2 * $Id: synclinkmp.c,v 4.38 2005/07/15 13:29:44 paulkf Exp $
4 * Device driver for Microgate SyncLink Multiport
5 * high speed multiprotocol serial adapter.
7 * written by Paul Fulghum for Microgate Corporation
10 * Microgate and SyncLink are trademarks of Microgate Corporation
12 * Derived from serial.c written by Theodore Ts'o and Linus Torvalds
13 * This code is released under the GNU General Public License (GPL)
15 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
16 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
19 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
20 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
23 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
24 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
25 * OF THE POSSIBILITY OF SUCH DAMAGE.
28 #define VERSION(ver,rel,seq) (((ver)<<16) | ((rel)<<8) | (seq))
30 # define BREAKPOINT() asm(" int $3");
32 # define BREAKPOINT() { }
35 #define MAX_DEVICES 12
37 #include <linux/module.h>
38 #include <linux/errno.h>
39 #include <linux/signal.h>
40 #include <linux/sched.h>
41 #include <linux/timer.h>
42 #include <linux/interrupt.h>
43 #include <linux/pci.h>
44 #include <linux/tty.h>
45 #include <linux/tty_flip.h>
46 #include <linux/serial.h>
47 #include <linux/major.h>
48 #include <linux/string.h>
49 #include <linux/fcntl.h>
50 #include <linux/ptrace.h>
51 #include <linux/ioport.h>
53 #include <linux/seq_file.h>
54 #include <linux/slab.h>
55 #include <linux/netdevice.h>
56 #include <linux/vmalloc.h>
57 #include <linux/init.h>
58 #include <linux/delay.h>
59 #include <linux/ioctl.h>
61 #include <asm/system.h>
65 #include <linux/bitops.h>
66 #include <asm/types.h>
67 #include <linux/termios.h>
68 #include <linux/workqueue.h>
69 #include <linux/hdlc.h>
70 #include <linux/synclink.h>
72 #if defined(CONFIG_HDLC) || (defined(CONFIG_HDLC_MODULE) && defined(CONFIG_SYNCLINKMP_MODULE))
73 #define SYNCLINK_GENERIC_HDLC 1
75 #define SYNCLINK_GENERIC_HDLC 0
78 #define GET_USER(error,value,addr) error = get_user(value,addr)
79 #define COPY_FROM_USER(error,dest,src,size) error = copy_from_user(dest,src,size) ? -EFAULT : 0
80 #define PUT_USER(error,value,addr) error = put_user(value,addr)
81 #define COPY_TO_USER(error,dest,src,size) error = copy_to_user(dest,src,size) ? -EFAULT : 0
83 #include <asm/uaccess.h>
85 static MGSL_PARAMS default_params
= {
86 MGSL_MODE_HDLC
, /* unsigned long mode */
87 0, /* unsigned char loopback; */
88 HDLC_FLAG_UNDERRUN_ABORT15
, /* unsigned short flags; */
89 HDLC_ENCODING_NRZI_SPACE
, /* unsigned char encoding; */
90 0, /* unsigned long clock_speed; */
91 0xff, /* unsigned char addr_filter; */
92 HDLC_CRC_16_CCITT
, /* unsigned short crc_type; */
93 HDLC_PREAMBLE_LENGTH_8BITS
, /* unsigned char preamble_length; */
94 HDLC_PREAMBLE_PATTERN_NONE
, /* unsigned char preamble; */
95 9600, /* unsigned long data_rate; */
96 8, /* unsigned char data_bits; */
97 1, /* unsigned char stop_bits; */
98 ASYNC_PARITY_NONE
/* unsigned char parity; */
101 /* size in bytes of DMA data buffers */
102 #define SCABUFSIZE 1024
103 #define SCA_MEM_SIZE 0x40000
104 #define SCA_BASE_SIZE 512
105 #define SCA_REG_SIZE 16
106 #define SCA_MAX_PORTS 4
107 #define SCAMAXDESC 128
109 #define BUFFERLISTSIZE 4096
111 /* SCA-I style DMA buffer descriptor */
112 typedef struct _SCADESC
114 u16 next
; /* lower l6 bits of next descriptor addr */
115 u16 buf_ptr
; /* lower 16 bits of buffer addr */
116 u8 buf_base
; /* upper 8 bits of buffer addr */
118 u16 length
; /* length of buffer */
119 u8 status
; /* status of buffer */
121 } SCADESC
, *PSCADESC
;
123 typedef struct _SCADESC_EX
125 /* device driver bookkeeping section */
126 char *virt_addr
; /* virtual address of data buffer */
127 u16 phys_entry
; /* lower 16-bits of physical address of this descriptor */
128 } SCADESC_EX
, *PSCADESC_EX
;
130 /* The queue of BH actions to be performed */
133 #define BH_TRANSMIT 2
136 #define IO_PIN_SHUTDOWN_LIMIT 100
138 struct _input_signal_events
{
150 * Device instance data structure
152 typedef struct _synclinkmp_info
{
153 void *if_ptr
; /* General purpose pointer (used by SPPP) */
155 struct tty_port port
;
157 unsigned short close_delay
;
158 unsigned short closing_wait
; /* time to wait before closing */
160 struct mgsl_icount icount
;
163 int x_char
; /* xon/xoff character */
164 u16 read_status_mask1
; /* break detection (SR1 indications) */
165 u16 read_status_mask2
; /* parity/framing/overun (SR2 indications) */
166 unsigned char ignore_status_mask1
; /* break detection (SR1 indications) */
167 unsigned char ignore_status_mask2
; /* parity/framing/overun (SR2 indications) */
168 unsigned char *tx_buf
;
173 wait_queue_head_t status_event_wait_q
;
174 wait_queue_head_t event_wait_q
;
175 struct timer_list tx_timer
; /* HDLC transmit timeout timer */
176 struct _synclinkmp_info
*next_device
; /* device list link */
177 struct timer_list status_timer
; /* input signal status check timer */
179 spinlock_t lock
; /* spinlock for synchronizing with ISR */
180 struct work_struct task
; /* task structure for scheduling bh */
182 u32 max_frame_size
; /* as set by device config */
186 bool bh_running
; /* Protection from multiple */
190 int dcd_chkcount
; /* check counts to prevent */
191 int cts_chkcount
; /* too many IRQs if a signal */
192 int dsr_chkcount
; /* is floating */
195 char *buffer_list
; /* virtual address of Rx & Tx buffer lists */
196 unsigned long buffer_list_phys
;
198 unsigned int rx_buf_count
; /* count of total allocated Rx buffers */
199 SCADESC
*rx_buf_list
; /* list of receive buffer entries */
200 SCADESC_EX rx_buf_list_ex
[SCAMAXDESC
]; /* list of receive buffer entries */
201 unsigned int current_rx_buf
;
203 unsigned int tx_buf_count
; /* count of total allocated Tx buffers */
204 SCADESC
*tx_buf_list
; /* list of transmit buffer entries */
205 SCADESC_EX tx_buf_list_ex
[SCAMAXDESC
]; /* list of transmit buffer entries */
206 unsigned int last_tx_buf
;
208 unsigned char *tmp_rx_buf
;
209 unsigned int tmp_rx_buf_count
;
218 unsigned char ie0_value
;
219 unsigned char ie1_value
;
220 unsigned char ie2_value
;
221 unsigned char ctrlreg_value
;
222 unsigned char old_signals
;
224 char device_name
[25]; /* device instance name */
230 struct _synclinkmp_info
*port_array
[SCA_MAX_PORTS
];
232 unsigned int bus_type
; /* expansion bus type (ISA,EISA,PCI) */
234 unsigned int irq_level
; /* interrupt level */
235 unsigned long irq_flags
;
236 bool irq_requested
; /* true if IRQ requested */
238 MGSL_PARAMS params
; /* communications parameters */
240 unsigned char serial_signals
; /* current serial signal states */
242 bool irq_occurred
; /* for diagnostics use */
243 unsigned int init_error
; /* Initialization startup error */
246 unsigned char* memory_base
; /* shared memory address (PCI only) */
247 u32 phys_memory_base
;
248 int shared_mem_requested
;
250 unsigned char* sca_base
; /* HD64570 SCA Memory address */
253 bool sca_base_requested
;
255 unsigned char* lcr_base
; /* local config registers (PCI only) */
258 int lcr_mem_requested
;
260 unsigned char* statctrl_base
; /* status/control register memory */
261 u32 phys_statctrl_base
;
263 bool sca_statctrl_requested
;
266 char flag_buf
[MAX_ASYNC_BUFFER_SIZE
];
267 char char_buf
[MAX_ASYNC_BUFFER_SIZE
];
268 bool drop_rts_on_tx_done
;
270 struct _input_signal_events input_signal_events
;
272 /* SPPP/Cisco HDLC device parts */
276 #if SYNCLINK_GENERIC_HDLC
277 struct net_device
*netdev
;
282 #define MGSL_MAGIC 0x5401
285 * define serial signal status change macros
287 #define MISCSTATUS_DCD_LATCHED (SerialSignal_DCD<<8) /* indicates change in DCD */
288 #define MISCSTATUS_RI_LATCHED (SerialSignal_RI<<8) /* indicates change in RI */
289 #define MISCSTATUS_CTS_LATCHED (SerialSignal_CTS<<8) /* indicates change in CTS */
290 #define MISCSTATUS_DSR_LATCHED (SerialSignal_DSR<<8) /* change in DSR */
292 /* Common Register macros */
311 /* MSCI Register macros */
341 /* Timer Register Macros */
351 /* DMA Controller Register macros */
382 /* combine with timer or DMA register address */
390 /* SCA Command Codes */
393 #define TXENABLE 0x02
394 #define TXDISABLE 0x03
395 #define TXCRCINIT 0x04
396 #define TXCRCEXCL 0x05
400 #define TXBUFCLR 0x09
402 #define RXENABLE 0x12
403 #define RXDISABLE 0x13
404 #define RXCRCINIT 0x14
405 #define RXREJECT 0x15
406 #define SEARCHMP 0x16
407 #define RXCRCEXCL 0x17
408 #define RXCRCCALC 0x18
412 /* DMA command codes */
414 #define FEICLEAR 0x02
448 * Global linked list of SyncLink devices
450 static SLMP_INFO
*synclinkmp_device_list
= NULL
;
451 static int synclinkmp_adapter_count
= -1;
452 static int synclinkmp_device_count
= 0;
455 * Set this param to non-zero to load eax with the
456 * .text section address and breakpoint on module load.
457 * This is useful for use with gdb and add-symbol-file command.
459 static int break_on_load
= 0;
462 * Driver major number, defaults to zero to get auto
463 * assigned major number. May be forced as module parameter.
465 static int ttymajor
= 0;
468 * Array of user specified options for ISA adapters.
470 static int debug_level
= 0;
471 static int maxframe
[MAX_DEVICES
] = {0,};
473 module_param(break_on_load
, bool, 0);
474 module_param(ttymajor
, int, 0);
475 module_param(debug_level
, int, 0);
476 module_param_array(maxframe
, int, NULL
, 0);
478 static char *driver_name
= "SyncLink MultiPort driver";
479 static char *driver_version
= "$Revision: 4.38 $";
481 static int synclinkmp_init_one(struct pci_dev
*dev
,const struct pci_device_id
*ent
);
482 static void synclinkmp_remove_one(struct pci_dev
*dev
);
484 static struct pci_device_id synclinkmp_pci_tbl
[] = {
485 { PCI_VENDOR_ID_MICROGATE
, PCI_DEVICE_ID_MICROGATE_SCA
, PCI_ANY_ID
, PCI_ANY_ID
, },
486 { 0, }, /* terminate list */
488 MODULE_DEVICE_TABLE(pci
, synclinkmp_pci_tbl
);
490 MODULE_LICENSE("GPL");
492 static struct pci_driver synclinkmp_pci_driver
= {
493 .name
= "synclinkmp",
494 .id_table
= synclinkmp_pci_tbl
,
495 .probe
= synclinkmp_init_one
,
496 .remove
= __devexit_p(synclinkmp_remove_one
),
500 static struct tty_driver
*serial_driver
;
502 /* number of characters left in xmit buffer before we ask for more */
503 #define WAKEUP_CHARS 256
508 static int open(struct tty_struct
*tty
, struct file
* filp
);
509 static void close(struct tty_struct
*tty
, struct file
* filp
);
510 static void hangup(struct tty_struct
*tty
);
511 static void set_termios(struct tty_struct
*tty
, struct ktermios
*old_termios
);
513 static int write(struct tty_struct
*tty
, const unsigned char *buf
, int count
);
514 static int put_char(struct tty_struct
*tty
, unsigned char ch
);
515 static void send_xchar(struct tty_struct
*tty
, char ch
);
516 static void wait_until_sent(struct tty_struct
*tty
, int timeout
);
517 static int write_room(struct tty_struct
*tty
);
518 static void flush_chars(struct tty_struct
*tty
);
519 static void flush_buffer(struct tty_struct
*tty
);
520 static void tx_hold(struct tty_struct
*tty
);
521 static void tx_release(struct tty_struct
*tty
);
523 static int ioctl(struct tty_struct
*tty
, struct file
*file
, unsigned int cmd
, unsigned long arg
);
524 static int chars_in_buffer(struct tty_struct
*tty
);
525 static void throttle(struct tty_struct
* tty
);
526 static void unthrottle(struct tty_struct
* tty
);
527 static int set_break(struct tty_struct
*tty
, int break_state
);
529 #if SYNCLINK_GENERIC_HDLC
530 #define dev_to_port(D) (dev_to_hdlc(D)->priv)
531 static void hdlcdev_tx_done(SLMP_INFO
*info
);
532 static void hdlcdev_rx(SLMP_INFO
*info
, char *buf
, int size
);
533 static int hdlcdev_init(SLMP_INFO
*info
);
534 static void hdlcdev_exit(SLMP_INFO
*info
);
539 static int get_stats(SLMP_INFO
*info
, struct mgsl_icount __user
*user_icount
);
540 static int get_params(SLMP_INFO
*info
, MGSL_PARAMS __user
*params
);
541 static int set_params(SLMP_INFO
*info
, MGSL_PARAMS __user
*params
);
542 static int get_txidle(SLMP_INFO
*info
, int __user
*idle_mode
);
543 static int set_txidle(SLMP_INFO
*info
, int idle_mode
);
544 static int tx_enable(SLMP_INFO
*info
, int enable
);
545 static int tx_abort(SLMP_INFO
*info
);
546 static int rx_enable(SLMP_INFO
*info
, int enable
);
547 static int modem_input_wait(SLMP_INFO
*info
,int arg
);
548 static int wait_mgsl_event(SLMP_INFO
*info
, int __user
*mask_ptr
);
549 static int tiocmget(struct tty_struct
*tty
, struct file
*file
);
550 static int tiocmset(struct tty_struct
*tty
, struct file
*file
,
551 unsigned int set
, unsigned int clear
);
552 static int set_break(struct tty_struct
*tty
, int break_state
);
554 static void add_device(SLMP_INFO
*info
);
555 static void device_init(int adapter_num
, struct pci_dev
*pdev
);
556 static int claim_resources(SLMP_INFO
*info
);
557 static void release_resources(SLMP_INFO
*info
);
559 static int startup(SLMP_INFO
*info
);
560 static int block_til_ready(struct tty_struct
*tty
, struct file
* filp
,SLMP_INFO
*info
);
561 static int carrier_raised(struct tty_port
*port
);
562 static void shutdown(SLMP_INFO
*info
);
563 static void program_hw(SLMP_INFO
*info
);
564 static void change_params(SLMP_INFO
*info
);
566 static bool init_adapter(SLMP_INFO
*info
);
567 static bool register_test(SLMP_INFO
*info
);
568 static bool irq_test(SLMP_INFO
*info
);
569 static bool loopback_test(SLMP_INFO
*info
);
570 static int adapter_test(SLMP_INFO
*info
);
571 static bool memory_test(SLMP_INFO
*info
);
573 static void reset_adapter(SLMP_INFO
*info
);
574 static void reset_port(SLMP_INFO
*info
);
575 static void async_mode(SLMP_INFO
*info
);
576 static void hdlc_mode(SLMP_INFO
*info
);
578 static void rx_stop(SLMP_INFO
*info
);
579 static void rx_start(SLMP_INFO
*info
);
580 static void rx_reset_buffers(SLMP_INFO
*info
);
581 static void rx_free_frame_buffers(SLMP_INFO
*info
, unsigned int first
, unsigned int last
);
582 static bool rx_get_frame(SLMP_INFO
*info
);
584 static void tx_start(SLMP_INFO
*info
);
585 static void tx_stop(SLMP_INFO
*info
);
586 static void tx_load_fifo(SLMP_INFO
*info
);
587 static void tx_set_idle(SLMP_INFO
*info
);
588 static void tx_load_dma_buffer(SLMP_INFO
*info
, const char *buf
, unsigned int count
);
590 static void get_signals(SLMP_INFO
*info
);
591 static void set_signals(SLMP_INFO
*info
);
592 static void enable_loopback(SLMP_INFO
*info
, int enable
);
593 static void set_rate(SLMP_INFO
*info
, u32 data_rate
);
595 static int bh_action(SLMP_INFO
*info
);
596 static void bh_handler(struct work_struct
*work
);
597 static void bh_receive(SLMP_INFO
*info
);
598 static void bh_transmit(SLMP_INFO
*info
);
599 static void bh_status(SLMP_INFO
*info
);
600 static void isr_timer(SLMP_INFO
*info
);
601 static void isr_rxint(SLMP_INFO
*info
);
602 static void isr_rxrdy(SLMP_INFO
*info
);
603 static void isr_txint(SLMP_INFO
*info
);
604 static void isr_txrdy(SLMP_INFO
*info
);
605 static void isr_rxdmaok(SLMP_INFO
*info
);
606 static void isr_rxdmaerror(SLMP_INFO
*info
);
607 static void isr_txdmaok(SLMP_INFO
*info
);
608 static void isr_txdmaerror(SLMP_INFO
*info
);
609 static void isr_io_pin(SLMP_INFO
*info
, u16 status
);
611 static int alloc_dma_bufs(SLMP_INFO
*info
);
612 static void free_dma_bufs(SLMP_INFO
*info
);
613 static int alloc_buf_list(SLMP_INFO
*info
);
614 static int alloc_frame_bufs(SLMP_INFO
*info
, SCADESC
*list
, SCADESC_EX
*list_ex
,int count
);
615 static int alloc_tmp_rx_buf(SLMP_INFO
*info
);
616 static void free_tmp_rx_buf(SLMP_INFO
*info
);
618 static void load_pci_memory(SLMP_INFO
*info
, char* dest
, const char* src
, unsigned short count
);
619 static void trace_block(SLMP_INFO
*info
, const char* data
, int count
, int xmit
);
620 static void tx_timeout(unsigned long context
);
621 static void status_timeout(unsigned long context
);
623 static unsigned char read_reg(SLMP_INFO
*info
, unsigned char addr
);
624 static void write_reg(SLMP_INFO
*info
, unsigned char addr
, unsigned char val
);
625 static u16
read_reg16(SLMP_INFO
*info
, unsigned char addr
);
626 static void write_reg16(SLMP_INFO
*info
, unsigned char addr
, u16 val
);
627 static unsigned char read_status_reg(SLMP_INFO
* info
);
628 static void write_control_reg(SLMP_INFO
* info
);
631 static unsigned char rx_active_fifo_level
= 16; // rx request FIFO activation level in bytes
632 static unsigned char tx_active_fifo_level
= 16; // tx request FIFO activation level in bytes
633 static unsigned char tx_negate_fifo_level
= 32; // tx request FIFO negation level in bytes
635 static u32 misc_ctrl_value
= 0x007e4040;
636 static u32 lcr1_brdr_value
= 0x00800028;
638 static u32 read_ahead_count
= 8;
640 /* DPCR, DMA Priority Control
642 * 07..05 Not used, must be 0
643 * 04 BRC, bus release condition: 0=all transfers complete
644 * 1=release after 1 xfer on all channels
645 * 03 CCC, channel change condition: 0=every cycle
646 * 1=after each channel completes all xfers
647 * 02..00 PR<2..0>, priority 100=round robin
651 static unsigned char dma_priority
= 0x04;
653 // Number of bytes that can be written to shared RAM
654 // in a single write operation
655 static u32 sca_pci_load_interval
= 64;
658 * 1st function defined in .text section. Calling this function in
659 * init_module() followed by a breakpoint allows a remote debugger
660 * (gdb) to get the .text address for the add-symbol-file command.
661 * This allows remote debugging of dynamically loadable modules.
663 static void* synclinkmp_get_text_ptr(void);
664 static void* synclinkmp_get_text_ptr(void) {return synclinkmp_get_text_ptr
;}
666 static inline int sanity_check(SLMP_INFO
*info
,
667 char *name
, const char *routine
)
670 static const char *badmagic
=
671 "Warning: bad magic number for synclinkmp_struct (%s) in %s\n";
672 static const char *badinfo
=
673 "Warning: null synclinkmp_struct for (%s) in %s\n";
676 printk(badinfo
, name
, routine
);
679 if (info
->magic
!= MGSL_MAGIC
) {
680 printk(badmagic
, name
, routine
);
691 * line discipline callback wrappers
693 * The wrappers maintain line discipline references
694 * while calling into the line discipline.
696 * ldisc_receive_buf - pass receive data to line discipline
699 static void ldisc_receive_buf(struct tty_struct
*tty
,
700 const __u8
*data
, char *flags
, int count
)
702 struct tty_ldisc
*ld
;
705 ld
= tty_ldisc_ref(tty
);
707 if (ld
->ops
->receive_buf
)
708 ld
->ops
->receive_buf(tty
, data
, flags
, count
);
715 /* Called when a port is opened. Init and enable port.
717 static int open(struct tty_struct
*tty
, struct file
*filp
)
724 if ((line
< 0) || (line
>= synclinkmp_device_count
)) {
725 printk("%s(%d): open with invalid line #%d.\n",
726 __FILE__
,__LINE__
,line
);
730 info
= synclinkmp_device_list
;
731 while(info
&& info
->line
!= line
)
732 info
= info
->next_device
;
733 if (sanity_check(info
, tty
->name
, "open"))
735 if ( info
->init_error
) {
736 printk("%s(%d):%s device is not allocated, init error=%d\n",
737 __FILE__
,__LINE__
,info
->device_name
,info
->init_error
);
741 tty
->driver_data
= info
;
742 info
->port
.tty
= tty
;
744 if (debug_level
>= DEBUG_LEVEL_INFO
)
745 printk("%s(%d):%s open(), old ref count = %d\n",
746 __FILE__
,__LINE__
,tty
->driver
->name
, info
->port
.count
);
748 /* If port is closing, signal caller to try again */
749 if (tty_hung_up_p(filp
) || info
->port
.flags
& ASYNC_CLOSING
){
750 if (info
->port
.flags
& ASYNC_CLOSING
)
751 interruptible_sleep_on(&info
->port
.close_wait
);
752 retval
= ((info
->port
.flags
& ASYNC_HUP_NOTIFY
) ?
753 -EAGAIN
: -ERESTARTSYS
);
757 info
->port
.tty
->low_latency
= (info
->port
.flags
& ASYNC_LOW_LATENCY
) ? 1 : 0;
759 spin_lock_irqsave(&info
->netlock
, flags
);
760 if (info
->netcount
) {
762 spin_unlock_irqrestore(&info
->netlock
, flags
);
766 spin_unlock_irqrestore(&info
->netlock
, flags
);
768 if (info
->port
.count
== 1) {
769 /* 1st open on this device, init hardware */
770 retval
= startup(info
);
775 retval
= block_til_ready(tty
, filp
, info
);
777 if (debug_level
>= DEBUG_LEVEL_INFO
)
778 printk("%s(%d):%s block_til_ready() returned %d\n",
779 __FILE__
,__LINE__
, info
->device_name
, retval
);
783 if (debug_level
>= DEBUG_LEVEL_INFO
)
784 printk("%s(%d):%s open() success\n",
785 __FILE__
,__LINE__
, info
->device_name
);
791 info
->port
.tty
= NULL
; /* tty layer will release tty struct */
799 /* Called when port is closed. Wait for remaining data to be
800 * sent. Disable port and free resources.
802 static void close(struct tty_struct
*tty
, struct file
*filp
)
804 SLMP_INFO
* info
= tty
->driver_data
;
806 if (sanity_check(info
, tty
->name
, "close"))
809 if (debug_level
>= DEBUG_LEVEL_INFO
)
810 printk("%s(%d):%s close() entry, count=%d\n",
811 __FILE__
,__LINE__
, info
->device_name
, info
->port
.count
);
813 if (tty_port_close_start(&info
->port
, tty
, filp
) == 0)
816 mutex_lock(&info
->port
.mutex
);
817 if (info
->port
.flags
& ASYNC_INITIALIZED
)
818 wait_until_sent(tty
, info
->timeout
);
821 tty_ldisc_flush(tty
);
823 mutex_unlock(&info
->port
.mutex
);
825 tty_port_close_end(&info
->port
, tty
);
826 info
->port
.tty
= NULL
;
828 if (debug_level
>= DEBUG_LEVEL_INFO
)
829 printk("%s(%d):%s close() exit, count=%d\n", __FILE__
,__LINE__
,
830 tty
->driver
->name
, info
->port
.count
);
833 /* Called by tty_hangup() when a hangup is signaled.
834 * This is the same as closing all open descriptors for the port.
836 static void hangup(struct tty_struct
*tty
)
838 SLMP_INFO
*info
= tty
->driver_data
;
841 if (debug_level
>= DEBUG_LEVEL_INFO
)
842 printk("%s(%d):%s hangup()\n",
843 __FILE__
,__LINE__
, info
->device_name
);
845 if (sanity_check(info
, tty
->name
, "hangup"))
848 mutex_lock(&info
->port
.mutex
);
852 spin_lock_irqsave(&info
->port
.lock
, flags
);
853 info
->port
.count
= 0;
854 info
->port
.flags
&= ~ASYNC_NORMAL_ACTIVE
;
855 info
->port
.tty
= NULL
;
856 spin_unlock_irqrestore(&info
->port
.lock
, flags
);
857 mutex_unlock(&info
->port
.mutex
);
859 wake_up_interruptible(&info
->port
.open_wait
);
862 /* Set new termios settings
864 static void set_termios(struct tty_struct
*tty
, struct ktermios
*old_termios
)
866 SLMP_INFO
*info
= tty
->driver_data
;
869 if (debug_level
>= DEBUG_LEVEL_INFO
)
870 printk("%s(%d):%s set_termios()\n", __FILE__
,__LINE__
,
875 /* Handle transition to B0 status */
876 if (old_termios
->c_cflag
& CBAUD
&&
877 !(tty
->termios
->c_cflag
& CBAUD
)) {
878 info
->serial_signals
&= ~(SerialSignal_RTS
+ SerialSignal_DTR
);
879 spin_lock_irqsave(&info
->lock
,flags
);
881 spin_unlock_irqrestore(&info
->lock
,flags
);
884 /* Handle transition away from B0 status */
885 if (!(old_termios
->c_cflag
& CBAUD
) &&
886 tty
->termios
->c_cflag
& CBAUD
) {
887 info
->serial_signals
|= SerialSignal_DTR
;
888 if (!(tty
->termios
->c_cflag
& CRTSCTS
) ||
889 !test_bit(TTY_THROTTLED
, &tty
->flags
)) {
890 info
->serial_signals
|= SerialSignal_RTS
;
892 spin_lock_irqsave(&info
->lock
,flags
);
894 spin_unlock_irqrestore(&info
->lock
,flags
);
897 /* Handle turning off CRTSCTS */
898 if (old_termios
->c_cflag
& CRTSCTS
&&
899 !(tty
->termios
->c_cflag
& CRTSCTS
)) {
905 /* Send a block of data
909 * tty pointer to tty information structure
910 * buf pointer to buffer containing send data
911 * count size of send data in bytes
913 * Return Value: number of characters written
915 static int write(struct tty_struct
*tty
,
916 const unsigned char *buf
, int count
)
919 SLMP_INFO
*info
= tty
->driver_data
;
922 if (debug_level
>= DEBUG_LEVEL_INFO
)
923 printk("%s(%d):%s write() count=%d\n",
924 __FILE__
,__LINE__
,info
->device_name
,count
);
926 if (sanity_check(info
, tty
->name
, "write"))
932 if (info
->params
.mode
== MGSL_MODE_HDLC
) {
933 if (count
> info
->max_frame_size
) {
939 if (info
->tx_count
) {
940 /* send accumulated data from send_char() calls */
941 /* as frame and wait before accepting more data. */
942 tx_load_dma_buffer(info
, info
->tx_buf
, info
->tx_count
);
945 ret
= info
->tx_count
= count
;
946 tx_load_dma_buffer(info
, buf
, count
);
951 c
= min_t(int, count
,
952 min(info
->max_frame_size
- info
->tx_count
- 1,
953 info
->max_frame_size
- info
->tx_put
));
957 memcpy(info
->tx_buf
+ info
->tx_put
, buf
, c
);
959 spin_lock_irqsave(&info
->lock
,flags
);
961 if (info
->tx_put
>= info
->max_frame_size
)
962 info
->tx_put
-= info
->max_frame_size
;
964 spin_unlock_irqrestore(&info
->lock
,flags
);
971 if (info
->params
.mode
== MGSL_MODE_HDLC
) {
973 ret
= info
->tx_count
= 0;
976 tx_load_dma_buffer(info
, info
->tx_buf
, info
->tx_count
);
979 if (info
->tx_count
&& !tty
->stopped
&& !tty
->hw_stopped
) {
980 spin_lock_irqsave(&info
->lock
,flags
);
981 if (!info
->tx_active
)
983 spin_unlock_irqrestore(&info
->lock
,flags
);
987 if (debug_level
>= DEBUG_LEVEL_INFO
)
988 printk( "%s(%d):%s write() returning=%d\n",
989 __FILE__
,__LINE__
,info
->device_name
,ret
);
993 /* Add a character to the transmit buffer.
995 static int put_char(struct tty_struct
*tty
, unsigned char ch
)
997 SLMP_INFO
*info
= tty
->driver_data
;
1001 if ( debug_level
>= DEBUG_LEVEL_INFO
) {
1002 printk( "%s(%d):%s put_char(%d)\n",
1003 __FILE__
,__LINE__
,info
->device_name
,ch
);
1006 if (sanity_check(info
, tty
->name
, "put_char"))
1012 spin_lock_irqsave(&info
->lock
,flags
);
1014 if ( (info
->params
.mode
!= MGSL_MODE_HDLC
) ||
1015 !info
->tx_active
) {
1017 if (info
->tx_count
< info
->max_frame_size
- 1) {
1018 info
->tx_buf
[info
->tx_put
++] = ch
;
1019 if (info
->tx_put
>= info
->max_frame_size
)
1020 info
->tx_put
-= info
->max_frame_size
;
1026 spin_unlock_irqrestore(&info
->lock
,flags
);
1030 /* Send a high-priority XON/XOFF character
1032 static void send_xchar(struct tty_struct
*tty
, char ch
)
1034 SLMP_INFO
*info
= tty
->driver_data
;
1035 unsigned long flags
;
1037 if (debug_level
>= DEBUG_LEVEL_INFO
)
1038 printk("%s(%d):%s send_xchar(%d)\n",
1039 __FILE__
,__LINE__
, info
->device_name
, ch
);
1041 if (sanity_check(info
, tty
->name
, "send_xchar"))
1046 /* Make sure transmit interrupts are on */
1047 spin_lock_irqsave(&info
->lock
,flags
);
1048 if (!info
->tx_enabled
)
1050 spin_unlock_irqrestore(&info
->lock
,flags
);
1054 /* Wait until the transmitter is empty.
1056 static void wait_until_sent(struct tty_struct
*tty
, int timeout
)
1058 SLMP_INFO
* info
= tty
->driver_data
;
1059 unsigned long orig_jiffies
, char_time
;
1064 if (debug_level
>= DEBUG_LEVEL_INFO
)
1065 printk("%s(%d):%s wait_until_sent() entry\n",
1066 __FILE__
,__LINE__
, info
->device_name
);
1068 if (sanity_check(info
, tty
->name
, "wait_until_sent"))
1071 if (!test_bit(ASYNCB_INITIALIZED
, &info
->port
.flags
))
1074 orig_jiffies
= jiffies
;
1076 /* Set check interval to 1/5 of estimated time to
1077 * send a character, and make it at least 1. The check
1078 * interval should also be less than the timeout.
1079 * Note: use tight timings here to satisfy the NIST-PCTS.
1082 if ( info
->params
.data_rate
) {
1083 char_time
= info
->timeout
/(32 * 5);
1090 char_time
= min_t(unsigned long, char_time
, timeout
);
1092 if ( info
->params
.mode
== MGSL_MODE_HDLC
) {
1093 while (info
->tx_active
) {
1094 msleep_interruptible(jiffies_to_msecs(char_time
));
1095 if (signal_pending(current
))
1097 if (timeout
&& time_after(jiffies
, orig_jiffies
+ timeout
))
1102 * TODO: determine if there is something similar to USC16C32
1103 * TXSTATUS_ALL_SENT status
1105 while ( info
->tx_active
&& info
->tx_enabled
) {
1106 msleep_interruptible(jiffies_to_msecs(char_time
));
1107 if (signal_pending(current
))
1109 if (timeout
&& time_after(jiffies
, orig_jiffies
+ timeout
))
1115 if (debug_level
>= DEBUG_LEVEL_INFO
)
1116 printk("%s(%d):%s wait_until_sent() exit\n",
1117 __FILE__
,__LINE__
, info
->device_name
);
1120 /* Return the count of free bytes in transmit buffer
1122 static int write_room(struct tty_struct
*tty
)
1124 SLMP_INFO
*info
= tty
->driver_data
;
1127 if (sanity_check(info
, tty
->name
, "write_room"))
1130 if (info
->params
.mode
== MGSL_MODE_HDLC
) {
1131 ret
= (info
->tx_active
) ? 0 : HDLC_MAX_FRAME_SIZE
;
1133 ret
= info
->max_frame_size
- info
->tx_count
- 1;
1138 if (debug_level
>= DEBUG_LEVEL_INFO
)
1139 printk("%s(%d):%s write_room()=%d\n",
1140 __FILE__
, __LINE__
, info
->device_name
, ret
);
1145 /* enable transmitter and send remaining buffered characters
1147 static void flush_chars(struct tty_struct
*tty
)
1149 SLMP_INFO
*info
= tty
->driver_data
;
1150 unsigned long flags
;
1152 if ( debug_level
>= DEBUG_LEVEL_INFO
)
1153 printk( "%s(%d):%s flush_chars() entry tx_count=%d\n",
1154 __FILE__
,__LINE__
,info
->device_name
,info
->tx_count
);
1156 if (sanity_check(info
, tty
->name
, "flush_chars"))
1159 if (info
->tx_count
<= 0 || tty
->stopped
|| tty
->hw_stopped
||
1163 if ( debug_level
>= DEBUG_LEVEL_INFO
)
1164 printk( "%s(%d):%s flush_chars() entry, starting transmitter\n",
1165 __FILE__
,__LINE__
,info
->device_name
);
1167 spin_lock_irqsave(&info
->lock
,flags
);
1169 if (!info
->tx_active
) {
1170 if ( (info
->params
.mode
== MGSL_MODE_HDLC
) &&
1172 /* operating in synchronous (frame oriented) mode */
1173 /* copy data from circular tx_buf to */
1174 /* transmit DMA buffer. */
1175 tx_load_dma_buffer(info
,
1176 info
->tx_buf
,info
->tx_count
);
1181 spin_unlock_irqrestore(&info
->lock
,flags
);
1184 /* Discard all data in the send buffer
1186 static void flush_buffer(struct tty_struct
*tty
)
1188 SLMP_INFO
*info
= tty
->driver_data
;
1189 unsigned long flags
;
1191 if (debug_level
>= DEBUG_LEVEL_INFO
)
1192 printk("%s(%d):%s flush_buffer() entry\n",
1193 __FILE__
,__LINE__
, info
->device_name
);
1195 if (sanity_check(info
, tty
->name
, "flush_buffer"))
1198 spin_lock_irqsave(&info
->lock
,flags
);
1199 info
->tx_count
= info
->tx_put
= info
->tx_get
= 0;
1200 del_timer(&info
->tx_timer
);
1201 spin_unlock_irqrestore(&info
->lock
,flags
);
1206 /* throttle (stop) transmitter
1208 static void tx_hold(struct tty_struct
*tty
)
1210 SLMP_INFO
*info
= tty
->driver_data
;
1211 unsigned long flags
;
1213 if (sanity_check(info
, tty
->name
, "tx_hold"))
1216 if ( debug_level
>= DEBUG_LEVEL_INFO
)
1217 printk("%s(%d):%s tx_hold()\n",
1218 __FILE__
,__LINE__
,info
->device_name
);
1220 spin_lock_irqsave(&info
->lock
,flags
);
1221 if (info
->tx_enabled
)
1223 spin_unlock_irqrestore(&info
->lock
,flags
);
1226 /* release (start) transmitter
1228 static void tx_release(struct tty_struct
*tty
)
1230 SLMP_INFO
*info
= tty
->driver_data
;
1231 unsigned long flags
;
1233 if (sanity_check(info
, tty
->name
, "tx_release"))
1236 if ( debug_level
>= DEBUG_LEVEL_INFO
)
1237 printk("%s(%d):%s tx_release()\n",
1238 __FILE__
,__LINE__
,info
->device_name
);
1240 spin_lock_irqsave(&info
->lock
,flags
);
1241 if (!info
->tx_enabled
)
1243 spin_unlock_irqrestore(&info
->lock
,flags
);
1246 /* Service an IOCTL request
1250 * tty pointer to tty instance data
1251 * file pointer to associated file object for device
1252 * cmd IOCTL command code
1253 * arg command argument/context
1255 * Return Value: 0 if success, otherwise error code
1257 static int ioctl(struct tty_struct
*tty
, struct file
*file
,
1258 unsigned int cmd
, unsigned long arg
)
1260 SLMP_INFO
*info
= tty
->driver_data
;
1262 struct mgsl_icount cnow
; /* kernel counter temps */
1263 struct serial_icounter_struct __user
*p_cuser
; /* user space */
1264 unsigned long flags
;
1265 void __user
*argp
= (void __user
*)arg
;
1267 if (debug_level
>= DEBUG_LEVEL_INFO
)
1268 printk("%s(%d):%s ioctl() cmd=%08X\n", __FILE__
,__LINE__
,
1269 info
->device_name
, cmd
);
1271 if (sanity_check(info
, tty
->name
, "ioctl"))
1274 if ((cmd
!= TIOCGSERIAL
) && (cmd
!= TIOCSSERIAL
) &&
1275 (cmd
!= TIOCMIWAIT
) && (cmd
!= TIOCGICOUNT
)) {
1276 if (tty
->flags
& (1 << TTY_IO_ERROR
))
1281 case MGSL_IOCGPARAMS
:
1282 return get_params(info
, argp
);
1283 case MGSL_IOCSPARAMS
:
1284 return set_params(info
, argp
);
1285 case MGSL_IOCGTXIDLE
:
1286 return get_txidle(info
, argp
);
1287 case MGSL_IOCSTXIDLE
:
1288 return set_txidle(info
, (int)arg
);
1289 case MGSL_IOCTXENABLE
:
1290 return tx_enable(info
, (int)arg
);
1291 case MGSL_IOCRXENABLE
:
1292 return rx_enable(info
, (int)arg
);
1293 case MGSL_IOCTXABORT
:
1294 return tx_abort(info
);
1295 case MGSL_IOCGSTATS
:
1296 return get_stats(info
, argp
);
1297 case MGSL_IOCWAITEVENT
:
1298 return wait_mgsl_event(info
, argp
);
1299 case MGSL_IOCLOOPTXDONE
:
1300 return 0; // TODO: Not supported, need to document
1301 /* Wait for modem input (DCD,RI,DSR,CTS) change
1302 * as specified by mask in arg (TIOCM_RNG/DSR/CD/CTS)
1305 return modem_input_wait(info
,(int)arg
);
1308 * Get counter of input serial line interrupts (DCD,RI,DSR,CTS)
1309 * Return: write counters to the user passed counter struct
1310 * NB: both 1->0 and 0->1 transitions are counted except for
1311 * RI where only 0->1 is counted.
1314 spin_lock_irqsave(&info
->lock
,flags
);
1315 cnow
= info
->icount
;
1316 spin_unlock_irqrestore(&info
->lock
,flags
);
1318 PUT_USER(error
,cnow
.cts
, &p_cuser
->cts
);
1319 if (error
) return error
;
1320 PUT_USER(error
,cnow
.dsr
, &p_cuser
->dsr
);
1321 if (error
) return error
;
1322 PUT_USER(error
,cnow
.rng
, &p_cuser
->rng
);
1323 if (error
) return error
;
1324 PUT_USER(error
,cnow
.dcd
, &p_cuser
->dcd
);
1325 if (error
) return error
;
1326 PUT_USER(error
,cnow
.rx
, &p_cuser
->rx
);
1327 if (error
) return error
;
1328 PUT_USER(error
,cnow
.tx
, &p_cuser
->tx
);
1329 if (error
) return error
;
1330 PUT_USER(error
,cnow
.frame
, &p_cuser
->frame
);
1331 if (error
) return error
;
1332 PUT_USER(error
,cnow
.overrun
, &p_cuser
->overrun
);
1333 if (error
) return error
;
1334 PUT_USER(error
,cnow
.parity
, &p_cuser
->parity
);
1335 if (error
) return error
;
1336 PUT_USER(error
,cnow
.brk
, &p_cuser
->brk
);
1337 if (error
) return error
;
1338 PUT_USER(error
,cnow
.buf_overrun
, &p_cuser
->buf_overrun
);
1339 if (error
) return error
;
1342 return -ENOIOCTLCMD
;
1348 * /proc fs routines....
1351 static inline void line_info(struct seq_file
*m
, SLMP_INFO
*info
)
1354 unsigned long flags
;
1356 seq_printf(m
, "%s: SCABase=%08x Mem=%08X StatusControl=%08x LCR=%08X\n"
1357 "\tIRQ=%d MaxFrameSize=%u\n",
1359 info
->phys_sca_base
,
1360 info
->phys_memory_base
,
1361 info
->phys_statctrl_base
,
1362 info
->phys_lcr_base
,
1364 info
->max_frame_size
);
1366 /* output current serial signal states */
1367 spin_lock_irqsave(&info
->lock
,flags
);
1369 spin_unlock_irqrestore(&info
->lock
,flags
);
1373 if (info
->serial_signals
& SerialSignal_RTS
)
1374 strcat(stat_buf
, "|RTS");
1375 if (info
->serial_signals
& SerialSignal_CTS
)
1376 strcat(stat_buf
, "|CTS");
1377 if (info
->serial_signals
& SerialSignal_DTR
)
1378 strcat(stat_buf
, "|DTR");
1379 if (info
->serial_signals
& SerialSignal_DSR
)
1380 strcat(stat_buf
, "|DSR");
1381 if (info
->serial_signals
& SerialSignal_DCD
)
1382 strcat(stat_buf
, "|CD");
1383 if (info
->serial_signals
& SerialSignal_RI
)
1384 strcat(stat_buf
, "|RI");
1386 if (info
->params
.mode
== MGSL_MODE_HDLC
) {
1387 seq_printf(m
, "\tHDLC txok:%d rxok:%d",
1388 info
->icount
.txok
, info
->icount
.rxok
);
1389 if (info
->icount
.txunder
)
1390 seq_printf(m
, " txunder:%d", info
->icount
.txunder
);
1391 if (info
->icount
.txabort
)
1392 seq_printf(m
, " txabort:%d", info
->icount
.txabort
);
1393 if (info
->icount
.rxshort
)
1394 seq_printf(m
, " rxshort:%d", info
->icount
.rxshort
);
1395 if (info
->icount
.rxlong
)
1396 seq_printf(m
, " rxlong:%d", info
->icount
.rxlong
);
1397 if (info
->icount
.rxover
)
1398 seq_printf(m
, " rxover:%d", info
->icount
.rxover
);
1399 if (info
->icount
.rxcrc
)
1400 seq_printf(m
, " rxlong:%d", info
->icount
.rxcrc
);
1402 seq_printf(m
, "\tASYNC tx:%d rx:%d",
1403 info
->icount
.tx
, info
->icount
.rx
);
1404 if (info
->icount
.frame
)
1405 seq_printf(m
, " fe:%d", info
->icount
.frame
);
1406 if (info
->icount
.parity
)
1407 seq_printf(m
, " pe:%d", info
->icount
.parity
);
1408 if (info
->icount
.brk
)
1409 seq_printf(m
, " brk:%d", info
->icount
.brk
);
1410 if (info
->icount
.overrun
)
1411 seq_printf(m
, " oe:%d", info
->icount
.overrun
);
1414 /* Append serial signal status to end */
1415 seq_printf(m
, " %s\n", stat_buf
+1);
1417 seq_printf(m
, "\ttxactive=%d bh_req=%d bh_run=%d pending_bh=%x\n",
1418 info
->tx_active
,info
->bh_requested
,info
->bh_running
,
1422 /* Called to print information about devices
1424 static int synclinkmp_proc_show(struct seq_file
*m
, void *v
)
1428 seq_printf(m
, "synclinkmp driver:%s\n", driver_version
);
1430 info
= synclinkmp_device_list
;
1433 info
= info
->next_device
;
1438 static int synclinkmp_proc_open(struct inode
*inode
, struct file
*file
)
1440 return single_open(file
, synclinkmp_proc_show
, NULL
);
1443 static const struct file_operations synclinkmp_proc_fops
= {
1444 .owner
= THIS_MODULE
,
1445 .open
= synclinkmp_proc_open
,
1447 .llseek
= seq_lseek
,
1448 .release
= single_release
,
1451 /* Return the count of bytes in transmit buffer
1453 static int chars_in_buffer(struct tty_struct
*tty
)
1455 SLMP_INFO
*info
= tty
->driver_data
;
1457 if (sanity_check(info
, tty
->name
, "chars_in_buffer"))
1460 if (debug_level
>= DEBUG_LEVEL_INFO
)
1461 printk("%s(%d):%s chars_in_buffer()=%d\n",
1462 __FILE__
, __LINE__
, info
->device_name
, info
->tx_count
);
1464 return info
->tx_count
;
1467 /* Signal remote device to throttle send data (our receive data)
1469 static void throttle(struct tty_struct
* tty
)
1471 SLMP_INFO
*info
= tty
->driver_data
;
1472 unsigned long flags
;
1474 if (debug_level
>= DEBUG_LEVEL_INFO
)
1475 printk("%s(%d):%s throttle() entry\n",
1476 __FILE__
,__LINE__
, info
->device_name
);
1478 if (sanity_check(info
, tty
->name
, "throttle"))
1482 send_xchar(tty
, STOP_CHAR(tty
));
1484 if (tty
->termios
->c_cflag
& CRTSCTS
) {
1485 spin_lock_irqsave(&info
->lock
,flags
);
1486 info
->serial_signals
&= ~SerialSignal_RTS
;
1488 spin_unlock_irqrestore(&info
->lock
,flags
);
1492 /* Signal remote device to stop throttling send data (our receive data)
1494 static void unthrottle(struct tty_struct
* tty
)
1496 SLMP_INFO
*info
= tty
->driver_data
;
1497 unsigned long flags
;
1499 if (debug_level
>= DEBUG_LEVEL_INFO
)
1500 printk("%s(%d):%s unthrottle() entry\n",
1501 __FILE__
,__LINE__
, info
->device_name
);
1503 if (sanity_check(info
, tty
->name
, "unthrottle"))
1510 send_xchar(tty
, START_CHAR(tty
));
1513 if (tty
->termios
->c_cflag
& CRTSCTS
) {
1514 spin_lock_irqsave(&info
->lock
,flags
);
1515 info
->serial_signals
|= SerialSignal_RTS
;
1517 spin_unlock_irqrestore(&info
->lock
,flags
);
1521 /* set or clear transmit break condition
1522 * break_state -1=set break condition, 0=clear
1524 static int set_break(struct tty_struct
*tty
, int break_state
)
1526 unsigned char RegValue
;
1527 SLMP_INFO
* info
= tty
->driver_data
;
1528 unsigned long flags
;
1530 if (debug_level
>= DEBUG_LEVEL_INFO
)
1531 printk("%s(%d):%s set_break(%d)\n",
1532 __FILE__
,__LINE__
, info
->device_name
, break_state
);
1534 if (sanity_check(info
, tty
->name
, "set_break"))
1537 spin_lock_irqsave(&info
->lock
,flags
);
1538 RegValue
= read_reg(info
, CTL
);
1539 if (break_state
== -1)
1543 write_reg(info
, CTL
, RegValue
);
1544 spin_unlock_irqrestore(&info
->lock
,flags
);
1548 #if SYNCLINK_GENERIC_HDLC
1551 * called by generic HDLC layer when protocol selected (PPP, frame relay, etc.)
1552 * set encoding and frame check sequence (FCS) options
1554 * dev pointer to network device structure
1555 * encoding serial encoding setting
1556 * parity FCS setting
1558 * returns 0 if success, otherwise error code
1560 static int hdlcdev_attach(struct net_device
*dev
, unsigned short encoding
,
1561 unsigned short parity
)
1563 SLMP_INFO
*info
= dev_to_port(dev
);
1564 unsigned char new_encoding
;
1565 unsigned short new_crctype
;
1567 /* return error if TTY interface open */
1568 if (info
->port
.count
)
1573 case ENCODING_NRZ
: new_encoding
= HDLC_ENCODING_NRZ
; break;
1574 case ENCODING_NRZI
: new_encoding
= HDLC_ENCODING_NRZI_SPACE
; break;
1575 case ENCODING_FM_MARK
: new_encoding
= HDLC_ENCODING_BIPHASE_MARK
; break;
1576 case ENCODING_FM_SPACE
: new_encoding
= HDLC_ENCODING_BIPHASE_SPACE
; break;
1577 case ENCODING_MANCHESTER
: new_encoding
= HDLC_ENCODING_BIPHASE_LEVEL
; break;
1578 default: return -EINVAL
;
1583 case PARITY_NONE
: new_crctype
= HDLC_CRC_NONE
; break;
1584 case PARITY_CRC16_PR1_CCITT
: new_crctype
= HDLC_CRC_16_CCITT
; break;
1585 case PARITY_CRC32_PR1_CCITT
: new_crctype
= HDLC_CRC_32_CCITT
; break;
1586 default: return -EINVAL
;
1589 info
->params
.encoding
= new_encoding
;
1590 info
->params
.crc_type
= new_crctype
;
1592 /* if network interface up, reprogram hardware */
1600 * called by generic HDLC layer to send frame
1602 * skb socket buffer containing HDLC frame
1603 * dev pointer to network device structure
1605 static netdev_tx_t
hdlcdev_xmit(struct sk_buff
*skb
,
1606 struct net_device
*dev
)
1608 SLMP_INFO
*info
= dev_to_port(dev
);
1609 unsigned long flags
;
1611 if (debug_level
>= DEBUG_LEVEL_INFO
)
1612 printk(KERN_INFO
"%s:hdlc_xmit(%s)\n",__FILE__
,dev
->name
);
1614 /* stop sending until this frame completes */
1615 netif_stop_queue(dev
);
1617 /* copy data to device buffers */
1618 info
->tx_count
= skb
->len
;
1619 tx_load_dma_buffer(info
, skb
->data
, skb
->len
);
1621 /* update network statistics */
1622 dev
->stats
.tx_packets
++;
1623 dev
->stats
.tx_bytes
+= skb
->len
;
1625 /* done with socket buffer, so free it */
1628 /* save start time for transmit timeout detection */
1629 dev
->trans_start
= jiffies
;
1631 /* start hardware transmitter if necessary */
1632 spin_lock_irqsave(&info
->lock
,flags
);
1633 if (!info
->tx_active
)
1635 spin_unlock_irqrestore(&info
->lock
,flags
);
1637 return NETDEV_TX_OK
;
1641 * called by network layer when interface enabled
1642 * claim resources and initialize hardware
1644 * dev pointer to network device structure
1646 * returns 0 if success, otherwise error code
1648 static int hdlcdev_open(struct net_device
*dev
)
1650 SLMP_INFO
*info
= dev_to_port(dev
);
1652 unsigned long flags
;
1654 if (debug_level
>= DEBUG_LEVEL_INFO
)
1655 printk("%s:hdlcdev_open(%s)\n",__FILE__
,dev
->name
);
1657 /* generic HDLC layer open processing */
1658 if ((rc
= hdlc_open(dev
)))
1661 /* arbitrate between network and tty opens */
1662 spin_lock_irqsave(&info
->netlock
, flags
);
1663 if (info
->port
.count
!= 0 || info
->netcount
!= 0) {
1664 printk(KERN_WARNING
"%s: hdlc_open returning busy\n", dev
->name
);
1665 spin_unlock_irqrestore(&info
->netlock
, flags
);
1669 spin_unlock_irqrestore(&info
->netlock
, flags
);
1671 /* claim resources and init adapter */
1672 if ((rc
= startup(info
)) != 0) {
1673 spin_lock_irqsave(&info
->netlock
, flags
);
1675 spin_unlock_irqrestore(&info
->netlock
, flags
);
1679 /* assert DTR and RTS, apply hardware settings */
1680 info
->serial_signals
|= SerialSignal_RTS
+ SerialSignal_DTR
;
1683 /* enable network layer transmit */
1684 dev
->trans_start
= jiffies
;
1685 netif_start_queue(dev
);
1687 /* inform generic HDLC layer of current DCD status */
1688 spin_lock_irqsave(&info
->lock
, flags
);
1690 spin_unlock_irqrestore(&info
->lock
, flags
);
1691 if (info
->serial_signals
& SerialSignal_DCD
)
1692 netif_carrier_on(dev
);
1694 netif_carrier_off(dev
);
1699 * called by network layer when interface is disabled
1700 * shutdown hardware and release resources
1702 * dev pointer to network device structure
1704 * returns 0 if success, otherwise error code
1706 static int hdlcdev_close(struct net_device
*dev
)
1708 SLMP_INFO
*info
= dev_to_port(dev
);
1709 unsigned long flags
;
1711 if (debug_level
>= DEBUG_LEVEL_INFO
)
1712 printk("%s:hdlcdev_close(%s)\n",__FILE__
,dev
->name
);
1714 netif_stop_queue(dev
);
1716 /* shutdown adapter and release resources */
1721 spin_lock_irqsave(&info
->netlock
, flags
);
1723 spin_unlock_irqrestore(&info
->netlock
, flags
);
1729 * called by network layer to process IOCTL call to network device
1731 * dev pointer to network device structure
1732 * ifr pointer to network interface request structure
1733 * cmd IOCTL command code
1735 * returns 0 if success, otherwise error code
1737 static int hdlcdev_ioctl(struct net_device
*dev
, struct ifreq
*ifr
, int cmd
)
1739 const size_t size
= sizeof(sync_serial_settings
);
1740 sync_serial_settings new_line
;
1741 sync_serial_settings __user
*line
= ifr
->ifr_settings
.ifs_ifsu
.sync
;
1742 SLMP_INFO
*info
= dev_to_port(dev
);
1745 if (debug_level
>= DEBUG_LEVEL_INFO
)
1746 printk("%s:hdlcdev_ioctl(%s)\n",__FILE__
,dev
->name
);
1748 /* return error if TTY interface open */
1749 if (info
->port
.count
)
1752 if (cmd
!= SIOCWANDEV
)
1753 return hdlc_ioctl(dev
, ifr
, cmd
);
1755 switch(ifr
->ifr_settings
.type
) {
1756 case IF_GET_IFACE
: /* return current sync_serial_settings */
1758 ifr
->ifr_settings
.type
= IF_IFACE_SYNC_SERIAL
;
1759 if (ifr
->ifr_settings
.size
< size
) {
1760 ifr
->ifr_settings
.size
= size
; /* data size wanted */
1764 flags
= info
->params
.flags
& (HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_RXC_DPLL
|
1765 HDLC_FLAG_RXC_BRG
| HDLC_FLAG_RXC_TXCPIN
|
1766 HDLC_FLAG_TXC_TXCPIN
| HDLC_FLAG_TXC_DPLL
|
1767 HDLC_FLAG_TXC_BRG
| HDLC_FLAG_TXC_RXCPIN
);
1770 case (HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_TXC_TXCPIN
): new_line
.clock_type
= CLOCK_EXT
; break;
1771 case (HDLC_FLAG_RXC_BRG
| HDLC_FLAG_TXC_BRG
): new_line
.clock_type
= CLOCK_INT
; break;
1772 case (HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_TXC_BRG
): new_line
.clock_type
= CLOCK_TXINT
; break;
1773 case (HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_TXC_RXCPIN
): new_line
.clock_type
= CLOCK_TXFROMRX
; break;
1774 default: new_line
.clock_type
= CLOCK_DEFAULT
;
1777 new_line
.clock_rate
= info
->params
.clock_speed
;
1778 new_line
.loopback
= info
->params
.loopback
? 1:0;
1780 if (copy_to_user(line
, &new_line
, size
))
1784 case IF_IFACE_SYNC_SERIAL
: /* set sync_serial_settings */
1786 if(!capable(CAP_NET_ADMIN
))
1788 if (copy_from_user(&new_line
, line
, size
))
1791 switch (new_line
.clock_type
)
1793 case CLOCK_EXT
: flags
= HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_TXC_TXCPIN
; break;
1794 case CLOCK_TXFROMRX
: flags
= HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_TXC_RXCPIN
; break;
1795 case CLOCK_INT
: flags
= HDLC_FLAG_RXC_BRG
| HDLC_FLAG_TXC_BRG
; break;
1796 case CLOCK_TXINT
: flags
= HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_TXC_BRG
; break;
1797 case CLOCK_DEFAULT
: flags
= info
->params
.flags
&
1798 (HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_RXC_DPLL
|
1799 HDLC_FLAG_RXC_BRG
| HDLC_FLAG_RXC_TXCPIN
|
1800 HDLC_FLAG_TXC_TXCPIN
| HDLC_FLAG_TXC_DPLL
|
1801 HDLC_FLAG_TXC_BRG
| HDLC_FLAG_TXC_RXCPIN
); break;
1802 default: return -EINVAL
;
1805 if (new_line
.loopback
!= 0 && new_line
.loopback
!= 1)
1808 info
->params
.flags
&= ~(HDLC_FLAG_RXC_RXCPIN
| HDLC_FLAG_RXC_DPLL
|
1809 HDLC_FLAG_RXC_BRG
| HDLC_FLAG_RXC_TXCPIN
|
1810 HDLC_FLAG_TXC_TXCPIN
| HDLC_FLAG_TXC_DPLL
|
1811 HDLC_FLAG_TXC_BRG
| HDLC_FLAG_TXC_RXCPIN
);
1812 info
->params
.flags
|= flags
;
1814 info
->params
.loopback
= new_line
.loopback
;
1816 if (flags
& (HDLC_FLAG_RXC_BRG
| HDLC_FLAG_TXC_BRG
))
1817 info
->params
.clock_speed
= new_line
.clock_rate
;
1819 info
->params
.clock_speed
= 0;
1821 /* if network interface up, reprogram hardware */
1827 return hdlc_ioctl(dev
, ifr
, cmd
);
1832 * called by network layer when transmit timeout is detected
1834 * dev pointer to network device structure
1836 static void hdlcdev_tx_timeout(struct net_device
*dev
)
1838 SLMP_INFO
*info
= dev_to_port(dev
);
1839 unsigned long flags
;
1841 if (debug_level
>= DEBUG_LEVEL_INFO
)
1842 printk("hdlcdev_tx_timeout(%s)\n",dev
->name
);
1844 dev
->stats
.tx_errors
++;
1845 dev
->stats
.tx_aborted_errors
++;
1847 spin_lock_irqsave(&info
->lock
,flags
);
1849 spin_unlock_irqrestore(&info
->lock
,flags
);
1851 netif_wake_queue(dev
);
1855 * called by device driver when transmit completes
1856 * reenable network layer transmit if stopped
1858 * info pointer to device instance information
1860 static void hdlcdev_tx_done(SLMP_INFO
*info
)
1862 if (netif_queue_stopped(info
->netdev
))
1863 netif_wake_queue(info
->netdev
);
1867 * called by device driver when frame received
1868 * pass frame to network layer
1870 * info pointer to device instance information
1871 * buf pointer to buffer contianing frame data
1872 * size count of data bytes in buf
1874 static void hdlcdev_rx(SLMP_INFO
*info
, char *buf
, int size
)
1876 struct sk_buff
*skb
= dev_alloc_skb(size
);
1877 struct net_device
*dev
= info
->netdev
;
1879 if (debug_level
>= DEBUG_LEVEL_INFO
)
1880 printk("hdlcdev_rx(%s)\n",dev
->name
);
1883 printk(KERN_NOTICE
"%s: can't alloc skb, dropping packet\n",
1885 dev
->stats
.rx_dropped
++;
1889 memcpy(skb_put(skb
, size
), buf
, size
);
1891 skb
->protocol
= hdlc_type_trans(skb
, dev
);
1893 dev
->stats
.rx_packets
++;
1894 dev
->stats
.rx_bytes
+= size
;
1899 static const struct net_device_ops hdlcdev_ops
= {
1900 .ndo_open
= hdlcdev_open
,
1901 .ndo_stop
= hdlcdev_close
,
1902 .ndo_change_mtu
= hdlc_change_mtu
,
1903 .ndo_start_xmit
= hdlc_start_xmit
,
1904 .ndo_do_ioctl
= hdlcdev_ioctl
,
1905 .ndo_tx_timeout
= hdlcdev_tx_timeout
,
1909 * called by device driver when adding device instance
1910 * do generic HDLC initialization
1912 * info pointer to device instance information
1914 * returns 0 if success, otherwise error code
1916 static int hdlcdev_init(SLMP_INFO
*info
)
1919 struct net_device
*dev
;
1922 /* allocate and initialize network and HDLC layer objects */
1924 if (!(dev
= alloc_hdlcdev(info
))) {
1925 printk(KERN_ERR
"%s:hdlc device allocation failure\n",__FILE__
);
1929 /* for network layer reporting purposes only */
1930 dev
->mem_start
= info
->phys_sca_base
;
1931 dev
->mem_end
= info
->phys_sca_base
+ SCA_BASE_SIZE
- 1;
1932 dev
->irq
= info
->irq_level
;
1934 /* network layer callbacks and settings */
1935 dev
->netdev_ops
= &hdlcdev_ops
;
1936 dev
->watchdog_timeo
= 10 * HZ
;
1937 dev
->tx_queue_len
= 50;
1939 /* generic HDLC layer callbacks and settings */
1940 hdlc
= dev_to_hdlc(dev
);
1941 hdlc
->attach
= hdlcdev_attach
;
1942 hdlc
->xmit
= hdlcdev_xmit
;
1944 /* register objects with HDLC layer */
1945 if ((rc
= register_hdlc_device(dev
))) {
1946 printk(KERN_WARNING
"%s:unable to register hdlc device\n",__FILE__
);
1956 * called by device driver when removing device instance
1957 * do generic HDLC cleanup
1959 * info pointer to device instance information
1961 static void hdlcdev_exit(SLMP_INFO
*info
)
1963 unregister_hdlc_device(info
->netdev
);
1964 free_netdev(info
->netdev
);
1965 info
->netdev
= NULL
;
1968 #endif /* CONFIG_HDLC */
1971 /* Return next bottom half action to perform.
1972 * Return Value: BH action code or 0 if nothing to do.
1974 static int bh_action(SLMP_INFO
*info
)
1976 unsigned long flags
;
1979 spin_lock_irqsave(&info
->lock
,flags
);
1981 if (info
->pending_bh
& BH_RECEIVE
) {
1982 info
->pending_bh
&= ~BH_RECEIVE
;
1984 } else if (info
->pending_bh
& BH_TRANSMIT
) {
1985 info
->pending_bh
&= ~BH_TRANSMIT
;
1987 } else if (info
->pending_bh
& BH_STATUS
) {
1988 info
->pending_bh
&= ~BH_STATUS
;
1993 /* Mark BH routine as complete */
1994 info
->bh_running
= false;
1995 info
->bh_requested
= false;
1998 spin_unlock_irqrestore(&info
->lock
,flags
);
2003 /* Perform bottom half processing of work items queued by ISR.
2005 static void bh_handler(struct work_struct
*work
)
2007 SLMP_INFO
*info
= container_of(work
, SLMP_INFO
, task
);
2013 if ( debug_level
>= DEBUG_LEVEL_BH
)
2014 printk( "%s(%d):%s bh_handler() entry\n",
2015 __FILE__
,__LINE__
,info
->device_name
);
2017 info
->bh_running
= true;
2019 while((action
= bh_action(info
)) != 0) {
2021 /* Process work item */
2022 if ( debug_level
>= DEBUG_LEVEL_BH
)
2023 printk( "%s(%d):%s bh_handler() work item action=%d\n",
2024 __FILE__
,__LINE__
,info
->device_name
, action
);
2038 /* unknown work item ID */
2039 printk("%s(%d):%s Unknown work item ID=%08X!\n",
2040 __FILE__
,__LINE__
,info
->device_name
,action
);
2045 if ( debug_level
>= DEBUG_LEVEL_BH
)
2046 printk( "%s(%d):%s bh_handler() exit\n",
2047 __FILE__
,__LINE__
,info
->device_name
);
2050 static void bh_receive(SLMP_INFO
*info
)
2052 if ( debug_level
>= DEBUG_LEVEL_BH
)
2053 printk( "%s(%d):%s bh_receive()\n",
2054 __FILE__
,__LINE__
,info
->device_name
);
2056 while( rx_get_frame(info
) );
2059 static void bh_transmit(SLMP_INFO
*info
)
2061 struct tty_struct
*tty
= info
->port
.tty
;
2063 if ( debug_level
>= DEBUG_LEVEL_BH
)
2064 printk( "%s(%d):%s bh_transmit() entry\n",
2065 __FILE__
,__LINE__
,info
->device_name
);
2071 static void bh_status(SLMP_INFO
*info
)
2073 if ( debug_level
>= DEBUG_LEVEL_BH
)
2074 printk( "%s(%d):%s bh_status() entry\n",
2075 __FILE__
,__LINE__
,info
->device_name
);
2077 info
->ri_chkcount
= 0;
2078 info
->dsr_chkcount
= 0;
2079 info
->dcd_chkcount
= 0;
2080 info
->cts_chkcount
= 0;
2083 static void isr_timer(SLMP_INFO
* info
)
2085 unsigned char timer
= (info
->port_num
& 1) ? TIMER2
: TIMER0
;
2087 /* IER2<7..4> = timer<3..0> interrupt enables (0=disabled) */
2088 write_reg(info
, IER2
, 0);
2090 /* TMCS, Timer Control/Status Register
2092 * 07 CMF, Compare match flag (read only) 1=match
2093 * 06 ECMI, CMF Interrupt Enable: 0=disabled
2094 * 05 Reserved, must be 0
2095 * 04 TME, Timer Enable
2096 * 03..00 Reserved, must be 0
2100 write_reg(info
, (unsigned char)(timer
+ TMCS
), 0);
2102 info
->irq_occurred
= true;
2104 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2105 printk("%s(%d):%s isr_timer()\n",
2106 __FILE__
,__LINE__
,info
->device_name
);
2109 static void isr_rxint(SLMP_INFO
* info
)
2111 struct tty_struct
*tty
= info
->port
.tty
;
2112 struct mgsl_icount
*icount
= &info
->icount
;
2113 unsigned char status
= read_reg(info
, SR1
) & info
->ie1_value
& (FLGD
+ IDLD
+ CDCD
+ BRKD
);
2114 unsigned char status2
= read_reg(info
, SR2
) & info
->ie2_value
& OVRN
;
2116 /* clear status bits */
2118 write_reg(info
, SR1
, status
);
2121 write_reg(info
, SR2
, status2
);
2123 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2124 printk("%s(%d):%s isr_rxint status=%02X %02x\n",
2125 __FILE__
,__LINE__
,info
->device_name
,status
,status2
);
2127 if (info
->params
.mode
== MGSL_MODE_ASYNC
) {
2128 if (status
& BRKD
) {
2131 /* process break detection if tty control
2132 * is not set to ignore it
2135 if (!(status
& info
->ignore_status_mask1
)) {
2136 if (info
->read_status_mask1
& BRKD
) {
2137 tty_insert_flip_char(tty
, 0, TTY_BREAK
);
2138 if (info
->port
.flags
& ASYNC_SAK
)
2146 if (status
& (FLGD
|IDLD
)) {
2148 info
->icount
.exithunt
++;
2149 else if (status
& IDLD
)
2150 info
->icount
.rxidle
++;
2151 wake_up_interruptible(&info
->event_wait_q
);
2155 if (status
& CDCD
) {
2156 /* simulate a common modem status change interrupt
2159 get_signals( info
);
2161 MISCSTATUS_DCD_LATCHED
|(info
->serial_signals
&SerialSignal_DCD
));
2166 * handle async rx data interrupts
2168 static void isr_rxrdy(SLMP_INFO
* info
)
2171 unsigned char DataByte
;
2172 struct tty_struct
*tty
= info
->port
.tty
;
2173 struct mgsl_icount
*icount
= &info
->icount
;
2175 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2176 printk("%s(%d):%s isr_rxrdy\n",
2177 __FILE__
,__LINE__
,info
->device_name
);
2179 while((status
= read_reg(info
,CST0
)) & BIT0
)
2183 DataByte
= read_reg(info
,TRB
);
2187 if ( status
& (PE
+ FRME
+ OVRN
) ) {
2188 printk("%s(%d):%s rxerr=%04X\n",
2189 __FILE__
,__LINE__
,info
->device_name
,status
);
2191 /* update error statistics */
2194 else if (status
& FRME
)
2196 else if (status
& OVRN
)
2199 /* discard char if tty control flags say so */
2200 if (status
& info
->ignore_status_mask2
)
2203 status
&= info
->read_status_mask2
;
2208 else if (status
& FRME
)
2210 if (status
& OVRN
) {
2211 /* Overrun is special, since it's
2212 * reported immediately, and doesn't
2213 * affect the current character
2218 } /* end of if (error) */
2221 tty_insert_flip_char(tty
, DataByte
, flag
);
2223 tty_insert_flip_char(tty
, 0, TTY_OVERRUN
);
2227 if ( debug_level
>= DEBUG_LEVEL_ISR
) {
2228 printk("%s(%d):%s rx=%d brk=%d parity=%d frame=%d overrun=%d\n",
2229 __FILE__
,__LINE__
,info
->device_name
,
2230 icount
->rx
,icount
->brk
,icount
->parity
,
2231 icount
->frame
,icount
->overrun
);
2235 tty_flip_buffer_push(tty
);
2238 static void isr_txeom(SLMP_INFO
* info
, unsigned char status
)
2240 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2241 printk("%s(%d):%s isr_txeom status=%02x\n",
2242 __FILE__
,__LINE__
,info
->device_name
,status
);
2244 write_reg(info
, TXDMA
+ DIR, 0x00); /* disable Tx DMA IRQs */
2245 write_reg(info
, TXDMA
+ DSR
, 0xc0); /* clear IRQs and disable DMA */
2246 write_reg(info
, TXDMA
+ DCMD
, SWABORT
); /* reset/init DMA channel */
2248 if (status
& UDRN
) {
2249 write_reg(info
, CMD
, TXRESET
);
2250 write_reg(info
, CMD
, TXENABLE
);
2252 write_reg(info
, CMD
, TXBUFCLR
);
2254 /* disable and clear tx interrupts */
2255 info
->ie0_value
&= ~TXRDYE
;
2256 info
->ie1_value
&= ~(IDLE
+ UDRN
);
2257 write_reg16(info
, IE0
, (unsigned short)((info
->ie1_value
<< 8) + info
->ie0_value
));
2258 write_reg(info
, SR1
, (unsigned char)(UDRN
+ IDLE
));
2260 if ( info
->tx_active
) {
2261 if (info
->params
.mode
!= MGSL_MODE_ASYNC
) {
2263 info
->icount
.txunder
++;
2264 else if (status
& IDLE
)
2265 info
->icount
.txok
++;
2268 info
->tx_active
= false;
2269 info
->tx_count
= info
->tx_put
= info
->tx_get
= 0;
2271 del_timer(&info
->tx_timer
);
2273 if (info
->params
.mode
!= MGSL_MODE_ASYNC
&& info
->drop_rts_on_tx_done
) {
2274 info
->serial_signals
&= ~SerialSignal_RTS
;
2275 info
->drop_rts_on_tx_done
= false;
2279 #if SYNCLINK_GENERIC_HDLC
2281 hdlcdev_tx_done(info
);
2285 if (info
->port
.tty
&& (info
->port
.tty
->stopped
|| info
->port
.tty
->hw_stopped
)) {
2289 info
->pending_bh
|= BH_TRANSMIT
;
2296 * handle tx status interrupts
2298 static void isr_txint(SLMP_INFO
* info
)
2300 unsigned char status
= read_reg(info
, SR1
) & info
->ie1_value
& (UDRN
+ IDLE
+ CCTS
);
2302 /* clear status bits */
2303 write_reg(info
, SR1
, status
);
2305 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2306 printk("%s(%d):%s isr_txint status=%02x\n",
2307 __FILE__
,__LINE__
,info
->device_name
,status
);
2309 if (status
& (UDRN
+ IDLE
))
2310 isr_txeom(info
, status
);
2312 if (status
& CCTS
) {
2313 /* simulate a common modem status change interrupt
2316 get_signals( info
);
2318 MISCSTATUS_CTS_LATCHED
|(info
->serial_signals
&SerialSignal_CTS
));
2324 * handle async tx data interrupts
2326 static void isr_txrdy(SLMP_INFO
* info
)
2328 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2329 printk("%s(%d):%s isr_txrdy() tx_count=%d\n",
2330 __FILE__
,__LINE__
,info
->device_name
,info
->tx_count
);
2332 if (info
->params
.mode
!= MGSL_MODE_ASYNC
) {
2333 /* disable TXRDY IRQ, enable IDLE IRQ */
2334 info
->ie0_value
&= ~TXRDYE
;
2335 info
->ie1_value
|= IDLE
;
2336 write_reg16(info
, IE0
, (unsigned short)((info
->ie1_value
<< 8) + info
->ie0_value
));
2340 if (info
->port
.tty
&& (info
->port
.tty
->stopped
|| info
->port
.tty
->hw_stopped
)) {
2345 if ( info
->tx_count
)
2346 tx_load_fifo( info
);
2348 info
->tx_active
= false;
2349 info
->ie0_value
&= ~TXRDYE
;
2350 write_reg(info
, IE0
, info
->ie0_value
);
2353 if (info
->tx_count
< WAKEUP_CHARS
)
2354 info
->pending_bh
|= BH_TRANSMIT
;
2357 static void isr_rxdmaok(SLMP_INFO
* info
)
2359 /* BIT7 = EOT (end of transfer)
2360 * BIT6 = EOM (end of message/frame)
2362 unsigned char status
= read_reg(info
,RXDMA
+ DSR
) & 0xc0;
2364 /* clear IRQ (BIT0 must be 1 to prevent clearing DE bit) */
2365 write_reg(info
, RXDMA
+ DSR
, (unsigned char)(status
| 1));
2367 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2368 printk("%s(%d):%s isr_rxdmaok(), status=%02x\n",
2369 __FILE__
,__LINE__
,info
->device_name
,status
);
2371 info
->pending_bh
|= BH_RECEIVE
;
2374 static void isr_rxdmaerror(SLMP_INFO
* info
)
2376 /* BIT5 = BOF (buffer overflow)
2377 * BIT4 = COF (counter overflow)
2379 unsigned char status
= read_reg(info
,RXDMA
+ DSR
) & 0x30;
2381 /* clear IRQ (BIT0 must be 1 to prevent clearing DE bit) */
2382 write_reg(info
, RXDMA
+ DSR
, (unsigned char)(status
| 1));
2384 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2385 printk("%s(%d):%s isr_rxdmaerror(), status=%02x\n",
2386 __FILE__
,__LINE__
,info
->device_name
,status
);
2388 info
->rx_overflow
= true;
2389 info
->pending_bh
|= BH_RECEIVE
;
2392 static void isr_txdmaok(SLMP_INFO
* info
)
2394 unsigned char status_reg1
= read_reg(info
, SR1
);
2396 write_reg(info
, TXDMA
+ DIR, 0x00); /* disable Tx DMA IRQs */
2397 write_reg(info
, TXDMA
+ DSR
, 0xc0); /* clear IRQs and disable DMA */
2398 write_reg(info
, TXDMA
+ DCMD
, SWABORT
); /* reset/init DMA channel */
2400 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2401 printk("%s(%d):%s isr_txdmaok(), status=%02x\n",
2402 __FILE__
,__LINE__
,info
->device_name
,status_reg1
);
2404 /* program TXRDY as FIFO empty flag, enable TXRDY IRQ */
2405 write_reg16(info
, TRC0
, 0);
2406 info
->ie0_value
|= TXRDYE
;
2407 write_reg(info
, IE0
, info
->ie0_value
);
2410 static void isr_txdmaerror(SLMP_INFO
* info
)
2412 /* BIT5 = BOF (buffer overflow)
2413 * BIT4 = COF (counter overflow)
2415 unsigned char status
= read_reg(info
,TXDMA
+ DSR
) & 0x30;
2417 /* clear IRQ (BIT0 must be 1 to prevent clearing DE bit) */
2418 write_reg(info
, TXDMA
+ DSR
, (unsigned char)(status
| 1));
2420 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2421 printk("%s(%d):%s isr_txdmaerror(), status=%02x\n",
2422 __FILE__
,__LINE__
,info
->device_name
,status
);
2425 /* handle input serial signal changes
2427 static void isr_io_pin( SLMP_INFO
*info
, u16 status
)
2429 struct mgsl_icount
*icount
;
2431 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2432 printk("%s(%d):isr_io_pin status=%04X\n",
2433 __FILE__
,__LINE__
,status
);
2435 if (status
& (MISCSTATUS_CTS_LATCHED
| MISCSTATUS_DCD_LATCHED
|
2436 MISCSTATUS_DSR_LATCHED
| MISCSTATUS_RI_LATCHED
) ) {
2437 icount
= &info
->icount
;
2438 /* update input line counters */
2439 if (status
& MISCSTATUS_RI_LATCHED
) {
2441 if ( status
& SerialSignal_RI
)
2442 info
->input_signal_events
.ri_up
++;
2444 info
->input_signal_events
.ri_down
++;
2446 if (status
& MISCSTATUS_DSR_LATCHED
) {
2448 if ( status
& SerialSignal_DSR
)
2449 info
->input_signal_events
.dsr_up
++;
2451 info
->input_signal_events
.dsr_down
++;
2453 if (status
& MISCSTATUS_DCD_LATCHED
) {
2454 if ((info
->dcd_chkcount
)++ >= IO_PIN_SHUTDOWN_LIMIT
) {
2455 info
->ie1_value
&= ~CDCD
;
2456 write_reg(info
, IE1
, info
->ie1_value
);
2459 if (status
& SerialSignal_DCD
) {
2460 info
->input_signal_events
.dcd_up
++;
2462 info
->input_signal_events
.dcd_down
++;
2463 #if SYNCLINK_GENERIC_HDLC
2464 if (info
->netcount
) {
2465 if (status
& SerialSignal_DCD
)
2466 netif_carrier_on(info
->netdev
);
2468 netif_carrier_off(info
->netdev
);
2472 if (status
& MISCSTATUS_CTS_LATCHED
)
2474 if ((info
->cts_chkcount
)++ >= IO_PIN_SHUTDOWN_LIMIT
) {
2475 info
->ie1_value
&= ~CCTS
;
2476 write_reg(info
, IE1
, info
->ie1_value
);
2479 if ( status
& SerialSignal_CTS
)
2480 info
->input_signal_events
.cts_up
++;
2482 info
->input_signal_events
.cts_down
++;
2484 wake_up_interruptible(&info
->status_event_wait_q
);
2485 wake_up_interruptible(&info
->event_wait_q
);
2487 if ( (info
->port
.flags
& ASYNC_CHECK_CD
) &&
2488 (status
& MISCSTATUS_DCD_LATCHED
) ) {
2489 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2490 printk("%s CD now %s...", info
->device_name
,
2491 (status
& SerialSignal_DCD
) ? "on" : "off");
2492 if (status
& SerialSignal_DCD
)
2493 wake_up_interruptible(&info
->port
.open_wait
);
2495 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2496 printk("doing serial hangup...");
2498 tty_hangup(info
->port
.tty
);
2502 if ( (info
->port
.flags
& ASYNC_CTS_FLOW
) &&
2503 (status
& MISCSTATUS_CTS_LATCHED
) ) {
2504 if ( info
->port
.tty
) {
2505 if (info
->port
.tty
->hw_stopped
) {
2506 if (status
& SerialSignal_CTS
) {
2507 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2508 printk("CTS tx start...");
2509 info
->port
.tty
->hw_stopped
= 0;
2511 info
->pending_bh
|= BH_TRANSMIT
;
2515 if (!(status
& SerialSignal_CTS
)) {
2516 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2517 printk("CTS tx stop...");
2518 info
->port
.tty
->hw_stopped
= 1;
2526 info
->pending_bh
|= BH_STATUS
;
2529 /* Interrupt service routine entry point.
2532 * irq interrupt number that caused interrupt
2533 * dev_id device ID supplied during interrupt registration
2534 * regs interrupted processor context
2536 static irqreturn_t
synclinkmp_interrupt(int dummy
, void *dev_id
)
2538 SLMP_INFO
*info
= dev_id
;
2539 unsigned char status
, status0
, status1
=0;
2540 unsigned char dmastatus
, dmastatus0
, dmastatus1
=0;
2541 unsigned char timerstatus0
, timerstatus1
=0;
2542 unsigned char shift
;
2546 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2547 printk(KERN_DEBUG
"%s(%d): synclinkmp_interrupt(%d)entry.\n",
2548 __FILE__
, __LINE__
, info
->irq_level
);
2550 spin_lock(&info
->lock
);
2554 /* get status for SCA0 (ports 0-1) */
2555 tmp
= read_reg16(info
, ISR0
); /* get ISR0 and ISR1 in one read */
2556 status0
= (unsigned char)tmp
;
2557 dmastatus0
= (unsigned char)(tmp
>>8);
2558 timerstatus0
= read_reg(info
, ISR2
);
2560 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2561 printk(KERN_DEBUG
"%s(%d):%s status0=%02x, dmastatus0=%02x, timerstatus0=%02x\n",
2562 __FILE__
, __LINE__
, info
->device_name
,
2563 status0
, dmastatus0
, timerstatus0
);
2565 if (info
->port_count
== 4) {
2566 /* get status for SCA1 (ports 2-3) */
2567 tmp
= read_reg16(info
->port_array
[2], ISR0
);
2568 status1
= (unsigned char)tmp
;
2569 dmastatus1
= (unsigned char)(tmp
>>8);
2570 timerstatus1
= read_reg(info
->port_array
[2], ISR2
);
2572 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2573 printk("%s(%d):%s status1=%02x, dmastatus1=%02x, timerstatus1=%02x\n",
2574 __FILE__
,__LINE__
,info
->device_name
,
2575 status1
,dmastatus1
,timerstatus1
);
2578 if (!status0
&& !dmastatus0
&& !timerstatus0
&&
2579 !status1
&& !dmastatus1
&& !timerstatus1
)
2582 for(i
=0; i
< info
->port_count
; i
++) {
2583 if (info
->port_array
[i
] == NULL
)
2587 dmastatus
= dmastatus0
;
2590 dmastatus
= dmastatus1
;
2593 shift
= i
& 1 ? 4 :0;
2595 if (status
& BIT0
<< shift
)
2596 isr_rxrdy(info
->port_array
[i
]);
2597 if (status
& BIT1
<< shift
)
2598 isr_txrdy(info
->port_array
[i
]);
2599 if (status
& BIT2
<< shift
)
2600 isr_rxint(info
->port_array
[i
]);
2601 if (status
& BIT3
<< shift
)
2602 isr_txint(info
->port_array
[i
]);
2604 if (dmastatus
& BIT0
<< shift
)
2605 isr_rxdmaerror(info
->port_array
[i
]);
2606 if (dmastatus
& BIT1
<< shift
)
2607 isr_rxdmaok(info
->port_array
[i
]);
2608 if (dmastatus
& BIT2
<< shift
)
2609 isr_txdmaerror(info
->port_array
[i
]);
2610 if (dmastatus
& BIT3
<< shift
)
2611 isr_txdmaok(info
->port_array
[i
]);
2614 if (timerstatus0
& (BIT5
| BIT4
))
2615 isr_timer(info
->port_array
[0]);
2616 if (timerstatus0
& (BIT7
| BIT6
))
2617 isr_timer(info
->port_array
[1]);
2618 if (timerstatus1
& (BIT5
| BIT4
))
2619 isr_timer(info
->port_array
[2]);
2620 if (timerstatus1
& (BIT7
| BIT6
))
2621 isr_timer(info
->port_array
[3]);
2624 for(i
=0; i
< info
->port_count
; i
++) {
2625 SLMP_INFO
* port
= info
->port_array
[i
];
2627 /* Request bottom half processing if there's something
2628 * for it to do and the bh is not already running.
2630 * Note: startup adapter diags require interrupts.
2631 * do not request bottom half processing if the
2632 * device is not open in a normal mode.
2634 if ( port
&& (port
->port
.count
|| port
->netcount
) &&
2635 port
->pending_bh
&& !port
->bh_running
&&
2636 !port
->bh_requested
) {
2637 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2638 printk("%s(%d):%s queueing bh task.\n",
2639 __FILE__
,__LINE__
,port
->device_name
);
2640 schedule_work(&port
->task
);
2641 port
->bh_requested
= true;
2645 spin_unlock(&info
->lock
);
2647 if ( debug_level
>= DEBUG_LEVEL_ISR
)
2648 printk(KERN_DEBUG
"%s(%d):synclinkmp_interrupt(%d)exit.\n",
2649 __FILE__
, __LINE__
, info
->irq_level
);
2653 /* Initialize and start device.
2655 static int startup(SLMP_INFO
* info
)
2657 if ( debug_level
>= DEBUG_LEVEL_INFO
)
2658 printk("%s(%d):%s tx_releaseup()\n",__FILE__
,__LINE__
,info
->device_name
);
2660 if (info
->port
.flags
& ASYNC_INITIALIZED
)
2663 if (!info
->tx_buf
) {
2664 info
->tx_buf
= kmalloc(info
->max_frame_size
, GFP_KERNEL
);
2665 if (!info
->tx_buf
) {
2666 printk(KERN_ERR
"%s(%d):%s can't allocate transmit buffer\n",
2667 __FILE__
,__LINE__
,info
->device_name
);
2672 info
->pending_bh
= 0;
2674 memset(&info
->icount
, 0, sizeof(info
->icount
));
2676 /* program hardware for current parameters */
2679 change_params(info
);
2681 mod_timer(&info
->status_timer
, jiffies
+ msecs_to_jiffies(10));
2684 clear_bit(TTY_IO_ERROR
, &info
->port
.tty
->flags
);
2686 info
->port
.flags
|= ASYNC_INITIALIZED
;
2691 /* Called by close() and hangup() to shutdown hardware
2693 static void shutdown(SLMP_INFO
* info
)
2695 unsigned long flags
;
2697 if (!(info
->port
.flags
& ASYNC_INITIALIZED
))
2700 if (debug_level
>= DEBUG_LEVEL_INFO
)
2701 printk("%s(%d):%s synclinkmp_shutdown()\n",
2702 __FILE__
,__LINE__
, info
->device_name
);
2704 /* clear status wait queue because status changes */
2705 /* can't happen after shutting down the hardware */
2706 wake_up_interruptible(&info
->status_event_wait_q
);
2707 wake_up_interruptible(&info
->event_wait_q
);
2709 del_timer(&info
->tx_timer
);
2710 del_timer(&info
->status_timer
);
2712 kfree(info
->tx_buf
);
2713 info
->tx_buf
= NULL
;
2715 spin_lock_irqsave(&info
->lock
,flags
);
2719 if (!info
->port
.tty
|| info
->port
.tty
->termios
->c_cflag
& HUPCL
) {
2720 info
->serial_signals
&= ~(SerialSignal_DTR
+ SerialSignal_RTS
);
2724 spin_unlock_irqrestore(&info
->lock
,flags
);
2727 set_bit(TTY_IO_ERROR
, &info
->port
.tty
->flags
);
2729 info
->port
.flags
&= ~ASYNC_INITIALIZED
;
2732 static void program_hw(SLMP_INFO
*info
)
2734 unsigned long flags
;
2736 spin_lock_irqsave(&info
->lock
,flags
);
2741 info
->tx_count
= info
->tx_put
= info
->tx_get
= 0;
2743 if (info
->params
.mode
== MGSL_MODE_HDLC
|| info
->netcount
)
2750 info
->dcd_chkcount
= 0;
2751 info
->cts_chkcount
= 0;
2752 info
->ri_chkcount
= 0;
2753 info
->dsr_chkcount
= 0;
2755 info
->ie1_value
|= (CDCD
|CCTS
);
2756 write_reg(info
, IE1
, info
->ie1_value
);
2760 if (info
->netcount
|| (info
->port
.tty
&& info
->port
.tty
->termios
->c_cflag
& CREAD
) )
2763 spin_unlock_irqrestore(&info
->lock
,flags
);
2766 /* Reconfigure adapter based on new parameters
2768 static void change_params(SLMP_INFO
*info
)
2773 if (!info
->port
.tty
|| !info
->port
.tty
->termios
)
2776 if (debug_level
>= DEBUG_LEVEL_INFO
)
2777 printk("%s(%d):%s change_params()\n",
2778 __FILE__
,__LINE__
, info
->device_name
);
2780 cflag
= info
->port
.tty
->termios
->c_cflag
;
2782 /* if B0 rate (hangup) specified then negate DTR and RTS */
2783 /* otherwise assert DTR and RTS */
2785 info
->serial_signals
|= SerialSignal_RTS
+ SerialSignal_DTR
;
2787 info
->serial_signals
&= ~(SerialSignal_RTS
+ SerialSignal_DTR
);
2789 /* byte size and parity */
2791 switch (cflag
& CSIZE
) {
2792 case CS5
: info
->params
.data_bits
= 5; break;
2793 case CS6
: info
->params
.data_bits
= 6; break;
2794 case CS7
: info
->params
.data_bits
= 7; break;
2795 case CS8
: info
->params
.data_bits
= 8; break;
2796 /* Never happens, but GCC is too dumb to figure it out */
2797 default: info
->params
.data_bits
= 7; break;
2801 info
->params
.stop_bits
= 2;
2803 info
->params
.stop_bits
= 1;
2805 info
->params
.parity
= ASYNC_PARITY_NONE
;
2806 if (cflag
& PARENB
) {
2808 info
->params
.parity
= ASYNC_PARITY_ODD
;
2810 info
->params
.parity
= ASYNC_PARITY_EVEN
;
2813 info
->params
.parity
= ASYNC_PARITY_SPACE
;
2817 /* calculate number of jiffies to transmit a full
2818 * FIFO (32 bytes) at specified data rate
2820 bits_per_char
= info
->params
.data_bits
+
2821 info
->params
.stop_bits
+ 1;
2823 /* if port data rate is set to 460800 or less then
2824 * allow tty settings to override, otherwise keep the
2825 * current data rate.
2827 if (info
->params
.data_rate
<= 460800) {
2828 info
->params
.data_rate
= tty_get_baud_rate(info
->port
.tty
);
2831 if ( info
->params
.data_rate
) {
2832 info
->timeout
= (32*HZ
*bits_per_char
) /
2833 info
->params
.data_rate
;
2835 info
->timeout
+= HZ
/50; /* Add .02 seconds of slop */
2837 if (cflag
& CRTSCTS
)
2838 info
->port
.flags
|= ASYNC_CTS_FLOW
;
2840 info
->port
.flags
&= ~ASYNC_CTS_FLOW
;
2843 info
->port
.flags
&= ~ASYNC_CHECK_CD
;
2845 info
->port
.flags
|= ASYNC_CHECK_CD
;
2847 /* process tty input control flags */
2849 info
->read_status_mask2
= OVRN
;
2850 if (I_INPCK(info
->port
.tty
))
2851 info
->read_status_mask2
|= PE
| FRME
;
2852 if (I_BRKINT(info
->port
.tty
) || I_PARMRK(info
->port
.tty
))
2853 info
->read_status_mask1
|= BRKD
;
2854 if (I_IGNPAR(info
->port
.tty
))
2855 info
->ignore_status_mask2
|= PE
| FRME
;
2856 if (I_IGNBRK(info
->port
.tty
)) {
2857 info
->ignore_status_mask1
|= BRKD
;
2858 /* If ignoring parity and break indicators, ignore
2859 * overruns too. (For real raw support).
2861 if (I_IGNPAR(info
->port
.tty
))
2862 info
->ignore_status_mask2
|= OVRN
;
2868 static int get_stats(SLMP_INFO
* info
, struct mgsl_icount __user
*user_icount
)
2872 if (debug_level
>= DEBUG_LEVEL_INFO
)
2873 printk("%s(%d):%s get_params()\n",
2874 __FILE__
,__LINE__
, info
->device_name
);
2877 memset(&info
->icount
, 0, sizeof(info
->icount
));
2879 mutex_lock(&info
->port
.mutex
);
2880 COPY_TO_USER(err
, user_icount
, &info
->icount
, sizeof(struct mgsl_icount
));
2881 mutex_unlock(&info
->port
.mutex
);
2889 static int get_params(SLMP_INFO
* info
, MGSL_PARAMS __user
*user_params
)
2892 if (debug_level
>= DEBUG_LEVEL_INFO
)
2893 printk("%s(%d):%s get_params()\n",
2894 __FILE__
,__LINE__
, info
->device_name
);
2896 mutex_lock(&info
->port
.mutex
);
2897 COPY_TO_USER(err
,user_params
, &info
->params
, sizeof(MGSL_PARAMS
));
2898 mutex_unlock(&info
->port
.mutex
);
2900 if ( debug_level
>= DEBUG_LEVEL_INFO
)
2901 printk( "%s(%d):%s get_params() user buffer copy failed\n",
2902 __FILE__
,__LINE__
,info
->device_name
);
2909 static int set_params(SLMP_INFO
* info
, MGSL_PARAMS __user
*new_params
)
2911 unsigned long flags
;
2912 MGSL_PARAMS tmp_params
;
2915 if (debug_level
>= DEBUG_LEVEL_INFO
)
2916 printk("%s(%d):%s set_params\n",
2917 __FILE__
,__LINE__
,info
->device_name
);
2918 COPY_FROM_USER(err
,&tmp_params
, new_params
, sizeof(MGSL_PARAMS
));
2920 if ( debug_level
>= DEBUG_LEVEL_INFO
)
2921 printk( "%s(%d):%s set_params() user buffer copy failed\n",
2922 __FILE__
,__LINE__
,info
->device_name
);
2926 mutex_lock(&info
->port
.mutex
);
2927 spin_lock_irqsave(&info
->lock
,flags
);
2928 memcpy(&info
->params
,&tmp_params
,sizeof(MGSL_PARAMS
));
2929 spin_unlock_irqrestore(&info
->lock
,flags
);
2931 change_params(info
);
2932 mutex_unlock(&info
->port
.mutex
);
2937 static int get_txidle(SLMP_INFO
* info
, int __user
*idle_mode
)
2941 if (debug_level
>= DEBUG_LEVEL_INFO
)
2942 printk("%s(%d):%s get_txidle()=%d\n",
2943 __FILE__
,__LINE__
, info
->device_name
, info
->idle_mode
);
2945 COPY_TO_USER(err
,idle_mode
, &info
->idle_mode
, sizeof(int));
2947 if ( debug_level
>= DEBUG_LEVEL_INFO
)
2948 printk( "%s(%d):%s get_txidle() user buffer copy failed\n",
2949 __FILE__
,__LINE__
,info
->device_name
);
2956 static int set_txidle(SLMP_INFO
* info
, int idle_mode
)
2958 unsigned long flags
;
2960 if (debug_level
>= DEBUG_LEVEL_INFO
)
2961 printk("%s(%d):%s set_txidle(%d)\n",
2962 __FILE__
,__LINE__
,info
->device_name
, idle_mode
);
2964 spin_lock_irqsave(&info
->lock
,flags
);
2965 info
->idle_mode
= idle_mode
;
2966 tx_set_idle( info
);
2967 spin_unlock_irqrestore(&info
->lock
,flags
);
2971 static int tx_enable(SLMP_INFO
* info
, int enable
)
2973 unsigned long flags
;
2975 if (debug_level
>= DEBUG_LEVEL_INFO
)
2976 printk("%s(%d):%s tx_enable(%d)\n",
2977 __FILE__
,__LINE__
,info
->device_name
, enable
);
2979 spin_lock_irqsave(&info
->lock
,flags
);
2981 if ( !info
->tx_enabled
) {
2985 if ( info
->tx_enabled
)
2988 spin_unlock_irqrestore(&info
->lock
,flags
);
2992 /* abort send HDLC frame
2994 static int tx_abort(SLMP_INFO
* info
)
2996 unsigned long flags
;
2998 if (debug_level
>= DEBUG_LEVEL_INFO
)
2999 printk("%s(%d):%s tx_abort()\n",
3000 __FILE__
,__LINE__
,info
->device_name
);
3002 spin_lock_irqsave(&info
->lock
,flags
);
3003 if ( info
->tx_active
&& info
->params
.mode
== MGSL_MODE_HDLC
) {
3004 info
->ie1_value
&= ~UDRN
;
3005 info
->ie1_value
|= IDLE
;
3006 write_reg(info
, IE1
, info
->ie1_value
); /* disable tx status interrupts */
3007 write_reg(info
, SR1
, (unsigned char)(IDLE
+ UDRN
)); /* clear pending */
3009 write_reg(info
, TXDMA
+ DSR
, 0); /* disable DMA channel */
3010 write_reg(info
, TXDMA
+ DCMD
, SWABORT
); /* reset/init DMA channel */
3012 write_reg(info
, CMD
, TXABORT
);
3014 spin_unlock_irqrestore(&info
->lock
,flags
);
3018 static int rx_enable(SLMP_INFO
* info
, int enable
)
3020 unsigned long flags
;
3022 if (debug_level
>= DEBUG_LEVEL_INFO
)
3023 printk("%s(%d):%s rx_enable(%d)\n",
3024 __FILE__
,__LINE__
,info
->device_name
,enable
);
3026 spin_lock_irqsave(&info
->lock
,flags
);
3028 if ( !info
->rx_enabled
)
3031 if ( info
->rx_enabled
)
3034 spin_unlock_irqrestore(&info
->lock
,flags
);
3038 /* wait for specified event to occur
3040 static int wait_mgsl_event(SLMP_INFO
* info
, int __user
*mask_ptr
)
3042 unsigned long flags
;
3045 struct mgsl_icount cprev
, cnow
;
3048 struct _input_signal_events oldsigs
, newsigs
;
3049 DECLARE_WAITQUEUE(wait
, current
);
3051 COPY_FROM_USER(rc
,&mask
, mask_ptr
, sizeof(int));
3056 if (debug_level
>= DEBUG_LEVEL_INFO
)
3057 printk("%s(%d):%s wait_mgsl_event(%d)\n",
3058 __FILE__
,__LINE__
,info
->device_name
,mask
);
3060 spin_lock_irqsave(&info
->lock
,flags
);
3062 /* return immediately if state matches requested events */
3064 s
= info
->serial_signals
;
3067 ( ((s
& SerialSignal_DSR
) ? MgslEvent_DsrActive
:MgslEvent_DsrInactive
) +
3068 ((s
& SerialSignal_DCD
) ? MgslEvent_DcdActive
:MgslEvent_DcdInactive
) +
3069 ((s
& SerialSignal_CTS
) ? MgslEvent_CtsActive
:MgslEvent_CtsInactive
) +
3070 ((s
& SerialSignal_RI
) ? MgslEvent_RiActive
:MgslEvent_RiInactive
) );
3072 spin_unlock_irqrestore(&info
->lock
,flags
);
3076 /* save current irq counts */
3077 cprev
= info
->icount
;
3078 oldsigs
= info
->input_signal_events
;
3080 /* enable hunt and idle irqs if needed */
3081 if (mask
& (MgslEvent_ExitHuntMode
+MgslEvent_IdleReceived
)) {
3082 unsigned char oldval
= info
->ie1_value
;
3083 unsigned char newval
= oldval
+
3084 (mask
& MgslEvent_ExitHuntMode
? FLGD
:0) +
3085 (mask
& MgslEvent_IdleReceived
? IDLD
:0);
3086 if ( oldval
!= newval
) {
3087 info
->ie1_value
= newval
;
3088 write_reg(info
, IE1
, info
->ie1_value
);
3092 set_current_state(TASK_INTERRUPTIBLE
);
3093 add_wait_queue(&info
->event_wait_q
, &wait
);
3095 spin_unlock_irqrestore(&info
->lock
,flags
);
3099 if (signal_pending(current
)) {
3104 /* get current irq counts */
3105 spin_lock_irqsave(&info
->lock
,flags
);
3106 cnow
= info
->icount
;
3107 newsigs
= info
->input_signal_events
;
3108 set_current_state(TASK_INTERRUPTIBLE
);
3109 spin_unlock_irqrestore(&info
->lock
,flags
);
3111 /* if no change, wait aborted for some reason */
3112 if (newsigs
.dsr_up
== oldsigs
.dsr_up
&&
3113 newsigs
.dsr_down
== oldsigs
.dsr_down
&&
3114 newsigs
.dcd_up
== oldsigs
.dcd_up
&&
3115 newsigs
.dcd_down
== oldsigs
.dcd_down
&&
3116 newsigs
.cts_up
== oldsigs
.cts_up
&&
3117 newsigs
.cts_down
== oldsigs
.cts_down
&&
3118 newsigs
.ri_up
== oldsigs
.ri_up
&&
3119 newsigs
.ri_down
== oldsigs
.ri_down
&&
3120 cnow
.exithunt
== cprev
.exithunt
&&
3121 cnow
.rxidle
== cprev
.rxidle
) {
3127 ( (newsigs
.dsr_up
!= oldsigs
.dsr_up
? MgslEvent_DsrActive
:0) +
3128 (newsigs
.dsr_down
!= oldsigs
.dsr_down
? MgslEvent_DsrInactive
:0) +
3129 (newsigs
.dcd_up
!= oldsigs
.dcd_up
? MgslEvent_DcdActive
:0) +
3130 (newsigs
.dcd_down
!= oldsigs
.dcd_down
? MgslEvent_DcdInactive
:0) +
3131 (newsigs
.cts_up
!= oldsigs
.cts_up
? MgslEvent_CtsActive
:0) +
3132 (newsigs
.cts_down
!= oldsigs
.cts_down
? MgslEvent_CtsInactive
:0) +
3133 (newsigs
.ri_up
!= oldsigs
.ri_up
? MgslEvent_RiActive
:0) +
3134 (newsigs
.ri_down
!= oldsigs
.ri_down
? MgslEvent_RiInactive
:0) +
3135 (cnow
.exithunt
!= cprev
.exithunt
? MgslEvent_ExitHuntMode
:0) +
3136 (cnow
.rxidle
!= cprev
.rxidle
? MgslEvent_IdleReceived
:0) );
3144 remove_wait_queue(&info
->event_wait_q
, &wait
);
3145 set_current_state(TASK_RUNNING
);
3148 if (mask
& (MgslEvent_ExitHuntMode
+ MgslEvent_IdleReceived
)) {
3149 spin_lock_irqsave(&info
->lock
,flags
);
3150 if (!waitqueue_active(&info
->event_wait_q
)) {
3151 /* disable enable exit hunt mode/idle rcvd IRQs */
3152 info
->ie1_value
&= ~(FLGD
|IDLD
);
3153 write_reg(info
, IE1
, info
->ie1_value
);
3155 spin_unlock_irqrestore(&info
->lock
,flags
);
3159 PUT_USER(rc
, events
, mask_ptr
);
3164 static int modem_input_wait(SLMP_INFO
*info
,int arg
)
3166 unsigned long flags
;
3168 struct mgsl_icount cprev
, cnow
;
3169 DECLARE_WAITQUEUE(wait
, current
);
3171 /* save current irq counts */
3172 spin_lock_irqsave(&info
->lock
,flags
);
3173 cprev
= info
->icount
;
3174 add_wait_queue(&info
->status_event_wait_q
, &wait
);
3175 set_current_state(TASK_INTERRUPTIBLE
);
3176 spin_unlock_irqrestore(&info
->lock
,flags
);
3180 if (signal_pending(current
)) {
3185 /* get new irq counts */
3186 spin_lock_irqsave(&info
->lock
,flags
);
3187 cnow
= info
->icount
;
3188 set_current_state(TASK_INTERRUPTIBLE
);
3189 spin_unlock_irqrestore(&info
->lock
,flags
);
3191 /* if no change, wait aborted for some reason */
3192 if (cnow
.rng
== cprev
.rng
&& cnow
.dsr
== cprev
.dsr
&&
3193 cnow
.dcd
== cprev
.dcd
&& cnow
.cts
== cprev
.cts
) {
3198 /* check for change in caller specified modem input */
3199 if ((arg
& TIOCM_RNG
&& cnow
.rng
!= cprev
.rng
) ||
3200 (arg
& TIOCM_DSR
&& cnow
.dsr
!= cprev
.dsr
) ||
3201 (arg
& TIOCM_CD
&& cnow
.dcd
!= cprev
.dcd
) ||
3202 (arg
& TIOCM_CTS
&& cnow
.cts
!= cprev
.cts
)) {
3209 remove_wait_queue(&info
->status_event_wait_q
, &wait
);
3210 set_current_state(TASK_RUNNING
);
3214 /* return the state of the serial control and status signals
3216 static int tiocmget(struct tty_struct
*tty
, struct file
*file
)
3218 SLMP_INFO
*info
= tty
->driver_data
;
3219 unsigned int result
;
3220 unsigned long flags
;
3222 spin_lock_irqsave(&info
->lock
,flags
);
3224 spin_unlock_irqrestore(&info
->lock
,flags
);
3226 result
= ((info
->serial_signals
& SerialSignal_RTS
) ? TIOCM_RTS
:0) +
3227 ((info
->serial_signals
& SerialSignal_DTR
) ? TIOCM_DTR
:0) +
3228 ((info
->serial_signals
& SerialSignal_DCD
) ? TIOCM_CAR
:0) +
3229 ((info
->serial_signals
& SerialSignal_RI
) ? TIOCM_RNG
:0) +
3230 ((info
->serial_signals
& SerialSignal_DSR
) ? TIOCM_DSR
:0) +
3231 ((info
->serial_signals
& SerialSignal_CTS
) ? TIOCM_CTS
:0);
3233 if (debug_level
>= DEBUG_LEVEL_INFO
)
3234 printk("%s(%d):%s tiocmget() value=%08X\n",
3235 __FILE__
,__LINE__
, info
->device_name
, result
);
3239 /* set modem control signals (DTR/RTS)
3241 static int tiocmset(struct tty_struct
*tty
, struct file
*file
,
3242 unsigned int set
, unsigned int clear
)
3244 SLMP_INFO
*info
= tty
->driver_data
;
3245 unsigned long flags
;
3247 if (debug_level
>= DEBUG_LEVEL_INFO
)
3248 printk("%s(%d):%s tiocmset(%x,%x)\n",
3249 __FILE__
,__LINE__
,info
->device_name
, set
, clear
);
3251 if (set
& TIOCM_RTS
)
3252 info
->serial_signals
|= SerialSignal_RTS
;
3253 if (set
& TIOCM_DTR
)
3254 info
->serial_signals
|= SerialSignal_DTR
;
3255 if (clear
& TIOCM_RTS
)
3256 info
->serial_signals
&= ~SerialSignal_RTS
;
3257 if (clear
& TIOCM_DTR
)
3258 info
->serial_signals
&= ~SerialSignal_DTR
;
3260 spin_lock_irqsave(&info
->lock
,flags
);
3262 spin_unlock_irqrestore(&info
->lock
,flags
);
3267 static int carrier_raised(struct tty_port
*port
)
3269 SLMP_INFO
*info
= container_of(port
, SLMP_INFO
, port
);
3270 unsigned long flags
;
3272 spin_lock_irqsave(&info
->lock
,flags
);
3274 spin_unlock_irqrestore(&info
->lock
,flags
);
3276 return (info
->serial_signals
& SerialSignal_DCD
) ? 1 : 0;
3279 static void dtr_rts(struct tty_port
*port
, int on
)
3281 SLMP_INFO
*info
= container_of(port
, SLMP_INFO
, port
);
3282 unsigned long flags
;
3284 spin_lock_irqsave(&info
->lock
,flags
);
3286 info
->serial_signals
|= SerialSignal_RTS
+ SerialSignal_DTR
;
3288 info
->serial_signals
&= ~(SerialSignal_RTS
+ SerialSignal_DTR
);
3290 spin_unlock_irqrestore(&info
->lock
,flags
);
3293 /* Block the current process until the specified port is ready to open.
3295 static int block_til_ready(struct tty_struct
*tty
, struct file
*filp
,
3298 DECLARE_WAITQUEUE(wait
, current
);
3300 bool do_clocal
= false;
3301 bool extra_count
= false;
3302 unsigned long flags
;
3304 struct tty_port
*port
= &info
->port
;
3306 if (debug_level
>= DEBUG_LEVEL_INFO
)
3307 printk("%s(%d):%s block_til_ready()\n",
3308 __FILE__
,__LINE__
, tty
->driver
->name
);
3310 if (filp
->f_flags
& O_NONBLOCK
|| tty
->flags
& (1 << TTY_IO_ERROR
)){
3311 /* nonblock mode is set or port is not enabled */
3312 /* just verify that callout device is not active */
3313 port
->flags
|= ASYNC_NORMAL_ACTIVE
;
3317 if (tty
->termios
->c_cflag
& CLOCAL
)
3320 /* Wait for carrier detect and the line to become
3321 * free (i.e., not in use by the callout). While we are in
3322 * this loop, port->count is dropped by one, so that
3323 * close() knows when to free things. We restore it upon
3324 * exit, either normal or abnormal.
3328 add_wait_queue(&port
->open_wait
, &wait
);
3330 if (debug_level
>= DEBUG_LEVEL_INFO
)
3331 printk("%s(%d):%s block_til_ready() before block, count=%d\n",
3332 __FILE__
,__LINE__
, tty
->driver
->name
, port
->count
);
3334 spin_lock_irqsave(&info
->lock
, flags
);
3335 if (!tty_hung_up_p(filp
)) {
3339 spin_unlock_irqrestore(&info
->lock
, flags
);
3340 port
->blocked_open
++;
3343 if (tty
->termios
->c_cflag
& CBAUD
)
3344 tty_port_raise_dtr_rts(port
);
3346 set_current_state(TASK_INTERRUPTIBLE
);
3348 if (tty_hung_up_p(filp
) || !(port
->flags
& ASYNC_INITIALIZED
)){
3349 retval
= (port
->flags
& ASYNC_HUP_NOTIFY
) ?
3350 -EAGAIN
: -ERESTARTSYS
;
3354 cd
= tty_port_carrier_raised(port
);
3356 if (!(port
->flags
& ASYNC_CLOSING
) && (do_clocal
|| cd
))
3359 if (signal_pending(current
)) {
3360 retval
= -ERESTARTSYS
;
3364 if (debug_level
>= DEBUG_LEVEL_INFO
)
3365 printk("%s(%d):%s block_til_ready() count=%d\n",
3366 __FILE__
,__LINE__
, tty
->driver
->name
, port
->count
);
3373 set_current_state(TASK_RUNNING
);
3374 remove_wait_queue(&port
->open_wait
, &wait
);
3378 port
->blocked_open
--;
3380 if (debug_level
>= DEBUG_LEVEL_INFO
)
3381 printk("%s(%d):%s block_til_ready() after, count=%d\n",
3382 __FILE__
,__LINE__
, tty
->driver
->name
, port
->count
);
3385 port
->flags
|= ASYNC_NORMAL_ACTIVE
;
3390 static int alloc_dma_bufs(SLMP_INFO
*info
)
3392 unsigned short BuffersPerFrame
;
3393 unsigned short BufferCount
;
3395 // Force allocation to start at 64K boundary for each port.
3396 // This is necessary because *all* buffer descriptors for a port
3397 // *must* be in the same 64K block. All descriptors on a port
3398 // share a common 'base' address (upper 8 bits of 24 bits) programmed
3399 // into the CBP register.
3400 info
->port_array
[0]->last_mem_alloc
= (SCA_MEM_SIZE
/4) * info
->port_num
;
3402 /* Calculate the number of DMA buffers necessary to hold the */
3403 /* largest allowable frame size. Note: If the max frame size is */
3404 /* not an even multiple of the DMA buffer size then we need to */
3405 /* round the buffer count per frame up one. */
3407 BuffersPerFrame
= (unsigned short)(info
->max_frame_size
/SCABUFSIZE
);
3408 if ( info
->max_frame_size
% SCABUFSIZE
)
3411 /* calculate total number of data buffers (SCABUFSIZE) possible
3412 * in one ports memory (SCA_MEM_SIZE/4) after allocating memory
3413 * for the descriptor list (BUFFERLISTSIZE).
3415 BufferCount
= (SCA_MEM_SIZE
/4 - BUFFERLISTSIZE
)/SCABUFSIZE
;
3417 /* limit number of buffers to maximum amount of descriptors */
3418 if (BufferCount
> BUFFERLISTSIZE
/sizeof(SCADESC
))
3419 BufferCount
= BUFFERLISTSIZE
/sizeof(SCADESC
);
3421 /* use enough buffers to transmit one max size frame */
3422 info
->tx_buf_count
= BuffersPerFrame
+ 1;
3424 /* never use more than half the available buffers for transmit */
3425 if (info
->tx_buf_count
> (BufferCount
/2))
3426 info
->tx_buf_count
= BufferCount
/2;
3428 if (info
->tx_buf_count
> SCAMAXDESC
)
3429 info
->tx_buf_count
= SCAMAXDESC
;
3431 /* use remaining buffers for receive */
3432 info
->rx_buf_count
= BufferCount
- info
->tx_buf_count
;
3434 if (info
->rx_buf_count
> SCAMAXDESC
)
3435 info
->rx_buf_count
= SCAMAXDESC
;
3437 if ( debug_level
>= DEBUG_LEVEL_INFO
)
3438 printk("%s(%d):%s Allocating %d TX and %d RX DMA buffers.\n",
3439 __FILE__
,__LINE__
, info
->device_name
,
3440 info
->tx_buf_count
,info
->rx_buf_count
);
3442 if ( alloc_buf_list( info
) < 0 ||
3443 alloc_frame_bufs(info
,
3445 info
->rx_buf_list_ex
,
3446 info
->rx_buf_count
) < 0 ||
3447 alloc_frame_bufs(info
,
3449 info
->tx_buf_list_ex
,
3450 info
->tx_buf_count
) < 0 ||
3451 alloc_tmp_rx_buf(info
) < 0 ) {
3452 printk("%s(%d):%s Can't allocate DMA buffer memory\n",
3453 __FILE__
,__LINE__
, info
->device_name
);
3457 rx_reset_buffers( info
);
3462 /* Allocate DMA buffers for the transmit and receive descriptor lists.
3464 static int alloc_buf_list(SLMP_INFO
*info
)
3468 /* build list in adapter shared memory */
3469 info
->buffer_list
= info
->memory_base
+ info
->port_array
[0]->last_mem_alloc
;
3470 info
->buffer_list_phys
= info
->port_array
[0]->last_mem_alloc
;
3471 info
->port_array
[0]->last_mem_alloc
+= BUFFERLISTSIZE
;
3473 memset(info
->buffer_list
, 0, BUFFERLISTSIZE
);
3475 /* Save virtual address pointers to the receive and */
3476 /* transmit buffer lists. (Receive 1st). These pointers will */
3477 /* be used by the processor to access the lists. */
3478 info
->rx_buf_list
= (SCADESC
*)info
->buffer_list
;
3480 info
->tx_buf_list
= (SCADESC
*)info
->buffer_list
;
3481 info
->tx_buf_list
+= info
->rx_buf_count
;
3483 /* Build links for circular buffer entry lists (tx and rx)
3485 * Note: links are physical addresses read by the SCA device
3486 * to determine the next buffer entry to use.
3489 for ( i
= 0; i
< info
->rx_buf_count
; i
++ ) {
3490 /* calculate and store physical address of this buffer entry */
3491 info
->rx_buf_list_ex
[i
].phys_entry
=
3492 info
->buffer_list_phys
+ (i
* sizeof(SCABUFSIZE
));
3494 /* calculate and store physical address of */
3495 /* next entry in cirular list of entries */
3496 info
->rx_buf_list
[i
].next
= info
->buffer_list_phys
;
3497 if ( i
< info
->rx_buf_count
- 1 )
3498 info
->rx_buf_list
[i
].next
+= (i
+ 1) * sizeof(SCADESC
);
3500 info
->rx_buf_list
[i
].length
= SCABUFSIZE
;
3503 for ( i
= 0; i
< info
->tx_buf_count
; i
++ ) {
3504 /* calculate and store physical address of this buffer entry */
3505 info
->tx_buf_list_ex
[i
].phys_entry
= info
->buffer_list_phys
+
3506 ((info
->rx_buf_count
+ i
) * sizeof(SCADESC
));
3508 /* calculate and store physical address of */
3509 /* next entry in cirular list of entries */
3511 info
->tx_buf_list
[i
].next
= info
->buffer_list_phys
+
3512 info
->rx_buf_count
* sizeof(SCADESC
);
3514 if ( i
< info
->tx_buf_count
- 1 )
3515 info
->tx_buf_list
[i
].next
+= (i
+ 1) * sizeof(SCADESC
);
3521 /* Allocate the frame DMA buffers used by the specified buffer list.
3523 static int alloc_frame_bufs(SLMP_INFO
*info
, SCADESC
*buf_list
,SCADESC_EX
*buf_list_ex
,int count
)
3526 unsigned long phys_addr
;
3528 for ( i
= 0; i
< count
; i
++ ) {
3529 buf_list_ex
[i
].virt_addr
= info
->memory_base
+ info
->port_array
[0]->last_mem_alloc
;
3530 phys_addr
= info
->port_array
[0]->last_mem_alloc
;
3531 info
->port_array
[0]->last_mem_alloc
+= SCABUFSIZE
;
3533 buf_list
[i
].buf_ptr
= (unsigned short)phys_addr
;
3534 buf_list
[i
].buf_base
= (unsigned char)(phys_addr
>> 16);
3540 static void free_dma_bufs(SLMP_INFO
*info
)
3542 info
->buffer_list
= NULL
;
3543 info
->rx_buf_list
= NULL
;
3544 info
->tx_buf_list
= NULL
;
3547 /* allocate buffer large enough to hold max_frame_size.
3548 * This buffer is used to pass an assembled frame to the line discipline.
3550 static int alloc_tmp_rx_buf(SLMP_INFO
*info
)
3552 info
->tmp_rx_buf
= kmalloc(info
->max_frame_size
, GFP_KERNEL
);
3553 if (info
->tmp_rx_buf
== NULL
)
3558 static void free_tmp_rx_buf(SLMP_INFO
*info
)
3560 kfree(info
->tmp_rx_buf
);
3561 info
->tmp_rx_buf
= NULL
;
3564 static int claim_resources(SLMP_INFO
*info
)
3566 if (request_mem_region(info
->phys_memory_base
,SCA_MEM_SIZE
,"synclinkmp") == NULL
) {
3567 printk( "%s(%d):%s mem addr conflict, Addr=%08X\n",
3568 __FILE__
,__LINE__
,info
->device_name
, info
->phys_memory_base
);
3569 info
->init_error
= DiagStatus_AddressConflict
;
3573 info
->shared_mem_requested
= true;
3575 if (request_mem_region(info
->phys_lcr_base
+ info
->lcr_offset
,128,"synclinkmp") == NULL
) {
3576 printk( "%s(%d):%s lcr mem addr conflict, Addr=%08X\n",
3577 __FILE__
,__LINE__
,info
->device_name
, info
->phys_lcr_base
);
3578 info
->init_error
= DiagStatus_AddressConflict
;
3582 info
->lcr_mem_requested
= true;
3584 if (request_mem_region(info
->phys_sca_base
+ info
->sca_offset
,SCA_BASE_SIZE
,"synclinkmp") == NULL
) {
3585 printk( "%s(%d):%s sca mem addr conflict, Addr=%08X\n",
3586 __FILE__
,__LINE__
,info
->device_name
, info
->phys_sca_base
);
3587 info
->init_error
= DiagStatus_AddressConflict
;
3591 info
->sca_base_requested
= true;
3593 if (request_mem_region(info
->phys_statctrl_base
+ info
->statctrl_offset
,SCA_REG_SIZE
,"synclinkmp") == NULL
) {
3594 printk( "%s(%d):%s stat/ctrl mem addr conflict, Addr=%08X\n",
3595 __FILE__
,__LINE__
,info
->device_name
, info
->phys_statctrl_base
);
3596 info
->init_error
= DiagStatus_AddressConflict
;
3600 info
->sca_statctrl_requested
= true;
3602 info
->memory_base
= ioremap_nocache(info
->phys_memory_base
,
3604 if (!info
->memory_base
) {
3605 printk( "%s(%d):%s Cant map shared memory, MemAddr=%08X\n",
3606 __FILE__
,__LINE__
,info
->device_name
, info
->phys_memory_base
);
3607 info
->init_error
= DiagStatus_CantAssignPciResources
;
3611 info
->lcr_base
= ioremap_nocache(info
->phys_lcr_base
, PAGE_SIZE
);
3612 if (!info
->lcr_base
) {
3613 printk( "%s(%d):%s Cant map LCR memory, MemAddr=%08X\n",
3614 __FILE__
,__LINE__
,info
->device_name
, info
->phys_lcr_base
);
3615 info
->init_error
= DiagStatus_CantAssignPciResources
;
3618 info
->lcr_base
+= info
->lcr_offset
;
3620 info
->sca_base
= ioremap_nocache(info
->phys_sca_base
, PAGE_SIZE
);
3621 if (!info
->sca_base
) {
3622 printk( "%s(%d):%s Cant map SCA memory, MemAddr=%08X\n",
3623 __FILE__
,__LINE__
,info
->device_name
, info
->phys_sca_base
);
3624 info
->init_error
= DiagStatus_CantAssignPciResources
;
3627 info
->sca_base
+= info
->sca_offset
;
3629 info
->statctrl_base
= ioremap_nocache(info
->phys_statctrl_base
,
3631 if (!info
->statctrl_base
) {
3632 printk( "%s(%d):%s Cant map SCA Status/Control memory, MemAddr=%08X\n",
3633 __FILE__
,__LINE__
,info
->device_name
, info
->phys_statctrl_base
);
3634 info
->init_error
= DiagStatus_CantAssignPciResources
;
3637 info
->statctrl_base
+= info
->statctrl_offset
;
3639 if ( !memory_test(info
) ) {
3640 printk( "%s(%d):Shared Memory Test failed for device %s MemAddr=%08X\n",
3641 __FILE__
,__LINE__
,info
->device_name
, info
->phys_memory_base
);
3642 info
->init_error
= DiagStatus_MemoryError
;
3649 release_resources( info
);
3653 static void release_resources(SLMP_INFO
*info
)
3655 if ( debug_level
>= DEBUG_LEVEL_INFO
)
3656 printk( "%s(%d):%s release_resources() entry\n",
3657 __FILE__
,__LINE__
,info
->device_name
);
3659 if ( info
->irq_requested
) {
3660 free_irq(info
->irq_level
, info
);
3661 info
->irq_requested
= false;
3664 if ( info
->shared_mem_requested
) {
3665 release_mem_region(info
->phys_memory_base
,SCA_MEM_SIZE
);
3666 info
->shared_mem_requested
= false;
3668 if ( info
->lcr_mem_requested
) {
3669 release_mem_region(info
->phys_lcr_base
+ info
->lcr_offset
,128);
3670 info
->lcr_mem_requested
= false;
3672 if ( info
->sca_base_requested
) {
3673 release_mem_region(info
->phys_sca_base
+ info
->sca_offset
,SCA_BASE_SIZE
);
3674 info
->sca_base_requested
= false;
3676 if ( info
->sca_statctrl_requested
) {
3677 release_mem_region(info
->phys_statctrl_base
+ info
->statctrl_offset
,SCA_REG_SIZE
);
3678 info
->sca_statctrl_requested
= false;
3681 if (info
->memory_base
){
3682 iounmap(info
->memory_base
);
3683 info
->memory_base
= NULL
;
3686 if (info
->sca_base
) {
3687 iounmap(info
->sca_base
- info
->sca_offset
);
3688 info
->sca_base
=NULL
;
3691 if (info
->statctrl_base
) {
3692 iounmap(info
->statctrl_base
- info
->statctrl_offset
);
3693 info
->statctrl_base
=NULL
;
3696 if (info
->lcr_base
){
3697 iounmap(info
->lcr_base
- info
->lcr_offset
);
3698 info
->lcr_base
= NULL
;
3701 if ( debug_level
>= DEBUG_LEVEL_INFO
)
3702 printk( "%s(%d):%s release_resources() exit\n",
3703 __FILE__
,__LINE__
,info
->device_name
);
3706 /* Add the specified device instance data structure to the
3707 * global linked list of devices and increment the device count.
3709 static void add_device(SLMP_INFO
*info
)
3711 info
->next_device
= NULL
;
3712 info
->line
= synclinkmp_device_count
;
3713 sprintf(info
->device_name
,"ttySLM%dp%d",info
->adapter_num
,info
->port_num
);
3715 if (info
->line
< MAX_DEVICES
) {
3716 if (maxframe
[info
->line
])
3717 info
->max_frame_size
= maxframe
[info
->line
];
3720 synclinkmp_device_count
++;
3722 if ( !synclinkmp_device_list
)
3723 synclinkmp_device_list
= info
;
3725 SLMP_INFO
*current_dev
= synclinkmp_device_list
;
3726 while( current_dev
->next_device
)
3727 current_dev
= current_dev
->next_device
;
3728 current_dev
->next_device
= info
;
3731 if ( info
->max_frame_size
< 4096 )
3732 info
->max_frame_size
= 4096;
3733 else if ( info
->max_frame_size
> 65535 )
3734 info
->max_frame_size
= 65535;
3736 printk( "SyncLink MultiPort %s: "
3737 "Mem=(%08x %08X %08x %08X) IRQ=%d MaxFrameSize=%u\n",
3739 info
->phys_sca_base
,
3740 info
->phys_memory_base
,
3741 info
->phys_statctrl_base
,
3742 info
->phys_lcr_base
,
3744 info
->max_frame_size
);
3746 #if SYNCLINK_GENERIC_HDLC
3751 static const struct tty_port_operations port_ops
= {
3752 .carrier_raised
= carrier_raised
,
3756 /* Allocate and initialize a device instance structure
3758 * Return Value: pointer to SLMP_INFO if success, otherwise NULL
3760 static SLMP_INFO
*alloc_dev(int adapter_num
, int port_num
, struct pci_dev
*pdev
)
3764 info
= kzalloc(sizeof(SLMP_INFO
),
3768 printk("%s(%d) Error can't allocate device instance data for adapter %d, port %d\n",
3769 __FILE__
,__LINE__
, adapter_num
, port_num
);
3771 tty_port_init(&info
->port
);
3772 info
->port
.ops
= &port_ops
;
3773 info
->magic
= MGSL_MAGIC
;
3774 INIT_WORK(&info
->task
, bh_handler
);
3775 info
->max_frame_size
= 4096;
3776 info
->port
.close_delay
= 5*HZ
/10;
3777 info
->port
.closing_wait
= 30*HZ
;
3778 init_waitqueue_head(&info
->status_event_wait_q
);
3779 init_waitqueue_head(&info
->event_wait_q
);
3780 spin_lock_init(&info
->netlock
);
3781 memcpy(&info
->params
,&default_params
,sizeof(MGSL_PARAMS
));
3782 info
->idle_mode
= HDLC_TXIDLE_FLAGS
;
3783 info
->adapter_num
= adapter_num
;
3784 info
->port_num
= port_num
;
3786 /* Copy configuration info to device instance data */
3787 info
->irq_level
= pdev
->irq
;
3788 info
->phys_lcr_base
= pci_resource_start(pdev
,0);
3789 info
->phys_sca_base
= pci_resource_start(pdev
,2);
3790 info
->phys_memory_base
= pci_resource_start(pdev
,3);
3791 info
->phys_statctrl_base
= pci_resource_start(pdev
,4);
3793 /* Because veremap only works on page boundaries we must map
3794 * a larger area than is actually implemented for the LCR
3795 * memory range. We map a full page starting at the page boundary.
3797 info
->lcr_offset
= info
->phys_lcr_base
& (PAGE_SIZE
-1);
3798 info
->phys_lcr_base
&= ~(PAGE_SIZE
-1);
3800 info
->sca_offset
= info
->phys_sca_base
& (PAGE_SIZE
-1);
3801 info
->phys_sca_base
&= ~(PAGE_SIZE
-1);
3803 info
->statctrl_offset
= info
->phys_statctrl_base
& (PAGE_SIZE
-1);
3804 info
->phys_statctrl_base
&= ~(PAGE_SIZE
-1);
3806 info
->bus_type
= MGSL_BUS_TYPE_PCI
;
3807 info
->irq_flags
= IRQF_SHARED
;
3809 setup_timer(&info
->tx_timer
, tx_timeout
, (unsigned long)info
);
3810 setup_timer(&info
->status_timer
, status_timeout
,
3811 (unsigned long)info
);
3813 /* Store the PCI9050 misc control register value because a flaw
3814 * in the PCI9050 prevents LCR registers from being read if
3815 * BIOS assigns an LCR base address with bit 7 set.
3817 * Only the misc control register is accessed for which only
3818 * write access is needed, so set an initial value and change
3819 * bits to the device instance data as we write the value
3820 * to the actual misc control register.
3822 info
->misc_ctrl_value
= 0x087e4546;
3824 /* initial port state is unknown - if startup errors
3825 * occur, init_error will be set to indicate the
3826 * problem. Once the port is fully initialized,
3827 * this value will be set to 0 to indicate the
3828 * port is available.
3830 info
->init_error
= -1;
3836 static void device_init(int adapter_num
, struct pci_dev
*pdev
)
3838 SLMP_INFO
*port_array
[SCA_MAX_PORTS
];
3841 /* allocate device instances for up to SCA_MAX_PORTS devices */
3842 for ( port
= 0; port
< SCA_MAX_PORTS
; ++port
) {
3843 port_array
[port
] = alloc_dev(adapter_num
,port
,pdev
);
3844 if( port_array
[port
] == NULL
) {
3845 for ( --port
; port
>= 0; --port
)
3846 kfree(port_array
[port
]);
3851 /* give copy of port_array to all ports and add to device list */
3852 for ( port
= 0; port
< SCA_MAX_PORTS
; ++port
) {
3853 memcpy(port_array
[port
]->port_array
,port_array
,sizeof(port_array
));
3854 add_device( port_array
[port
] );
3855 spin_lock_init(&port_array
[port
]->lock
);
3858 /* Allocate and claim adapter resources */
3859 if ( !claim_resources(port_array
[0]) ) {
3861 alloc_dma_bufs(port_array
[0]);
3863 /* copy resource information from first port to others */
3864 for ( port
= 1; port
< SCA_MAX_PORTS
; ++port
) {
3865 port_array
[port
]->lock
= port_array
[0]->lock
;
3866 port_array
[port
]->irq_level
= port_array
[0]->irq_level
;
3867 port_array
[port
]->memory_base
= port_array
[0]->memory_base
;
3868 port_array
[port
]->sca_base
= port_array
[0]->sca_base
;
3869 port_array
[port
]->statctrl_base
= port_array
[0]->statctrl_base
;
3870 port_array
[port
]->lcr_base
= port_array
[0]->lcr_base
;
3871 alloc_dma_bufs(port_array
[port
]);
3874 if ( request_irq(port_array
[0]->irq_level
,
3875 synclinkmp_interrupt
,
3876 port_array
[0]->irq_flags
,
3877 port_array
[0]->device_name
,
3878 port_array
[0]) < 0 ) {
3879 printk( "%s(%d):%s Cant request interrupt, IRQ=%d\n",
3881 port_array
[0]->device_name
,
3882 port_array
[0]->irq_level
);
3885 port_array
[0]->irq_requested
= true;
3886 adapter_test(port_array
[0]);
3891 static const struct tty_operations ops
= {
3895 .put_char
= put_char
,
3896 .flush_chars
= flush_chars
,
3897 .write_room
= write_room
,
3898 .chars_in_buffer
= chars_in_buffer
,
3899 .flush_buffer
= flush_buffer
,
3901 .throttle
= throttle
,
3902 .unthrottle
= unthrottle
,
3903 .send_xchar
= send_xchar
,
3904 .break_ctl
= set_break
,
3905 .wait_until_sent
= wait_until_sent
,
3906 .set_termios
= set_termios
,
3908 .start
= tx_release
,
3910 .tiocmget
= tiocmget
,
3911 .tiocmset
= tiocmset
,
3912 .proc_fops
= &synclinkmp_proc_fops
,
3916 static void synclinkmp_cleanup(void)
3922 printk("Unloading %s %s\n", driver_name
, driver_version
);
3924 if (serial_driver
) {
3925 if ((rc
= tty_unregister_driver(serial_driver
)))
3926 printk("%s(%d) failed to unregister tty driver err=%d\n",
3927 __FILE__
,__LINE__
,rc
);
3928 put_tty_driver(serial_driver
);
3932 info
= synclinkmp_device_list
;
3935 info
= info
->next_device
;
3938 /* release devices */
3939 info
= synclinkmp_device_list
;
3941 #if SYNCLINK_GENERIC_HDLC
3944 free_dma_bufs(info
);
3945 free_tmp_rx_buf(info
);
3946 if ( info
->port_num
== 0 ) {
3948 write_reg(info
, LPR
, 1); /* set low power mode */
3949 release_resources(info
);
3952 info
= info
->next_device
;
3956 pci_unregister_driver(&synclinkmp_pci_driver
);
3959 /* Driver initialization entry point.
3962 static int __init
synclinkmp_init(void)
3966 if (break_on_load
) {
3967 synclinkmp_get_text_ptr();
3971 printk("%s %s\n", driver_name
, driver_version
);
3973 if ((rc
= pci_register_driver(&synclinkmp_pci_driver
)) < 0) {
3974 printk("%s:failed to register PCI driver, error=%d\n",__FILE__
,rc
);
3978 serial_driver
= alloc_tty_driver(128);
3979 if (!serial_driver
) {
3984 /* Initialize the tty_driver structure */
3986 serial_driver
->owner
= THIS_MODULE
;
3987 serial_driver
->driver_name
= "synclinkmp";
3988 serial_driver
->name
= "ttySLM";
3989 serial_driver
->major
= ttymajor
;
3990 serial_driver
->minor_start
= 64;
3991 serial_driver
->type
= TTY_DRIVER_TYPE_SERIAL
;
3992 serial_driver
->subtype
= SERIAL_TYPE_NORMAL
;
3993 serial_driver
->init_termios
= tty_std_termios
;
3994 serial_driver
->init_termios
.c_cflag
=
3995 B9600
| CS8
| CREAD
| HUPCL
| CLOCAL
;
3996 serial_driver
->init_termios
.c_ispeed
= 9600;
3997 serial_driver
->init_termios
.c_ospeed
= 9600;
3998 serial_driver
->flags
= TTY_DRIVER_REAL_RAW
;
3999 tty_set_operations(serial_driver
, &ops
);
4000 if ((rc
= tty_register_driver(serial_driver
)) < 0) {
4001 printk("%s(%d):Couldn't register serial driver\n",
4003 put_tty_driver(serial_driver
);
4004 serial_driver
= NULL
;
4008 printk("%s %s, tty major#%d\n",
4009 driver_name
, driver_version
,
4010 serial_driver
->major
);
4015 synclinkmp_cleanup();
4019 static void __exit
synclinkmp_exit(void)
4021 synclinkmp_cleanup();
4024 module_init(synclinkmp_init
);
4025 module_exit(synclinkmp_exit
);
4027 /* Set the port for internal loopback mode.
4028 * The TxCLK and RxCLK signals are generated from the BRG and
4029 * the TxD is looped back to the RxD internally.
4031 static void enable_loopback(SLMP_INFO
*info
, int enable
)
4034 /* MD2 (Mode Register 2)
4035 * 01..00 CNCT<1..0> Channel Connection 11=Local Loopback
4037 write_reg(info
, MD2
, (unsigned char)(read_reg(info
, MD2
) | (BIT1
+ BIT0
)));
4039 /* degate external TxC clock source */
4040 info
->port_array
[0]->ctrlreg_value
|= (BIT0
<< (info
->port_num
* 2));
4041 write_control_reg(info
);
4043 /* RXS/TXS (Rx/Tx clock source)
4044 * 07 Reserved, must be 0
4045 * 06..04 Clock Source, 100=BRG
4046 * 03..00 Clock Divisor, 0000=1
4048 write_reg(info
, RXS
, 0x40);
4049 write_reg(info
, TXS
, 0x40);
4052 /* MD2 (Mode Register 2)
4053 * 01..00 CNCT<1..0> Channel connection, 0=normal
4055 write_reg(info
, MD2
, (unsigned char)(read_reg(info
, MD2
) & ~(BIT1
+ BIT0
)));
4057 /* RXS/TXS (Rx/Tx clock source)
4058 * 07 Reserved, must be 0
4059 * 06..04 Clock Source, 000=RxC/TxC Pin
4060 * 03..00 Clock Divisor, 0000=1
4062 write_reg(info
, RXS
, 0x00);
4063 write_reg(info
, TXS
, 0x00);
4066 /* set LinkSpeed if available, otherwise default to 2Mbps */
4067 if (info
->params
.clock_speed
)
4068 set_rate(info
, info
->params
.clock_speed
);
4070 set_rate(info
, 3686400);
4073 /* Set the baud rate register to the desired speed
4075 * data_rate data rate of clock in bits per second
4076 * A data rate of 0 disables the AUX clock.
4078 static void set_rate( SLMP_INFO
*info
, u32 data_rate
)
4081 unsigned char BRValue
;
4084 /* fBRG = fCLK/(TMC * 2^BR)
4086 if (data_rate
!= 0) {
4087 Divisor
= 14745600/data_rate
;
4094 if (TMCValue
!= 1 && TMCValue
!= 2) {
4095 /* BRValue of 0 provides 50/50 duty cycle *only* when
4096 * TMCValue is 1 or 2. BRValue of 1 to 9 always provides
4103 /* while TMCValue is too big for TMC register, divide
4104 * by 2 and increment BR exponent.
4106 for(; TMCValue
> 256 && BRValue
< 10; BRValue
++)
4109 write_reg(info
, TXS
,
4110 (unsigned char)((read_reg(info
, TXS
) & 0xf0) | BRValue
));
4111 write_reg(info
, RXS
,
4112 (unsigned char)((read_reg(info
, RXS
) & 0xf0) | BRValue
));
4113 write_reg(info
, TMC
, (unsigned char)TMCValue
);
4116 write_reg(info
, TXS
,0);
4117 write_reg(info
, RXS
,0);
4118 write_reg(info
, TMC
, 0);
4124 static void rx_stop(SLMP_INFO
*info
)
4126 if (debug_level
>= DEBUG_LEVEL_ISR
)
4127 printk("%s(%d):%s rx_stop()\n",
4128 __FILE__
,__LINE__
, info
->device_name
);
4130 write_reg(info
, CMD
, RXRESET
);
4132 info
->ie0_value
&= ~RXRDYE
;
4133 write_reg(info
, IE0
, info
->ie0_value
); /* disable Rx data interrupts */
4135 write_reg(info
, RXDMA
+ DSR
, 0); /* disable Rx DMA */
4136 write_reg(info
, RXDMA
+ DCMD
, SWABORT
); /* reset/init Rx DMA */
4137 write_reg(info
, RXDMA
+ DIR, 0); /* disable Rx DMA interrupts */
4139 info
->rx_enabled
= false;
4140 info
->rx_overflow
= false;
4143 /* enable the receiver
4145 static void rx_start(SLMP_INFO
*info
)
4149 if (debug_level
>= DEBUG_LEVEL_ISR
)
4150 printk("%s(%d):%s rx_start()\n",
4151 __FILE__
,__LINE__
, info
->device_name
);
4153 write_reg(info
, CMD
, RXRESET
);
4155 if ( info
->params
.mode
== MGSL_MODE_HDLC
) {
4156 /* HDLC, disabe IRQ on rxdata */
4157 info
->ie0_value
&= ~RXRDYE
;
4158 write_reg(info
, IE0
, info
->ie0_value
);
4160 /* Reset all Rx DMA buffers and program rx dma */
4161 write_reg(info
, RXDMA
+ DSR
, 0); /* disable Rx DMA */
4162 write_reg(info
, RXDMA
+ DCMD
, SWABORT
); /* reset/init Rx DMA */
4164 for (i
= 0; i
< info
->rx_buf_count
; i
++) {
4165 info
->rx_buf_list
[i
].status
= 0xff;
4167 // throttle to 4 shared memory writes at a time to prevent
4168 // hogging local bus (keep latency time for DMA requests low).
4170 read_status_reg(info
);
4172 info
->current_rx_buf
= 0;
4174 /* set current/1st descriptor address */
4175 write_reg16(info
, RXDMA
+ CDA
,
4176 info
->rx_buf_list_ex
[0].phys_entry
);
4178 /* set new last rx descriptor address */
4179 write_reg16(info
, RXDMA
+ EDA
,
4180 info
->rx_buf_list_ex
[info
->rx_buf_count
- 1].phys_entry
);
4182 /* set buffer length (shared by all rx dma data buffers) */
4183 write_reg16(info
, RXDMA
+ BFL
, SCABUFSIZE
);
4185 write_reg(info
, RXDMA
+ DIR, 0x60); /* enable Rx DMA interrupts (EOM/BOF) */
4186 write_reg(info
, RXDMA
+ DSR
, 0xf2); /* clear Rx DMA IRQs, enable Rx DMA */
4188 /* async, enable IRQ on rxdata */
4189 info
->ie0_value
|= RXRDYE
;
4190 write_reg(info
, IE0
, info
->ie0_value
);
4193 write_reg(info
, CMD
, RXENABLE
);
4195 info
->rx_overflow
= false;
4196 info
->rx_enabled
= true;
4199 /* Enable the transmitter and send a transmit frame if
4200 * one is loaded in the DMA buffers.
4202 static void tx_start(SLMP_INFO
*info
)
4204 if (debug_level
>= DEBUG_LEVEL_ISR
)
4205 printk("%s(%d):%s tx_start() tx_count=%d\n",
4206 __FILE__
,__LINE__
, info
->device_name
,info
->tx_count
);
4208 if (!info
->tx_enabled
) {
4209 write_reg(info
, CMD
, TXRESET
);
4210 write_reg(info
, CMD
, TXENABLE
);
4211 info
->tx_enabled
= true;
4214 if ( info
->tx_count
) {
4216 /* If auto RTS enabled and RTS is inactive, then assert */
4217 /* RTS and set a flag indicating that the driver should */
4218 /* negate RTS when the transmission completes. */
4220 info
->drop_rts_on_tx_done
= false;
4222 if (info
->params
.mode
!= MGSL_MODE_ASYNC
) {
4224 if ( info
->params
.flags
& HDLC_FLAG_AUTO_RTS
) {
4225 get_signals( info
);
4226 if ( !(info
->serial_signals
& SerialSignal_RTS
) ) {
4227 info
->serial_signals
|= SerialSignal_RTS
;
4228 set_signals( info
);
4229 info
->drop_rts_on_tx_done
= true;
4233 write_reg16(info
, TRC0
,
4234 (unsigned short)(((tx_negate_fifo_level
-1)<<8) + tx_active_fifo_level
));
4236 write_reg(info
, TXDMA
+ DSR
, 0); /* disable DMA channel */
4237 write_reg(info
, TXDMA
+ DCMD
, SWABORT
); /* reset/init DMA channel */
4239 /* set TX CDA (current descriptor address) */
4240 write_reg16(info
, TXDMA
+ CDA
,
4241 info
->tx_buf_list_ex
[0].phys_entry
);
4243 /* set TX EDA (last descriptor address) */
4244 write_reg16(info
, TXDMA
+ EDA
,
4245 info
->tx_buf_list_ex
[info
->last_tx_buf
].phys_entry
);
4247 /* enable underrun IRQ */
4248 info
->ie1_value
&= ~IDLE
;
4249 info
->ie1_value
|= UDRN
;
4250 write_reg(info
, IE1
, info
->ie1_value
);
4251 write_reg(info
, SR1
, (unsigned char)(IDLE
+ UDRN
));
4253 write_reg(info
, TXDMA
+ DIR, 0x40); /* enable Tx DMA interrupts (EOM) */
4254 write_reg(info
, TXDMA
+ DSR
, 0xf2); /* clear Tx DMA IRQs, enable Tx DMA */
4256 mod_timer(&info
->tx_timer
, jiffies
+
4257 msecs_to_jiffies(5000));
4261 /* async, enable IRQ on txdata */
4262 info
->ie0_value
|= TXRDYE
;
4263 write_reg(info
, IE0
, info
->ie0_value
);
4266 info
->tx_active
= true;
4270 /* stop the transmitter and DMA
4272 static void tx_stop( SLMP_INFO
*info
)
4274 if (debug_level
>= DEBUG_LEVEL_ISR
)
4275 printk("%s(%d):%s tx_stop()\n",
4276 __FILE__
,__LINE__
, info
->device_name
);
4278 del_timer(&info
->tx_timer
);
4280 write_reg(info
, TXDMA
+ DSR
, 0); /* disable DMA channel */
4281 write_reg(info
, TXDMA
+ DCMD
, SWABORT
); /* reset/init DMA channel */
4283 write_reg(info
, CMD
, TXRESET
);
4285 info
->ie1_value
&= ~(UDRN
+ IDLE
);
4286 write_reg(info
, IE1
, info
->ie1_value
); /* disable tx status interrupts */
4287 write_reg(info
, SR1
, (unsigned char)(IDLE
+ UDRN
)); /* clear pending */
4289 info
->ie0_value
&= ~TXRDYE
;
4290 write_reg(info
, IE0
, info
->ie0_value
); /* disable tx data interrupts */
4292 info
->tx_enabled
= false;
4293 info
->tx_active
= false;
4296 /* Fill the transmit FIFO until the FIFO is full or
4297 * there is no more data to load.
4299 static void tx_load_fifo(SLMP_INFO
*info
)
4303 /* do nothing is now tx data available and no XON/XOFF pending */
4305 if ( !info
->tx_count
&& !info
->x_char
)
4308 /* load the Transmit FIFO until FIFOs full or all data sent */
4310 while( info
->tx_count
&& (read_reg(info
,SR0
) & BIT1
) ) {
4312 /* there is more space in the transmit FIFO and */
4313 /* there is more data in transmit buffer */
4315 if ( (info
->tx_count
> 1) && !info
->x_char
) {
4317 TwoBytes
[0] = info
->tx_buf
[info
->tx_get
++];
4318 if (info
->tx_get
>= info
->max_frame_size
)
4319 info
->tx_get
-= info
->max_frame_size
;
4320 TwoBytes
[1] = info
->tx_buf
[info
->tx_get
++];
4321 if (info
->tx_get
>= info
->max_frame_size
)
4322 info
->tx_get
-= info
->max_frame_size
;
4324 write_reg16(info
, TRB
, *((u16
*)TwoBytes
));
4326 info
->tx_count
-= 2;
4327 info
->icount
.tx
+= 2;
4329 /* only 1 byte left to transmit or 1 FIFO slot left */
4332 /* transmit pending high priority char */
4333 write_reg(info
, TRB
, info
->x_char
);
4336 write_reg(info
, TRB
, info
->tx_buf
[info
->tx_get
++]);
4337 if (info
->tx_get
>= info
->max_frame_size
)
4338 info
->tx_get
-= info
->max_frame_size
;
4346 /* Reset a port to a known state
4348 static void reset_port(SLMP_INFO
*info
)
4350 if (info
->sca_base
) {
4355 info
->serial_signals
&= ~(SerialSignal_DTR
+ SerialSignal_RTS
);
4358 /* disable all port interrupts */
4359 info
->ie0_value
= 0;
4360 info
->ie1_value
= 0;
4361 info
->ie2_value
= 0;
4362 write_reg(info
, IE0
, info
->ie0_value
);
4363 write_reg(info
, IE1
, info
->ie1_value
);
4364 write_reg(info
, IE2
, info
->ie2_value
);
4366 write_reg(info
, CMD
, CHRESET
);
4370 /* Reset all the ports to a known state.
4372 static void reset_adapter(SLMP_INFO
*info
)
4376 for ( i
=0; i
< SCA_MAX_PORTS
; ++i
) {
4377 if (info
->port_array
[i
])
4378 reset_port(info
->port_array
[i
]);
4382 /* Program port for asynchronous communications.
4384 static void async_mode(SLMP_INFO
*info
)
4387 unsigned char RegValue
;
4392 /* MD0, Mode Register 0
4394 * 07..05 PRCTL<2..0>, Protocol Mode, 000=async
4395 * 04 AUTO, Auto-enable (RTS/CTS/DCD)
4396 * 03 Reserved, must be 0
4397 * 02 CRCCC, CRC Calculation, 0=disabled
4398 * 01..00 STOP<1..0> Stop bits (00=1,10=2)
4403 if (info
->params
.stop_bits
!= 1)
4405 write_reg(info
, MD0
, RegValue
);
4407 /* MD1, Mode Register 1
4409 * 07..06 BRATE<1..0>, bit rate, 00=1/1 01=1/16 10=1/32 11=1/64
4410 * 05..04 TXCHR<1..0>, tx char size, 00=8 bits,01=7,10=6,11=5
4411 * 03..02 RXCHR<1..0>, rx char size
4412 * 01..00 PMPM<1..0>, Parity mode, 00=none 10=even 11=odd
4417 switch (info
->params
.data_bits
) {
4418 case 7: RegValue
|= BIT4
+ BIT2
; break;
4419 case 6: RegValue
|= BIT5
+ BIT3
; break;
4420 case 5: RegValue
|= BIT5
+ BIT4
+ BIT3
+ BIT2
; break;
4422 if (info
->params
.parity
!= ASYNC_PARITY_NONE
) {
4424 if (info
->params
.parity
== ASYNC_PARITY_ODD
)
4427 write_reg(info
, MD1
, RegValue
);
4429 /* MD2, Mode Register 2
4431 * 07..02 Reserved, must be 0
4432 * 01..00 CNCT<1..0> Channel connection, 00=normal 11=local loopback
4437 if (info
->params
.loopback
)
4438 RegValue
|= (BIT1
+ BIT0
);
4439 write_reg(info
, MD2
, RegValue
);
4441 /* RXS, Receive clock source
4443 * 07 Reserved, must be 0
4444 * 06..04 RXCS<2..0>, clock source, 000=RxC Pin, 100=BRG, 110=DPLL
4445 * 03..00 RXBR<3..0>, rate divisor, 0000=1
4448 write_reg(info
, RXS
, RegValue
);
4450 /* TXS, Transmit clock source
4452 * 07 Reserved, must be 0
4453 * 06..04 RXCS<2..0>, clock source, 000=TxC Pin, 100=BRG, 110=Receive Clock
4454 * 03..00 RXBR<3..0>, rate divisor, 0000=1
4457 write_reg(info
, TXS
, RegValue
);
4461 * 6,4,2,0 CLKSEL<3..0>, 0 = TcCLK in, 1 = Auxclk out
4463 info
->port_array
[0]->ctrlreg_value
|= (BIT0
<< (info
->port_num
* 2));
4464 write_control_reg(info
);
4468 /* RRC Receive Ready Control 0
4470 * 07..05 Reserved, must be 0
4471 * 04..00 RRC<4..0> Rx FIFO trigger active 0x00 = 1 byte
4473 write_reg(info
, RRC
, 0x00);
4475 /* TRC0 Transmit Ready Control 0
4477 * 07..05 Reserved, must be 0
4478 * 04..00 TRC<4..0> Tx FIFO trigger active 0x10 = 16 bytes
4480 write_reg(info
, TRC0
, 0x10);
4482 /* TRC1 Transmit Ready Control 1
4484 * 07..05 Reserved, must be 0
4485 * 04..00 TRC<4..0> Tx FIFO trigger inactive 0x1e = 31 bytes (full-1)
4487 write_reg(info
, TRC1
, 0x1e);
4489 /* CTL, MSCI control register
4491 * 07..06 Reserved, set to 0
4492 * 05 UDRNC, underrun control, 0=abort 1=CRC+flag (HDLC/BSC)
4493 * 04 IDLC, idle control, 0=mark 1=idle register
4494 * 03 BRK, break, 0=off 1 =on (async)
4495 * 02 SYNCLD, sync char load enable (BSC) 1=enabled
4496 * 01 GOP, go active on poll (LOOP mode) 1=enabled
4497 * 00 RTS, RTS output control, 0=active 1=inactive
4502 if (!(info
->serial_signals
& SerialSignal_RTS
))
4504 write_reg(info
, CTL
, RegValue
);
4506 /* enable status interrupts */
4507 info
->ie0_value
|= TXINTE
+ RXINTE
;
4508 write_reg(info
, IE0
, info
->ie0_value
);
4510 /* enable break detect interrupt */
4511 info
->ie1_value
= BRKD
;
4512 write_reg(info
, IE1
, info
->ie1_value
);
4514 /* enable rx overrun interrupt */
4515 info
->ie2_value
= OVRN
;
4516 write_reg(info
, IE2
, info
->ie2_value
);
4518 set_rate( info
, info
->params
.data_rate
* 16 );
4521 /* Program the SCA for HDLC communications.
4523 static void hdlc_mode(SLMP_INFO
*info
)
4525 unsigned char RegValue
;
4528 // Can't use DPLL because SCA outputs recovered clock on RxC when
4529 // DPLL mode selected. This causes output contention with RxC receiver.
4530 // Use of DPLL would require external hardware to disable RxC receiver
4531 // when DPLL mode selected.
4532 info
->params
.flags
&= ~(HDLC_FLAG_TXC_DPLL
+ HDLC_FLAG_RXC_DPLL
);
4534 /* disable DMA interrupts */
4535 write_reg(info
, TXDMA
+ DIR, 0);
4536 write_reg(info
, RXDMA
+ DIR, 0);
4538 /* MD0, Mode Register 0
4540 * 07..05 PRCTL<2..0>, Protocol Mode, 100=HDLC
4541 * 04 AUTO, Auto-enable (RTS/CTS/DCD)
4542 * 03 Reserved, must be 0
4543 * 02 CRCCC, CRC Calculation, 1=enabled
4544 * 01 CRC1, CRC selection, 0=CRC-16,1=CRC-CCITT-16
4545 * 00 CRC0, CRC initial value, 1 = all 1s
4550 if (info
->params
.flags
& HDLC_FLAG_AUTO_CTS
)
4552 if (info
->params
.flags
& HDLC_FLAG_AUTO_DCD
)
4554 if (info
->params
.crc_type
== HDLC_CRC_16_CCITT
)
4555 RegValue
|= BIT2
+ BIT1
;
4556 write_reg(info
, MD0
, RegValue
);
4558 /* MD1, Mode Register 1
4560 * 07..06 ADDRS<1..0>, Address detect, 00=no addr check
4561 * 05..04 TXCHR<1..0>, tx char size, 00=8 bits
4562 * 03..02 RXCHR<1..0>, rx char size, 00=8 bits
4563 * 01..00 PMPM<1..0>, Parity mode, 00=no parity
4568 write_reg(info
, MD1
, RegValue
);
4570 /* MD2, Mode Register 2
4572 * 07 NRZFM, 0=NRZ, 1=FM
4573 * 06..05 CODE<1..0> Encoding, 00=NRZ
4574 * 04..03 DRATE<1..0> DPLL Divisor, 00=8
4575 * 02 Reserved, must be 0
4576 * 01..00 CNCT<1..0> Channel connection, 0=normal
4581 switch(info
->params
.encoding
) {
4582 case HDLC_ENCODING_NRZI
: RegValue
|= BIT5
; break;
4583 case HDLC_ENCODING_BIPHASE_MARK
: RegValue
|= BIT7
+ BIT5
; break; /* aka FM1 */
4584 case HDLC_ENCODING_BIPHASE_SPACE
: RegValue
|= BIT7
+ BIT6
; break; /* aka FM0 */
4585 case HDLC_ENCODING_BIPHASE_LEVEL
: RegValue
|= BIT7
; break; /* aka Manchester */
4587 case HDLC_ENCODING_NRZB
: /* not supported */
4588 case HDLC_ENCODING_NRZI_MARK
: /* not supported */
4589 case HDLC_ENCODING_DIFF_BIPHASE_LEVEL
: /* not supported */
4592 if ( info
->params
.flags
& HDLC_FLAG_DPLL_DIV16
) {
4595 } else if ( info
->params
.flags
& HDLC_FLAG_DPLL_DIV8
) {
4601 write_reg(info
, MD2
, RegValue
);
4604 /* RXS, Receive clock source
4606 * 07 Reserved, must be 0
4607 * 06..04 RXCS<2..0>, clock source, 000=RxC Pin, 100=BRG, 110=DPLL
4608 * 03..00 RXBR<3..0>, rate divisor, 0000=1
4611 if (info
->params
.flags
& HDLC_FLAG_RXC_BRG
)
4613 if (info
->params
.flags
& HDLC_FLAG_RXC_DPLL
)
4614 RegValue
|= BIT6
+ BIT5
;
4615 write_reg(info
, RXS
, RegValue
);
4617 /* TXS, Transmit clock source
4619 * 07 Reserved, must be 0
4620 * 06..04 RXCS<2..0>, clock source, 000=TxC Pin, 100=BRG, 110=Receive Clock
4621 * 03..00 RXBR<3..0>, rate divisor, 0000=1
4624 if (info
->params
.flags
& HDLC_FLAG_TXC_BRG
)
4626 if (info
->params
.flags
& HDLC_FLAG_TXC_DPLL
)
4627 RegValue
|= BIT6
+ BIT5
;
4628 write_reg(info
, TXS
, RegValue
);
4630 if (info
->params
.flags
& HDLC_FLAG_RXC_DPLL
)
4631 set_rate(info
, info
->params
.clock_speed
* DpllDivisor
);
4633 set_rate(info
, info
->params
.clock_speed
);
4635 /* GPDATA (General Purpose I/O Data Register)
4637 * 6,4,2,0 CLKSEL<3..0>, 0 = TcCLK in, 1 = Auxclk out
4639 if (info
->params
.flags
& HDLC_FLAG_TXC_BRG
)
4640 info
->port_array
[0]->ctrlreg_value
|= (BIT0
<< (info
->port_num
* 2));
4642 info
->port_array
[0]->ctrlreg_value
&= ~(BIT0
<< (info
->port_num
* 2));
4643 write_control_reg(info
);
4645 /* RRC Receive Ready Control 0
4647 * 07..05 Reserved, must be 0
4648 * 04..00 RRC<4..0> Rx FIFO trigger active
4650 write_reg(info
, RRC
, rx_active_fifo_level
);
4652 /* TRC0 Transmit Ready Control 0
4654 * 07..05 Reserved, must be 0
4655 * 04..00 TRC<4..0> Tx FIFO trigger active
4657 write_reg(info
, TRC0
, tx_active_fifo_level
);
4659 /* TRC1 Transmit Ready Control 1
4661 * 07..05 Reserved, must be 0
4662 * 04..00 TRC<4..0> Tx FIFO trigger inactive 0x1f = 32 bytes (full)
4664 write_reg(info
, TRC1
, (unsigned char)(tx_negate_fifo_level
- 1));
4666 /* DMR, DMA Mode Register
4668 * 07..05 Reserved, must be 0
4669 * 04 TMOD, Transfer Mode: 1=chained-block
4670 * 03 Reserved, must be 0
4671 * 02 NF, Number of Frames: 1=multi-frame
4672 * 01 CNTE, Frame End IRQ Counter enable: 0=disabled
4673 * 00 Reserved, must be 0
4677 write_reg(info
, TXDMA
+ DMR
, 0x14);
4678 write_reg(info
, RXDMA
+ DMR
, 0x14);
4680 /* Set chain pointer base (upper 8 bits of 24 bit addr) */
4681 write_reg(info
, RXDMA
+ CPB
,
4682 (unsigned char)(info
->buffer_list_phys
>> 16));
4684 /* Set chain pointer base (upper 8 bits of 24 bit addr) */
4685 write_reg(info
, TXDMA
+ CPB
,
4686 (unsigned char)(info
->buffer_list_phys
>> 16));
4688 /* enable status interrupts. other code enables/disables
4689 * the individual sources for these two interrupt classes.
4691 info
->ie0_value
|= TXINTE
+ RXINTE
;
4692 write_reg(info
, IE0
, info
->ie0_value
);
4694 /* CTL, MSCI control register
4696 * 07..06 Reserved, set to 0
4697 * 05 UDRNC, underrun control, 0=abort 1=CRC+flag (HDLC/BSC)
4698 * 04 IDLC, idle control, 0=mark 1=idle register
4699 * 03 BRK, break, 0=off 1 =on (async)
4700 * 02 SYNCLD, sync char load enable (BSC) 1=enabled
4701 * 01 GOP, go active on poll (LOOP mode) 1=enabled
4702 * 00 RTS, RTS output control, 0=active 1=inactive
4707 if (!(info
->serial_signals
& SerialSignal_RTS
))
4709 write_reg(info
, CTL
, RegValue
);
4711 /* preamble not supported ! */
4717 set_rate(info
, info
->params
.clock_speed
);
4719 if (info
->params
.loopback
)
4720 enable_loopback(info
,1);
4723 /* Set the transmit HDLC idle mode
4725 static void tx_set_idle(SLMP_INFO
*info
)
4727 unsigned char RegValue
= 0xff;
4729 /* Map API idle mode to SCA register bits */
4730 switch(info
->idle_mode
) {
4731 case HDLC_TXIDLE_FLAGS
: RegValue
= 0x7e; break;
4732 case HDLC_TXIDLE_ALT_ZEROS_ONES
: RegValue
= 0xaa; break;
4733 case HDLC_TXIDLE_ZEROS
: RegValue
= 0x00; break;
4734 case HDLC_TXIDLE_ONES
: RegValue
= 0xff; break;
4735 case HDLC_TXIDLE_ALT_MARK_SPACE
: RegValue
= 0xaa; break;
4736 case HDLC_TXIDLE_SPACE
: RegValue
= 0x00; break;
4737 case HDLC_TXIDLE_MARK
: RegValue
= 0xff; break;
4740 write_reg(info
, IDL
, RegValue
);
4743 /* Query the adapter for the state of the V24 status (input) signals.
4745 static void get_signals(SLMP_INFO
*info
)
4747 u16 status
= read_reg(info
, SR3
);
4748 u16 gpstatus
= read_status_reg(info
);
4751 /* clear all serial signals except DTR and RTS */
4752 info
->serial_signals
&= SerialSignal_DTR
+ SerialSignal_RTS
;
4754 /* set serial signal bits to reflect MISR */
4756 if (!(status
& BIT3
))
4757 info
->serial_signals
|= SerialSignal_CTS
;
4759 if ( !(status
& BIT2
))
4760 info
->serial_signals
|= SerialSignal_DCD
;
4762 testbit
= BIT1
<< (info
->port_num
* 2); // Port 0..3 RI is GPDATA<1,3,5,7>
4763 if (!(gpstatus
& testbit
))
4764 info
->serial_signals
|= SerialSignal_RI
;
4766 testbit
= BIT0
<< (info
->port_num
* 2); // Port 0..3 DSR is GPDATA<0,2,4,6>
4767 if (!(gpstatus
& testbit
))
4768 info
->serial_signals
|= SerialSignal_DSR
;
4771 /* Set the state of DTR and RTS based on contents of
4772 * serial_signals member of device context.
4774 static void set_signals(SLMP_INFO
*info
)
4776 unsigned char RegValue
;
4779 RegValue
= read_reg(info
, CTL
);
4780 if (info
->serial_signals
& SerialSignal_RTS
)
4784 write_reg(info
, CTL
, RegValue
);
4786 // Port 0..3 DTR is ctrl reg <1,3,5,7>
4787 EnableBit
= BIT1
<< (info
->port_num
*2);
4788 if (info
->serial_signals
& SerialSignal_DTR
)
4789 info
->port_array
[0]->ctrlreg_value
&= ~EnableBit
;
4791 info
->port_array
[0]->ctrlreg_value
|= EnableBit
;
4792 write_control_reg(info
);
4795 /*******************/
4796 /* DMA Buffer Code */
4797 /*******************/
4799 /* Set the count for all receive buffers to SCABUFSIZE
4800 * and set the current buffer to the first buffer. This effectively
4801 * makes all buffers free and discards any data in buffers.
4803 static void rx_reset_buffers(SLMP_INFO
*info
)
4805 rx_free_frame_buffers(info
, 0, info
->rx_buf_count
- 1);
4808 /* Free the buffers used by a received frame
4810 * info pointer to device instance data
4811 * first index of 1st receive buffer of frame
4812 * last index of last receive buffer of frame
4814 static void rx_free_frame_buffers(SLMP_INFO
*info
, unsigned int first
, unsigned int last
)
4819 /* reset current buffer for reuse */
4820 info
->rx_buf_list
[first
].status
= 0xff;
4822 if (first
== last
) {
4824 /* set new last rx descriptor address */
4825 write_reg16(info
, RXDMA
+ EDA
, info
->rx_buf_list_ex
[first
].phys_entry
);
4829 if (first
== info
->rx_buf_count
)
4833 /* set current buffer to next buffer after last buffer of frame */
4834 info
->current_rx_buf
= first
;
4837 /* Return a received frame from the receive DMA buffers.
4838 * Only frames received without errors are returned.
4840 * Return Value: true if frame returned, otherwise false
4842 static bool rx_get_frame(SLMP_INFO
*info
)
4844 unsigned int StartIndex
, EndIndex
; /* index of 1st and last buffers of Rx frame */
4845 unsigned short status
;
4846 unsigned int framesize
= 0;
4847 bool ReturnCode
= false;
4848 unsigned long flags
;
4849 struct tty_struct
*tty
= info
->port
.tty
;
4850 unsigned char addr_field
= 0xff;
4852 SCADESC_EX
*desc_ex
;
4855 /* assume no frame returned, set zero length */
4860 * current_rx_buf points to the 1st buffer of the next available
4861 * receive frame. To find the last buffer of the frame look for
4862 * a non-zero status field in the buffer entries. (The status
4863 * field is set by the 16C32 after completing a receive frame.
4865 StartIndex
= EndIndex
= info
->current_rx_buf
;
4868 desc
= &info
->rx_buf_list
[EndIndex
];
4869 desc_ex
= &info
->rx_buf_list_ex
[EndIndex
];
4871 if (desc
->status
== 0xff)
4872 goto Cleanup
; /* current desc still in use, no frames available */
4874 if (framesize
== 0 && info
->params
.addr_filter
!= 0xff)
4875 addr_field
= desc_ex
->virt_addr
[0];
4877 framesize
+= desc
->length
;
4879 /* Status != 0 means last buffer of frame */
4884 if (EndIndex
== info
->rx_buf_count
)
4887 if (EndIndex
== info
->current_rx_buf
) {
4888 /* all buffers have been 'used' but none mark */
4889 /* the end of a frame. Reset buffers and receiver. */
4890 if ( info
->rx_enabled
){
4891 spin_lock_irqsave(&info
->lock
,flags
);
4893 spin_unlock_irqrestore(&info
->lock
,flags
);
4900 /* check status of receive frame */
4902 /* frame status is byte stored after frame data
4904 * 7 EOM (end of msg), 1 = last buffer of frame
4905 * 6 Short Frame, 1 = short frame
4906 * 5 Abort, 1 = frame aborted
4907 * 4 Residue, 1 = last byte is partial
4908 * 3 Overrun, 1 = overrun occurred during frame reception
4909 * 2 CRC, 1 = CRC error detected
4912 status
= desc
->status
;
4914 /* ignore CRC bit if not using CRC (bit is undefined) */
4915 /* Note:CRC is not save to data buffer */
4916 if (info
->params
.crc_type
== HDLC_CRC_NONE
)
4919 if (framesize
== 0 ||
4920 (addr_field
!= 0xff && addr_field
!= info
->params
.addr_filter
)) {
4921 /* discard 0 byte frames, this seems to occur sometime
4922 * when remote is idling flags.
4924 rx_free_frame_buffers(info
, StartIndex
, EndIndex
);
4931 if (status
& (BIT6
+BIT5
+BIT3
+BIT2
)) {
4932 /* received frame has errors,
4933 * update counts and mark frame size as 0
4936 info
->icount
.rxshort
++;
4937 else if (status
& BIT5
)
4938 info
->icount
.rxabort
++;
4939 else if (status
& BIT3
)
4940 info
->icount
.rxover
++;
4942 info
->icount
.rxcrc
++;
4945 #if SYNCLINK_GENERIC_HDLC
4947 info
->netdev
->stats
.rx_errors
++;
4948 info
->netdev
->stats
.rx_frame_errors
++;
4953 if ( debug_level
>= DEBUG_LEVEL_BH
)
4954 printk("%s(%d):%s rx_get_frame() status=%04X size=%d\n",
4955 __FILE__
,__LINE__
,info
->device_name
,status
,framesize
);
4957 if ( debug_level
>= DEBUG_LEVEL_DATA
)
4958 trace_block(info
,info
->rx_buf_list_ex
[StartIndex
].virt_addr
,
4959 min_t(int, framesize
,SCABUFSIZE
),0);
4962 if (framesize
> info
->max_frame_size
)
4963 info
->icount
.rxlong
++;
4965 /* copy dma buffer(s) to contiguous intermediate buffer */
4966 int copy_count
= framesize
;
4967 int index
= StartIndex
;
4968 unsigned char *ptmp
= info
->tmp_rx_buf
;
4969 info
->tmp_rx_buf_count
= framesize
;
4971 info
->icount
.rxok
++;
4974 int partial_count
= min(copy_count
,SCABUFSIZE
);
4976 info
->rx_buf_list_ex
[index
].virt_addr
,
4978 ptmp
+= partial_count
;
4979 copy_count
-= partial_count
;
4981 if ( ++index
== info
->rx_buf_count
)
4985 #if SYNCLINK_GENERIC_HDLC
4987 hdlcdev_rx(info
,info
->tmp_rx_buf
,framesize
);
4990 ldisc_receive_buf(tty
,info
->tmp_rx_buf
,
4991 info
->flag_buf
, framesize
);
4994 /* Free the buffers used by this frame. */
4995 rx_free_frame_buffers( info
, StartIndex
, EndIndex
);
5000 if ( info
->rx_enabled
&& info
->rx_overflow
) {
5001 /* Receiver is enabled, but needs to restarted due to
5002 * rx buffer overflow. If buffers are empty, restart receiver.
5004 if (info
->rx_buf_list
[EndIndex
].status
== 0xff) {
5005 spin_lock_irqsave(&info
->lock
,flags
);
5007 spin_unlock_irqrestore(&info
->lock
,flags
);
5014 /* load the transmit DMA buffer with data
5016 static void tx_load_dma_buffer(SLMP_INFO
*info
, const char *buf
, unsigned int count
)
5018 unsigned short copy_count
;
5021 SCADESC_EX
*desc_ex
;
5023 if ( debug_level
>= DEBUG_LEVEL_DATA
)
5024 trace_block(info
,buf
, min_t(int, count
,SCABUFSIZE
), 1);
5026 /* Copy source buffer to one or more DMA buffers, starting with
5027 * the first transmit dma buffer.
5031 copy_count
= min_t(unsigned short,count
,SCABUFSIZE
);
5033 desc
= &info
->tx_buf_list
[i
];
5034 desc_ex
= &info
->tx_buf_list_ex
[i
];
5036 load_pci_memory(info
, desc_ex
->virt_addr
,buf
,copy_count
);
5038 desc
->length
= copy_count
;
5042 count
-= copy_count
;
5048 if (i
>= info
->tx_buf_count
)
5052 info
->tx_buf_list
[i
].status
= 0x81; /* set EOM and EOT status */
5053 info
->last_tx_buf
= ++i
;
5056 static bool register_test(SLMP_INFO
*info
)
5058 static unsigned char testval
[] = {0x00, 0xff, 0xaa, 0x55, 0x69, 0x96};
5059 static unsigned int count
= ARRAY_SIZE(testval
);
5062 unsigned long flags
;
5064 spin_lock_irqsave(&info
->lock
,flags
);
5067 /* assume failure */
5068 info
->init_error
= DiagStatus_AddressFailure
;
5070 /* Write bit patterns to various registers but do it out of */
5071 /* sync, then read back and verify values. */
5073 for (i
= 0 ; i
< count
; i
++) {
5074 write_reg(info
, TMC
, testval
[i
]);
5075 write_reg(info
, IDL
, testval
[(i
+1)%count
]);
5076 write_reg(info
, SA0
, testval
[(i
+2)%count
]);
5077 write_reg(info
, SA1
, testval
[(i
+3)%count
]);
5079 if ( (read_reg(info
, TMC
) != testval
[i
]) ||
5080 (read_reg(info
, IDL
) != testval
[(i
+1)%count
]) ||
5081 (read_reg(info
, SA0
) != testval
[(i
+2)%count
]) ||
5082 (read_reg(info
, SA1
) != testval
[(i
+3)%count
]) )
5090 spin_unlock_irqrestore(&info
->lock
,flags
);
5095 static bool irq_test(SLMP_INFO
*info
)
5097 unsigned long timeout
;
5098 unsigned long flags
;
5100 unsigned char timer
= (info
->port_num
& 1) ? TIMER2
: TIMER0
;
5102 spin_lock_irqsave(&info
->lock
,flags
);
5105 /* assume failure */
5106 info
->init_error
= DiagStatus_IrqFailure
;
5107 info
->irq_occurred
= false;
5109 /* setup timer0 on SCA0 to interrupt */
5111 /* IER2<7..4> = timer<3..0> interrupt enables (1=enabled) */
5112 write_reg(info
, IER2
, (unsigned char)((info
->port_num
& 1) ? BIT6
: BIT4
));
5114 write_reg(info
, (unsigned char)(timer
+ TEPR
), 0); /* timer expand prescale */
5115 write_reg16(info
, (unsigned char)(timer
+ TCONR
), 1); /* timer constant */
5118 /* TMCS, Timer Control/Status Register
5120 * 07 CMF, Compare match flag (read only) 1=match
5121 * 06 ECMI, CMF Interrupt Enable: 1=enabled
5122 * 05 Reserved, must be 0
5123 * 04 TME, Timer Enable
5124 * 03..00 Reserved, must be 0
5128 write_reg(info
, (unsigned char)(timer
+ TMCS
), 0x50);
5130 spin_unlock_irqrestore(&info
->lock
,flags
);
5133 while( timeout
-- && !info
->irq_occurred
) {
5134 msleep_interruptible(10);
5137 spin_lock_irqsave(&info
->lock
,flags
);
5139 spin_unlock_irqrestore(&info
->lock
,flags
);
5141 return info
->irq_occurred
;
5144 /* initialize individual SCA device (2 ports)
5146 static bool sca_init(SLMP_INFO
*info
)
5148 /* set wait controller to single mem partition (low), no wait states */
5149 write_reg(info
, PABR0
, 0); /* wait controller addr boundary 0 */
5150 write_reg(info
, PABR1
, 0); /* wait controller addr boundary 1 */
5151 write_reg(info
, WCRL
, 0); /* wait controller low range */
5152 write_reg(info
, WCRM
, 0); /* wait controller mid range */
5153 write_reg(info
, WCRH
, 0); /* wait controller high range */
5155 /* DPCR, DMA Priority Control
5157 * 07..05 Not used, must be 0
5158 * 04 BRC, bus release condition: 0=all transfers complete
5159 * 03 CCC, channel change condition: 0=every cycle
5160 * 02..00 PR<2..0>, priority 100=round robin
5164 write_reg(info
, DPCR
, dma_priority
);
5166 /* DMA Master Enable, BIT7: 1=enable all channels */
5167 write_reg(info
, DMER
, 0x80);
5169 /* enable all interrupt classes */
5170 write_reg(info
, IER0
, 0xff); /* TxRDY,RxRDY,TxINT,RxINT (ports 0-1) */
5171 write_reg(info
, IER1
, 0xff); /* DMIB,DMIA (channels 0-3) */
5172 write_reg(info
, IER2
, 0xf0); /* TIRQ (timers 0-3) */
5174 /* ITCR, interrupt control register
5175 * 07 IPC, interrupt priority, 0=MSCI->DMA
5176 * 06..05 IAK<1..0>, Acknowledge cycle, 00=non-ack cycle
5177 * 04 VOS, Vector Output, 0=unmodified vector
5178 * 03..00 Reserved, must be 0
5180 write_reg(info
, ITCR
, 0);
5185 /* initialize adapter hardware
5187 static bool init_adapter(SLMP_INFO
*info
)
5191 /* Set BIT30 of Local Control Reg 0x50 to reset SCA */
5192 volatile u32
*MiscCtrl
= (u32
*)(info
->lcr_base
+ 0x50);
5195 info
->misc_ctrl_value
|= BIT30
;
5196 *MiscCtrl
= info
->misc_ctrl_value
;
5199 * Force at least 170ns delay before clearing
5200 * reset bit. Each read from LCR takes at least
5201 * 30ns so 10 times for 300ns to be safe.
5204 readval
= *MiscCtrl
;
5206 info
->misc_ctrl_value
&= ~BIT30
;
5207 *MiscCtrl
= info
->misc_ctrl_value
;
5209 /* init control reg (all DTRs off, all clksel=input) */
5210 info
->ctrlreg_value
= 0xaa;
5211 write_control_reg(info
);
5214 volatile u32
*LCR1BRDR
= (u32
*)(info
->lcr_base
+ 0x2c);
5215 lcr1_brdr_value
&= ~(BIT5
+ BIT4
+ BIT3
);
5217 switch(read_ahead_count
)
5220 lcr1_brdr_value
|= BIT5
+ BIT4
+ BIT3
;
5223 lcr1_brdr_value
|= BIT5
+ BIT4
;
5226 lcr1_brdr_value
|= BIT5
+ BIT3
;
5229 lcr1_brdr_value
|= BIT5
;
5233 *LCR1BRDR
= lcr1_brdr_value
;
5234 *MiscCtrl
= misc_ctrl_value
;
5237 sca_init(info
->port_array
[0]);
5238 sca_init(info
->port_array
[2]);
5243 /* Loopback an HDLC frame to test the hardware
5244 * interrupt and DMA functions.
5246 static bool loopback_test(SLMP_INFO
*info
)
5248 #define TESTFRAMESIZE 20
5250 unsigned long timeout
;
5251 u16 count
= TESTFRAMESIZE
;
5252 unsigned char buf
[TESTFRAMESIZE
];
5254 unsigned long flags
;
5256 struct tty_struct
*oldtty
= info
->port
.tty
;
5257 u32 speed
= info
->params
.clock_speed
;
5259 info
->params
.clock_speed
= 3686400;
5260 info
->port
.tty
= NULL
;
5262 /* assume failure */
5263 info
->init_error
= DiagStatus_DmaFailure
;
5265 /* build and send transmit frame */
5266 for (count
= 0; count
< TESTFRAMESIZE
;++count
)
5267 buf
[count
] = (unsigned char)count
;
5269 memset(info
->tmp_rx_buf
,0,TESTFRAMESIZE
);
5271 /* program hardware for HDLC and enabled receiver */
5272 spin_lock_irqsave(&info
->lock
,flags
);
5274 enable_loopback(info
,1);
5276 info
->tx_count
= count
;
5277 tx_load_dma_buffer(info
,buf
,count
);
5279 spin_unlock_irqrestore(&info
->lock
,flags
);
5281 /* wait for receive complete */
5282 /* Set a timeout for waiting for interrupt. */
5283 for ( timeout
= 100; timeout
; --timeout
) {
5284 msleep_interruptible(10);
5286 if (rx_get_frame(info
)) {
5292 /* verify received frame length and contents */
5294 ( info
->tmp_rx_buf_count
!= count
||
5295 memcmp(buf
, info
->tmp_rx_buf
,count
))) {
5299 spin_lock_irqsave(&info
->lock
,flags
);
5300 reset_adapter(info
);
5301 spin_unlock_irqrestore(&info
->lock
,flags
);
5303 info
->params
.clock_speed
= speed
;
5304 info
->port
.tty
= oldtty
;
5309 /* Perform diagnostics on hardware
5311 static int adapter_test( SLMP_INFO
*info
)
5313 unsigned long flags
;
5314 if ( debug_level
>= DEBUG_LEVEL_INFO
)
5315 printk( "%s(%d):Testing device %s\n",
5316 __FILE__
,__LINE__
,info
->device_name
);
5318 spin_lock_irqsave(&info
->lock
,flags
);
5320 spin_unlock_irqrestore(&info
->lock
,flags
);
5322 info
->port_array
[0]->port_count
= 0;
5324 if ( register_test(info
->port_array
[0]) &&
5325 register_test(info
->port_array
[1])) {
5327 info
->port_array
[0]->port_count
= 2;
5329 if ( register_test(info
->port_array
[2]) &&
5330 register_test(info
->port_array
[3]) )
5331 info
->port_array
[0]->port_count
+= 2;
5334 printk( "%s(%d):Register test failure for device %s Addr=%08lX\n",
5335 __FILE__
,__LINE__
,info
->device_name
, (unsigned long)(info
->phys_sca_base
));
5339 if ( !irq_test(info
->port_array
[0]) ||
5340 !irq_test(info
->port_array
[1]) ||
5341 (info
->port_count
== 4 && !irq_test(info
->port_array
[2])) ||
5342 (info
->port_count
== 4 && !irq_test(info
->port_array
[3]))) {
5343 printk( "%s(%d):Interrupt test failure for device %s IRQ=%d\n",
5344 __FILE__
,__LINE__
,info
->device_name
, (unsigned short)(info
->irq_level
) );
5348 if (!loopback_test(info
->port_array
[0]) ||
5349 !loopback_test(info
->port_array
[1]) ||
5350 (info
->port_count
== 4 && !loopback_test(info
->port_array
[2])) ||
5351 (info
->port_count
== 4 && !loopback_test(info
->port_array
[3]))) {
5352 printk( "%s(%d):DMA test failure for device %s\n",
5353 __FILE__
,__LINE__
,info
->device_name
);
5357 if ( debug_level
>= DEBUG_LEVEL_INFO
)
5358 printk( "%s(%d):device %s passed diagnostics\n",
5359 __FILE__
,__LINE__
,info
->device_name
);
5361 info
->port_array
[0]->init_error
= 0;
5362 info
->port_array
[1]->init_error
= 0;
5363 if ( info
->port_count
> 2 ) {
5364 info
->port_array
[2]->init_error
= 0;
5365 info
->port_array
[3]->init_error
= 0;
5371 /* Test the shared memory on a PCI adapter.
5373 static bool memory_test(SLMP_INFO
*info
)
5375 static unsigned long testval
[] = { 0x0, 0x55555555, 0xaaaaaaaa,
5376 0x66666666, 0x99999999, 0xffffffff, 0x12345678 };
5377 unsigned long count
= ARRAY_SIZE(testval
);
5379 unsigned long limit
= SCA_MEM_SIZE
/sizeof(unsigned long);
5380 unsigned long * addr
= (unsigned long *)info
->memory_base
;
5382 /* Test data lines with test pattern at one location. */
5384 for ( i
= 0 ; i
< count
; i
++ ) {
5386 if ( *addr
!= testval
[i
] )
5390 /* Test address lines with incrementing pattern over */
5391 /* entire address range. */
5393 for ( i
= 0 ; i
< limit
; i
++ ) {
5398 addr
= (unsigned long *)info
->memory_base
;
5400 for ( i
= 0 ; i
< limit
; i
++ ) {
5401 if ( *addr
!= i
* 4 )
5406 memset( info
->memory_base
, 0, SCA_MEM_SIZE
);
5410 /* Load data into PCI adapter shared memory.
5412 * The PCI9050 releases control of the local bus
5413 * after completing the current read or write operation.
5415 * While the PCI9050 write FIFO not empty, the
5416 * PCI9050 treats all of the writes as a single transaction
5417 * and does not release the bus. This causes DMA latency problems
5418 * at high speeds when copying large data blocks to the shared memory.
5420 * This function breaks a write into multiple transations by
5421 * interleaving a read which flushes the write FIFO and 'completes'
5422 * the write transation. This allows any pending DMA request to gain control
5423 * of the local bus in a timely fasion.
5425 static void load_pci_memory(SLMP_INFO
*info
, char* dest
, const char* src
, unsigned short count
)
5427 /* A load interval of 16 allows for 4 32-bit writes at */
5428 /* 136ns each for a maximum latency of 542ns on the local bus.*/
5430 unsigned short interval
= count
/ sca_pci_load_interval
;
5433 for ( i
= 0 ; i
< interval
; i
++ )
5435 memcpy(dest
, src
, sca_pci_load_interval
);
5436 read_status_reg(info
);
5437 dest
+= sca_pci_load_interval
;
5438 src
+= sca_pci_load_interval
;
5441 memcpy(dest
, src
, count
% sca_pci_load_interval
);
5444 static void trace_block(SLMP_INFO
*info
,const char* data
, int count
, int xmit
)
5449 printk("%s tx data:\n",info
->device_name
);
5451 printk("%s rx data:\n",info
->device_name
);
5459 for(i
=0;i
<linecount
;i
++)
5460 printk("%02X ",(unsigned char)data
[i
]);
5463 for(i
=0;i
<linecount
;i
++) {
5464 if (data
[i
]>=040 && data
[i
]<=0176)
5465 printk("%c",data
[i
]);
5474 } /* end of trace_block() */
5476 /* called when HDLC frame times out
5477 * update stats and do tx completion processing
5479 static void tx_timeout(unsigned long context
)
5481 SLMP_INFO
*info
= (SLMP_INFO
*)context
;
5482 unsigned long flags
;
5484 if ( debug_level
>= DEBUG_LEVEL_INFO
)
5485 printk( "%s(%d):%s tx_timeout()\n",
5486 __FILE__
,__LINE__
,info
->device_name
);
5487 if(info
->tx_active
&& info
->params
.mode
== MGSL_MODE_HDLC
) {
5488 info
->icount
.txtimeout
++;
5490 spin_lock_irqsave(&info
->lock
,flags
);
5491 info
->tx_active
= false;
5492 info
->tx_count
= info
->tx_put
= info
->tx_get
= 0;
5494 spin_unlock_irqrestore(&info
->lock
,flags
);
5496 #if SYNCLINK_GENERIC_HDLC
5498 hdlcdev_tx_done(info
);
5504 /* called to periodically check the DSR/RI modem signal input status
5506 static void status_timeout(unsigned long context
)
5509 SLMP_INFO
*info
= (SLMP_INFO
*)context
;
5510 unsigned long flags
;
5511 unsigned char delta
;
5514 spin_lock_irqsave(&info
->lock
,flags
);
5516 spin_unlock_irqrestore(&info
->lock
,flags
);
5518 /* check for DSR/RI state change */
5520 delta
= info
->old_signals
^ info
->serial_signals
;
5521 info
->old_signals
= info
->serial_signals
;
5523 if (delta
& SerialSignal_DSR
)
5524 status
|= MISCSTATUS_DSR_LATCHED
|(info
->serial_signals
&SerialSignal_DSR
);
5526 if (delta
& SerialSignal_RI
)
5527 status
|= MISCSTATUS_RI_LATCHED
|(info
->serial_signals
&SerialSignal_RI
);
5529 if (delta
& SerialSignal_DCD
)
5530 status
|= MISCSTATUS_DCD_LATCHED
|(info
->serial_signals
&SerialSignal_DCD
);
5532 if (delta
& SerialSignal_CTS
)
5533 status
|= MISCSTATUS_CTS_LATCHED
|(info
->serial_signals
&SerialSignal_CTS
);
5536 isr_io_pin(info
,status
);
5538 mod_timer(&info
->status_timer
, jiffies
+ msecs_to_jiffies(10));
5542 /* Register Access Routines -
5543 * All registers are memory mapped
5545 #define CALC_REGADDR() \
5546 unsigned char * RegAddr = (unsigned char*)(info->sca_base + Addr); \
5547 if (info->port_num > 1) \
5548 RegAddr += 256; /* port 0-1 SCA0, 2-3 SCA1 */ \
5549 if ( info->port_num & 1) { \
5551 RegAddr += 0x40; /* DMA access */ \
5552 else if (Addr > 0x1f && Addr < 0x60) \
5553 RegAddr += 0x20; /* MSCI access */ \
5557 static unsigned char read_reg(SLMP_INFO
* info
, unsigned char Addr
)
5562 static void write_reg(SLMP_INFO
* info
, unsigned char Addr
, unsigned char Value
)
5568 static u16
read_reg16(SLMP_INFO
* info
, unsigned char Addr
)
5571 return *((u16
*)RegAddr
);
5574 static void write_reg16(SLMP_INFO
* info
, unsigned char Addr
, u16 Value
)
5577 *((u16
*)RegAddr
) = Value
;
5580 static unsigned char read_status_reg(SLMP_INFO
* info
)
5582 unsigned char *RegAddr
= (unsigned char *)info
->statctrl_base
;
5586 static void write_control_reg(SLMP_INFO
* info
)
5588 unsigned char *RegAddr
= (unsigned char *)info
->statctrl_base
;
5589 *RegAddr
= info
->port_array
[0]->ctrlreg_value
;
5593 static int __devinit
synclinkmp_init_one (struct pci_dev
*dev
,
5594 const struct pci_device_id
*ent
)
5596 if (pci_enable_device(dev
)) {
5597 printk("error enabling pci device %p\n", dev
);
5600 device_init( ++synclinkmp_adapter_count
, dev
);
5604 static void __devexit
synclinkmp_remove_one (struct pci_dev
*dev
)