2 * Sonics Silicon Backplane
3 * PCMCIA-Hostbus related functions
5 * Copyright 2006 Johannes Berg <johannes@sipsolutions.net>
6 * Copyright 2007-2008 Michael Buesch <m@bues.ch>
8 * Licensed under the GNU/GPL. See COPYING for details.
11 #include <linux/ssb/ssb.h>
12 #include <linux/delay.h>
14 #include <linux/etherdevice.h>
16 #include <pcmcia/cistpl.h>
17 #include <pcmcia/ciscode.h>
18 #include <pcmcia/ds.h>
19 #include <pcmcia/cisreg.h>
21 #include "ssb_private.h"
24 /* Define the following to 1 to enable a printk on each coreswitch. */
25 #define SSB_VERBOSE_PCMCIACORESWITCH_DEBUG 0
28 /* PCMCIA configuration registers */
29 #define SSB_PCMCIA_ADDRESS0 0x2E
30 #define SSB_PCMCIA_ADDRESS1 0x30
31 #define SSB_PCMCIA_ADDRESS2 0x32
32 #define SSB_PCMCIA_MEMSEG 0x34
33 #define SSB_PCMCIA_SPROMCTL 0x36
34 #define SSB_PCMCIA_SPROMCTL_IDLE 0
35 #define SSB_PCMCIA_SPROMCTL_WRITE 1
36 #define SSB_PCMCIA_SPROMCTL_READ 2
37 #define SSB_PCMCIA_SPROMCTL_WRITEEN 4
38 #define SSB_PCMCIA_SPROMCTL_WRITEDIS 7
39 #define SSB_PCMCIA_SPROMCTL_DONE 8
40 #define SSB_PCMCIA_SPROM_DATALO 0x38
41 #define SSB_PCMCIA_SPROM_DATAHI 0x3A
42 #define SSB_PCMCIA_SPROM_ADDRLO 0x3C
43 #define SSB_PCMCIA_SPROM_ADDRHI 0x3E
45 /* Hardware invariants CIS tuples */
46 #define SSB_PCMCIA_CIS 0x80
47 #define SSB_PCMCIA_CIS_ID 0x01
48 #define SSB_PCMCIA_CIS_BOARDREV 0x02
49 #define SSB_PCMCIA_CIS_PA 0x03
50 #define SSB_PCMCIA_CIS_PA_PA0B0_LO 0
51 #define SSB_PCMCIA_CIS_PA_PA0B0_HI 1
52 #define SSB_PCMCIA_CIS_PA_PA0B1_LO 2
53 #define SSB_PCMCIA_CIS_PA_PA0B1_HI 3
54 #define SSB_PCMCIA_CIS_PA_PA0B2_LO 4
55 #define SSB_PCMCIA_CIS_PA_PA0B2_HI 5
56 #define SSB_PCMCIA_CIS_PA_ITSSI 6
57 #define SSB_PCMCIA_CIS_PA_MAXPOW 7
58 #define SSB_PCMCIA_CIS_OEMNAME 0x04
59 #define SSB_PCMCIA_CIS_CCODE 0x05
60 #define SSB_PCMCIA_CIS_ANTENNA 0x06
61 #define SSB_PCMCIA_CIS_ANTGAIN 0x07
62 #define SSB_PCMCIA_CIS_BFLAGS 0x08
63 #define SSB_PCMCIA_CIS_LEDS 0x09
65 /* PCMCIA SPROM size. */
66 #define SSB_PCMCIA_SPROM_SIZE 256
67 #define SSB_PCMCIA_SPROM_SIZE_BYTES (SSB_PCMCIA_SPROM_SIZE * sizeof(u16))
70 /* Write to a PCMCIA configuration register. */
71 static int ssb_pcmcia_cfg_write(struct ssb_bus
*bus
, u8 offset
, u8 value
)
75 res
= pcmcia_write_config_byte(bus
->host_pcmcia
, offset
, value
);
76 if (unlikely(res
!= 0))
82 /* Read from a PCMCIA configuration register. */
83 static int ssb_pcmcia_cfg_read(struct ssb_bus
*bus
, u8 offset
, u8
*value
)
87 res
= pcmcia_read_config_byte(bus
->host_pcmcia
, offset
, value
);
88 if (unlikely(res
!= 0))
94 int ssb_pcmcia_switch_coreidx(struct ssb_bus
*bus
,
104 addr
= (coreidx
* SSB_CORE_SIZE
) + SSB_ENUM_BASE
;
106 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_ADDRESS0
,
107 (addr
& 0x0000F000) >> 12);
110 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_ADDRESS1
,
111 (addr
& 0x00FF0000) >> 16);
114 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_ADDRESS2
,
115 (addr
& 0xFF000000) >> 24);
121 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_ADDRESS0
, &val
);
124 read_addr
|= ((u32
)(val
& 0x0F)) << 12;
125 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_ADDRESS1
, &val
);
128 read_addr
|= ((u32
)val
) << 16;
129 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_ADDRESS2
, &val
);
132 read_addr
|= ((u32
)val
) << 24;
134 cur_core
= (read_addr
- SSB_ENUM_BASE
) / SSB_CORE_SIZE
;
135 if (cur_core
== coreidx
)
139 if (attempts
++ > SSB_BAR0_MAX_RETRIES
)
146 ssb_printk(KERN_ERR PFX
"Failed to switch to core %u\n", coreidx
);
150 int ssb_pcmcia_switch_core(struct ssb_bus
*bus
,
151 struct ssb_device
*dev
)
155 #if SSB_VERBOSE_PCMCIACORESWITCH_DEBUG
156 ssb_printk(KERN_INFO PFX
157 "Switching to %s core, index %d\n",
158 ssb_core_name(dev
->id
.coreid
),
162 err
= ssb_pcmcia_switch_coreidx(bus
, dev
->core_index
);
164 bus
->mapped_device
= dev
;
169 int ssb_pcmcia_switch_segment(struct ssb_bus
*bus
, u8 seg
)
175 SSB_WARN_ON((seg
!= 0) && (seg
!= 1));
177 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_MEMSEG
, seg
);
180 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_MEMSEG
, &val
);
187 if (unlikely(attempts
++ > SSB_BAR0_MAX_RETRIES
))
191 bus
->mapped_pcmcia_seg
= seg
;
195 ssb_printk(KERN_ERR PFX
"Failed to switch pcmcia segment\n");
199 static int select_core_and_segment(struct ssb_device
*dev
,
202 struct ssb_bus
*bus
= dev
->bus
;
206 if (*offset
>= 0x800) {
212 if (unlikely(dev
!= bus
->mapped_device
)) {
213 err
= ssb_pcmcia_switch_core(bus
, dev
);
217 if (unlikely(need_segment
!= bus
->mapped_pcmcia_seg
)) {
218 err
= ssb_pcmcia_switch_segment(bus
, need_segment
);
226 static u8
ssb_pcmcia_read8(struct ssb_device
*dev
, u16 offset
)
228 struct ssb_bus
*bus
= dev
->bus
;
233 spin_lock_irqsave(&bus
->bar_lock
, flags
);
234 err
= select_core_and_segment(dev
, &offset
);
236 value
= readb(bus
->mmio
+ offset
);
237 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
242 static u16
ssb_pcmcia_read16(struct ssb_device
*dev
, u16 offset
)
244 struct ssb_bus
*bus
= dev
->bus
;
249 spin_lock_irqsave(&bus
->bar_lock
, flags
);
250 err
= select_core_and_segment(dev
, &offset
);
252 value
= readw(bus
->mmio
+ offset
);
253 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
258 static u32
ssb_pcmcia_read32(struct ssb_device
*dev
, u16 offset
)
260 struct ssb_bus
*bus
= dev
->bus
;
263 u32 lo
= 0xFFFFFFFF, hi
= 0xFFFFFFFF;
265 spin_lock_irqsave(&bus
->bar_lock
, flags
);
266 err
= select_core_and_segment(dev
, &offset
);
268 lo
= readw(bus
->mmio
+ offset
);
269 hi
= readw(bus
->mmio
+ offset
+ 2);
271 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
273 return (lo
| (hi
<< 16));
276 #ifdef CONFIG_SSB_BLOCKIO
277 static void ssb_pcmcia_block_read(struct ssb_device
*dev
, void *buffer
,
278 size_t count
, u16 offset
, u8 reg_width
)
280 struct ssb_bus
*bus
= dev
->bus
;
282 void __iomem
*addr
= bus
->mmio
+ offset
;
285 spin_lock_irqsave(&bus
->bar_lock
, flags
);
286 err
= select_core_and_segment(dev
, &offset
);
288 memset(buffer
, 0xFF, count
);
296 *buf
= __raw_readb(addr
);
303 __le16
*buf
= buffer
;
305 SSB_WARN_ON(count
& 1);
307 *buf
= (__force __le16
)__raw_readw(addr
);
314 __le16
*buf
= buffer
;
316 SSB_WARN_ON(count
& 3);
318 *buf
= (__force __le16
)__raw_readw(addr
);
320 *buf
= (__force __le16
)__raw_readw(addr
+ 2);
330 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
332 #endif /* CONFIG_SSB_BLOCKIO */
334 static void ssb_pcmcia_write8(struct ssb_device
*dev
, u16 offset
, u8 value
)
336 struct ssb_bus
*bus
= dev
->bus
;
340 spin_lock_irqsave(&bus
->bar_lock
, flags
);
341 err
= select_core_and_segment(dev
, &offset
);
343 writeb(value
, bus
->mmio
+ offset
);
345 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
348 static void ssb_pcmcia_write16(struct ssb_device
*dev
, u16 offset
, u16 value
)
350 struct ssb_bus
*bus
= dev
->bus
;
354 spin_lock_irqsave(&bus
->bar_lock
, flags
);
355 err
= select_core_and_segment(dev
, &offset
);
357 writew(value
, bus
->mmio
+ offset
);
359 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
362 static void ssb_pcmcia_write32(struct ssb_device
*dev
, u16 offset
, u32 value
)
364 struct ssb_bus
*bus
= dev
->bus
;
368 spin_lock_irqsave(&bus
->bar_lock
, flags
);
369 err
= select_core_and_segment(dev
, &offset
);
371 writew((value
& 0x0000FFFF), bus
->mmio
+ offset
);
372 writew(((value
& 0xFFFF0000) >> 16), bus
->mmio
+ offset
+ 2);
375 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
378 #ifdef CONFIG_SSB_BLOCKIO
379 static void ssb_pcmcia_block_write(struct ssb_device
*dev
, const void *buffer
,
380 size_t count
, u16 offset
, u8 reg_width
)
382 struct ssb_bus
*bus
= dev
->bus
;
384 void __iomem
*addr
= bus
->mmio
+ offset
;
387 spin_lock_irqsave(&bus
->bar_lock
, flags
);
388 err
= select_core_and_segment(dev
, &offset
);
393 const u8
*buf
= buffer
;
396 __raw_writeb(*buf
, addr
);
403 const __le16
*buf
= buffer
;
405 SSB_WARN_ON(count
& 1);
407 __raw_writew((__force u16
)(*buf
), addr
);
414 const __le16
*buf
= buffer
;
416 SSB_WARN_ON(count
& 3);
418 __raw_writew((__force u16
)(*buf
), addr
);
420 __raw_writew((__force u16
)(*buf
), addr
+ 2);
431 spin_unlock_irqrestore(&bus
->bar_lock
, flags
);
433 #endif /* CONFIG_SSB_BLOCKIO */
435 /* Not "static", as it's used in main.c */
436 const struct ssb_bus_ops ssb_pcmcia_ops
= {
437 .read8
= ssb_pcmcia_read8
,
438 .read16
= ssb_pcmcia_read16
,
439 .read32
= ssb_pcmcia_read32
,
440 .write8
= ssb_pcmcia_write8
,
441 .write16
= ssb_pcmcia_write16
,
442 .write32
= ssb_pcmcia_write32
,
443 #ifdef CONFIG_SSB_BLOCKIO
444 .block_read
= ssb_pcmcia_block_read
,
445 .block_write
= ssb_pcmcia_block_write
,
449 static int ssb_pcmcia_sprom_command(struct ssb_bus
*bus
, u8 command
)
455 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROMCTL
, command
);
458 for (i
= 0; i
< 1000; i
++) {
459 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_SPROMCTL
, &value
);
462 if (value
& SSB_PCMCIA_SPROMCTL_DONE
)
470 /* offset is the 16bit word offset */
471 static int ssb_pcmcia_sprom_read(struct ssb_bus
*bus
, u16 offset
, u16
*value
)
476 offset
*= 2; /* Make byte offset */
478 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROM_ADDRLO
,
482 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROM_ADDRHI
,
483 (offset
& 0xFF00) >> 8);
486 err
= ssb_pcmcia_sprom_command(bus
, SSB_PCMCIA_SPROMCTL_READ
);
489 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_SPROM_DATALO
, &lo
);
492 err
= ssb_pcmcia_cfg_read(bus
, SSB_PCMCIA_SPROM_DATAHI
, &hi
);
495 *value
= (lo
| (((u16
)hi
) << 8));
500 /* offset is the 16bit word offset */
501 static int ssb_pcmcia_sprom_write(struct ssb_bus
*bus
, u16 offset
, u16 value
)
505 offset
*= 2; /* Make byte offset */
507 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROM_ADDRLO
,
511 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROM_ADDRHI
,
512 (offset
& 0xFF00) >> 8);
515 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROM_DATALO
,
519 err
= ssb_pcmcia_cfg_write(bus
, SSB_PCMCIA_SPROM_DATAHI
,
520 (value
& 0xFF00) >> 8);
523 err
= ssb_pcmcia_sprom_command(bus
, SSB_PCMCIA_SPROMCTL_WRITE
);
531 /* Read the SPROM image. bufsize is in 16bit words. */
532 static int ssb_pcmcia_sprom_read_all(struct ssb_bus
*bus
, u16
*sprom
)
536 for (i
= 0; i
< SSB_PCMCIA_SPROM_SIZE
; i
++) {
537 err
= ssb_pcmcia_sprom_read(bus
, i
, &sprom
[i
]);
545 /* Write the SPROM image. size is in 16bit words. */
546 static int ssb_pcmcia_sprom_write_all(struct ssb_bus
*bus
, const u16
*sprom
)
550 size_t size
= SSB_PCMCIA_SPROM_SIZE
;
552 ssb_printk(KERN_NOTICE PFX
553 "Writing SPROM. Do NOT turn off the power! "
554 "Please stand by...\n");
555 err
= ssb_pcmcia_sprom_command(bus
, SSB_PCMCIA_SPROMCTL_WRITEEN
);
557 ssb_printk(KERN_NOTICE PFX
558 "Could not enable SPROM write access.\n");
561 ssb_printk(KERN_NOTICE PFX
"[ 0%%");
563 for (i
= 0; i
< size
; i
++) {
566 else if (i
== size
/ 2)
568 else if (i
== (size
* 3) / 4)
572 err
= ssb_pcmcia_sprom_write(bus
, i
, sprom
[i
]);
574 ssb_printk(KERN_NOTICE PFX
575 "Failed to write to SPROM.\n");
580 err
= ssb_pcmcia_sprom_command(bus
, SSB_PCMCIA_SPROMCTL_WRITEDIS
);
582 ssb_printk(KERN_NOTICE PFX
583 "Could not disable SPROM write access.\n");
588 ssb_printk("100%% ]\n");
589 ssb_printk(KERN_NOTICE PFX
"SPROM written.\n");
592 return failed
? -EBUSY
: 0;
595 static int ssb_pcmcia_sprom_check_crc(const u16
*sprom
, size_t size
)
601 #define GOTO_ERROR_ON(condition, description) do { \
602 if (unlikely(condition)) { \
603 error_description = description; \
608 static int ssb_pcmcia_get_mac(struct pcmcia_device
*p_dev
,
612 struct ssb_sprom
*sprom
= priv
;
614 if (tuple
->TupleData
[0] != CISTPL_FUNCE_LAN_NODE_ID
)
616 if (tuple
->TupleDataLen
!= ETH_ALEN
+ 2)
618 if (tuple
->TupleData
[1] != ETH_ALEN
)
620 memcpy(sprom
->il0mac
, &tuple
->TupleData
[2], ETH_ALEN
);
624 static int ssb_pcmcia_do_get_invariants(struct pcmcia_device
*p_dev
,
628 struct ssb_init_invariants
*iv
= priv
;
629 struct ssb_sprom
*sprom
= &iv
->sprom
;
630 struct ssb_boardinfo
*bi
= &iv
->boardinfo
;
631 const char *error_description
;
633 GOTO_ERROR_ON(tuple
->TupleDataLen
< 1, "VEN tpl < 1");
634 switch (tuple
->TupleData
[0]) {
635 case SSB_PCMCIA_CIS_ID
:
636 GOTO_ERROR_ON((tuple
->TupleDataLen
!= 5) &&
637 (tuple
->TupleDataLen
!= 7),
639 bi
->vendor
= tuple
->TupleData
[1] |
640 ((u16
)tuple
->TupleData
[2] << 8);
642 case SSB_PCMCIA_CIS_BOARDREV
:
643 GOTO_ERROR_ON(tuple
->TupleDataLen
!= 2,
644 "boardrev tpl size");
645 sprom
->board_rev
= tuple
->TupleData
[1];
647 case SSB_PCMCIA_CIS_PA
:
648 GOTO_ERROR_ON((tuple
->TupleDataLen
!= 9) &&
649 (tuple
->TupleDataLen
!= 10),
651 sprom
->pa0b0
= tuple
->TupleData
[1] |
652 ((u16
)tuple
->TupleData
[2] << 8);
653 sprom
->pa0b1
= tuple
->TupleData
[3] |
654 ((u16
)tuple
->TupleData
[4] << 8);
655 sprom
->pa0b2
= tuple
->TupleData
[5] |
656 ((u16
)tuple
->TupleData
[6] << 8);
657 sprom
->itssi_a
= tuple
->TupleData
[7];
658 sprom
->itssi_bg
= tuple
->TupleData
[7];
659 sprom
->maxpwr_a
= tuple
->TupleData
[8];
660 sprom
->maxpwr_bg
= tuple
->TupleData
[8];
662 case SSB_PCMCIA_CIS_OEMNAME
:
663 /* We ignore this. */
665 case SSB_PCMCIA_CIS_CCODE
:
666 GOTO_ERROR_ON(tuple
->TupleDataLen
!= 2,
668 sprom
->country_code
= tuple
->TupleData
[1];
670 case SSB_PCMCIA_CIS_ANTENNA
:
671 GOTO_ERROR_ON(tuple
->TupleDataLen
!= 2,
673 sprom
->ant_available_a
= tuple
->TupleData
[1];
674 sprom
->ant_available_bg
= tuple
->TupleData
[1];
676 case SSB_PCMCIA_CIS_ANTGAIN
:
677 GOTO_ERROR_ON(tuple
->TupleDataLen
!= 2,
679 sprom
->antenna_gain
.ghz24
.a0
= tuple
->TupleData
[1];
680 sprom
->antenna_gain
.ghz24
.a1
= tuple
->TupleData
[1];
681 sprom
->antenna_gain
.ghz24
.a2
= tuple
->TupleData
[1];
682 sprom
->antenna_gain
.ghz24
.a3
= tuple
->TupleData
[1];
683 sprom
->antenna_gain
.ghz5
.a0
= tuple
->TupleData
[1];
684 sprom
->antenna_gain
.ghz5
.a1
= tuple
->TupleData
[1];
685 sprom
->antenna_gain
.ghz5
.a2
= tuple
->TupleData
[1];
686 sprom
->antenna_gain
.ghz5
.a3
= tuple
->TupleData
[1];
688 case SSB_PCMCIA_CIS_BFLAGS
:
689 GOTO_ERROR_ON((tuple
->TupleDataLen
!= 3) &&
690 (tuple
->TupleDataLen
!= 5),
692 sprom
->boardflags_lo
= tuple
->TupleData
[1] |
693 ((u16
)tuple
->TupleData
[2] << 8);
695 case SSB_PCMCIA_CIS_LEDS
:
696 GOTO_ERROR_ON(tuple
->TupleDataLen
!= 5,
698 sprom
->gpio0
= tuple
->TupleData
[1];
699 sprom
->gpio1
= tuple
->TupleData
[2];
700 sprom
->gpio2
= tuple
->TupleData
[3];
701 sprom
->gpio3
= tuple
->TupleData
[4];
704 return -ENOSPC
; /* continue with next entry */
707 ssb_printk(KERN_ERR PFX
708 "PCMCIA: Failed to fetch device invariants: %s\n",
714 int ssb_pcmcia_get_invariants(struct ssb_bus
*bus
,
715 struct ssb_init_invariants
*iv
)
717 struct ssb_sprom
*sprom
= &iv
->sprom
;
720 memset(sprom
, 0xFF, sizeof(*sprom
));
722 sprom
->boardflags_lo
= 0;
723 sprom
->boardflags_hi
= 0;
725 /* First fetch the MAC address. */
726 res
= pcmcia_loop_tuple(bus
->host_pcmcia
, CISTPL_FUNCE
,
727 ssb_pcmcia_get_mac
, sprom
);
729 ssb_printk(KERN_ERR PFX
730 "PCMCIA: Failed to fetch MAC address\n");
734 /* Fetch the vendor specific tuples. */
735 res
= pcmcia_loop_tuple(bus
->host_pcmcia
, SSB_PCMCIA_CIS
,
736 ssb_pcmcia_do_get_invariants
, iv
);
737 if ((res
== 0) || (res
== -ENOSPC
))
740 ssb_printk(KERN_ERR PFX
741 "PCMCIA: Failed to fetch device invariants\n");
745 static ssize_t
ssb_pcmcia_attr_sprom_show(struct device
*pcmciadev
,
746 struct device_attribute
*attr
,
749 struct pcmcia_device
*pdev
=
750 container_of(pcmciadev
, struct pcmcia_device
, dev
);
753 bus
= ssb_pcmcia_dev_to_bus(pdev
);
757 return ssb_attr_sprom_show(bus
, buf
,
758 ssb_pcmcia_sprom_read_all
);
761 static ssize_t
ssb_pcmcia_attr_sprom_store(struct device
*pcmciadev
,
762 struct device_attribute
*attr
,
763 const char *buf
, size_t count
)
765 struct pcmcia_device
*pdev
=
766 container_of(pcmciadev
, struct pcmcia_device
, dev
);
769 bus
= ssb_pcmcia_dev_to_bus(pdev
);
773 return ssb_attr_sprom_store(bus
, buf
, count
,
774 ssb_pcmcia_sprom_check_crc
,
775 ssb_pcmcia_sprom_write_all
);
778 static DEVICE_ATTR(ssb_sprom
, 0600,
779 ssb_pcmcia_attr_sprom_show
,
780 ssb_pcmcia_attr_sprom_store
);
782 static int ssb_pcmcia_cor_setup(struct ssb_bus
*bus
, u8 cor
)
787 err
= ssb_pcmcia_cfg_read(bus
, cor
, &val
);
790 val
&= ~COR_SOFT_RESET
;
791 val
|= COR_FUNC_ENA
| COR_IREQ_ENA
| COR_LEVEL_REQ
;
792 err
= ssb_pcmcia_cfg_write(bus
, cor
, val
);
800 /* Initialize the PCMCIA hardware. This is called on Init and Resume. */
801 int ssb_pcmcia_hardware_setup(struct ssb_bus
*bus
)
805 if (bus
->bustype
!= SSB_BUSTYPE_PCMCIA
)
808 /* Switch segment to a known state and sync
809 * bus->mapped_pcmcia_seg with hardware state. */
810 ssb_pcmcia_switch_segment(bus
, 0);
811 /* Init the COR register. */
812 err
= ssb_pcmcia_cor_setup(bus
, CISREG_COR
);
815 /* Some cards also need this register to get poked. */
816 err
= ssb_pcmcia_cor_setup(bus
, CISREG_COR
+ 0x80);
823 void ssb_pcmcia_exit(struct ssb_bus
*bus
)
825 if (bus
->bustype
!= SSB_BUSTYPE_PCMCIA
)
828 device_remove_file(&bus
->host_pcmcia
->dev
, &dev_attr_ssb_sprom
);
831 int ssb_pcmcia_init(struct ssb_bus
*bus
)
835 if (bus
->bustype
!= SSB_BUSTYPE_PCMCIA
)
838 err
= ssb_pcmcia_hardware_setup(bus
);
842 bus
->sprom_size
= SSB_PCMCIA_SPROM_SIZE
;
843 mutex_init(&bus
->sprom_mutex
);
844 err
= device_create_file(&bus
->host_pcmcia
->dev
, &dev_attr_ssb_sprom
);
850 ssb_printk(KERN_ERR PFX
"Failed to initialize PCMCIA host device\n");