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MIPS: rtlx: Remove KERN_DEBUG from pr_debug() arguments in rtlx.c
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CommitLineData
1da177e4
LT
1/*
2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
4 * for more details.
5 *
6 * Copyright (C) 1995 Linus Torvalds
7 * Copyright (C) 1995 Waldorf Electronics
8 * Copyright (C) 1994, 95, 96, 97, 98, 99, 2000, 01, 02, 03 Ralf Baechle
9 * Copyright (C) 1996 Stoned Elipot
10 * Copyright (C) 1999 Silicon Graphics, Inc.
70342287 11 * Copyright (C) 2000, 2001, 2002, 2007 Maciej W. Rozycki
1da177e4 12 */
1da177e4
LT
13#include <linux/init.h>
14#include <linux/ioport.h>
73bc256d 15#include <linux/export.h>
894673ee 16#include <linux/screen_info.h>
9d15ffc8 17#include <linux/memblock.h>
1da177e4
LT
18#include <linux/bootmem.h>
19#include <linux/initrd.h>
1da177e4
LT
20#include <linux/root_dev.h>
21#include <linux/highmem.h>
22#include <linux/console.h>
22a9835c 23#include <linux/pfn.h>
6312e0ee 24#include <linux/debugfs.h>
7aa1c8f4 25#include <linux/kexec.h>
4d9f77d2 26#include <linux/sizes.h>
f4649382
ZLK
27#include <linux/device.h>
28#include <linux/dma-contiguous.h>
1da177e4
LT
29
30#include <asm/addrspace.h>
31#include <asm/bootinfo.h>
20d60d99 32#include <asm/bugs.h>
ec74e361 33#include <asm/cache.h>
1da177e4
LT
34#include <asm/cpu.h>
35#include <asm/sections.h>
36#include <asm/setup.h>
87353d8a 37#include <asm/smp-ops.h>
f2ffa5ab 38#include <asm/prom.h>
1da177e4 39
ec74e361 40struct cpuinfo_mips cpu_data[NR_CPUS] __read_mostly;
1da177e4
LT
41
42EXPORT_SYMBOL(cpu_data);
43
44#ifdef CONFIG_VT
45struct screen_info screen_info;
46#endif
47
48/*
49 * Despite it's name this variable is even if we don't have PCI
50 */
51unsigned int PCI_DMA_BUS_IS_PHYS;
52
53EXPORT_SYMBOL(PCI_DMA_BUS_IS_PHYS);
54
55/*
56 * Setup information
57 *
58 * These are initialized so they are in the .data section
59 */
ec74e361 60unsigned long mips_machtype __read_mostly = MACH_UNKNOWN;
1da177e4
LT
61
62EXPORT_SYMBOL(mips_machtype);
1da177e4
LT
63
64struct boot_mem_map boot_mem_map;
65
6acc7d48
DV
66static char __initdata command_line[COMMAND_LINE_SIZE];
67char __initdata arcs_cmdline[COMMAND_LINE_SIZE];
68
69#ifdef CONFIG_CMDLINE_BOOL
70static char __initdata builtin_cmdline[COMMAND_LINE_SIZE] = CONFIG_CMDLINE;
71#endif
1da177e4
LT
72
73/*
74 * mips_io_port_base is the begin of the address space to which x86 style
75 * I/O ports are mapped.
76 */
1befdd55 77const unsigned long mips_io_port_base = -1;
1da177e4
LT
78EXPORT_SYMBOL(mips_io_port_base);
79
1da177e4
LT
80static struct resource code_resource = { .name = "Kernel code", };
81static struct resource data_resource = { .name = "Kernel data", };
82
4d9f77d2
JC
83static void *detect_magic __initdata = detect_memory_region;
84
1da177e4
LT
85void __init add_memory_region(phys_t start, phys_t size, long type)
86{
87 int x = boot_mem_map.nr_map;
0ec7ec75 88 int i;
1da177e4 89
b6f1f0de
FBH
90 /* Sanity check */
91 if (start + size < start) {
a64ae7a2 92 pr_warning("Trying to add an invalid memory region, skipped\n");
b6f1f0de
FBH
93 return;
94 }
95
1da177e4 96 /*
0ec7ec75 97 * Try to merge with existing entry, if any.
1da177e4 98 */
0ec7ec75
RB
99 for (i = 0; i < boot_mem_map.nr_map; i++) {
100 struct boot_mem_map_entry *entry = boot_mem_map.map + i;
101 unsigned long top;
102
103 if (entry->type != type)
104 continue;
105
106 if (start + size < entry->addr)
107 continue; /* no overlap */
108
109 if (entry->addr + entry->size < start)
110 continue; /* no overlap */
111
112 top = max(entry->addr + entry->size, start + size);
113 entry->addr = min(entry->addr, start);
114 entry->size = top - entry->addr;
115
1da177e4
LT
116 return;
117 }
118
0ec7ec75 119 if (boot_mem_map.nr_map == BOOT_MEM_MAP_MAX) {
a64ae7a2 120 pr_err("Ooops! Too many entries in the memory map!\n");
1da177e4
LT
121 return;
122 }
123
124 boot_mem_map.map[x].addr = start;
125 boot_mem_map.map[x].size = size;
126 boot_mem_map.map[x].type = type;
127 boot_mem_map.nr_map++;
128}
129
4d9f77d2
JC
130void __init detect_memory_region(phys_t start, phys_t sz_min, phys_t sz_max)
131{
132 void *dm = &detect_magic;
133 phys_t size;
134
135 for (size = sz_min; size < sz_max; size <<= 1) {
136 if (!memcmp(dm, dm + size, sizeof(detect_magic)))
137 break;
138 }
139
140 pr_debug("Memory: %lluMB of RAM detected at 0x%llx (min: %lluMB, max: %lluMB)\n",
141 ((unsigned long long) size) / SZ_1M,
142 (unsigned long long) start,
143 ((unsigned long long) sz_min) / SZ_1M,
144 ((unsigned long long) sz_max) / SZ_1M);
145
146 add_memory_region(start, size, BOOT_MEM_RAM);
147}
148
1da177e4
LT
149static void __init print_memory_map(void)
150{
151 int i;
152 const int field = 2 * sizeof(unsigned long);
153
154 for (i = 0; i < boot_mem_map.nr_map; i++) {
a64ae7a2 155 printk(KERN_INFO " memory: %0*Lx @ %0*Lx ",
1da177e4
LT
156 field, (unsigned long long) boot_mem_map.map[i].size,
157 field, (unsigned long long) boot_mem_map.map[i].addr);
158
159 switch (boot_mem_map.map[i].type) {
160 case BOOT_MEM_RAM:
a64ae7a2 161 printk(KERN_CONT "(usable)\n");
1da177e4 162 break;
43064c0c
DD
163 case BOOT_MEM_INIT_RAM:
164 printk(KERN_CONT "(usable after init)\n");
165 break;
1da177e4 166 case BOOT_MEM_ROM_DATA:
a64ae7a2 167 printk(KERN_CONT "(ROM data)\n");
1da177e4
LT
168 break;
169 case BOOT_MEM_RESERVED:
a64ae7a2 170 printk(KERN_CONT "(reserved)\n");
1da177e4
LT
171 break;
172 default:
a64ae7a2 173 printk(KERN_CONT "type %lu\n", boot_mem_map.map[i].type);
1da177e4
LT
174 break;
175 }
176 }
177}
178
d2043ca8
FBH
179/*
180 * Manage initrd
181 */
182#ifdef CONFIG_BLK_DEV_INITRD
183
a09fc446 184static int __init rd_start_early(char *p)
1da177e4 185{
a09fc446 186 unsigned long start = memparse(p, &p);
1da177e4 187
875d43e7 188#ifdef CONFIG_64BIT
a7837b76
FBH
189 /* Guess if the sign extension was forgotten by bootloader */
190 if (start < XKPHYS)
191 start = (int)start;
1da177e4 192#endif
a09fc446
FBH
193 initrd_start = start;
194 initrd_end += start;
a09fc446
FBH
195 return 0;
196}
197early_param("rd_start", rd_start_early);
198
199static int __init rd_size_early(char *p)
200{
201 initrd_end += memparse(p, &p);
1da177e4
LT
202 return 0;
203}
a09fc446 204early_param("rd_size", rd_size_early);
1da177e4 205
a7837b76 206/* it returns the next free pfn after initrd */
d2043ca8
FBH
207static unsigned long __init init_initrd(void)
208{
a7837b76 209 unsigned long end;
d2043ca8 210
d2043ca8 211 /*
a09fc446
FBH
212 * Board specific code or command line parser should have
213 * already set up initrd_start and initrd_end. In these cases
214 * perfom sanity checks and use them if all looks good.
d2043ca8 215 */
32028f1f 216 if (!initrd_start || initrd_end <= initrd_start)
a7837b76 217 goto disable;
a7837b76 218
a7837b76 219 if (initrd_start & ~PAGE_MASK) {
a64ae7a2 220 pr_err("initrd start must be page aligned\n");
a7837b76 221 goto disable;
d2043ca8 222 }
a7837b76 223 if (initrd_start < PAGE_OFFSET) {
a64ae7a2 224 pr_err("initrd start < PAGE_OFFSET\n");
a7837b76
FBH
225 goto disable;
226 }
227
228 /*
229 * Sanitize initrd addresses. For example firmware
230 * can't guess if they need to pass them through
231 * 64-bits values if the kernel has been built in pure
232 * 32-bit. We need also to switch from KSEG0 to XKPHYS
233 * addresses now, so the code can now safely use __pa().
234 */
235 end = __pa(initrd_end);
236 initrd_end = (unsigned long)__va(end);
237 initrd_start = (unsigned long)__va(__pa(initrd_start));
238
239 ROOT_DEV = Root_RAM0;
240 return PFN_UP(end);
241disable:
242 initrd_start = 0;
243 initrd_end = 0;
244 return 0;
d2043ca8
FBH
245}
246
247static void __init finalize_initrd(void)
248{
249 unsigned long size = initrd_end - initrd_start;
250
251 if (size == 0) {
252 printk(KERN_INFO "Initrd not found or empty");
253 goto disable;
254 }
d4df6d4e 255 if (__pa(initrd_end) > PFN_PHYS(max_low_pfn)) {
a64ae7a2 256 printk(KERN_ERR "Initrd extends beyond end of memory");
d2043ca8
FBH
257 goto disable;
258 }
259
72a7fe39 260 reserve_bootmem(__pa(initrd_start), size, BOOTMEM_DEFAULT);
d2043ca8
FBH
261 initrd_below_start_ok = 1;
262
a64ae7a2
MC
263 pr_info("Initial ramdisk at: 0x%lx (%lu bytes)\n",
264 initrd_start, size);
d2043ca8
FBH
265 return;
266disable:
a64ae7a2 267 printk(KERN_CONT " - disabling initrd\n");
d2043ca8
FBH
268 initrd_start = 0;
269 initrd_end = 0;
270}
271
272#else /* !CONFIG_BLK_DEV_INITRD */
273
9ba126cf
RB
274static unsigned long __init init_initrd(void)
275{
276 return 0;
277}
278
d2043ca8
FBH
279#define finalize_initrd() do {} while (0)
280
281#endif
282
b6f1f0de
FBH
283/*
284 * Initialize the bootmem allocator. It also setup initrd related data
285 * if needed.
286 */
c4617318 287#if defined(CONFIG_SGI_IP27) || (defined(CONFIG_CPU_LOONGSON3) && defined(CONFIG_NUMA))
d2043ca8 288
b6f1f0de 289static void __init bootmem_init(void)
1da177e4 290{
d2043ca8
FBH
291 init_initrd();
292 finalize_initrd();
293}
294
295#else /* !CONFIG_SGI_IP27 */
296
297static void __init bootmem_init(void)
298{
e452e94e 299 unsigned long reserved_end;
db84dc61 300 unsigned long mapstart = ~0UL;
1da177e4
LT
301 unsigned long bootmap_size;
302 int i;
1da177e4
LT
303
304 /*
f9a7febd
GU
305 * Sanity check any INITRD first. We don't take it into account
306 * for bootmem setup initially, rely on the end-of-kernel-code
307 * as our memory range starting point. Once bootmem is inited we
308 * will reserve the area used for the initrd.
1da177e4 309 */
f9a7febd
GU
310 init_initrd();
311 reserved_end = (unsigned long) PFN_UP(__pa_symbol(&_end));
1da177e4 312
db84dc61
FBH
313 /*
314 * max_low_pfn is not a number of pages. The number of pages
315 * of the system is given by 'max_low_pfn - min_low_pfn'.
316 */
317 min_low_pfn = ~0UL;
318 max_low_pfn = 0;
319
b6f1f0de
FBH
320 /*
321 * Find the highest page frame number we have available.
322 */
1da177e4
LT
323 for (i = 0; i < boot_mem_map.nr_map; i++) {
324 unsigned long start, end;
325
326 if (boot_mem_map.map[i].type != BOOT_MEM_RAM)
327 continue;
328
329 start = PFN_UP(boot_mem_map.map[i].addr);
330 end = PFN_DOWN(boot_mem_map.map[i].addr
b6f1f0de 331 + boot_mem_map.map[i].size);
1da177e4 332
db84dc61
FBH
333 if (end > max_low_pfn)
334 max_low_pfn = end;
335 if (start < min_low_pfn)
336 min_low_pfn = start;
b6f1f0de 337 if (end <= reserved_end)
1da177e4 338 continue;
b6f1f0de
FBH
339 if (start >= mapstart)
340 continue;
341 mapstart = max(reserved_end, start);
1da177e4
LT
342 }
343
db84dc61
FBH
344 if (min_low_pfn >= max_low_pfn)
345 panic("Incorrect memory mapping !!!");
6f284a2c 346 if (min_low_pfn > ARCH_PFN_OFFSET) {
a64ae7a2
MC
347 pr_info("Wasting %lu bytes for tracking %lu unused pages\n",
348 (min_low_pfn - ARCH_PFN_OFFSET) * sizeof(struct page),
349 min_low_pfn - ARCH_PFN_OFFSET);
6f284a2c 350 } else if (min_low_pfn < ARCH_PFN_OFFSET) {
a64ae7a2
MC
351 pr_info("%lu free pages won't be used\n",
352 ARCH_PFN_OFFSET - min_low_pfn);
db84dc61 353 }
6f284a2c 354 min_low_pfn = ARCH_PFN_OFFSET;
db84dc61 355
1da177e4
LT
356 /*
357 * Determine low and high memory ranges
358 */
dc3bf353 359 max_pfn = max_low_pfn;
db84dc61 360 if (max_low_pfn > PFN_DOWN(HIGHMEM_START)) {
b6f1f0de
FBH
361#ifdef CONFIG_HIGHMEM
362 highstart_pfn = PFN_DOWN(HIGHMEM_START);
db84dc61 363 highend_pfn = max_low_pfn;
1da177e4 364#endif
db84dc61 365 max_low_pfn = PFN_DOWN(HIGHMEM_START);
1da177e4
LT
366 }
367
f9a7febd
GU
368#ifdef CONFIG_BLK_DEV_INITRD
369 /*
370 * mapstart should be after initrd_end
371 */
372 if (initrd_end)
373 mapstart = max(mapstart, (unsigned long)PFN_UP(__pa(initrd_end)));
374#endif
375
1da177e4 376 /*
b6f1f0de 377 * Initialize the boot-time allocator with low memory only.
1da177e4 378 */
db84dc61
FBH
379 bootmap_size = init_bootmem_node(NODE_DATA(0), mapstart,
380 min_low_pfn, max_low_pfn);
cce335ae
RB
381
382
cce335ae
RB
383 for (i = 0; i < boot_mem_map.nr_map; i++) {
384 unsigned long start, end;
385
386 start = PFN_UP(boot_mem_map.map[i].addr);
387 end = PFN_DOWN(boot_mem_map.map[i].addr
388 + boot_mem_map.map[i].size);
389
e452e94e
AN
390 if (start <= min_low_pfn)
391 start = min_low_pfn;
cce335ae
RB
392 if (start >= end)
393 continue;
394
395#ifndef CONFIG_HIGHMEM
396 if (end > max_low_pfn)
397 end = max_low_pfn;
398
399 /*
400 * ... finally, is the area going away?
401 */
402 if (end <= start)
403 continue;
404#endif
405
9d15ffc8 406 memblock_add_node(PFN_PHYS(start), PFN_PHYS(end - start), 0);
cce335ae
RB
407 }
408
1da177e4
LT
409 /*
410 * Register fully available low RAM pages with the bootmem allocator.
411 */
412 for (i = 0; i < boot_mem_map.nr_map; i++) {
b6f1f0de 413 unsigned long start, end, size;
1da177e4 414
43064c0c
DD
415 start = PFN_UP(boot_mem_map.map[i].addr);
416 end = PFN_DOWN(boot_mem_map.map[i].addr
417 + boot_mem_map.map[i].size);
418
1da177e4
LT
419 /*
420 * Reserve usable memory.
421 */
43064c0c
DD
422 switch (boot_mem_map.map[i].type) {
423 case BOOT_MEM_RAM:
424 break;
425 case BOOT_MEM_INIT_RAM:
426 memory_present(0, start, end);
1da177e4 427 continue;
43064c0c
DD
428 default:
429 /* Not usable memory */
430 continue;
431 }
1da177e4 432
1da177e4 433 /*
b6f1f0de
FBH
434 * We are rounding up the start address of usable memory
435 * and at the end of the usable range downwards.
1da177e4 436 */
b6f1f0de 437 if (start >= max_low_pfn)
1da177e4 438 continue;
b6f1f0de
FBH
439 if (start < reserved_end)
440 start = reserved_end;
441 if (end > max_low_pfn)
442 end = max_low_pfn;
1da177e4
LT
443
444 /*
b6f1f0de 445 * ... finally, is the area going away?
1da177e4 446 */
b6f1f0de 447 if (end <= start)
1da177e4 448 continue;
b6f1f0de 449 size = end - start;
1da177e4
LT
450
451 /* Register lowmem ranges */
b6f1f0de
FBH
452 free_bootmem(PFN_PHYS(start), size << PAGE_SHIFT);
453 memory_present(0, start, end);
1da177e4
LT
454 }
455
b6f1f0de
FBH
456 /*
457 * Reserve the bootmap memory.
458 */
72a7fe39 459 reserve_bootmem(PFN_PHYS(mapstart), bootmap_size, BOOTMEM_DEFAULT);
b6f1f0de 460
d2043ca8
FBH
461 /*
462 * Reserve initrd memory if needed.
463 */
464 finalize_initrd();
1da177e4
LT
465}
466
d2043ca8
FBH
467#endif /* CONFIG_SGI_IP27 */
468
2925aba4 469/*
603e82ed 470 * arch_mem_init - initialize memory management subsystem
2925aba4
RB
471 *
472 * o plat_mem_setup() detects the memory configuration and will record detected
473 * memory areas using add_memory_region.
2925aba4
RB
474 *
475 * At this stage the memory configuration of the system is known to the
603e82ed 476 * kernel but generic memory management system is still entirely uninitialized.
2925aba4
RB
477 *
478 * o bootmem_init()
479 * o sparse_init()
480 * o paging_init()
f4649382 481 * o dma_continguous_reserve()
2925aba4
RB
482 *
483 * At this stage the bootmem allocator is ready to use.
484 *
485 * NOTE: historically plat_mem_setup did the entire platform initialization.
70342287 486 * This was rather impractical because it meant plat_mem_setup had to
2925aba4
RB
487 * get away without any kind of memory allocator. To keep old code from
488 * breaking plat_setup was just renamed to plat_setup and a second platform
489 * initialization hook for anything else was introduced.
490 */
491
982f6ffe 492static int usermem __initdata;
a09fc446
FBH
493
494static int __init early_parse_mem(char *p)
495{
496 unsigned long start, size;
497
498 /*
499 * If a user specifies memory size, we
500 * blow away any automatically generated
501 * size.
502 */
503 if (usermem == 0) {
504 boot_mem_map.nr_map = 0;
505 usermem = 1;
70342287 506 }
a09fc446
FBH
507 start = 0;
508 size = memparse(p, &p);
509 if (*p == '@')
510 start = memparse(p + 1, &p);
511
512 add_memory_region(start, size, BOOT_MEM_RAM);
513 return 0;
514}
515early_param("mem", early_parse_mem);
2925aba4 516
4893fc88
CM
517#ifdef CONFIG_PROC_VMCORE
518unsigned long setup_elfcorehdr, setup_elfcorehdr_size;
519static int __init early_parse_elfcorehdr(char *p)
520{
521 int i;
522
523 setup_elfcorehdr = memparse(p, &p);
524
525 for (i = 0; i < boot_mem_map.nr_map; i++) {
526 unsigned long start = boot_mem_map.map[i].addr;
527 unsigned long end = (boot_mem_map.map[i].addr +
528 boot_mem_map.map[i].size);
529 if (setup_elfcorehdr >= start && setup_elfcorehdr < end) {
530 /*
531 * Reserve from the elf core header to the end of
532 * the memory segment, that should all be kdump
533 * reserved memory.
534 */
535 setup_elfcorehdr_size = end - setup_elfcorehdr;
536 break;
537 }
538 }
539 /*
540 * If we don't find it in the memory map, then we shouldn't
541 * have to worry about it, as the new kernel won't use it.
542 */
543 return 0;
544}
545early_param("elfcorehdr", early_parse_elfcorehdr);
546#endif
547
d3ff9338 548static void __init arch_mem_addpart(phys_t mem, phys_t end, int type)
2925aba4 549{
d3ff9338
CM
550 phys_t size;
551 int i;
43064c0c 552
d3ff9338
CM
553 size = end - mem;
554 if (!size)
555 return;
556
557 /* Make sure it is in the boot_mem_map */
558 for (i = 0; i < boot_mem_map.nr_map; i++) {
559 if (mem >= boot_mem_map.map[i].addr &&
560 mem < (boot_mem_map.map[i].addr +
561 boot_mem_map.map[i].size))
562 return;
563 }
564 add_memory_region(mem, size, type);
565}
43064c0c 566
c2882b7f
PM
567#ifdef CONFIG_KEXEC
568static inline unsigned long long get_total_mem(void)
569{
570 unsigned long long total;
571
572 total = max_pfn - min_low_pfn;
573 return total << PAGE_SHIFT;
574}
575
576static void __init mips_parse_crashkernel(void)
577{
578 unsigned long long total_mem;
579 unsigned long long crash_size, crash_base;
580 int ret;
581
582 total_mem = get_total_mem();
583 ret = parse_crashkernel(boot_command_line, total_mem,
584 &crash_size, &crash_base);
585 if (ret != 0 || crash_size <= 0)
586 return;
587
588 crashk_res.start = crash_base;
589 crashk_res.end = crash_base + crash_size - 1;
590}
591
592static void __init request_crashkernel(struct resource *res)
593{
594 int ret;
595
596 ret = request_resource(res, &crashk_res);
597 if (!ret)
598 pr_info("Reserving %ldMB of memory at %ldMB for crashkernel\n",
599 (unsigned long)((crashk_res.end -
600 crashk_res.start + 1) >> 20),
601 (unsigned long)(crashk_res.start >> 20));
602}
603#else /* !defined(CONFIG_KEXEC) */
604static void __init mips_parse_crashkernel(void)
605{
606}
607
608static void __init request_crashkernel(struct resource *res)
609{
610}
611#endif /* !defined(CONFIG_KEXEC) */
612
d3ff9338
CM
613static void __init arch_mem_init(char **cmdline_p)
614{
f4649382 615 struct memblock_region *reg;
a09fc446
FBH
616 extern void plat_mem_setup(void);
617
2925aba4
RB
618 /* call board setup routine */
619 plat_mem_setup();
620
d3ff9338
CM
621 /*
622 * Make sure all kernel memory is in the maps. The "UP" and
623 * "DOWN" are opposite for initdata since if it crosses over
624 * into another memory section you don't want that to be
625 * freed when the initdata is freed.
626 */
627 arch_mem_addpart(PFN_DOWN(__pa_symbol(&_text)) << PAGE_SHIFT,
628 PFN_UP(__pa_symbol(&_edata)) << PAGE_SHIFT,
629 BOOT_MEM_RAM);
630 arch_mem_addpart(PFN_UP(__pa_symbol(&__init_begin)) << PAGE_SHIFT,
631 PFN_DOWN(__pa_symbol(&__init_end)) << PAGE_SHIFT,
632 BOOT_MEM_INIT_RAM);
43064c0c 633
a64ae7a2 634 pr_info("Determined physical RAM map:\n");
a09fc446
FBH
635 print_memory_map();
636
6acc7d48
DV
637#ifdef CONFIG_CMDLINE_BOOL
638#ifdef CONFIG_CMDLINE_OVERRIDE
639 strlcpy(boot_command_line, builtin_cmdline, COMMAND_LINE_SIZE);
640#else
641 if (builtin_cmdline[0]) {
642 strlcat(arcs_cmdline, " ", COMMAND_LINE_SIZE);
643 strlcat(arcs_cmdline, builtin_cmdline, COMMAND_LINE_SIZE);
644 }
645 strlcpy(boot_command_line, arcs_cmdline, COMMAND_LINE_SIZE);
646#endif
647#else
648 strlcpy(boot_command_line, arcs_cmdline, COMMAND_LINE_SIZE);
649#endif
650 strlcpy(command_line, boot_command_line, COMMAND_LINE_SIZE);
2925aba4
RB
651
652 *cmdline_p = command_line;
653
a09fc446
FBH
654 parse_early_param();
655
656 if (usermem) {
a64ae7a2 657 pr_info("User-defined physical RAM map:\n");
a09fc446
FBH
658 print_memory_map();
659 }
660
2925aba4 661 bootmem_init();
4893fc88
CM
662#ifdef CONFIG_PROC_VMCORE
663 if (setup_elfcorehdr && setup_elfcorehdr_size) {
664 printk(KERN_INFO "kdump reserved memory at %lx-%lx\n",
665 setup_elfcorehdr, setup_elfcorehdr_size);
666 reserve_bootmem(setup_elfcorehdr, setup_elfcorehdr_size,
667 BOOTMEM_DEFAULT);
668 }
669#endif
c2882b7f
PM
670
671 mips_parse_crashkernel();
7aa1c8f4
RB
672#ifdef CONFIG_KEXEC
673 if (crashk_res.start != crashk_res.end)
674 reserve_bootmem(crashk_res.start,
675 crashk_res.end - crashk_res.start + 1,
676 BOOTMEM_DEFAULT);
677#endif
f2ffa5ab 678 device_tree_init();
2925aba4 679 sparse_init();
ee71b7d2 680 plat_swiotlb_setup();
2925aba4 681 paging_init();
f4649382
ZLK
682
683 dma_contiguous_reserve(PFN_PHYS(max_low_pfn));
684 /* Tell bootmem about cma reserved memblock section */
685 for_each_memblock(reserved, reg)
30fa0530
ZLK
686 if (reg->size != 0)
687 reserve_bootmem(reg->base, reg->size, BOOTMEM_DEFAULT);
2925aba4
RB
688}
689
8df32c63 690static void __init resource_init(void)
1da177e4
LT
691{
692 int i;
693
6adb5fe7
RB
694 if (UNCAC_BASE != IO_BASE)
695 return;
696
f5bffe3a
FBH
697 code_resource.start = __pa_symbol(&_text);
698 code_resource.end = __pa_symbol(&_etext) - 1;
699 data_resource.start = __pa_symbol(&_etext);
700 data_resource.end = __pa_symbol(&_edata) - 1;
1da177e4 701
1da177e4
LT
702 for (i = 0; i < boot_mem_map.nr_map; i++) {
703 struct resource *res;
704 unsigned long start, end;
705
706 start = boot_mem_map.map[i].addr;
707 end = boot_mem_map.map[i].addr + boot_mem_map.map[i].size - 1;
1c6fd44d 708 if (start >= HIGHMEM_START)
1da177e4 709 continue;
1c6fd44d
FBH
710 if (end >= HIGHMEM_START)
711 end = HIGHMEM_START - 1;
1da177e4
LT
712
713 res = alloc_bootmem(sizeof(struct resource));
714 switch (boot_mem_map.map[i].type) {
715 case BOOT_MEM_RAM:
43064c0c 716 case BOOT_MEM_INIT_RAM:
1da177e4
LT
717 case BOOT_MEM_ROM_DATA:
718 res->name = "System RAM";
719 break;
720 case BOOT_MEM_RESERVED:
721 default:
722 res->name = "reserved";
723 }
724
725 res->start = start;
726 res->end = end;
727
728 res->flags = IORESOURCE_MEM | IORESOURCE_BUSY;
729 request_resource(&iomem_resource, res);
730
731 /*
732 * We don't know which RAM region contains kernel data,
733 * so we try it repeatedly and let the resource manager
734 * test it.
735 */
736 request_resource(res, &code_resource);
737 request_resource(res, &data_resource);
7aa1c8f4 738 request_crashkernel(res);
1da177e4
LT
739 }
740}
741
0f3f506b
HC
742#ifdef CONFIG_SMP
743static void __init prefill_possible_map(void)
744{
745 int i, possible = num_possible_cpus();
746
747 if (possible > nr_cpu_ids)
748 possible = nr_cpu_ids;
749
750 for (i = 0; i < possible; i++)
751 set_cpu_possible(i, true);
752 for (; i < NR_CPUS; i++)
753 set_cpu_possible(i, false);
754
755 nr_cpu_ids = possible;
756}
757#else
758static inline void prefill_possible_map(void) {}
759#endif
760
1da177e4
LT
761void __init setup_arch(char **cmdline_p)
762{
763 cpu_probe();
764 prom_init();
36a88530
RB
765
766#ifdef CONFIG_EARLY_PRINTK
07cdb784 767 setup_early_printk();
36a88530 768#endif
1da177e4 769 cpu_report();
20d60d99 770 check_bugs_early();
1da177e4
LT
771
772#if defined(CONFIG_VT)
773#if defined(CONFIG_VGA_CONSOLE)
e0daad44 774 conswitchp = &vga_con;
1da177e4 775#elif defined(CONFIG_DUMMY_CONSOLE)
e0daad44 776 conswitchp = &dummy_con;
1da177e4
LT
777#endif
778#endif
779
2925aba4 780 arch_mem_init(cmdline_p);
1da177e4 781
1da177e4 782 resource_init();
9b6695a8 783 plat_smp_setup();
0f3f506b 784 prefill_possible_map();
6650df3c
DD
785
786 cpu_cache_init();
1da177e4
LT
787}
788
69a6c312
AN
789unsigned long kernelsp[NR_CPUS];
790unsigned long fw_arg0, fw_arg1, fw_arg2, fw_arg3;
6312e0ee
AN
791
792#ifdef CONFIG_DEBUG_FS
793struct dentry *mips_debugfs_dir;
794static int __init debugfs_mips(void)
795{
796 struct dentry *d;
797
798 d = debugfs_create_dir("mips", NULL);
b517531c
Z
799 if (!d)
800 return -ENOMEM;
6312e0ee
AN
801 mips_debugfs_dir = d;
802 return 0;
803}
804arch_initcall(debugfs_mips);
805#endif