1 /*********************************************************************
3 * Filename: w83977af_ir.c
5 * Description: FIR driver for the Winbond W83977AF Super I/O chip
6 * Status: Experimental.
7 * Author: Paul VanderSpek
8 * Created at: Wed Nov 4 11:46:16 1998
9 * Modified at: Fri Jan 28 12:10:59 2000
10 * Modified by: Dag Brattli <dagb@cs.uit.no>
12 * Copyright (c) 1998-2000 Dag Brattli <dagb@cs.uit.no>
13 * Copyright (c) 1998-1999 Rebel.com
15 * This program is free software; you can redistribute it and/or
16 * modify it under the terms of the GNU General Public License as
17 * published by the Free Software Foundation; either version 2 of
18 * the License, or (at your option) any later version.
20 * Neither Paul VanderSpek nor Rebel.com admit liability nor provide
21 * warranty for any of this software. This material is provided "AS-IS"
24 * If you find bugs in this file, its very likely that the same bug
25 * will also be in pc87108.c since the implementations are quite
28 * Notice that all functions that needs to access the chip in _any_
29 * way, must save BSR register on entry, and restore it on exit.
30 * It is _very_ important to follow this policy!
34 * bank = inb( iobase+BSR);
36 * do_your_stuff_here();
38 * outb( bank, iobase+BSR);
40 ********************************************************************/
42 #include <linux/module.h>
43 #include <linux/kernel.h>
44 #include <linux/types.h>
45 #include <linux/skbuff.h>
46 #include <linux/netdevice.h>
47 #include <linux/ioport.h>
48 #include <linux/delay.h>
49 #include <linux/slab.h>
50 #include <linux/init.h>
51 #include <linux/rtnetlink.h>
52 #include <linux/dma-mapping.h>
56 #include <asm/byteorder.h>
58 #include <net/irda/irda.h>
59 #include <net/irda/wrapper.h>
60 #include <net/irda/irda_device.h>
62 #include "w83977af_ir.h"
64 #ifdef CONFIG_ARCH_NETWINDER /* Adjust to NetWinder differences */
65 #undef CONFIG_NETWINDER_TX_DMA_PROBLEMS /* Not needed */
66 #define CONFIG_NETWINDER_RX_DMA_PROBLEMS /* Must have this one! */
68 #undef CONFIG_USE_INTERNAL_TIMER /* Just cannot make that timer work */
69 #define CONFIG_USE_W977_PNP /* Currently needed */
70 #define PIO_MAX_SPEED 115200
72 static char *driver_name
= "w83977af_ir";
73 static int qos_mtt_bits
= 0x07; /* 1 ms or more */
75 #define CHIP_IO_EXTENT 8
77 static unsigned int io
[] = { 0x180, ~0, ~0, ~0 };
78 #ifdef CONFIG_ARCH_NETWINDER /* Adjust to NetWinder differences */
79 static unsigned int irq
[] = { 6, 0, 0, 0 };
81 static unsigned int irq
[] = { 11, 0, 0, 0 };
83 static unsigned int dma
[] = { 1, 0, 0, 0 };
84 static unsigned int efbase
[] = { W977_EFIO_BASE
, W977_EFIO2_BASE
};
85 static unsigned int efio
= W977_EFIO_BASE
;
87 static struct w83977af_ir
*dev_self
[] = { NULL
, NULL
, NULL
, NULL
};
90 static int w83977af_open(int i
, unsigned int iobase
, unsigned int irq
,
92 static int w83977af_close(struct w83977af_ir
*self
);
93 static int w83977af_probe(int iobase
, int irq
, int dma
);
94 static int w83977af_dma_receive(struct w83977af_ir
*self
);
95 static int w83977af_dma_receive_complete(struct w83977af_ir
*self
);
96 static int w83977af_hard_xmit(struct sk_buff
*skb
, struct net_device
*dev
);
97 static int w83977af_pio_write(int iobase
, __u8
*buf
, int len
, int fifo_size
);
98 static void w83977af_dma_write(struct w83977af_ir
*self
, int iobase
);
99 static void w83977af_change_speed(struct w83977af_ir
*self
, __u32 speed
);
100 static int w83977af_is_receiving(struct w83977af_ir
*self
);
102 static int w83977af_net_open(struct net_device
*dev
);
103 static int w83977af_net_close(struct net_device
*dev
);
104 static int w83977af_net_ioctl(struct net_device
*dev
, struct ifreq
*rq
, int cmd
);
105 static struct net_device_stats
*w83977af_net_get_stats(struct net_device
*dev
);
108 * Function w83977af_init ()
110 * Initialize chip. Just try to find out how many chips we are dealing with
113 static int __init
w83977af_init(void)
117 IRDA_DEBUG(0, "%s()\n", __FUNCTION__
);
119 for (i
=0; (io
[i
] < 2000) && (i
< ARRAY_SIZE(dev_self
)); i
++) {
120 if (w83977af_open(i
, io
[i
], irq
[i
], dma
[i
]) == 0)
127 * Function w83977af_cleanup ()
129 * Close all configured chips
132 static void __exit
w83977af_cleanup(void)
136 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
138 for (i
=0; i
< ARRAY_SIZE(dev_self
); i
++) {
140 w83977af_close(dev_self
[i
]);
145 * Function w83977af_open (iobase, irq)
147 * Open driver instance
150 int w83977af_open(int i
, unsigned int iobase
, unsigned int irq
,
153 struct net_device
*dev
;
154 struct w83977af_ir
*self
;
157 IRDA_DEBUG(0, "%s()\n", __FUNCTION__
);
159 /* Lock the port that we need */
160 if (!request_region(iobase
, CHIP_IO_EXTENT
, driver_name
)) {
161 IRDA_DEBUG(0, "%s(), can't get iobase of 0x%03x\n",
162 __FUNCTION__
, iobase
);
166 if (w83977af_probe(iobase
, irq
, dma
) == -1) {
171 * Allocate new instance of the driver
173 dev
= alloc_irdadev(sizeof(struct w83977af_ir
));
175 printk( KERN_ERR
"IrDA: Can't allocate memory for "
176 "IrDA control block!\n");
182 spin_lock_init(&self
->lock
);
186 self
->io
.fir_base
= iobase
;
188 self
->io
.fir_ext
= CHIP_IO_EXTENT
;
190 self
->io
.fifo_size
= 32;
192 /* Initialize QoS for this device */
193 irda_init_max_qos_capabilies(&self
->qos
);
195 /* The only value we must override it the baudrate */
197 /* FIXME: The HP HDLS-1100 does not support 1152000! */
198 self
->qos
.baud_rate
.bits
= IR_9600
|IR_19200
|IR_38400
|IR_57600
|
199 IR_115200
|IR_576000
|IR_1152000
|(IR_4000000
<< 8);
201 /* The HP HDLS-1100 needs 1 ms according to the specs */
202 self
->qos
.min_turn_time
.bits
= qos_mtt_bits
;
203 irda_qos_bits_to_value(&self
->qos
);
205 /* Max DMA buffer size needed = (data_size + 6) * (window_size) + 6; */
206 self
->rx_buff
.truesize
= 14384;
207 self
->tx_buff
.truesize
= 4000;
209 /* Allocate memory if needed */
211 dma_alloc_coherent(NULL
, self
->rx_buff
.truesize
,
212 &self
->rx_buff_dma
, GFP_KERNEL
);
213 if (self
->rx_buff
.head
== NULL
) {
218 memset(self
->rx_buff
.head
, 0, self
->rx_buff
.truesize
);
221 dma_alloc_coherent(NULL
, self
->tx_buff
.truesize
,
222 &self
->tx_buff_dma
, GFP_KERNEL
);
223 if (self
->tx_buff
.head
== NULL
) {
227 memset(self
->tx_buff
.head
, 0, self
->tx_buff
.truesize
);
229 self
->rx_buff
.in_frame
= FALSE
;
230 self
->rx_buff
.state
= OUTSIDE_FRAME
;
231 self
->tx_buff
.data
= self
->tx_buff
.head
;
232 self
->rx_buff
.data
= self
->rx_buff
.head
;
235 /* Override the network functions we need to use */
236 dev
->hard_start_xmit
= w83977af_hard_xmit
;
237 dev
->open
= w83977af_net_open
;
238 dev
->stop
= w83977af_net_close
;
239 dev
->do_ioctl
= w83977af_net_ioctl
;
240 dev
->get_stats
= w83977af_net_get_stats
;
242 err
= register_netdev(dev
);
244 IRDA_ERROR("%s(), register_netdevice() failed!\n", __FUNCTION__
);
247 IRDA_MESSAGE("IrDA: Registered device %s\n", dev
->name
);
249 /* Need to store self somewhere */
254 dma_free_coherent(NULL
, self
->tx_buff
.truesize
,
255 self
->tx_buff
.head
, self
->tx_buff_dma
);
257 dma_free_coherent(NULL
, self
->rx_buff
.truesize
,
258 self
->rx_buff
.head
, self
->rx_buff_dma
);
262 release_region(iobase
, CHIP_IO_EXTENT
);
267 * Function w83977af_close (self)
269 * Close driver instance
272 static int w83977af_close(struct w83977af_ir
*self
)
276 IRDA_DEBUG(0, "%s()\n", __FUNCTION__
);
278 iobase
= self
->io
.fir_base
;
280 #ifdef CONFIG_USE_W977_PNP
281 /* enter PnP configuration mode */
282 w977_efm_enter(efio
);
284 w977_select_device(W977_DEVICE_IR
, efio
);
286 /* Deactivate device */
287 w977_write_reg(0x30, 0x00, efio
);
290 #endif /* CONFIG_USE_W977_PNP */
292 /* Remove netdevice */
293 unregister_netdev(self
->netdev
);
295 /* Release the PORT that this driver is using */
296 IRDA_DEBUG(0 , "%s(), Releasing Region %03x\n",
297 __FUNCTION__
, self
->io
.fir_base
);
298 release_region(self
->io
.fir_base
, self
->io
.fir_ext
);
300 if (self
->tx_buff
.head
)
301 dma_free_coherent(NULL
, self
->tx_buff
.truesize
,
302 self
->tx_buff
.head
, self
->tx_buff_dma
);
304 if (self
->rx_buff
.head
)
305 dma_free_coherent(NULL
, self
->rx_buff
.truesize
,
306 self
->rx_buff
.head
, self
->rx_buff_dma
);
308 free_netdev(self
->netdev
);
313 int w83977af_probe( int iobase
, int irq
, int dma
)
318 for (i
=0; i
< 2; i
++) {
319 IRDA_DEBUG( 0, "%s()\n", __FUNCTION__
);
320 #ifdef CONFIG_USE_W977_PNP
321 /* Enter PnP configuration mode */
322 w977_efm_enter(efbase
[i
]);
324 w977_select_device(W977_DEVICE_IR
, efbase
[i
]);
326 /* Configure PnP port, IRQ, and DMA channel */
327 w977_write_reg(0x60, (iobase
>> 8) & 0xff, efbase
[i
]);
328 w977_write_reg(0x61, (iobase
) & 0xff, efbase
[i
]);
330 w977_write_reg(0x70, irq
, efbase
[i
]);
331 #ifdef CONFIG_ARCH_NETWINDER
332 /* Netwinder uses 1 higher than Linux */
333 w977_write_reg(0x74, dma
+1, efbase
[i
]);
335 w977_write_reg(0x74, dma
, efbase
[i
]);
336 #endif /*CONFIG_ARCH_NETWINDER */
337 w977_write_reg(0x75, 0x04, efbase
[i
]); /* Disable Tx DMA */
339 /* Set append hardware CRC, enable IR bank selection */
340 w977_write_reg(0xf0, APEDCRC
|ENBNKSEL
, efbase
[i
]);
342 /* Activate device */
343 w977_write_reg(0x30, 0x01, efbase
[i
]);
345 w977_efm_exit(efbase
[i
]);
346 #endif /* CONFIG_USE_W977_PNP */
347 /* Disable Advanced mode */
348 switch_bank(iobase
, SET2
);
349 outb(iobase
+2, 0x00);
351 /* Turn on UART (global) interrupts */
352 switch_bank(iobase
, SET0
);
353 outb(HCR_EN_IRQ
, iobase
+HCR
);
355 /* Switch to advanced mode */
356 switch_bank(iobase
, SET2
);
357 outb(inb(iobase
+ADCR1
) | ADCR1_ADV_SL
, iobase
+ADCR1
);
359 /* Set default IR-mode */
360 switch_bank(iobase
, SET0
);
361 outb(HCR_SIR
, iobase
+HCR
);
363 /* Read the Advanced IR ID */
364 switch_bank(iobase
, SET3
);
365 version
= inb(iobase
+AUID
);
368 if (0x10 == (version
& 0xf0)) {
371 /* Set FIFO size to 32 */
372 switch_bank(iobase
, SET2
);
373 outb(ADCR2_RXFS32
|ADCR2_TXFS32
, iobase
+ADCR2
);
375 /* Set FIFO threshold to TX17, RX16 */
376 switch_bank(iobase
, SET0
);
377 outb(UFR_RXTL
|UFR_TXTL
|UFR_TXF_RST
|UFR_RXF_RST
|
378 UFR_EN_FIFO
,iobase
+UFR
);
380 /* Receiver frame length */
381 switch_bank(iobase
, SET4
);
382 outb(2048 & 0xff, iobase
+6);
383 outb((2048 >> 8) & 0x1f, iobase
+7);
386 * Init HP HSDL-1100 transceiver.
388 * Set IRX_MSL since we have 2 * receive paths IRRX,
389 * and IRRXH. Clear IRSL0D since we want IRSL0 * to
390 * be a input pin used for IRRXH
392 * IRRX pin 37 connected to receiver
393 * IRTX pin 38 connected to transmitter
394 * FIRRX pin 39 connected to receiver (IRSL0)
395 * CIRRX pin 40 connected to pin 37
397 switch_bank(iobase
, SET7
);
398 outb(0x40, iobase
+7);
400 IRDA_MESSAGE("W83977AF (IR) driver loaded. "
401 "Version: 0x%02x\n", version
);
405 /* Try next extented function register address */
406 IRDA_DEBUG( 0, "%s(), Wrong chip version", __FUNCTION__
);
412 void w83977af_change_speed(struct w83977af_ir
*self
, __u32 speed
)
414 int ir_mode
= HCR_SIR
;
418 iobase
= self
->io
.fir_base
;
420 /* Update accounting for new speed */
421 self
->io
.speed
= speed
;
423 /* Save current bank */
424 set
= inb(iobase
+SSR
);
426 /* Disable interrupts */
427 switch_bank(iobase
, SET0
);
431 switch_bank(iobase
, SET2
);
432 outb(0x00, iobase
+ABHL
);
435 case 9600: outb(0x0c, iobase
+ABLL
); break;
436 case 19200: outb(0x06, iobase
+ABLL
); break;
437 case 38400: outb(0x03, iobase
+ABLL
); break;
438 case 57600: outb(0x02, iobase
+ABLL
); break;
439 case 115200: outb(0x01, iobase
+ABLL
); break;
441 ir_mode
= HCR_MIR_576
;
442 IRDA_DEBUG(0, "%s(), handling baud of 576000\n", __FUNCTION__
);
445 ir_mode
= HCR_MIR_1152
;
446 IRDA_DEBUG(0, "%s(), handling baud of 1152000\n", __FUNCTION__
);
450 IRDA_DEBUG(0, "%s(), handling baud of 4000000\n", __FUNCTION__
);
454 IRDA_DEBUG(0, "%s(), unknown baud rate of %d\n", __FUNCTION__
, speed
);
459 switch_bank(iobase
, SET0
);
460 outb(ir_mode
, iobase
+HCR
);
462 /* set FIFO size to 32 */
463 switch_bank(iobase
, SET2
);
464 outb(ADCR2_RXFS32
|ADCR2_TXFS32
, iobase
+ADCR2
);
466 /* set FIFO threshold to TX17, RX16 */
467 switch_bank(iobase
, SET0
);
468 outb(0x00, iobase
+UFR
); /* Reset */
469 outb(UFR_EN_FIFO
, iobase
+UFR
); /* First we must enable FIFO */
470 outb(0xa7, iobase
+UFR
);
472 netif_wake_queue(self
->netdev
);
474 /* Enable some interrupts so we can receive frames */
475 switch_bank(iobase
, SET0
);
476 if (speed
> PIO_MAX_SPEED
) {
477 outb(ICR_EFSFI
, iobase
+ICR
);
478 w83977af_dma_receive(self
);
480 outb(ICR_ERBRI
, iobase
+ICR
);
483 outb(set
, iobase
+SSR
);
487 * Function w83977af_hard_xmit (skb, dev)
489 * Sets up a DMA transfer to send the current frame.
492 int w83977af_hard_xmit(struct sk_buff
*skb
, struct net_device
*dev
)
494 struct w83977af_ir
*self
;
500 self
= (struct w83977af_ir
*) dev
->priv
;
502 iobase
= self
->io
.fir_base
;
504 IRDA_DEBUG(4, "%s(%ld), skb->len=%d\n", __FUNCTION__
, jiffies
,
507 /* Lock transmit buffer */
508 netif_stop_queue(dev
);
510 /* Check if we need to change the speed */
511 speed
= irda_get_next_speed(skb
);
512 if ((speed
!= self
->io
.speed
) && (speed
!= -1)) {
513 /* Check for empty frame */
515 w83977af_change_speed(self
, speed
);
516 dev
->trans_start
= jiffies
;
520 self
->new_speed
= speed
;
523 /* Save current set */
524 set
= inb(iobase
+SSR
);
526 /* Decide if we should use PIO or DMA transfer */
527 if (self
->io
.speed
> PIO_MAX_SPEED
) {
528 self
->tx_buff
.data
= self
->tx_buff
.head
;
529 skb_copy_from_linear_data(skb
, self
->tx_buff
.data
, skb
->len
);
530 self
->tx_buff
.len
= skb
->len
;
532 mtt
= irda_get_mtt(skb
);
533 #ifdef CONFIG_USE_INTERNAL_TIMER
535 /* Adjust for timer resolution */
539 switch_bank(iobase
, SET4
);
540 outb(mtt
& 0xff, iobase
+TMRL
);
541 outb((mtt
>> 8) & 0x0f, iobase
+TMRH
);
544 outb(IR_MSL_EN_TMR
, iobase
+IR_MSL
);
545 self
->io
.direction
= IO_XMIT
;
547 /* Enable timer interrupt */
548 switch_bank(iobase
, SET0
);
549 outb(ICR_ETMRI
, iobase
+ICR
);
552 IRDA_DEBUG(4, "%s(%ld), mtt=%d\n", __FUNCTION__
, jiffies
, mtt
);
556 /* Enable DMA interrupt */
557 switch_bank(iobase
, SET0
);
558 outb(ICR_EDMAI
, iobase
+ICR
);
559 w83977af_dma_write(self
, iobase
);
560 #ifdef CONFIG_USE_INTERNAL_TIMER
564 self
->tx_buff
.data
= self
->tx_buff
.head
;
565 self
->tx_buff
.len
= async_wrap_skb(skb
, self
->tx_buff
.data
,
566 self
->tx_buff
.truesize
);
568 /* Add interrupt on tx low level (will fire immediately) */
569 switch_bank(iobase
, SET0
);
570 outb(ICR_ETXTHI
, iobase
+ICR
);
572 dev
->trans_start
= jiffies
;
575 /* Restore set register */
576 outb(set
, iobase
+SSR
);
582 * Function w83977af_dma_write (self, iobase)
584 * Send frame using DMA
587 static void w83977af_dma_write(struct w83977af_ir
*self
, int iobase
)
590 #ifdef CONFIG_NETWINDER_TX_DMA_PROBLEMS
594 IRDA_DEBUG(4, "%s(), len=%d\n", __FUNCTION__
, self
->tx_buff
.len
);
596 /* Save current set */
597 set
= inb(iobase
+SSR
);
600 switch_bank(iobase
, SET0
);
601 outb(inb(iobase
+HCR
) & ~HCR_EN_DMA
, iobase
+HCR
);
603 /* Choose transmit DMA channel */
604 switch_bank(iobase
, SET2
);
605 outb(ADCR1_D_CHSW
|/*ADCR1_DMA_F|*/ADCR1_ADV_SL
, iobase
+ADCR1
);
606 #ifdef CONFIG_NETWINDER_TX_DMA_PROBLEMS
607 spin_lock_irqsave(&self
->lock
, flags
);
609 disable_dma(self
->io
.dma
);
610 clear_dma_ff(self
->io
.dma
);
611 set_dma_mode(self
->io
.dma
, DMA_MODE_READ
);
612 set_dma_addr(self
->io
.dma
, self
->tx_buff_dma
);
613 set_dma_count(self
->io
.dma
, self
->tx_buff
.len
);
615 irda_setup_dma(self
->io
.dma
, self
->tx_buff_dma
, self
->tx_buff
.len
,
618 self
->io
.direction
= IO_XMIT
;
621 switch_bank(iobase
, SET0
);
622 #ifdef CONFIG_NETWINDER_TX_DMA_PROBLEMS
623 hcr
= inb(iobase
+HCR
);
624 outb(hcr
| HCR_EN_DMA
, iobase
+HCR
);
625 enable_dma(self
->io
.dma
);
626 spin_unlock_irqrestore(&self
->lock
, flags
);
628 outb(inb(iobase
+HCR
) | HCR_EN_DMA
| HCR_TX_WT
, iobase
+HCR
);
631 /* Restore set register */
632 outb(set
, iobase
+SSR
);
636 * Function w83977af_pio_write (iobase, buf, len, fifo_size)
641 static int w83977af_pio_write(int iobase
, __u8
*buf
, int len
, int fifo_size
)
646 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
648 /* Save current bank */
649 set
= inb(iobase
+SSR
);
651 switch_bank(iobase
, SET0
);
652 if (!(inb_p(iobase
+USR
) & USR_TSRE
)) {
654 "%s(), warning, FIFO not empty yet!\n", __FUNCTION__
);
657 IRDA_DEBUG(4, "%s(), %d bytes left in tx fifo\n",
658 __FUNCTION__
, fifo_size
);
661 /* Fill FIFO with current frame */
662 while ((fifo_size
-- > 0) && (actual
< len
)) {
663 /* Transmit next byte */
664 outb(buf
[actual
++], iobase
+TBR
);
667 IRDA_DEBUG(4, "%s(), fifo_size %d ; %d sent of %d\n",
668 __FUNCTION__
, fifo_size
, actual
, len
);
671 outb(set
, iobase
+SSR
);
677 * Function w83977af_dma_xmit_complete (self)
679 * The transfer of a frame in finished. So do the necessary things
683 static void w83977af_dma_xmit_complete(struct w83977af_ir
*self
)
688 IRDA_DEBUG(4, "%s(%ld)\n", __FUNCTION__
, jiffies
);
690 IRDA_ASSERT(self
!= NULL
, return;);
692 iobase
= self
->io
.fir_base
;
694 /* Save current set */
695 set
= inb(iobase
+SSR
);
698 switch_bank(iobase
, SET0
);
699 outb(inb(iobase
+HCR
) & ~HCR_EN_DMA
, iobase
+HCR
);
701 /* Check for underrrun! */
702 if (inb(iobase
+AUDR
) & AUDR_UNDR
) {
703 IRDA_DEBUG(0, "%s(), Transmit underrun!\n", __FUNCTION__
);
705 self
->stats
.tx_errors
++;
706 self
->stats
.tx_fifo_errors
++;
708 /* Clear bit, by writing 1 to it */
709 outb(AUDR_UNDR
, iobase
+AUDR
);
711 self
->stats
.tx_packets
++;
714 if (self
->new_speed
) {
715 w83977af_change_speed(self
, self
->new_speed
);
719 /* Unlock tx_buff and request another frame */
720 /* Tell the network layer, that we want more frames */
721 netif_wake_queue(self
->netdev
);
724 outb(set
, iobase
+SSR
);
728 * Function w83977af_dma_receive (self)
730 * Get ready for receiving a frame. The device will initiate a DMA
731 * if it starts to receive a frame.
734 int w83977af_dma_receive(struct w83977af_ir
*self
)
738 #ifdef CONFIG_NETWINDER_RX_DMA_PROBLEMS
742 IRDA_ASSERT(self
!= NULL
, return -1;);
744 IRDA_DEBUG(4, "%s\n", __FUNCTION__
);
746 iobase
= self
->io
.fir_base
;
748 /* Save current set */
749 set
= inb(iobase
+SSR
);
752 switch_bank(iobase
, SET0
);
753 outb(inb(iobase
+HCR
) & ~HCR_EN_DMA
, iobase
+HCR
);
755 /* Choose DMA Rx, DMA Fairness, and Advanced mode */
756 switch_bank(iobase
, SET2
);
757 outb((inb(iobase
+ADCR1
) & ~ADCR1_D_CHSW
)/*|ADCR1_DMA_F*/|ADCR1_ADV_SL
,
760 self
->io
.direction
= IO_RECV
;
761 self
->rx_buff
.data
= self
->rx_buff
.head
;
763 #ifdef CONFIG_NETWINDER_RX_DMA_PROBLEMS
764 spin_lock_irqsave(&self
->lock
, flags
);
766 disable_dma(self
->io
.dma
);
767 clear_dma_ff(self
->io
.dma
);
768 set_dma_mode(self
->io
.dma
, DMA_MODE_READ
);
769 set_dma_addr(self
->io
.dma
, self
->rx_buff_dma
);
770 set_dma_count(self
->io
.dma
, self
->rx_buff
.truesize
);
772 irda_setup_dma(self
->io
.dma
, self
->rx_buff_dma
, self
->rx_buff
.truesize
,
776 * Reset Rx FIFO. This will also flush the ST_FIFO, it's very
777 * important that we don't reset the Tx FIFO since it might not
778 * be finished transmitting yet
780 switch_bank(iobase
, SET0
);
781 outb(UFR_RXTL
|UFR_TXTL
|UFR_RXF_RST
|UFR_EN_FIFO
, iobase
+UFR
);
782 self
->st_fifo
.len
= self
->st_fifo
.tail
= self
->st_fifo
.head
= 0;
785 switch_bank(iobase
, SET0
);
786 #ifdef CONFIG_NETWINDER_RX_DMA_PROBLEMS
787 hcr
= inb(iobase
+HCR
);
788 outb(hcr
| HCR_EN_DMA
, iobase
+HCR
);
789 enable_dma(self
->io
.dma
);
790 spin_unlock_irqrestore(&self
->lock
, flags
);
792 outb(inb(iobase
+HCR
) | HCR_EN_DMA
, iobase
+HCR
);
795 outb(set
, iobase
+SSR
);
801 * Function w83977af_receive_complete (self)
803 * Finished with receiving a frame
806 int w83977af_dma_receive_complete(struct w83977af_ir
*self
)
809 struct st_fifo
*st_fifo
;
815 IRDA_DEBUG(4, "%s\n", __FUNCTION__
);
817 st_fifo
= &self
->st_fifo
;
819 iobase
= self
->io
.fir_base
;
821 /* Save current set */
822 set
= inb(iobase
+SSR
);
824 iobase
= self
->io
.fir_base
;
826 /* Read status FIFO */
827 switch_bank(iobase
, SET5
);
828 while ((status
= inb(iobase
+FS_FO
)) & FS_FO_FSFDR
) {
829 st_fifo
->entries
[st_fifo
->tail
].status
= status
;
831 st_fifo
->entries
[st_fifo
->tail
].len
= inb(iobase
+RFLFL
);
832 st_fifo
->entries
[st_fifo
->tail
].len
|= inb(iobase
+RFLFH
) << 8;
838 while (st_fifo
->len
) {
839 /* Get first entry */
840 status
= st_fifo
->entries
[st_fifo
->head
].status
;
841 len
= st_fifo
->entries
[st_fifo
->head
].len
;
845 /* Check for errors */
846 if (status
& FS_FO_ERR_MSK
) {
847 if (status
& FS_FO_LST_FR
) {
848 /* Add number of lost frames to stats */
849 self
->stats
.rx_errors
+= len
;
852 self
->stats
.rx_errors
++;
854 self
->rx_buff
.data
+= len
;
856 if (status
& FS_FO_MX_LEX
)
857 self
->stats
.rx_length_errors
++;
859 if (status
& FS_FO_PHY_ERR
)
860 self
->stats
.rx_frame_errors
++;
862 if (status
& FS_FO_CRC_ERR
)
863 self
->stats
.rx_crc_errors
++;
865 /* The errors below can be reported in both cases */
866 if (status
& FS_FO_RX_OV
)
867 self
->stats
.rx_fifo_errors
++;
869 if (status
& FS_FO_FSF_OV
)
870 self
->stats
.rx_fifo_errors
++;
873 /* Check if we have transferred all data to memory */
874 switch_bank(iobase
, SET0
);
875 if (inb(iobase
+USR
) & USR_RDR
) {
876 #ifdef CONFIG_USE_INTERNAL_TIMER
877 /* Put this entry back in fifo */
880 st_fifo
->entries
[st_fifo
->head
].status
= status
;
881 st_fifo
->entries
[st_fifo
->head
].len
= len
;
883 /* Restore set register */
884 outb(set
, iobase
+SSR
);
886 return FALSE
; /* I'll be back! */
888 udelay(80); /* Should be enough!? */
892 skb
= dev_alloc_skb(len
+1);
895 "%s(), memory squeeze, dropping frame.\n", __FUNCTION__
);
896 /* Restore set register */
897 outb(set
, iobase
+SSR
);
902 /* Align to 20 bytes */
905 /* Copy frame without CRC */
906 if (self
->io
.speed
< 4000000) {
908 skb_copy_to_linear_data(skb
,
913 skb_copy_to_linear_data(skb
,
918 /* Move to next frame */
919 self
->rx_buff
.data
+= len
;
920 self
->stats
.rx_packets
++;
922 skb
->dev
= self
->netdev
;
923 skb_reset_mac_header(skb
);
924 skb
->protocol
= htons(ETH_P_IRDA
);
926 self
->netdev
->last_rx
= jiffies
;
929 /* Restore set register */
930 outb(set
, iobase
+SSR
);
936 * Function pc87108_pio_receive (self)
938 * Receive all data in receiver FIFO
941 static void w83977af_pio_receive(struct w83977af_ir
*self
)
946 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
948 IRDA_ASSERT(self
!= NULL
, return;);
950 iobase
= self
->io
.fir_base
;
952 /* Receive all characters in Rx FIFO */
954 byte
= inb(iobase
+RBR
);
955 async_unwrap_char(self
->netdev
, &self
->stats
, &self
->rx_buff
,
957 } while (inb(iobase
+USR
) & USR_RDR
); /* Data available */
961 * Function w83977af_sir_interrupt (self, eir)
963 * Handle SIR interrupt
966 static __u8
w83977af_sir_interrupt(struct w83977af_ir
*self
, int isr
)
973 IRDA_DEBUG(4, "%s(), isr=%#x\n", __FUNCTION__
, isr
);
975 iobase
= self
->io
.fir_base
;
976 /* Transmit FIFO low on data */
977 if (isr
& ISR_TXTH_I
) {
978 /* Write data left in transmit buffer */
979 actual
= w83977af_pio_write(self
->io
.fir_base
,
984 self
->tx_buff
.data
+= actual
;
985 self
->tx_buff
.len
-= actual
;
987 self
->io
.direction
= IO_XMIT
;
989 /* Check if finished */
990 if (self
->tx_buff
.len
> 0) {
991 new_icr
|= ICR_ETXTHI
;
993 set
= inb(iobase
+SSR
);
994 switch_bank(iobase
, SET0
);
995 outb(AUDR_SFEND
, iobase
+AUDR
);
996 outb(set
, iobase
+SSR
);
998 self
->stats
.tx_packets
++;
1000 /* Feed me more packets */
1001 netif_wake_queue(self
->netdev
);
1002 new_icr
|= ICR_ETBREI
;
1005 /* Check if transmission has completed */
1006 if (isr
& ISR_TXEMP_I
) {
1007 /* Check if we need to change the speed? */
1008 if (self
->new_speed
) {
1010 "%s(), Changing speed!\n", __FUNCTION__
);
1011 w83977af_change_speed(self
, self
->new_speed
);
1012 self
->new_speed
= 0;
1015 /* Turn around and get ready to receive some data */
1016 self
->io
.direction
= IO_RECV
;
1017 new_icr
|= ICR_ERBRI
;
1020 /* Rx FIFO threshold or timeout */
1021 if (isr
& ISR_RXTH_I
) {
1022 w83977af_pio_receive(self
);
1024 /* Keep receiving */
1025 new_icr
|= ICR_ERBRI
;
1031 * Function pc87108_fir_interrupt (self, eir)
1033 * Handle MIR/FIR interrupt
1036 static __u8
w83977af_fir_interrupt(struct w83977af_ir
*self
, int isr
)
1042 iobase
= self
->io
.fir_base
;
1043 set
= inb(iobase
+SSR
);
1045 /* End of frame detected in FIFO */
1046 if (isr
& (ISR_FEND_I
|ISR_FSF_I
)) {
1047 if (w83977af_dma_receive_complete(self
)) {
1049 /* Wait for next status FIFO interrupt */
1050 new_icr
|= ICR_EFSFI
;
1052 /* DMA not finished yet */
1054 /* Set timer value, resolution 1 ms */
1055 switch_bank(iobase
, SET4
);
1056 outb(0x01, iobase
+TMRL
); /* 1 ms */
1057 outb(0x00, iobase
+TMRH
);
1060 outb(IR_MSL_EN_TMR
, iobase
+IR_MSL
);
1062 new_icr
|= ICR_ETMRI
;
1065 /* Timer finished */
1066 if (isr
& ISR_TMR_I
) {
1068 switch_bank(iobase
, SET4
);
1069 outb(0, iobase
+IR_MSL
);
1071 /* Clear timer event */
1072 /* switch_bank(iobase, SET0); */
1073 /* outb(ASCR_CTE, iobase+ASCR); */
1075 /* Check if this is a TX timer interrupt */
1076 if (self
->io
.direction
== IO_XMIT
) {
1077 w83977af_dma_write(self
, iobase
);
1079 new_icr
|= ICR_EDMAI
;
1081 /* Check if DMA has now finished */
1082 w83977af_dma_receive_complete(self
);
1084 new_icr
|= ICR_EFSFI
;
1087 /* Finished with DMA */
1088 if (isr
& ISR_DMA_I
) {
1089 w83977af_dma_xmit_complete(self
);
1091 /* Check if there are more frames to be transmitted */
1092 /* if (irda_device_txqueue_empty(self)) { */
1094 /* Prepare for receive
1096 * ** Netwinder Tx DMA likes that we do this anyway **
1098 w83977af_dma_receive(self
);
1099 new_icr
= ICR_EFSFI
;
1104 outb(set
, iobase
+SSR
);
1110 * Function w83977af_interrupt (irq, dev_id, regs)
1112 * An interrupt from the chip has arrived. Time to do some work
1115 static irqreturn_t
w83977af_interrupt(int irq
, void *dev_id
)
1117 struct net_device
*dev
= dev_id
;
1118 struct w83977af_ir
*self
;
1124 iobase
= self
->io
.fir_base
;
1126 /* Save current bank */
1127 set
= inb(iobase
+SSR
);
1128 switch_bank(iobase
, SET0
);
1130 icr
= inb(iobase
+ICR
);
1131 isr
= inb(iobase
+ISR
) & icr
; /* Mask out the interesting ones */
1133 outb(0, iobase
+ICR
); /* Disable interrupts */
1136 /* Dispatch interrupt handler for the current speed */
1137 if (self
->io
.speed
> PIO_MAX_SPEED
)
1138 icr
= w83977af_fir_interrupt(self
, isr
);
1140 icr
= w83977af_sir_interrupt(self
, isr
);
1143 outb(icr
, iobase
+ICR
); /* Restore (new) interrupts */
1144 outb(set
, iobase
+SSR
); /* Restore bank register */
1145 return IRQ_RETVAL(isr
);
1149 * Function w83977af_is_receiving (self)
1151 * Return TRUE is we are currently receiving a frame
1154 static int w83977af_is_receiving(struct w83977af_ir
*self
)
1160 IRDA_ASSERT(self
!= NULL
, return FALSE
;);
1162 if (self
->io
.speed
> 115200) {
1163 iobase
= self
->io
.fir_base
;
1165 /* Check if rx FIFO is not empty */
1166 set
= inb(iobase
+SSR
);
1167 switch_bank(iobase
, SET2
);
1168 if ((inb(iobase
+RXFDTH
) & 0x3f) != 0) {
1169 /* We are receiving something */
1172 outb(set
, iobase
+SSR
);
1174 status
= (self
->rx_buff
.state
!= OUTSIDE_FRAME
);
1180 * Function w83977af_net_open (dev)
1185 static int w83977af_net_open(struct net_device
*dev
)
1187 struct w83977af_ir
*self
;
1192 IRDA_DEBUG(0, "%s()\n", __FUNCTION__
);
1194 IRDA_ASSERT(dev
!= NULL
, return -1;);
1195 self
= (struct w83977af_ir
*) dev
->priv
;
1197 IRDA_ASSERT(self
!= NULL
, return 0;);
1199 iobase
= self
->io
.fir_base
;
1201 if (request_irq(self
->io
.irq
, w83977af_interrupt
, 0, dev
->name
,
1206 * Always allocate the DMA channel after the IRQ,
1207 * and clean up on failure.
1209 if (request_dma(self
->io
.dma
, dev
->name
)) {
1210 free_irq(self
->io
.irq
, self
);
1214 /* Save current set */
1215 set
= inb(iobase
+SSR
);
1217 /* Enable some interrupts so we can receive frames again */
1218 switch_bank(iobase
, SET0
);
1219 if (self
->io
.speed
> 115200) {
1220 outb(ICR_EFSFI
, iobase
+ICR
);
1221 w83977af_dma_receive(self
);
1223 outb(ICR_ERBRI
, iobase
+ICR
);
1225 /* Restore bank register */
1226 outb(set
, iobase
+SSR
);
1228 /* Ready to play! */
1229 netif_start_queue(dev
);
1231 /* Give self a hardware name */
1232 sprintf(hwname
, "w83977af @ 0x%03x", self
->io
.fir_base
);
1235 * Open new IrLAP layer instance, now that everything should be
1236 * initialized properly
1238 self
->irlap
= irlap_open(dev
, &self
->qos
, hwname
);
1244 * Function w83977af_net_close (dev)
1249 static int w83977af_net_close(struct net_device
*dev
)
1251 struct w83977af_ir
*self
;
1255 IRDA_DEBUG(0, "%s()\n", __FUNCTION__
);
1257 IRDA_ASSERT(dev
!= NULL
, return -1;);
1259 self
= (struct w83977af_ir
*) dev
->priv
;
1261 IRDA_ASSERT(self
!= NULL
, return 0;);
1263 iobase
= self
->io
.fir_base
;
1266 netif_stop_queue(dev
);
1268 /* Stop and remove instance of IrLAP */
1270 irlap_close(self
->irlap
);
1273 disable_dma(self
->io
.dma
);
1275 /* Save current set */
1276 set
= inb(iobase
+SSR
);
1278 /* Disable interrupts */
1279 switch_bank(iobase
, SET0
);
1280 outb(0, iobase
+ICR
);
1282 free_irq(self
->io
.irq
, dev
);
1283 free_dma(self
->io
.dma
);
1285 /* Restore bank register */
1286 outb(set
, iobase
+SSR
);
1292 * Function w83977af_net_ioctl (dev, rq, cmd)
1294 * Process IOCTL commands for this device
1297 static int w83977af_net_ioctl(struct net_device
*dev
, struct ifreq
*rq
, int cmd
)
1299 struct if_irda_req
*irq
= (struct if_irda_req
*) rq
;
1300 struct w83977af_ir
*self
;
1301 unsigned long flags
;
1304 IRDA_ASSERT(dev
!= NULL
, return -1;);
1308 IRDA_ASSERT(self
!= NULL
, return -1;);
1310 IRDA_DEBUG(2, "%s(), %s, (cmd=0x%X)\n", __FUNCTION__
, dev
->name
, cmd
);
1312 spin_lock_irqsave(&self
->lock
, flags
);
1315 case SIOCSBANDWIDTH
: /* Set bandwidth */
1316 if (!capable(CAP_NET_ADMIN
)) {
1320 w83977af_change_speed(self
, irq
->ifr_baudrate
);
1322 case SIOCSMEDIABUSY
: /* Set media busy */
1323 if (!capable(CAP_NET_ADMIN
)) {
1327 irda_device_set_media_busy(self
->netdev
, TRUE
);
1329 case SIOCGRECEIVING
: /* Check if we are receiving right now */
1330 irq
->ifr_receiving
= w83977af_is_receiving(self
);
1336 spin_unlock_irqrestore(&self
->lock
, flags
);
1340 static struct net_device_stats
*w83977af_net_get_stats(struct net_device
*dev
)
1342 struct w83977af_ir
*self
= (struct w83977af_ir
*) dev
->priv
;
1344 return &self
->stats
;
1347 MODULE_AUTHOR("Dag Brattli <dagb@cs.uit.no>");
1348 MODULE_DESCRIPTION("Winbond W83977AF IrDA Device Driver");
1349 MODULE_LICENSE("GPL");
1352 module_param(qos_mtt_bits
, int, 0);
1353 MODULE_PARM_DESC(qos_mtt_bits
, "Mimimum Turn Time");
1354 module_param_array(io
, int, NULL
, 0);
1355 MODULE_PARM_DESC(io
, "Base I/O addresses");
1356 module_param_array(irq
, int, NULL
, 0);
1357 MODULE_PARM_DESC(irq
, "IRQ lines");
1360 * Function init_module (void)
1365 module_init(w83977af_init
);
1368 * Function cleanup_module (void)
1373 module_exit(w83977af_cleanup
);