  379. {
  380. struct usbhs_pipe *pipe = pkt->pipe;
  381. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  382. struct device *dev = usbhs_priv_to_dev(priv);
  383. struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
  384. void __iomem *addr = priv->base + fifo->port;
  385. u8 *buf;
  386. int maxp = usbhs_pipe_get_maxpacket(pipe);
  387. int total_len;
  388. int i, ret, len;
  389. int is_short;
  390. ret = usbhsf_fifo_select(pipe, fifo, 1);
  391. if (ret < 0)
  392. return 0;
  393. ret = usbhs_pipe_is_accessible(pipe);
  394. if (ret < 0) {
  395. /* inaccessible pipe is not an error */
  396. ret = 0;
  397. goto usbhs_fifo_write_busy;
  398. }
  399. ret = usbhsf_fifo_barrier(priv, fifo);
  400. if (ret < 0)
  401. goto usbhs_fifo_write_busy;
  402. buf = pkt->buf + pkt->actual;
  403. len = pkt->length - pkt->actual;
  404. len = min(len, maxp);
  405. total_len = len;
  406. is_short = total_len < maxp;
  407. /*
  408. * FIXME
  409. *
  410. * 32-bit access only
  411. */
  412. if (len >= 4 && !((unsigned long)buf & 0x03)) {
  413. iowrite32_rep(addr, buf, len / 4);
  414. len %= 4;
  415. buf += total_len - len;
  416. }
  417. /* the rest operation */
  418. for (i = 0; i < len; i++)
  419. iowrite8(buf[i], addr + (0x03 - (i & 0x03)));
  420. /*
  421. * variable update
  422. */
  423. pkt->actual += total_len;
  424. if (pkt->actual < pkt->length)
  425. *is_done = 0; /* there are remainder data */
  426. else if (is_short)
  427. *is_done = 1; /* short packet */
  428. else
  429. *is_done = !pkt->zero; /* send zero packet ? */
  430. /*
  431. * pipe/irq handling
  432. */
  433. if (is_short)
  434. usbhsf_send_terminator(pipe, fifo);
  435. usbhsf_tx_irq_ctrl(pipe, !*is_done);
  436. usbhs_pipe_enable(pipe);
  437. dev_dbg(dev, " send %d (%d/ %d/ %d/ %d)\n",
  438. usbhs_pipe_number(pipe),
  439. pkt->length, pkt->actual, *is_done, pkt->zero);
  440. /*
  441. * Transmission end
  442. */
  443. if (*is_done) {
  444. if (usbhs_pipe_is_dcp(pipe))
  445. usbhs_dcp_control_transfer_done(pipe);
  446. }
  447. usbhsf_fifo_unselect(pipe, fifo);
  448. return 0;
  449. usbhs_fifo_write_busy:
  450. usbhsf_fifo_unselect(pipe, fifo);
  451. /*
  452. * pipe is busy.
  453. * retry in interrupt
  454. */
  455. usbhsf_tx_irq_ctrl(pipe, 1);
  456. return ret;
  457. }
  458. struct usbhs_pkt_handle usbhs_fifo_pio_push_handler = {
  459. .prepare = usbhsf_pio_try_push,
  460. .try_run = usbhsf_pio_try_push,
  461. };
  462. /*
  463. * PIO pop handler
  464. */
  465. static int usbhsf_prepare_pop(struct usbhs_pkt *pkt, int *is_done)
  466. {
  467. struct usbhs_pipe *pipe = pkt->pipe;
  468. if (usbhs_pipe_is_busy(pipe))
  469. return 0;
  470. /*
  471. * pipe enable to prepare packet receive
  472. */
  473. usbhs_pipe_enable(pipe);
  474. usbhsf_rx_irq_ctrl(pipe, 1);
  475. return 0;
  476. }
  477. static int usbhsf_pio_try_pop(struct usbhs_pkt *pkt, int *is_done)
  478. {
  479. struct usbhs_pipe *pipe = pkt->pipe;
  480. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  481. struct device *dev = usbhs_priv_to_dev(priv);
  482. struct usbhs_fifo *fifo = usbhsf_get_cfifo(priv); /* CFIFO */
  483. void __iomem *addr = priv->base + fifo->port;
  484. u8 *buf;
  485. u32 data = 0;
  486. int maxp = usbhs_pipe_get_maxpacket(pipe);
  487. int rcv_len, len;
  488. int i, ret;
  489. int total_len = 0;
  490. ret = usbhsf_fifo_select(pipe, fifo, 0);
  491. if (ret < 0)
  492. return 0;
  493. ret = usbhsf_fifo_barrier(priv, fifo);
  494. if (ret < 0)
  495. goto usbhs_fifo_read_busy;
  496. rcv_len = usbhsf_fifo_rcv_len(priv, fifo);
  497. buf = pkt->buf + pkt->actual;
  498. len = pkt->length - pkt->actual;
  499. len = min(len, rcv_len);
  500. total_len = len;
  501. /*
  502. * update actual length first here to decide disable pipe.
  503. * if this pipe keeps BUF status and all data were popped,
  504. * then, next interrupt/token will be issued again
  505. */
  506. pkt->actual += total_len;
  507. if ((pkt->actual == pkt->length) || /* receive all data */
  508. (total_len < maxp)) { /* short packet */
  509. *is_done = 1;
  510. usbhsf_rx_irq_ctrl(pipe, 0);
  511. usbhs_pipe_disable(pipe); /* disable pipe first */
  512. }
  513. /*
  514. * Buffer clear if Zero-Length packet
  515. *
  516. * see
  517. * "Operation" - "FIFO Buffer Memory" - "FIFO Port Function"
  518. */
  519. if (0 == rcv_len) {
  520. usbhsf_fifo_clear(pipe, fifo);
  521. goto usbhs_fifo_read_end;
  522. }
  523. /*
  524. * FIXME
  525. *
  526. * 32-bit access only
  527. */
  528. if (len >= 4 && !((unsigned long)buf & 0x03)) {
  529. ioread32_rep(addr, buf, len / 4);
  530. len %= 4;
  531. buf += total_len - len;
  532. }
  533. /* the rest operation */
  534. for (i = 0; i < len; i++) {
  535. if (!(i & 0x03))
  536. data = ioread32(addr);
  537. buf[i] = (data >> ((i & 0x03) * 8)) & 0xff;
  538. }
  539. usbhs_fifo_read_end:
  540. dev_dbg(dev, " recv %d (%d/ %d/ %d/ %d)\n",
  541. usbhs_pipe_number(pipe),
  542. pkt->length, pkt->actual, *is_done, pkt->zero);
  543. usbhs_fifo_read_busy:
  544. usbhsf_fifo_unselect(pipe, fifo);
  545. return ret;
  546. }
  547. struct usbhs_pkt_handle usbhs_fifo_pio_pop_handler = {
  548. .prepare = usbhsf_prepare_pop,
  549. .try_run = usbhsf_pio_try_pop,
  550. };
  551. /*
  552. * DCP ctrol statge handler
  553. */
  554. static int usbhsf_ctrl_stage_end(struct usbhs_pkt *pkt, int *is_done)
  555. {
  556. usbhs_dcp_control_transfer_done(pkt->pipe);
  557. *is_done = 1;
  558. return 0;
  559. }
  560. struct usbhs_pkt_handle usbhs_ctrl_stage_end_handler = {
  561. .prepare = usbhsf_ctrl_stage_end,
  562. .try_run = usbhsf_ctrl_stage_end,
  563. };
  564. /*
  565. * DMA fifo functions
  566. */
  567. static struct dma_chan *usbhsf_dma_chan_get(struct usbhs_fifo *fifo,
  568. struct usbhs_pkt *pkt)
  569. {
  570. if (&usbhs_fifo_dma_push_handler == pkt->handler)
  571. return fifo->tx_chan;
  572. if (&usbhs_fifo_dma_pop_handler == pkt->handler)
  573. return fifo->rx_chan;
  574. return NULL;
  575. }
  576. static struct usbhs_fifo *usbhsf_get_dma_fifo(struct usbhs_priv *priv,
  577. struct usbhs_pkt *pkt)
  578. {
  579. struct usbhs_fifo *fifo;
  580. /* DMA :: D0FIFO */
  581. fifo = usbhsf_get_d0fifo(priv);
  582. if (usbhsf_dma_chan_get(fifo, pkt) &&
  583. !usbhsf_fifo_is_busy(fifo))
  584. return fifo;
  585. /* DMA :: D1FIFO */
  586. fifo = usbhsf_get_d1fifo(priv);
  587. if (usbhsf_dma_chan_get(fifo, pkt) &&
  588. !usbhsf_fifo_is_busy(fifo))
  589. return fifo;
  590. return NULL;
  591. }
  592. #define usbhsf_dma_start(p, f) __usbhsf_dma_ctrl(p, f, DREQE)
  593. #define usbhsf_dma_stop(p, f) __usbhsf_dma_ctrl(p, f, 0)
  594. static void __usbhsf_dma_ctrl(struct usbhs_pipe *pipe,
  595. struct usbhs_fifo *fifo,
  596. u16 dreqe)
  597. {
  598. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  599. usbhs_bset(priv, fifo->sel, DREQE, dreqe);
  600. }
  601. #define usbhsf_dma_map(p) __usbhsf_dma_map_ctrl(p, 1)
  602. #define usbhsf_dma_unmap(p) __usbhsf_dma_map_ctrl(p, 0)
  603. static int __usbhsf_dma_map_ctrl(struct usbhs_pkt *pkt, int map)
  604. {
  605. struct usbhs_pipe *pipe = pkt->pipe;
  606. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  607. struct usbhs_pipe_info *info = usbhs_priv_to_pipeinfo(priv);
  608. return info->dma_map_ctrl(pkt, map);
  609. }
  610. static void usbhsf_dma_complete(void *arg);
  611. static void usbhsf_dma_prepare_tasklet(unsigned long data)
  612. {
  613. struct usbhs_pkt *pkt = (struct usbhs_pkt *)data;
  614. struct usbhs_pipe *pipe = pkt->pipe;
  615. struct usbhs_fifo *fifo = usbhs_pipe_to_fifo(pipe);
  616. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  617. struct scatterlist sg;
  618. struct dma_async_tx_descriptor *desc;
  619. struct dma_chan *chan = usbhsf_dma_chan_get(fifo, pkt);
  620. struct device *dev = usbhs_priv_to_dev(priv);
  621. enum dma_data_direction dir;
  622. dma_cookie_t cookie;
  623. dir = usbhs_pipe_is_dir_in(pipe) ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
  624. sg_init_table(&sg, 1);
  625. sg_set_page(&sg, virt_to_page(pkt->dma),
  626. pkt->length, offset_in_page(pkt->dma));
  627. sg_dma_address(&sg) = pkt->dma + pkt->actual;
  628. sg_dma_len(&sg) = pkt->trans;
  629. desc = chan->device->device_prep_slave_sg(chan, &sg, 1, dir,
  630. DMA_PREP_INTERRUPT |
  631. DMA_CTRL_ACK);
  632. if (!desc)
  633. return;
  634. desc->callback = usbhsf_dma_complete;
  635. desc->callback_param = pipe;
  636. cookie = desc->tx_submit(desc);
  637. if (cookie < 0) {
  638. dev_err(dev, "Failed to submit dma descriptor\n");
  639. return;
  640. }
  641. dev_dbg(dev, " %s %d (%d/ %d)\n",
  642. fifo->name, usbhs_pipe_number(pipe), pkt->length, pkt->zero);
  643. usbhsf_dma_start(pipe, fifo);
  644. dma_async_issue_pending(chan);
  645. }
  646. /*
  647. * DMA push handler
  648. */
  649. static int usbhsf_dma_prepare_push(struct usbhs_pkt *pkt, int *is_done)
  650. {
  651. struct usbhs_pipe *pipe = pkt->pipe;
  652. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  653. struct usbhs_fifo *fifo;
  654. int len = pkt->length - pkt->actual;
  655. int ret;
  656. if (usbhs_pipe_is_busy(pipe))
  657. return 0;
  658. /* use PIO if packet is less than pio_dma_border or pipe is DCP */
  659. if ((len < usbhs_get_dparam(priv, pio_dma_border)) ||
  660. usbhs_pipe_is_dcp(pipe))
  661. goto usbhsf_pio_prepare_push;
  662. if (len % 4) /* 32bit alignment */
  663. goto usbhsf_pio_prepare_push;
  664. if ((*(u32 *) pkt->buf + pkt->actual) & 0x7) /* 8byte alignment */
  665. goto usbhsf_pio_prepare_push;
  666. /* get enable DMA fifo */
  667. fifo = usbhsf_get_dma_fifo(priv, pkt);
  668. if (!fifo)
  669. goto usbhsf_pio_prepare_push;
  670. if (usbhsf_dma_map(pkt) < 0)
  671. goto usbhsf_pio_prepare_push;
  672. ret = usbhsf_fifo_select(pipe, fifo, 0);
  673. if (ret < 0)
  674. goto usbhsf_pio_prepare_push_unmap;
  675. pkt->trans = len;
  676. tasklet_init(&fifo->tasklet,
  677. usbhsf_dma_prepare_tasklet,
  678. (unsigned long)pkt);
  679. tasklet_schedule(&fifo->tasklet);
  680. return 0;
  681. usbhsf_pio_prepare_push_unmap:
  682. usbhsf_dma_unmap(pkt);
  683. usbhsf_pio_prepare_push:
  684. /*
  685. * change handler to PIO
  686. */
  687. pkt->handler = &usbhs_fifo_pio_push_handler;
  688. return pkt->handler->prepare(pkt, is_done);
  689. }
  690. static int usbhsf_dma_push_done(struct usbhs_pkt *pkt, int *is_done)
  691. {
  692. struct usbhs_pipe *pipe = pkt->pipe;
  693. pkt->actual = pkt->trans;
  694. *is_done = !pkt->zero; /* send zero packet ? */
  695. usbhsf_dma_stop(pipe, pipe->fifo);
  696. usbhsf_dma_unmap(pkt);
  697. usbhsf_fifo_unselect(pipe, pipe->fifo);
  698. return 0;
  699. }
  700. struct usbhs_pkt_handle usbhs_fifo_dma_push_handler = {
  701. .prepare = usbhsf_dma_prepare_push,
  702. .dma_done = usbhsf_dma_push_done,
  703. };
  704. /*
  705. * DMA pop handler
  706. */
  707. static int usbhsf_dma_try_pop(struct usbhs_pkt *pkt, int *is_done)
  708. {
  709. struct usbhs_pipe *pipe = pkt->pipe;
  710. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  711. struct usbhs_fifo *fifo;
  712. int len, ret;
  713. if (usbhs_pipe_is_busy(pipe))
  714. return 0;
  715. if (usbhs_pipe_is_dcp(pipe))
  716. goto usbhsf_pio_prepare_pop;
  717. /* get enable DMA fifo */
  718. fifo = usbhsf_get_dma_fifo(priv, pkt);
  719. if (!fifo)
  720. goto usbhsf_pio_prepare_pop;
  721. if ((*(u32 *) pkt->buf + pkt->actual) & 0x7) /* 8byte alignment */
  722. goto usbhsf_pio_prepare_pop;
  723. ret = usbhsf_fifo_select(pipe, fifo, 0);
  724. if (ret < 0)
  725. goto usbhsf_pio_prepare_pop;
  726. /* use PIO if packet is less than pio_dma_border */
  727. len = usbhsf_fifo_rcv_len(priv, fifo);
  728. len = min(pkt->length - pkt->actual, len);
  729. if (len % 4) /* 32bit alignment */
  730. goto usbhsf_pio_prepare_pop_unselect;
  731. if (len < usbhs_get_dparam(priv, pio_dma_border))
  732. goto usbhsf_pio_prepare_pop_unselect;
  733. ret = usbhsf_fifo_barrier(priv, fifo);
  734. if (ret < 0)
  735. goto usbhsf_pio_prepare_pop_unselect;
  736. if (usbhsf_dma_map(pkt) < 0)
  737. goto usbhsf_pio_prepare_pop_unselect;
  738. /* DMA */
  739. /*
  740. * usbhs_fifo_dma_pop_handler :: prepare
  741. * enabled irq to come here.
  742. * but it is no longer needed for DMA. disable it.
  743. */
  744. usbhsf_rx_irq_ctrl(pipe, 0);
  745. pkt->trans = len;
  746. tasklet_init(&fifo->tasklet,
  747. usbhsf_dma_prepare_tasklet,
  748. (unsigned long)pkt);
  749. tasklet_schedule(&fifo->tasklet);
  750. return 0;
  751. usbhsf_pio_prepare_pop_unselect:
  752. usbhsf_fifo_unselect(pipe, fifo);
  753. usbhsf_pio_prepare_pop:
  754. /*
  755. * change handler to PIO
  756. */
  757. pkt->handler = &usbhs_fifo_pio_pop_handler;
  758. return pkt->handler->try_run(pkt, is_done);
  759. }
  760. static int usbhsf_dma_pop_done(struct usbhs_pkt *pkt, int *is_done)
  761. {
  762. struct usbhs_pipe *pipe = pkt->pipe;
  763. int maxp = usbhs_pipe_get_maxpacket(pipe);
  764. usbhsf_dma_stop(pipe, pipe->fifo);
  765. usbhsf_dma_unmap(pkt);
  766. usbhsf_fifo_unselect(pipe, pipe->fifo);
  767. pkt->actual += pkt->trans;
  768. if ((pkt->actual == pkt->length) || /* receive all data */
  769. (pkt->trans < maxp)) { /* short packet */
  770. *is_done = 1;
  771. } else {
  772. /* re-enable */
  773. usbhsf_prepare_pop(pkt, is_done);
  774. }
  775. return 0;
  776. }
  777. struct usbhs_pkt_handle usbhs_fifo_dma_pop_handler = {
  778. .prepare = usbhsf_prepare_pop,
  779. .try_run = usbhsf_dma_try_pop,
  780. .dma_done = usbhsf_dma_pop_done
  781. };
  782. /*
  783. * DMA setting
  784. */
  785. static bool usbhsf_dma_filter(struct dma_chan *chan, void *param)
  786. {
  787. struct sh_dmae_slave *slave = param;
  788. /*
  789. * FIXME
  790. *
  791. * usbhs doesn't recognize id = 0 as valid DMA
  792. */
  793. if (0 == slave->slave_id)
  794. return false;
  795. chan->private = slave;
  796. return true;
  797. }
  798. static void usbhsf_dma_quit(struct usbhs_priv *priv, struct usbhs_fifo *fifo)
  799. {
  800. if (fifo->tx_chan)
  801. dma_release_channel(fifo->tx_chan);
  802. if (fifo->rx_chan)
  803. dma_release_channel(fifo->rx_chan);
  804. fifo->tx_chan = NULL;
  805. fifo->rx_chan = NULL;
  806. }
  807. static void usbhsf_dma_init(struct usbhs_priv *priv,
  808. struct usbhs_fifo *fifo)
  809. {
  810. struct device *dev = usbhs_priv_to_dev(priv);
  811. dma_cap_mask_t mask;
  812. dma_cap_zero(mask);
  813. dma_cap_set(DMA_SLAVE, mask);
  814. fifo->tx_chan = dma_request_channel(mask, usbhsf_dma_filter,
  815. &fifo->tx_slave);
  816. dma_cap_zero(mask);
  817. dma_cap_set(DMA_SLAVE, mask);
  818. fifo->rx_chan = dma_request_channel(mask, usbhsf_dma_filter,
  819. &fifo->rx_slave);
  820. if (fifo->tx_chan || fifo->rx_chan)
  821. dev_dbg(dev, "enable DMAEngine (%s%s%s)\n",
  822. fifo->name,
  823. fifo->tx_chan ? "[TX]" : " ",
  824. fifo->rx_chan ? "[RX]" : " ");
  825. }
  826. /*
  827. * irq functions
  828. */
  829. static int usbhsf_irq_empty(struct usbhs_priv *priv,
  830. struct usbhs_irq_state *irq_state)
  831. {
  832. struct usbhs_pipe *pipe;
  833. struct device *dev = usbhs_priv_to_dev(priv);
  834. int i, ret;
  835. if (!irq_state->bempsts) {
  836. dev_err(dev, "debug %s !!\n", __func__);
  837. return -EIO;
  838. }
  839. dev_dbg(dev, "irq empty [0x%04x]\n", irq_state->bempsts);
  840. /*
  841. * search interrupted "pipe"
  842. * not "uep".
  843. */
  844. usbhs_for_each_pipe_with_dcp(pipe, priv, i) {
  845. if (!(irq_state->bempsts & (1 << i)))
  846. continue;
  847. ret = usbhsf_pkt_handler(pipe, USBHSF_PKT_TRY_RUN);
  848. if (ret < 0)
  849. dev_err(dev, "irq_empty run_error %d : %d\n", i, ret);
  850. }
  851. return 0;
  852. }
  853. static int usbhsf_irq_ready(struct usbhs_priv *priv,
  854. struct usbhs_irq_state *irq_state)
  855. {
  856. struct usbhs_pipe *pipe;
  857. struct device *dev = usbhs_priv_to_dev(priv);
  858. int i, ret;
  859. if (!irq_state->brdysts) {
  860. dev_err(dev, "debug %s !!\n", __func__);
  861. return -EIO;
  862. }
  863. dev_dbg(dev, "irq ready [0x%04x]\n", irq_state->brdysts);
  864. /*
  865. * search interrupted "pipe"
  866. * not "uep".
  867. */
  868. usbhs_for_each_pipe_with_dcp(pipe, priv, i) {
  869. if (!(irq_state->brdysts & (1 << i)))
  870. continue;
  871. ret = usbhsf_pkt_handler(pipe, USBHSF_PKT_TRY_RUN);
  872. if (ret < 0)
  873. dev_err(dev, "irq_ready run_error %d : %d\n", i, ret);
  874. }
  875. return 0;
  876. }
  877. static void usbhsf_dma_complete(void *arg)
  878. {
  879. struct usbhs_pipe *pipe = arg;
  880. struct usbhs_priv *priv = usbhs_pipe_to_priv(pipe);
  881. struct device *dev = usbhs_priv_to_dev(priv);
  882. int ret;
  883. ret = usbhsf_pkt_handler(pipe, USBHSF_PKT_DMA_DONE);
  884. if (ret < 0)
  885. dev_err(dev, "dma_complete run_error %d : %d\n",
  886. usbhs_pipe_number(pipe), ret);
  887. }
  888. /*
  889. * fifo init
  890. */
  891. void usbhs_fifo_init(struct usbhs_priv *priv)
  892. {
  893. struct usbhs_mod *mod = usbhs_mod_get_current(priv);
  894. struct usbhs_fifo *cfifo = usbhsf_get_cfifo(priv);
  895. struct usbhs_fifo *d0fifo = usbhsf_get_d0fifo(priv);
  896. struct usbhs_fifo *d1fifo = usbhsf_get_d1fifo(priv);
  897. mod->irq_empty = usbhsf_irq_empty;
  898. mod->irq_ready = usbhsf_irq_ready;
  899. mod->irq_bempsts = 0;
  900. mod->irq_brdysts = 0;
  901. cfifo->pipe = NULL;
  902. cfifo->tx_chan = NULL;
  903. cfifo->rx_chan = NULL;
  904. d0fifo->pipe = NULL;
  905. d0fifo->tx_chan = NULL;
  906. d0fifo->rx_chan = NULL;
  907. d1fifo->pipe = NULL;
  908. d1fifo->tx_chan = NULL;
  909. d1fifo->rx_chan = NULL;
  910. usbhsf_dma_init(priv, usbhsf_get_d0fifo(priv));
  911. usbhsf_dma_init(priv, usbhsf_get_d1fifo(priv));
  912. }
  913. void usbhs_fifo_quit(struct usbhs_priv *priv)
  914. {
  915. struct usbhs_mod *mod = usbhs_mod_get_current(priv);
  916. mod->irq_empty = NULL;
  917. mod->irq_ready = NULL;
  918. mod->irq_bempsts = 0;
  919. mod->irq_brdysts = 0;
  920. usbhsf_dma_quit(priv, usbhsf_get_d0fifo(priv));
  921. usbhsf_dma_quit(priv, usbhsf_get_d1fifo(priv));
  922. }
  923. int usbhs_fifo_probe(struct usbhs_priv *priv)
  924. {
  925. struct usbhs_fifo *fifo;
  926. /* CFIFO */
  927. fifo = usbhsf_get_cfifo(priv);
  928. fifo->name = "CFIFO";
  929. fifo->port = CFIFO;
  930. fifo->sel = CFIFOSEL;
  931. fifo->ctr = CFIFOCTR;
  932. /* D0FIFO */
  933. fifo = usbhsf_get_d0fifo(priv);
  934. fifo->name = "D0FIFO";
  935. fifo->port = D0FIFO;
  936. fifo->sel = D0FIFOSEL;
  937. fifo->ctr = D0FIFOCTR;
  938. fifo->tx_slave.slave_id = usbhs_get_dparam(priv, d0_tx_id);
  939. fifo->rx_slave.slave_id = usbhs_get_dparam(priv, d0_rx_id);
  940. /* D1FIFO */
  941. fifo = usbhsf_get_d1fifo(priv);
  942. fifo->name = "D1FIFO";
  943. fifo->port = D1FIFO;
  944. fifo->sel = D1FIFOSEL;
  945. fifo->ctr = D1FIFOCTR;
  946. fifo->tx_slave.slave_id = usbhs_get_dparam(priv, d1_tx_id);
  947. fifo->rx_slave.slave_id = usbhs_get_dparam(priv, d1_rx_id);
  948. return 0;
  949. }
  950. void usbhs_fifo_remove(struct usbhs_priv *priv)
  951. {
  952. }