blob: a0bc7d3e1bff8da1bd59894f30ad7201089c9272 [file] [log] [blame]
Bryan Wu1394f032007-05-06 14:50:22 -07001/*
Robin Getz96f10502009-09-24 14:11:24 +00002 * Copyright 2004-2009 Analog Devices Inc.
Bryan Wu1394f032007-05-06 14:50:22 -07003 *
Mike Frysinger550d5532008-02-02 15:55:37 +08004 * Licensed under the GPL-2 or later.
Bryan Wu1394f032007-05-06 14:50:22 -07005 */
6
7#include <linux/delay.h>
8#include <linux/console.h>
9#include <linux/bootmem.h>
10#include <linux/seq_file.h>
11#include <linux/cpu.h>
Mike Frysinger259fea42009-01-07 23:14:39 +080012#include <linux/mm.h>
Bryan Wu1394f032007-05-06 14:50:22 -070013#include <linux/module.h>
Bryan Wu1394f032007-05-06 14:50:22 -070014#include <linux/tty.h>
Yi Li856783b2008-02-09 02:26:01 +080015#include <linux/pfn.h>
Bryan Wu1394f032007-05-06 14:50:22 -070016
Mike Frysinger79df1b62009-05-26 23:34:51 +000017#ifdef CONFIG_MTD_UCLINUX
18#include <linux/mtd/map.h>
Bryan Wu1394f032007-05-06 14:50:22 -070019#include <linux/ext2_fs.h>
20#include <linux/cramfs_fs.h>
21#include <linux/romfs_fs.h>
Mike Frysinger79df1b62009-05-26 23:34:51 +000022#endif
Bryan Wu1394f032007-05-06 14:50:22 -070023
Robin Getz3bebca22007-10-10 23:55:26 +080024#include <asm/cplb.h>
Bryan Wu1394f032007-05-06 14:50:22 -070025#include <asm/cacheflush.h>
26#include <asm/blackfin.h>
27#include <asm/cplbinit.h>
Mike Frysinger1754a5d2007-11-23 11:28:11 +080028#include <asm/div64.h>
Graf Yang8f658732008-11-18 17:48:22 +080029#include <asm/cpu.h>
Bernd Schmidt7adfb582007-06-21 11:34:16 +080030#include <asm/fixed_code.h>
Robin Getzce3afa12007-10-09 17:28:36 +080031#include <asm/early_printk.h>
Bryan Wu1394f032007-05-06 14:50:22 -070032
Mike Frysingera9c59c22007-05-21 18:09:32 +080033u16 _bfin_swrst;
Mike Frysingerd45118b2008-02-25 12:24:44 +080034EXPORT_SYMBOL(_bfin_swrst);
Mike Frysingera9c59c22007-05-21 18:09:32 +080035
Bryan Wu1394f032007-05-06 14:50:22 -070036unsigned long memory_start, memory_end, physical_mem_end;
Mike Frysinger3132b582008-04-24 05:12:09 +080037unsigned long _rambase, _ramstart, _ramend;
Bryan Wu1394f032007-05-06 14:50:22 -070038unsigned long reserved_mem_dcache_on;
39unsigned long reserved_mem_icache_on;
40EXPORT_SYMBOL(memory_start);
41EXPORT_SYMBOL(memory_end);
42EXPORT_SYMBOL(physical_mem_end);
43EXPORT_SYMBOL(_ramend);
Vitja Makarov58c35bd2008-10-13 15:23:56 +080044EXPORT_SYMBOL(reserved_mem_dcache_on);
Bryan Wu1394f032007-05-06 14:50:22 -070045
46#ifdef CONFIG_MTD_UCLINUX
Mike Frysinger79df1b62009-05-26 23:34:51 +000047extern struct map_info uclinux_ram_map;
Bryan Wu1394f032007-05-06 14:50:22 -070048unsigned long memory_mtd_end, memory_mtd_start, mtd_size;
49unsigned long _ebss;
50EXPORT_SYMBOL(memory_mtd_end);
51EXPORT_SYMBOL(memory_mtd_start);
52EXPORT_SYMBOL(mtd_size);
53#endif
54
Mike Frysinger5e10b4a2007-06-11 16:44:09 +080055char __initdata command_line[COMMAND_LINE_SIZE];
Robin Getz0c7a6b22008-10-08 16:27:12 +080056void __initdata *init_retx, *init_saved_retx, *init_saved_seqstat,
57 *init_saved_icplb_fault_addr, *init_saved_dcplb_fault_addr;
Bryan Wu1394f032007-05-06 14:50:22 -070058
Yi Li856783b2008-02-09 02:26:01 +080059/* boot memmap, for parsing "memmap=" */
60#define BFIN_MEMMAP_MAX 128 /* number of entries in bfin_memmap */
61#define BFIN_MEMMAP_RAM 1
62#define BFIN_MEMMAP_RESERVED 2
Mike Frysingeraf4c7d42009-02-04 16:49:45 +080063static struct bfin_memmap {
Yi Li856783b2008-02-09 02:26:01 +080064 int nr_map;
65 struct bfin_memmap_entry {
66 unsigned long long addr; /* start of memory segment */
67 unsigned long long size;
68 unsigned long type;
69 } map[BFIN_MEMMAP_MAX];
70} bfin_memmap __initdata;
71
72/* for memmap sanitization */
73struct change_member {
74 struct bfin_memmap_entry *pentry; /* pointer to original entry */
75 unsigned long long addr; /* address for this change point */
76};
77static struct change_member change_point_list[2*BFIN_MEMMAP_MAX] __initdata;
78static struct change_member *change_point[2*BFIN_MEMMAP_MAX] __initdata;
79static struct bfin_memmap_entry *overlap_list[BFIN_MEMMAP_MAX] __initdata;
80static struct bfin_memmap_entry new_map[BFIN_MEMMAP_MAX] __initdata;
81
Graf Yang8f658732008-11-18 17:48:22 +080082DEFINE_PER_CPU(struct blackfin_cpudata, cpu_data);
83
Mike Frysinger7f1e2f92009-01-07 23:14:38 +080084static int early_init_clkin_hz(char *buf);
85
Robin Getz3bebca22007-10-10 23:55:26 +080086#if defined(CONFIG_BFIN_DCACHE) || defined(CONFIG_BFIN_ICACHE)
Graf Yang8f658732008-11-18 17:48:22 +080087void __init generate_cplb_tables(void)
88{
89 unsigned int cpu;
90
Bernd Schmidtdbdf20d2009-01-07 23:14:38 +080091 generate_cplb_tables_all();
Graf Yang8f658732008-11-18 17:48:22 +080092 /* Generate per-CPU I&D CPLB tables */
93 for (cpu = 0; cpu < num_possible_cpus(); ++cpu)
94 generate_cplb_tables_cpu(cpu);
95}
Bryan Wu1394f032007-05-06 14:50:22 -070096#endif
97
Graf Yang8f658732008-11-18 17:48:22 +080098void __cpuinit bfin_setup_caches(unsigned int cpu)
99{
Robin Getz3bebca22007-10-10 23:55:26 +0800100#ifdef CONFIG_BFIN_ICACHE
Graf Yang8f658732008-11-18 17:48:22 +0800101 bfin_icache_init(icplb_tbl[cpu]);
Bryan Wu1394f032007-05-06 14:50:22 -0700102#endif
103
Robin Getz3bebca22007-10-10 23:55:26 +0800104#ifdef CONFIG_BFIN_DCACHE
Graf Yang8f658732008-11-18 17:48:22 +0800105 bfin_dcache_init(dcplb_tbl[cpu]);
Graf Yang8f658732008-11-18 17:48:22 +0800106#endif
107
108 /*
109 * In cache coherence emulation mode, we need to have the
110 * D-cache enabled before running any atomic operation which
Michael Hennerich05d17df2009-08-21 03:49:19 +0000111 * might involve cache invalidation (i.e. spinlock, rwlock).
Graf Yang8f658732008-11-18 17:48:22 +0800112 * So printk's are deferred until then.
113 */
114#ifdef CONFIG_BFIN_ICACHE
115 printk(KERN_INFO "Instruction Cache Enabled for CPU%u\n", cpu);
Jie Zhang41ba6532009-06-16 09:48:33 +0000116 printk(KERN_INFO " External memory:"
117# ifdef CONFIG_BFIN_EXTMEM_ICACHEABLE
118 " cacheable"
119# else
120 " uncacheable"
Bryan Wu1394f032007-05-06 14:50:22 -0700121# endif
Jie Zhang41ba6532009-06-16 09:48:33 +0000122 " in instruction cache\n");
123 if (L2_LENGTH)
124 printk(KERN_INFO " L2 SRAM :"
125# ifdef CONFIG_BFIN_L2_ICACHEABLE
126 " cacheable"
127# else
128 " uncacheable"
129# endif
130 " in instruction cache\n");
131
132#else
133 printk(KERN_INFO "Instruction Cache Disabled for CPU%u\n", cpu);
134#endif
135
136#ifdef CONFIG_BFIN_DCACHE
137 printk(KERN_INFO "Data Cache Enabled for CPU%u\n", cpu);
138 printk(KERN_INFO " External memory:"
139# if defined CONFIG_BFIN_EXTMEM_WRITEBACK
140 " cacheable (write-back)"
141# elif defined CONFIG_BFIN_EXTMEM_WRITETHROUGH
142 " cacheable (write-through)"
143# else
144 " uncacheable"
145# endif
146 " in data cache\n");
147 if (L2_LENGTH)
148 printk(KERN_INFO " L2 SRAM :"
149# if defined CONFIG_BFIN_L2_WRITEBACK
150 " cacheable (write-back)"
151# elif defined CONFIG_BFIN_L2_WRITETHROUGH
152 " cacheable (write-through)"
153# else
154 " uncacheable"
155# endif
156 " in data cache\n");
157#else
158 printk(KERN_INFO "Data Cache Disabled for CPU%u\n", cpu);
Bryan Wu1394f032007-05-06 14:50:22 -0700159#endif
160}
161
Graf Yang8f658732008-11-18 17:48:22 +0800162void __cpuinit bfin_setup_cpudata(unsigned int cpu)
163{
164 struct blackfin_cpudata *cpudata = &per_cpu(cpu_data, cpu);
165
166 cpudata->idle = current;
Graf Yang8f658732008-11-18 17:48:22 +0800167 cpudata->imemctl = bfin_read_IMEM_CONTROL();
168 cpudata->dmemctl = bfin_read_DMEM_CONTROL();
169}
170
171void __init bfin_cache_init(void)
172{
173#if defined(CONFIG_BFIN_DCACHE) || defined(CONFIG_BFIN_ICACHE)
174 generate_cplb_tables();
175#endif
176 bfin_setup_caches(0);
177}
178
Graf Yang5b04f272008-10-08 17:32:57 +0800179void __init bfin_relocate_l1_mem(void)
Bryan Wu1394f032007-05-06 14:50:22 -0700180{
Mike Frysinger5cd82a62009-09-23 20:34:48 +0000181 unsigned long text_l1_len = (unsigned long)_text_l1_len;
182 unsigned long data_l1_len = (unsigned long)_data_l1_len;
183 unsigned long data_b_l1_len = (unsigned long)_data_b_l1_len;
184 unsigned long l2_len = (unsigned long)_l2_len;
Bryan Wu1394f032007-05-06 14:50:22 -0700185
Robin Getz837ec2d2009-07-07 20:17:09 +0000186 early_shadow_stamp();
187
Robin Getzfecbd732009-04-23 20:49:43 +0000188 /*
189 * due to the ALIGN(4) in the arch/blackfin/kernel/vmlinux.lds.S
190 * we know that everything about l1 text/data is nice and aligned,
191 * so copy by 4 byte chunks, and don't worry about overlapping
192 * src/dest.
193 *
194 * We can't use the dma_memcpy functions, since they can call
195 * scheduler functions which might be in L1 :( and core writes
196 * into L1 instruction cause bad access errors, so we are stuck,
197 * we are required to use DMA, but can't use the common dma
198 * functions. We can't use memcpy either - since that might be
199 * going to be in the relocated L1
Bryan Wu1394f032007-05-06 14:50:22 -0700200 */
201
Robin Getzfecbd732009-04-23 20:49:43 +0000202 blackfin_dma_early_init();
Bryan Wu1394f032007-05-06 14:50:22 -0700203
Mike Frysinger5cd82a62009-09-23 20:34:48 +0000204 /* if necessary, copy L1 text to L1 instruction SRAM */
205 if (L1_CODE_LENGTH && text_l1_len)
206 early_dma_memcpy(_stext_l1, _text_l1_lma, text_l1_len);
Robin Getzfecbd732009-04-23 20:49:43 +0000207
Mike Frysinger5cd82a62009-09-23 20:34:48 +0000208 /* if necessary, copy L1 data to L1 data bank A SRAM */
209 if (L1_DATA_A_LENGTH && data_l1_len)
210 early_dma_memcpy(_sdata_l1, _data_l1_lma, data_l1_len);
Bryan Wu1394f032007-05-06 14:50:22 -0700211
Mike Frysinger5cd82a62009-09-23 20:34:48 +0000212 /* if necessary, copy L1 data B to L1 data bank B SRAM */
213 if (L1_DATA_B_LENGTH && data_b_l1_len)
214 early_dma_memcpy(_sdata_b_l1, _data_b_l1_lma, data_b_l1_len);
Sonic Zhang262c3822008-07-19 15:42:41 +0800215
Robin Getzfecbd732009-04-23 20:49:43 +0000216 early_dma_memcpy_done();
217
Mike Frysinger5cd82a62009-09-23 20:34:48 +0000218 /* if necessary, copy L2 text/data to L2 SRAM */
219 if (L2_LENGTH && l2_len)
220 memcpy(_stext_l2, _l2_lma, l2_len);
Bryan Wu1394f032007-05-06 14:50:22 -0700221}
222
Yi Li856783b2008-02-09 02:26:01 +0800223/* add_memory_region to memmap */
224static void __init add_memory_region(unsigned long long start,
225 unsigned long long size, int type)
226{
227 int i;
228
229 i = bfin_memmap.nr_map;
230
231 if (i == BFIN_MEMMAP_MAX) {
232 printk(KERN_ERR "Ooops! Too many entries in the memory map!\n");
233 return;
234 }
235
236 bfin_memmap.map[i].addr = start;
237 bfin_memmap.map[i].size = size;
238 bfin_memmap.map[i].type = type;
239 bfin_memmap.nr_map++;
240}
241
242/*
243 * Sanitize the boot memmap, removing overlaps.
244 */
245static int __init sanitize_memmap(struct bfin_memmap_entry *map, int *pnr_map)
246{
247 struct change_member *change_tmp;
248 unsigned long current_type, last_type;
249 unsigned long long last_addr;
250 int chgidx, still_changing;
251 int overlap_entries;
252 int new_entry;
253 int old_nr, new_nr, chg_nr;
254 int i;
255
256 /*
257 Visually we're performing the following (1,2,3,4 = memory types)
258
259 Sample memory map (w/overlaps):
260 ____22__________________
261 ______________________4_
262 ____1111________________
263 _44_____________________
264 11111111________________
265 ____________________33__
266 ___________44___________
267 __________33333_________
268 ______________22________
269 ___________________2222_
270 _________111111111______
271 _____________________11_
272 _________________4______
273
274 Sanitized equivalent (no overlap):
275 1_______________________
276 _44_____________________
277 ___1____________________
278 ____22__________________
279 ______11________________
280 _________1______________
281 __________3_____________
282 ___________44___________
283 _____________33_________
284 _______________2________
285 ________________1_______
286 _________________4______
287 ___________________2____
288 ____________________33__
289 ______________________4_
290 */
291 /* if there's only one memory region, don't bother */
292 if (*pnr_map < 2)
293 return -1;
294
295 old_nr = *pnr_map;
296
297 /* bail out if we find any unreasonable addresses in memmap */
298 for (i = 0; i < old_nr; i++)
299 if (map[i].addr + map[i].size < map[i].addr)
300 return -1;
301
302 /* create pointers for initial change-point information (for sorting) */
303 for (i = 0; i < 2*old_nr; i++)
304 change_point[i] = &change_point_list[i];
305
306 /* record all known change-points (starting and ending addresses),
307 omitting those that are for empty memory regions */
308 chgidx = 0;
Graf Yang8f658732008-11-18 17:48:22 +0800309 for (i = 0; i < old_nr; i++) {
Yi Li856783b2008-02-09 02:26:01 +0800310 if (map[i].size != 0) {
311 change_point[chgidx]->addr = map[i].addr;
312 change_point[chgidx++]->pentry = &map[i];
313 change_point[chgidx]->addr = map[i].addr + map[i].size;
314 change_point[chgidx++]->pentry = &map[i];
315 }
316 }
Graf Yang8f658732008-11-18 17:48:22 +0800317 chg_nr = chgidx; /* true number of change-points */
Yi Li856783b2008-02-09 02:26:01 +0800318
319 /* sort change-point list by memory addresses (low -> high) */
320 still_changing = 1;
Graf Yang8f658732008-11-18 17:48:22 +0800321 while (still_changing) {
Yi Li856783b2008-02-09 02:26:01 +0800322 still_changing = 0;
Graf Yang8f658732008-11-18 17:48:22 +0800323 for (i = 1; i < chg_nr; i++) {
Yi Li856783b2008-02-09 02:26:01 +0800324 /* if <current_addr> > <last_addr>, swap */
325 /* or, if current=<start_addr> & last=<end_addr>, swap */
326 if ((change_point[i]->addr < change_point[i-1]->addr) ||
327 ((change_point[i]->addr == change_point[i-1]->addr) &&
328 (change_point[i]->addr == change_point[i]->pentry->addr) &&
329 (change_point[i-1]->addr != change_point[i-1]->pentry->addr))
330 ) {
331 change_tmp = change_point[i];
332 change_point[i] = change_point[i-1];
333 change_point[i-1] = change_tmp;
334 still_changing = 1;
335 }
336 }
337 }
338
339 /* create a new memmap, removing overlaps */
Graf Yang8f658732008-11-18 17:48:22 +0800340 overlap_entries = 0; /* number of entries in the overlap table */
341 new_entry = 0; /* index for creating new memmap entries */
342 last_type = 0; /* start with undefined memory type */
343 last_addr = 0; /* start with 0 as last starting address */
Yi Li856783b2008-02-09 02:26:01 +0800344 /* loop through change-points, determining affect on the new memmap */
345 for (chgidx = 0; chgidx < chg_nr; chgidx++) {
346 /* keep track of all overlapping memmap entries */
347 if (change_point[chgidx]->addr == change_point[chgidx]->pentry->addr) {
348 /* add map entry to overlap list (> 1 entry implies an overlap) */
349 overlap_list[overlap_entries++] = change_point[chgidx]->pentry;
350 } else {
351 /* remove entry from list (order independent, so swap with last) */
352 for (i = 0; i < overlap_entries; i++) {
353 if (overlap_list[i] == change_point[chgidx]->pentry)
354 overlap_list[i] = overlap_list[overlap_entries-1];
355 }
356 overlap_entries--;
357 }
358 /* if there are overlapping entries, decide which "type" to use */
359 /* (larger value takes precedence -- 1=usable, 2,3,4,4+=unusable) */
360 current_type = 0;
361 for (i = 0; i < overlap_entries; i++)
362 if (overlap_list[i]->type > current_type)
363 current_type = overlap_list[i]->type;
364 /* continue building up new memmap based on this information */
Graf Yang8f658732008-11-18 17:48:22 +0800365 if (current_type != last_type) {
Yi Li856783b2008-02-09 02:26:01 +0800366 if (last_type != 0) {
367 new_map[new_entry].size =
368 change_point[chgidx]->addr - last_addr;
369 /* move forward only if the new size was non-zero */
370 if (new_map[new_entry].size != 0)
371 if (++new_entry >= BFIN_MEMMAP_MAX)
Graf Yang8f658732008-11-18 17:48:22 +0800372 break; /* no more space left for new entries */
Yi Li856783b2008-02-09 02:26:01 +0800373 }
374 if (current_type != 0) {
375 new_map[new_entry].addr = change_point[chgidx]->addr;
376 new_map[new_entry].type = current_type;
377 last_addr = change_point[chgidx]->addr;
378 }
379 last_type = current_type;
380 }
381 }
Graf Yang8f658732008-11-18 17:48:22 +0800382 new_nr = new_entry; /* retain count for new entries */
Yi Li856783b2008-02-09 02:26:01 +0800383
Graf Yang8f658732008-11-18 17:48:22 +0800384 /* copy new mapping into original location */
Yi Li856783b2008-02-09 02:26:01 +0800385 memcpy(map, new_map, new_nr*sizeof(struct bfin_memmap_entry));
386 *pnr_map = new_nr;
387
388 return 0;
389}
390
391static void __init print_memory_map(char *who)
392{
393 int i;
394
395 for (i = 0; i < bfin_memmap.nr_map; i++) {
396 printk(KERN_DEBUG " %s: %016Lx - %016Lx ", who,
397 bfin_memmap.map[i].addr,
398 bfin_memmap.map[i].addr + bfin_memmap.map[i].size);
399 switch (bfin_memmap.map[i].type) {
400 case BFIN_MEMMAP_RAM:
Joe Perchesad361c92009-07-06 13:05:40 -0700401 printk(KERN_CONT "(usable)\n");
402 break;
Yi Li856783b2008-02-09 02:26:01 +0800403 case BFIN_MEMMAP_RESERVED:
Joe Perchesad361c92009-07-06 13:05:40 -0700404 printk(KERN_CONT "(reserved)\n");
405 break;
406 default:
407 printk(KERN_CONT "type %lu\n", bfin_memmap.map[i].type);
408 break;
Yi Li856783b2008-02-09 02:26:01 +0800409 }
410 }
411}
412
413static __init int parse_memmap(char *arg)
414{
415 unsigned long long start_at, mem_size;
416
417 if (!arg)
418 return -EINVAL;
419
420 mem_size = memparse(arg, &arg);
421 if (*arg == '@') {
422 start_at = memparse(arg+1, &arg);
423 add_memory_region(start_at, mem_size, BFIN_MEMMAP_RAM);
424 } else if (*arg == '$') {
425 start_at = memparse(arg+1, &arg);
426 add_memory_region(start_at, mem_size, BFIN_MEMMAP_RESERVED);
427 }
428
429 return 0;
430}
431
Bryan Wu1394f032007-05-06 14:50:22 -0700432/*
433 * Initial parsing of the command line. Currently, we support:
434 * - Controlling the linux memory size: mem=xxx[KMG]
435 * - Controlling the physical memory size: max_mem=xxx[KMG][$][#]
436 * $ -> reserved memory is dcacheable
437 * # -> reserved memory is icacheable
Yi Li856783b2008-02-09 02:26:01 +0800438 * - "memmap=XXX[KkmM][@][$]XXX[KkmM]" defines a memory region
439 * @ from <start> to <start>+<mem>, type RAM
440 * $ from <start> to <start>+<mem>, type RESERVED
Bryan Wu1394f032007-05-06 14:50:22 -0700441 */
442static __init void parse_cmdline_early(char *cmdline_p)
443{
444 char c = ' ', *to = cmdline_p;
445 unsigned int memsize;
446 for (;;) {
447 if (c == ' ') {
Bryan Wu1394f032007-05-06 14:50:22 -0700448 if (!memcmp(to, "mem=", 4)) {
449 to += 4;
450 memsize = memparse(to, &to);
451 if (memsize)
452 _ramend = memsize;
453
454 } else if (!memcmp(to, "max_mem=", 8)) {
455 to += 8;
456 memsize = memparse(to, &to);
457 if (memsize) {
458 physical_mem_end = memsize;
459 if (*to != ' ') {
460 if (*to == '$'
461 || *(to + 1) == '$')
Graf Yang8f658732008-11-18 17:48:22 +0800462 reserved_mem_dcache_on = 1;
Bryan Wu1394f032007-05-06 14:50:22 -0700463 if (*to == '#'
464 || *(to + 1) == '#')
Graf Yang8f658732008-11-18 17:48:22 +0800465 reserved_mem_icache_on = 1;
Bryan Wu1394f032007-05-06 14:50:22 -0700466 }
467 }
Mike Frysinger7f1e2f92009-01-07 23:14:38 +0800468 } else if (!memcmp(to, "clkin_hz=", 9)) {
469 to += 9;
470 early_init_clkin_hz(to);
Robin Getzbd854c02009-06-18 22:53:43 +0000471#ifdef CONFIG_EARLY_PRINTK
Robin Getzce3afa12007-10-09 17:28:36 +0800472 } else if (!memcmp(to, "earlyprintk=", 12)) {
473 to += 12;
474 setup_early_printk(to);
Robin Getzbd854c02009-06-18 22:53:43 +0000475#endif
Yi Li856783b2008-02-09 02:26:01 +0800476 } else if (!memcmp(to, "memmap=", 7)) {
477 to += 7;
478 parse_memmap(to);
Bryan Wu1394f032007-05-06 14:50:22 -0700479 }
Bryan Wu1394f032007-05-06 14:50:22 -0700480 }
481 c = *(to++);
482 if (!c)
483 break;
484 }
485}
486
Yi Li856783b2008-02-09 02:26:01 +0800487/*
488 * Setup memory defaults from user config.
489 * The physical memory layout looks like:
490 *
491 * [_rambase, _ramstart]: kernel image
492 * [memory_start, memory_end]: dynamic memory managed by kernel
493 * [memory_end, _ramend]: reserved memory
Bryan Wu3094c982008-10-10 21:22:01 +0800494 * [memory_mtd_start(memory_end),
Yi Li856783b2008-02-09 02:26:01 +0800495 * memory_mtd_start + mtd_size]: rootfs (if any)
496 * [_ramend - DMA_UNCACHED_REGION,
497 * _ramend]: uncached DMA region
498 * [_ramend, physical_mem_end]: memory not managed by kernel
Yi Li856783b2008-02-09 02:26:01 +0800499 */
Graf Yang8f658732008-11-18 17:48:22 +0800500static __init void memory_setup(void)
Bryan Wu1394f032007-05-06 14:50:22 -0700501{
Mike Frysingerc0eab3b2008-02-02 15:36:11 +0800502#ifdef CONFIG_MTD_UCLINUX
503 unsigned long mtd_phys = 0;
504#endif
Robin Getz2f812c02009-06-26 12:52:46 +0000505 unsigned long max_mem;
Mike Frysingerc0eab3b2008-02-02 15:36:11 +0800506
Yi Li856783b2008-02-09 02:26:01 +0800507 _rambase = (unsigned long)_stext;
Mike Frysingerb7627ac2008-02-02 15:53:17 +0800508 _ramstart = (unsigned long)_end;
Bryan Wu1394f032007-05-06 14:50:22 -0700509
Yi Li856783b2008-02-09 02:26:01 +0800510 if (DMA_UNCACHED_REGION > (_ramend - _ramstart)) {
511 console_init();
Mike Frysingerd8804ad2009-04-29 06:26:46 +0000512 panic("DMA region exceeds memory limit: %lu.",
Yi Li856783b2008-02-09 02:26:01 +0800513 _ramend - _ramstart);
Mike Frysinger1aafd902007-07-25 11:19:14 +0800514 }
Robin Getz2f812c02009-06-26 12:52:46 +0000515 max_mem = memory_end = _ramend - DMA_UNCACHED_REGION;
516
517#if (defined(CONFIG_BFIN_EXTMEM_ICACHEABLE) && ANOMALY_05000263)
518 /* Due to a Hardware Anomaly we need to limit the size of usable
519 * instruction memory to max 60MB, 56 if HUNT_FOR_ZERO is on
520 * 05000263 - Hardware loop corrupted when taking an ICPLB exception
521 */
522# if (defined(CONFIG_DEBUG_HUNT_FOR_ZERO))
523 if (max_mem >= 56 * 1024 * 1024)
524 max_mem = 56 * 1024 * 1024;
525# else
526 if (max_mem >= 60 * 1024 * 1024)
527 max_mem = 60 * 1024 * 1024;
528# endif /* CONFIG_DEBUG_HUNT_FOR_ZERO */
529#endif /* ANOMALY_05000263 */
530
Bryan Wu1394f032007-05-06 14:50:22 -0700531
Bernd Schmidtb97b8a92008-01-27 18:39:16 +0800532#ifdef CONFIG_MPU
Graf Yang8f658732008-11-18 17:48:22 +0800533 /* Round up to multiple of 4MB */
Bernd Schmidtb97b8a92008-01-27 18:39:16 +0800534 memory_start = (_ramstart + 0x3fffff) & ~0x3fffff;
535#else
Bryan Wu1394f032007-05-06 14:50:22 -0700536 memory_start = PAGE_ALIGN(_ramstart);
Bernd Schmidtb97b8a92008-01-27 18:39:16 +0800537#endif
Bryan Wu1394f032007-05-06 14:50:22 -0700538
539#if defined(CONFIG_MTD_UCLINUX)
540 /* generic memory mapped MTD driver */
541 memory_mtd_end = memory_end;
542
543 mtd_phys = _ramstart;
544 mtd_size = PAGE_ALIGN(*((unsigned long *)(mtd_phys + 8)));
545
546# if defined(CONFIG_EXT2_FS) || defined(CONFIG_EXT3_FS)
547 if (*((unsigned short *)(mtd_phys + 0x438)) == EXT2_SUPER_MAGIC)
548 mtd_size =
549 PAGE_ALIGN(*((unsigned long *)(mtd_phys + 0x404)) << 10);
550# endif
551
552# if defined(CONFIG_CRAMFS)
553 if (*((unsigned long *)(mtd_phys)) == CRAMFS_MAGIC)
554 mtd_size = PAGE_ALIGN(*((unsigned long *)(mtd_phys + 0x4)));
555# endif
556
557# if defined(CONFIG_ROMFS_FS)
558 if (((unsigned long *)mtd_phys)[0] == ROMSB_WORD0
Robin Getz2f812c02009-06-26 12:52:46 +0000559 && ((unsigned long *)mtd_phys)[1] == ROMSB_WORD1) {
Bryan Wu1394f032007-05-06 14:50:22 -0700560 mtd_size =
561 PAGE_ALIGN(be32_to_cpu(((unsigned long *)mtd_phys)[2]));
Robin Getz2f812c02009-06-26 12:52:46 +0000562
563 /* ROM_FS is XIP, so if we found it, we need to limit memory */
564 if (memory_end > max_mem) {
565 pr_info("Limiting kernel memory to %liMB due to anomaly 05000263\n", max_mem >> 20);
566 memory_end = max_mem;
567 }
568 }
Bryan Wu1394f032007-05-06 14:50:22 -0700569# endif /* CONFIG_ROMFS_FS */
570
Robin Getzdc437b12009-06-26 12:23:51 +0000571 /* Since the default MTD_UCLINUX has no magic number, we just blindly
572 * read 8 past the end of the kernel's image, and look at it.
573 * When no image is attached, mtd_size is set to a random number
574 * Do some basic sanity checks before operating on things
575 */
576 if (mtd_size == 0 || memory_end <= mtd_size) {
577 pr_emerg("Could not find valid ram mtd attached.\n");
578 } else {
579 memory_end -= mtd_size;
Bryan Wu1394f032007-05-06 14:50:22 -0700580
Robin Getzdc437b12009-06-26 12:23:51 +0000581 /* Relocate MTD image to the top of memory after the uncached memory area */
582 uclinux_ram_map.phys = memory_mtd_start = memory_end;
583 uclinux_ram_map.size = mtd_size;
584 pr_info("Found mtd parition at 0x%p, (len=0x%lx), moving to 0x%p\n",
585 _end, mtd_size, (void *)memory_mtd_start);
586 dma_memcpy((void *)uclinux_ram_map.phys, _end, uclinux_ram_map.size);
Bryan Wu1394f032007-05-06 14:50:22 -0700587 }
Bryan Wu1394f032007-05-06 14:50:22 -0700588#endif /* CONFIG_MTD_UCLINUX */
589
Robin Getz2f812c02009-06-26 12:52:46 +0000590 /* We need lo limit memory, since everything could have a text section
591 * of userspace in it, and expose anomaly 05000263. If the anomaly
592 * doesn't exist, or we don't need to - then dont.
Bryan Wu1394f032007-05-06 14:50:22 -0700593 */
Robin Getz2f812c02009-06-26 12:52:46 +0000594 if (memory_end > max_mem) {
595 pr_info("Limiting kernel memory to %liMB due to anomaly 05000263\n", max_mem >> 20);
596 memory_end = max_mem;
597 }
Bryan Wu1394f032007-05-06 14:50:22 -0700598
Bernd Schmidtb97b8a92008-01-27 18:39:16 +0800599#ifdef CONFIG_MPU
Barry Songe18e7dd2009-12-07 10:05:58 +0000600#if defined(CONFIG_ROMFS_ON_MTD) && defined(CONFIG_MTD_ROM)
601 page_mask_nelts = (((_ramend + ASYNC_BANK3_BASE + ASYNC_BANK3_SIZE -
602 ASYNC_BANK0_BASE) >> PAGE_SHIFT) + 31) / 32;
603#else
Bernd Schmidtb97b8a92008-01-27 18:39:16 +0800604 page_mask_nelts = ((_ramend >> PAGE_SHIFT) + 31) / 32;
Barry Songe18e7dd2009-12-07 10:05:58 +0000605#endif
Bernd Schmidtb97b8a92008-01-27 18:39:16 +0800606 page_mask_order = get_order(3 * page_mask_nelts * sizeof(long));
607#endif
608
Bryan Wu1394f032007-05-06 14:50:22 -0700609 init_mm.start_code = (unsigned long)_stext;
610 init_mm.end_code = (unsigned long)_etext;
611 init_mm.end_data = (unsigned long)_edata;
612 init_mm.brk = (unsigned long)0;
613
Yi Li856783b2008-02-09 02:26:01 +0800614 printk(KERN_INFO "Board Memory: %ldMB\n", physical_mem_end >> 20);
615 printk(KERN_INFO "Kernel Managed Memory: %ldMB\n", _ramend >> 20);
616
Mike Frysingerb7627ac2008-02-02 15:53:17 +0800617 printk(KERN_INFO "Memory map:\n"
Joe Perchesad361c92009-07-06 13:05:40 -0700618 " fixedcode = 0x%p-0x%p\n"
619 " text = 0x%p-0x%p\n"
620 " rodata = 0x%p-0x%p\n"
621 " bss = 0x%p-0x%p\n"
622 " data = 0x%p-0x%p\n"
623 " stack = 0x%p-0x%p\n"
624 " init = 0x%p-0x%p\n"
625 " available = 0x%p-0x%p\n"
Yi Li856783b2008-02-09 02:26:01 +0800626#ifdef CONFIG_MTD_UCLINUX
Joe Perchesad361c92009-07-06 13:05:40 -0700627 " rootfs = 0x%p-0x%p\n"
Yi Li856783b2008-02-09 02:26:01 +0800628#endif
629#if DMA_UNCACHED_REGION > 0
Joe Perchesad361c92009-07-06 13:05:40 -0700630 " DMA Zone = 0x%p-0x%p\n"
Yi Li856783b2008-02-09 02:26:01 +0800631#endif
Mike Frysinger8929ecf82008-02-22 16:35:20 +0800632 , (void *)FIXED_CODE_START, (void *)FIXED_CODE_END,
633 _stext, _etext,
Yi Li856783b2008-02-09 02:26:01 +0800634 __start_rodata, __end_rodata,
Mike Frysingerb7627ac2008-02-02 15:53:17 +0800635 __bss_start, __bss_stop,
Yi Li856783b2008-02-09 02:26:01 +0800636 _sdata, _edata,
637 (void *)&init_thread_union,
Barry Song6feda3a2010-01-05 07:05:50 +0000638 (void *)((int)(&init_thread_union) + THREAD_SIZE),
Mike Frysingerb7627ac2008-02-02 15:53:17 +0800639 __init_begin, __init_end,
640 (void *)_ramstart, (void *)memory_end
Yi Li856783b2008-02-09 02:26:01 +0800641#ifdef CONFIG_MTD_UCLINUX
642 , (void *)memory_mtd_start, (void *)(memory_mtd_start + mtd_size)
643#endif
644#if DMA_UNCACHED_REGION > 0
645 , (void *)(_ramend - DMA_UNCACHED_REGION), (void *)(_ramend)
646#endif
647 );
648}
649
Yi Li2e8d7962008-03-26 07:08:12 +0800650/*
651 * Find the lowest, highest page frame number we have available
652 */
653void __init find_min_max_pfn(void)
654{
655 int i;
656
657 max_pfn = 0;
658 min_low_pfn = memory_end;
659
660 for (i = 0; i < bfin_memmap.nr_map; i++) {
661 unsigned long start, end;
662 /* RAM? */
663 if (bfin_memmap.map[i].type != BFIN_MEMMAP_RAM)
664 continue;
665 start = PFN_UP(bfin_memmap.map[i].addr);
666 end = PFN_DOWN(bfin_memmap.map[i].addr +
667 bfin_memmap.map[i].size);
668 if (start >= end)
669 continue;
670 if (end > max_pfn)
671 max_pfn = end;
672 if (start < min_low_pfn)
673 min_low_pfn = start;
674 }
675}
676
Yi Li856783b2008-02-09 02:26:01 +0800677static __init void setup_bootmem_allocator(void)
678{
679 int bootmap_size;
680 int i;
Yi Li2e8d7962008-03-26 07:08:12 +0800681 unsigned long start_pfn, end_pfn;
Yi Li856783b2008-02-09 02:26:01 +0800682 unsigned long curr_pfn, last_pfn, size;
683
684 /* mark memory between memory_start and memory_end usable */
685 add_memory_region(memory_start,
686 memory_end - memory_start, BFIN_MEMMAP_RAM);
687 /* sanity check for overlap */
688 sanitize_memmap(bfin_memmap.map, &bfin_memmap.nr_map);
689 print_memory_map("boot memmap");
690
Michael Hennerich05d17df2009-08-21 03:49:19 +0000691 /* initialize globals in linux/bootmem.h */
Yi Li2e8d7962008-03-26 07:08:12 +0800692 find_min_max_pfn();
693 /* pfn of the last usable page frame */
694 if (max_pfn > memory_end >> PAGE_SHIFT)
695 max_pfn = memory_end >> PAGE_SHIFT;
696 /* pfn of last page frame directly mapped by kernel */
697 max_low_pfn = max_pfn;
698 /* pfn of the first usable page frame after kernel image*/
699 if (min_low_pfn < memory_start >> PAGE_SHIFT)
700 min_low_pfn = memory_start >> PAGE_SHIFT;
701
702 start_pfn = PAGE_OFFSET >> PAGE_SHIFT;
703 end_pfn = memory_end >> PAGE_SHIFT;
Yi Li856783b2008-02-09 02:26:01 +0800704
705 /*
Graf Yang8f658732008-11-18 17:48:22 +0800706 * give all the memory to the bootmap allocator, tell it to put the
Yi Li856783b2008-02-09 02:26:01 +0800707 * boot mem_map at the start of memory.
708 */
709 bootmap_size = init_bootmem_node(NODE_DATA(0),
710 memory_start >> PAGE_SHIFT, /* map goes here */
Yi Li2e8d7962008-03-26 07:08:12 +0800711 start_pfn, end_pfn);
Yi Li856783b2008-02-09 02:26:01 +0800712
713 /* register the memmap regions with the bootmem allocator */
714 for (i = 0; i < bfin_memmap.nr_map; i++) {
715 /*
716 * Reserve usable memory
717 */
718 if (bfin_memmap.map[i].type != BFIN_MEMMAP_RAM)
719 continue;
720 /*
721 * We are rounding up the start address of usable memory:
722 */
723 curr_pfn = PFN_UP(bfin_memmap.map[i].addr);
Yi Li2e8d7962008-03-26 07:08:12 +0800724 if (curr_pfn >= end_pfn)
Yi Li856783b2008-02-09 02:26:01 +0800725 continue;
726 /*
727 * ... and at the end of the usable range downwards:
728 */
729 last_pfn = PFN_DOWN(bfin_memmap.map[i].addr +
730 bfin_memmap.map[i].size);
731
Yi Li2e8d7962008-03-26 07:08:12 +0800732 if (last_pfn > end_pfn)
733 last_pfn = end_pfn;
Yi Li856783b2008-02-09 02:26:01 +0800734
735 /*
736 * .. finally, did all the rounding and playing
737 * around just make the area go away?
738 */
739 if (last_pfn <= curr_pfn)
740 continue;
741
742 size = last_pfn - curr_pfn;
743 free_bootmem(PFN_PHYS(curr_pfn), PFN_PHYS(size));
744 }
745
746 /* reserve memory before memory_start, including bootmap */
747 reserve_bootmem(PAGE_OFFSET,
748 memory_start + bootmap_size + PAGE_SIZE - 1 - PAGE_OFFSET,
749 BOOTMEM_DEFAULT);
750}
751
Mike Frysingera086ee22008-04-25 02:04:05 +0800752#define EBSZ_TO_MEG(ebsz) \
753({ \
754 int meg = 0; \
755 switch (ebsz & 0xf) { \
756 case 0x1: meg = 16; break; \
757 case 0x3: meg = 32; break; \
758 case 0x5: meg = 64; break; \
759 case 0x7: meg = 128; break; \
760 case 0x9: meg = 256; break; \
761 case 0xb: meg = 512; break; \
762 } \
763 meg; \
764})
765static inline int __init get_mem_size(void)
766{
Michael Hennerich99d95bb2008-07-14 17:04:14 +0800767#if defined(EBIU_SDBCTL)
768# if defined(BF561_FAMILY)
Mike Frysingera086ee22008-04-25 02:04:05 +0800769 int ret = 0;
770 u32 sdbctl = bfin_read_EBIU_SDBCTL();
771 ret += EBSZ_TO_MEG(sdbctl >> 0);
772 ret += EBSZ_TO_MEG(sdbctl >> 8);
773 ret += EBSZ_TO_MEG(sdbctl >> 16);
774 ret += EBSZ_TO_MEG(sdbctl >> 24);
775 return ret;
Michael Hennerich99d95bb2008-07-14 17:04:14 +0800776# else
Mike Frysingera086ee22008-04-25 02:04:05 +0800777 return EBSZ_TO_MEG(bfin_read_EBIU_SDBCTL());
Michael Hennerich99d95bb2008-07-14 17:04:14 +0800778# endif
779#elif defined(EBIU_DDRCTL1)
Michael Hennerich1e780422008-04-25 04:31:23 +0800780 u32 ddrctl = bfin_read_EBIU_DDRCTL1();
781 int ret = 0;
782 switch (ddrctl & 0xc0000) {
783 case DEVSZ_64: ret = 64 / 8;
784 case DEVSZ_128: ret = 128 / 8;
785 case DEVSZ_256: ret = 256 / 8;
786 case DEVSZ_512: ret = 512 / 8;
Mike Frysingera086ee22008-04-25 02:04:05 +0800787 }
Michael Hennerich1e780422008-04-25 04:31:23 +0800788 switch (ddrctl & 0x30000) {
789 case DEVWD_4: ret *= 2;
790 case DEVWD_8: ret *= 2;
791 case DEVWD_16: break;
792 }
Mike Frysingerb1b154e2008-07-26 18:02:05 +0800793 if ((ddrctl & 0xc000) == 0x4000)
794 ret *= 2;
Michael Hennerich1e780422008-04-25 04:31:23 +0800795 return ret;
Mike Frysingera086ee22008-04-25 02:04:05 +0800796#endif
797 BUG();
798}
799
Sonic Zhangb635f192009-09-23 08:06:25 +0000800__attribute__((weak))
801void __init native_machine_early_platform_add_devices(void)
802{
803}
804
Yi Li856783b2008-02-09 02:26:01 +0800805void __init setup_arch(char **cmdline_p)
806{
Mike Frysinger9f8e8952008-04-24 06:20:11 +0800807 unsigned long sclk, cclk;
Yi Li856783b2008-02-09 02:26:01 +0800808
Sonic Zhangb635f192009-09-23 08:06:25 +0000809 native_machine_early_platform_add_devices();
810
Robin Getz3f871fe2009-07-06 14:53:19 +0000811 enable_shadow_console();
812
Robin Getzbd854c02009-06-18 22:53:43 +0000813 /* Check to make sure we are running on the right processor */
814 if (unlikely(CPUID != bfin_cpuid()))
815 printk(KERN_ERR "ERROR: Not running on ADSP-%s: unknown CPUID 0x%04x Rev 0.%d\n",
816 CPU, bfin_cpuid(), bfin_revid());
817
Yi Li856783b2008-02-09 02:26:01 +0800818#ifdef CONFIG_DUMMY_CONSOLE
819 conswitchp = &dummy_con;
820#endif
821
822#if defined(CONFIG_CMDLINE_BOOL)
823 strncpy(&command_line[0], CONFIG_CMDLINE, sizeof(command_line));
824 command_line[sizeof(command_line) - 1] = 0;
825#endif
826
827 /* Keep a copy of command line */
828 *cmdline_p = &command_line[0];
829 memcpy(boot_command_line, command_line, COMMAND_LINE_SIZE);
830 boot_command_line[COMMAND_LINE_SIZE - 1] = '\0';
831
Yi Li856783b2008-02-09 02:26:01 +0800832 memset(&bfin_memmap, 0, sizeof(bfin_memmap));
833
Robin Getzbd854c02009-06-18 22:53:43 +0000834 /* If the user does not specify things on the command line, use
835 * what the bootloader set things up as
836 */
837 physical_mem_end = 0;
Yi Li856783b2008-02-09 02:26:01 +0800838 parse_cmdline_early(&command_line[0]);
839
Robin Getzbd854c02009-06-18 22:53:43 +0000840 if (_ramend == 0)
841 _ramend = get_mem_size() * 1024 * 1024;
842
Yi Li856783b2008-02-09 02:26:01 +0800843 if (physical_mem_end == 0)
844 physical_mem_end = _ramend;
845
846 memory_setup();
847
Mike Frysinger7e64aca2008-08-06 17:17:10 +0800848 /* Initialize Async memory banks */
849 bfin_write_EBIU_AMBCTL0(AMBCTL0VAL);
850 bfin_write_EBIU_AMBCTL1(AMBCTL1VAL);
851 bfin_write_EBIU_AMGCTL(AMGCTLVAL);
852#ifdef CONFIG_EBIU_MBSCTLVAL
853 bfin_write_EBIU_MBSCTL(CONFIG_EBIU_MBSCTLVAL);
854 bfin_write_EBIU_MODE(CONFIG_EBIU_MODEVAL);
855 bfin_write_EBIU_FCTL(CONFIG_EBIU_FCTLVAL);
856#endif
857
Yi Li856783b2008-02-09 02:26:01 +0800858 cclk = get_cclk();
859 sclk = get_sclk();
860
Sonic Zhang7f3aee32009-05-07 10:04:19 +0000861 if ((ANOMALY_05000273 || ANOMALY_05000274) && (cclk >> 1) < sclk)
862 panic("ANOMALY 05000273 or 05000274: CCLK must be >= 2*SCLK");
Yi Li856783b2008-02-09 02:26:01 +0800863
864#ifdef BF561_FAMILY
865 if (ANOMALY_05000266) {
866 bfin_read_IMDMA_D0_IRQ_STATUS();
867 bfin_read_IMDMA_D1_IRQ_STATUS();
868 }
869#endif
870 printk(KERN_INFO "Hardware Trace ");
871 if (bfin_read_TBUFCTL() & 0x1)
Joe Perchesad361c92009-07-06 13:05:40 -0700872 printk(KERN_CONT "Active ");
Yi Li856783b2008-02-09 02:26:01 +0800873 else
Joe Perchesad361c92009-07-06 13:05:40 -0700874 printk(KERN_CONT "Off ");
Yi Li856783b2008-02-09 02:26:01 +0800875 if (bfin_read_TBUFCTL() & 0x2)
Joe Perchesad361c92009-07-06 13:05:40 -0700876 printk(KERN_CONT "and Enabled\n");
Yi Li856783b2008-02-09 02:26:01 +0800877 else
Joe Perchesad361c92009-07-06 13:05:40 -0700878 printk(KERN_CONT "and Disabled\n");
Yi Li856783b2008-02-09 02:26:01 +0800879
Robin Getz76e8fe42009-02-04 16:49:45 +0800880 printk(KERN_INFO "Boot Mode: %i\n", bfin_read_SYSCR() & 0xF);
881
Mike Frysingered1fb602009-02-04 16:49:45 +0800882 /* Newer parts mirror SWRST bits in SYSCR */
883#if defined(CONFIG_BF53x) || defined(CONFIG_BF561) || \
884 defined(CONFIG_BF538) || defined(CONFIG_BF539)
Robin Getz7728ec32007-10-29 18:12:15 +0800885 _bfin_swrst = bfin_read_SWRST();
Mike Frysingered1fb602009-02-04 16:49:45 +0800886#else
Sonic Zhang0de4adf2009-06-15 07:39:19 +0000887 /* Clear boot mode field */
888 _bfin_swrst = bfin_read_SYSCR() & ~0xf;
Mike Frysingered1fb602009-02-04 16:49:45 +0800889#endif
Robin Getz7728ec32007-10-29 18:12:15 +0800890
Robin Getz0c7a6b22008-10-08 16:27:12 +0800891#ifdef CONFIG_DEBUG_DOUBLEFAULT_PRINT
892 bfin_write_SWRST(_bfin_swrst & ~DOUBLE_FAULT);
893#endif
894#ifdef CONFIG_DEBUG_DOUBLEFAULT_RESET
895 bfin_write_SWRST(_bfin_swrst | DOUBLE_FAULT);
896#endif
Robin Getz2d200982008-07-26 19:41:40 +0800897
Graf Yang8f658732008-11-18 17:48:22 +0800898#ifdef CONFIG_SMP
899 if (_bfin_swrst & SWRST_DBL_FAULT_A) {
900#else
Robin Getz0c7a6b22008-10-08 16:27:12 +0800901 if (_bfin_swrst & RESET_DOUBLE) {
Graf Yang8f658732008-11-18 17:48:22 +0800902#endif
Robin Getz0c7a6b22008-10-08 16:27:12 +0800903 printk(KERN_EMERG "Recovering from DOUBLE FAULT event\n");
904#ifdef CONFIG_DEBUG_DOUBLEFAULT
905 /* We assume the crashing kernel, and the current symbol table match */
906 printk(KERN_EMERG " While handling exception (EXCAUSE = 0x%x) at %pF\n",
907 (int)init_saved_seqstat & SEQSTAT_EXCAUSE, init_saved_retx);
908 printk(KERN_NOTICE " DCPLB_FAULT_ADDR: %pF\n", init_saved_dcplb_fault_addr);
909 printk(KERN_NOTICE " ICPLB_FAULT_ADDR: %pF\n", init_saved_icplb_fault_addr);
910#endif
911 printk(KERN_NOTICE " The instruction at %pF caused a double exception\n",
912 init_retx);
913 } else if (_bfin_swrst & RESET_WDOG)
Robin Getz7728ec32007-10-29 18:12:15 +0800914 printk(KERN_INFO "Recovering from Watchdog event\n");
915 else if (_bfin_swrst & RESET_SOFTWARE)
916 printk(KERN_NOTICE "Reset caused by Software reset\n");
917
Michael Hennerich972de7d2009-02-04 16:49:45 +0800918 printk(KERN_INFO "Blackfin support (C) 2004-2009 Analog Devices, Inc.\n");
Jie Zhangde3025f2007-06-25 18:04:12 +0800919 if (bfin_compiled_revid() == 0xffff)
Robin Getz7a1a8cc2009-10-20 17:22:18 +0000920 printk(KERN_INFO "Compiled for ADSP-%s Rev any, running on 0.%d\n", CPU, bfin_revid());
Jie Zhangde3025f2007-06-25 18:04:12 +0800921 else if (bfin_compiled_revid() == -1)
922 printk(KERN_INFO "Compiled for ADSP-%s Rev none\n", CPU);
923 else
924 printk(KERN_INFO "Compiled for ADSP-%s Rev 0.%d\n", CPU, bfin_compiled_revid());
Robin Getze482cad2008-10-10 18:21:45 +0800925
Robin Getzbd854c02009-06-18 22:53:43 +0000926 if (likely(CPUID == bfin_cpuid())) {
Robin Getze482cad2008-10-10 18:21:45 +0800927 if (bfin_revid() != bfin_compiled_revid()) {
928 if (bfin_compiled_revid() == -1)
929 printk(KERN_ERR "Warning: Compiled for Rev none, but running on Rev %d\n",
930 bfin_revid());
Robin Getz7419a322009-01-07 23:14:39 +0800931 else if (bfin_compiled_revid() != 0xffff) {
Robin Getze482cad2008-10-10 18:21:45 +0800932 printk(KERN_ERR "Warning: Compiled for Rev %d, but running on Rev %d\n",
933 bfin_compiled_revid(), bfin_revid());
Robin Getz7419a322009-01-07 23:14:39 +0800934 if (bfin_compiled_revid() > bfin_revid())
Mike Frysingerd8804ad2009-04-29 06:26:46 +0000935 panic("Error: you are missing anomaly workarounds for this rev");
Robin Getz7419a322009-01-07 23:14:39 +0800936 }
Robin Getze482cad2008-10-10 18:21:45 +0800937 }
Mike Frysingerda986b92008-10-28 13:58:15 +0800938 if (bfin_revid() < CONFIG_BF_REV_MIN || bfin_revid() > CONFIG_BF_REV_MAX)
Robin Getze482cad2008-10-10 18:21:45 +0800939 printk(KERN_ERR "Warning: Unsupported Chip Revision ADSP-%s Rev 0.%d detected\n",
940 CPU, bfin_revid());
Jie Zhangde3025f2007-06-25 18:04:12 +0800941 }
Mike Frysinger0c0497c2008-10-09 17:32:28 +0800942
Bryan Wu1394f032007-05-06 14:50:22 -0700943 printk(KERN_INFO "Blackfin Linux support by http://blackfin.uclinux.org/\n");
944
Mike Frysingerb5c0e2e2007-09-12 17:31:59 +0800945 printk(KERN_INFO "Processor Speed: %lu MHz core clock and %lu MHz System Clock\n",
Graf Yang8f658732008-11-18 17:48:22 +0800946 cclk / 1000000, sclk / 1000000);
Bryan Wu1394f032007-05-06 14:50:22 -0700947
Yi Li856783b2008-02-09 02:26:01 +0800948 setup_bootmem_allocator();
Bryan Wu1394f032007-05-06 14:50:22 -0700949
Bryan Wu1394f032007-05-06 14:50:22 -0700950 paging_init();
951
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800952 /* Copy atomic sequences to their fixed location, and sanity check that
953 these locations are the ones that we advertise to userspace. */
954 memcpy((void *)FIXED_CODE_START, &fixed_code_start,
955 FIXED_CODE_END - FIXED_CODE_START);
956 BUG_ON((char *)&sigreturn_stub - (char *)&fixed_code_start
957 != SIGRETURN_STUB - FIXED_CODE_START);
958 BUG_ON((char *)&atomic_xchg32 - (char *)&fixed_code_start
959 != ATOMIC_XCHG32 - FIXED_CODE_START);
960 BUG_ON((char *)&atomic_cas32 - (char *)&fixed_code_start
961 != ATOMIC_CAS32 - FIXED_CODE_START);
962 BUG_ON((char *)&atomic_add32 - (char *)&fixed_code_start
963 != ATOMIC_ADD32 - FIXED_CODE_START);
964 BUG_ON((char *)&atomic_sub32 - (char *)&fixed_code_start
965 != ATOMIC_SUB32 - FIXED_CODE_START);
966 BUG_ON((char *)&atomic_ior32 - (char *)&fixed_code_start
967 != ATOMIC_IOR32 - FIXED_CODE_START);
968 BUG_ON((char *)&atomic_and32 - (char *)&fixed_code_start
969 != ATOMIC_AND32 - FIXED_CODE_START);
970 BUG_ON((char *)&atomic_xor32 - (char *)&fixed_code_start
971 != ATOMIC_XOR32 - FIXED_CODE_START);
Robin Getz9f336a52007-10-29 18:23:28 +0800972 BUG_ON((char *)&safe_user_instruction - (char *)&fixed_code_start
973 != SAFE_USER_INSTRUCTION - FIXED_CODE_START);
Bernd Schmidt29440a22007-07-12 16:25:29 +0800974
Graf Yang8f658732008-11-18 17:48:22 +0800975#ifdef CONFIG_SMP
976 platform_init_cpus();
977#endif
Bernd Schmidt8be80ed2007-07-25 14:44:49 +0800978 init_exception_vectors();
Graf Yang8f658732008-11-18 17:48:22 +0800979 bfin_cache_init(); /* Initialize caches for the boot CPU */
Bryan Wu1394f032007-05-06 14:50:22 -0700980}
981
Bryan Wu1394f032007-05-06 14:50:22 -0700982static int __init topology_init(void)
983{
Graf Yang8f658732008-11-18 17:48:22 +0800984 unsigned int cpu;
985 /* Record CPU-private information for the boot processor. */
986 bfin_setup_cpudata(0);
Michael Hennerich6cda2e92008-02-02 15:10:51 +0800987
988 for_each_possible_cpu(cpu) {
Graf Yang8f658732008-11-18 17:48:22 +0800989 register_cpu(&per_cpu(cpu_data, cpu).cpu, cpu);
Michael Hennerich6cda2e92008-02-02 15:10:51 +0800990 }
991
Bryan Wu1394f032007-05-06 14:50:22 -0700992 return 0;
Bryan Wu1394f032007-05-06 14:50:22 -0700993}
994
995subsys_initcall(topology_init);
996
Mike Frysinger7f1e2f92009-01-07 23:14:38 +0800997/* Get the input clock frequency */
998static u_long cached_clkin_hz = CONFIG_CLKIN_HZ;
999static u_long get_clkin_hz(void)
1000{
1001 return cached_clkin_hz;
1002}
1003static int __init early_init_clkin_hz(char *buf)
1004{
1005 cached_clkin_hz = simple_strtoul(buf, NULL, 0);
Mike Frysinger508808c2009-01-07 23:14:38 +08001006#ifdef BFIN_KERNEL_CLOCK
1007 if (cached_clkin_hz != CONFIG_CLKIN_HZ)
1008 panic("cannot change clkin_hz when reprogramming clocks");
1009#endif
Mike Frysinger7f1e2f92009-01-07 23:14:38 +08001010 return 1;
1011}
1012early_param("clkin_hz=", early_init_clkin_hz);
1013
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001014/* Get the voltage input multiplier */
Mike Frysinger52a07812007-06-11 15:31:30 +08001015static u_long get_vco(void)
Bryan Wu1394f032007-05-06 14:50:22 -07001016{
Mike Frysingere32f55d2009-01-07 23:14:39 +08001017 static u_long cached_vco;
1018 u_long msel, pll_ctl;
Bryan Wu1394f032007-05-06 14:50:22 -07001019
Mike Frysingere32f55d2009-01-07 23:14:39 +08001020 /* The assumption here is that VCO never changes at runtime.
1021 * If, someday, we support that, then we'll have to change this.
1022 */
1023 if (cached_vco)
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001024 return cached_vco;
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001025
Mike Frysingere32f55d2009-01-07 23:14:39 +08001026 pll_ctl = bfin_read_PLL_CTL();
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001027 msel = (pll_ctl >> 9) & 0x3F;
Bryan Wu1394f032007-05-06 14:50:22 -07001028 if (0 == msel)
1029 msel = 64;
1030
Mike Frysinger7f1e2f92009-01-07 23:14:38 +08001031 cached_vco = get_clkin_hz();
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001032 cached_vco >>= (1 & pll_ctl); /* DF bit */
1033 cached_vco *= msel;
1034 return cached_vco;
Bryan Wu1394f032007-05-06 14:50:22 -07001035}
1036
Mike Frysinger2f6cf7b2007-10-21 22:59:49 +08001037/* Get the Core clock */
Bryan Wu1394f032007-05-06 14:50:22 -07001038u_long get_cclk(void)
1039{
Mike Frysingere32f55d2009-01-07 23:14:39 +08001040 static u_long cached_cclk_pll_div, cached_cclk;
Bryan Wu1394f032007-05-06 14:50:22 -07001041 u_long csel, ssel;
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001042
Bryan Wu1394f032007-05-06 14:50:22 -07001043 if (bfin_read_PLL_STAT() & 0x1)
Mike Frysinger7f1e2f92009-01-07 23:14:38 +08001044 return get_clkin_hz();
Bryan Wu1394f032007-05-06 14:50:22 -07001045
1046 ssel = bfin_read_PLL_DIV();
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001047 if (ssel == cached_cclk_pll_div)
1048 return cached_cclk;
1049 else
1050 cached_cclk_pll_div = ssel;
1051
Bryan Wu1394f032007-05-06 14:50:22 -07001052 csel = ((ssel >> 4) & 0x03);
1053 ssel &= 0xf;
1054 if (ssel && ssel < (1 << csel)) /* SCLK > CCLK */
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001055 cached_cclk = get_vco() / ssel;
1056 else
1057 cached_cclk = get_vco() >> csel;
1058 return cached_cclk;
Bryan Wu1394f032007-05-06 14:50:22 -07001059}
Bryan Wu1394f032007-05-06 14:50:22 -07001060EXPORT_SYMBOL(get_cclk);
1061
1062/* Get the System clock */
1063u_long get_sclk(void)
1064{
Mike Frysingere32f55d2009-01-07 23:14:39 +08001065 static u_long cached_sclk;
Bryan Wu1394f032007-05-06 14:50:22 -07001066 u_long ssel;
1067
Mike Frysingere32f55d2009-01-07 23:14:39 +08001068 /* The assumption here is that SCLK never changes at runtime.
1069 * If, someday, we support that, then we'll have to change this.
1070 */
1071 if (cached_sclk)
1072 return cached_sclk;
1073
Bryan Wu1394f032007-05-06 14:50:22 -07001074 if (bfin_read_PLL_STAT() & 0x1)
Mike Frysinger7f1e2f92009-01-07 23:14:38 +08001075 return get_clkin_hz();
Bryan Wu1394f032007-05-06 14:50:22 -07001076
Mike Frysingere32f55d2009-01-07 23:14:39 +08001077 ssel = bfin_read_PLL_DIV() & 0xf;
Bryan Wu1394f032007-05-06 14:50:22 -07001078 if (0 == ssel) {
1079 printk(KERN_WARNING "Invalid System Clock\n");
1080 ssel = 1;
1081 }
1082
Mike Frysinger3a2521f2008-07-26 18:52:56 +08001083 cached_sclk = get_vco() / ssel;
1084 return cached_sclk;
Bryan Wu1394f032007-05-06 14:50:22 -07001085}
Bryan Wu1394f032007-05-06 14:50:22 -07001086EXPORT_SYMBOL(get_sclk);
1087
Mike Frysinger2f6cf7b2007-10-21 22:59:49 +08001088unsigned long sclk_to_usecs(unsigned long sclk)
1089{
Mike Frysinger1754a5d2007-11-23 11:28:11 +08001090 u64 tmp = USEC_PER_SEC * (u64)sclk;
1091 do_div(tmp, get_sclk());
1092 return tmp;
Mike Frysinger2f6cf7b2007-10-21 22:59:49 +08001093}
1094EXPORT_SYMBOL(sclk_to_usecs);
1095
1096unsigned long usecs_to_sclk(unsigned long usecs)
1097{
Mike Frysinger1754a5d2007-11-23 11:28:11 +08001098 u64 tmp = get_sclk() * (u64)usecs;
1099 do_div(tmp, USEC_PER_SEC);
1100 return tmp;
Mike Frysinger2f6cf7b2007-10-21 22:59:49 +08001101}
1102EXPORT_SYMBOL(usecs_to_sclk);
1103
Bryan Wu1394f032007-05-06 14:50:22 -07001104/*
1105 * Get CPU information for use by the procfs.
1106 */
1107static int show_cpuinfo(struct seq_file *m, void *v)
1108{
Mike Frysinger066954a2007-10-21 22:36:06 +08001109 char *cpu, *mmu, *fpu, *vendor, *cache;
Bryan Wu1394f032007-05-06 14:50:22 -07001110 uint32_t revid;
Mike Frysinger275123e2009-01-07 23:14:39 +08001111 int cpu_num = *(unsigned int *)v;
Michael Hennericha5f07172008-11-18 18:04:31 +08001112 u_long sclk, cclk;
Robin Getz9de3a0b2008-07-26 19:39:19 +08001113 u_int icache_size = BFIN_ICACHESIZE / 1024, dcache_size = 0, dsup_banks = 0;
Mike Frysinger275123e2009-01-07 23:14:39 +08001114 struct blackfin_cpudata *cpudata = &per_cpu(cpu_data, cpu_num);
Bryan Wu1394f032007-05-06 14:50:22 -07001115
1116 cpu = CPU;
1117 mmu = "none";
1118 fpu = "none";
1119 revid = bfin_revid();
Bryan Wu1394f032007-05-06 14:50:22 -07001120
Bryan Wu1394f032007-05-06 14:50:22 -07001121 sclk = get_sclk();
Michael Hennericha5f07172008-11-18 18:04:31 +08001122 cclk = get_cclk();
Bryan Wu1394f032007-05-06 14:50:22 -07001123
Robin Getz73b0c0b2007-10-21 17:03:31 +08001124 switch (bfin_read_CHIPID() & CHIPID_MANUFACTURE) {
Mike Frysinger066954a2007-10-21 22:36:06 +08001125 case 0xca:
1126 vendor = "Analog Devices";
Robin Getz73b0c0b2007-10-21 17:03:31 +08001127 break;
1128 default:
Mike Frysinger066954a2007-10-21 22:36:06 +08001129 vendor = "unknown";
1130 break;
Robin Getz73b0c0b2007-10-21 17:03:31 +08001131 }
Bryan Wu1394f032007-05-06 14:50:22 -07001132
Mike Frysinger275123e2009-01-07 23:14:39 +08001133 seq_printf(m, "processor\t: %d\n" "vendor_id\t: %s\n", cpu_num, vendor);
Robin Getze482cad2008-10-10 18:21:45 +08001134
1135 if (CPUID == bfin_cpuid())
1136 seq_printf(m, "cpu family\t: 0x%04x\n", CPUID);
1137 else
1138 seq_printf(m, "cpu family\t: Compiled for:0x%04x, running on:0x%04x\n",
1139 CPUID, bfin_cpuid());
1140
1141 seq_printf(m, "model name\t: ADSP-%s %lu(MHz CCLK) %lu(MHz SCLK) (%s)\n"
Robin Getz2466ac62009-06-08 17:52:27 +00001142 "stepping\t: %d ",
Michael Hennericha5f07172008-11-18 18:04:31 +08001143 cpu, cclk/1000000, sclk/1000000,
Robin Getz253bcf42008-04-24 05:57:13 +08001144#ifdef CONFIG_MPU
1145 "mpu on",
1146#else
1147 "mpu off",
1148#endif
Robin Getz73b0c0b2007-10-21 17:03:31 +08001149 revid);
Bryan Wu1394f032007-05-06 14:50:22 -07001150
Robin Getz2466ac62009-06-08 17:52:27 +00001151 if (bfin_revid() != bfin_compiled_revid()) {
1152 if (bfin_compiled_revid() == -1)
1153 seq_printf(m, "(Compiled for Rev none)");
1154 else if (bfin_compiled_revid() == 0xffff)
1155 seq_printf(m, "(Compiled for Rev any)");
1156 else
1157 seq_printf(m, "(Compiled for Rev %d)", bfin_compiled_revid());
1158 }
1159
1160 seq_printf(m, "\ncpu MHz\t\t: %lu.%03lu/%lu.%03lu\n",
Michael Hennericha5f07172008-11-18 18:04:31 +08001161 cclk/1000000, cclk%1000000,
Robin Getz73b0c0b2007-10-21 17:03:31 +08001162 sclk/1000000, sclk%1000000);
1163 seq_printf(m, "bogomips\t: %lu.%02lu\n"
1164 "Calibration\t: %lu loops\n",
Michael Hennerichc70c7542009-07-09 09:58:52 +00001165 (loops_per_jiffy * HZ) / 500000,
1166 ((loops_per_jiffy * HZ) / 5000) % 100,
1167 (loops_per_jiffy * HZ));
Robin Getz73b0c0b2007-10-21 17:03:31 +08001168
1169 /* Check Cache configutation */
Graf Yang8f658732008-11-18 17:48:22 +08001170 switch (cpudata->dmemctl & (1 << DMC0_P | 1 << DMC1_P)) {
Mike Frysinger1f83b8f2007-07-12 22:58:21 +08001171 case ACACHE_BSRAM:
Mike Frysinger066954a2007-10-21 22:36:06 +08001172 cache = "dbank-A/B\t: cache/sram";
Mike Frysinger1f83b8f2007-07-12 22:58:21 +08001173 dcache_size = 16;
1174 dsup_banks = 1;
1175 break;
1176 case ACACHE_BCACHE:
Mike Frysinger066954a2007-10-21 22:36:06 +08001177 cache = "dbank-A/B\t: cache/cache";
Mike Frysinger1f83b8f2007-07-12 22:58:21 +08001178 dcache_size = 32;
1179 dsup_banks = 2;
1180 break;
1181 case ASRAM_BSRAM:
Mike Frysinger066954a2007-10-21 22:36:06 +08001182 cache = "dbank-A/B\t: sram/sram";
Mike Frysinger1f83b8f2007-07-12 22:58:21 +08001183 dcache_size = 0;
1184 dsup_banks = 0;
1185 break;
1186 default:
Mike Frysinger066954a2007-10-21 22:36:06 +08001187 cache = "unknown";
Robin Getz73b0c0b2007-10-21 17:03:31 +08001188 dcache_size = 0;
1189 dsup_banks = 0;
Bryan Wu1394f032007-05-06 14:50:22 -07001190 break;
1191 }
1192
Robin Getz73b0c0b2007-10-21 17:03:31 +08001193 /* Is it turned on? */
Graf Yang8f658732008-11-18 17:48:22 +08001194 if ((cpudata->dmemctl & (ENDCPLB | DMC_ENABLE)) != (ENDCPLB | DMC_ENABLE))
Robin Getz73b0c0b2007-10-21 17:03:31 +08001195 dcache_size = 0;
Bryan Wu1394f032007-05-06 14:50:22 -07001196
Graf Yang8f658732008-11-18 17:48:22 +08001197 if ((cpudata->imemctl & (IMC | ENICPLB)) != (IMC | ENICPLB))
Robin Getz9de3a0b2008-07-26 19:39:19 +08001198 icache_size = 0;
1199
Robin Getz73b0c0b2007-10-21 17:03:31 +08001200 seq_printf(m, "cache size\t: %d KB(L1 icache) "
Jie Zhang41ba6532009-06-16 09:48:33 +00001201 "%d KB(L1 dcache) %d KB(L2 cache)\n",
1202 icache_size, dcache_size, 0);
Robin Getz73b0c0b2007-10-21 17:03:31 +08001203 seq_printf(m, "%s\n", cache);
Jie Zhang41ba6532009-06-16 09:48:33 +00001204 seq_printf(m, "external memory\t: "
1205#if defined(CONFIG_BFIN_EXTMEM_ICACHEABLE)
1206 "cacheable"
1207#else
1208 "uncacheable"
1209#endif
1210 " in instruction cache\n");
1211 seq_printf(m, "external memory\t: "
1212#if defined(CONFIG_BFIN_EXTMEM_WRITEBACK)
1213 "cacheable (write-back)"
1214#elif defined(CONFIG_BFIN_EXTMEM_WRITETHROUGH)
1215 "cacheable (write-through)"
1216#else
1217 "uncacheable"
1218#endif
1219 " in data cache\n");
Robin Getz73b0c0b2007-10-21 17:03:31 +08001220
Robin Getz9de3a0b2008-07-26 19:39:19 +08001221 if (icache_size)
1222 seq_printf(m, "icache setup\t: %d Sub-banks/%d Ways, %d Lines/Way\n",
1223 BFIN_ISUBBANKS, BFIN_IWAYS, BFIN_ILINES);
1224 else
1225 seq_printf(m, "icache setup\t: off\n");
1226
Bryan Wu1394f032007-05-06 14:50:22 -07001227 seq_printf(m,
Robin Getz73b0c0b2007-10-21 17:03:31 +08001228 "dcache setup\t: %d Super-banks/%d Sub-banks/%d Ways, %d Lines/Way\n",
Robin Getz3bebca22007-10-10 23:55:26 +08001229 dsup_banks, BFIN_DSUBBANKS, BFIN_DWAYS,
1230 BFIN_DLINES);
Graf Yang8f658732008-11-18 17:48:22 +08001231#ifdef __ARCH_SYNC_CORE_DCACHE
Mike Frysinger275123e2009-01-07 23:14:39 +08001232 seq_printf(m, "SMP Dcache Flushes\t: %lu\n\n", cpudata->dcache_invld_count);
Graf Yang8f658732008-11-18 17:48:22 +08001233#endif
Sonic Zhang47e9ded2009-06-10 08:57:08 +00001234#ifdef __ARCH_SYNC_CORE_ICACHE
1235 seq_printf(m, "SMP Icache Flushes\t: %lu\n\n", cpudata->icache_invld_count);
1236#endif
Mike Frysinger275123e2009-01-07 23:14:39 +08001237
1238 if (cpu_num != num_possible_cpus() - 1)
Graf Yang8f658732008-11-18 17:48:22 +08001239 return 0;
1240
Jie Zhang41ba6532009-06-16 09:48:33 +00001241 if (L2_LENGTH) {
Mike Frysinger275123e2009-01-07 23:14:39 +08001242 seq_printf(m, "L2 SRAM\t\t: %dKB\n", L2_LENGTH/0x400);
Jie Zhang41ba6532009-06-16 09:48:33 +00001243 seq_printf(m, "L2 SRAM\t\t: "
1244#if defined(CONFIG_BFIN_L2_ICACHEABLE)
1245 "cacheable"
1246#else
1247 "uncacheable"
1248#endif
1249 " in instruction cache\n");
1250 seq_printf(m, "L2 SRAM\t\t: "
1251#if defined(CONFIG_BFIN_L2_WRITEBACK)
1252 "cacheable (write-back)"
1253#elif defined(CONFIG_BFIN_L2_WRITETHROUGH)
1254 "cacheable (write-through)"
1255#else
1256 "uncacheable"
1257#endif
1258 " in data cache\n");
1259 }
Mike Frysinger066954a2007-10-21 22:36:06 +08001260 seq_printf(m, "board name\t: %s\n", bfin_board_name);
Robin Getz73b0c0b2007-10-21 17:03:31 +08001261 seq_printf(m, "board memory\t: %ld kB (0x%p -> 0x%p)\n",
1262 physical_mem_end >> 10, (void *)0, (void *)physical_mem_end);
1263 seq_printf(m, "kernel memory\t: %d kB (0x%p -> 0x%p)\n",
1264 ((int)memory_end - (int)_stext) >> 10,
1265 _stext,
1266 (void *)memory_end);
Graf Yang8f658732008-11-18 17:48:22 +08001267 seq_printf(m, "\n");
Robin Getz73b0c0b2007-10-21 17:03:31 +08001268
Bryan Wu1394f032007-05-06 14:50:22 -07001269 return 0;
1270}
1271
1272static void *c_start(struct seq_file *m, loff_t *pos)
1273{
Graf Yang55f2fea2008-10-09 15:37:47 +08001274 if (*pos == 0)
1275 *pos = first_cpu(cpu_online_map);
1276 if (*pos >= num_online_cpus())
1277 return NULL;
1278
1279 return pos;
Bryan Wu1394f032007-05-06 14:50:22 -07001280}
1281
1282static void *c_next(struct seq_file *m, void *v, loff_t *pos)
1283{
Graf Yang55f2fea2008-10-09 15:37:47 +08001284 *pos = next_cpu(*pos, cpu_online_map);
1285
Bryan Wu1394f032007-05-06 14:50:22 -07001286 return c_start(m, pos);
1287}
1288
1289static void c_stop(struct seq_file *m, void *v)
1290{
1291}
1292
Jan Engelhardt03a44822008-02-08 04:21:19 -08001293const struct seq_operations cpuinfo_op = {
Bryan Wu1394f032007-05-06 14:50:22 -07001294 .start = c_start,
1295 .next = c_next,
1296 .stop = c_stop,
1297 .show = show_cpuinfo,
1298};
1299
Mike Frysinger5e10b4a2007-06-11 16:44:09 +08001300void __init cmdline_init(const char *r0)
Bryan Wu1394f032007-05-06 14:50:22 -07001301{
Robin Getz837ec2d2009-07-07 20:17:09 +00001302 early_shadow_stamp();
Bryan Wu1394f032007-05-06 14:50:22 -07001303 if (r0)
Mike Frysinger52a07812007-06-11 15:31:30 +08001304 strncpy(command_line, r0, COMMAND_LINE_SIZE);
Bryan Wu1394f032007-05-06 14:50:22 -07001305}