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1da177e4
LT
1/*
2**
3** PCI Lower Bus Adapter (LBA) manager
4**
5** (c) Copyright 1999,2000 Grant Grundler
6** (c) Copyright 1999,2000 Hewlett-Packard Company
7**
8** This program is free software; you can redistribute it and/or modify
9** it under the terms of the GNU General Public License as published by
10** the Free Software Foundation; either version 2 of the License, or
11** (at your option) any later version.
12**
13**
14** This module primarily provides access to PCI bus (config/IOport
15** spaces) on platforms with an SBA/LBA chipset. A/B/C/J/L/N-class
16** with 4 digit model numbers - eg C3000 (and A400...sigh).
17**
18** LBA driver isn't as simple as the Dino driver because:
19** (a) this chip has substantial bug fixes between revisions
20** (Only one Dino bug has a software workaround :^( )
21** (b) has more options which we don't (yet) support (DMA hints, OLARD)
22** (c) IRQ support lives in the I/O SAPIC driver (not with PCI driver)
23** (d) play nicely with both PAT and "Legacy" PA-RISC firmware (PDC).
24** (dino only deals with "Legacy" PDC)
25**
26** LBA driver passes the I/O SAPIC HPA to the I/O SAPIC driver.
27** (I/O SAPIC is integratd in the LBA chip).
28**
29** FIXME: Add support to SBA and LBA drivers for DMA hint sets
30** FIXME: Add support for PCI card hot-plug (OLARD).
31*/
32
33#include <linux/delay.h>
34#include <linux/types.h>
35#include <linux/kernel.h>
36#include <linux/spinlock.h>
0fe763c5 37#include <linux/init.h> /* for __init */
1da177e4
LT
38#include <linux/pci.h>
39#include <linux/ioport.h>
40#include <linux/slab.h>
1da177e4
LT
41
42#include <asm/byteorder.h>
43#include <asm/pdc.h>
44#include <asm/pdcpat.h>
45#include <asm/page.h>
1da177e4 46
1790cf91 47#include <asm/ropes.h>
1da177e4
LT
48#include <asm/hardware.h> /* for register_parisc_driver() stuff */
49#include <asm/parisc-device.h>
1da177e4
LT
50#include <asm/io.h> /* read/write stuff */
51
52#undef DEBUG_LBA /* general stuff */
53#undef DEBUG_LBA_PORT /* debug I/O Port access */
54#undef DEBUG_LBA_CFG /* debug Config Space Access (ie PCI Bus walk) */
55#undef DEBUG_LBA_PAT /* debug PCI Resource Mgt code - PDC PAT only */
56
57#undef FBB_SUPPORT /* Fast Back-Back xfers - NOT READY YET */
58
59
60#ifdef DEBUG_LBA
61#define DBG(x...) printk(x)
62#else
63#define DBG(x...)
64#endif
65
66#ifdef DEBUG_LBA_PORT
67#define DBG_PORT(x...) printk(x)
68#else
69#define DBG_PORT(x...)
70#endif
71
72#ifdef DEBUG_LBA_CFG
73#define DBG_CFG(x...) printk(x)
74#else
75#define DBG_CFG(x...)
76#endif
77
78#ifdef DEBUG_LBA_PAT
79#define DBG_PAT(x...) printk(x)
80#else
81#define DBG_PAT(x...)
82#endif
83
84
85/*
86** Config accessor functions only pass in the 8-bit bus number and not
87** the 8-bit "PCI Segment" number. Each LBA will be assigned a PCI bus
88** number based on what firmware wrote into the scratch register.
89**
90** The "secondary" bus number is set to this before calling
91** pci_register_ops(). If any PPB's are present, the scan will
92** discover them and update the "secondary" and "subordinate"
93** fields in the pci_bus structure.
94**
95** Changes in the configuration *may* result in a different
96** bus number for each LBA depending on what firmware does.
97*/
98
99#define MODULE_NAME "LBA"
100
1da177e4
LT
101/* non-postable I/O port space, densely packed */
102#define LBA_PORT_BASE (PCI_F_EXTEND | 0xfee00000UL)
8039de10 103static void __iomem *astro_iop_base __read_mostly;
1da177e4 104
1da177e4
LT
105static u32 lba_t32;
106
107/* lba flags */
108#define LBA_FLAG_SKIP_PROBE 0x10
109
110#define LBA_SKIP_PROBE(d) ((d)->flags & LBA_FLAG_SKIP_PROBE)
111
112
113/* Looks nice and keeps the compiler happy */
114#define LBA_DEV(d) ((struct lba_device *) (d))
115
116
117/*
118** Only allow 8 subsidiary busses per LBA
119** Problem is the PCI bus numbering is globally shared.
120*/
121#define LBA_MAX_NUM_BUSES 8
122
123/************************************
124 * LBA register read and write support
125 *
126 * BE WARNED: register writes are posted.
127 * (ie follow writes which must reach HW with a read)
128 */
129#define READ_U8(addr) __raw_readb(addr)
130#define READ_U16(addr) __raw_readw(addr)
131#define READ_U32(addr) __raw_readl(addr)
132#define WRITE_U8(value, addr) __raw_writeb(value, addr)
133#define WRITE_U16(value, addr) __raw_writew(value, addr)
134#define WRITE_U32(value, addr) __raw_writel(value, addr)
135
136#define READ_REG8(addr) readb(addr)
137#define READ_REG16(addr) readw(addr)
138#define READ_REG32(addr) readl(addr)
139#define READ_REG64(addr) readq(addr)
140#define WRITE_REG8(value, addr) writeb(value, addr)
141#define WRITE_REG16(value, addr) writew(value, addr)
142#define WRITE_REG32(value, addr) writel(value, addr)
143
144
145#define LBA_CFG_TOK(bus,dfn) ((u32) ((bus)<<16 | (dfn)<<8))
146#define LBA_CFG_BUS(tok) ((u8) ((tok)>>16))
147#define LBA_CFG_DEV(tok) ((u8) ((tok)>>11) & 0x1f)
148#define LBA_CFG_FUNC(tok) ((u8) ((tok)>>8 ) & 0x7)
149
150
151/*
152** Extract LBA (Rope) number from HPA
153** REVISIT: 16 ropes for Stretch/Ike?
154*/
155#define ROPES_PER_IOC 8
156#define LBA_NUM(x) ((((unsigned long) x) >> 13) & (ROPES_PER_IOC-1))
157
158
159static void
160lba_dump_res(struct resource *r, int d)
161{
162 int i;
163
164 if (NULL == r)
165 return;
166
167 printk(KERN_DEBUG "(%p)", r->parent);
168 for (i = d; i ; --i) printk(" ");
645d11d4
MW
169 printk(KERN_DEBUG "%p [%lx,%lx]/%lx\n", r,
170 (long)r->start, (long)r->end, r->flags);
1da177e4
LT
171 lba_dump_res(r->child, d+2);
172 lba_dump_res(r->sibling, d);
173}
174
175
176/*
177** LBA rev 2.0, 2.1, 2.2, and 3.0 bus walks require a complex
178** workaround for cfg cycles:
179** -- preserve LBA state
180** -- prevent any DMA from occurring
181** -- turn on smart mode
182** -- probe with config writes before doing config reads
183** -- check ERROR_STATUS
184** -- clear ERROR_STATUS
185** -- restore LBA state
186**
187** The workaround is only used for device discovery.
188*/
189
190static int lba_device_present(u8 bus, u8 dfn, struct lba_device *d)
191{
b918c62e
YL
192 u8 first_bus = d->hba.hba_bus->busn_res.start;
193 u8 last_sub_bus = d->hba.hba_bus->busn_res.end;
1da177e4
LT
194
195 if ((bus < first_bus) ||
196 (bus > last_sub_bus) ||
197 ((bus - first_bus) >= LBA_MAX_NUM_BUSES)) {
198 return 0;
199 }
200
201 return 1;
202}
203
204
205
206#define LBA_CFG_SETUP(d, tok) { \
207 /* Save contents of error config register. */ \
208 error_config = READ_REG32(d->hba.base_addr + LBA_ERROR_CONFIG); \
209\
210 /* Save contents of status control register. */ \
211 status_control = READ_REG32(d->hba.base_addr + LBA_STAT_CTL); \
212\
213 /* For LBA rev 2.0, 2.1, 2.2, and 3.0, we must disable DMA \
214 ** arbitration for full bus walks. \
215 */ \
216 /* Save contents of arb mask register. */ \
217 arb_mask = READ_REG32(d->hba.base_addr + LBA_ARB_MASK); \
218\
219 /* \
220 * Turn off all device arbitration bits (i.e. everything \
221 * except arbitration enable bit). \
222 */ \
223 WRITE_REG32(0x1, d->hba.base_addr + LBA_ARB_MASK); \
224\
225 /* \
226 * Set the smart mode bit so that master aborts don't cause \
227 * LBA to go into PCI fatal mode (required). \
228 */ \
229 WRITE_REG32(error_config | LBA_SMART_MODE, d->hba.base_addr + LBA_ERROR_CONFIG); \
230}
231
232
233#define LBA_CFG_PROBE(d, tok) { \
234 /* \
235 * Setup Vendor ID write and read back the address register \
236 * to make sure that LBA is the bus master. \
237 */ \
238 WRITE_REG32(tok | PCI_VENDOR_ID, (d)->hba.base_addr + LBA_PCI_CFG_ADDR);\
239 /* \
240 * Read address register to ensure that LBA is the bus master, \
241 * which implies that DMA traffic has stopped when DMA arb is off. \
242 */ \
243 lba_t32 = READ_REG32((d)->hba.base_addr + LBA_PCI_CFG_ADDR); \
244 /* \
245 * Generate a cfg write cycle (will have no affect on \
246 * Vendor ID register since read-only). \
247 */ \
248 WRITE_REG32(~0, (d)->hba.base_addr + LBA_PCI_CFG_DATA); \
249 /* \
250 * Make sure write has completed before proceeding further, \
251 * i.e. before setting clear enable. \
252 */ \
253 lba_t32 = READ_REG32((d)->hba.base_addr + LBA_PCI_CFG_ADDR); \
254}
255
256
257/*
258 * HPREVISIT:
259 * -- Can't tell if config cycle got the error.
260 *
261 * OV bit is broken until rev 4.0, so can't use OV bit and
262 * LBA_ERROR_LOG_ADDR to tell if error belongs to config cycle.
263 *
264 * As of rev 4.0, no longer need the error check.
265 *
266 * -- Even if we could tell, we still want to return -1
267 * for **ANY** error (not just master abort).
268 *
269 * -- Only clear non-fatal errors (we don't want to bring
270 * LBA out of pci-fatal mode).
271 *
272 * Actually, there is still a race in which
273 * we could be clearing a fatal error. We will
274 * live with this during our initial bus walk
275 * until rev 4.0 (no driver activity during
276 * initial bus walk). The initial bus walk
277 * has race conditions concerning the use of
278 * smart mode as well.
279 */
280
281#define LBA_MASTER_ABORT_ERROR 0xc
282#define LBA_FATAL_ERROR 0x10
283
284#define LBA_CFG_MASTER_ABORT_CHECK(d, base, tok, error) { \
285 u32 error_status = 0; \
286 /* \
287 * Set clear enable (CE) bit. Unset by HW when new \
288 * errors are logged -- LBA HW ERS section 14.3.3). \
289 */ \
290 WRITE_REG32(status_control | CLEAR_ERRLOG_ENABLE, base + LBA_STAT_CTL); \
291 error_status = READ_REG32(base + LBA_ERROR_STATUS); \
292 if ((error_status & 0x1f) != 0) { \
293 /* \
294 * Fail the config read request. \
295 */ \
296 error = 1; \
297 if ((error_status & LBA_FATAL_ERROR) == 0) { \
298 /* \
299 * Clear error status (if fatal bit not set) by setting \
300 * clear error log bit (CL). \
301 */ \
302 WRITE_REG32(status_control | CLEAR_ERRLOG, base + LBA_STAT_CTL); \
303 } \
304 } \
305}
306
307#define LBA_CFG_TR4_ADDR_SETUP(d, addr) \
308 WRITE_REG32(((addr) & ~3), (d)->hba.base_addr + LBA_PCI_CFG_ADDR);
309
310#define LBA_CFG_ADDR_SETUP(d, addr) { \
311 WRITE_REG32(((addr) & ~3), (d)->hba.base_addr + LBA_PCI_CFG_ADDR); \
312 /* \
313 * Read address register to ensure that LBA is the bus master, \
314 * which implies that DMA traffic has stopped when DMA arb is off. \
315 */ \
316 lba_t32 = READ_REG32((d)->hba.base_addr + LBA_PCI_CFG_ADDR); \
317}
318
319
320#define LBA_CFG_RESTORE(d, base) { \
321 /* \
322 * Restore status control register (turn off clear enable). \
323 */ \
324 WRITE_REG32(status_control, base + LBA_STAT_CTL); \
325 /* \
326 * Restore error config register (turn off smart mode). \
327 */ \
328 WRITE_REG32(error_config, base + LBA_ERROR_CONFIG); \
329 /* \
330 * Restore arb mask register (reenables DMA arbitration). \
331 */ \
332 WRITE_REG32(arb_mask, base + LBA_ARB_MASK); \
333}
334
335
336
337static unsigned int
338lba_rd_cfg(struct lba_device *d, u32 tok, u8 reg, u32 size)
339{
340 u32 data = ~0U;
341 int error = 0;
342 u32 arb_mask = 0; /* used by LBA_CFG_SETUP/RESTORE */
343 u32 error_config = 0; /* used by LBA_CFG_SETUP/RESTORE */
344 u32 status_control = 0; /* used by LBA_CFG_SETUP/RESTORE */
345
346 LBA_CFG_SETUP(d, tok);
347 LBA_CFG_PROBE(d, tok);
348 LBA_CFG_MASTER_ABORT_CHECK(d, d->hba.base_addr, tok, error);
349 if (!error) {
350 void __iomem *data_reg = d->hba.base_addr + LBA_PCI_CFG_DATA;
351
352 LBA_CFG_ADDR_SETUP(d, tok | reg);
353 switch (size) {
354 case 1: data = (u32) READ_REG8(data_reg + (reg & 3)); break;
355 case 2: data = (u32) READ_REG16(data_reg+ (reg & 2)); break;
356 case 4: data = READ_REG32(data_reg); break;
357 }
358 }
359 LBA_CFG_RESTORE(d, d->hba.base_addr);
360 return(data);
361}
362
363
364static int elroy_cfg_read(struct pci_bus *bus, unsigned int devfn, int pos, int size, u32 *data)
365{
366 struct lba_device *d = LBA_DEV(parisc_walk_tree(bus->bridge));
b918c62e 367 u32 local_bus = (bus->parent == NULL) ? 0 : bus->busn_res.start;
1da177e4
LT
368 u32 tok = LBA_CFG_TOK(local_bus, devfn);
369 void __iomem *data_reg = d->hba.base_addr + LBA_PCI_CFG_DATA;
370
371 if ((pos > 255) || (devfn > 255))
372 return -EINVAL;
373
374/* FIXME: B2K/C3600 workaround is always use old method... */
375 /* if (!LBA_SKIP_PROBE(d)) */ {
376 /* original - Generate config cycle on broken elroy
377 with risk we will miss PCI bus errors. */
378 *data = lba_rd_cfg(d, tok, pos, size);
a8043ecb 379 DBG_CFG("%s(%x+%2x) -> 0x%x (a)\n", __func__, tok, pos, *data);
1da177e4
LT
380 return 0;
381 }
382
b918c62e 383 if (LBA_SKIP_PROBE(d) && !lba_device_present(bus->busn_res.start, devfn, d)) {
a8043ecb 384 DBG_CFG("%s(%x+%2x) -> -1 (b)\n", __func__, tok, pos);
1da177e4
LT
385 /* either don't want to look or know device isn't present. */
386 *data = ~0U;
387 return(0);
388 }
389
390 /* Basic Algorithm
391 ** Should only get here on fully working LBA rev.
392 ** This is how simple the code should have been.
393 */
394 LBA_CFG_ADDR_SETUP(d, tok | pos);
395 switch(size) {
396 case 1: *data = READ_REG8 (data_reg + (pos & 3)); break;
397 case 2: *data = READ_REG16(data_reg + (pos & 2)); break;
398 case 4: *data = READ_REG32(data_reg); break;
399 }
a8043ecb 400 DBG_CFG("%s(%x+%2x) -> 0x%x (c)\n", __func__, tok, pos, *data);
1da177e4
LT
401 return 0;
402}
403
404
405static void
406lba_wr_cfg(struct lba_device *d, u32 tok, u8 reg, u32 data, u32 size)
407{
408 int error = 0;
409 u32 arb_mask = 0;
410 u32 error_config = 0;
411 u32 status_control = 0;
412 void __iomem *data_reg = d->hba.base_addr + LBA_PCI_CFG_DATA;
413
414 LBA_CFG_SETUP(d, tok);
415 LBA_CFG_ADDR_SETUP(d, tok | reg);
416 switch (size) {
417 case 1: WRITE_REG8 (data, data_reg + (reg & 3)); break;
418 case 2: WRITE_REG16(data, data_reg + (reg & 2)); break;
419 case 4: WRITE_REG32(data, data_reg); break;
420 }
421 LBA_CFG_MASTER_ABORT_CHECK(d, d->hba.base_addr, tok, error);
422 LBA_CFG_RESTORE(d, d->hba.base_addr);
423}
424
425
426/*
427 * LBA 4.0 config write code implements non-postable semantics
428 * by doing a read of CONFIG ADDR after the write.
429 */
430
431static int elroy_cfg_write(struct pci_bus *bus, unsigned int devfn, int pos, int size, u32 data)
432{
433 struct lba_device *d = LBA_DEV(parisc_walk_tree(bus->bridge));
b918c62e 434 u32 local_bus = (bus->parent == NULL) ? 0 : bus->busn_res.start;
1da177e4
LT
435 u32 tok = LBA_CFG_TOK(local_bus,devfn);
436
437 if ((pos > 255) || (devfn > 255))
438 return -EINVAL;
439
440 if (!LBA_SKIP_PROBE(d)) {
441 /* Original Workaround */
442 lba_wr_cfg(d, tok, pos, (u32) data, size);
a8043ecb 443 DBG_CFG("%s(%x+%2x) = 0x%x (a)\n", __func__, tok, pos,data);
1da177e4
LT
444 return 0;
445 }
446
b918c62e 447 if (LBA_SKIP_PROBE(d) && (!lba_device_present(bus->busn_res.start, devfn, d))) {
a8043ecb 448 DBG_CFG("%s(%x+%2x) = 0x%x (b)\n", __func__, tok, pos,data);
1da177e4
LT
449 return 1; /* New Workaround */
450 }
451
a8043ecb 452 DBG_CFG("%s(%x+%2x) = 0x%x (c)\n", __func__, tok, pos, data);
1da177e4
LT
453
454 /* Basic Algorithm */
455 LBA_CFG_ADDR_SETUP(d, tok | pos);
456 switch(size) {
457 case 1: WRITE_REG8 (data, d->hba.base_addr + LBA_PCI_CFG_DATA + (pos & 3));
458 break;
459 case 2: WRITE_REG16(data, d->hba.base_addr + LBA_PCI_CFG_DATA + (pos & 2));
460 break;
461 case 4: WRITE_REG32(data, d->hba.base_addr + LBA_PCI_CFG_DATA);
462 break;
463 }
464 /* flush posted write */
465 lba_t32 = READ_REG32(d->hba.base_addr + LBA_PCI_CFG_ADDR);
466 return 0;
467}
468
469
470static struct pci_ops elroy_cfg_ops = {
471 .read = elroy_cfg_read,
472 .write = elroy_cfg_write,
473};
474
475/*
476 * The mercury_cfg_ops are slightly misnamed; they're also used for Elroy
477 * TR4.0 as no additional bugs were found in this areea between Elroy and
478 * Mercury
479 */
480
481static int mercury_cfg_read(struct pci_bus *bus, unsigned int devfn, int pos, int size, u32 *data)
482{
483 struct lba_device *d = LBA_DEV(parisc_walk_tree(bus->bridge));
b918c62e 484 u32 local_bus = (bus->parent == NULL) ? 0 : bus->busn_res.start;
1da177e4
LT
485 u32 tok = LBA_CFG_TOK(local_bus, devfn);
486 void __iomem *data_reg = d->hba.base_addr + LBA_PCI_CFG_DATA;
487
488 if ((pos > 255) || (devfn > 255))
489 return -EINVAL;
490
491 LBA_CFG_TR4_ADDR_SETUP(d, tok | pos);
492 switch(size) {
493 case 1:
494 *data = READ_REG8(data_reg + (pos & 3));
495 break;
496 case 2:
497 *data = READ_REG16(data_reg + (pos & 2));
498 break;
499 case 4:
500 *data = READ_REG32(data_reg); break;
501 break;
502 }
503
504 DBG_CFG("mercury_cfg_read(%x+%2x) -> 0x%x\n", tok, pos, *data);
505 return 0;
506}
507
508/*
509 * LBA 4.0 config write code implements non-postable semantics
510 * by doing a read of CONFIG ADDR after the write.
511 */
512
513static int mercury_cfg_write(struct pci_bus *bus, unsigned int devfn, int pos, int size, u32 data)
514{
515 struct lba_device *d = LBA_DEV(parisc_walk_tree(bus->bridge));
516 void __iomem *data_reg = d->hba.base_addr + LBA_PCI_CFG_DATA;
b918c62e 517 u32 local_bus = (bus->parent == NULL) ? 0 : bus->busn_res.start;
1da177e4
LT
518 u32 tok = LBA_CFG_TOK(local_bus,devfn);
519
520 if ((pos > 255) || (devfn > 255))
521 return -EINVAL;
522
a8043ecb 523 DBG_CFG("%s(%x+%2x) <- 0x%x (c)\n", __func__, tok, pos, data);
1da177e4
LT
524
525 LBA_CFG_TR4_ADDR_SETUP(d, tok | pos);
526 switch(size) {
527 case 1:
528 WRITE_REG8 (data, data_reg + (pos & 3));
529 break;
530 case 2:
531 WRITE_REG16(data, data_reg + (pos & 2));
532 break;
533 case 4:
534 WRITE_REG32(data, data_reg);
535 break;
536 }
537
538 /* flush posted write */
539 lba_t32 = READ_U32(d->hba.base_addr + LBA_PCI_CFG_ADDR);
540 return 0;
541}
542
543static struct pci_ops mercury_cfg_ops = {
544 .read = mercury_cfg_read,
545 .write = mercury_cfg_write,
546};
547
548
549static void
550lba_bios_init(void)
551{
552 DBG(MODULE_NAME ": lba_bios_init\n");
553}
554
555
556#ifdef CONFIG_64BIT
557
6ca45a24
GG
558/*
559 * truncate_pat_collision: Deal with overlaps or outright collisions
560 * between PAT PDC reported ranges.
561 *
562 * Broken PA8800 firmware will report lmmio range that
563 * overlaps with CPU HPA. Just truncate the lmmio range.
564 *
565 * BEWARE: conflicts with this lmmio range may be an
566 * elmmio range which is pointing down another rope.
567 *
568 * FIXME: only deals with one collision per range...theoretically we
569 * could have several. Supporting more than one collision will get messy.
570 */
571static unsigned long
572truncate_pat_collision(struct resource *root, struct resource *new)
573{
574 unsigned long start = new->start;
575 unsigned long end = new->end;
576 struct resource *tmp = root->child;
577
578 if (end <= start || start < root->start || !tmp)
579 return 0;
580
581 /* find first overlap */
582 while (tmp && tmp->end < start)
583 tmp = tmp->sibling;
584
585 /* no entries overlap */
586 if (!tmp) return 0;
587
588 /* found one that starts behind the new one
589 ** Don't need to do anything.
590 */
591 if (tmp->start >= end) return 0;
592
593 if (tmp->start <= start) {
594 /* "front" of new one overlaps */
595 new->start = tmp->end + 1;
596
597 if (tmp->end >= end) {
598 /* AACCKK! totally overlaps! drop this range. */
599 return 1;
600 }
601 }
602
603 if (tmp->end < end ) {
604 /* "end" of new one overlaps */
605 new->end = tmp->start - 1;
606 }
607
608 printk(KERN_WARNING "LBA: Truncating lmmio_space [%lx/%lx] "
609 "to [%lx,%lx]\n",
610 start, end,
645d11d4 611 (long)new->start, (long)new->end );
6ca45a24
GG
612
613 return 0; /* truncation successful */
614}
615
dac76f1b
HD
616/*
617 * extend_lmmio_len: extend lmmio range to maximum length
618 *
619 * This is needed at least on C8000 systems to get the ATI FireGL card
620 * working. On other systems we will currently not extend the lmmio space.
621 */
622static unsigned long
623extend_lmmio_len(unsigned long start, unsigned long end, unsigned long lba_len)
624{
625 struct resource *tmp;
626
627 pr_debug("LMMIO mismatch: PAT length = 0x%lx, MASK register = 0x%lx\n",
628 end - start, lba_len);
629
630 lba_len = min(lba_len+1, 256UL*1024*1024); /* limit to 256 MB */
631
632 pr_debug("LBA: lmmio_space [0x%lx-0x%lx] - original\n", start, end);
633
634 if (boot_cpu_data.cpu_type < mako) {
635 pr_info("LBA: Not a C8000 system - not extending LMMIO range.\n");
636 return end;
637 }
638
639 end += lba_len;
640 if (end < start) /* fix overflow */
641 end = -1ULL;
642
643 pr_debug("LBA: lmmio_space [0x%lx-0x%lx] - current\n", start, end);
644
645 /* first overlap */
646 for (tmp = iomem_resource.child; tmp; tmp = tmp->sibling) {
647 pr_debug("LBA: testing %pR\n", tmp);
648 if (tmp->start == start)
649 continue; /* ignore ourself */
650 if (tmp->end < start)
651 continue;
652 if (tmp->start > end)
653 continue;
654 if (end >= tmp->start)
655 end = tmp->start - 1;
656 }
657
658 pr_info("LBA: lmmio_space [0x%lx-0x%lx] - new\n", start, end);
659
660 /* return new end */
661 return end;
662}
663
1da177e4 664#else
6ca45a24 665#define truncate_pat_collision(r,n) (0)
1da177e4
LT
666#endif
667
1da177e4
LT
668/*
669** The algorithm is generic code.
670** But it needs to access local data structures to get the IRQ base.
671** Could make this a "pci_fixup_irq(bus, region)" but not sure
672** it's worth it.
673**
674** Called by do_pci_scan_bus() immediately after each PCI bus is walked.
675** Resources aren't allocated until recursive buswalk below HBA is completed.
676*/
677static void
678lba_fixup_bus(struct pci_bus *bus)
679{
f5725f4d 680 struct pci_dev *dev;
1da177e4
LT
681#ifdef FBB_SUPPORT
682 u16 status;
683#endif
684 struct lba_device *ldev = LBA_DEV(parisc_walk_tree(bus->bridge));
1da177e4
LT
685
686 DBG("lba_fixup_bus(0x%p) bus %d platform_data 0x%p\n",
b918c62e 687 bus, (int)bus->busn_res.start, bus->bridge->platform_data);
1da177e4
LT
688
689 /*
690 ** Properly Setup MMIO resources for this bus.
691 ** pci_alloc_primary_bus() mangles this.
692 */
9785d646 693 if (bus->parent) {
9611f61e 694 int i;
1da177e4 695 /* PCI-PCI Bridge */
2e5e804a
YL
696 for (i = PCI_BRIDGE_RESOURCES; i < PCI_NUM_RESOURCES; i++)
697 pci_claim_bridge_resource(bus->self, i);
1da177e4
LT
698 } else {
699 /* Host-PCI Bridge */
dc7dce28 700 int err;
1da177e4
LT
701
702 DBG("lba_fixup_bus() %s [%lx/%lx]/%lx\n",
703 ldev->hba.io_space.name,
704 ldev->hba.io_space.start, ldev->hba.io_space.end,
705 ldev->hba.io_space.flags);
706 DBG("lba_fixup_bus() %s [%lx/%lx]/%lx\n",
707 ldev->hba.lmmio_space.name,
708 ldev->hba.lmmio_space.start, ldev->hba.lmmio_space.end,
709 ldev->hba.lmmio_space.flags);
710
711 err = request_resource(&ioport_resource, &(ldev->hba.io_space));
712 if (err < 0) {
713 lba_dump_res(&ioport_resource, 2);
714 BUG();
715 }
716
b204a4d2 717 if (ldev->hba.elmmio_space.flags) {
1da177e4
LT
718 err = request_resource(&iomem_resource,
719 &(ldev->hba.elmmio_space));
720 if (err < 0) {
721
722 printk("FAILED: lba_fixup_bus() request for "
723 "elmmio_space [%lx/%lx]\n",
645d11d4
MW
724 (long)ldev->hba.elmmio_space.start,
725 (long)ldev->hba.elmmio_space.end);
1da177e4
LT
726
727 /* lba_dump_res(&iomem_resource, 2); */
728 /* BUG(); */
dc7dce28 729 }
1da177e4
LT
730 }
731
f4d9ea9a 732 if (ldev->hba.lmmio_space.flags) {
6ca45a24
GG
733 err = request_resource(&iomem_resource, &(ldev->hba.lmmio_space));
734 if (err < 0) {
735 printk(KERN_ERR "FAILED: lba_fixup_bus() request for "
1da177e4 736 "lmmio_space [%lx/%lx]\n",
645d11d4
MW
737 (long)ldev->hba.lmmio_space.start,
738 (long)ldev->hba.lmmio_space.end);
dc7dce28 739 }
1da177e4
LT
740 }
741
742#ifdef CONFIG_64BIT
743 /* GMMIO is distributed range. Every LBA/Rope gets part it. */
744 if (ldev->hba.gmmio_space.flags) {
745 err = request_resource(&iomem_resource, &(ldev->hba.gmmio_space));
746 if (err < 0) {
747 printk("FAILED: lba_fixup_bus() request for "
748 "gmmio_space [%lx/%lx]\n",
645d11d4
MW
749 (long)ldev->hba.gmmio_space.start,
750 (long)ldev->hba.gmmio_space.end);
1da177e4
LT
751 lba_dump_res(&iomem_resource, 2);
752 BUG();
753 }
754 }
755#endif
756
1da177e4
LT
757 }
758
0b79ca2a 759 list_for_each_entry(dev, &bus->devices, bus_list) {
1da177e4 760 int i;
1da177e4
LT
761
762 DBG("lba_fixup_bus() %s\n", pci_name(dev));
763
764 /* Virtualize Device/Bridge Resources. */
765 for (i = 0; i < PCI_BRIDGE_RESOURCES; i++) {
766 struct resource *res = &dev->resource[i];
767
768 /* If resource not allocated - skip it */
769 if (!res->start)
770 continue;
771
84f4506c
KM
772 /*
773 ** FIXME: this will result in whinging for devices
774 ** that share expansion ROMs (think quad tulip), but
775 ** isn't harmful.
776 */
777 pci_claim_resource(dev, i);
1da177e4
LT
778 }
779
780#ifdef FBB_SUPPORT
781 /*
782 ** If one device does not support FBB transfers,
783 ** No one on the bus can be allowed to use them.
784 */
785 (void) pci_read_config_word(dev, PCI_STATUS, &status);
786 bus->bridge_ctl &= ~(status & PCI_STATUS_FAST_BACK);
787#endif
788
1da177e4
LT
789 /*
790 ** P2PB's have no IRQs. ignore them.
791 */
792 if ((dev->class >> 8) == PCI_CLASS_BRIDGE_PCI)
793 continue;
794
795 /* Adjust INTERRUPT_LINE for this dev */
796 iosapic_fixup_irq(ldev->iosapic_obj, dev);
797 }
798
799#ifdef FBB_SUPPORT
800/* FIXME/REVISIT - finish figuring out to set FBB on both
801** pci_setup_bridge() clobbers PCI_BRIDGE_CONTROL.
802** Can't fixup here anyway....garr...
803*/
804 if (fbb_enable) {
9785d646 805 if (bus->parent) {
1da177e4
LT
806 u8 control;
807 /* enable on PPB */
808 (void) pci_read_config_byte(bus->self, PCI_BRIDGE_CONTROL, &control);
809 (void) pci_write_config_byte(bus->self, PCI_BRIDGE_CONTROL, control | PCI_STATUS_FAST_BACK);
810
811 } else {
812 /* enable on LBA */
813 }
814 fbb_enable = PCI_COMMAND_FAST_BACK;
815 }
816
817 /* Lastly enable FBB/PERR/SERR on all devices too */
0b79ca2a 818 list_for_each_entry(dev, &bus->devices, bus_list) {
1da177e4
LT
819 (void) pci_read_config_word(dev, PCI_COMMAND, &status);
820 status |= PCI_COMMAND_PARITY | PCI_COMMAND_SERR | fbb_enable;
821 (void) pci_write_config_word(dev, PCI_COMMAND, status);
822 }
823#endif
824}
825
826
df8e5bc6 827static struct pci_bios_ops lba_bios_ops = {
1da177e4
LT
828 .init = lba_bios_init,
829 .fixup_bus = lba_fixup_bus,
830};
831
832
833
834
835/*******************************************************
836**
837** LBA Sprockets "I/O Port" Space Accessor Functions
838**
839** This set of accessor functions is intended for use with
840** "legacy firmware" (ie Sprockets on Allegro/Forte boxes).
841**
842** Many PCI devices don't require use of I/O port space (eg Tulip,
843** NCR720) since they export the same registers to both MMIO and
844** I/O port space. In general I/O port space is slower than
845** MMIO since drivers are designed so PIO writes can be posted.
846**
847********************************************************/
848
849#define LBA_PORT_IN(size, mask) \
850static u##size lba_astro_in##size (struct pci_hba_data *d, u16 addr) \
851{ \
852 u##size t; \
853 t = READ_REG##size(astro_iop_base + addr); \
854 DBG_PORT(" 0x%x\n", t); \
855 return (t); \
856}
857
858LBA_PORT_IN( 8, 3)
859LBA_PORT_IN(16, 2)
860LBA_PORT_IN(32, 0)
861
862
863
864/*
865** BUG X4107: Ordering broken - DMA RD return can bypass PIO WR
866**
867** Fixed in Elroy 2.2. The READ_U32(..., LBA_FUNC_ID) below is
868** guarantee non-postable completion semantics - not avoid X4107.
869** The READ_U32 only guarantees the write data gets to elroy but
870** out to the PCI bus. We can't read stuff from I/O port space
871** since we don't know what has side-effects. Attempting to read
872** from configuration space would be suicidal given the number of
873** bugs in that elroy functionality.
874**
875** Description:
876** DMA read results can improperly pass PIO writes (X4107). The
877** result of this bug is that if a processor modifies a location in
878** memory after having issued PIO writes, the PIO writes are not
879** guaranteed to be completed before a PCI device is allowed to see
880** the modified data in a DMA read.
881**
882** Note that IKE bug X3719 in TR1 IKEs will result in the same
883** symptom.
884**
885** Workaround:
886** The workaround for this bug is to always follow a PIO write with
887** a PIO read to the same bus before starting DMA on that PCI bus.
888**
889*/
890#define LBA_PORT_OUT(size, mask) \
891static void lba_astro_out##size (struct pci_hba_data *d, u16 addr, u##size val) \
892{ \
a8043ecb 893 DBG_PORT("%s(0x%p, 0x%x, 0x%x)\n", __func__, d, addr, val); \
1da177e4
LT
894 WRITE_REG##size(val, astro_iop_base + addr); \
895 if (LBA_DEV(d)->hw_rev < 3) \
896 lba_t32 = READ_U32(d->base_addr + LBA_FUNC_ID); \
897}
898
899LBA_PORT_OUT( 8, 3)
900LBA_PORT_OUT(16, 2)
901LBA_PORT_OUT(32, 0)
902
903
904static struct pci_port_ops lba_astro_port_ops = {
905 .inb = lba_astro_in8,
906 .inw = lba_astro_in16,
907 .inl = lba_astro_in32,
908 .outb = lba_astro_out8,
909 .outw = lba_astro_out16,
910 .outl = lba_astro_out32
911};
912
913
914#ifdef CONFIG_64BIT
915#define PIOP_TO_GMMIO(lba, addr) \
916 ((lba)->iop_base + (((addr)&0xFFFC)<<10) + ((addr)&3))
917
918/*******************************************************
919**
920** LBA PAT "I/O Port" Space Accessor Functions
921**
922** This set of accessor functions is intended for use with
923** "PAT PDC" firmware (ie Prelude/Rhapsody/Piranha boxes).
924**
925** This uses the PIOP space located in the first 64MB of GMMIO.
926** Each rope gets a full 64*KB* (ie 4 bytes per page) this way.
927** bits 1:0 stay the same. bits 15:2 become 25:12.
928** Then add the base and we can generate an I/O Port cycle.
929********************************************************/
930#undef LBA_PORT_IN
931#define LBA_PORT_IN(size, mask) \
932static u##size lba_pat_in##size (struct pci_hba_data *l, u16 addr) \
933{ \
934 u##size t; \
a8043ecb 935 DBG_PORT("%s(0x%p, 0x%x) ->", __func__, l, addr); \
1da177e4
LT
936 t = READ_REG##size(PIOP_TO_GMMIO(LBA_DEV(l), addr)); \
937 DBG_PORT(" 0x%x\n", t); \
938 return (t); \
939}
940
941LBA_PORT_IN( 8, 3)
942LBA_PORT_IN(16, 2)
943LBA_PORT_IN(32, 0)
944
945
946#undef LBA_PORT_OUT
947#define LBA_PORT_OUT(size, mask) \
948static void lba_pat_out##size (struct pci_hba_data *l, u16 addr, u##size val) \
949{ \
c2c4798e 950 void __iomem *where = PIOP_TO_GMMIO(LBA_DEV(l), addr); \
a8043ecb 951 DBG_PORT("%s(0x%p, 0x%x, 0x%x)\n", __func__, l, addr, val); \
1da177e4
LT
952 WRITE_REG##size(val, where); \
953 /* flush the I/O down to the elroy at least */ \
954 lba_t32 = READ_U32(l->base_addr + LBA_FUNC_ID); \
955}
956
957LBA_PORT_OUT( 8, 3)
958LBA_PORT_OUT(16, 2)
959LBA_PORT_OUT(32, 0)
960
961
962static struct pci_port_ops lba_pat_port_ops = {
963 .inb = lba_pat_in8,
964 .inw = lba_pat_in16,
965 .inl = lba_pat_in32,
966 .outb = lba_pat_out8,
967 .outw = lba_pat_out16,
968 .outl = lba_pat_out32
969};
970
971
972
973/*
974** make range information from PDC available to PCI subsystem.
975** We make the PDC call here in order to get the PCI bus range
976** numbers. The rest will get forwarded in pcibios_fixup_bus().
977** We don't have a struct pci_bus assigned to us yet.
978*/
979static void
980lba_pat_resources(struct parisc_device *pa_dev, struct lba_device *lba_dev)
981{
982 unsigned long bytecnt;
1da177e4
LT
983 long io_count;
984 long status; /* PDC return status */
985 long pa_count;
e957f608
GG
986 pdc_pat_cell_mod_maddr_block_t *pa_pdc_cell; /* PA_VIEW */
987 pdc_pat_cell_mod_maddr_block_t *io_pdc_cell; /* IO_VIEW */
1da177e4
LT
988 int i;
989
e957f608
GG
990 pa_pdc_cell = kzalloc(sizeof(pdc_pat_cell_mod_maddr_block_t), GFP_KERNEL);
991 if (!pa_pdc_cell)
992 return;
993
994 io_pdc_cell = kzalloc(sizeof(pdc_pat_cell_mod_maddr_block_t), GFP_KERNEL);
450d6e30 995 if (!io_pdc_cell) {
e957f608
GG
996 kfree(pa_pdc_cell);
997 return;
998 }
999
1da177e4
LT
1000 /* return cell module (IO view) */
1001 status = pdc_pat_cell_module(&bytecnt, pa_dev->pcell_loc, pa_dev->mod_index,
e957f608
GG
1002 PA_VIEW, pa_pdc_cell);
1003 pa_count = pa_pdc_cell->mod[1];
1da177e4
LT
1004
1005 status |= pdc_pat_cell_module(&bytecnt, pa_dev->pcell_loc, pa_dev->mod_index,
e957f608
GG
1006 IO_VIEW, io_pdc_cell);
1007 io_count = io_pdc_cell->mod[1];
1da177e4
LT
1008
1009 /* We've already done this once for device discovery...*/
1010 if (status != PDC_OK) {
1011 panic("pdc_pat_cell_module() call failed for LBA!\n");
1012 }
1013
e957f608 1014 if (PAT_GET_ENTITY(pa_pdc_cell->mod_info) != PAT_ENTITY_LBA) {
1da177e4
LT
1015 panic("pdc_pat_cell_module() entity returned != PAT_ENTITY_LBA!\n");
1016 }
1017
1018 /*
1019 ** Inspect the resources PAT tells us about
1020 */
1021 for (i = 0; i < pa_count; i++) {
1022 struct {
1023 unsigned long type;
1024 unsigned long start;
1025 unsigned long end; /* aka finish */
1026 } *p, *io;
1027 struct resource *r;
1028
e957f608
GG
1029 p = (void *) &(pa_pdc_cell->mod[2+i*3]);
1030 io = (void *) &(io_pdc_cell->mod[2+i*3]);
1da177e4
LT
1031
1032 /* Convert the PAT range data to PCI "struct resource" */
1033 switch(p->type & 0xff) {
1034 case PAT_PBNUM:
1035 lba_dev->hba.bus_num.start = p->start;
1036 lba_dev->hba.bus_num.end = p->end;
30aa80da 1037 lba_dev->hba.bus_num.flags = IORESOURCE_BUS;
1da177e4
LT
1038 break;
1039
1040 case PAT_LMMIO:
1041 /* used to fix up pre-initialized MEM BARs */
b204a4d2 1042 if (!lba_dev->hba.lmmio_space.flags) {
dac76f1b
HD
1043 unsigned long lba_len;
1044
1045 lba_len = ~READ_REG32(lba_dev->hba.base_addr
1046 + LBA_LMMIO_MASK);
1047 if ((p->end - p->start) != lba_len)
1048 p->end = extend_lmmio_len(p->start,
1049 p->end, lba_len);
1050
1da177e4 1051 sprintf(lba_dev->hba.lmmio_name,
645d11d4
MW
1052 "PCI%02x LMMIO",
1053 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1054 lba_dev->hba.lmmio_space_offset = p->start -
1055 io->start;
1056 r = &lba_dev->hba.lmmio_space;
1057 r->name = lba_dev->hba.lmmio_name;
b204a4d2 1058 } else if (!lba_dev->hba.elmmio_space.flags) {
1da177e4 1059 sprintf(lba_dev->hba.elmmio_name,
645d11d4
MW
1060 "PCI%02x ELMMIO",
1061 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1062 r = &lba_dev->hba.elmmio_space;
1063 r->name = lba_dev->hba.elmmio_name;
1064 } else {
1065 printk(KERN_WARNING MODULE_NAME
1066 " only supports 2 LMMIO resources!\n");
1067 break;
1068 }
1069
1070 r->start = p->start;
1071 r->end = p->end;
1072 r->flags = IORESOURCE_MEM;
1073 r->parent = r->sibling = r->child = NULL;
1074 break;
1075
1076 case PAT_GMMIO:
1077 /* MMIO space > 4GB phys addr; for 64-bit BAR */
645d11d4
MW
1078 sprintf(lba_dev->hba.gmmio_name, "PCI%02x GMMIO",
1079 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1080 r = &lba_dev->hba.gmmio_space;
1081 r->name = lba_dev->hba.gmmio_name;
1082 r->start = p->start;
1083 r->end = p->end;
1084 r->flags = IORESOURCE_MEM;
1085 r->parent = r->sibling = r->child = NULL;
1086 break;
1087
1088 case PAT_NPIOP:
1089 printk(KERN_WARNING MODULE_NAME
1090 " range[%d] : ignoring NPIOP (0x%lx)\n",
1091 i, p->start);
1092 break;
1093
1094 case PAT_PIOP:
1095 /*
1096 ** Postable I/O port space is per PCI host adapter.
1097 ** base of 64MB PIOP region
1098 */
5076c158 1099 lba_dev->iop_base = ioremap_nocache(p->start, 64 * 1024 * 1024);
1da177e4 1100
645d11d4
MW
1101 sprintf(lba_dev->hba.io_name, "PCI%02x Ports",
1102 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1103 r = &lba_dev->hba.io_space;
1104 r->name = lba_dev->hba.io_name;
1105 r->start = HBA_PORT_BASE(lba_dev->hba.hba_num);
1106 r->end = r->start + HBA_PORT_SPACE_SIZE - 1;
1107 r->flags = IORESOURCE_IO;
1108 r->parent = r->sibling = r->child = NULL;
1109 break;
1110
1111 default:
1112 printk(KERN_WARNING MODULE_NAME
1113 " range[%d] : unknown pat range type (0x%lx)\n",
1114 i, p->type & 0xff);
1115 break;
1116 }
1117 }
e957f608
GG
1118
1119 kfree(pa_pdc_cell);
1120 kfree(io_pdc_cell);
1da177e4
LT
1121}
1122#else
1123/* keep compiler from complaining about missing declarations */
1124#define lba_pat_port_ops lba_astro_port_ops
1125#define lba_pat_resources(pa_dev, lba_dev)
1126#endif /* CONFIG_64BIT */
1127
1128
1129extern void sba_distributed_lmmio(struct parisc_device *, struct resource *);
1130extern void sba_directed_lmmio(struct parisc_device *, struct resource *);
1131
1132
1133static void
1134lba_legacy_resources(struct parisc_device *pa_dev, struct lba_device *lba_dev)
1135{
1136 struct resource *r;
1137 int lba_num;
1138
1139 lba_dev->hba.lmmio_space_offset = PCI_F_EXTEND;
1140
1141 /*
1142 ** With "legacy" firmware, the lowest byte of FW_SCRATCH
1143 ** represents bus->secondary and the second byte represents
1144 ** bus->subsidiary (i.e. highest PPB programmed by firmware).
1145 ** PCI bus walk *should* end up with the same result.
1146 ** FIXME: But we don't have sanity checks in PCI or LBA.
1147 */
1148 lba_num = READ_REG32(lba_dev->hba.base_addr + LBA_FW_SCRATCH);
1149 r = &(lba_dev->hba.bus_num);
1150 r->name = "LBA PCI Busses";
1151 r->start = lba_num & 0xff;
1152 r->end = (lba_num>>8) & 0xff;
b47d4934 1153 r->flags = IORESOURCE_BUS;
1da177e4
LT
1154
1155 /* Set up local PCI Bus resources - we don't need them for
1156 ** Legacy boxes but it's nice to see in /proc/iomem.
1157 */
1158 r = &(lba_dev->hba.lmmio_space);
645d11d4
MW
1159 sprintf(lba_dev->hba.lmmio_name, "PCI%02x LMMIO",
1160 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1161 r->name = lba_dev->hba.lmmio_name;
1162
1163#if 1
1164 /* We want the CPU -> IO routing of addresses.
1165 * The SBA BASE/MASK registers control CPU -> IO routing.
1166 * Ask SBA what is routed to this rope/LBA.
1167 */
1168 sba_distributed_lmmio(pa_dev, r);
1169#else
1170 /*
1171 * The LBA BASE/MASK registers control IO -> System routing.
1172 *
1173 * The following code works but doesn't get us what we want.
1174 * Well, only because firmware (v5.0) on C3000 doesn't program
1175 * the LBA BASE/MASE registers to be the exact inverse of
1176 * the corresponding SBA registers. Other Astro/Pluto
1177 * based platform firmware may do it right.
1178 *
1179 * Should someone want to mess with MSI, they may need to
1180 * reprogram LBA BASE/MASK registers. Thus preserve the code
1181 * below until MSI is known to work on C3000/A500/N4000/RP3440.
1182 *
1183 * Using the code below, /proc/iomem shows:
1184 * ...
1185 * f0000000-f0ffffff : PCI00 LMMIO
1186 * f05d0000-f05d0000 : lcd_data
1187 * f05d0008-f05d0008 : lcd_cmd
1188 * f1000000-f1ffffff : PCI01 LMMIO
1189 * f4000000-f4ffffff : PCI02 LMMIO
1190 * f4000000-f4001fff : sym53c8xx
1191 * f4002000-f4003fff : sym53c8xx
1192 * f4004000-f40043ff : sym53c8xx
1193 * f4005000-f40053ff : sym53c8xx
1194 * f4007000-f4007fff : ohci_hcd
1195 * f4008000-f40083ff : tulip
1196 * f6000000-f6ffffff : PCI03 LMMIO
1197 * f8000000-fbffffff : PCI00 ELMMIO
1198 * fa100000-fa4fffff : stifb mmio
1199 * fb000000-fb1fffff : stifb fb
1200 *
1201 * But everything listed under PCI02 actually lives under PCI00.
1202 * This is clearly wrong.
1203 *
1204 * Asking SBA how things are routed tells the correct story:
1205 * LMMIO_BASE/MASK/ROUTE f4000001 fc000000 00000000
1206 * DIR0_BASE/MASK/ROUTE fa000001 fe000000 00000006
1207 * DIR1_BASE/MASK/ROUTE f9000001 ff000000 00000004
1208 * DIR2_BASE/MASK/ROUTE f0000000 fc000000 00000000
1209 * DIR3_BASE/MASK/ROUTE f0000000 fc000000 00000000
1210 *
1211 * Which looks like this in /proc/iomem:
1212 * f4000000-f47fffff : PCI00 LMMIO
1213 * f4000000-f4001fff : sym53c8xx
1214 * ...[deteled core devices - same as above]...
1215 * f4008000-f40083ff : tulip
1216 * f4800000-f4ffffff : PCI01 LMMIO
1217 * f6000000-f67fffff : PCI02 LMMIO
1218 * f7000000-f77fffff : PCI03 LMMIO
1219 * f9000000-f9ffffff : PCI02 ELMMIO
1220 * fa000000-fbffffff : PCI03 ELMMIO
1221 * fa100000-fa4fffff : stifb mmio
1222 * fb000000-fb1fffff : stifb fb
1223 *
1224 * ie all Built-in core are under now correctly under PCI00.
1225 * The "PCI02 ELMMIO" directed range is for:
1226 * +-[02]---03.0 3Dfx Interactive, Inc. Voodoo 2
1227 *
1228 * All is well now.
1229 */
1230 r->start = READ_REG32(lba_dev->hba.base_addr + LBA_LMMIO_BASE);
1231 if (r->start & 1) {
1232 unsigned long rsize;
1233
1234 r->flags = IORESOURCE_MEM;
1235 /* mmio_mask also clears Enable bit */
1236 r->start &= mmio_mask;
1237 r->start = PCI_HOST_ADDR(HBA_DATA(lba_dev), r->start);
1238 rsize = ~ READ_REG32(lba_dev->hba.base_addr + LBA_LMMIO_MASK);
1239
1240 /*
1241 ** Each rope only gets part of the distributed range.
1242 ** Adjust "window" for this rope.
1243 */
1244 rsize /= ROPES_PER_IOC;
53f01bba 1245 r->start += (rsize + 1) * LBA_NUM(pa_dev->hpa.start);
1da177e4
LT
1246 r->end = r->start + rsize;
1247 } else {
1248 r->end = r->start = 0; /* Not enabled. */
1249 }
1250#endif
1251
1252 /*
1253 ** "Directed" ranges are used when the "distributed range" isn't
1254 ** sufficient for all devices below a given LBA. Typically devices
1255 ** like graphics cards or X25 may need a directed range when the
1256 ** bus has multiple slots (ie multiple devices) or the device
1257 ** needs more than the typical 4 or 8MB a distributed range offers.
1258 **
1259 ** The main reason for ignoring it now frigging complications.
1260 ** Directed ranges may overlap (and have precedence) over
1261 ** distributed ranges. Or a distributed range assigned to a unused
1262 ** rope may be used by a directed range on a different rope.
1263 ** Support for graphics devices may require fixing this
1264 ** since they may be assigned a directed range which overlaps
1265 ** an existing (but unused portion of) distributed range.
1266 */
1267 r = &(lba_dev->hba.elmmio_space);
645d11d4
MW
1268 sprintf(lba_dev->hba.elmmio_name, "PCI%02x ELMMIO",
1269 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1270 r->name = lba_dev->hba.elmmio_name;
1271
1272#if 1
1273 /* See comment which precedes call to sba_directed_lmmio() */
1274 sba_directed_lmmio(pa_dev, r);
1275#else
1276 r->start = READ_REG32(lba_dev->hba.base_addr + LBA_ELMMIO_BASE);
1277
1278 if (r->start & 1) {
1279 unsigned long rsize;
1280 r->flags = IORESOURCE_MEM;
1281 /* mmio_mask also clears Enable bit */
1282 r->start &= mmio_mask;
1283 r->start = PCI_HOST_ADDR(HBA_DATA(lba_dev), r->start);
1284 rsize = READ_REG32(lba_dev->hba.base_addr + LBA_ELMMIO_MASK);
1285 r->end = r->start + ~rsize;
1286 }
1287#endif
1288
1289 r = &(lba_dev->hba.io_space);
645d11d4
MW
1290 sprintf(lba_dev->hba.io_name, "PCI%02x Ports",
1291 (int)lba_dev->hba.bus_num.start);
1da177e4
LT
1292 r->name = lba_dev->hba.io_name;
1293 r->flags = IORESOURCE_IO;
1294 r->start = READ_REG32(lba_dev->hba.base_addr + LBA_IOS_BASE) & ~1L;
1295 r->end = r->start + (READ_REG32(lba_dev->hba.base_addr + LBA_IOS_MASK) ^ (HBA_PORT_SPACE_SIZE - 1));
1296
1297 /* Virtualize the I/O Port space ranges */
1298 lba_num = HBA_PORT_BASE(lba_dev->hba.hba_num);
1299 r->start |= lba_num;
1300 r->end |= lba_num;
1301}
1302
1303
1304/**************************************************************************
1305**
1306** LBA initialization code (HW and SW)
1307**
1308** o identify LBA chip itself
1309** o initialize LBA chip modes (HardFail)
1310** o FIXME: initialize DMA hints for reasonable defaults
1311** o enable configuration functions
1312** o call pci_register_ops() to discover devs (fixup/fixup_bus get invoked)
1313**
1314**************************************************************************/
1315
1316static int __init
1317lba_hw_init(struct lba_device *d)
1318{
1319 u32 stat;
1320 u32 bus_reset; /* PDC_PAT_BUG */
1321
1322#if 0
1323 printk(KERN_DEBUG "LBA %lx STAT_CTL %Lx ERROR_CFG %Lx STATUS %Lx DMA_CTL %Lx\n",
1324 d->hba.base_addr,
1325 READ_REG64(d->hba.base_addr + LBA_STAT_CTL),
1326 READ_REG64(d->hba.base_addr + LBA_ERROR_CONFIG),
1327 READ_REG64(d->hba.base_addr + LBA_ERROR_STATUS),
1328 READ_REG64(d->hba.base_addr + LBA_DMA_CTL) );
1329 printk(KERN_DEBUG " ARB mask %Lx pri %Lx mode %Lx mtlt %Lx\n",
1330 READ_REG64(d->hba.base_addr + LBA_ARB_MASK),
1331 READ_REG64(d->hba.base_addr + LBA_ARB_PRI),
1332 READ_REG64(d->hba.base_addr + LBA_ARB_MODE),
1333 READ_REG64(d->hba.base_addr + LBA_ARB_MTLT) );
1334 printk(KERN_DEBUG " HINT cfg 0x%Lx\n",
1335 READ_REG64(d->hba.base_addr + LBA_HINT_CFG));
1336 printk(KERN_DEBUG " HINT reg ");
1337 { int i;
1338 for (i=LBA_HINT_BASE; i< (14*8 + LBA_HINT_BASE); i+=8)
1339 printk(" %Lx", READ_REG64(d->hba.base_addr + i));
1340 }
1341 printk("\n");
1342#endif /* DEBUG_LBA_PAT */
1343
1344#ifdef CONFIG_64BIT
1345/*
1346 * FIXME add support for PDC_PAT_IO "Get slot status" - OLAR support
1347 * Only N-Class and up can really make use of Get slot status.
1348 * maybe L-class too but I've never played with it there.
1349 */
1350#endif
1351
1352 /* PDC_PAT_BUG: exhibited in rev 40.48 on L2000 */
1353 bus_reset = READ_REG32(d->hba.base_addr + LBA_STAT_CTL + 4) & 1;
1354 if (bus_reset) {
1355 printk(KERN_DEBUG "NOTICE: PCI bus reset still asserted! (clearing)\n");
1356 }
1357
1358 stat = READ_REG32(d->hba.base_addr + LBA_ERROR_CONFIG);
1359 if (stat & LBA_SMART_MODE) {
1360 printk(KERN_DEBUG "NOTICE: LBA in SMART mode! (cleared)\n");
1361 stat &= ~LBA_SMART_MODE;
1362 WRITE_REG32(stat, d->hba.base_addr + LBA_ERROR_CONFIG);
1363 }
1364
1365 /* Set HF mode as the default (vs. -1 mode). */
1366 stat = READ_REG32(d->hba.base_addr + LBA_STAT_CTL);
1367 WRITE_REG32(stat | HF_ENABLE, d->hba.base_addr + LBA_STAT_CTL);
1368
1369 /*
1370 ** Writing a zero to STAT_CTL.rf (bit 0) will clear reset signal
1371 ** if it's not already set. If we just cleared the PCI Bus Reset
1372 ** signal, wait a bit for the PCI devices to recover and setup.
1373 */
1374 if (bus_reset)
1375 mdelay(pci_post_reset_delay);
1376
1377 if (0 == READ_REG32(d->hba.base_addr + LBA_ARB_MASK)) {
1378 /*
1379 ** PDC_PAT_BUG: PDC rev 40.48 on L2000.
1380 ** B2000/C3600/J6000 also have this problem?
1381 **
1382 ** Elroys with hot pluggable slots don't get configured
1383 ** correctly if the slot is empty. ARB_MASK is set to 0
1384 ** and we can't master transactions on the bus if it's
1385 ** not at least one. 0x3 enables elroy and first slot.
1386 */
1387 printk(KERN_DEBUG "NOTICE: Enabling PCI Arbitration\n");
1388 WRITE_REG32(0x3, d->hba.base_addr + LBA_ARB_MASK);
1389 }
1390
1391 /*
1392 ** FIXME: Hint registers are programmed with default hint
1393 ** values by firmware. Hints should be sane even if we
1394 ** can't reprogram them the way drivers want.
1395 */
1396 return 0;
1397}
1398
353dfe12
MW
1399/*
1400 * Unfortunately, when firmware numbers busses, it doesn't take into account
1401 * Cardbus bridges. So we have to renumber the busses to suit ourselves.
1402 * Elroy/Mercury don't actually know what bus number they're attached to;
1403 * we use bus 0 to indicate the directly attached bus and any other bus
1404 * number will be taken care of by the PCI-PCI bridge.
1405 */
1406static unsigned int lba_next_bus = 0;
1da177e4
LT
1407
1408/*
353dfe12
MW
1409 * Determine if lba should claim this chip (return 0) or not (return 1).
1410 * If so, initialize the chip and tell other partners in crime they
1411 * have work to do.
1412 */
1da177e4
LT
1413static int __init
1414lba_driver_probe(struct parisc_device *dev)
1415{
1416 struct lba_device *lba_dev;
dc7dce28 1417 LIST_HEAD(resources);
1da177e4
LT
1418 struct pci_bus *lba_bus;
1419 struct pci_ops *cfg_ops;
1420 u32 func_class;
1421 void *tmp_obj;
1422 char *version;
5076c158 1423 void __iomem *addr = ioremap_nocache(dev->hpa.start, 4096);
30aa80da 1424 int max;
1da177e4
LT
1425
1426 /* Read HW Rev First */
1427 func_class = READ_REG32(addr + LBA_FCLASS);
1428
1429 if (IS_ELROY(dev)) {
1430 func_class &= 0xf;
1431 switch (func_class) {
1432 case 0: version = "TR1.0"; break;
1433 case 1: version = "TR2.0"; break;
1434 case 2: version = "TR2.1"; break;
1435 case 3: version = "TR2.2"; break;
1436 case 4: version = "TR3.0"; break;
1437 case 5: version = "TR4.0"; break;
1438 default: version = "TR4+";
1439 }
1440
ba9877b6 1441 printk(KERN_INFO "Elroy version %s (0x%x) found at 0x%lx\n",
645d11d4 1442 version, func_class & 0xf, (long)dev->hpa.start);
1da177e4
LT
1443
1444 if (func_class < 2) {
1445 printk(KERN_WARNING "Can't support LBA older than "
1446 "TR2.1 - continuing under adversity.\n");
1447 }
1448
1449#if 0
1450/* Elroy TR4.0 should work with simple algorithm.
1451 But it doesn't. Still missing something. *sigh*
1452*/
1453 if (func_class > 4) {
1454 cfg_ops = &mercury_cfg_ops;
1455 } else
1456#endif
1457 {
1458 cfg_ops = &elroy_cfg_ops;
1459 }
1460
1461 } else if (IS_MERCURY(dev) || IS_QUICKSILVER(dev)) {
ba9877b6
KM
1462 int major, minor;
1463
1da177e4 1464 func_class &= 0xff;
ba9877b6
KM
1465 major = func_class >> 4, minor = func_class & 0xf;
1466
1da177e4
LT
1467 /* We could use one printk for both Elroy and Mercury,
1468 * but for the mask for func_class.
1469 */
ba9877b6
KM
1470 printk(KERN_INFO "%s version TR%d.%d (0x%x) found at 0x%lx\n",
1471 IS_MERCURY(dev) ? "Mercury" : "Quicksilver", major,
645d11d4 1472 minor, func_class, (long)dev->hpa.start);
ba9877b6 1473
1da177e4
LT
1474 cfg_ops = &mercury_cfg_ops;
1475 } else {
645d11d4
MW
1476 printk(KERN_ERR "Unknown LBA found at 0x%lx\n",
1477 (long)dev->hpa.start);
1da177e4
LT
1478 return -ENODEV;
1479 }
1480
353dfe12 1481 /* Tell I/O SAPIC driver we have a IRQ handler/region. */
53f01bba 1482 tmp_obj = iosapic_register(dev->hpa.start + LBA_IOSAPIC_BASE);
1da177e4
LT
1483
1484 /* NOTE: PCI devices (e.g. 103c:1005 graphics card) which don't
1485 ** have an IRT entry will get NULL back from iosapic code.
1486 */
1487
cb6fc18e 1488 lba_dev = kzalloc(sizeof(struct lba_device), GFP_KERNEL);
1da177e4
LT
1489 if (!lba_dev) {
1490 printk(KERN_ERR "lba_init_chip - couldn't alloc lba_device\n");
1491 return(1);
1492 }
1493
1da177e4
LT
1494
1495 /* ---------- First : initialize data we already have --------- */
1496
1497 lba_dev->hw_rev = func_class;
1498 lba_dev->hba.base_addr = addr;
1499 lba_dev->hba.dev = dev;
1500 lba_dev->iosapic_obj = tmp_obj; /* save interrupt handle */
1501 lba_dev->hba.iommu = sba_get_iommu(dev); /* get iommu data */
b0eecc4d 1502 parisc_set_drvdata(dev, lba_dev);
1da177e4
LT
1503
1504 /* ------------ Second : initialize common stuff ---------- */
1505 pci_bios = &lba_bios_ops;
1506 pcibios_register_hba(HBA_DATA(lba_dev));
1507 spin_lock_init(&lba_dev->lba_lock);
1508
1509 if (lba_hw_init(lba_dev))
1510 return(1);
1511
1512 /* ---------- Third : setup I/O Port and MMIO resources --------- */
1513
1514 if (is_pdc_pat()) {
1515 /* PDC PAT firmware uses PIOP region of GMMIO space. */
1516 pci_port = &lba_pat_port_ops;
1517 /* Go ask PDC PAT what resources this LBA has */
1518 lba_pat_resources(dev, lba_dev);
1519 } else {
1520 if (!astro_iop_base) {
1521 /* Sprockets PDC uses NPIOP region */
5076c158 1522 astro_iop_base = ioremap_nocache(LBA_PORT_BASE, 64 * 1024);
1da177e4
LT
1523 pci_port = &lba_astro_port_ops;
1524 }
1525
1526 /* Poke the chip a bit for /proc output */
1527 lba_legacy_resources(dev, lba_dev);
1528 }
1529
353dfe12
MW
1530 if (lba_dev->hba.bus_num.start < lba_next_bus)
1531 lba_dev->hba.bus_num.start = lba_next_bus;
1532
f4d9ea9a
BH
1533 /* Overlaps with elmmio can (and should) fail here.
1534 * We will prune (or ignore) the distributed range.
1535 *
1536 * FIXME: SBA code should register all elmmio ranges first.
1537 * that would take care of elmmio ranges routed
1538 * to a different rope (already discovered) from
1539 * getting registered *after* LBA code has already
1540 * registered it's distributed lmmio range.
1541 */
1542 if (truncate_pat_collision(&iomem_resource,
1543 &(lba_dev->hba.lmmio_space))) {
1544 printk(KERN_WARNING "LBA: lmmio_space [%lx/%lx] duplicate!\n",
1545 (long)lba_dev->hba.lmmio_space.start,
1546 (long)lba_dev->hba.lmmio_space.end);
1547 lba_dev->hba.lmmio_space.flags = 0;
1548 }
1549
39c2462e
BH
1550 pci_add_resource_offset(&resources, &lba_dev->hba.io_space,
1551 HBA_PORT_BASE(lba_dev->hba.hba_num));
b204a4d2 1552 if (lba_dev->hba.elmmio_space.flags)
39c2462e
BH
1553 pci_add_resource_offset(&resources, &lba_dev->hba.elmmio_space,
1554 lba_dev->hba.lmmio_space_offset);
dc7dce28 1555 if (lba_dev->hba.lmmio_space.flags)
39c2462e
BH
1556 pci_add_resource_offset(&resources, &lba_dev->hba.lmmio_space,
1557 lba_dev->hba.lmmio_space_offset);
dc7dce28
BH
1558 if (lba_dev->hba.gmmio_space.flags)
1559 pci_add_resource(&resources, &lba_dev->hba.gmmio_space);
1560
30aa80da
YL
1561 pci_add_resource(&resources, &lba_dev->hba.bus_num);
1562
1da177e4
LT
1563 dev->dev.platform_data = lba_dev;
1564 lba_bus = lba_dev->hba.hba_bus =
dc7dce28
BH
1565 pci_create_root_bus(&dev->dev, lba_dev->hba.bus_num.start,
1566 cfg_ops, NULL, &resources);
1567 if (!lba_bus) {
1568 pci_free_resource_list(&resources);
42605fa6 1569 return 0;
dc7dce28 1570 }
42605fa6 1571
30aa80da 1572 max = pci_scan_child_bus(lba_bus);
1da177e4
LT
1573
1574 /* This is in lieu of calling pci_assign_unassigned_resources() */
1575 if (is_pdc_pat()) {
1576 /* assign resources to un-initialized devices */
1577
1578 DBG_PAT("LBA pci_bus_size_bridges()\n");
1579 pci_bus_size_bridges(lba_bus);
1580
1581 DBG_PAT("LBA pci_bus_assign_resources()\n");
1582 pci_bus_assign_resources(lba_bus);
1583
1584#ifdef DEBUG_LBA_PAT
1585 DBG_PAT("\nLBA PIOP resource tree\n");
1586 lba_dump_res(&lba_dev->hba.io_space, 2);
1587 DBG_PAT("\nLBA LMMIO resource tree\n");
1588 lba_dump_res(&lba_dev->hba.lmmio_space, 2);
1589#endif
1590 }
1da177e4 1591
1da177e4
LT
1592 /*
1593 ** Once PCI register ops has walked the bus, access to config
1594 ** space is restricted. Avoids master aborts on config cycles.
1595 ** Early LBA revs go fatal on *any* master abort.
1596 */
1597 if (cfg_ops == &elroy_cfg_ops) {
1598 lba_dev->flags |= LBA_FLAG_SKIP_PROBE;
1599 }
1600
30aa80da 1601 lba_next_bus = max + 1;
42605fa6 1602 pci_bus_add_devices(lba_bus);
fed99b1e 1603
1da177e4
LT
1604 /* Whew! Finally done! Tell services we got this one covered. */
1605 return 0;
1606}
1607
1608static struct parisc_device_id lba_tbl[] = {
1609 { HPHW_BRIDGE, HVERSION_REV_ANY_ID, ELROY_HVERS, 0xa },
1610 { HPHW_BRIDGE, HVERSION_REV_ANY_ID, MERCURY_HVERS, 0xa },
1611 { HPHW_BRIDGE, HVERSION_REV_ANY_ID, QUICKSILVER_HVERS, 0xa },
1612 { 0, }
1613};
1614
1615static struct parisc_driver lba_driver = {
1616 .name = MODULE_NAME,
1617 .id_table = lba_tbl,
1618 .probe = lba_driver_probe,
1619};
1620
1621/*
1622** One time initialization to let the world know the LBA was found.
1623** Must be called exactly once before pci_init().
1624*/
1625void __init lba_init(void)
1626{
1627 register_parisc_driver(&lba_driver);
1628}
1629
1630/*
1631** Initialize the IBASE/IMASK registers for LBA (Elroy).
1632** Only called from sba_iommu.c in order to route ranges (MMIO vs DMA).
1633** sba_iommu is responsible for locking (none needed at init time).
1634*/
1635void lba_set_iregs(struct parisc_device *lba, u32 ibase, u32 imask)
1636{
5076c158 1637 void __iomem * base_addr = ioremap_nocache(lba->hpa.start, 4096);
1da177e4
LT
1638
1639 imask <<= 2; /* adjust for hints - 2 more bits */
1640
1641 /* Make sure we aren't trying to set bits that aren't writeable. */
1642 WARN_ON((ibase & 0x001fffff) != 0);
1643 WARN_ON((imask & 0x001fffff) != 0);
1644
a8043ecb 1645 DBG("%s() ibase 0x%x imask 0x%x\n", __func__, ibase, imask);
1da177e4
LT
1646 WRITE_REG32( imask, base_addr + LBA_IMASK);
1647 WRITE_REG32( ibase, base_addr + LBA_IBASE);
1648 iounmap(base_addr);
1649}
1650