blob: 017b6142caca05554346c0228188aa0784d8d5b3 [file] [log] [blame]
Geoff Levandf58a9d12006-11-23 00:46:51 +01001/*
2 * PS3 address space management.
3 *
4 * Copyright (C) 2006 Sony Computer Entertainment Inc.
5 * Copyright 2006 Sony Corp.
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; version 2 of the License.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 */
20
21#include <linux/kernel.h>
22#include <linux/module.h>
23#include <linux/memory_hotplug.h>
David S. Millerd9b2b2a2008-02-13 16:56:49 -080024#include <linux/lmb.h>
Geoff Levandf58a9d12006-11-23 00:46:51 +010025
Arnd Bergmanne22ba7e2006-11-27 19:18:57 +010026#include <asm/firmware.h>
Geert Uytterhoeven5c6fc8d2009-06-10 04:38:45 +000027#include <asm/iommu.h>
David S. Millerd9b2b2a2008-02-13 16:56:49 -080028#include <asm/prom.h>
Geoff Levandf58a9d12006-11-23 00:46:51 +010029#include <asm/udbg.h>
Geoff Levandf58a9d12006-11-23 00:46:51 +010030#include <asm/lv1call.h>
31
32#include "platform.h"
33
34#if defined(DEBUG)
Geert Uytterhoeven83bb6432007-06-16 07:19:23 +100035#define DBG udbg_printf
Geoff Levandf58a9d12006-11-23 00:46:51 +010036#else
Geert Uytterhoeven83bb6432007-06-16 07:19:23 +100037#define DBG pr_debug
Geoff Levandf58a9d12006-11-23 00:46:51 +010038#endif
39
40enum {
Geoff Levandf58a9d12006-11-23 00:46:51 +010041#if defined(CONFIG_PS3_DYNAMIC_DMA)
42 USE_DYNAMIC_DMA = 1,
43#else
44 USE_DYNAMIC_DMA = 0,
45#endif
46};
47
48enum {
49 PAGE_SHIFT_4K = 12U,
50 PAGE_SHIFT_64K = 16U,
51 PAGE_SHIFT_16M = 24U,
52};
53
54static unsigned long make_page_sizes(unsigned long a, unsigned long b)
55{
56 return (a << 56) | (b << 48);
57}
58
59enum {
60 ALLOCATE_MEMORY_TRY_ALT_UNIT = 0X04,
61 ALLOCATE_MEMORY_ADDR_ZERO = 0X08,
62};
63
64/* valid htab sizes are {18,19,20} = 256K, 512K, 1M */
65
66enum {
67 HTAB_SIZE_MAX = 20U, /* HV limit of 1MB */
68 HTAB_SIZE_MIN = 18U, /* CPU limit of 256KB */
69};
70
71/*============================================================================*/
72/* virtual address space routines */
73/*============================================================================*/
74
75/**
76 * struct mem_region - memory region structure
77 * @base: base address
78 * @size: size in bytes
79 * @offset: difference between base and rm.size
80 */
81
82struct mem_region {
Stephen Rothwellb17b3df2009-01-13 19:59:41 +000083 u64 base;
Stephen Rothwell5418b9c2009-01-13 20:01:28 +000084 u64 size;
Geoff Levandf58a9d12006-11-23 00:46:51 +010085 unsigned long offset;
86};
87
88/**
89 * struct map - address space state variables holder
90 * @total: total memory available as reported by HV
91 * @vas_id - HV virtual address space id
92 * @htab_size: htab size in bytes
93 *
94 * The HV virtual address space (vas) allows for hotplug memory regions.
95 * Memory regions can be created and destroyed in the vas at runtime.
96 * @rm: real mode (bootmem) region
97 * @r1: hotplug memory region(s)
98 *
99 * ps3 addresses
100 * virt_addr: a cpu 'translated' effective address
101 * phys_addr: an address in what Linux thinks is the physical address space
102 * lpar_addr: an address in the HV virtual address space
103 * bus_addr: an io controller 'translated' address on a device bus
104 */
105
106struct map {
Stephen Rothwell5418b9c2009-01-13 20:01:28 +0000107 u64 total;
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000108 u64 vas_id;
109 u64 htab_size;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100110 struct mem_region rm;
111 struct mem_region r1;
112};
113
114#define debug_dump_map(x) _debug_dump_map(x, __func__, __LINE__)
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000115static void __maybe_unused _debug_dump_map(const struct map *m,
116 const char *func, int line)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100117{
Stephen Rothwell5418b9c2009-01-13 20:01:28 +0000118 DBG("%s:%d: map.total = %llxh\n", func, line, m->total);
119 DBG("%s:%d: map.rm.size = %llxh\n", func, line, m->rm.size);
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000120 DBG("%s:%d: map.vas_id = %llu\n", func, line, m->vas_id);
121 DBG("%s:%d: map.htab_size = %llxh\n", func, line, m->htab_size);
122 DBG("%s:%d: map.r1.base = %llxh\n", func, line, m->r1.base);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100123 DBG("%s:%d: map.r1.offset = %lxh\n", func, line, m->r1.offset);
Stephen Rothwell5418b9c2009-01-13 20:01:28 +0000124 DBG("%s:%d: map.r1.size = %llxh\n", func, line, m->r1.size);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100125}
126
127static struct map map;
128
129/**
130 * ps3_mm_phys_to_lpar - translate a linux physical address to lpar address
131 * @phys_addr: linux physical address
132 */
133
134unsigned long ps3_mm_phys_to_lpar(unsigned long phys_addr)
135{
136 BUG_ON(is_kernel_addr(phys_addr));
Geoff Levanda628df12008-01-19 07:32:59 +1100137 return (phys_addr < map.rm.size || phys_addr >= map.total)
138 ? phys_addr : phys_addr + map.r1.offset;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100139}
140
141EXPORT_SYMBOL(ps3_mm_phys_to_lpar);
142
143/**
144 * ps3_mm_vas_create - create the virtual address space
145 */
146
147void __init ps3_mm_vas_create(unsigned long* htab_size)
148{
149 int result;
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000150 u64 start_address;
151 u64 size;
152 u64 access_right;
153 u64 max_page_size;
154 u64 flags;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100155
156 result = lv1_query_logical_partition_address_region_info(0,
157 &start_address, &size, &access_right, &max_page_size,
158 &flags);
159
160 if (result) {
161 DBG("%s:%d: lv1_query_logical_partition_address_region_info "
162 "failed: %s\n", __func__, __LINE__,
163 ps3_result(result));
164 goto fail;
165 }
166
167 if (max_page_size < PAGE_SHIFT_16M) {
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000168 DBG("%s:%d: bad max_page_size %llxh\n", __func__, __LINE__,
Geoff Levandf58a9d12006-11-23 00:46:51 +0100169 max_page_size);
170 goto fail;
171 }
172
173 BUILD_BUG_ON(CONFIG_PS3_HTAB_SIZE > HTAB_SIZE_MAX);
174 BUILD_BUG_ON(CONFIG_PS3_HTAB_SIZE < HTAB_SIZE_MIN);
175
176 result = lv1_construct_virtual_address_space(CONFIG_PS3_HTAB_SIZE,
177 2, make_page_sizes(PAGE_SHIFT_16M, PAGE_SHIFT_64K),
178 &map.vas_id, &map.htab_size);
179
180 if (result) {
181 DBG("%s:%d: lv1_construct_virtual_address_space failed: %s\n",
182 __func__, __LINE__, ps3_result(result));
183 goto fail;
184 }
185
186 result = lv1_select_virtual_address_space(map.vas_id);
187
188 if (result) {
189 DBG("%s:%d: lv1_select_virtual_address_space failed: %s\n",
190 __func__, __LINE__, ps3_result(result));
191 goto fail;
192 }
193
194 *htab_size = map.htab_size;
195
196 debug_dump_map(&map);
197
198 return;
199
200fail:
201 panic("ps3_mm_vas_create failed");
202}
203
204/**
205 * ps3_mm_vas_destroy -
206 */
207
208void ps3_mm_vas_destroy(void)
209{
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000210 int result;
211
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000212 DBG("%s:%d: map.vas_id = %llu\n", __func__, __LINE__, map.vas_id);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000213
Geoff Levandf58a9d12006-11-23 00:46:51 +0100214 if (map.vas_id) {
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000215 result = lv1_select_virtual_address_space(0);
216 BUG_ON(result);
217 result = lv1_destruct_virtual_address_space(map.vas_id);
218 BUG_ON(result);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100219 map.vas_id = 0;
220 }
221}
222
223/*============================================================================*/
224/* memory hotplug routines */
225/*============================================================================*/
226
227/**
228 * ps3_mm_region_create - create a memory region in the vas
229 * @r: pointer to a struct mem_region to accept initialized values
230 * @size: requested region size
231 *
232 * This implementation creates the region with the vas large page size.
233 * @size is rounded down to a multiple of the vas large page size.
234 */
235
Geert Uytterhoeven32f44a12007-06-16 08:07:23 +1000236static int ps3_mm_region_create(struct mem_region *r, unsigned long size)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100237{
238 int result;
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000239 u64 muid;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100240
241 r->size = _ALIGN_DOWN(size, 1 << PAGE_SHIFT_16M);
242
243 DBG("%s:%d requested %lxh\n", __func__, __LINE__, size);
Stephen Rothwell5418b9c2009-01-13 20:01:28 +0000244 DBG("%s:%d actual %llxh\n", __func__, __LINE__, r->size);
245 DBG("%s:%d difference %llxh (%lluMB)\n", __func__, __LINE__,
246 size - r->size, (size - r->size) / 1024 / 1024);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100247
248 if (r->size == 0) {
249 DBG("%s:%d: size == 0\n", __func__, __LINE__);
250 result = -1;
251 goto zero_region;
252 }
253
254 result = lv1_allocate_memory(r->size, PAGE_SHIFT_16M, 0,
255 ALLOCATE_MEMORY_TRY_ALT_UNIT, &r->base, &muid);
256
257 if (result || r->base < map.rm.size) {
258 DBG("%s:%d: lv1_allocate_memory failed: %s\n",
259 __func__, __LINE__, ps3_result(result));
260 goto zero_region;
261 }
262
263 r->offset = r->base - map.rm.size;
264 return result;
265
266zero_region:
267 r->size = r->base = r->offset = 0;
268 return result;
269}
270
271/**
272 * ps3_mm_region_destroy - destroy a memory region
273 * @r: pointer to struct mem_region
274 */
275
Geert Uytterhoeven32f44a12007-06-16 08:07:23 +1000276static void ps3_mm_region_destroy(struct mem_region *r)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100277{
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000278 int result;
279
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000280 DBG("%s:%d: r->base = %llxh\n", __func__, __LINE__, r->base);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100281 if (r->base) {
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000282 result = lv1_release_memory(r->base);
283 BUG_ON(result);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100284 r->size = r->base = r->offset = 0;
285 map.total = map.rm.size;
286 }
287}
288
289/**
290 * ps3_mm_add_memory - hot add memory
291 */
292
293static int __init ps3_mm_add_memory(void)
294{
295 int result;
296 unsigned long start_addr;
297 unsigned long start_pfn;
298 unsigned long nr_pages;
299
Arnd Bergmanne22ba7e2006-11-27 19:18:57 +0100300 if (!firmware_has_feature(FW_FEATURE_PS3_LV1))
Geert Uytterhoevenef596c62007-03-10 00:05:38 +0100301 return -ENODEV;
Arnd Bergmanne22ba7e2006-11-27 19:18:57 +0100302
Geoff Levandf58a9d12006-11-23 00:46:51 +0100303 BUG_ON(!mem_init_done);
304
Geoff Levanda628df12008-01-19 07:32:59 +1100305 start_addr = map.rm.size;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100306 start_pfn = start_addr >> PAGE_SHIFT;
307 nr_pages = (map.r1.size + PAGE_SIZE - 1) >> PAGE_SHIFT;
308
309 DBG("%s:%d: start_addr %lxh, start_pfn %lxh, nr_pages %lxh\n",
310 __func__, __LINE__, start_addr, start_pfn, nr_pages);
311
312 result = add_memory(0, start_addr, map.r1.size);
313
314 if (result) {
Geoff Levand9146cfc2009-03-03 08:33:06 +0000315 pr_err("%s:%d: add_memory failed: (%d)\n",
Geoff Levandf58a9d12006-11-23 00:46:51 +0100316 __func__, __LINE__, result);
317 return result;
318 }
319
Geoff Levandecc240f2008-05-16 06:09:59 +1000320 lmb_add(start_addr, map.r1.size);
321 lmb_analyze();
322
Geoff Levandf58a9d12006-11-23 00:46:51 +0100323 result = online_pages(start_pfn, nr_pages);
324
325 if (result)
Geoff Levand9146cfc2009-03-03 08:33:06 +0000326 pr_err("%s:%d: online_pages failed: (%d)\n",
Geoff Levandf58a9d12006-11-23 00:46:51 +0100327 __func__, __LINE__, result);
328
329 return result;
330}
331
Geoff Levand00476562009-02-12 12:36:16 +0000332device_initcall(ps3_mm_add_memory);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100333
334/*============================================================================*/
335/* dma routines */
336/*============================================================================*/
337
338/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000339 * dma_sb_lpar_to_bus - Translate an lpar address to ioc mapped bus address.
Geoff Levandf58a9d12006-11-23 00:46:51 +0100340 * @r: pointer to dma region structure
341 * @lpar_addr: HV lpar address
342 */
343
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000344static unsigned long dma_sb_lpar_to_bus(struct ps3_dma_region *r,
Geoff Levandf58a9d12006-11-23 00:46:51 +0100345 unsigned long lpar_addr)
346{
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000347 if (lpar_addr >= map.rm.size)
348 lpar_addr -= map.r1.offset;
349 BUG_ON(lpar_addr < r->offset);
350 BUG_ON(lpar_addr >= r->offset + r->len);
351 return r->bus_addr + lpar_addr - r->offset;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100352}
353
354#define dma_dump_region(_a) _dma_dump_region(_a, __func__, __LINE__)
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000355static void __maybe_unused _dma_dump_region(const struct ps3_dma_region *r,
356 const char *func, int line)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100357{
Stephen Rothwell5c949072009-01-13 20:02:39 +0000358 DBG("%s:%d: dev %llu:%llu\n", func, line, r->dev->bus_id,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000359 r->dev->dev_id);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100360 DBG("%s:%d: page_size %u\n", func, line, r->page_size);
361 DBG("%s:%d: bus_addr %lxh\n", func, line, r->bus_addr);
362 DBG("%s:%d: len %lxh\n", func, line, r->len);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000363 DBG("%s:%d: offset %lxh\n", func, line, r->offset);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100364}
365
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000366 /**
Geoff Levandf58a9d12006-11-23 00:46:51 +0100367 * dma_chunk - A chunk of dma pages mapped by the io controller.
368 * @region - The dma region that owns this chunk.
369 * @lpar_addr: Starting lpar address of the area to map.
370 * @bus_addr: Starting ioc bus address of the area to map.
371 * @len: Length in bytes of the area to map.
372 * @link: A struct list_head used with struct ps3_dma_region.chunk_list, the
373 * list of all chuncks owned by the region.
374 *
375 * This implementation uses a very simple dma page manager
376 * based on the dma_chunk structure. This scheme assumes
377 * that all drivers use very well behaved dma ops.
378 */
379
380struct dma_chunk {
381 struct ps3_dma_region *region;
382 unsigned long lpar_addr;
383 unsigned long bus_addr;
384 unsigned long len;
385 struct list_head link;
386 unsigned int usage_count;
387};
388
389#define dma_dump_chunk(_a) _dma_dump_chunk(_a, __func__, __LINE__)
390static void _dma_dump_chunk (const struct dma_chunk* c, const char* func,
391 int line)
392{
Stephen Rothwell5c949072009-01-13 20:02:39 +0000393 DBG("%s:%d: r.dev %llu:%llu\n", func, line,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000394 c->region->dev->bus_id, c->region->dev->dev_id);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100395 DBG("%s:%d: r.bus_addr %lxh\n", func, line, c->region->bus_addr);
396 DBG("%s:%d: r.page_size %u\n", func, line, c->region->page_size);
397 DBG("%s:%d: r.len %lxh\n", func, line, c->region->len);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000398 DBG("%s:%d: r.offset %lxh\n", func, line, c->region->offset);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100399 DBG("%s:%d: c.lpar_addr %lxh\n", func, line, c->lpar_addr);
400 DBG("%s:%d: c.bus_addr %lxh\n", func, line, c->bus_addr);
401 DBG("%s:%d: c.len %lxh\n", func, line, c->len);
402}
403
404static struct dma_chunk * dma_find_chunk(struct ps3_dma_region *r,
405 unsigned long bus_addr, unsigned long len)
406{
407 struct dma_chunk *c;
408 unsigned long aligned_bus = _ALIGN_DOWN(bus_addr, 1 << r->page_size);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000409 unsigned long aligned_len = _ALIGN_UP(len+bus_addr-aligned_bus,
410 1 << r->page_size);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100411
412 list_for_each_entry(c, &r->chunk_list.head, link) {
413 /* intersection */
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000414 if (aligned_bus >= c->bus_addr &&
415 aligned_bus + aligned_len <= c->bus_addr + c->len)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100416 return c;
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000417
Geoff Levandf58a9d12006-11-23 00:46:51 +0100418 /* below */
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000419 if (aligned_bus + aligned_len <= c->bus_addr)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100420 continue;
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000421
Geoff Levandf58a9d12006-11-23 00:46:51 +0100422 /* above */
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000423 if (aligned_bus >= c->bus_addr + c->len)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100424 continue;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100425
426 /* we don't handle the multi-chunk case for now */
Geoff Levandf58a9d12006-11-23 00:46:51 +0100427 dma_dump_chunk(c);
428 BUG();
429 }
430 return NULL;
431}
432
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000433static struct dma_chunk *dma_find_chunk_lpar(struct ps3_dma_region *r,
434 unsigned long lpar_addr, unsigned long len)
435{
436 struct dma_chunk *c;
437 unsigned long aligned_lpar = _ALIGN_DOWN(lpar_addr, 1 << r->page_size);
438 unsigned long aligned_len = _ALIGN_UP(len + lpar_addr - aligned_lpar,
439 1 << r->page_size);
440
441 list_for_each_entry(c, &r->chunk_list.head, link) {
442 /* intersection */
443 if (c->lpar_addr <= aligned_lpar &&
444 aligned_lpar < c->lpar_addr + c->len) {
445 if (aligned_lpar + aligned_len <= c->lpar_addr + c->len)
446 return c;
447 else {
448 dma_dump_chunk(c);
449 BUG();
450 }
451 }
452 /* below */
453 if (aligned_lpar + aligned_len <= c->lpar_addr) {
454 continue;
455 }
456 /* above */
457 if (c->lpar_addr + c->len <= aligned_lpar) {
458 continue;
459 }
460 }
461 return NULL;
462}
463
464static int dma_sb_free_chunk(struct dma_chunk *c)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100465{
466 int result = 0;
467
468 if (c->bus_addr) {
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000469 result = lv1_unmap_device_dma_region(c->region->dev->bus_id,
470 c->region->dev->dev_id, c->bus_addr, c->len);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100471 BUG_ON(result);
472 }
473
474 kfree(c);
475 return result;
476}
477
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000478static int dma_ioc0_free_chunk(struct dma_chunk *c)
479{
480 int result = 0;
481 int iopage;
482 unsigned long offset;
483 struct ps3_dma_region *r = c->region;
484
485 DBG("%s:start\n", __func__);
486 for (iopage = 0; iopage < (c->len >> r->page_size); iopage++) {
487 offset = (1 << r->page_size) * iopage;
488 /* put INVALID entry */
489 result = lv1_put_iopte(0,
490 c->bus_addr + offset,
491 c->lpar_addr + offset,
492 r->ioid,
493 0);
494 DBG("%s: bus=%#lx, lpar=%#lx, ioid=%d\n", __func__,
495 c->bus_addr + offset,
496 c->lpar_addr + offset,
497 r->ioid);
498
499 if (result) {
500 DBG("%s:%d: lv1_put_iopte failed: %s\n", __func__,
501 __LINE__, ps3_result(result));
502 }
503 }
504 kfree(c);
505 DBG("%s:end\n", __func__);
506 return result;
507}
508
Geoff Levandf58a9d12006-11-23 00:46:51 +0100509/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000510 * dma_sb_map_pages - Maps dma pages into the io controller bus address space.
Geoff Levandf58a9d12006-11-23 00:46:51 +0100511 * @r: Pointer to a struct ps3_dma_region.
512 * @phys_addr: Starting physical address of the area to map.
513 * @len: Length in bytes of the area to map.
514 * c_out: A pointer to receive an allocated struct dma_chunk for this area.
515 *
516 * This is the lowest level dma mapping routine, and is the one that will
517 * make the HV call to add the pages into the io controller address space.
518 */
519
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000520static int dma_sb_map_pages(struct ps3_dma_region *r, unsigned long phys_addr,
521 unsigned long len, struct dma_chunk **c_out, u64 iopte_flag)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100522{
523 int result;
524 struct dma_chunk *c;
525
526 c = kzalloc(sizeof(struct dma_chunk), GFP_ATOMIC);
527
528 if (!c) {
529 result = -ENOMEM;
530 goto fail_alloc;
531 }
532
533 c->region = r;
534 c->lpar_addr = ps3_mm_phys_to_lpar(phys_addr);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000535 c->bus_addr = dma_sb_lpar_to_bus(r, c->lpar_addr);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100536 c->len = len;
537
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000538 BUG_ON(iopte_flag != 0xf800000000000000UL);
539 result = lv1_map_device_dma_region(c->region->dev->bus_id,
540 c->region->dev->dev_id, c->lpar_addr,
541 c->bus_addr, c->len, iopte_flag);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100542 if (result) {
543 DBG("%s:%d: lv1_map_device_dma_region failed: %s\n",
544 __func__, __LINE__, ps3_result(result));
545 goto fail_map;
546 }
547
548 list_add(&c->link, &r->chunk_list.head);
549
550 *c_out = c;
551 return 0;
552
553fail_map:
554 kfree(c);
555fail_alloc:
556 *c_out = NULL;
557 DBG(" <- %s:%d\n", __func__, __LINE__);
558 return result;
559}
560
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000561static int dma_ioc0_map_pages(struct ps3_dma_region *r, unsigned long phys_addr,
562 unsigned long len, struct dma_chunk **c_out,
563 u64 iopte_flag)
564{
565 int result;
566 struct dma_chunk *c, *last;
567 int iopage, pages;
568 unsigned long offset;
569
570 DBG(KERN_ERR "%s: phy=%#lx, lpar%#lx, len=%#lx\n", __func__,
571 phys_addr, ps3_mm_phys_to_lpar(phys_addr), len);
572 c = kzalloc(sizeof(struct dma_chunk), GFP_ATOMIC);
573
574 if (!c) {
575 result = -ENOMEM;
576 goto fail_alloc;
577 }
578
579 c->region = r;
580 c->len = len;
581 c->lpar_addr = ps3_mm_phys_to_lpar(phys_addr);
582 /* allocate IO address */
583 if (list_empty(&r->chunk_list.head)) {
584 /* first one */
585 c->bus_addr = r->bus_addr;
586 } else {
587 /* derive from last bus addr*/
588 last = list_entry(r->chunk_list.head.next,
589 struct dma_chunk, link);
590 c->bus_addr = last->bus_addr + last->len;
591 DBG("%s: last bus=%#lx, len=%#lx\n", __func__,
592 last->bus_addr, last->len);
593 }
594
595 /* FIXME: check whether length exceeds region size */
596
597 /* build ioptes for the area */
598 pages = len >> r->page_size;
Stephen Rothwell5c949072009-01-13 20:02:39 +0000599 DBG("%s: pgsize=%#x len=%#lx pages=%#x iopteflag=%#llx\n", __func__,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000600 r->page_size, r->len, pages, iopte_flag);
601 for (iopage = 0; iopage < pages; iopage++) {
602 offset = (1 << r->page_size) * iopage;
603 result = lv1_put_iopte(0,
604 c->bus_addr + offset,
605 c->lpar_addr + offset,
606 r->ioid,
607 iopte_flag);
608 if (result) {
609 printk(KERN_WARNING "%s:%d: lv1_map_device_dma_region "
610 "failed: %s\n", __func__, __LINE__,
611 ps3_result(result));
612 goto fail_map;
613 }
614 DBG("%s: pg=%d bus=%#lx, lpar=%#lx, ioid=%#x\n", __func__,
615 iopage, c->bus_addr + offset, c->lpar_addr + offset,
616 r->ioid);
617 }
618
619 /* be sure that last allocated one is inserted at head */
620 list_add(&c->link, &r->chunk_list.head);
621
622 *c_out = c;
623 DBG("%s: end\n", __func__);
624 return 0;
625
626fail_map:
627 for (iopage--; 0 <= iopage; iopage--) {
628 lv1_put_iopte(0,
629 c->bus_addr + offset,
630 c->lpar_addr + offset,
631 r->ioid,
632 0);
633 }
634 kfree(c);
635fail_alloc:
636 *c_out = NULL;
637 return result;
638}
639
Geoff Levandf58a9d12006-11-23 00:46:51 +0100640/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000641 * dma_sb_region_create - Create a device dma region.
Geoff Levandf58a9d12006-11-23 00:46:51 +0100642 * @r: Pointer to a struct ps3_dma_region.
643 *
644 * This is the lowest level dma region create routine, and is the one that
645 * will make the HV call to create the region.
646 */
647
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000648static int dma_sb_region_create(struct ps3_dma_region *r)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100649{
650 int result;
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000651 u64 bus_addr;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100652
Geoff Levand62d80742008-12-03 13:52:15 +0000653 DBG(" -> %s:%d:\n", __func__, __LINE__);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000654
655 BUG_ON(!r);
656
657 if (!r->dev->bus_id) {
Stephen Rothwell5c949072009-01-13 20:02:39 +0000658 pr_info("%s:%d: %llu:%llu no dma\n", __func__, __LINE__,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000659 r->dev->bus_id, r->dev->dev_id);
660 return 0;
661 }
662
663 DBG("%s:%u: len = 0x%lx, page_size = %u, offset = 0x%lx\n", __func__,
664 __LINE__, r->len, r->page_size, r->offset);
665
666 BUG_ON(!r->len);
667 BUG_ON(!r->page_size);
668 BUG_ON(!r->region_ops);
669
Geoff Levandf58a9d12006-11-23 00:46:51 +0100670 INIT_LIST_HEAD(&r->chunk_list.head);
671 spin_lock_init(&r->chunk_list.lock);
672
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000673 result = lv1_allocate_device_dma_region(r->dev->bus_id, r->dev->dev_id,
674 roundup_pow_of_two(r->len), r->page_size, r->region_type,
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000675 &bus_addr);
676 r->bus_addr = bus_addr;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100677
678 if (result) {
679 DBG("%s:%d: lv1_allocate_device_dma_region failed: %s\n",
680 __func__, __LINE__, ps3_result(result));
681 r->len = r->bus_addr = 0;
682 }
683
684 return result;
685}
686
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000687static int dma_ioc0_region_create(struct ps3_dma_region *r)
688{
689 int result;
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000690 u64 bus_addr;
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000691
692 INIT_LIST_HEAD(&r->chunk_list.head);
693 spin_lock_init(&r->chunk_list.lock);
694
695 result = lv1_allocate_io_segment(0,
696 r->len,
697 r->page_size,
Stephen Rothwellb17b3df2009-01-13 19:59:41 +0000698 &bus_addr);
699 r->bus_addr = bus_addr;
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000700 if (result) {
701 DBG("%s:%d: lv1_allocate_io_segment failed: %s\n",
702 __func__, __LINE__, ps3_result(result));
703 r->len = r->bus_addr = 0;
704 }
705 DBG("%s: len=%#lx, pg=%d, bus=%#lx\n", __func__,
706 r->len, r->page_size, r->bus_addr);
707 return result;
708}
709
Geoff Levandf58a9d12006-11-23 00:46:51 +0100710/**
711 * dma_region_free - Free a device dma region.
712 * @r: Pointer to a struct ps3_dma_region.
713 *
714 * This is the lowest level dma region free routine, and is the one that
715 * will make the HV call to free the region.
716 */
717
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000718static int dma_sb_region_free(struct ps3_dma_region *r)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100719{
720 int result;
721 struct dma_chunk *c;
722 struct dma_chunk *tmp;
723
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000724 BUG_ON(!r);
725
726 if (!r->dev->bus_id) {
Stephen Rothwell5c949072009-01-13 20:02:39 +0000727 pr_info("%s:%d: %llu:%llu no dma\n", __func__, __LINE__,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000728 r->dev->bus_id, r->dev->dev_id);
729 return 0;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100730 }
731
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000732 list_for_each_entry_safe(c, tmp, &r->chunk_list.head, link) {
733 list_del(&c->link);
734 dma_sb_free_chunk(c);
735 }
736
737 result = lv1_free_device_dma_region(r->dev->bus_id, r->dev->dev_id,
Geoff Levandf58a9d12006-11-23 00:46:51 +0100738 r->bus_addr);
739
740 if (result)
741 DBG("%s:%d: lv1_free_device_dma_region failed: %s\n",
742 __func__, __LINE__, ps3_result(result));
743
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000744 r->bus_addr = 0;
745
746 return result;
747}
748
749static int dma_ioc0_region_free(struct ps3_dma_region *r)
750{
751 int result;
752 struct dma_chunk *c, *n;
753
754 DBG("%s: start\n", __func__);
755 list_for_each_entry_safe(c, n, &r->chunk_list.head, link) {
756 list_del(&c->link);
757 dma_ioc0_free_chunk(c);
758 }
759
760 result = lv1_release_io_segment(0, r->bus_addr);
761
762 if (result)
763 DBG("%s:%d: lv1_free_device_dma_region failed: %s\n",
764 __func__, __LINE__, ps3_result(result));
765
766 r->bus_addr = 0;
767 DBG("%s: end\n", __func__);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100768
769 return result;
770}
771
772/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000773 * dma_sb_map_area - Map an area of memory into a device dma region.
Geoff Levandf58a9d12006-11-23 00:46:51 +0100774 * @r: Pointer to a struct ps3_dma_region.
775 * @virt_addr: Starting virtual address of the area to map.
776 * @len: Length in bytes of the area to map.
777 * @bus_addr: A pointer to return the starting ioc bus address of the area to
778 * map.
779 *
780 * This is the common dma mapping routine.
781 */
782
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000783static int dma_sb_map_area(struct ps3_dma_region *r, unsigned long virt_addr,
Stephen Rothwell494fd072009-01-13 19:58:10 +0000784 unsigned long len, dma_addr_t *bus_addr,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000785 u64 iopte_flag)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100786{
787 int result;
788 unsigned long flags;
789 struct dma_chunk *c;
790 unsigned long phys_addr = is_kernel_addr(virt_addr) ? __pa(virt_addr)
791 : virt_addr;
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000792 unsigned long aligned_phys = _ALIGN_DOWN(phys_addr, 1 << r->page_size);
793 unsigned long aligned_len = _ALIGN_UP(len + phys_addr - aligned_phys,
794 1 << r->page_size);
795 *bus_addr = dma_sb_lpar_to_bus(r, ps3_mm_phys_to_lpar(phys_addr));
Geoff Levandf58a9d12006-11-23 00:46:51 +0100796
797 if (!USE_DYNAMIC_DMA) {
798 unsigned long lpar_addr = ps3_mm_phys_to_lpar(phys_addr);
799 DBG(" -> %s:%d\n", __func__, __LINE__);
800 DBG("%s:%d virt_addr %lxh\n", __func__, __LINE__,
801 virt_addr);
802 DBG("%s:%d phys_addr %lxh\n", __func__, __LINE__,
803 phys_addr);
804 DBG("%s:%d lpar_addr %lxh\n", __func__, __LINE__,
805 lpar_addr);
806 DBG("%s:%d len %lxh\n", __func__, __LINE__, len);
Stephen Rothwell494fd072009-01-13 19:58:10 +0000807 DBG("%s:%d bus_addr %llxh (%lxh)\n", __func__, __LINE__,
Geoff Levandf58a9d12006-11-23 00:46:51 +0100808 *bus_addr, len);
809 }
810
811 spin_lock_irqsave(&r->chunk_list.lock, flags);
812 c = dma_find_chunk(r, *bus_addr, len);
813
814 if (c) {
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000815 DBG("%s:%d: reusing mapped chunk", __func__, __LINE__);
816 dma_dump_chunk(c);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100817 c->usage_count++;
818 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
819 return 0;
820 }
821
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000822 result = dma_sb_map_pages(r, aligned_phys, aligned_len, &c, iopte_flag);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100823
824 if (result) {
825 *bus_addr = 0;
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000826 DBG("%s:%d: dma_sb_map_pages failed (%d)\n",
Geoff Levandf58a9d12006-11-23 00:46:51 +0100827 __func__, __LINE__, result);
828 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
829 return result;
830 }
831
832 c->usage_count = 1;
833
834 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
835 return result;
836}
837
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000838static int dma_ioc0_map_area(struct ps3_dma_region *r, unsigned long virt_addr,
Stephen Rothwell494fd072009-01-13 19:58:10 +0000839 unsigned long len, dma_addr_t *bus_addr,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000840 u64 iopte_flag)
841{
842 int result;
843 unsigned long flags;
844 struct dma_chunk *c;
845 unsigned long phys_addr = is_kernel_addr(virt_addr) ? __pa(virt_addr)
846 : virt_addr;
847 unsigned long aligned_phys = _ALIGN_DOWN(phys_addr, 1 << r->page_size);
848 unsigned long aligned_len = _ALIGN_UP(len + phys_addr - aligned_phys,
849 1 << r->page_size);
850
851 DBG(KERN_ERR "%s: vaddr=%#lx, len=%#lx\n", __func__,
852 virt_addr, len);
853 DBG(KERN_ERR "%s: ph=%#lx a_ph=%#lx a_l=%#lx\n", __func__,
854 phys_addr, aligned_phys, aligned_len);
855
856 spin_lock_irqsave(&r->chunk_list.lock, flags);
857 c = dma_find_chunk_lpar(r, ps3_mm_phys_to_lpar(phys_addr), len);
858
859 if (c) {
860 /* FIXME */
861 BUG();
862 *bus_addr = c->bus_addr + phys_addr - aligned_phys;
863 c->usage_count++;
864 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
865 return 0;
866 }
867
868 result = dma_ioc0_map_pages(r, aligned_phys, aligned_len, &c,
869 iopte_flag);
870
871 if (result) {
872 *bus_addr = 0;
873 DBG("%s:%d: dma_ioc0_map_pages failed (%d)\n",
874 __func__, __LINE__, result);
875 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
876 return result;
877 }
878 *bus_addr = c->bus_addr + phys_addr - aligned_phys;
Stephen Rothwell494fd072009-01-13 19:58:10 +0000879 DBG("%s: va=%#lx pa=%#lx a_pa=%#lx bus=%#llx\n", __func__,
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000880 virt_addr, phys_addr, aligned_phys, *bus_addr);
881 c->usage_count = 1;
882
883 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
884 return result;
885}
886
Geoff Levandf58a9d12006-11-23 00:46:51 +0100887/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000888 * dma_sb_unmap_area - Unmap an area of memory from a device dma region.
Geoff Levandf58a9d12006-11-23 00:46:51 +0100889 * @r: Pointer to a struct ps3_dma_region.
890 * @bus_addr: The starting ioc bus address of the area to unmap.
891 * @len: Length in bytes of the area to unmap.
892 *
893 * This is the common dma unmap routine.
894 */
895
Stephen Rothwell494fd072009-01-13 19:58:10 +0000896static int dma_sb_unmap_area(struct ps3_dma_region *r, dma_addr_t bus_addr,
Geoff Levandf58a9d12006-11-23 00:46:51 +0100897 unsigned long len)
898{
899 unsigned long flags;
900 struct dma_chunk *c;
901
902 spin_lock_irqsave(&r->chunk_list.lock, flags);
903 c = dma_find_chunk(r, bus_addr, len);
904
905 if (!c) {
906 unsigned long aligned_bus = _ALIGN_DOWN(bus_addr,
907 1 << r->page_size);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000908 unsigned long aligned_len = _ALIGN_UP(len + bus_addr
909 - aligned_bus, 1 << r->page_size);
Stephen Rothwell494fd072009-01-13 19:58:10 +0000910 DBG("%s:%d: not found: bus_addr %llxh\n",
Geoff Levandf58a9d12006-11-23 00:46:51 +0100911 __func__, __LINE__, bus_addr);
912 DBG("%s:%d: not found: len %lxh\n",
913 __func__, __LINE__, len);
914 DBG("%s:%d: not found: aligned_bus %lxh\n",
915 __func__, __LINE__, aligned_bus);
916 DBG("%s:%d: not found: aligned_len %lxh\n",
917 __func__, __LINE__, aligned_len);
918 BUG();
919 }
920
921 c->usage_count--;
922
923 if (!c->usage_count) {
924 list_del(&c->link);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000925 dma_sb_free_chunk(c);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100926 }
927
928 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
929 return 0;
930}
931
Geert Uytterhoeven32f44a12007-06-16 08:07:23 +1000932static int dma_ioc0_unmap_area(struct ps3_dma_region *r,
Stephen Rothwell494fd072009-01-13 19:58:10 +0000933 dma_addr_t bus_addr, unsigned long len)
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000934{
935 unsigned long flags;
936 struct dma_chunk *c;
937
Stephen Rothwell494fd072009-01-13 19:58:10 +0000938 DBG("%s: start a=%#llx l=%#lx\n", __func__, bus_addr, len);
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000939 spin_lock_irqsave(&r->chunk_list.lock, flags);
940 c = dma_find_chunk(r, bus_addr, len);
941
942 if (!c) {
943 unsigned long aligned_bus = _ALIGN_DOWN(bus_addr,
944 1 << r->page_size);
945 unsigned long aligned_len = _ALIGN_UP(len + bus_addr
946 - aligned_bus,
947 1 << r->page_size);
Stephen Rothwell494fd072009-01-13 19:58:10 +0000948 DBG("%s:%d: not found: bus_addr %llxh\n",
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000949 __func__, __LINE__, bus_addr);
950 DBG("%s:%d: not found: len %lxh\n",
951 __func__, __LINE__, len);
952 DBG("%s:%d: not found: aligned_bus %lxh\n",
953 __func__, __LINE__, aligned_bus);
954 DBG("%s:%d: not found: aligned_len %lxh\n",
955 __func__, __LINE__, aligned_len);
956 BUG();
957 }
958
959 c->usage_count--;
960
961 if (!c->usage_count) {
962 list_del(&c->link);
963 dma_ioc0_free_chunk(c);
964 }
965
966 spin_unlock_irqrestore(&r->chunk_list.lock, flags);
967 DBG("%s: end\n", __func__);
968 return 0;
969}
970
Geoff Levandf58a9d12006-11-23 00:46:51 +0100971/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000972 * dma_sb_region_create_linear - Setup a linear dma mapping for a device.
Geoff Levandf58a9d12006-11-23 00:46:51 +0100973 * @r: Pointer to a struct ps3_dma_region.
974 *
975 * This routine creates an HV dma region for the device and maps all available
976 * ram into the io controller bus address space.
977 */
978
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000979static int dma_sb_region_create_linear(struct ps3_dma_region *r)
Geoff Levandf58a9d12006-11-23 00:46:51 +0100980{
981 int result;
Stephen Rothwell494fd072009-01-13 19:58:10 +0000982 unsigned long virt_addr, len;
983 dma_addr_t tmp;
Geoff Levandf58a9d12006-11-23 00:46:51 +0100984
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000985 if (r->len > 16*1024*1024) { /* FIXME: need proper fix */
986 /* force 16M dma pages for linear mapping */
987 if (r->page_size != PS3_DMA_16M) {
988 pr_info("%s:%d: forcing 16M pages for linear map\n",
989 __func__, __LINE__);
990 r->page_size = PS3_DMA_16M;
991 r->len = _ALIGN_UP(r->len, 1 << r->page_size);
992 }
Geoff Levandf58a9d12006-11-23 00:46:51 +0100993 }
994
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000995 result = dma_sb_region_create(r);
Geoff Levandf58a9d12006-11-23 00:46:51 +0100996 BUG_ON(result);
997
Geoff Levand6bb5cf12007-06-16 07:52:02 +1000998 if (r->offset < map.rm.size) {
999 /* Map (part of) 1st RAM chunk */
1000 virt_addr = map.rm.base + r->offset;
1001 len = map.rm.size - r->offset;
1002 if (len > r->len)
1003 len = r->len;
1004 result = dma_sb_map_area(r, virt_addr, len, &tmp,
Geert Uytterhoeven5c6fc8d2009-06-10 04:38:45 +00001005 CBE_IOPTE_PP_W | CBE_IOPTE_PP_R | CBE_IOPTE_SO_RW |
1006 CBE_IOPTE_M);
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001007 BUG_ON(result);
1008 }
Geoff Levandf58a9d12006-11-23 00:46:51 +01001009
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001010 if (r->offset + r->len > map.rm.size) {
1011 /* Map (part of) 2nd RAM chunk */
Geoff Levanda628df12008-01-19 07:32:59 +11001012 virt_addr = map.rm.size;
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001013 len = r->len;
1014 if (r->offset >= map.rm.size)
1015 virt_addr += r->offset - map.rm.size;
1016 else
1017 len -= map.rm.size - r->offset;
1018 result = dma_sb_map_area(r, virt_addr, len, &tmp,
Geert Uytterhoeven5c6fc8d2009-06-10 04:38:45 +00001019 CBE_IOPTE_PP_W | CBE_IOPTE_PP_R | CBE_IOPTE_SO_RW |
1020 CBE_IOPTE_M);
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001021 BUG_ON(result);
1022 }
Geoff Levandf58a9d12006-11-23 00:46:51 +01001023
1024 return result;
1025}
1026
1027/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001028 * dma_sb_region_free_linear - Free a linear dma mapping for a device.
Geoff Levandf58a9d12006-11-23 00:46:51 +01001029 * @r: Pointer to a struct ps3_dma_region.
1030 *
1031 * This routine will unmap all mapped areas and free the HV dma region.
1032 */
1033
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001034static int dma_sb_region_free_linear(struct ps3_dma_region *r)
Geoff Levandf58a9d12006-11-23 00:46:51 +01001035{
1036 int result;
Stephen Rothwell494fd072009-01-13 19:58:10 +00001037 dma_addr_t bus_addr;
1038 unsigned long len, lpar_addr;
Geoff Levandf58a9d12006-11-23 00:46:51 +01001039
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001040 if (r->offset < map.rm.size) {
1041 /* Unmap (part of) 1st RAM chunk */
1042 lpar_addr = map.rm.base + r->offset;
1043 len = map.rm.size - r->offset;
1044 if (len > r->len)
1045 len = r->len;
1046 bus_addr = dma_sb_lpar_to_bus(r, lpar_addr);
1047 result = dma_sb_unmap_area(r, bus_addr, len);
1048 BUG_ON(result);
1049 }
Geoff Levandf58a9d12006-11-23 00:46:51 +01001050
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001051 if (r->offset + r->len > map.rm.size) {
1052 /* Unmap (part of) 2nd RAM chunk */
1053 lpar_addr = map.r1.base;
1054 len = r->len;
1055 if (r->offset >= map.rm.size)
1056 lpar_addr += r->offset - map.rm.size;
1057 else
1058 len -= map.rm.size - r->offset;
1059 bus_addr = dma_sb_lpar_to_bus(r, lpar_addr);
1060 result = dma_sb_unmap_area(r, bus_addr, len);
1061 BUG_ON(result);
1062 }
Geoff Levandf58a9d12006-11-23 00:46:51 +01001063
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001064 result = dma_sb_region_free(r);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001065 BUG_ON(result);
1066
1067 return result;
1068}
1069
1070/**
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001071 * dma_sb_map_area_linear - Map an area of memory into a device dma region.
Geoff Levandf58a9d12006-11-23 00:46:51 +01001072 * @r: Pointer to a struct ps3_dma_region.
1073 * @virt_addr: Starting virtual address of the area to map.
1074 * @len: Length in bytes of the area to map.
1075 * @bus_addr: A pointer to return the starting ioc bus address of the area to
1076 * map.
1077 *
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001078 * This routine just returns the corresponding bus address. Actual mapping
Geoff Levandf58a9d12006-11-23 00:46:51 +01001079 * occurs in dma_region_create_linear().
1080 */
1081
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001082static int dma_sb_map_area_linear(struct ps3_dma_region *r,
Stephen Rothwell494fd072009-01-13 19:58:10 +00001083 unsigned long virt_addr, unsigned long len, dma_addr_t *bus_addr,
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001084 u64 iopte_flag)
Geoff Levandf58a9d12006-11-23 00:46:51 +01001085{
1086 unsigned long phys_addr = is_kernel_addr(virt_addr) ? __pa(virt_addr)
1087 : virt_addr;
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001088 *bus_addr = dma_sb_lpar_to_bus(r, ps3_mm_phys_to_lpar(phys_addr));
Geoff Levandf58a9d12006-11-23 00:46:51 +01001089 return 0;
1090}
1091
1092/**
1093 * dma_unmap_area_linear - Unmap an area of memory from a device dma region.
1094 * @r: Pointer to a struct ps3_dma_region.
1095 * @bus_addr: The starting ioc bus address of the area to unmap.
1096 * @len: Length in bytes of the area to unmap.
1097 *
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001098 * This routine does nothing. Unmapping occurs in dma_sb_region_free_linear().
Geoff Levandf58a9d12006-11-23 00:46:51 +01001099 */
1100
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001101static int dma_sb_unmap_area_linear(struct ps3_dma_region *r,
Stephen Rothwell494fd072009-01-13 19:58:10 +00001102 dma_addr_t bus_addr, unsigned long len)
Geoff Levandf58a9d12006-11-23 00:46:51 +01001103{
1104 return 0;
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001105};
1106
1107static const struct ps3_dma_region_ops ps3_dma_sb_region_ops = {
1108 .create = dma_sb_region_create,
1109 .free = dma_sb_region_free,
1110 .map = dma_sb_map_area,
1111 .unmap = dma_sb_unmap_area
1112};
1113
1114static const struct ps3_dma_region_ops ps3_dma_sb_region_linear_ops = {
1115 .create = dma_sb_region_create_linear,
1116 .free = dma_sb_region_free_linear,
1117 .map = dma_sb_map_area_linear,
1118 .unmap = dma_sb_unmap_area_linear
1119};
1120
1121static const struct ps3_dma_region_ops ps3_dma_ioc0_region_ops = {
1122 .create = dma_ioc0_region_create,
1123 .free = dma_ioc0_region_free,
1124 .map = dma_ioc0_map_area,
1125 .unmap = dma_ioc0_unmap_area
1126};
1127
1128int ps3_dma_region_init(struct ps3_system_bus_device *dev,
1129 struct ps3_dma_region *r, enum ps3_dma_page_size page_size,
1130 enum ps3_dma_region_type region_type, void *addr, unsigned long len)
1131{
1132 unsigned long lpar_addr;
1133
1134 lpar_addr = addr ? ps3_mm_phys_to_lpar(__pa(addr)) : 0;
1135
1136 r->dev = dev;
1137 r->page_size = page_size;
1138 r->region_type = region_type;
1139 r->offset = lpar_addr;
1140 if (r->offset >= map.rm.size)
1141 r->offset -= map.r1.offset;
1142 r->len = len ? len : _ALIGN_UP(map.total, 1 << r->page_size);
1143
1144 switch (dev->dev_type) {
1145 case PS3_DEVICE_TYPE_SB:
1146 r->region_ops = (USE_DYNAMIC_DMA)
1147 ? &ps3_dma_sb_region_ops
1148 : &ps3_dma_sb_region_linear_ops;
1149 break;
1150 case PS3_DEVICE_TYPE_IOC0:
1151 r->region_ops = &ps3_dma_ioc0_region_ops;
1152 break;
1153 default:
1154 BUG();
1155 return -EINVAL;
1156 }
1157 return 0;
Geoff Levandf58a9d12006-11-23 00:46:51 +01001158}
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001159EXPORT_SYMBOL(ps3_dma_region_init);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001160
1161int ps3_dma_region_create(struct ps3_dma_region *r)
1162{
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001163 BUG_ON(!r);
1164 BUG_ON(!r->region_ops);
1165 BUG_ON(!r->region_ops->create);
1166 return r->region_ops->create(r);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001167}
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001168EXPORT_SYMBOL(ps3_dma_region_create);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001169
1170int ps3_dma_region_free(struct ps3_dma_region *r)
1171{
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001172 BUG_ON(!r);
1173 BUG_ON(!r->region_ops);
1174 BUG_ON(!r->region_ops->free);
1175 return r->region_ops->free(r);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001176}
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001177EXPORT_SYMBOL(ps3_dma_region_free);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001178
1179int ps3_dma_map(struct ps3_dma_region *r, unsigned long virt_addr,
Stephen Rothwell494fd072009-01-13 19:58:10 +00001180 unsigned long len, dma_addr_t *bus_addr,
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001181 u64 iopte_flag)
Geoff Levandf58a9d12006-11-23 00:46:51 +01001182{
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001183 return r->region_ops->map(r, virt_addr, len, bus_addr, iopte_flag);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001184}
1185
Stephen Rothwell494fd072009-01-13 19:58:10 +00001186int ps3_dma_unmap(struct ps3_dma_region *r, dma_addr_t bus_addr,
Geoff Levandf58a9d12006-11-23 00:46:51 +01001187 unsigned long len)
1188{
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001189 return r->region_ops->unmap(r, bus_addr, len);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001190}
1191
1192/*============================================================================*/
1193/* system startup routines */
1194/*============================================================================*/
1195
1196/**
1197 * ps3_mm_init - initialize the address space state variables
1198 */
1199
1200void __init ps3_mm_init(void)
1201{
1202 int result;
1203
1204 DBG(" -> %s:%d\n", __func__, __LINE__);
1205
1206 result = ps3_repository_read_mm_info(&map.rm.base, &map.rm.size,
1207 &map.total);
1208
1209 if (result)
1210 panic("ps3_repository_read_mm_info() failed");
1211
1212 map.rm.offset = map.rm.base;
1213 map.vas_id = map.htab_size = 0;
1214
1215 /* this implementation assumes map.rm.base is zero */
1216
1217 BUG_ON(map.rm.base);
1218 BUG_ON(!map.rm.size);
1219
Geoff Levandf58a9d12006-11-23 00:46:51 +01001220
1221 /* arrange to do this in ps3_mm_add_memory */
1222 ps3_mm_region_create(&map.r1, map.total - map.rm.size);
1223
Geoff Levand6bb5cf12007-06-16 07:52:02 +10001224 /* correct map.total for the real total amount of memory we use */
1225 map.total = map.rm.size + map.r1.size;
1226
Geoff Levandf58a9d12006-11-23 00:46:51 +01001227 DBG(" <- %s:%d\n", __func__, __LINE__);
1228}
1229
1230/**
1231 * ps3_mm_shutdown - final cleanup of address space
1232 */
1233
1234void ps3_mm_shutdown(void)
1235{
1236 ps3_mm_region_destroy(&map.r1);
Geoff Levandf58a9d12006-11-23 00:46:51 +01001237}