esp.c 68 KB

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  1. /*
  2. * esp.c - driver for Hayes ESP serial cards
  3. *
  4. * --- Notices from serial.c, upon which this driver is based ---
  5. *
  6. * Copyright (C) 1991, 1992 Linus Torvalds
  7. *
  8. * Extensively rewritten by Theodore Ts'o, 8/16/92 -- 9/14/92. Now
  9. * much more extensible to support other serial cards based on the
  10. * 16450/16550A UART's. Added support for the AST FourPort and the
  11. * Accent Async board.
  12. *
  13. * set_serial_info fixed to set the flags, custom divisor, and uart
  14. * type fields. Fix suggested by Michael K. Johnson 12/12/92.
  15. *
  16. * 11/95: TIOCMIWAIT, TIOCGICOUNT by Angelo Haritsis <ah@doc.ic.ac.uk>
  17. *
  18. * 03/96: Modularised by Angelo Haritsis <ah@doc.ic.ac.uk>
  19. *
  20. * rs_set_termios fixed to look also for changes of the input
  21. * flags INPCK, BRKINT, PARMRK, IGNPAR and IGNBRK.
  22. * Bernd Anh�pl 05/17/96.
  23. *
  24. * --- End of notices from serial.c ---
  25. *
  26. * Support for the ESP serial card by Andrew J. Robinson
  27. * <arobinso@nyx.net> (Card detection routine taken from a patch
  28. * by Dennis J. Boylan). Patches to allow use with 2.1.x contributed
  29. * by Chris Faylor.
  30. *
  31. * Most recent changes: (Andrew J. Robinson)
  32. * Support for PIO mode. This allows the driver to work properly with
  33. * multiport cards.
  34. *
  35. * Arnaldo Carvalho de Melo <acme@conectiva.com.br> -
  36. * several cleanups, use module_init/module_exit, etc
  37. *
  38. * This module exports the following rs232 io functions:
  39. *
  40. * int espserial_init(void);
  41. */
  42. #include <linux/module.h>
  43. #include <linux/errno.h>
  44. #include <linux/signal.h>
  45. #include <linux/sched.h>
  46. #include <linux/interrupt.h>
  47. #include <linux/tty.h>
  48. #include <linux/tty_flip.h>
  49. #include <linux/serial.h>
  50. #include <linux/serialP.h>
  51. #include <linux/serial_reg.h>
  52. #include <linux/major.h>
  53. #include <linux/string.h>
  54. #include <linux/fcntl.h>
  55. #include <linux/ptrace.h>
  56. #include <linux/ioport.h>
  57. #include <linux/mm.h>
  58. #include <linux/init.h>
  59. #include <linux/delay.h>
  60. #include <asm/system.h>
  61. #include <asm/io.h>
  62. #include <asm/bitops.h>
  63. #include <asm/dma.h>
  64. #include <linux/slab.h>
  65. #include <asm/uaccess.h>
  66. #include <linux/hayesesp.h>
  67. #define NR_PORTS 64 /* maximum number of ports */
  68. #define NR_PRIMARY 8 /* maximum number of primary ports */
  69. #define REGION_SIZE 8 /* size of io region to request */
  70. /* The following variables can be set by giving module options */
  71. static int irq[NR_PRIMARY]; /* IRQ for each base port */
  72. static unsigned int divisor[NR_PRIMARY]; /* custom divisor for each port */
  73. static unsigned int dma = ESP_DMA_CHANNEL; /* DMA channel */
  74. static unsigned int rx_trigger = ESP_RX_TRIGGER;
  75. static unsigned int tx_trigger = ESP_TX_TRIGGER;
  76. static unsigned int flow_off = ESP_FLOW_OFF;
  77. static unsigned int flow_on = ESP_FLOW_ON;
  78. static unsigned int rx_timeout = ESP_RX_TMOUT;
  79. static unsigned int pio_threshold = ESP_PIO_THRESHOLD;
  80. MODULE_LICENSE("GPL");
  81. module_param_array(irq, int, NULL, 0);
  82. module_param_array(divisor, uint, NULL, 0);
  83. module_param(dma, uint, 0);
  84. module_param(rx_trigger, uint, 0);
  85. module_param(tx_trigger, uint, 0);
  86. module_param(flow_off, uint, 0);
  87. module_param(flow_on, uint, 0);
  88. module_param(rx_timeout, uint, 0);
  89. module_param(pio_threshold, uint, 0);
  90. /* END */
  91. static char *dma_buffer;
  92. static int dma_bytes;
  93. static struct esp_pio_buffer *free_pio_buf;
  94. #define DMA_BUFFER_SZ 1024
  95. #define WAKEUP_CHARS 1024
  96. static char serial_name[] __initdata = "ESP serial driver";
  97. static char serial_version[] __initdata = "2.2";
  98. static struct tty_driver *esp_driver;
  99. /* serial subtype definitions */
  100. #define SERIAL_TYPE_NORMAL 1
  101. /*
  102. * Serial driver configuration section. Here are the various options:
  103. *
  104. * SERIAL_PARANOIA_CHECK
  105. * Check the magic number for the esp_structure where
  106. * ever possible.
  107. */
  108. #undef SERIAL_PARANOIA_CHECK
  109. #define SERIAL_DO_RESTART
  110. #undef SERIAL_DEBUG_INTR
  111. #undef SERIAL_DEBUG_OPEN
  112. #undef SERIAL_DEBUG_FLOW
  113. #if defined(MODULE) && defined(SERIAL_DEBUG_MCOUNT)
  114. #define DBG_CNT(s) printk("(%s): [%x] refc=%d, serc=%d, ttyc=%d -> %s\n", \
  115. tty->name, (info->flags), serial_driver.refcount,info->count,tty->count,s)
  116. #else
  117. #define DBG_CNT(s)
  118. #endif
  119. static struct esp_struct *ports;
  120. static void change_speed(struct esp_struct *info);
  121. static void rs_wait_until_sent(struct tty_struct *, int);
  122. /*
  123. * The ESP card has a clock rate of 14.7456 MHz (that is, 2**ESPC_SCALE
  124. * times the normal 1.8432 Mhz clock of most serial boards).
  125. */
  126. #define BASE_BAUD ((1843200 / 16) * (1 << ESPC_SCALE))
  127. /* Standard COM flags (except for COM4, because of the 8514 problem) */
  128. #define STD_COM_FLAGS (ASYNC_BOOT_AUTOCONF | ASYNC_SKIP_TEST)
  129. static inline int serial_paranoia_check(struct esp_struct *info,
  130. char *name, const char *routine)
  131. {
  132. #ifdef SERIAL_PARANOIA_CHECK
  133. static const char badmagic[] = KERN_WARNING
  134. "Warning: bad magic number for serial struct (%s) in %s\n";
  135. static const char badinfo[] = KERN_WARNING
  136. "Warning: null esp_struct for (%s) in %s\n";
  137. if (!info) {
  138. printk(badinfo, name, routine);
  139. return 1;
  140. }
  141. if (info->magic != ESP_MAGIC) {
  142. printk(badmagic, name, routine);
  143. return 1;
  144. }
  145. #endif
  146. return 0;
  147. }
  148. static inline unsigned int serial_in(struct esp_struct *info, int offset)
  149. {
  150. return inb(info->port + offset);
  151. }
  152. static inline void serial_out(struct esp_struct *info, int offset,
  153. unsigned char value)
  154. {
  155. outb(value, info->port+offset);
  156. }
  157. /*
  158. * ------------------------------------------------------------
  159. * rs_stop() and rs_start()
  160. *
  161. * This routines are called before setting or resetting tty->stopped.
  162. * They enable or disable transmitter interrupts, as necessary.
  163. * ------------------------------------------------------------
  164. */
  165. static void rs_stop(struct tty_struct *tty)
  166. {
  167. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  168. unsigned long flags;
  169. if (serial_paranoia_check(info, tty->name, "rs_stop"))
  170. return;
  171. spin_lock_irqsave(&info->lock, flags);
  172. if (info->IER & UART_IER_THRI) {
  173. info->IER &= ~UART_IER_THRI;
  174. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  175. serial_out(info, UART_ESI_CMD2, info->IER);
  176. }
  177. spin_unlock_irqrestore(&info->lock, flags);
  178. }
  179. static void rs_start(struct tty_struct *tty)
  180. {
  181. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  182. unsigned long flags;
  183. if (serial_paranoia_check(info, tty->name, "rs_start"))
  184. return;
  185. spin_lock_irqsave(&info->lock, flags);
  186. if (info->xmit_cnt && info->xmit_buf && !(info->IER & UART_IER_THRI)) {
  187. info->IER |= UART_IER_THRI;
  188. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  189. serial_out(info, UART_ESI_CMD2, info->IER);
  190. }
  191. spin_unlock_irqrestore(&info->lock, flags);
  192. }
  193. /*
  194. * ----------------------------------------------------------------------
  195. *
  196. * Here starts the interrupt handling routines. All of the following
  197. * subroutines are declared as inline and are folded into
  198. * rs_interrupt(). They were separated out for readability's sake.
  199. *
  200. * Note: rs_interrupt() is a "fast" interrupt, which means that it
  201. * runs with interrupts turned off. People who may want to modify
  202. * rs_interrupt() should try to keep the interrupt handler as fast as
  203. * possible. After you are done making modifications, it is not a bad
  204. * idea to do:
  205. *
  206. * gcc -S -DKERNEL -Wall -Wstrict-prototypes -O6 -fomit-frame-pointer serial.c
  207. *
  208. * and look at the resulting assemble code in serial.s.
  209. *
  210. * - Ted Ts'o (tytso@mit.edu), 7-Mar-93
  211. * -----------------------------------------------------------------------
  212. */
  213. /*
  214. * This routine is used by the interrupt handler to schedule
  215. * processing in the software interrupt portion of the driver.
  216. */
  217. static inline void rs_sched_event(struct esp_struct *info,
  218. int event)
  219. {
  220. info->event |= 1 << event;
  221. schedule_work(&info->tqueue);
  222. }
  223. static DEFINE_SPINLOCK(pio_lock);
  224. static inline struct esp_pio_buffer *get_pio_buffer(void)
  225. {
  226. struct esp_pio_buffer *buf;
  227. unsigned long flags;
  228. spin_lock_irqsave(&pio_lock, flags);
  229. if (free_pio_buf) {
  230. buf = free_pio_buf;
  231. free_pio_buf = buf->next;
  232. } else {
  233. buf = kmalloc(sizeof(struct esp_pio_buffer), GFP_ATOMIC);
  234. }
  235. spin_unlock_irqrestore(&pio_lock, flags);
  236. return buf;
  237. }
  238. static inline void release_pio_buffer(struct esp_pio_buffer *buf)
  239. {
  240. unsigned long flags;
  241. spin_lock_irqsave(&pio_lock, flags);
  242. buf->next = free_pio_buf;
  243. free_pio_buf = buf;
  244. spin_unlock_irqrestore(&pio_lock, flags);
  245. }
  246. static inline void receive_chars_pio(struct esp_struct *info, int num_bytes)
  247. {
  248. struct tty_struct *tty = info->tty;
  249. int i;
  250. struct esp_pio_buffer *pio_buf;
  251. struct esp_pio_buffer *err_buf;
  252. unsigned char status_mask;
  253. pio_buf = get_pio_buffer();
  254. if (!pio_buf)
  255. return;
  256. err_buf = get_pio_buffer();
  257. if (!err_buf) {
  258. release_pio_buffer(pio_buf);
  259. return;
  260. }
  261. status_mask = (info->read_status_mask >> 2) & 0x07;
  262. for (i = 0; i < num_bytes - 1; i += 2) {
  263. *((unsigned short *)(pio_buf->data + i)) =
  264. inw(info->port + UART_ESI_RX);
  265. err_buf->data[i] = serial_in(info, UART_ESI_RWS);
  266. err_buf->data[i + 1] = (err_buf->data[i] >> 3) & status_mask;
  267. err_buf->data[i] &= status_mask;
  268. }
  269. if (num_bytes & 0x0001) {
  270. pio_buf->data[num_bytes - 1] = serial_in(info, UART_ESI_RX);
  271. err_buf->data[num_bytes - 1] =
  272. (serial_in(info, UART_ESI_RWS) >> 3) & status_mask;
  273. }
  274. /* make sure everything is still ok since interrupts were enabled */
  275. tty = info->tty;
  276. if (!tty) {
  277. release_pio_buffer(pio_buf);
  278. release_pio_buffer(err_buf);
  279. info->stat_flags &= ~ESP_STAT_RX_TIMEOUT;
  280. return;
  281. }
  282. status_mask = (info->ignore_status_mask >> 2) & 0x07;
  283. for (i = 0; i < num_bytes; i++) {
  284. if (!(err_buf->data[i] & status_mask)) {
  285. int flag = 0;
  286. if (err_buf->data[i] & 0x04) {
  287. flag = TTY_BREAK;
  288. if (info->flags & ASYNC_SAK)
  289. do_SAK(tty);
  290. }
  291. else if (err_buf->data[i] & 0x02)
  292. flag = TTY_FRAME;
  293. else if (err_buf->data[i] & 0x01)
  294. flag = TTY_PARITY;
  295. tty_insert_flip_char(tty, pio_buf->data[i], flag);
  296. }
  297. }
  298. tty_schedule_flip(tty);
  299. info->stat_flags &= ~ESP_STAT_RX_TIMEOUT;
  300. release_pio_buffer(pio_buf);
  301. release_pio_buffer(err_buf);
  302. }
  303. static inline void receive_chars_dma(struct esp_struct *info, int num_bytes)
  304. {
  305. unsigned long flags;
  306. info->stat_flags &= ~ESP_STAT_RX_TIMEOUT;
  307. dma_bytes = num_bytes;
  308. info->stat_flags |= ESP_STAT_DMA_RX;
  309. flags=claim_dma_lock();
  310. disable_dma(dma);
  311. clear_dma_ff(dma);
  312. set_dma_mode(dma, DMA_MODE_READ);
  313. set_dma_addr(dma, isa_virt_to_bus(dma_buffer));
  314. set_dma_count(dma, dma_bytes);
  315. enable_dma(dma);
  316. release_dma_lock(flags);
  317. serial_out(info, UART_ESI_CMD1, ESI_START_DMA_RX);
  318. }
  319. static inline void receive_chars_dma_done(struct esp_struct *info,
  320. int status)
  321. {
  322. struct tty_struct *tty = info->tty;
  323. int num_bytes;
  324. unsigned long flags;
  325. flags=claim_dma_lock();
  326. disable_dma(dma);
  327. clear_dma_ff(dma);
  328. info->stat_flags &= ~ESP_STAT_DMA_RX;
  329. num_bytes = dma_bytes - get_dma_residue(dma);
  330. release_dma_lock(flags);
  331. info->icount.rx += num_bytes;
  332. if (num_bytes > 0) {
  333. tty_insert_flip_string(tty, dma_buffer, num_bytes - 1);
  334. status &= (0x1c & info->read_status_mask);
  335. /* Is the status significant or do we throw the last byte ? */
  336. if (!(status & info->ignore_status_mask)) {
  337. int statflag = 0;
  338. if (status & 0x10) {
  339. statflag = TTY_BREAK;
  340. (info->icount.brk)++;
  341. if (info->flags & ASYNC_SAK)
  342. do_SAK(tty);
  343. } else if (status & 0x08) {
  344. statflag = TTY_FRAME;
  345. (info->icount.frame)++;
  346. }
  347. else if (status & 0x04) {
  348. statflag = TTY_PARITY;
  349. (info->icount.parity)++;
  350. }
  351. tty_insert_flip_char(tty, dma_buffer[num_bytes - 1], statflag);
  352. }
  353. tty_schedule_flip(tty);
  354. }
  355. if (dma_bytes != num_bytes) {
  356. num_bytes = dma_bytes - num_bytes;
  357. dma_bytes = 0;
  358. receive_chars_dma(info, num_bytes);
  359. } else
  360. dma_bytes = 0;
  361. }
  362. /* Caller must hold info->lock */
  363. static inline void transmit_chars_pio(struct esp_struct *info,
  364. int space_avail)
  365. {
  366. int i;
  367. struct esp_pio_buffer *pio_buf;
  368. pio_buf = get_pio_buffer();
  369. if (!pio_buf)
  370. return;
  371. while (space_avail && info->xmit_cnt) {
  372. if (info->xmit_tail + space_avail <= ESP_XMIT_SIZE) {
  373. memcpy(pio_buf->data,
  374. &(info->xmit_buf[info->xmit_tail]),
  375. space_avail);
  376. } else {
  377. i = ESP_XMIT_SIZE - info->xmit_tail;
  378. memcpy(pio_buf->data,
  379. &(info->xmit_buf[info->xmit_tail]), i);
  380. memcpy(&(pio_buf->data[i]), info->xmit_buf,
  381. space_avail - i);
  382. }
  383. info->xmit_cnt -= space_avail;
  384. info->xmit_tail = (info->xmit_tail + space_avail) &
  385. (ESP_XMIT_SIZE - 1);
  386. for (i = 0; i < space_avail - 1; i += 2) {
  387. outw(*((unsigned short *)(pio_buf->data + i)),
  388. info->port + UART_ESI_TX);
  389. }
  390. if (space_avail & 0x0001)
  391. serial_out(info, UART_ESI_TX,
  392. pio_buf->data[space_avail - 1]);
  393. if (info->xmit_cnt) {
  394. serial_out(info, UART_ESI_CMD1, ESI_NO_COMMAND);
  395. serial_out(info, UART_ESI_CMD1, ESI_GET_TX_AVAIL);
  396. space_avail = serial_in(info, UART_ESI_STAT1) << 8;
  397. space_avail |= serial_in(info, UART_ESI_STAT2);
  398. if (space_avail > info->xmit_cnt)
  399. space_avail = info->xmit_cnt;
  400. }
  401. }
  402. if (info->xmit_cnt < WAKEUP_CHARS) {
  403. rs_sched_event(info, ESP_EVENT_WRITE_WAKEUP);
  404. #ifdef SERIAL_DEBUG_INTR
  405. printk("THRE...");
  406. #endif
  407. if (info->xmit_cnt <= 0) {
  408. info->IER &= ~UART_IER_THRI;
  409. serial_out(info, UART_ESI_CMD1,
  410. ESI_SET_SRV_MASK);
  411. serial_out(info, UART_ESI_CMD2, info->IER);
  412. }
  413. }
  414. release_pio_buffer(pio_buf);
  415. }
  416. /* Caller must hold info->lock */
  417. static inline void transmit_chars_dma(struct esp_struct *info, int num_bytes)
  418. {
  419. unsigned long flags;
  420. dma_bytes = num_bytes;
  421. if (info->xmit_tail + dma_bytes <= ESP_XMIT_SIZE) {
  422. memcpy(dma_buffer, &(info->xmit_buf[info->xmit_tail]),
  423. dma_bytes);
  424. } else {
  425. int i = ESP_XMIT_SIZE - info->xmit_tail;
  426. memcpy(dma_buffer, &(info->xmit_buf[info->xmit_tail]),
  427. i);
  428. memcpy(&(dma_buffer[i]), info->xmit_buf, dma_bytes - i);
  429. }
  430. info->xmit_cnt -= dma_bytes;
  431. info->xmit_tail = (info->xmit_tail + dma_bytes) & (ESP_XMIT_SIZE - 1);
  432. if (info->xmit_cnt < WAKEUP_CHARS) {
  433. rs_sched_event(info, ESP_EVENT_WRITE_WAKEUP);
  434. #ifdef SERIAL_DEBUG_INTR
  435. printk("THRE...");
  436. #endif
  437. if (info->xmit_cnt <= 0) {
  438. info->IER &= ~UART_IER_THRI;
  439. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  440. serial_out(info, UART_ESI_CMD2, info->IER);
  441. }
  442. }
  443. info->stat_flags |= ESP_STAT_DMA_TX;
  444. flags=claim_dma_lock();
  445. disable_dma(dma);
  446. clear_dma_ff(dma);
  447. set_dma_mode(dma, DMA_MODE_WRITE);
  448. set_dma_addr(dma, isa_virt_to_bus(dma_buffer));
  449. set_dma_count(dma, dma_bytes);
  450. enable_dma(dma);
  451. release_dma_lock(flags);
  452. serial_out(info, UART_ESI_CMD1, ESI_START_DMA_TX);
  453. }
  454. static inline void transmit_chars_dma_done(struct esp_struct *info)
  455. {
  456. int num_bytes;
  457. unsigned long flags;
  458. flags=claim_dma_lock();
  459. disable_dma(dma);
  460. clear_dma_ff(dma);
  461. num_bytes = dma_bytes - get_dma_residue(dma);
  462. info->icount.tx += dma_bytes;
  463. release_dma_lock(flags);
  464. if (dma_bytes != num_bytes) {
  465. dma_bytes -= num_bytes;
  466. memmove(dma_buffer, dma_buffer + num_bytes, dma_bytes);
  467. flags=claim_dma_lock();
  468. disable_dma(dma);
  469. clear_dma_ff(dma);
  470. set_dma_mode(dma, DMA_MODE_WRITE);
  471. set_dma_addr(dma, isa_virt_to_bus(dma_buffer));
  472. set_dma_count(dma, dma_bytes);
  473. enable_dma(dma);
  474. release_dma_lock(flags);
  475. serial_out(info, UART_ESI_CMD1, ESI_START_DMA_TX);
  476. } else {
  477. dma_bytes = 0;
  478. info->stat_flags &= ~ESP_STAT_DMA_TX;
  479. }
  480. }
  481. static inline void check_modem_status(struct esp_struct *info)
  482. {
  483. int status;
  484. serial_out(info, UART_ESI_CMD1, ESI_GET_UART_STAT);
  485. status = serial_in(info, UART_ESI_STAT2);
  486. if (status & UART_MSR_ANY_DELTA) {
  487. /* update input line counters */
  488. if (status & UART_MSR_TERI)
  489. info->icount.rng++;
  490. if (status & UART_MSR_DDSR)
  491. info->icount.dsr++;
  492. if (status & UART_MSR_DDCD)
  493. info->icount.dcd++;
  494. if (status & UART_MSR_DCTS)
  495. info->icount.cts++;
  496. wake_up_interruptible(&info->delta_msr_wait);
  497. }
  498. if ((info->flags & ASYNC_CHECK_CD) && (status & UART_MSR_DDCD)) {
  499. #if (defined(SERIAL_DEBUG_OPEN) || defined(SERIAL_DEBUG_INTR))
  500. printk("ttys%d CD now %s...", info->line,
  501. (status & UART_MSR_DCD) ? "on" : "off");
  502. #endif
  503. if (status & UART_MSR_DCD)
  504. wake_up_interruptible(&info->open_wait);
  505. else {
  506. #ifdef SERIAL_DEBUG_OPEN
  507. printk("scheduling hangup...");
  508. #endif
  509. schedule_work(&info->tqueue_hangup);
  510. }
  511. }
  512. }
  513. /*
  514. * This is the serial driver's interrupt routine
  515. */
  516. static irqreturn_t rs_interrupt_single(int irq, void *dev_id,
  517. struct pt_regs *regs)
  518. {
  519. struct esp_struct * info;
  520. unsigned err_status;
  521. unsigned int scratch;
  522. #ifdef SERIAL_DEBUG_INTR
  523. printk("rs_interrupt_single(%d)...", irq);
  524. #endif
  525. info = (struct esp_struct *)dev_id;
  526. err_status = 0;
  527. scratch = serial_in(info, UART_ESI_SID);
  528. spin_lock(&info->lock);
  529. if (!info->tty) {
  530. spin_unlock(&info->lock);
  531. return IRQ_NONE;
  532. }
  533. if (scratch & 0x04) { /* error */
  534. serial_out(info, UART_ESI_CMD1, ESI_GET_ERR_STAT);
  535. err_status = serial_in(info, UART_ESI_STAT1);
  536. serial_in(info, UART_ESI_STAT2);
  537. if (err_status & 0x01)
  538. info->stat_flags |= ESP_STAT_RX_TIMEOUT;
  539. if (err_status & 0x20) /* UART status */
  540. check_modem_status(info);
  541. if (err_status & 0x80) /* Start break */
  542. wake_up_interruptible(&info->break_wait);
  543. }
  544. if ((scratch & 0x88) || /* DMA completed or timed out */
  545. (err_status & 0x1c) /* receive error */) {
  546. if (info->stat_flags & ESP_STAT_DMA_RX)
  547. receive_chars_dma_done(info, err_status);
  548. else if (info->stat_flags & ESP_STAT_DMA_TX)
  549. transmit_chars_dma_done(info);
  550. }
  551. if (!(info->stat_flags & (ESP_STAT_DMA_RX | ESP_STAT_DMA_TX)) &&
  552. ((scratch & 0x01) || (info->stat_flags & ESP_STAT_RX_TIMEOUT)) &&
  553. (info->IER & UART_IER_RDI)) {
  554. int num_bytes;
  555. serial_out(info, UART_ESI_CMD1, ESI_NO_COMMAND);
  556. serial_out(info, UART_ESI_CMD1, ESI_GET_RX_AVAIL);
  557. num_bytes = serial_in(info, UART_ESI_STAT1) << 8;
  558. num_bytes |= serial_in(info, UART_ESI_STAT2);
  559. num_bytes = tty_buffer_request_room(info->tty, num_bytes);
  560. if (num_bytes) {
  561. if (dma_bytes ||
  562. (info->stat_flags & ESP_STAT_USE_PIO) ||
  563. (num_bytes <= info->config.pio_threshold))
  564. receive_chars_pio(info, num_bytes);
  565. else
  566. receive_chars_dma(info, num_bytes);
  567. }
  568. }
  569. if (!(info->stat_flags & (ESP_STAT_DMA_RX | ESP_STAT_DMA_TX)) &&
  570. (scratch & 0x02) && (info->IER & UART_IER_THRI)) {
  571. if ((info->xmit_cnt <= 0) || info->tty->stopped) {
  572. info->IER &= ~UART_IER_THRI;
  573. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  574. serial_out(info, UART_ESI_CMD2, info->IER);
  575. } else {
  576. int num_bytes;
  577. serial_out(info, UART_ESI_CMD1, ESI_NO_COMMAND);
  578. serial_out(info, UART_ESI_CMD1, ESI_GET_TX_AVAIL);
  579. num_bytes = serial_in(info, UART_ESI_STAT1) << 8;
  580. num_bytes |= serial_in(info, UART_ESI_STAT2);
  581. if (num_bytes > info->xmit_cnt)
  582. num_bytes = info->xmit_cnt;
  583. if (num_bytes) {
  584. if (dma_bytes ||
  585. (info->stat_flags & ESP_STAT_USE_PIO) ||
  586. (num_bytes <= info->config.pio_threshold))
  587. transmit_chars_pio(info, num_bytes);
  588. else
  589. transmit_chars_dma(info, num_bytes);
  590. }
  591. }
  592. }
  593. info->last_active = jiffies;
  594. #ifdef SERIAL_DEBUG_INTR
  595. printk("end.\n");
  596. #endif
  597. spin_unlock(&info->lock);
  598. return IRQ_HANDLED;
  599. }
  600. /*
  601. * -------------------------------------------------------------------
  602. * Here ends the serial interrupt routines.
  603. * -------------------------------------------------------------------
  604. */
  605. static void do_softint(void *private_)
  606. {
  607. struct esp_struct *info = (struct esp_struct *) private_;
  608. struct tty_struct *tty;
  609. tty = info->tty;
  610. if (!tty)
  611. return;
  612. if (test_and_clear_bit(ESP_EVENT_WRITE_WAKEUP, &info->event)) {
  613. tty_wakeup(tty);
  614. }
  615. }
  616. /*
  617. * This routine is called from the scheduler tqueue when the interrupt
  618. * routine has signalled that a hangup has occurred. The path of
  619. * hangup processing is:
  620. *
  621. * serial interrupt routine -> (scheduler tqueue) ->
  622. * do_serial_hangup() -> tty->hangup() -> esp_hangup()
  623. *
  624. */
  625. static void do_serial_hangup(void *private_)
  626. {
  627. struct esp_struct *info = (struct esp_struct *) private_;
  628. struct tty_struct *tty;
  629. tty = info->tty;
  630. if (tty)
  631. tty_hangup(tty);
  632. }
  633. /*
  634. * ---------------------------------------------------------------
  635. * Low level utility subroutines for the serial driver: routines to
  636. * figure out the appropriate timeout for an interrupt chain, routines
  637. * to initialize and startup a serial port, and routines to shutdown a
  638. * serial port. Useful stuff like that.
  639. *
  640. * Caller should hold lock
  641. * ---------------------------------------------------------------
  642. */
  643. static inline void esp_basic_init(struct esp_struct * info)
  644. {
  645. /* put ESPC in enhanced mode */
  646. serial_out(info, UART_ESI_CMD1, ESI_SET_MODE);
  647. if (info->stat_flags & ESP_STAT_NEVER_DMA)
  648. serial_out(info, UART_ESI_CMD2, 0x01);
  649. else
  650. serial_out(info, UART_ESI_CMD2, 0x31);
  651. /* disable interrupts for now */
  652. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  653. serial_out(info, UART_ESI_CMD2, 0x00);
  654. /* set interrupt and DMA channel */
  655. serial_out(info, UART_ESI_CMD1, ESI_SET_IRQ);
  656. if (info->stat_flags & ESP_STAT_NEVER_DMA)
  657. serial_out(info, UART_ESI_CMD2, 0x01);
  658. else
  659. serial_out(info, UART_ESI_CMD2, (dma << 4) | 0x01);
  660. serial_out(info, UART_ESI_CMD1, ESI_SET_ENH_IRQ);
  661. if (info->line % 8) /* secondary port */
  662. serial_out(info, UART_ESI_CMD2, 0x0d); /* shared */
  663. else if (info->irq == 9)
  664. serial_out(info, UART_ESI_CMD2, 0x02);
  665. else
  666. serial_out(info, UART_ESI_CMD2, info->irq);
  667. /* set error status mask (check this) */
  668. serial_out(info, UART_ESI_CMD1, ESI_SET_ERR_MASK);
  669. if (info->stat_flags & ESP_STAT_NEVER_DMA)
  670. serial_out(info, UART_ESI_CMD2, 0xa1);
  671. else
  672. serial_out(info, UART_ESI_CMD2, 0xbd);
  673. serial_out(info, UART_ESI_CMD2, 0x00);
  674. /* set DMA timeout */
  675. serial_out(info, UART_ESI_CMD1, ESI_SET_DMA_TMOUT);
  676. serial_out(info, UART_ESI_CMD2, 0xff);
  677. /* set FIFO trigger levels */
  678. serial_out(info, UART_ESI_CMD1, ESI_SET_TRIGGER);
  679. serial_out(info, UART_ESI_CMD2, info->config.rx_trigger >> 8);
  680. serial_out(info, UART_ESI_CMD2, info->config.rx_trigger);
  681. serial_out(info, UART_ESI_CMD2, info->config.tx_trigger >> 8);
  682. serial_out(info, UART_ESI_CMD2, info->config.tx_trigger);
  683. /* Set clock scaling and wait states */
  684. serial_out(info, UART_ESI_CMD1, ESI_SET_PRESCALAR);
  685. serial_out(info, UART_ESI_CMD2, 0x04 | ESPC_SCALE);
  686. /* set reinterrupt pacing */
  687. serial_out(info, UART_ESI_CMD1, ESI_SET_REINTR);
  688. serial_out(info, UART_ESI_CMD2, 0xff);
  689. }
  690. static int startup(struct esp_struct * info)
  691. {
  692. unsigned long flags;
  693. int retval=0;
  694. unsigned int num_chars;
  695. spin_lock_irqsave(&info->lock, flags);
  696. if (info->flags & ASYNC_INITIALIZED)
  697. goto out;
  698. if (!info->xmit_buf) {
  699. info->xmit_buf = (unsigned char *)get_zeroed_page(GFP_ATOMIC);
  700. retval = -ENOMEM;
  701. if (!info->xmit_buf)
  702. goto out;
  703. }
  704. #ifdef SERIAL_DEBUG_OPEN
  705. printk("starting up ttys%d (irq %d)...", info->line, info->irq);
  706. #endif
  707. /* Flush the RX buffer. Using the ESI flush command may cause */
  708. /* wild interrupts, so read all the data instead. */
  709. serial_out(info, UART_ESI_CMD1, ESI_NO_COMMAND);
  710. serial_out(info, UART_ESI_CMD1, ESI_GET_RX_AVAIL);
  711. num_chars = serial_in(info, UART_ESI_STAT1) << 8;
  712. num_chars |= serial_in(info, UART_ESI_STAT2);
  713. while (num_chars > 1) {
  714. inw(info->port + UART_ESI_RX);
  715. num_chars -= 2;
  716. }
  717. if (num_chars)
  718. serial_in(info, UART_ESI_RX);
  719. /* set receive character timeout */
  720. serial_out(info, UART_ESI_CMD1, ESI_SET_RX_TIMEOUT);
  721. serial_out(info, UART_ESI_CMD2, info->config.rx_timeout);
  722. /* clear all flags except the "never DMA" flag */
  723. info->stat_flags &= ESP_STAT_NEVER_DMA;
  724. if (info->stat_flags & ESP_STAT_NEVER_DMA)
  725. info->stat_flags |= ESP_STAT_USE_PIO;
  726. spin_unlock_irqrestore(&info->lock, flags);
  727. /*
  728. * Allocate the IRQ
  729. */
  730. retval = request_irq(info->irq, rs_interrupt_single, IRQF_SHARED,
  731. "esp serial", info);
  732. if (retval) {
  733. if (capable(CAP_SYS_ADMIN)) {
  734. if (info->tty)
  735. set_bit(TTY_IO_ERROR,
  736. &info->tty->flags);
  737. retval = 0;
  738. }
  739. goto out_unlocked;
  740. }
  741. if (!(info->stat_flags & ESP_STAT_USE_PIO) && !dma_buffer) {
  742. dma_buffer = (char *)__get_dma_pages(
  743. GFP_KERNEL, get_order(DMA_BUFFER_SZ));
  744. /* use PIO mode if DMA buf/chan cannot be allocated */
  745. if (!dma_buffer)
  746. info->stat_flags |= ESP_STAT_USE_PIO;
  747. else if (request_dma(dma, "esp serial")) {
  748. free_pages((unsigned long)dma_buffer,
  749. get_order(DMA_BUFFER_SZ));
  750. dma_buffer = NULL;
  751. info->stat_flags |= ESP_STAT_USE_PIO;
  752. }
  753. }
  754. info->MCR = UART_MCR_DTR | UART_MCR_RTS | UART_MCR_OUT2;
  755. spin_lock_irqsave(&info->lock, flags);
  756. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  757. serial_out(info, UART_ESI_CMD2, UART_MCR);
  758. serial_out(info, UART_ESI_CMD2, info->MCR);
  759. /*
  760. * Finally, enable interrupts
  761. */
  762. /* info->IER = UART_IER_MSI | UART_IER_RLSI | UART_IER_RDI; */
  763. info->IER = UART_IER_RLSI | UART_IER_RDI | UART_IER_DMA_TMOUT |
  764. UART_IER_DMA_TC;
  765. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  766. serial_out(info, UART_ESI_CMD2, info->IER);
  767. if (info->tty)
  768. clear_bit(TTY_IO_ERROR, &info->tty->flags);
  769. info->xmit_cnt = info->xmit_head = info->xmit_tail = 0;
  770. spin_unlock_irqrestore(&info->lock, flags);
  771. /*
  772. * Set up the tty->alt_speed kludge
  773. */
  774. if (info->tty) {
  775. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_HI)
  776. info->tty->alt_speed = 57600;
  777. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_VHI)
  778. info->tty->alt_speed = 115200;
  779. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_SHI)
  780. info->tty->alt_speed = 230400;
  781. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_WARP)
  782. info->tty->alt_speed = 460800;
  783. }
  784. /*
  785. * set the speed of the serial port
  786. */
  787. change_speed(info);
  788. info->flags |= ASYNC_INITIALIZED;
  789. return 0;
  790. out:
  791. spin_unlock_irqrestore(&info->lock, flags);
  792. out_unlocked:
  793. return retval;
  794. }
  795. /*
  796. * This routine will shutdown a serial port; interrupts are disabled, and
  797. * DTR is dropped if the hangup on close termio flag is on.
  798. */
  799. static void shutdown(struct esp_struct * info)
  800. {
  801. unsigned long flags, f;
  802. if (!(info->flags & ASYNC_INITIALIZED))
  803. return;
  804. #ifdef SERIAL_DEBUG_OPEN
  805. printk("Shutting down serial port %d (irq %d)....", info->line,
  806. info->irq);
  807. #endif
  808. spin_lock_irqsave(&info->lock, flags);
  809. /*
  810. * clear delta_msr_wait queue to avoid mem leaks: we may free the irq
  811. * here so the queue might never be waken up
  812. */
  813. wake_up_interruptible(&info->delta_msr_wait);
  814. wake_up_interruptible(&info->break_wait);
  815. /* stop a DMA transfer on the port being closed */
  816. /* DMA lock is higher priority always */
  817. if (info->stat_flags & (ESP_STAT_DMA_RX | ESP_STAT_DMA_TX)) {
  818. f=claim_dma_lock();
  819. disable_dma(dma);
  820. clear_dma_ff(dma);
  821. release_dma_lock(f);
  822. dma_bytes = 0;
  823. }
  824. /*
  825. * Free the IRQ
  826. */
  827. free_irq(info->irq, info);
  828. if (dma_buffer) {
  829. struct esp_struct *current_port = ports;
  830. while (current_port) {
  831. if ((current_port != info) &&
  832. (current_port->flags & ASYNC_INITIALIZED))
  833. break;
  834. current_port = current_port->next_port;
  835. }
  836. if (!current_port) {
  837. free_dma(dma);
  838. free_pages((unsigned long)dma_buffer,
  839. get_order(DMA_BUFFER_SZ));
  840. dma_buffer = NULL;
  841. }
  842. }
  843. if (info->xmit_buf) {
  844. free_page((unsigned long) info->xmit_buf);
  845. info->xmit_buf = NULL;
  846. }
  847. info->IER = 0;
  848. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  849. serial_out(info, UART_ESI_CMD2, 0x00);
  850. if (!info->tty || (info->tty->termios->c_cflag & HUPCL))
  851. info->MCR &= ~(UART_MCR_DTR|UART_MCR_RTS);
  852. info->MCR &= ~UART_MCR_OUT2;
  853. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  854. serial_out(info, UART_ESI_CMD2, UART_MCR);
  855. serial_out(info, UART_ESI_CMD2, info->MCR);
  856. if (info->tty)
  857. set_bit(TTY_IO_ERROR, &info->tty->flags);
  858. info->flags &= ~ASYNC_INITIALIZED;
  859. spin_unlock_irqrestore(&info->lock, flags);
  860. }
  861. /*
  862. * This routine is called to set the UART divisor registers to match
  863. * the specified baud rate for a serial port.
  864. */
  865. static void change_speed(struct esp_struct *info)
  866. {
  867. unsigned short port;
  868. int quot = 0;
  869. unsigned cflag,cval;
  870. int baud, bits;
  871. unsigned char flow1 = 0, flow2 = 0;
  872. unsigned long flags;
  873. if (!info->tty || !info->tty->termios)
  874. return;
  875. cflag = info->tty->termios->c_cflag;
  876. port = info->port;
  877. /* byte size and parity */
  878. switch (cflag & CSIZE) {
  879. case CS5: cval = 0x00; bits = 7; break;
  880. case CS6: cval = 0x01; bits = 8; break;
  881. case CS7: cval = 0x02; bits = 9; break;
  882. case CS8: cval = 0x03; bits = 10; break;
  883. default: cval = 0x00; bits = 7; break;
  884. }
  885. if (cflag & CSTOPB) {
  886. cval |= 0x04;
  887. bits++;
  888. }
  889. if (cflag & PARENB) {
  890. cval |= UART_LCR_PARITY;
  891. bits++;
  892. }
  893. if (!(cflag & PARODD))
  894. cval |= UART_LCR_EPAR;
  895. #ifdef CMSPAR
  896. if (cflag & CMSPAR)
  897. cval |= UART_LCR_SPAR;
  898. #endif
  899. baud = tty_get_baud_rate(info->tty);
  900. if (baud == 38400 &&
  901. ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST))
  902. quot = info->custom_divisor;
  903. else {
  904. if (baud == 134)
  905. /* Special case since 134 is really 134.5 */
  906. quot = (2*BASE_BAUD / 269);
  907. else if (baud)
  908. quot = BASE_BAUD / baud;
  909. }
  910. /* If the quotient is ever zero, default to 9600 bps */
  911. if (!quot)
  912. quot = BASE_BAUD / 9600;
  913. info->timeout = ((1024 * HZ * bits * quot) / BASE_BAUD) + (HZ / 50);
  914. /* CTS flow control flag and modem status interrupts */
  915. /* info->IER &= ~UART_IER_MSI; */
  916. if (cflag & CRTSCTS) {
  917. info->flags |= ASYNC_CTS_FLOW;
  918. /* info->IER |= UART_IER_MSI; */
  919. flow1 = 0x04;
  920. flow2 = 0x10;
  921. } else
  922. info->flags &= ~ASYNC_CTS_FLOW;
  923. if (cflag & CLOCAL)
  924. info->flags &= ~ASYNC_CHECK_CD;
  925. else {
  926. info->flags |= ASYNC_CHECK_CD;
  927. /* info->IER |= UART_IER_MSI; */
  928. }
  929. /*
  930. * Set up parity check flag
  931. */
  932. #define RELEVANT_IFLAG(iflag) (iflag & (IGNBRK|BRKINT|IGNPAR|PARMRK|INPCK))
  933. info->read_status_mask = UART_LSR_OE | UART_LSR_THRE | UART_LSR_DR;
  934. if (I_INPCK(info->tty))
  935. info->read_status_mask |= UART_LSR_FE | UART_LSR_PE;
  936. if (I_BRKINT(info->tty) || I_PARMRK(info->tty))
  937. info->read_status_mask |= UART_LSR_BI;
  938. info->ignore_status_mask = 0;
  939. #if 0
  940. /* This should be safe, but for some broken bits of hardware... */
  941. if (I_IGNPAR(info->tty)) {
  942. info->ignore_status_mask |= UART_LSR_PE | UART_LSR_FE;
  943. info->read_status_mask |= UART_LSR_PE | UART_LSR_FE;
  944. }
  945. #endif
  946. if (I_IGNBRK(info->tty)) {
  947. info->ignore_status_mask |= UART_LSR_BI;
  948. info->read_status_mask |= UART_LSR_BI;
  949. /*
  950. * If we're ignore parity and break indicators, ignore
  951. * overruns too. (For real raw support).
  952. */
  953. if (I_IGNPAR(info->tty)) {
  954. info->ignore_status_mask |= UART_LSR_OE | \
  955. UART_LSR_PE | UART_LSR_FE;
  956. info->read_status_mask |= UART_LSR_OE | \
  957. UART_LSR_PE | UART_LSR_FE;
  958. }
  959. }
  960. if (I_IXOFF(info->tty))
  961. flow1 |= 0x81;
  962. spin_lock_irqsave(&info->lock, flags);
  963. /* set baud */
  964. serial_out(info, UART_ESI_CMD1, ESI_SET_BAUD);
  965. serial_out(info, UART_ESI_CMD2, quot >> 8);
  966. serial_out(info, UART_ESI_CMD2, quot & 0xff);
  967. /* set data bits, parity, etc. */
  968. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  969. serial_out(info, UART_ESI_CMD2, UART_LCR);
  970. serial_out(info, UART_ESI_CMD2, cval);
  971. /* Enable flow control */
  972. serial_out(info, UART_ESI_CMD1, ESI_SET_FLOW_CNTL);
  973. serial_out(info, UART_ESI_CMD2, flow1);
  974. serial_out(info, UART_ESI_CMD2, flow2);
  975. /* set flow control characters (XON/XOFF only) */
  976. if (I_IXOFF(info->tty)) {
  977. serial_out(info, UART_ESI_CMD1, ESI_SET_FLOW_CHARS);
  978. serial_out(info, UART_ESI_CMD2, START_CHAR(info->tty));
  979. serial_out(info, UART_ESI_CMD2, STOP_CHAR(info->tty));
  980. serial_out(info, UART_ESI_CMD2, 0x10);
  981. serial_out(info, UART_ESI_CMD2, 0x21);
  982. switch (cflag & CSIZE) {
  983. case CS5:
  984. serial_out(info, UART_ESI_CMD2, 0x1f);
  985. break;
  986. case CS6:
  987. serial_out(info, UART_ESI_CMD2, 0x3f);
  988. break;
  989. case CS7:
  990. case CS8:
  991. serial_out(info, UART_ESI_CMD2, 0x7f);
  992. break;
  993. default:
  994. serial_out(info, UART_ESI_CMD2, 0xff);
  995. break;
  996. }
  997. }
  998. /* Set high/low water */
  999. serial_out(info, UART_ESI_CMD1, ESI_SET_FLOW_LVL);
  1000. serial_out(info, UART_ESI_CMD2, info->config.flow_off >> 8);
  1001. serial_out(info, UART_ESI_CMD2, info->config.flow_off);
  1002. serial_out(info, UART_ESI_CMD2, info->config.flow_on >> 8);
  1003. serial_out(info, UART_ESI_CMD2, info->config.flow_on);
  1004. spin_unlock_irqrestore(&info->lock, flags);
  1005. }
  1006. static void rs_put_char(struct tty_struct *tty, unsigned char ch)
  1007. {
  1008. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1009. unsigned long flags;
  1010. if (serial_paranoia_check(info, tty->name, "rs_put_char"))
  1011. return;
  1012. if (!info->xmit_buf)
  1013. return;
  1014. spin_lock_irqsave(&info->lock, flags);
  1015. if (info->xmit_cnt < ESP_XMIT_SIZE - 1) {
  1016. info->xmit_buf[info->xmit_head++] = ch;
  1017. info->xmit_head &= ESP_XMIT_SIZE-1;
  1018. info->xmit_cnt++;
  1019. }
  1020. spin_unlock_irqrestore(&info->lock, flags);
  1021. }
  1022. static void rs_flush_chars(struct tty_struct *tty)
  1023. {
  1024. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1025. unsigned long flags;
  1026. if (serial_paranoia_check(info, tty->name, "rs_flush_chars"))
  1027. return;
  1028. spin_lock_irqsave(&info->lock, flags);
  1029. if (info->xmit_cnt <= 0 || tty->stopped || !info->xmit_buf)
  1030. goto out;
  1031. if (!(info->IER & UART_IER_THRI)) {
  1032. info->IER |= UART_IER_THRI;
  1033. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  1034. serial_out(info, UART_ESI_CMD2, info->IER);
  1035. }
  1036. out:
  1037. spin_unlock_irqrestore(&info->lock, flags);
  1038. }
  1039. static int rs_write(struct tty_struct * tty,
  1040. const unsigned char *buf, int count)
  1041. {
  1042. int c, t, ret = 0;
  1043. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1044. unsigned long flags;
  1045. if (serial_paranoia_check(info, tty->name, "rs_write"))
  1046. return 0;
  1047. if (!info->xmit_buf)
  1048. return 0;
  1049. while (1) {
  1050. /* Thanks to R. Wolff for suggesting how to do this with */
  1051. /* interrupts enabled */
  1052. c = count;
  1053. t = ESP_XMIT_SIZE - info->xmit_cnt - 1;
  1054. if (t < c)
  1055. c = t;
  1056. t = ESP_XMIT_SIZE - info->xmit_head;
  1057. if (t < c)
  1058. c = t;
  1059. if (c <= 0)
  1060. break;
  1061. memcpy(info->xmit_buf + info->xmit_head, buf, c);
  1062. info->xmit_head = (info->xmit_head + c) & (ESP_XMIT_SIZE-1);
  1063. info->xmit_cnt += c;
  1064. buf += c;
  1065. count -= c;
  1066. ret += c;
  1067. }
  1068. spin_lock_irqsave(&info->lock, flags);
  1069. if (info->xmit_cnt && !tty->stopped && !(info->IER & UART_IER_THRI)) {
  1070. info->IER |= UART_IER_THRI;
  1071. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  1072. serial_out(info, UART_ESI_CMD2, info->IER);
  1073. }
  1074. spin_unlock_irqrestore(&info->lock, flags);
  1075. return ret;
  1076. }
  1077. static int rs_write_room(struct tty_struct *tty)
  1078. {
  1079. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1080. int ret;
  1081. unsigned long flags;
  1082. if (serial_paranoia_check(info, tty->name, "rs_write_room"))
  1083. return 0;
  1084. spin_lock_irqsave(&info->lock, flags);
  1085. ret = ESP_XMIT_SIZE - info->xmit_cnt - 1;
  1086. if (ret < 0)
  1087. ret = 0;
  1088. spin_unlock_irqrestore(&info->lock, flags);
  1089. return ret;
  1090. }
  1091. static int rs_chars_in_buffer(struct tty_struct *tty)
  1092. {
  1093. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1094. if (serial_paranoia_check(info, tty->name, "rs_chars_in_buffer"))
  1095. return 0;
  1096. return info->xmit_cnt;
  1097. }
  1098. static void rs_flush_buffer(struct tty_struct *tty)
  1099. {
  1100. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1101. unsigned long flags;
  1102. if (serial_paranoia_check(info, tty->name, "rs_flush_buffer"))
  1103. return;
  1104. spin_lock_irqsave(&info->lock, flags);
  1105. info->xmit_cnt = info->xmit_head = info->xmit_tail = 0;
  1106. spin_unlock_irqrestore(&info->lock, flags);
  1107. tty_wakeup(tty);
  1108. }
  1109. /*
  1110. * ------------------------------------------------------------
  1111. * rs_throttle()
  1112. *
  1113. * This routine is called by the upper-layer tty layer to signal that
  1114. * incoming characters should be throttled.
  1115. * ------------------------------------------------------------
  1116. */
  1117. static void rs_throttle(struct tty_struct * tty)
  1118. {
  1119. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1120. unsigned long flags;
  1121. #ifdef SERIAL_DEBUG_THROTTLE
  1122. char buf[64];
  1123. printk("throttle %s: %d....\n", tty_name(tty, buf),
  1124. tty->ldisc.chars_in_buffer(tty));
  1125. #endif
  1126. if (serial_paranoia_check(info, tty->name, "rs_throttle"))
  1127. return;
  1128. spin_lock_irqsave(&info->lock, flags);
  1129. info->IER &= ~UART_IER_RDI;
  1130. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  1131. serial_out(info, UART_ESI_CMD2, info->IER);
  1132. serial_out(info, UART_ESI_CMD1, ESI_SET_RX_TIMEOUT);
  1133. serial_out(info, UART_ESI_CMD2, 0x00);
  1134. spin_unlock_irqrestore(&info->lock, flags);
  1135. }
  1136. static void rs_unthrottle(struct tty_struct * tty)
  1137. {
  1138. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1139. unsigned long flags;
  1140. #ifdef SERIAL_DEBUG_THROTTLE
  1141. char buf[64];
  1142. printk("unthrottle %s: %d....\n", tty_name(tty, buf),
  1143. tty->ldisc.chars_in_buffer(tty));
  1144. #endif
  1145. if (serial_paranoia_check(info, tty->name, "rs_unthrottle"))
  1146. return;
  1147. spin_lock_irqsave(&info->lock, flags);
  1148. info->IER |= UART_IER_RDI;
  1149. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  1150. serial_out(info, UART_ESI_CMD2, info->IER);
  1151. serial_out(info, UART_ESI_CMD1, ESI_SET_RX_TIMEOUT);
  1152. serial_out(info, UART_ESI_CMD2, info->config.rx_timeout);
  1153. spin_unlock_irqrestore(&info->lock, flags);
  1154. }
  1155. /*
  1156. * ------------------------------------------------------------
  1157. * rs_ioctl() and friends
  1158. * ------------------------------------------------------------
  1159. */
  1160. static int get_serial_info(struct esp_struct * info,
  1161. struct serial_struct __user *retinfo)
  1162. {
  1163. struct serial_struct tmp;
  1164. memset(&tmp, 0, sizeof(tmp));
  1165. tmp.type = PORT_16550A;
  1166. tmp.line = info->line;
  1167. tmp.port = info->port;
  1168. tmp.irq = info->irq;
  1169. tmp.flags = info->flags;
  1170. tmp.xmit_fifo_size = 1024;
  1171. tmp.baud_base = BASE_BAUD;
  1172. tmp.close_delay = info->close_delay;
  1173. tmp.closing_wait = info->closing_wait;
  1174. tmp.custom_divisor = info->custom_divisor;
  1175. tmp.hub6 = 0;
  1176. if (copy_to_user(retinfo,&tmp,sizeof(*retinfo)))
  1177. return -EFAULT;
  1178. return 0;
  1179. }
  1180. static int get_esp_config(struct esp_struct * info,
  1181. struct hayes_esp_config __user *retinfo)
  1182. {
  1183. struct hayes_esp_config tmp;
  1184. if (!retinfo)
  1185. return -EFAULT;
  1186. memset(&tmp, 0, sizeof(tmp));
  1187. tmp.rx_timeout = info->config.rx_timeout;
  1188. tmp.rx_trigger = info->config.rx_trigger;
  1189. tmp.tx_trigger = info->config.tx_trigger;
  1190. tmp.flow_off = info->config.flow_off;
  1191. tmp.flow_on = info->config.flow_on;
  1192. tmp.pio_threshold = info->config.pio_threshold;
  1193. tmp.dma_channel = (info->stat_flags & ESP_STAT_NEVER_DMA ? 0 : dma);
  1194. return copy_to_user(retinfo, &tmp, sizeof(*retinfo)) ? -EFAULT : 0;
  1195. }
  1196. static int set_serial_info(struct esp_struct * info,
  1197. struct serial_struct __user *new_info)
  1198. {
  1199. struct serial_struct new_serial;
  1200. struct esp_struct old_info;
  1201. unsigned int change_irq;
  1202. int retval = 0;
  1203. struct esp_struct *current_async;
  1204. if (copy_from_user(&new_serial,new_info,sizeof(new_serial)))
  1205. return -EFAULT;
  1206. old_info = *info;
  1207. if ((new_serial.type != PORT_16550A) ||
  1208. (new_serial.hub6) ||
  1209. (info->port != new_serial.port) ||
  1210. (new_serial.baud_base != BASE_BAUD) ||
  1211. (new_serial.irq > 15) ||
  1212. (new_serial.irq < 2) ||
  1213. (new_serial.irq == 6) ||
  1214. (new_serial.irq == 8) ||
  1215. (new_serial.irq == 13))
  1216. return -EINVAL;
  1217. change_irq = new_serial.irq != info->irq;
  1218. if (change_irq && (info->line % 8))
  1219. return -EINVAL;
  1220. if (!capable(CAP_SYS_ADMIN)) {
  1221. if (change_irq ||
  1222. (new_serial.close_delay != info->close_delay) ||
  1223. ((new_serial.flags & ~ASYNC_USR_MASK) !=
  1224. (info->flags & ~ASYNC_USR_MASK)))
  1225. return -EPERM;
  1226. info->flags = ((info->flags & ~ASYNC_USR_MASK) |
  1227. (new_serial.flags & ASYNC_USR_MASK));
  1228. info->custom_divisor = new_serial.custom_divisor;
  1229. } else {
  1230. if (new_serial.irq == 2)
  1231. new_serial.irq = 9;
  1232. if (change_irq) {
  1233. current_async = ports;
  1234. while (current_async) {
  1235. if ((current_async->line >= info->line) &&
  1236. (current_async->line < (info->line + 8))) {
  1237. if (current_async == info) {
  1238. if (current_async->count > 1)
  1239. return -EBUSY;
  1240. } else if (current_async->count)
  1241. return -EBUSY;
  1242. }
  1243. current_async = current_async->next_port;
  1244. }
  1245. }
  1246. /*
  1247. * OK, past this point, all the error checking has been done.
  1248. * At this point, we start making changes.....
  1249. */
  1250. info->flags = ((info->flags & ~ASYNC_FLAGS) |
  1251. (new_serial.flags & ASYNC_FLAGS));
  1252. info->custom_divisor = new_serial.custom_divisor;
  1253. info->close_delay = new_serial.close_delay * HZ/100;
  1254. info->closing_wait = new_serial.closing_wait * HZ/100;
  1255. if (change_irq) {
  1256. /*
  1257. * We need to shutdown the serial port at the old
  1258. * port/irq combination.
  1259. */
  1260. shutdown(info);
  1261. current_async = ports;
  1262. while (current_async) {
  1263. if ((current_async->line >= info->line) &&
  1264. (current_async->line < (info->line + 8)))
  1265. current_async->irq = new_serial.irq;
  1266. current_async = current_async->next_port;
  1267. }
  1268. serial_out(info, UART_ESI_CMD1, ESI_SET_ENH_IRQ);
  1269. if (info->irq == 9)
  1270. serial_out(info, UART_ESI_CMD2, 0x02);
  1271. else
  1272. serial_out(info, UART_ESI_CMD2, info->irq);
  1273. }
  1274. }
  1275. if (info->flags & ASYNC_INITIALIZED) {
  1276. if (((old_info.flags & ASYNC_SPD_MASK) !=
  1277. (info->flags & ASYNC_SPD_MASK)) ||
  1278. (old_info.custom_divisor != info->custom_divisor)) {
  1279. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_HI)
  1280. info->tty->alt_speed = 57600;
  1281. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_VHI)
  1282. info->tty->alt_speed = 115200;
  1283. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_SHI)
  1284. info->tty->alt_speed = 230400;
  1285. if ((info->flags & ASYNC_SPD_MASK) == ASYNC_SPD_WARP)
  1286. info->tty->alt_speed = 460800;
  1287. change_speed(info);
  1288. }
  1289. } else
  1290. retval = startup(info);
  1291. return retval;
  1292. }
  1293. static int set_esp_config(struct esp_struct * info,
  1294. struct hayes_esp_config __user * new_info)
  1295. {
  1296. struct hayes_esp_config new_config;
  1297. unsigned int change_dma;
  1298. int retval = 0;
  1299. struct esp_struct *current_async;
  1300. unsigned long flags;
  1301. /* Perhaps a non-sysadmin user should be able to do some of these */
  1302. /* operations. I haven't decided yet. */
  1303. if (!capable(CAP_SYS_ADMIN))
  1304. return -EPERM;
  1305. if (copy_from_user(&new_config, new_info, sizeof(new_config)))
  1306. return -EFAULT;
  1307. if ((new_config.flow_on >= new_config.flow_off) ||
  1308. (new_config.rx_trigger < 1) ||
  1309. (new_config.tx_trigger < 1) ||
  1310. (new_config.flow_off < 1) ||
  1311. (new_config.flow_on < 1) ||
  1312. (new_config.rx_trigger > 1023) ||
  1313. (new_config.tx_trigger > 1023) ||
  1314. (new_config.flow_off > 1023) ||
  1315. (new_config.flow_on > 1023) ||
  1316. (new_config.pio_threshold < 0) ||
  1317. (new_config.pio_threshold > 1024))
  1318. return -EINVAL;
  1319. if ((new_config.dma_channel != 1) && (new_config.dma_channel != 3))
  1320. new_config.dma_channel = 0;
  1321. if (info->stat_flags & ESP_STAT_NEVER_DMA)
  1322. change_dma = new_config.dma_channel;
  1323. else
  1324. change_dma = (new_config.dma_channel != dma);
  1325. if (change_dma) {
  1326. if (new_config.dma_channel) {
  1327. /* PIO mode to DMA mode transition OR */
  1328. /* change current DMA channel */
  1329. current_async = ports;
  1330. while (current_async) {
  1331. if (current_async == info) {
  1332. if (current_async->count > 1)
  1333. return -EBUSY;
  1334. } else if (current_async->count)
  1335. return -EBUSY;
  1336. current_async =
  1337. current_async->next_port;
  1338. }
  1339. shutdown(info);
  1340. dma = new_config.dma_channel;
  1341. info->stat_flags &= ~ESP_STAT_NEVER_DMA;
  1342. /* all ports must use the same DMA channel */
  1343. spin_lock_irqsave(&info->lock, flags);
  1344. current_async = ports;
  1345. while (current_async) {
  1346. esp_basic_init(current_async);
  1347. current_async = current_async->next_port;
  1348. }
  1349. spin_unlock_irqrestore(&info->lock, flags);
  1350. } else {
  1351. /* DMA mode to PIO mode only */
  1352. if (info->count > 1)
  1353. return -EBUSY;
  1354. shutdown(info);
  1355. spin_lock_irqsave(&info->lock, flags);
  1356. info->stat_flags |= ESP_STAT_NEVER_DMA;
  1357. esp_basic_init(info);
  1358. spin_unlock_irqrestore(&info->lock, flags);
  1359. }
  1360. }
  1361. info->config.pio_threshold = new_config.pio_threshold;
  1362. if ((new_config.flow_off != info->config.flow_off) ||
  1363. (new_config.flow_on != info->config.flow_on)) {
  1364. unsigned long flags;
  1365. info->config.flow_off = new_config.flow_off;
  1366. info->config.flow_on = new_config.flow_on;
  1367. spin_lock_irqsave(&info->lock, flags);
  1368. serial_out(info, UART_ESI_CMD1, ESI_SET_FLOW_LVL);
  1369. serial_out(info, UART_ESI_CMD2, new_config.flow_off >> 8);
  1370. serial_out(info, UART_ESI_CMD2, new_config.flow_off);
  1371. serial_out(info, UART_ESI_CMD2, new_config.flow_on >> 8);
  1372. serial_out(info, UART_ESI_CMD2, new_config.flow_on);
  1373. spin_unlock_irqrestore(&info->lock, flags);
  1374. }
  1375. if ((new_config.rx_trigger != info->config.rx_trigger) ||
  1376. (new_config.tx_trigger != info->config.tx_trigger)) {
  1377. unsigned long flags;
  1378. info->config.rx_trigger = new_config.rx_trigger;
  1379. info->config.tx_trigger = new_config.tx_trigger;
  1380. spin_lock_irqsave(&info->lock, flags);
  1381. serial_out(info, UART_ESI_CMD1, ESI_SET_TRIGGER);
  1382. serial_out(info, UART_ESI_CMD2,
  1383. new_config.rx_trigger >> 8);
  1384. serial_out(info, UART_ESI_CMD2, new_config.rx_trigger);
  1385. serial_out(info, UART_ESI_CMD2,
  1386. new_config.tx_trigger >> 8);
  1387. serial_out(info, UART_ESI_CMD2, new_config.tx_trigger);
  1388. spin_unlock_irqrestore(&info->lock, flags);
  1389. }
  1390. if (new_config.rx_timeout != info->config.rx_timeout) {
  1391. unsigned long flags;
  1392. info->config.rx_timeout = new_config.rx_timeout;
  1393. spin_lock_irqsave(&info->lock, flags);
  1394. if (info->IER & UART_IER_RDI) {
  1395. serial_out(info, UART_ESI_CMD1,
  1396. ESI_SET_RX_TIMEOUT);
  1397. serial_out(info, UART_ESI_CMD2,
  1398. new_config.rx_timeout);
  1399. }
  1400. spin_unlock_irqrestore(&info->lock, flags);
  1401. }
  1402. if (!(info->flags & ASYNC_INITIALIZED))
  1403. retval = startup(info);
  1404. return retval;
  1405. }
  1406. /*
  1407. * get_lsr_info - get line status register info
  1408. *
  1409. * Purpose: Let user call ioctl() to get info when the UART physically
  1410. * is emptied. On bus types like RS485, the transmitter must
  1411. * release the bus after transmitting. This must be done when
  1412. * the transmit shift register is empty, not be done when the
  1413. * transmit holding register is empty. This functionality
  1414. * allows an RS485 driver to be written in user space.
  1415. */
  1416. static int get_lsr_info(struct esp_struct * info, unsigned int __user *value)
  1417. {
  1418. unsigned char status;
  1419. unsigned int result;
  1420. unsigned long flags;
  1421. spin_lock_irqsave(&info->lock, flags);
  1422. serial_out(info, UART_ESI_CMD1, ESI_GET_UART_STAT);
  1423. status = serial_in(info, UART_ESI_STAT1);
  1424. spin_unlock_irqrestore(&info->lock, flags);
  1425. result = ((status & UART_LSR_TEMT) ? TIOCSER_TEMT : 0);
  1426. return put_user(result,value);
  1427. }
  1428. static int esp_tiocmget(struct tty_struct *tty, struct file *file)
  1429. {
  1430. struct esp_struct * info = (struct esp_struct *)tty->driver_data;
  1431. unsigned char control, status;
  1432. unsigned long flags;
  1433. if (serial_paranoia_check(info, tty->name, __FUNCTION__))
  1434. return -ENODEV;
  1435. if (tty->flags & (1 << TTY_IO_ERROR))
  1436. return -EIO;
  1437. control = info->MCR;
  1438. spin_lock_irqsave(&info->lock, flags);
  1439. serial_out(info, UART_ESI_CMD1, ESI_GET_UART_STAT);
  1440. status = serial_in(info, UART_ESI_STAT2);
  1441. spin_unlock_irqrestore(&info->lock, flags);
  1442. return ((control & UART_MCR_RTS) ? TIOCM_RTS : 0)
  1443. | ((control & UART_MCR_DTR) ? TIOCM_DTR : 0)
  1444. | ((status & UART_MSR_DCD) ? TIOCM_CAR : 0)
  1445. | ((status & UART_MSR_RI) ? TIOCM_RNG : 0)
  1446. | ((status & UART_MSR_DSR) ? TIOCM_DSR : 0)
  1447. | ((status & UART_MSR_CTS) ? TIOCM_CTS : 0);
  1448. }
  1449. static int esp_tiocmset(struct tty_struct *tty, struct file *file,
  1450. unsigned int set, unsigned int clear)
  1451. {
  1452. struct esp_struct * info = (struct esp_struct *)tty->driver_data;
  1453. unsigned long flags;
  1454. if (serial_paranoia_check(info, tty->name, __FUNCTION__))
  1455. return -ENODEV;
  1456. if (tty->flags & (1 << TTY_IO_ERROR))
  1457. return -EIO;
  1458. spin_lock_irqsave(&info->lock, flags);
  1459. if (set & TIOCM_RTS)
  1460. info->MCR |= UART_MCR_RTS;
  1461. if (set & TIOCM_DTR)
  1462. info->MCR |= UART_MCR_DTR;
  1463. if (clear & TIOCM_RTS)
  1464. info->MCR &= ~UART_MCR_RTS;
  1465. if (clear & TIOCM_DTR)
  1466. info->MCR &= ~UART_MCR_DTR;
  1467. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  1468. serial_out(info, UART_ESI_CMD2, UART_MCR);
  1469. serial_out(info, UART_ESI_CMD2, info->MCR);
  1470. spin_unlock_irqrestore(&info->lock, flags);
  1471. return 0;
  1472. }
  1473. /*
  1474. * rs_break() --- routine which turns the break handling on or off
  1475. */
  1476. static void esp_break(struct tty_struct *tty, int break_state)
  1477. {
  1478. struct esp_struct * info = (struct esp_struct *)tty->driver_data;
  1479. unsigned long flags;
  1480. if (serial_paranoia_check(info, tty->name, "esp_break"))
  1481. return;
  1482. if (break_state == -1) {
  1483. spin_lock_irqsave(&info->lock, flags);
  1484. serial_out(info, UART_ESI_CMD1, ESI_ISSUE_BREAK);
  1485. serial_out(info, UART_ESI_CMD2, 0x01);
  1486. spin_unlock_irqrestore(&info->lock, flags);
  1487. /* FIXME - new style wait needed here */
  1488. interruptible_sleep_on(&info->break_wait);
  1489. } else {
  1490. spin_lock_irqsave(&info->lock, flags);
  1491. serial_out(info, UART_ESI_CMD1, ESI_ISSUE_BREAK);
  1492. serial_out(info, UART_ESI_CMD2, 0x00);
  1493. spin_unlock_irqrestore(&info->lock, flags);
  1494. }
  1495. }
  1496. static int rs_ioctl(struct tty_struct *tty, struct file * file,
  1497. unsigned int cmd, unsigned long arg)
  1498. {
  1499. struct esp_struct * info = (struct esp_struct *)tty->driver_data;
  1500. struct async_icount cprev, cnow; /* kernel counter temps */
  1501. struct serial_icounter_struct __user *p_cuser; /* user space */
  1502. void __user *argp = (void __user *)arg;
  1503. unsigned long flags;
  1504. if (serial_paranoia_check(info, tty->name, "rs_ioctl"))
  1505. return -ENODEV;
  1506. if ((cmd != TIOCGSERIAL) && (cmd != TIOCSSERIAL) &&
  1507. (cmd != TIOCSERCONFIG) && (cmd != TIOCSERGWILD) &&
  1508. (cmd != TIOCSERSWILD) && (cmd != TIOCSERGSTRUCT) &&
  1509. (cmd != TIOCMIWAIT) && (cmd != TIOCGICOUNT) &&
  1510. (cmd != TIOCGHAYESESP) && (cmd != TIOCSHAYESESP)) {
  1511. if (tty->flags & (1 << TTY_IO_ERROR))
  1512. return -EIO;
  1513. }
  1514. switch (cmd) {
  1515. case TIOCGSERIAL:
  1516. return get_serial_info(info, argp);
  1517. case TIOCSSERIAL:
  1518. return set_serial_info(info, argp);
  1519. case TIOCSERCONFIG:
  1520. /* do not reconfigure after initial configuration */
  1521. return 0;
  1522. case TIOCSERGWILD:
  1523. return put_user(0L, (unsigned long __user *)argp);
  1524. case TIOCSERGETLSR: /* Get line status register */
  1525. return get_lsr_info(info, argp);
  1526. case TIOCSERSWILD:
  1527. if (!capable(CAP_SYS_ADMIN))
  1528. return -EPERM;
  1529. return 0;
  1530. /*
  1531. * Wait for any of the 4 modem inputs (DCD,RI,DSR,CTS) to change
  1532. * - mask passed in arg for lines of interest
  1533. * (use |'ed TIOCM_RNG/DSR/CD/CTS for masking)
  1534. * Caller should use TIOCGICOUNT to see which one it was
  1535. */
  1536. case TIOCMIWAIT:
  1537. spin_lock_irqsave(&info->lock, flags);
  1538. cprev = info->icount; /* note the counters on entry */
  1539. spin_unlock_irqrestore(&info->lock, flags);
  1540. while (1) {
  1541. /* FIXME: convert to new style wakeup */
  1542. interruptible_sleep_on(&info->delta_msr_wait);
  1543. /* see if a signal did it */
  1544. if (signal_pending(current))
  1545. return -ERESTARTSYS;
  1546. spin_lock_irqsave(&info->lock, flags);
  1547. cnow = info->icount; /* atomic copy */
  1548. spin_unlock_irqrestore(&info->lock, flags);
  1549. if (cnow.rng == cprev.rng &&
  1550. cnow.dsr == cprev.dsr &&
  1551. cnow.dcd == cprev.dcd &&
  1552. cnow.cts == cprev.cts)
  1553. return -EIO; /* no change => error */
  1554. if (((arg & TIOCM_RNG) &&
  1555. (cnow.rng != cprev.rng)) ||
  1556. ((arg & TIOCM_DSR) &&
  1557. (cnow.dsr != cprev.dsr)) ||
  1558. ((arg & TIOCM_CD) &&
  1559. (cnow.dcd != cprev.dcd)) ||
  1560. ((arg & TIOCM_CTS) &&
  1561. (cnow.cts != cprev.cts)) ) {
  1562. return 0;
  1563. }
  1564. cprev = cnow;
  1565. }
  1566. /* NOTREACHED */
  1567. /*
  1568. * Get counter of input serial line interrupts (DCD,RI,DSR,CTS)
  1569. * Return: write counters to the user passed counter struct
  1570. * NB: both 1->0 and 0->1 transitions are counted except for
  1571. * RI where only 0->1 is counted.
  1572. */
  1573. case TIOCGICOUNT:
  1574. spin_lock_irqsave(&info->lock, flags);
  1575. cnow = info->icount;
  1576. spin_unlock_irqrestore(&info->lock, flags);
  1577. p_cuser = argp;
  1578. if (put_user(cnow.cts, &p_cuser->cts) ||
  1579. put_user(cnow.dsr, &p_cuser->dsr) ||
  1580. put_user(cnow.rng, &p_cuser->rng) ||
  1581. put_user(cnow.dcd, &p_cuser->dcd))
  1582. return -EFAULT;
  1583. return 0;
  1584. case TIOCGHAYESESP:
  1585. return get_esp_config(info, argp);
  1586. case TIOCSHAYESESP:
  1587. return set_esp_config(info, argp);
  1588. default:
  1589. return -ENOIOCTLCMD;
  1590. }
  1591. return 0;
  1592. }
  1593. static void rs_set_termios(struct tty_struct *tty, struct termios *old_termios)
  1594. {
  1595. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1596. unsigned long flags;
  1597. if ( (tty->termios->c_cflag == old_termios->c_cflag)
  1598. && ( RELEVANT_IFLAG(tty->termios->c_iflag)
  1599. == RELEVANT_IFLAG(old_termios->c_iflag)))
  1600. return;
  1601. change_speed(info);
  1602. spin_lock_irqsave(&info->lock, flags);
  1603. /* Handle transition to B0 status */
  1604. if ((old_termios->c_cflag & CBAUD) &&
  1605. !(tty->termios->c_cflag & CBAUD)) {
  1606. info->MCR &= ~(UART_MCR_DTR|UART_MCR_RTS);
  1607. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  1608. serial_out(info, UART_ESI_CMD2, UART_MCR);
  1609. serial_out(info, UART_ESI_CMD2, info->MCR);
  1610. }
  1611. /* Handle transition away from B0 status */
  1612. if (!(old_termios->c_cflag & CBAUD) &&
  1613. (tty->termios->c_cflag & CBAUD)) {
  1614. info->MCR |= (UART_MCR_DTR | UART_MCR_RTS);
  1615. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  1616. serial_out(info, UART_ESI_CMD2, UART_MCR);
  1617. serial_out(info, UART_ESI_CMD2, info->MCR);
  1618. }
  1619. spin_unlock_irqrestore(&info->lock, flags);
  1620. /* Handle turning of CRTSCTS */
  1621. if ((old_termios->c_cflag & CRTSCTS) &&
  1622. !(tty->termios->c_cflag & CRTSCTS)) {
  1623. rs_start(tty);
  1624. }
  1625. }
  1626. /*
  1627. * ------------------------------------------------------------
  1628. * rs_close()
  1629. *
  1630. * This routine is called when the serial port gets closed. First, we
  1631. * wait for the last remaining data to be sent. Then, we unlink its
  1632. * async structure from the interrupt chain if necessary, and we free
  1633. * that IRQ if nothing is left in the chain.
  1634. * ------------------------------------------------------------
  1635. */
  1636. static void rs_close(struct tty_struct *tty, struct file * filp)
  1637. {
  1638. struct esp_struct * info = (struct esp_struct *)tty->driver_data;
  1639. unsigned long flags;
  1640. if (!info || serial_paranoia_check(info, tty->name, "rs_close"))
  1641. return;
  1642. spin_lock_irqsave(&info->lock, flags);
  1643. if (tty_hung_up_p(filp)) {
  1644. DBG_CNT("before DEC-hung");
  1645. goto out;
  1646. }
  1647. #ifdef SERIAL_DEBUG_OPEN
  1648. printk("rs_close ttys%d, count = %d\n", info->line, info->count);
  1649. #endif
  1650. if ((tty->count == 1) && (info->count != 1)) {
  1651. /*
  1652. * Uh, oh. tty->count is 1, which means that the tty
  1653. * structure will be freed. Info->count should always
  1654. * be one in these conditions. If it's greater than
  1655. * one, we've got real problems, since it means the
  1656. * serial port won't be shutdown.
  1657. */
  1658. printk("rs_close: bad serial port count; tty->count is 1, "
  1659. "info->count is %d\n", info->count);
  1660. info->count = 1;
  1661. }
  1662. if (--info->count < 0) {
  1663. printk("rs_close: bad serial port count for ttys%d: %d\n",
  1664. info->line, info->count);
  1665. info->count = 0;
  1666. }
  1667. if (info->count) {
  1668. DBG_CNT("before DEC-2");
  1669. goto out;
  1670. }
  1671. info->flags |= ASYNC_CLOSING;
  1672. spin_unlock_irqrestore(&info->lock, flags);
  1673. /*
  1674. * Now we wait for the transmit buffer to clear; and we notify
  1675. * the line discipline to only process XON/XOFF characters.
  1676. */
  1677. tty->closing = 1;
  1678. if (info->closing_wait != ASYNC_CLOSING_WAIT_NONE)
  1679. tty_wait_until_sent(tty, info->closing_wait);
  1680. /*
  1681. * At this point we stop accepting input. To do this, we
  1682. * disable the receive line status interrupts, and tell the
  1683. * interrupt driver to stop checking the data ready bit in the
  1684. * line status register.
  1685. */
  1686. /* info->IER &= ~UART_IER_RLSI; */
  1687. info->IER &= ~UART_IER_RDI;
  1688. info->read_status_mask &= ~UART_LSR_DR;
  1689. if (info->flags & ASYNC_INITIALIZED) {
  1690. spin_lock_irqsave(&info->lock, flags);
  1691. serial_out(info, UART_ESI_CMD1, ESI_SET_SRV_MASK);
  1692. serial_out(info, UART_ESI_CMD2, info->IER);
  1693. /* disable receive timeout */
  1694. serial_out(info, UART_ESI_CMD1, ESI_SET_RX_TIMEOUT);
  1695. serial_out(info, UART_ESI_CMD2, 0x00);
  1696. spin_unlock_irqrestore(&info->lock, flags);
  1697. /*
  1698. * Before we drop DTR, make sure the UART transmitter
  1699. * has completely drained; this is especially
  1700. * important if there is a transmit FIFO!
  1701. */
  1702. rs_wait_until_sent(tty, info->timeout);
  1703. }
  1704. shutdown(info);
  1705. if (tty->driver->flush_buffer)
  1706. tty->driver->flush_buffer(tty);
  1707. tty_ldisc_flush(tty);
  1708. tty->closing = 0;
  1709. info->event = 0;
  1710. info->tty = NULL;
  1711. if (info->blocked_open) {
  1712. if (info->close_delay) {
  1713. msleep_interruptible(jiffies_to_msecs(info->close_delay));
  1714. }
  1715. wake_up_interruptible(&info->open_wait);
  1716. }
  1717. info->flags &= ~(ASYNC_NORMAL_ACTIVE|ASYNC_CLOSING);
  1718. wake_up_interruptible(&info->close_wait);
  1719. return;
  1720. out:
  1721. spin_unlock_irqrestore(&info->lock, flags);
  1722. }
  1723. static void rs_wait_until_sent(struct tty_struct *tty, int timeout)
  1724. {
  1725. struct esp_struct *info = (struct esp_struct *)tty->driver_data;
  1726. unsigned long orig_jiffies, char_time;
  1727. unsigned long flags;
  1728. if (serial_paranoia_check(info, tty->name, "rs_wait_until_sent"))
  1729. return;
  1730. orig_jiffies = jiffies;
  1731. char_time = ((info->timeout - HZ / 50) / 1024) / 5;
  1732. if (!char_time)
  1733. char_time = 1;
  1734. spin_lock_irqsave(&info->lock, flags);
  1735. serial_out(info, UART_ESI_CMD1, ESI_NO_COMMAND);
  1736. serial_out(info, UART_ESI_CMD1, ESI_GET_TX_AVAIL);
  1737. while ((serial_in(info, UART_ESI_STAT1) != 0x03) ||
  1738. (serial_in(info, UART_ESI_STAT2) != 0xff)) {
  1739. spin_unlock_irqrestore(&info->lock, flags);
  1740. msleep_interruptible(jiffies_to_msecs(char_time));
  1741. if (signal_pending(current))
  1742. break;
  1743. if (timeout && time_after(jiffies, orig_jiffies + timeout))
  1744. break;
  1745. spin_lock_irqsave(&info->lock, flags);
  1746. serial_out(info, UART_ESI_CMD1, ESI_NO_COMMAND);
  1747. serial_out(info, UART_ESI_CMD1, ESI_GET_TX_AVAIL);
  1748. }
  1749. spin_unlock_irqrestore(&info->lock, flags);
  1750. set_current_state(TASK_RUNNING);
  1751. }
  1752. /*
  1753. * esp_hangup() --- called by tty_hangup() when a hangup is signaled.
  1754. */
  1755. static void esp_hangup(struct tty_struct *tty)
  1756. {
  1757. struct esp_struct * info = (struct esp_struct *)tty->driver_data;
  1758. if (serial_paranoia_check(info, tty->name, "esp_hangup"))
  1759. return;
  1760. rs_flush_buffer(tty);
  1761. shutdown(info);
  1762. info->event = 0;
  1763. info->count = 0;
  1764. info->flags &= ~ASYNC_NORMAL_ACTIVE;
  1765. info->tty = NULL;
  1766. wake_up_interruptible(&info->open_wait);
  1767. }
  1768. /*
  1769. * ------------------------------------------------------------
  1770. * esp_open() and friends
  1771. * ------------------------------------------------------------
  1772. */
  1773. static int block_til_ready(struct tty_struct *tty, struct file * filp,
  1774. struct esp_struct *info)
  1775. {
  1776. DECLARE_WAITQUEUE(wait, current);
  1777. int retval;
  1778. int do_clocal = 0;
  1779. unsigned long flags;
  1780. /*
  1781. * If the device is in the middle of being closed, then block
  1782. * until it's done, and then try again.
  1783. */
  1784. if (tty_hung_up_p(filp) ||
  1785. (info->flags & ASYNC_CLOSING)) {
  1786. if (info->flags & ASYNC_CLOSING)
  1787. interruptible_sleep_on(&info->close_wait);
  1788. #ifdef SERIAL_DO_RESTART
  1789. if (info->flags & ASYNC_HUP_NOTIFY)
  1790. return -EAGAIN;
  1791. else
  1792. return -ERESTARTSYS;
  1793. #else
  1794. return -EAGAIN;
  1795. #endif
  1796. }
  1797. /*
  1798. * If non-blocking mode is set, or the port is not enabled,
  1799. * then make the check up front and then exit.
  1800. */
  1801. if ((filp->f_flags & O_NONBLOCK) ||
  1802. (tty->flags & (1 << TTY_IO_ERROR))) {
  1803. info->flags |= ASYNC_NORMAL_ACTIVE;
  1804. return 0;
  1805. }
  1806. if (tty->termios->c_cflag & CLOCAL)
  1807. do_clocal = 1;
  1808. /*
  1809. * Block waiting for the carrier detect and the line to become
  1810. * free (i.e., not in use by the callout). While we are in
  1811. * this loop, info->count is dropped by one, so that
  1812. * rs_close() knows when to free things. We restore it upon
  1813. * exit, either normal or abnormal.
  1814. */
  1815. retval = 0;
  1816. add_wait_queue(&info->open_wait, &wait);
  1817. #ifdef SERIAL_DEBUG_OPEN
  1818. printk("block_til_ready before block: ttys%d, count = %d\n",
  1819. info->line, info->count);
  1820. #endif
  1821. spin_lock_irqsave(&info->lock, flags);
  1822. if (!tty_hung_up_p(filp))
  1823. info->count--;
  1824. info->blocked_open++;
  1825. while (1) {
  1826. if ((tty->termios->c_cflag & CBAUD)) {
  1827. unsigned int scratch;
  1828. serial_out(info, UART_ESI_CMD1, ESI_READ_UART);
  1829. serial_out(info, UART_ESI_CMD2, UART_MCR);
  1830. scratch = serial_in(info, UART_ESI_STAT1);
  1831. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  1832. serial_out(info, UART_ESI_CMD2, UART_MCR);
  1833. serial_out(info, UART_ESI_CMD2,
  1834. scratch | UART_MCR_DTR | UART_MCR_RTS);
  1835. }
  1836. set_current_state(TASK_INTERRUPTIBLE);
  1837. if (tty_hung_up_p(filp) ||
  1838. !(info->flags & ASYNC_INITIALIZED)) {
  1839. #ifdef SERIAL_DO_RESTART
  1840. if (info->flags & ASYNC_HUP_NOTIFY)
  1841. retval = -EAGAIN;
  1842. else
  1843. retval = -ERESTARTSYS;
  1844. #else
  1845. retval = -EAGAIN;
  1846. #endif
  1847. break;
  1848. }
  1849. serial_out(info, UART_ESI_CMD1, ESI_GET_UART_STAT);
  1850. if (serial_in(info, UART_ESI_STAT2) & UART_MSR_DCD)
  1851. do_clocal = 1;
  1852. if (!(info->flags & ASYNC_CLOSING) &&
  1853. (do_clocal))
  1854. break;
  1855. if (signal_pending(current)) {
  1856. retval = -ERESTARTSYS;
  1857. break;
  1858. }
  1859. #ifdef SERIAL_DEBUG_OPEN
  1860. printk("block_til_ready blocking: ttys%d, count = %d\n",
  1861. info->line, info->count);
  1862. #endif
  1863. spin_unlock_irqrestore(&info->lock, flags);
  1864. schedule();
  1865. spin_lock_irqsave(&info->lock, flags);
  1866. }
  1867. set_current_state(TASK_RUNNING);
  1868. remove_wait_queue(&info->open_wait, &wait);
  1869. if (!tty_hung_up_p(filp))
  1870. info->count++;
  1871. info->blocked_open--;
  1872. spin_unlock_irqrestore(&info->lock, flags);
  1873. #ifdef SERIAL_DEBUG_OPEN
  1874. printk("block_til_ready after blocking: ttys%d, count = %d\n",
  1875. info->line, info->count);
  1876. #endif
  1877. if (retval)
  1878. return retval;
  1879. info->flags |= ASYNC_NORMAL_ACTIVE;
  1880. return 0;
  1881. }
  1882. /*
  1883. * This routine is called whenever a serial port is opened. It
  1884. * enables interrupts for a serial port, linking in its async structure into
  1885. * the IRQ chain. It also performs the serial-specific
  1886. * initialization for the tty structure.
  1887. */
  1888. static int esp_open(struct tty_struct *tty, struct file * filp)
  1889. {
  1890. struct esp_struct *info;
  1891. int retval, line;
  1892. unsigned long flags;
  1893. line = tty->index;
  1894. if ((line < 0) || (line >= NR_PORTS))
  1895. return -ENODEV;
  1896. /* find the port in the chain */
  1897. info = ports;
  1898. while (info && (info->line != line))
  1899. info = info->next_port;
  1900. if (!info) {
  1901. serial_paranoia_check(info, tty->name, "esp_open");
  1902. return -ENODEV;
  1903. }
  1904. #ifdef SERIAL_DEBUG_OPEN
  1905. printk("esp_open %s, count = %d\n", tty->name, info->count);
  1906. #endif
  1907. spin_lock_irqsave(&info->lock, flags);
  1908. info->count++;
  1909. tty->driver_data = info;
  1910. info->tty = tty;
  1911. spin_unlock_irqrestore(&info->lock, flags);
  1912. /*
  1913. * Start up serial port
  1914. */
  1915. retval = startup(info);
  1916. if (retval)
  1917. return retval;
  1918. retval = block_til_ready(tty, filp, info);
  1919. if (retval) {
  1920. #ifdef SERIAL_DEBUG_OPEN
  1921. printk("esp_open returning after block_til_ready with %d\n",
  1922. retval);
  1923. #endif
  1924. return retval;
  1925. }
  1926. #ifdef SERIAL_DEBUG_OPEN
  1927. printk("esp_open %s successful...", tty->name);
  1928. #endif
  1929. return 0;
  1930. }
  1931. /*
  1932. * ---------------------------------------------------------------------
  1933. * espserial_init() and friends
  1934. *
  1935. * espserial_init() is called at boot-time to initialize the serial driver.
  1936. * ---------------------------------------------------------------------
  1937. */
  1938. /*
  1939. * This routine prints out the appropriate serial driver version
  1940. * number, and identifies which options were configured into this
  1941. * driver.
  1942. */
  1943. static inline void show_serial_version(void)
  1944. {
  1945. printk(KERN_INFO "%s version %s (DMA %u)\n",
  1946. serial_name, serial_version, dma);
  1947. }
  1948. /*
  1949. * This routine is called by espserial_init() to initialize a specific serial
  1950. * port.
  1951. */
  1952. static inline int autoconfig(struct esp_struct * info)
  1953. {
  1954. int port_detected = 0;
  1955. unsigned long flags;
  1956. if (!request_region(info->port, REGION_SIZE, "esp serial"))
  1957. return -EIO;
  1958. spin_lock_irqsave(&info->lock, flags);
  1959. /*
  1960. * Check for ESP card
  1961. */
  1962. if (serial_in(info, UART_ESI_BASE) == 0xf3) {
  1963. serial_out(info, UART_ESI_CMD1, 0x00);
  1964. serial_out(info, UART_ESI_CMD1, 0x01);
  1965. if ((serial_in(info, UART_ESI_STAT2) & 0x70) == 0x20) {
  1966. port_detected = 1;
  1967. if (!(info->irq)) {
  1968. serial_out(info, UART_ESI_CMD1, 0x02);
  1969. if (serial_in(info, UART_ESI_STAT1) & 0x01)
  1970. info->irq = 3;
  1971. else
  1972. info->irq = 4;
  1973. }
  1974. /* put card in enhanced mode */
  1975. /* this prevents access through */
  1976. /* the "old" IO ports */
  1977. esp_basic_init(info);
  1978. /* clear out MCR */
  1979. serial_out(info, UART_ESI_CMD1, ESI_WRITE_UART);
  1980. serial_out(info, UART_ESI_CMD2, UART_MCR);
  1981. serial_out(info, UART_ESI_CMD2, 0x00);
  1982. }
  1983. }
  1984. if (!port_detected)
  1985. release_region(info->port, REGION_SIZE);
  1986. spin_unlock_irqrestore(&info->lock, flags);
  1987. return (port_detected);
  1988. }
  1989. static struct tty_operations esp_ops = {
  1990. .open = esp_open,
  1991. .close = rs_close,
  1992. .write = rs_write,
  1993. .put_char = rs_put_char,
  1994. .flush_chars = rs_flush_chars,
  1995. .write_room = rs_write_room,
  1996. .chars_in_buffer = rs_chars_in_buffer,
  1997. .flush_buffer = rs_flush_buffer,
  1998. .ioctl = rs_ioctl,
  1999. .throttle = rs_throttle,
  2000. .unthrottle = rs_unthrottle,
  2001. .set_termios = rs_set_termios,
  2002. .stop = rs_stop,
  2003. .start = rs_start,
  2004. .hangup = esp_hangup,
  2005. .break_ctl = esp_break,
  2006. .wait_until_sent = rs_wait_until_sent,
  2007. .tiocmget = esp_tiocmget,
  2008. .tiocmset = esp_tiocmset,
  2009. };
  2010. /*
  2011. * The serial driver boot-time initialization code!
  2012. */
  2013. static int __init espserial_init(void)
  2014. {
  2015. int i, offset;
  2016. struct esp_struct * info;
  2017. struct esp_struct *last_primary = NULL;
  2018. int esp[] = {0x100,0x140,0x180,0x200,0x240,0x280,0x300,0x380};
  2019. esp_driver = alloc_tty_driver(NR_PORTS);
  2020. if (!esp_driver)
  2021. return -ENOMEM;
  2022. for (i = 0; i < NR_PRIMARY; i++) {
  2023. if (irq[i] != 0) {
  2024. if ((irq[i] < 2) || (irq[i] > 15) || (irq[i] == 6) ||
  2025. (irq[i] == 8) || (irq[i] == 13))
  2026. irq[i] = 0;
  2027. else if (irq[i] == 2)
  2028. irq[i] = 9;
  2029. }
  2030. }
  2031. if ((dma != 1) && (dma != 3))
  2032. dma = 0;
  2033. if ((rx_trigger < 1) || (rx_trigger > 1023))
  2034. rx_trigger = 768;
  2035. if ((tx_trigger < 1) || (tx_trigger > 1023))
  2036. tx_trigger = 768;
  2037. if ((flow_off < 1) || (flow_off > 1023))
  2038. flow_off = 1016;
  2039. if ((flow_on < 1) || (flow_on > 1023))
  2040. flow_on = 944;
  2041. if ((rx_timeout < 0) || (rx_timeout > 255))
  2042. rx_timeout = 128;
  2043. if (flow_on >= flow_off)
  2044. flow_on = flow_off - 1;
  2045. show_serial_version();
  2046. /* Initialize the tty_driver structure */
  2047. esp_driver->owner = THIS_MODULE;
  2048. esp_driver->name = "ttyP";
  2049. esp_driver->major = ESP_IN_MAJOR;
  2050. esp_driver->minor_start = 0;
  2051. esp_driver->type = TTY_DRIVER_TYPE_SERIAL;
  2052. esp_driver->subtype = SERIAL_TYPE_NORMAL;
  2053. esp_driver->init_termios = tty_std_termios;
  2054. esp_driver->init_termios.c_cflag =
  2055. B9600 | CS8 | CREAD | HUPCL | CLOCAL;
  2056. esp_driver->flags = TTY_DRIVER_REAL_RAW;
  2057. tty_set_operations(esp_driver, &esp_ops);
  2058. if (tty_register_driver(esp_driver))
  2059. {
  2060. printk(KERN_ERR "Couldn't register esp serial driver");
  2061. put_tty_driver(esp_driver);
  2062. return 1;
  2063. }
  2064. info = kmalloc(sizeof(struct esp_struct), GFP_KERNEL);
  2065. if (!info)
  2066. {
  2067. printk(KERN_ERR "Couldn't allocate memory for esp serial device information\n");
  2068. tty_unregister_driver(esp_driver);
  2069. put_tty_driver(esp_driver);
  2070. return 1;
  2071. }
  2072. memset((void *)info, 0, sizeof(struct esp_struct));
  2073. spin_lock_init(&info->lock);
  2074. /* rx_trigger, tx_trigger are needed by autoconfig */
  2075. info->config.rx_trigger = rx_trigger;
  2076. info->config.tx_trigger = tx_trigger;
  2077. i = 0;
  2078. offset = 0;
  2079. do {
  2080. info->port = esp[i] + offset;
  2081. info->irq = irq[i];
  2082. info->line = (i * 8) + (offset / 8);
  2083. if (!autoconfig(info)) {
  2084. i++;
  2085. offset = 0;
  2086. continue;
  2087. }
  2088. info->custom_divisor = (divisor[i] >> (offset / 2)) & 0xf;
  2089. info->flags = STD_COM_FLAGS;
  2090. if (info->custom_divisor)
  2091. info->flags |= ASYNC_SPD_CUST;
  2092. info->magic = ESP_MAGIC;
  2093. info->close_delay = 5*HZ/10;
  2094. info->closing_wait = 30*HZ;
  2095. INIT_WORK(&info->tqueue, do_softint, info);
  2096. INIT_WORK(&info->tqueue_hangup, do_serial_hangup, info);
  2097. info->config.rx_timeout = rx_timeout;
  2098. info->config.flow_on = flow_on;
  2099. info->config.flow_off = flow_off;
  2100. info->config.pio_threshold = pio_threshold;
  2101. info->next_port = ports;
  2102. init_waitqueue_head(&info->open_wait);
  2103. init_waitqueue_head(&info->close_wait);
  2104. init_waitqueue_head(&info->delta_msr_wait);
  2105. init_waitqueue_head(&info->break_wait);
  2106. ports = info;
  2107. printk(KERN_INFO "ttyP%d at 0x%04x (irq = %d) is an ESP ",
  2108. info->line, info->port, info->irq);
  2109. if (info->line % 8) {
  2110. printk("secondary port\n");
  2111. /* 8 port cards can't do DMA */
  2112. info->stat_flags |= ESP_STAT_NEVER_DMA;
  2113. if (last_primary)
  2114. last_primary->stat_flags |= ESP_STAT_NEVER_DMA;
  2115. } else {
  2116. printk("primary port\n");
  2117. last_primary = info;
  2118. irq[i] = info->irq;
  2119. }
  2120. if (!dma)
  2121. info->stat_flags |= ESP_STAT_NEVER_DMA;
  2122. info = kmalloc(sizeof(struct esp_struct), GFP_KERNEL);
  2123. if (!info)
  2124. {
  2125. printk(KERN_ERR "Couldn't allocate memory for esp serial device information\n");
  2126. /* allow use of the already detected ports */
  2127. return 0;
  2128. }
  2129. memset((void *)info, 0, sizeof(struct esp_struct));
  2130. /* rx_trigger, tx_trigger are needed by autoconfig */
  2131. info->config.rx_trigger = rx_trigger;
  2132. info->config.tx_trigger = tx_trigger;
  2133. if (offset == 56) {
  2134. i++;
  2135. offset = 0;
  2136. } else {
  2137. offset += 8;
  2138. }
  2139. } while (i < NR_PRIMARY);
  2140. /* free the last port memory allocation */
  2141. kfree(info);
  2142. return 0;
  2143. }
  2144. static void __exit espserial_exit(void)
  2145. {
  2146. int e1;
  2147. struct esp_struct *temp_async;
  2148. struct esp_pio_buffer *pio_buf;
  2149. /* printk("Unloading %s: version %s\n", serial_name, serial_version); */
  2150. if ((e1 = tty_unregister_driver(esp_driver)))
  2151. printk("SERIAL: failed to unregister serial driver (%d)\n",
  2152. e1);
  2153. put_tty_driver(esp_driver);
  2154. while (ports) {
  2155. if (ports->port) {
  2156. release_region(ports->port, REGION_SIZE);
  2157. }
  2158. temp_async = ports->next_port;
  2159. kfree(ports);
  2160. ports = temp_async;
  2161. }
  2162. if (dma_buffer)
  2163. free_pages((unsigned long)dma_buffer,
  2164. get_order(DMA_BUFFER_SZ));
  2165. while (free_pio_buf) {
  2166. pio_buf = free_pio_buf->next;
  2167. kfree(free_pio_buf);
  2168. free_pio_buf = pio_buf;
  2169. }
  2170. }
  2171. module_init(espserial_init);
  2172. module_exit(espserial_exit);