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CommitLineData
1a8d4663
DB
1/*
2 * PCMCIA 16-bit resource management functions
3 *
4 * The initial developer of the original code is David A. Hinds
5 * <dahinds@users.sourceforge.net>. Portions created by David A. Hinds
6 * are Copyright (C) 1999 David A. Hinds. All Rights Reserved.
7 *
8 * Copyright (C) 1999 David A. Hinds
9485ee14 9 * Copyright (C) 2004-2010 Dominik Brodowski
1a8d4663
DB
10 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License version 2 as
13 * published by the Free Software Foundation.
14 *
15 */
16
1a8d4663
DB
17#include <linux/module.h>
18#include <linux/kernel.h>
19#include <linux/interrupt.h>
20#include <linux/delay.h>
21#include <linux/pci.h>
22#include <linux/device.h>
91284224 23#include <linux/netdevice.h>
5a0e3ad6 24#include <linux/slab.h>
1a8d4663 25
6f0f38c4
DB
26#include <asm/irq.h>
27
1a8d4663 28#include <pcmcia/ss.h>
1a8d4663
DB
29#include <pcmcia/cistpl.h>
30#include <pcmcia/cisreg.h>
31#include <pcmcia/ds.h>
32
33#include "cs_internal.h"
1a8d4663
DB
34
35
1a8d4663 36/* Access speed for IO windows */
9fea84f4 37static int io_speed;
1a8d4663
DB
38module_param(io_speed, int, 0444);
39
40
a3ac9af5
DB
41int pcmcia_validate_mem(struct pcmcia_socket *s)
42{
43 if (s->resource_ops->validate_mem)
44 return s->resource_ops->validate_mem(s);
45 /* if there is no callback, we can assume that everything is OK */
46 return 0;
47}
48
49struct resource *pcmcia_find_mem_region(u_long base, u_long num, u_long align,
50 int low, struct pcmcia_socket *s)
51{
52 if (s->resource_ops->find_mem)
53 return s->resource_ops->find_mem(base, num, align, low, s);
54 return NULL;
55}
56
1a8d4663 57
9485ee14
DB
58/**
59 * release_io_space() - release IO ports allocated with alloc_io_space()
60 * @s: pcmcia socket
61 * @res: resource to release
62 *
63 */
ad0c7be2
DB
64static void release_io_space(struct pcmcia_socket *s, struct resource *res)
65{
66 resource_size_t num = resource_size(res);
67 int i;
68
69 dev_dbg(&s->dev, "release_io_space for %pR\n", res);
70
71 for (i = 0; i < MAX_IO_WIN; i++) {
72 if (!s->io[i].res)
73 continue;
74 if ((s->io[i].res->start <= res->start) &&
75 (s->io[i].res->end >= res->end)) {
76 s->io[i].InUse -= num;
77 if (res->parent)
78 release_resource(res);
79 res->start = res->end = 0;
80 res->flags = IORESOURCE_IO;
81 /* Free the window if no one else is using it */
82 if (s->io[i].InUse == 0) {
83 release_resource(s->io[i].res);
84 kfree(s->io[i].res);
85 s->io[i].res = NULL;
86 }
87 }
88 }
9485ee14
DB
89}
90
ad0c7be2 91
9485ee14
DB
92/**
93 * alloc_io_space() - allocate IO ports for use by a PCMCIA device
94 * @s: pcmcia socket
95 * @res: resource to allocate (begin: begin, end: size)
96 * @lines: number of IO lines decoded by the PCMCIA card
1a8d4663
DB
97 *
98 * Special stuff for managing IO windows, because they are scarce
99 */
2ce4905e
DB
100static int alloc_io_space(struct pcmcia_socket *s, struct resource *res,
101 unsigned int lines)
1a8d4663 102{
b19a7275 103 unsigned int align;
2ce4905e
DB
104 unsigned int base = res->start;
105 unsigned int num = res->end;
106 int ret;
107
108 res->flags |= IORESOURCE_IO;
1a8d4663 109
90abdc3b
DB
110 dev_dbg(&s->dev, "alloc_io_space request for %pR, %d lines\n",
111 res, lines);
2ce4905e
DB
112
113 align = base ? (lines ? 1<<lines : 0) : 1;
1a8d4663 114 if (align && (align < num)) {
2ce4905e
DB
115 if (base) {
116 dev_dbg(&s->dev, "odd IO request\n");
1a8d4663
DB
117 align = 0;
118 } else
9fea84f4
DB
119 while (align && (align < num))
120 align <<= 1;
1a8d4663 121 }
2ce4905e
DB
122 if (base & ~(align-1)) {
123 dev_dbg(&s->dev, "odd IO request\n");
1a8d4663
DB
124 align = 0;
125 }
b19a7275 126
ad0c7be2
DB
127 ret = s->resource_ops->find_io(s, res->flags, &base, num, align,
128 &res->parent);
2ce4905e 129 if (ret) {
ad0c7be2 130 dev_dbg(&s->dev, "alloc_io_space request failed (%d)\n", ret);
2ce4905e
DB
131 return -EINVAL;
132 }
133
134 res->start = base;
135 res->end = res->start + num - 1;
1a8d4663 136
ad0c7be2
DB
137 if (res->parent) {
138 ret = request_resource(res->parent, res);
139 if (ret) {
140 dev_warn(&s->dev,
141 "request_resource %pR failed: %d\n", res, ret);
142 res->parent = NULL;
143 release_io_space(s, res);
1a8d4663
DB
144 }
145 }
ad0c7be2
DB
146 dev_dbg(&s->dev, "alloc_io_space request result %d: %pR\n", ret, res);
147 return ret;
9485ee14 148}
1a8d4663
DB
149
150
1d5cc192
DB
151/**
152 * pcmcia_access_config() - read or write card configuration registers
1a8d4663 153 *
1d5cc192
DB
154 * pcmcia_access_config() reads and writes configuration registers in
155 * attribute memory. Memory window 0 is reserved for this and the tuple
156 * reading services. Drivers must use pcmcia_read_config_byte() or
157 * pcmcia_write_config_byte().
1a8d4663 158 */
1d5cc192
DB
159static int pcmcia_access_config(struct pcmcia_device *p_dev,
160 off_t where, u8 *val,
161 int (*accessf) (struct pcmcia_socket *s,
162 int attr, unsigned int addr,
163 unsigned int len, void *ptr))
1a8d4663 164{
855cdf13 165 struct pcmcia_socket *s;
1a8d4663
DB
166 config_t *c;
167 int addr;
059f667d 168 int ret = 0;
1a8d4663 169
855cdf13 170 s = p_dev->socket;
94a819f8
DB
171
172 mutex_lock(&s->ops_mutex);
855cdf13 173 c = p_dev->function_config;
1a8d4663 174
6d9a299f 175 if (!(c->state & CONFIG_LOCKED)) {
eb838fe1 176 dev_dbg(&p_dev->dev, "Configuration isnt't locked\n");
94a819f8 177 mutex_unlock(&s->ops_mutex);
943f70f1 178 return -EACCES;
6d9a299f 179 }
1a8d4663 180
7feabb64 181 addr = (p_dev->config_base + where) >> 1;
1d5cc192
DB
182
183 ret = accessf(s, 1, addr, 1, val);
184
059f667d 185 mutex_unlock(&s->ops_mutex);
1d5cc192 186
059f667d 187 return ret;
9485ee14 188}
1d5cc192
DB
189
190
191/**
192 * pcmcia_read_config_byte() - read a byte from a card configuration register
193 *
194 * pcmcia_read_config_byte() reads a byte from a configuration register in
195 * attribute memory.
196 */
197int pcmcia_read_config_byte(struct pcmcia_device *p_dev, off_t where, u8 *val)
198{
199 return pcmcia_access_config(p_dev, where, val, pcmcia_read_cis_mem);
200}
201EXPORT_SYMBOL(pcmcia_read_config_byte);
202
203
204/**
205 * pcmcia_write_config_byte() - write a byte to a card configuration register
206 *
207 * pcmcia_write_config_byte() writes a byte to a configuration register in
208 * attribute memory.
209 */
210int pcmcia_write_config_byte(struct pcmcia_device *p_dev, off_t where, u8 val)
211{
212 return pcmcia_access_config(p_dev, where, &val, pcmcia_write_cis_mem);
213}
214EXPORT_SYMBOL(pcmcia_write_config_byte);
3448139b 215
1a8d4663 216
9485ee14
DB
217/**
218 * pcmcia_map_mem_page() - modify iomem window to point to a different offset
219 * @p_dev: pcmcia device
220 * @res: iomem resource already enabled by pcmcia_request_window()
221 * @offset: card_offset to map
222 *
223 * pcmcia_map_mem_page() modifies what can be read and written by accessing
224 * an iomem range previously enabled by pcmcia_request_window(), by setting
225 * the card_offset value to @offset.
226 */
cdb13808 227int pcmcia_map_mem_page(struct pcmcia_device *p_dev, struct resource *res,
b5cb259e 228 unsigned int offset)
1a8d4663 229{
0bdf9b3d 230 struct pcmcia_socket *s = p_dev->socket;
0ca724d3 231 unsigned int w;
6b8e087b 232 int ret;
868575d1 233
0ca724d3
DB
234 w = ((res->flags & IORESOURCE_BITS & WIN_FLAGS_REQ) >> 2) - 1;
235 if (w >= MAX_WIN)
ffb8da20 236 return -EINVAL;
b5cb259e 237
6b8e087b 238 mutex_lock(&s->ops_mutex);
0ca724d3
DB
239 s->win[w].card_start = offset;
240 ret = s->ops->set_mem_map(s, &s->win[w]);
6b8e087b 241 if (ret)
eb838fe1 242 dev_warn(&p_dev->dev, "failed to set_mem_map\n");
6b8e087b
DB
243 mutex_unlock(&s->ops_mutex);
244 return ret;
9485ee14 245}
1a8d4663
DB
246EXPORT_SYMBOL(pcmcia_map_mem_page);
247
248
fb49fa53
DB
249/**
250 * pcmcia_fixup_iowidth() - reduce io width to 8bit
9485ee14 251 * @p_dev: pcmcia device
1a8d4663 252 *
fb49fa53 253 * pcmcia_fixup_iowidth() allows a PCMCIA device driver to reduce the
1ac71e5a 254 * IO width to 8bit after having called pcmcia_enable_device()
fb49fa53 255 * previously.
1a8d4663 256 */
fb49fa53 257int pcmcia_fixup_iowidth(struct pcmcia_device *p_dev)
1a8d4663 258{
fb49fa53
DB
259 struct pcmcia_socket *s = p_dev->socket;
260 pccard_io_map io_off = { 0, 0, 0, 0, 1 };
261 pccard_io_map io_on;
262 int i, ret = 0;
94a819f8
DB
263
264 mutex_lock(&s->ops_mutex);
dbb22f0d 265
fb49fa53
DB
266 dev_dbg(&p_dev->dev, "fixup iowidth to 8bit\n");
267
268 if (!(s->state & SOCKET_PRESENT) ||
269 !(p_dev->function_config->state & CONFIG_LOCKED)) {
270 dev_dbg(&p_dev->dev, "No card? Config not locked?\n");
4e06e240
JS
271 ret = -EACCES;
272 goto unlock;
6d9a299f 273 }
1a8d4663 274
fb49fa53
DB
275 io_on.speed = io_speed;
276 for (i = 0; i < MAX_IO_WIN; i++) {
277 if (!s->io[i].res)
278 continue;
279 io_off.map = i;
280 io_on.map = i;
281
282 io_on.flags = MAP_ACTIVE | IO_DATA_PATH_WIDTH_8;
283 io_on.start = s->io[i].res->start;
284 io_on.stop = s->io[i].res->end;
285
286 s->ops->set_io_map(s, &io_off);
287 mdelay(40);
288 s->ops->set_io_map(s, &io_on);
d8b0a49d 289 }
fb49fa53
DB
290unlock:
291 mutex_unlock(&s->ops_mutex);
1a8d4663 292
fb49fa53
DB
293 return ret;
294}
295EXPORT_SYMBOL(pcmcia_fixup_iowidth);
296
297
298/**
299 * pcmcia_fixup_vpp() - set Vpp to a new voltage level
9485ee14
DB
300 * @p_dev: pcmcia device
301 * @new_vpp: new Vpp voltage
fb49fa53
DB
302 *
303 * pcmcia_fixup_vpp() allows a PCMCIA device driver to set Vpp to
1ac71e5a 304 * a new voltage level between calls to pcmcia_enable_device()
fb49fa53
DB
305 * and pcmcia_disable_device().
306 */
307int pcmcia_fixup_vpp(struct pcmcia_device *p_dev, unsigned char new_vpp)
308{
309 struct pcmcia_socket *s = p_dev->socket;
310 int ret = 0;
311
312 mutex_lock(&s->ops_mutex);
313
314 dev_dbg(&p_dev->dev, "fixup Vpp to %d\n", new_vpp);
315
316 if (!(s->state & SOCKET_PRESENT) ||
317 !(p_dev->function_config->state & CONFIG_LOCKED)) {
318 dev_dbg(&p_dev->dev, "No card? Config not locked?\n");
319 ret = -EACCES;
4e06e240 320 goto unlock;
d8b0a49d 321 }
1a8d4663 322
fb49fa53
DB
323 s->socket.Vpp = new_vpp;
324 if (s->ops->set_socket(s, &s->socket)) {
325 dev_warn(&p_dev->dev, "Unable to set VPP\n");
326 ret = -EIO;
327 goto unlock;
4bbed523 328 }
e8405f0f 329 p_dev->vpp = new_vpp;
fb49fa53 330
4e06e240 331unlock:
94a819f8 332 mutex_unlock(&s->ops_mutex);
4bbed523 333
4e06e240 334 return ret;
fb49fa53
DB
335}
336EXPORT_SYMBOL(pcmcia_fixup_vpp);
1a8d4663
DB
337
338
9485ee14
DB
339/**
340 * pcmcia_release_configuration() - physically disable a PCMCIA device
341 * @p_dev: pcmcia device
342 *
343 * pcmcia_release_configuration() is the 1:1 counterpart to
344 * pcmcia_enable_device(): If a PCMCIA device is no longer used by any
345 * driver, the Vpp voltage is set to 0, IRQs will no longer be generated,
346 * and I/O ranges will be disabled. As pcmcia_release_io() and
347 * pcmcia_release_window() still need to be called, device drivers are
348 * expected to call pcmcia_disable_device() instead.
349 */
2bc5a9bd 350int pcmcia_release_configuration(struct pcmcia_device *p_dev)
1a8d4663
DB
351{
352 pccard_io_map io = { 0, 0, 0, 0, 1 };
2bc5a9bd 353 struct pcmcia_socket *s = p_dev->socket;
94a819f8 354 config_t *c;
1a8d4663
DB
355 int i;
356
9e86749c 357 mutex_lock(&s->ops_mutex);
94a819f8 358 c = p_dev->function_config;
e2d40963
DB
359 if (p_dev->_locked) {
360 p_dev->_locked = 0;
1a8d4663 361 if (--(s->lock_count) == 0) {
9485ee14 362 s->socket.flags = SS_OUTPUT_ENA; /* Is this correct? */
1a8d4663
DB
363 s->socket.Vpp = 0;
364 s->socket.io_irq = 0;
365 s->ops->set_socket(s, &s->socket);
366 }
5f2a71fc
DB
367 }
368 if (c->state & CONFIG_LOCKED) {
369 c->state &= ~CONFIG_LOCKED;
1a8d4663
DB
370 if (c->state & CONFIG_IO_REQ)
371 for (i = 0; i < MAX_IO_WIN; i++) {
c7d00693 372 if (!s->io[i].res)
1a8d4663
DB
373 continue;
374 s->io[i].Config--;
375 if (s->io[i].Config != 0)
376 continue;
377 io.map = i;
378 s->ops->set_io_map(s, &io);
379 }
1a8d4663 380 }
9e86749c 381 mutex_unlock(&s->ops_mutex);
1a8d4663 382
4c89e88b 383 return 0;
9485ee14 384}
1a8d4663
DB
385
386
9485ee14
DB
387/**
388 * pcmcia_release_io() - release I/O allocated by a PCMCIA device
389 * @p_dev: pcmcia device
1a8d4663 390 *
9485ee14
DB
391 * pcmcia_release_io() releases the I/O ranges allocated by a PCMCIA
392 * device. This may be invoked some time after a card ejection has
393 * already dumped the actual socket configuration, so if the client is
394 * "stale", we don't bother checking the port ranges against the
395 * current socket values.
1a8d4663 396 */
2ce4905e 397static int pcmcia_release_io(struct pcmcia_device *p_dev)
1a8d4663 398{
2bc5a9bd 399 struct pcmcia_socket *s = p_dev->socket;
94a819f8
DB
400 int ret = -EINVAL;
401 config_t *c;
402
403 mutex_lock(&s->ops_mutex);
9fea84f4 404 if (!p_dev->_io)
94a819f8 405 goto out;
5f2a71fc 406
2ce4905e 407 c = p_dev->function_config;
1a8d4663 408
2ce4905e 409 release_io_space(s, &c->io[0]);
5f2a71fc 410
2ce4905e
DB
411 if (c->io[1].end)
412 release_io_space(s, &c->io[1]);
1a8d4663 413
2ce4905e
DB
414 p_dev->_io = 0;
415 c->state &= ~CONFIG_IO_REQ;
1a8d4663 416
94a819f8
DB
417out:
418 mutex_unlock(&s->ops_mutex);
419
420 return ret;
1a8d4663 421} /* pcmcia_release_io */
1a8d4663 422
9485ee14 423
cdb13808
DB
424/**
425 * pcmcia_release_window() - release reserved iomem for PCMCIA devices
9485ee14
DB
426 * @p_dev: pcmcia device
427 * @res: iomem resource to release
cdb13808 428 *
9485ee14 429 * pcmcia_release_window() releases &struct resource *res which was
cdb13808
DB
430 * previously reserved by calling pcmcia_request_window().
431 */
0ca724d3 432int pcmcia_release_window(struct pcmcia_device *p_dev, struct resource *res)
1a8d4663 433{
0bdf9b3d 434 struct pcmcia_socket *s = p_dev->socket;
82f88e36 435 pccard_mem_map *win;
0ca724d3 436 unsigned int w;
1a8d4663 437
0ca724d3
DB
438 dev_dbg(&p_dev->dev, "releasing window %pR\n", res);
439
440 w = ((res->flags & IORESOURCE_BITS & WIN_FLAGS_REQ) >> 2) - 1;
441 if (w >= MAX_WIN)
ffb8da20 442 return -EINVAL;
0bdf9b3d 443
6b8e087b 444 mutex_lock(&s->ops_mutex);
0ca724d3 445 win = &s->win[w];
0bdf9b3d 446
0ca724d3 447 if (!(p_dev->_win & CLIENT_WIN_REQ(w))) {
eb838fe1 448 dev_dbg(&p_dev->dev, "not releasing unknown window\n");
6b8e087b 449 mutex_unlock(&s->ops_mutex);
ffb8da20 450 return -EINVAL;
6d9a299f 451 }
1a8d4663
DB
452
453 /* Shut down memory window */
82f88e36
DB
454 win->flags &= ~MAP_ACTIVE;
455 s->ops->set_mem_map(s, win);
0ca724d3 456 s->state &= ~SOCKET_WIN_REQ(w);
1a8d4663
DB
457
458 /* Release system memory */
82f88e36 459 if (win->res) {
ad0c7be2 460 release_resource(res);
82f88e36
DB
461 release_resource(win->res);
462 kfree(win->res);
463 win->res = NULL;
1a8d4663 464 }
cdb13808
DB
465 res->start = res->end = 0;
466 res->flags = IORESOURCE_MEM;
0ca724d3 467 p_dev->_win &= ~CLIENT_WIN_REQ(w);
6b8e087b 468 mutex_unlock(&s->ops_mutex);
1a8d4663 469
4c89e88b 470 return 0;
1a8d4663
DB
471} /* pcmcia_release_window */
472EXPORT_SYMBOL(pcmcia_release_window);
473
9485ee14 474
1ac71e5a
DB
475/**
476 * pcmcia_enable_device() - set up and activate a PCMCIA device
9485ee14 477 * @p_dev: the associated PCMCIA device
1ac71e5a 478 *
9485ee14
DB
479 * pcmcia_enable_device() physically enables a PCMCIA device. It parses
480 * the flags passed to in @flags and stored in @p_dev->flags and sets up
481 * the Vpp voltage, enables the speaker line, I/O ports and store proper
482 * values to configuration registers.
1ac71e5a
DB
483 */
484int pcmcia_enable_device(struct pcmcia_device *p_dev)
1a8d4663
DB
485{
486 int i;
1ac71e5a 487 unsigned int base;
2bc5a9bd 488 struct pcmcia_socket *s = p_dev->socket;
1a8d4663
DB
489 config_t *c;
490 pccard_io_map iomap;
fc301101
DB
491 unsigned char status = 0;
492 unsigned char ext_status = 0;
7feabb64 493 unsigned char option = 0;
1ac71e5a 494 unsigned int flags = p_dev->config_flags;
1a8d4663 495
1a8d4663 496 if (!(s->state & SOCKET_PRESENT))
d598de02 497 return -ENODEV;
1a8d4663 498
94a819f8 499 mutex_lock(&s->ops_mutex);
dbb22f0d 500 c = p_dev->function_config;
6d9a299f 501 if (c->state & CONFIG_LOCKED) {
94a819f8 502 mutex_unlock(&s->ops_mutex);
eb838fe1 503 dev_dbg(&p_dev->dev, "Configuration is locked\n");
943f70f1 504 return -EACCES;
6d9a299f 505 }
1a8d4663
DB
506
507 /* Do power control. We don't allow changes in Vcc. */
e8405f0f 508 s->socket.Vpp = p_dev->vpp;
d8b0a49d 509 if (s->ops->set_socket(s, &s->socket)) {
9e86749c 510 mutex_unlock(&s->ops_mutex);
eb838fe1 511 dev_printk(KERN_WARNING, &p_dev->dev,
d8b0a49d
DB
512 "Unable to set socket state\n");
513 return -EINVAL;
514 }
1a8d4663 515
1a8d4663 516 /* Pick memory or I/O card, DMA mode, interrupt */
ff10fca5
DB
517 if (p_dev->_io || flags & CONF_ENABLE_IRQ)
518 flags |= CONF_ENABLE_IOCARD;
519 if (flags & CONF_ENABLE_IOCARD)
1a8d4663 520 s->socket.flags |= SS_IOCARD;
1ac71e5a 521 if (flags & CONF_ENABLE_SPKR) {
1a8d4663 522 s->socket.flags |= SS_SPKR_ENA;
fc301101 523 status = CCSR_AUDIO_ENA;
7feabb64 524 if (!(p_dev->config_regs & PRESENT_STATUS))
fc301101
DB
525 dev_warn(&p_dev->dev, "speaker requested, but "
526 "PRESENT_STATUS not set!\n");
527 }
1ac71e5a 528 if (flags & CONF_ENABLE_IRQ)
6f840afb 529 s->socket.io_irq = s->pcmcia_irq;
1a8d4663
DB
530 else
531 s->socket.io_irq = 0;
1ac71e5a 532 if (flags & CONF_ENABLE_ESR) {
7feabb64 533 p_dev->config_regs |= PRESENT_EXT_STATUS;
fc301101
DB
534 ext_status = ESR_REQ_ATTN_ENA;
535 }
1a8d4663
DB
536 s->ops->set_socket(s, &s->socket);
537 s->lock_count++;
538
1c4a77bf
DB
539 dev_dbg(&p_dev->dev,
540 "enable_device: V %d, flags %x, base %x, regs %x, idx %x\n",
541 p_dev->vpp, flags, p_dev->config_base, p_dev->config_regs,
542 p_dev->config_index);
543
1a8d4663 544 /* Set up CIS configuration registers */
7feabb64
DB
545 base = p_dev->config_base;
546 if (p_dev->config_regs & PRESENT_COPY) {
1a4a0460
DB
547 u16 tmp = 0;
548 dev_dbg(&p_dev->dev, "clearing CISREG_SCR\n");
549 pcmcia_write_cis_mem(s, 1, (base + CISREG_SCR)>>1, 1, &tmp);
550 }
7feabb64 551 if (p_dev->config_regs & PRESENT_PIN_REPLACE) {
1a4a0460
DB
552 u16 tmp = 0;
553 dev_dbg(&p_dev->dev, "clearing CISREG_PRR\n");
554 pcmcia_write_cis_mem(s, 1, (base + CISREG_PRR)>>1, 1, &tmp);
1a8d4663 555 }
7feabb64 556 if (p_dev->config_regs & PRESENT_OPTION) {
1a8d4663 557 if (s->functions == 1) {
7feabb64 558 option = p_dev->config_index & COR_CONFIG_MASK;
1a8d4663 559 } else {
7feabb64
DB
560 option = p_dev->config_index & COR_MFC_CONFIG_MASK;
561 option |= COR_FUNC_ENA|COR_IREQ_ENA;
562 if (p_dev->config_regs & PRESENT_IOBASE_0)
563 option |= COR_ADDR_DECODE;
1a8d4663 564 }
1ac71e5a
DB
565 if ((flags & CONF_ENABLE_IRQ) &&
566 !(flags & CONF_ENABLE_PULSE_IRQ))
7feabb64
DB
567 option |= COR_LEVEL_REQ;
568 pcmcia_write_cis_mem(s, 1, (base + CISREG_COR)>>1, 1, &option);
1a8d4663
DB
569 mdelay(40);
570 }
7feabb64 571 if (p_dev->config_regs & PRESENT_STATUS)
fc301101
DB
572 pcmcia_write_cis_mem(s, 1, (base + CISREG_CCSR)>>1, 1, &status);
573
7feabb64 574 if (p_dev->config_regs & PRESENT_EXT_STATUS)
fc301101
DB
575 pcmcia_write_cis_mem(s, 1, (base + CISREG_ESR)>>1, 1,
576 &ext_status);
577
7feabb64 578 if (p_dev->config_regs & PRESENT_IOBASE_0) {
2ce4905e 579 u8 b = c->io[0].start & 0xff;
1a8d4663 580 pcmcia_write_cis_mem(s, 1, (base + CISREG_IOBASE_0)>>1, 1, &b);
2ce4905e 581 b = (c->io[0].start >> 8) & 0xff;
1a8d4663
DB
582 pcmcia_write_cis_mem(s, 1, (base + CISREG_IOBASE_1)>>1, 1, &b);
583 }
7feabb64 584 if (p_dev->config_regs & PRESENT_IOSIZE) {
2ce4905e 585 u8 b = resource_size(&c->io[0]) + resource_size(&c->io[1]) - 1;
1a8d4663
DB
586 pcmcia_write_cis_mem(s, 1, (base + CISREG_IOSIZE)>>1, 1, &b);
587 }
588
589 /* Configure I/O windows */
590 if (c->state & CONFIG_IO_REQ) {
591 iomap.speed = io_speed;
592 for (i = 0; i < MAX_IO_WIN; i++)
c7d00693 593 if (s->io[i].res) {
1a8d4663
DB
594 iomap.map = i;
595 iomap.flags = MAP_ACTIVE;
c7d00693 596 switch (s->io[i].res->flags & IO_DATA_PATH_WIDTH) {
1a8d4663
DB
597 case IO_DATA_PATH_WIDTH_16:
598 iomap.flags |= MAP_16BIT; break;
599 case IO_DATA_PATH_WIDTH_AUTO:
600 iomap.flags |= MAP_AUTOSZ; break;
601 default:
602 break;
603 }
c7d00693
DB
604 iomap.start = s->io[i].res->start;
605 iomap.stop = s->io[i].res->end;
1a8d4663
DB
606 s->ops->set_io_map(s, &iomap);
607 s->io[i].Config++;
608 }
609 }
610
611 c->state |= CONFIG_LOCKED;
e2d40963 612 p_dev->_locked = 1;
059f667d 613 mutex_unlock(&s->ops_mutex);
4c89e88b 614 return 0;
1ac71e5a
DB
615} /* pcmcia_enable_device */
616EXPORT_SYMBOL(pcmcia_enable_device);
1a8d4663
DB
617
618
2ce4905e
DB
619/**
620 * pcmcia_request_io() - attempt to reserve port ranges for PCMCIA devices
9485ee14 621 * @p_dev: the associated PCMCIA device
2ce4905e 622 *
9485ee14 623 * pcmcia_request_io() attempts to reserve the IO port ranges specified in
90abdc3b 624 * &struct pcmcia_device @p_dev->resource[0] and @p_dev->resource[1]. The
2ce4905e 625 * "start" value is the requested start of the IO port resource; "end"
90abdc3b
DB
626 * reflects the number of ports requested. The number of IO lines requested
627 * is specified in &struct pcmcia_device @p_dev->io_lines.
1a8d4663 628 */
90abdc3b 629int pcmcia_request_io(struct pcmcia_device *p_dev)
1a8d4663 630{
2bc5a9bd 631 struct pcmcia_socket *s = p_dev->socket;
90abdc3b 632 config_t *c = p_dev->function_config;
94a819f8
DB
633 int ret = -EINVAL;
634
635 mutex_lock(&s->ops_mutex);
eb838fe1
DB
636 dev_dbg(&p_dev->dev, "pcmcia_request_io: %pR , %pR",
637 &c->io[0], &c->io[1]);
1a8d4663 638
6d9a299f 639 if (!(s->state & SOCKET_PRESENT)) {
eb838fe1 640 dev_dbg(&p_dev->dev, "pcmcia_request_io: No card present\n");
94a819f8 641 goto out;
6d9a299f 642 }
1a8d4663 643
6d9a299f 644 if (c->state & CONFIG_LOCKED) {
eb838fe1 645 dev_dbg(&p_dev->dev, "Configuration is locked\n");
94a819f8 646 goto out;
6d9a299f 647 }
f958095e 648 if (c->state & CONFIG_IO_REQ) {
eb838fe1 649 dev_dbg(&p_dev->dev, "IO already configured\n");
94a819f8 650 goto out;
f958095e 651 }
1a8d4663 652
90abdc3b 653 ret = alloc_io_space(s, &c->io[0], p_dev->io_lines);
2ce4905e 654 if (ret)
94a819f8 655 goto out;
1a8d4663 656
2ce4905e 657 if (c->io[1].end) {
90abdc3b 658 ret = alloc_io_space(s, &c->io[1], p_dev->io_lines);
94a819f8 659 if (ret) {
7cdffc86
DB
660 struct resource tmp = c->io[0];
661 /* release the previously allocated resource */
2ce4905e 662 release_io_space(s, &c->io[0]);
7cdffc86
DB
663 /* but preserve the settings, for they worked... */
664 c->io[0].end = resource_size(&tmp);
665 c->io[0].start = tmp.start;
666 c->io[0].flags = tmp.flags;
94a819f8 667 goto out;
1a8d4663 668 }
2ce4905e
DB
669 } else
670 c->io[1].start = 0;
1a8d4663 671
1a8d4663 672 c->state |= CONFIG_IO_REQ;
e2d40963 673 p_dev->_io = 1;
94a819f8 674
eb838fe1 675 dev_dbg(&p_dev->dev, "pcmcia_request_io succeeded: %pR , %pR",
2ce4905e 676 &c->io[0], &c->io[1]);
94a819f8
DB
677out:
678 mutex_unlock(&s->ops_mutex);
679
680 return ret;
1a8d4663
DB
681} /* pcmcia_request_io */
682EXPORT_SYMBOL(pcmcia_request_io);
683
684
eb14120f
DB
685/**
686 * pcmcia_request_irq() - attempt to request a IRQ for a PCMCIA device
9485ee14
DB
687 * @p_dev: the associated PCMCIA device
688 * @handler: IRQ handler to register
1a8d4663 689 *
9485ee14 690 * pcmcia_request_irq() is a wrapper around request_irq() which allows
eb14120f
DB
691 * the PCMCIA core to clean up the registration in pcmcia_disable_device().
692 * Drivers are free to use request_irq() directly, but then they need to
9485ee14 693 * call free_irq() themselfves, too. Also, only %IRQF_SHARED capable IRQ
eb14120f 694 * handlers are allowed.
1a8d4663 695 */
eb14120f
DB
696int __must_check pcmcia_request_irq(struct pcmcia_device *p_dev,
697 irq_handler_t handler)
1a8d4663 698{
eb14120f 699 int ret;
1a8d4663 700
eb14120f
DB
701 if (!p_dev->irq)
702 return -EINVAL;
94a819f8 703
eb14120f
DB
704 ret = request_irq(p_dev->irq, handler, IRQF_SHARED,
705 p_dev->devname, p_dev->priv);
706 if (!ret)
707 p_dev->_irq = 1;
1a8d4663 708
eb14120f
DB
709 return ret;
710}
711EXPORT_SYMBOL(pcmcia_request_irq);
6f0f38c4 712
1a8d4663 713
eb14120f
DB
714/**
715 * pcmcia_request_exclusive_irq() - attempt to request an exclusive IRQ first
9485ee14
DB
716 * @p_dev: the associated PCMCIA device
717 * @handler: IRQ handler to register
eb14120f 718 *
9485ee14 719 * pcmcia_request_exclusive_irq() is a wrapper around request_irq() which
eb14120f
DB
720 * attempts first to request an exclusive IRQ. If it fails, it also accepts
721 * a shared IRQ, but prints out a warning. PCMCIA drivers should allow for
722 * IRQ sharing and either use request_irq directly (then they need to call
9485ee14 723 * free_irq() themselves, too), or the pcmcia_request_irq() function.
eb14120f
DB
724 */
725int __must_check
b19a7275
DB
726__pcmcia_request_exclusive_irq(struct pcmcia_device *p_dev,
727 irq_handler_t handler)
eb14120f
DB
728{
729 int ret;
1a8d4663 730
eb14120f
DB
731 if (!p_dev->irq)
732 return -EINVAL;
1a8d4663 733
eb14120f
DB
734 ret = request_irq(p_dev->irq, handler, 0, p_dev->devname, p_dev->priv);
735 if (ret) {
736 ret = pcmcia_request_irq(p_dev, handler);
737 dev_printk(KERN_WARNING, &p_dev->dev, "pcmcia: "
738 "request for exclusive IRQ could not be fulfilled.\n");
739 dev_printk(KERN_WARNING, &p_dev->dev, "pcmcia: the driver "
740 "needs updating to supported shared IRQ lines.\n");
741 }
742 if (ret)
743 dev_printk(KERN_INFO, &p_dev->dev, "request_irq() failed\n");
744 else
745 p_dev->_irq = 1;
1a8d4663 746
94a819f8 747 return ret;
eb14120f 748} /* pcmcia_request_exclusive_irq */
b19a7275 749EXPORT_SYMBOL(__pcmcia_request_exclusive_irq);
1a8d4663
DB
750
751
6f0f38c4
DB
752#ifdef CONFIG_PCMCIA_PROBE
753
754/* mask of IRQs already reserved by other cards, we should avoid using them */
127c03cd 755static u8 pcmcia_used_irq[32];
6f0f38c4
DB
756
757static irqreturn_t test_action(int cpl, void *dev_id)
758{
759 return IRQ_NONE;
760}
761
762/**
763 * pcmcia_setup_isa_irq() - determine whether an ISA IRQ can be used
764 * @p_dev - the associated PCMCIA device
765 *
766 * locking note: must be called with ops_mutex locked.
767 */
768static int pcmcia_setup_isa_irq(struct pcmcia_device *p_dev, int type)
769{
770 struct pcmcia_socket *s = p_dev->socket;
771 unsigned int try, irq;
772 u32 mask = s->irq_mask;
773 int ret = -ENODEV;
774
775 for (try = 0; try < 64; try++) {
776 irq = try % 32;
777
127c03cd
DB
778 if (irq > NR_IRQS)
779 continue;
780
6f0f38c4
DB
781 /* marked as available by driver, not blocked by userspace? */
782 if (!((mask >> irq) & 1))
783 continue;
784
785 /* avoid an IRQ which is already used by another PCMCIA card */
786 if ((try < 32) && pcmcia_used_irq[irq])
787 continue;
788
789 /* register the correct driver, if possible, to check whether
790 * registering a dummy handle works, i.e. if the IRQ isn't
791 * marked as used by the kernel resource management core */
792 ret = request_irq(irq, test_action, type, p_dev->devname,
793 p_dev);
794 if (!ret) {
795 free_irq(irq, p_dev);
eb14120f 796 p_dev->irq = s->pcmcia_irq = irq;
6f0f38c4
DB
797 pcmcia_used_irq[irq]++;
798 break;
799 }
800 }
801
802 return ret;
803}
804
805void pcmcia_cleanup_irq(struct pcmcia_socket *s)
806{
6f840afb
DB
807 pcmcia_used_irq[s->pcmcia_irq]--;
808 s->pcmcia_irq = 0;
6f0f38c4
DB
809}
810
811#else /* CONFIG_PCMCIA_PROBE */
812
813static int pcmcia_setup_isa_irq(struct pcmcia_device *p_dev, int type)
814{
815 return -EINVAL;
816}
817
818void pcmcia_cleanup_irq(struct pcmcia_socket *s)
819{
6f840afb 820 s->pcmcia_irq = 0;
6f0f38c4
DB
821 return;
822}
823
824#endif /* CONFIG_PCMCIA_PROBE */
825
826
827/**
828 * pcmcia_setup_irq() - determine IRQ to be used for device
829 * @p_dev - the associated PCMCIA device
830 *
831 * locking note: must be called with ops_mutex locked.
832 */
833int pcmcia_setup_irq(struct pcmcia_device *p_dev)
834{
835 struct pcmcia_socket *s = p_dev->socket;
836
eb14120f 837 if (p_dev->irq)
6f0f38c4
DB
838 return 0;
839
840 /* already assigned? */
6f840afb 841 if (s->pcmcia_irq) {
eb14120f 842 p_dev->irq = s->pcmcia_irq;
6f0f38c4
DB
843 return 0;
844 }
845
846 /* prefer an exclusive ISA irq */
847 if (!pcmcia_setup_isa_irq(p_dev, 0))
848 return 0;
849
850 /* but accept a shared ISA irq */
851 if (!pcmcia_setup_isa_irq(p_dev, IRQF_SHARED))
852 return 0;
853
854 /* but use the PCI irq otherwise */
855 if (s->pci_irq) {
eb14120f 856 p_dev->irq = s->pcmcia_irq = s->pci_irq;
6f0f38c4
DB
857 return 0;
858 }
859
860 return -EINVAL;
861}
862
863
cdb13808
DB
864/**
865 * pcmcia_request_window() - attempt to reserve iomem for PCMCIA devices
9485ee14
DB
866 * @p_dev: the associated PCMCIA device
867 * @res: &struct resource pointing to p_dev->resource[2..5]
868 * @speed: access speed
1a8d4663 869 *
cdb13808 870 * pcmcia_request_window() attepts to reserve an iomem ranges specified in
9485ee14
DB
871 * &struct resource @res pointing to one of the entries in
872 * &struct pcmcia_device @p_dev->resource[2..5]. The "start" value is the
cdb13808
DB
873 * requested start of the IO mem resource; "end" reflects the size
874 * requested.
1a8d4663 875 */
cdb13808
DB
876int pcmcia_request_window(struct pcmcia_device *p_dev, struct resource *res,
877 unsigned int speed)
1a8d4663 878{
6838b03f 879 struct pcmcia_socket *s = p_dev->socket;
82f88e36 880 pccard_mem_map *win;
1a8d4663
DB
881 u_long align;
882 int w;
883
1c4a77bf
DB
884 dev_dbg(&p_dev->dev, "request_window %pR %d\n", res, speed);
885
6d9a299f 886 if (!(s->state & SOCKET_PRESENT)) {
eb838fe1 887 dev_dbg(&p_dev->dev, "No card present\n");
3939c1ef 888 return -ENODEV;
6d9a299f 889 }
1a8d4663
DB
890
891 /* Window size defaults to smallest available */
cdb13808
DB
892 if (res->end == 0)
893 res->end = s->map_size;
894 align = (s->features & SS_CAP_MEM_ALIGN) ? res->end : s->map_size;
895 if (res->end & (s->map_size-1)) {
eb838fe1 896 dev_dbg(&p_dev->dev, "invalid map size\n");
69ba4433
DB
897 return -EINVAL;
898 }
cdb13808
DB
899 if ((res->start && (s->features & SS_CAP_STATIC_MAP)) ||
900 (res->start & (align-1))) {
eb838fe1 901 dev_dbg(&p_dev->dev, "invalid base address\n");
69ba4433
DB
902 return -EINVAL;
903 }
cdb13808 904 if (res->start)
1a8d4663
DB
905 align = 0;
906
907 /* Allocate system memory window */
0ca724d3 908 mutex_lock(&s->ops_mutex);
1a8d4663 909 for (w = 0; w < MAX_WIN; w++)
9fea84f4
DB
910 if (!(s->state & SOCKET_WIN_REQ(w)))
911 break;
f958095e 912 if (w == MAX_WIN) {
eb838fe1 913 dev_dbg(&p_dev->dev, "all windows are used already\n");
0ca724d3 914 mutex_unlock(&s->ops_mutex);
f958095e
DB
915 return -EINVAL;
916 }
1a8d4663
DB
917
918 win = &s->win[w];
1a8d4663
DB
919
920 if (!(s->features & SS_CAP_STATIC_MAP)) {
cdb13808 921 win->res = pcmcia_find_mem_region(res->start, res->end, align,
0ca724d3 922 0, s);
82f88e36 923 if (!win->res) {
eb838fe1 924 dev_dbg(&p_dev->dev, "allocating mem region failed\n");
6b8e087b 925 mutex_unlock(&s->ops_mutex);
f958095e
DB
926 return -EINVAL;
927 }
1a8d4663 928 }
6838b03f 929 p_dev->_win |= CLIENT_WIN_REQ(w);
1a8d4663
DB
930
931 /* Configure the socket controller */
82f88e36 932 win->map = w+1;
cdb13808
DB
933 win->flags = res->flags & WIN_FLAGS_MAP;
934 win->speed = speed;
82f88e36 935 win->card_start = 0;
6b8e087b 936
82f88e36 937 if (s->ops->set_mem_map(s, win) != 0) {
eb838fe1 938 dev_dbg(&p_dev->dev, "failed to set memory mapping\n");
6b8e087b 939 mutex_unlock(&s->ops_mutex);
926c5402
DB
940 return -EIO;
941 }
1a8d4663
DB
942 s->state |= SOCKET_WIN_REQ(w);
943
944 /* Return window handle */
9fea84f4 945 if (s->features & SS_CAP_STATIC_MAP)
cdb13808 946 res->start = win->static_start;
9fea84f4 947 else
cdb13808 948 res->start = win->res->start;
9fea84f4 949
0ca724d3 950 /* convert to new-style resources */
cdb13808
DB
951 res->end += res->start - 1;
952 res->flags &= ~WIN_FLAGS_REQ;
953 res->flags |= (win->map << 2) | IORESOURCE_MEM;
ad0c7be2
DB
954 res->parent = win->res;
955 if (win->res)
956 request_resource(&iomem_resource, res);
957
eb838fe1 958 dev_dbg(&p_dev->dev, "request_window results in %pR\n", res);
0ca724d3 959
6b8e087b 960 mutex_unlock(&s->ops_mutex);
1a8d4663 961
4c89e88b 962 return 0;
1a8d4663
DB
963} /* pcmcia_request_window */
964EXPORT_SYMBOL(pcmcia_request_window);
5f2a71fc 965
9485ee14
DB
966
967/**
968 * pcmcia_disable_device() - disable and clean up a PCMCIA device
969 * @p_dev: the associated PCMCIA device
970 *
971 * pcmcia_disable_device() is the driver-callable counterpart to
972 * pcmcia_enable_device(): If a PCMCIA device is no longer used,
973 * drivers are expected to clean up and disable the device by calling
974 * this function. Any I/O ranges (iomem and ioports) will be released,
975 * the Vpp voltage will be set to 0, and IRQs will no longer be
976 * generated -- at least if there is no other card function (of
977 * multifunction devices) being used.
978 */
9fea84f4
DB
979void pcmcia_disable_device(struct pcmcia_device *p_dev)
980{
0ca724d3 981 int i;
1c4a77bf
DB
982
983 dev_dbg(&p_dev->dev, "disabling device\n");
984
0ca724d3
DB
985 for (i = 0; i < MAX_WIN; i++) {
986 struct resource *res = p_dev->resource[MAX_IO_WIN + i];
987 if (res->flags & WIN_FLAGS_REQ)
988 pcmcia_release_window(p_dev, res);
989 }
990
5f2a71fc 991 pcmcia_release_configuration(p_dev);
2ce4905e 992 pcmcia_release_io(p_dev);
418c5278 993 if (p_dev->_irq) {
eb14120f 994 free_irq(p_dev->irq, p_dev->priv);
418c5278
PM
995 p_dev->_irq = 0;
996 }
5f2a71fc
DB
997}
998EXPORT_SYMBOL(pcmcia_disable_device);