jsm.h 14 KB

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  1. /************************************************************************
  2. * Copyright 2003 Digi International (www.digi.com)
  3. *
  4. * Copyright (C) 2004 IBM Corporation. All rights reserved.
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2, or (at your option)
  9. * any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY, EXPRESS OR IMPLIED; without even the
  13. * implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
  14. * PURPOSE. See the GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, write to the Free Software
  18. * Foundation, Inc., 59 * Temple Place - Suite 330, Boston,
  19. * MA 02111-1307, USA.
  20. *
  21. * Contact Information:
  22. * Scott H Kilau <Scott_Kilau@digi.com>
  23. * Wendy Xiong <wendyx@us.ibm.com>
  24. *
  25. ***********************************************************************/
  26. #ifndef __JSM_DRIVER_H
  27. #define __JSM_DRIVER_H
  28. #include <linux/kernel.h>
  29. #include <linux/types.h> /* To pick up the varions Linux types */
  30. #include <linux/tty.h>
  31. #include <linux/serial_core.h>
  32. #include <linux/device.h>
  33. /*
  34. * Debugging levels can be set using debug insmod variable
  35. * They can also be compiled out completely.
  36. */
  37. enum {
  38. DBG_INIT = 0x01,
  39. DBG_BASIC = 0x02,
  40. DBG_CORE = 0x04,
  41. DBG_OPEN = 0x08,
  42. DBG_CLOSE = 0x10,
  43. DBG_READ = 0x20,
  44. DBG_WRITE = 0x40,
  45. DBG_IOCTL = 0x80,
  46. DBG_PROC = 0x100,
  47. DBG_PARAM = 0x200,
  48. DBG_PSCAN = 0x400,
  49. DBG_EVENT = 0x800,
  50. DBG_DRAIN = 0x1000,
  51. DBG_MSIGS = 0x2000,
  52. DBG_MGMT = 0x4000,
  53. DBG_INTR = 0x8000,
  54. DBG_CARR = 0x10000,
  55. };
  56. #define jsm_printk(nlevel, klevel, pdev, fmt, args...) \
  57. if ((DBG_##nlevel & jsm_debug)) \
  58. dev_printk(KERN_##klevel, pdev->dev, fmt, ## args)
  59. #define MAXPORTS 8
  60. #define MAX_STOPS_SENT 5
  61. /* Board type definitions */
  62. #define T_NEO 0000
  63. #define T_CLASSIC 0001
  64. #define T_PCIBUS 0400
  65. /* Board State Definitions */
  66. #define BD_RUNNING 0x0
  67. #define BD_REASON 0x7f
  68. #define BD_NOTFOUND 0x1
  69. #define BD_NOIOPORT 0x2
  70. #define BD_NOMEM 0x3
  71. #define BD_NOBIOS 0x4
  72. #define BD_NOFEP 0x5
  73. #define BD_FAILED 0x6
  74. #define BD_ALLOCATED 0x7
  75. #define BD_TRIBOOT 0x8
  76. #define BD_BADKME 0x80
  77. /* 4 extra for alignment play space */
  78. #define WRITEBUFLEN ((4096) + 4)
  79. #define MYFLIPLEN N_TTY_BUF_SIZE
  80. #define JSM_VERSION "jsm: 1.2-1-INKERNEL"
  81. #define JSM_PARTNUM "40002438_A-INKERNEL"
  82. struct jsm_board;
  83. struct jsm_channel;
  84. /************************************************************************
  85. * Per board operations structure *
  86. ************************************************************************/
  87. struct board_ops {
  88. irqreturn_t (*intr) (int irq, void *voidbrd, struct pt_regs *regs);
  89. void (*uart_init) (struct jsm_channel *ch);
  90. void (*uart_off) (struct jsm_channel *ch);
  91. void (*param) (struct jsm_channel *ch);
  92. void (*assert_modem_signals) (struct jsm_channel *ch);
  93. void (*flush_uart_write) (struct jsm_channel *ch);
  94. void (*flush_uart_read) (struct jsm_channel *ch);
  95. void (*disable_receiver) (struct jsm_channel *ch);
  96. void (*enable_receiver) (struct jsm_channel *ch);
  97. void (*send_break) (struct jsm_channel *ch);
  98. void (*clear_break) (struct jsm_channel *ch, int);
  99. void (*send_start_character) (struct jsm_channel *ch);
  100. void (*send_stop_character) (struct jsm_channel *ch);
  101. void (*copy_data_from_queue_to_uart) (struct jsm_channel *ch);
  102. u32 (*get_uart_bytes_left) (struct jsm_channel *ch);
  103. void (*send_immediate_char) (struct jsm_channel *ch, unsigned char);
  104. };
  105. /*
  106. * Per-board information
  107. */
  108. struct jsm_board
  109. {
  110. int boardnum; /* Board number: 0-32 */
  111. int type; /* Type of board */
  112. u8 rev; /* PCI revision ID */
  113. struct pci_dev *pci_dev;
  114. u32 maxports; /* MAX ports this board can handle */
  115. spinlock_t bd_lock; /* Used to protect board */
  116. spinlock_t bd_intr_lock; /* Used to protect the poller tasklet and
  117. * the interrupt routine from each other.
  118. */
  119. u32 nasync; /* Number of ports on card */
  120. u32 irq; /* Interrupt request number */
  121. u64 intr_count; /* Count of interrupts */
  122. u64 membase; /* Start of base memory of the card */
  123. u64 membase_end; /* End of base memory of the card */
  124. u8 __iomem *re_map_membase;/* Remapped memory of the card */
  125. u64 iobase; /* Start of io base of the card */
  126. u64 iobase_end; /* End of io base of the card */
  127. u32 bd_uart_offset; /* Space between each UART */
  128. struct jsm_channel *channels[MAXPORTS]; /* array of pointers to our channels. */
  129. char *flipbuf; /* Our flip buffer, alloced if board is found */
  130. u32 bd_dividend; /* Board/UARTs specific dividend */
  131. struct board_ops *bd_ops;
  132. struct list_head jsm_board_entry;
  133. };
  134. /************************************************************************
  135. * Device flag definitions for ch_flags.
  136. ************************************************************************/
  137. #define CH_PRON 0x0001 /* Printer on string */
  138. #define CH_STOP 0x0002 /* Output is stopped */
  139. #define CH_STOPI 0x0004 /* Input is stopped */
  140. #define CH_CD 0x0008 /* Carrier is present */
  141. #define CH_FCAR 0x0010 /* Carrier forced on */
  142. #define CH_HANGUP 0x0020 /* Hangup received */
  143. #define CH_RECEIVER_OFF 0x0040 /* Receiver is off */
  144. #define CH_OPENING 0x0080 /* Port in fragile open state */
  145. #define CH_CLOSING 0x0100 /* Port in fragile close state */
  146. #define CH_FIFO_ENABLED 0x0200 /* Port has FIFOs enabled */
  147. #define CH_TX_FIFO_EMPTY 0x0400 /* TX Fifo is completely empty */
  148. #define CH_TX_FIFO_LWM 0x0800 /* TX Fifo is below Low Water */
  149. #define CH_BREAK_SENDING 0x1000 /* Break is being sent */
  150. #define CH_LOOPBACK 0x2000 /* Channel is in lookback mode */
  151. #define CH_FLIPBUF_IN_USE 0x4000 /* Channel's flipbuf is in use */
  152. #define CH_BAUD0 0x08000 /* Used for checking B0 transitions */
  153. /* Our Read/Error/Write queue sizes */
  154. #define RQUEUEMASK 0x1FFF /* 8 K - 1 */
  155. #define EQUEUEMASK 0x1FFF /* 8 K - 1 */
  156. #define WQUEUEMASK 0x0FFF /* 4 K - 1 */
  157. #define RQUEUESIZE (RQUEUEMASK + 1)
  158. #define EQUEUESIZE RQUEUESIZE
  159. #define WQUEUESIZE (WQUEUEMASK + 1)
  160. /************************************************************************
  161. * Channel information structure.
  162. ************************************************************************/
  163. struct jsm_channel {
  164. struct uart_port uart_port;
  165. struct jsm_board *ch_bd; /* Board structure pointer */
  166. spinlock_t ch_lock; /* provide for serialization */
  167. wait_queue_head_t ch_flags_wait;
  168. u32 ch_portnum; /* Port number, 0 offset. */
  169. u32 ch_open_count; /* open count */
  170. u32 ch_flags; /* Channel flags */
  171. u64 ch_close_delay; /* How long we should drop RTS/DTR for */
  172. u64 ch_cpstime; /* Time for CPS calculations */
  173. tcflag_t ch_c_iflag; /* channel iflags */
  174. tcflag_t ch_c_cflag; /* channel cflags */
  175. tcflag_t ch_c_oflag; /* channel oflags */
  176. tcflag_t ch_c_lflag; /* channel lflags */
  177. u8 ch_stopc; /* Stop character */
  178. u8 ch_startc; /* Start character */
  179. u32 ch_old_baud; /* Cache of the current baud */
  180. u32 ch_custom_speed;/* Custom baud, if set */
  181. u32 ch_wopen; /* Waiting for open process cnt */
  182. u8 ch_mostat; /* FEP output modem status */
  183. u8 ch_mistat; /* FEP input modem status */
  184. struct neo_uart_struct __iomem *ch_neo_uart; /* Pointer to the "mapped" UART struct */
  185. u8 ch_cached_lsr; /* Cached value of the LSR register */
  186. u8 *ch_rqueue; /* Our read queue buffer - malloc'ed */
  187. u16 ch_r_head; /* Head location of the read queue */
  188. u16 ch_r_tail; /* Tail location of the read queue */
  189. u8 *ch_equeue; /* Our error queue buffer - malloc'ed */
  190. u16 ch_e_head; /* Head location of the error queue */
  191. u16 ch_e_tail; /* Tail location of the error queue */
  192. u8 *ch_wqueue; /* Our write queue buffer - malloc'ed */
  193. u16 ch_w_head; /* Head location of the write queue */
  194. u16 ch_w_tail; /* Tail location of the write queue */
  195. u64 ch_rxcount; /* total of data received so far */
  196. u64 ch_txcount; /* total of data transmitted so far */
  197. u8 ch_r_tlevel; /* Receive Trigger level */
  198. u8 ch_t_tlevel; /* Transmit Trigger level */
  199. u8 ch_r_watermark; /* Receive Watermark */
  200. u32 ch_stops_sent; /* How many times I have sent a stop character
  201. * to try to stop the other guy sending.
  202. */
  203. u64 ch_err_parity; /* Count of parity errors on channel */
  204. u64 ch_err_frame; /* Count of framing errors on channel */
  205. u64 ch_err_break; /* Count of breaks on channel */
  206. u64 ch_err_overrun; /* Count of overruns on channel */
  207. u64 ch_xon_sends; /* Count of xons transmitted */
  208. u64 ch_xoff_sends; /* Count of xoffs transmitted */
  209. };
  210. /************************************************************************
  211. * Per channel/port NEO UART structure *
  212. ************************************************************************
  213. * Base Structure Entries Usage Meanings to Host *
  214. * *
  215. * W = read write R = read only *
  216. * U = Unused. *
  217. ************************************************************************/
  218. struct neo_uart_struct {
  219. u8 txrx; /* WR RHR/THR - Holding Reg */
  220. u8 ier; /* WR IER - Interrupt Enable Reg */
  221. u8 isr_fcr; /* WR ISR/FCR - Interrupt Status Reg/Fifo Control Reg */
  222. u8 lcr; /* WR LCR - Line Control Reg */
  223. u8 mcr; /* WR MCR - Modem Control Reg */
  224. u8 lsr; /* WR LSR - Line Status Reg */
  225. u8 msr; /* WR MSR - Modem Status Reg */
  226. u8 spr; /* WR SPR - Scratch Pad Reg */
  227. u8 fctr; /* WR FCTR - Feature Control Reg */
  228. u8 efr; /* WR EFR - Enhanced Function Reg */
  229. u8 tfifo; /* WR TXCNT/TXTRG - Transmit FIFO Reg */
  230. u8 rfifo; /* WR RXCNT/RXTRG - Recieve FIFO Reg */
  231. u8 xoffchar1; /* WR XOFF 1 - XOff Character 1 Reg */
  232. u8 xoffchar2; /* WR XOFF 2 - XOff Character 2 Reg */
  233. u8 xonchar1; /* WR XON 1 - Xon Character 1 Reg */
  234. u8 xonchar2; /* WR XON 2 - XOn Character 2 Reg */
  235. u8 reserved1[0x2ff - 0x200]; /* U Reserved by Exar */
  236. u8 txrxburst[64]; /* RW 64 bytes of RX/TX FIFO Data */
  237. u8 reserved2[0x37f - 0x340]; /* U Reserved by Exar */
  238. u8 rxburst_with_errors[64]; /* R 64 bytes of RX FIFO Data + LSR */
  239. };
  240. /* Where to read the extended interrupt register (32bits instead of 8bits) */
  241. #define UART_17158_POLL_ADDR_OFFSET 0x80
  242. /*
  243. * These are the redefinitions for the FCTR on the XR17C158, since
  244. * Exar made them different than their earlier design. (XR16C854)
  245. */
  246. /* These are only applicable when table D is selected */
  247. #define UART_17158_FCTR_RTS_NODELAY 0x00
  248. #define UART_17158_FCTR_RTS_4DELAY 0x01
  249. #define UART_17158_FCTR_RTS_6DELAY 0x02
  250. #define UART_17158_FCTR_RTS_8DELAY 0x03
  251. #define UART_17158_FCTR_RTS_12DELAY 0x12
  252. #define UART_17158_FCTR_RTS_16DELAY 0x05
  253. #define UART_17158_FCTR_RTS_20DELAY 0x13
  254. #define UART_17158_FCTR_RTS_24DELAY 0x06
  255. #define UART_17158_FCTR_RTS_28DELAY 0x14
  256. #define UART_17158_FCTR_RTS_32DELAY 0x07
  257. #define UART_17158_FCTR_RTS_36DELAY 0x16
  258. #define UART_17158_FCTR_RTS_40DELAY 0x08
  259. #define UART_17158_FCTR_RTS_44DELAY 0x09
  260. #define UART_17158_FCTR_RTS_48DELAY 0x10
  261. #define UART_17158_FCTR_RTS_52DELAY 0x11
  262. #define UART_17158_FCTR_RTS_IRDA 0x10
  263. #define UART_17158_FCTR_RS485 0x20
  264. #define UART_17158_FCTR_TRGA 0x00
  265. #define UART_17158_FCTR_TRGB 0x40
  266. #define UART_17158_FCTR_TRGC 0x80
  267. #define UART_17158_FCTR_TRGD 0xC0
  268. /* 17158 trigger table selects.. */
  269. #define UART_17158_FCTR_BIT6 0x40
  270. #define UART_17158_FCTR_BIT7 0x80
  271. /* 17158 TX/RX memmapped buffer offsets */
  272. #define UART_17158_RX_FIFOSIZE 64
  273. #define UART_17158_TX_FIFOSIZE 64
  274. /* 17158 Extended IIR's */
  275. #define UART_17158_IIR_RDI_TIMEOUT 0x0C /* Receiver data TIMEOUT */
  276. #define UART_17158_IIR_XONXOFF 0x10 /* Received an XON/XOFF char */
  277. #define UART_17158_IIR_HWFLOW_STATE_CHANGE 0x20 /* CTS/DSR or RTS/DTR state change */
  278. #define UART_17158_IIR_FIFO_ENABLED 0xC0 /* 16550 FIFOs are Enabled */
  279. /*
  280. * These are the extended interrupts that get sent
  281. * back to us from the UART's 32bit interrupt register
  282. */
  283. #define UART_17158_RX_LINE_STATUS 0x1 /* RX Ready */
  284. #define UART_17158_RXRDY_TIMEOUT 0x2 /* RX Ready Timeout */
  285. #define UART_17158_TXRDY 0x3 /* TX Ready */
  286. #define UART_17158_MSR 0x4 /* Modem State Change */
  287. #define UART_17158_TX_AND_FIFO_CLR 0x40 /* Transmitter Holding Reg Empty */
  288. #define UART_17158_RX_FIFO_DATA_ERROR 0x80 /* UART detected an RX FIFO Data error */
  289. /*
  290. * These are the EXTENDED definitions for the 17C158's Interrupt
  291. * Enable Register.
  292. */
  293. #define UART_17158_EFR_ECB 0x10 /* Enhanced control bit */
  294. #define UART_17158_EFR_IXON 0x2 /* Receiver compares Xon1/Xoff1 */
  295. #define UART_17158_EFR_IXOFF 0x8 /* Transmit Xon1/Xoff1 */
  296. #define UART_17158_EFR_RTSDTR 0x40 /* Auto RTS/DTR Flow Control Enable */
  297. #define UART_17158_EFR_CTSDSR 0x80 /* Auto CTS/DSR Flow COntrol Enable */
  298. #define UART_17158_XOFF_DETECT 0x1 /* Indicates whether chip saw an incoming XOFF char */
  299. #define UART_17158_XON_DETECT 0x2 /* Indicates whether chip saw an incoming XON char */
  300. #define UART_17158_IER_RSVD1 0x10 /* Reserved by Exar */
  301. #define UART_17158_IER_XOFF 0x20 /* Xoff Interrupt Enable */
  302. #define UART_17158_IER_RTSDTR 0x40 /* Output Interrupt Enable */
  303. #define UART_17158_IER_CTSDSR 0x80 /* Input Interrupt Enable */
  304. #define PCI_DEVICE_NEO_2DB9_PCI_NAME "Neo 2 - DB9 Universal PCI"
  305. #define PCI_DEVICE_NEO_2DB9PRI_PCI_NAME "Neo 2 - DB9 Universal PCI - Powered Ring Indicator"
  306. #define PCI_DEVICE_NEO_2RJ45_PCI_NAME "Neo 2 - RJ45 Universal PCI"
  307. #define PCI_DEVICE_NEO_2RJ45PRI_PCI_NAME "Neo 2 - RJ45 Universal PCI - Powered Ring Indicator"
  308. /*
  309. * Our Global Variables.
  310. */
  311. extern struct uart_driver jsm_uart_driver;
  312. extern struct board_ops jsm_neo_ops;
  313. extern int jsm_debug;
  314. /*************************************************************************
  315. *
  316. * Prototypes for non-static functions used in more than one module
  317. *
  318. *************************************************************************/
  319. int jsm_tty_write(struct uart_port *port);
  320. int jsm_tty_init(struct jsm_board *);
  321. int jsm_uart_port_init(struct jsm_board *);
  322. int jsm_remove_uart_port(struct jsm_board *);
  323. void jsm_input(struct jsm_channel *ch);
  324. void jsm_check_queue_flow_control(struct jsm_channel *ch);
  325. #endif