powerpc/xmon: Fix build when 4xx=y and 44x=n
[linux-block.git] / arch / powerpc / kernel / prom.c
CommitLineData
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1/*
2 * Procedures for creating, accessing and interpreting the device tree.
3 *
4 * Paul Mackerras August 1996.
5 * Copyright (C) 1996-2005 Paul Mackerras.
6 *
7 * Adapted for 64bit PowerPC by Dave Engebretsen and Peter Bergner.
8 * {engebret|bergner}@us.ibm.com
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License
12 * as published by the Free Software Foundation; either version
13 * 2 of the License, or (at your option) any later version.
14 */
15
16#undef DEBUG
17
18#include <stdarg.h>
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19#include <linux/kernel.h>
20#include <linux/string.h>
21#include <linux/init.h>
22#include <linux/threads.h>
23#include <linux/spinlock.h>
24#include <linux/types.h>
25#include <linux/pci.h>
26#include <linux/stringify.h>
27#include <linux/delay.h>
28#include <linux/initrd.h>
29#include <linux/bitops.h>
4b16f8e2 30#include <linux/export.h>
dcee3036 31#include <linux/kexec.h>
0ebfff14 32#include <linux/irq.h>
95f72d1e 33#include <linux/memblock.h>
1cf3d8b3 34#include <linux/of.h>
708b7eef 35#include <linux/of_fdt.h>
060f78c2 36#include <linux/libfdt.h>
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37
38#include <asm/prom.h>
39#include <asm/rtas.h>
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40#include <asm/page.h>
41#include <asm/processor.h>
42#include <asm/irq.h>
43#include <asm/io.h>
0cc4746c 44#include <asm/kdump.h>
9b6b563c 45#include <asm/smp.h>
9b6b563c 46#include <asm/mmu.h>
1426d5a3 47#include <asm/paca.h>
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48#include <asm/pgtable.h>
49#include <asm/pci.h>
50#include <asm/iommu.h>
51#include <asm/btext.h>
52#include <asm/sections.h>
53#include <asm/machdep.h>
40ef8cbc 54#include <asm/pci-bridge.h>
2babf5c2 55#include <asm/kexec.h>
14a43e69 56#include <asm/opal.h>
eb39c880 57#include <asm/fadump.h>
0dc3289c 58#include <asm/debug.h>
14a43e69 59
37dd2bad 60#include <mm/mmu_decl.h>
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61
62#ifdef DEBUG
63#define DBG(fmt...) printk(KERN_ERR fmt)
64#else
65#define DBG(fmt...)
66#endif
67
9b6b563c 68#ifdef CONFIG_PPC64
28897731 69int __initdata iommu_is_off;
9b6b563c 70int __initdata iommu_force_on;
cf00a8d1 71unsigned long tce_alloc_start, tce_alloc_end;
cd3db0c4 72u64 ppc64_rma_size;
9b6b563c 73#endif
03bf469a 74static phys_addr_t first_memblock_size;
7ac87abb 75static int __initdata boot_cpu_count;
9b6b563c 76
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77static int __init early_parse_mem(char *p)
78{
79 if (!p)
80 return 1;
81
82 memory_limit = PAGE_ALIGN(memparse(p, &p));
a84fcd46 83 DBG("memory limit = 0x%llx\n", memory_limit);
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84
85 return 0;
86}
87early_param("mem", early_parse_mem);
88
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89/*
90 * overlaps_initrd - check for overlap with page aligned extension of
91 * initrd.
92 */
93static inline int overlaps_initrd(unsigned long start, unsigned long size)
94{
95#ifdef CONFIG_BLK_DEV_INITRD
96 if (!initrd_start)
97 return 0;
98
99 return (start + size) > _ALIGN_DOWN(initrd_start, PAGE_SIZE) &&
100 start <= _ALIGN_UP(initrd_end, PAGE_SIZE);
101#else
102 return 0;
103#endif
104}
105
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106/**
107 * move_device_tree - move tree to an unused area, if needed.
108 *
109 * The device tree may be allocated beyond our memory limit, or inside the
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110 * crash kernel region for kdump, or within the page aligned range of initrd.
111 * If so, move it out of the way.
2babf5c2 112 */
18f032cb 113static void __init move_device_tree(void)
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114{
115 unsigned long start, size;
116 void *p;
117
118 DBG("-> move_device_tree\n");
119
120 start = __pa(initial_boot_params);
060f78c2 121 size = fdt_totalsize(initial_boot_params);
2babf5c2 122
6dd22700 123 if ((memory_limit && (start + size) > PHYSICAL_START + memory_limit) ||
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124 overlaps_crashkernel(start, size) ||
125 overlaps_initrd(start, size)) {
e63075a3 126 p = __va(memblock_alloc(size, PAGE_SIZE));
2babf5c2 127 memcpy(p, initial_boot_params, size);
060f78c2 128 initial_boot_params = p;
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129 DBG("Moved device tree to 0x%p\n", p);
130 }
131
132 DBG("<- move_device_tree\n");
133}
9b6b563c 134
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135/*
136 * ibm,pa-features is a per-cpu property that contains a string of
137 * attribute descriptors, each of which has a 2 byte header plus up
138 * to 254 bytes worth of processor attribute bits. First header
139 * byte specifies the number of bytes following the header.
140 * Second header byte is an "attribute-specifier" type, of which
141 * zero is the only currently-defined value.
142 * Implementation: Pass in the byte and bit offset for the feature
143 * that we are interested in. The function will return -1 if the
144 * pa-features property is missing, or a 1/0 to indicate if the feature
145 * is supported/not supported. Note that the bit numbers are
146 * big-endian to match the definition in PAPR.
147 */
148static struct ibm_pa_feature {
149 unsigned long cpu_features; /* CPU_FTR_xxx bit */
44ae3ab3 150 unsigned long mmu_features; /* MMU_FTR_xxx bit */
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151 unsigned int cpu_user_ftrs; /* PPC_FEATURE_xxx bit */
152 unsigned char pabyte; /* byte number in ibm,pa-features */
153 unsigned char pabit; /* bit number (big-endian) */
154 unsigned char invert; /* if 1, pa bit set => clear feature */
155} ibm_pa_features[] __initdata = {
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156 {0, 0, PPC_FEATURE_HAS_MMU, 0, 0, 0},
157 {0, 0, PPC_FEATURE_HAS_FPU, 0, 1, 0},
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158 {CPU_FTR_CTRL, 0, 0, 0, 3, 0},
159 {CPU_FTR_NOEXECUTE, 0, 0, 0, 6, 0},
160 {CPU_FTR_NODSISRALIGN, 0, 0, 1, 1, 1},
161 {0, MMU_FTR_CI_LARGE_PAGE, 0, 1, 2, 0},
339d76c5 162 {CPU_FTR_REAL_LE, PPC_FEATURE_TRUE_LE, 5, 0, 0},
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163};
164
9d0c4dfe 165static void __init scan_features(unsigned long node, const unsigned char *ftrs,
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166 unsigned long tablelen,
167 struct ibm_pa_feature *fp,
168 unsigned long ft_size)
d205819e 169{
974a76f5 170 unsigned long i, len, bit;
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171
172 /* find descriptor with type == 0 */
173 for (;;) {
174 if (tablelen < 3)
175 return;
974a76f5 176 len = 2 + ftrs[0];
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177 if (tablelen < len)
178 return; /* descriptor 0 not found */
974a76f5 179 if (ftrs[1] == 0)
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180 break;
181 tablelen -= len;
974a76f5 182 ftrs += len;
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183 }
184
185 /* loop over bits we know about */
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186 for (i = 0; i < ft_size; ++i, ++fp) {
187 if (fp->pabyte >= ftrs[0])
d205819e 188 continue;
974a76f5 189 bit = (ftrs[2 + fp->pabyte] >> (7 - fp->pabit)) & 1;
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190 if (bit ^ fp->invert) {
191 cur_cpu_spec->cpu_features |= fp->cpu_features;
192 cur_cpu_spec->cpu_user_features |= fp->cpu_user_ftrs;
44ae3ab3 193 cur_cpu_spec->mmu_features |= fp->mmu_features;
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194 } else {
195 cur_cpu_spec->cpu_features &= ~fp->cpu_features;
196 cur_cpu_spec->cpu_user_features &= ~fp->cpu_user_ftrs;
44ae3ab3 197 cur_cpu_spec->mmu_features &= ~fp->mmu_features;
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198 }
199 }
200}
201
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202static void __init check_cpu_pa_features(unsigned long node)
203{
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204 const unsigned char *pa_ftrs;
205 int tablelen;
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206
207 pa_ftrs = of_get_flat_dt_prop(node, "ibm,pa-features", &tablelen);
208 if (pa_ftrs == NULL)
209 return;
210
211 scan_features(node, pa_ftrs, tablelen,
212 ibm_pa_features, ARRAY_SIZE(ibm_pa_features));
213}
214
94491685 215#ifdef CONFIG_PPC_STD_MMU_64
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216static void __init check_cpu_slb_size(unsigned long node)
217{
9d0c4dfe 218 const __be32 *slb_size_ptr;
584f8b71 219
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220 slb_size_ptr = of_get_flat_dt_prop(node, "slb-size", NULL);
221 if (slb_size_ptr != NULL) {
dc0e643a 222 mmu_slb_size = be32_to_cpup(slb_size_ptr);
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223 return;
224 }
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225 slb_size_ptr = of_get_flat_dt_prop(node, "ibm,slb-size", NULL);
226 if (slb_size_ptr != NULL) {
dc0e643a 227 mmu_slb_size = be32_to_cpup(slb_size_ptr);
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228 }
229}
230#else
231#define check_cpu_slb_size(node) do { } while(0)
232#endif
233
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234static struct feature_property {
235 const char *name;
236 u32 min_value;
237 unsigned long cpu_feature;
238 unsigned long cpu_user_ftr;
239} feature_properties[] __initdata = {
240#ifdef CONFIG_ALTIVEC
241 {"altivec", 0, CPU_FTR_ALTIVEC, PPC_FEATURE_HAS_ALTIVEC},
242 {"ibm,vmx", 1, CPU_FTR_ALTIVEC, PPC_FEATURE_HAS_ALTIVEC},
243#endif /* CONFIG_ALTIVEC */
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244#ifdef CONFIG_VSX
245 /* Yes, this _really_ is ibm,vmx == 2 to enable VSX */
246 {"ibm,vmx", 2, CPU_FTR_VSX, PPC_FEATURE_HAS_VSX},
247#endif /* CONFIG_VSX */
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248#ifdef CONFIG_PPC64
249 {"ibm,dfp", 1, 0, PPC_FEATURE_HAS_DFP},
250 {"ibm,purr", 1, CPU_FTR_PURR, 0},
251 {"ibm,spurr", 1, CPU_FTR_SPURR, 0},
252#endif /* CONFIG_PPC64 */
253};
254
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255#if defined(CONFIG_44x) && defined(CONFIG_PPC_FPU)
256static inline void identical_pvr_fixup(unsigned long node)
257{
258 unsigned int pvr;
9d0c4dfe 259 const char *model = of_get_flat_dt_prop(node, "model", NULL);
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260
261 /*
262 * Since 440GR(x)/440EP(x) processors have the same pvr,
263 * we check the node path and set bit 28 in the cur_cpu_spec
264 * pvr for EP(x) processor version. This bit is always 0 in
265 * the "real" pvr. Then we call identify_cpu again with
266 * the new logical pvr to enable FPU support.
267 */
268 if (model && strstr(model, "440EP")) {
269 pvr = cur_cpu_spec->pvr_value | 0x8;
270 identify_cpu(0, pvr);
271 DBG("Using logical pvr %x for %s\n", pvr, model);
272 }
273}
274#else
275#define identical_pvr_fixup(node) do { } while(0)
276#endif
277
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278static void __init check_cpu_feature_properties(unsigned long node)
279{
280 unsigned long i;
281 struct feature_property *fp = feature_properties;
dc0e643a 282 const __be32 *prop;
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283
284 for (i = 0; i < ARRAY_SIZE(feature_properties); ++i, ++fp) {
285 prop = of_get_flat_dt_prop(node, fp->name, NULL);
dc0e643a 286 if (prop && be32_to_cpup(prop) >= fp->min_value) {
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287 cur_cpu_spec->cpu_features |= fp->cpu_feature;
288 cur_cpu_spec->cpu_user_features |= fp->cpu_user_ftr;
289 }
290 }
291}
292
9b6b563c 293static int __init early_init_dt_scan_cpus(unsigned long node,
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294 const char *uname, int depth,
295 void *data)
9b6b563c 296{
9d0c4dfe 297 const char *type = of_get_flat_dt_prop(node, "device_type", NULL);
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298 const __be32 *prop;
299 const __be32 *intserv;
4df20460 300 int i, nthreads;
9d0c4dfe 301 int len;
9d07bc84 302 int found = -1;
208b3a4c 303 int found_thread = 0;
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304
305 /* We are scanning "cpu" nodes only */
306 if (type == NULL || strcmp(type, "cpu") != 0)
307 return 0;
308
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309 /* Get physical cpuid */
310 intserv = of_get_flat_dt_prop(node, "ibm,ppc-interrupt-server#s", &len);
e16c8765
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311 if (!intserv)
312 intserv = of_get_flat_dt_prop(node, "reg", &len);
313
314 nthreads = len / sizeof(int);
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315
316 /*
317 * Now see if any of these threads match our boot cpu.
318 * NOTE: This must match the parsing done in smp_setup_cpu_maps.
319 */
320 for (i = 0; i < nthreads; i++) {
321 /*
322 * version 2 of the kexec param format adds the phys cpuid of
323 * booted proc.
324 */
060f78c2 325 if (fdt_version(initial_boot_params) >= 2) {
dc0e643a 326 if (be32_to_cpu(intserv[i]) ==
060f78c2 327 fdt_boot_cpuid_phys(initial_boot_params)) {
9d07bc84 328 found = boot_cpu_count;
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329 found_thread = i;
330 }
4df20460
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331 } else {
332 /*
333 * Check if it's the boot-cpu, set it's hw index now,
334 * unfortunately this format did not support booting
335 * off secondary threads.
336 */
337 if (of_get_flat_dt_prop(node,
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338 "linux,boot-cpu", NULL) != NULL)
339 found = boot_cpu_count;
9b6b563c 340 }
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341#ifdef CONFIG_SMP
342 /* logical cpu id is always 0 on UP kernels */
9d07bc84 343 boot_cpu_count++;
4df20460
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344#endif
345 }
346
7222f779
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347 /* Not the boot CPU */
348 if (found < 0)
349 return 0;
9b6b563c 350
7222f779
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351 DBG("boot cpu: logical %d physical %d\n", found,
352 be32_to_cpu(intserv[found_thread]));
353 boot_cpuid = found;
354 set_hard_smp_processor_id(found, be32_to_cpu(intserv[found_thread]));
14b3d926 355
7222f779
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356 /*
357 * PAPR defines "logical" PVR values for cpus that
358 * meet various levels of the architecture:
359 * 0x0f000001 Architecture version 2.04
360 * 0x0f000002 Architecture version 2.05
361 * If the cpu-version property in the cpu node contains
362 * such a value, we call identify_cpu again with the
363 * logical PVR value in order to use the cpu feature
364 * bits appropriate for the architecture level.
365 *
366 * A POWER6 partition in "POWER6 architected" mode
367 * uses the 0x0f000002 PVR value; in POWER5+ mode
368 * it uses 0x0f000001.
369 */
370 prop = of_get_flat_dt_prop(node, "cpu-version", NULL);
371 if (prop && (be32_to_cpup(prop) & 0xff000000) == 0x0f000000)
372 identify_cpu(0, be32_to_cpup(prop));
373
374 identical_pvr_fixup(node);
9b6b563c 375
974a76f5 376 check_cpu_feature_properties(node);
d205819e 377 check_cpu_pa_features(node);
584f8b71 378 check_cpu_slb_size(node);
d205819e 379
4a85b31d 380#ifdef CONFIG_PPC64
4df20460 381 if (nthreads > 1)
9b6b563c 382 cur_cpu_spec->cpu_features |= CPU_FTR_SMT;
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383 else
384 cur_cpu_spec->cpu_features &= ~CPU_FTR_SMT;
9b6b563c 385#endif
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386 return 0;
387}
388
e51df2c1
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389static int __init early_init_dt_scan_chosen_ppc(unsigned long node,
390 const char *uname,
391 int depth, void *data)
9b6b563c 392{
9d0c4dfe 393 const unsigned long *lprop; /* All these set by kernel, so no need to convert endian */
9b6b563c 394
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395 /* Use common scan routine to determine if this is the chosen node */
396 if (early_init_dt_scan_chosen(node, uname, depth, data) == 0)
397 return 0;
398
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399#ifdef CONFIG_PPC64
400 /* check if iommu is forced on or off */
3c726f8d 401 if (of_get_flat_dt_prop(node, "linux,iommu-off", NULL) != NULL)
9b6b563c 402 iommu_is_off = 1;
3c726f8d 403 if (of_get_flat_dt_prop(node, "linux,iommu-force-on", NULL) != NULL)
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404 iommu_force_on = 1;
405#endif
406
2babf5c2 407 /* mem=x on the command line is the preferred mechanism */
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408 lprop = of_get_flat_dt_prop(node, "linux,memory-limit", NULL);
409 if (lprop)
410 memory_limit = *lprop;
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411
412#ifdef CONFIG_PPC64
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413 lprop = of_get_flat_dt_prop(node, "linux,tce-alloc-start", NULL);
414 if (lprop)
415 tce_alloc_start = *lprop;
416 lprop = of_get_flat_dt_prop(node, "linux,tce-alloc-end", NULL);
417 if (lprop)
418 tce_alloc_end = *lprop;
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419#endif
420
dcee3036 421#ifdef CONFIG_KEXEC
63277161 422 lprop = of_get_flat_dt_prop(node, "linux,crashkernel-base", NULL);
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423 if (lprop)
424 crashk_res.start = *lprop;
dcee3036 425
63277161 426 lprop = of_get_flat_dt_prop(node, "linux,crashkernel-size", NULL);
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427 if (lprop)
428 crashk_res.end = crashk_res.start + *lprop - 1;
dcee3036 429#endif
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430
431 /* break now */
432 return 1;
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433}
434
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435#ifdef CONFIG_PPC_PSERIES
436/*
437 * Interpret the ibm,dynamic-memory property in the
438 * /ibm,dynamic-reconfiguration-memory node.
439 * This contains a list of memory blocks along with NUMA affinity
440 * information.
441 */
442static int __init early_init_dt_scan_drconf_memory(unsigned long node)
443{
9d0c4dfe
RH
444 const __be32 *dm, *ls, *usm;
445 int l;
446 unsigned long n, flags;
95f72d1e 447 u64 base, size, memblock_size;
cf00085d 448 unsigned int is_kexec_kdump = 0, rngs;
0204568a 449
3fdfd990 450 ls = of_get_flat_dt_prop(node, "ibm,lmb-size", &l);
0f0b56c3 451 if (ls == NULL || l < dt_root_size_cells * sizeof(__be32))
0204568a 452 return 0;
95f72d1e 453 memblock_size = dt_mem_next_cell(dt_root_size_cells, &ls);
0204568a 454
63277161 455 dm = of_get_flat_dt_prop(node, "ibm,dynamic-memory", &l);
0f0b56c3 456 if (dm == NULL || l < sizeof(__be32))
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457 return 0;
458
e91ae5bd 459 n = of_read_number(dm++, 1); /* number of entries */
0f0b56c3 460 if (l < (n * (dt_root_addr_cells + 4) + 1) * sizeof(__be32))
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461 return 0;
462
cf00085d 463 /* check if this is a kexec/kdump kernel. */
63277161 464 usm = of_get_flat_dt_prop(node, "linux,drconf-usable-memory",
cf00085d
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465 &l);
466 if (usm != NULL)
467 is_kexec_kdump = 1;
468
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469 for (; n != 0; --n) {
470 base = dt_mem_next_cell(dt_root_addr_cells, &dm);
e91ae5bd 471 flags = of_read_number(&dm[3], 1);
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472 /* skip DRC index, pad, assoc. list index, flags */
473 dm += 4;
474 /* skip this block if the reserved bit is set in flags (0x80)
475 or if the block is not assigned to this partition (0x8) */
476 if ((flags & 0x80) || !(flags & 0x8))
477 continue;
95f72d1e 478 size = memblock_size;
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479 rngs = 1;
480 if (is_kexec_kdump) {
481 /*
95f72d1e 482 * For each memblock in ibm,dynamic-memory, a corresponding
cf00085d
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483 * entry in linux,drconf-usable-memory property contains
484 * a counter 'p' followed by 'p' (base, size) duple.
485 * Now read the counter from
486 * linux,drconf-usable-memory property
487 */
488 rngs = dt_mem_next_cell(dt_root_size_cells, &usm);
489 if (!rngs) /* there are no (base, size) duple */
0204568a 490 continue;
0204568a 491 }
cf00085d
C
492 do {
493 if (is_kexec_kdump) {
494 base = dt_mem_next_cell(dt_root_addr_cells,
495 &usm);
496 size = dt_mem_next_cell(dt_root_size_cells,
497 &usm);
498 }
499 if (iommu_is_off) {
500 if (base >= 0x80000000ul)
501 continue;
502 if ((base + size) > 0x80000000ul)
503 size = 0x80000000ul - base;
504 }
95f72d1e 505 memblock_add(base, size);
cf00085d 506 } while (--rngs);
0204568a 507 }
95f72d1e 508 memblock_dump_all();
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509 return 0;
510}
511#else
512#define early_init_dt_scan_drconf_memory(node) 0
513#endif /* CONFIG_PPC_PSERIES */
9b6b563c 514
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515static int __init early_init_dt_scan_memory_ppc(unsigned long node,
516 const char *uname,
517 int depth, void *data)
9b6b563c 518{
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519 if (depth == 1 &&
520 strcmp(uname, "ibm,dynamic-reconfiguration-memory") == 0)
521 return early_init_dt_scan_drconf_memory(node);
51975db0
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522
523 return early_init_dt_scan_memory(node, uname, depth, data);
524}
0204568a 525
b27652dd
KH
526/*
527 * For a relocatable kernel, we need to get the memstart_addr first,
528 * then use it to calculate the virtual kernel start address. This has
529 * to happen at a very early stage (before machine_init). In this case,
530 * we just want to get the memstart_address and would not like to mess the
531 * memblock at this stage. So introduce a variable to skip the memblock_add()
532 * for this reason.
533 */
534#ifdef CONFIG_RELOCATABLE
535static int add_mem_to_memblock = 1;
536#else
537#define add_mem_to_memblock 1
538#endif
539
51975db0
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540void __init early_init_dt_add_memory_arch(u64 base, u64 size)
541{
cd3db0c4 542#ifdef CONFIG_PPC64
51975db0
GL
543 if (iommu_is_off) {
544 if (base >= 0x80000000ul)
545 return;
546 if ((base + size) > 0x80000000ul)
547 size = 0x80000000ul - base;
548 }
9b6b563c 549#endif
03bf469a
BH
550 /* Keep track of the beginning of memory -and- the size of
551 * the very first block in the device-tree as it represents
552 * the RMA on ppc64 server
553 */
554 if (base < memstart_addr) {
555 memstart_addr = base;
556 first_memblock_size = size;
557 }
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BH
558
559 /* Add the chunk to the MEMBLOCK list */
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560 if (add_mem_to_memblock)
561 memblock_add(base, size);
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562}
563
c039e3a8 564static void __init early_reserve_mem_dt(void)
0962e800 565{
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RH
566 unsigned long i, dt_root;
567 int len;
0962e800
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568 const __be32 *prop;
569
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570 early_init_fdt_scan_reserved_mem();
571
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572 dt_root = of_get_flat_dt_root();
573
574 prop = of_get_flat_dt_prop(dt_root, "reserved-ranges", &len);
575
576 if (!prop)
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577 return;
578
579 DBG("Found new-style reserved-ranges\n");
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580
581 /* Each reserved range is an (address,size) pair, 2 cells each,
582 * totalling 4 cells per range. */
583 for (i = 0; i < len / (sizeof(*prop) * 4); i++) {
584 u64 base, size;
585
586 base = of_read_number(prop + (i * 4) + 0, 2);
587 size = of_read_number(prop + (i * 4) + 2, 2);
588
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BH
589 if (size) {
590 DBG("reserving: %llx -> %llx\n", base, size);
0962e800 591 memblock_reserve(base, size);
c039e3a8 592 }
0962e800 593 }
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594}
595
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596static void __init early_reserve_mem(void)
597{
dc0e643a 598 __be64 *reserve_map;
9b6b563c 599
dc0e643a 600 reserve_map = (__be64 *)(((unsigned long)initial_boot_params) +
060f78c2 601 fdt_off_mem_rsvmap(initial_boot_params));
4d1f3f25 602
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603 /* Look for the new "reserved-regions" property in the DT */
604 early_reserve_mem_dt();
0962e800 605
30437b3e 606#ifdef CONFIG_BLK_DEV_INITRD
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BH
607 /* Then reserve the initrd, if any */
608 if (initrd_start && (initrd_end > initrd_start)) {
307cfe71
BH
609 memblock_reserve(_ALIGN_DOWN(__pa(initrd_start), PAGE_SIZE),
610 _ALIGN_UP(initrd_end, PAGE_SIZE) -
611 _ALIGN_DOWN(initrd_start, PAGE_SIZE));
c039e3a8 612 }
30437b3e
DG
613#endif /* CONFIG_BLK_DEV_INITRD */
614
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615#ifdef CONFIG_PPC32
616 /*
617 * Handle the case where we might be booting from an old kexec
618 * image that setup the mem_rsvmap as pairs of 32-bit values
619 */
dc0e643a 620 if (be64_to_cpup(reserve_map) > 0xffffffffull) {
cbbcf340 621 u32 base_32, size_32;
dc0e643a 622 __be32 *reserve_map_32 = (__be32 *)reserve_map;
cbbcf340 623
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624 DBG("Found old 32-bit reserve map\n");
625
cbbcf340 626 while (1) {
dc0e643a
IM
627 base_32 = be32_to_cpup(reserve_map_32++);
628 size_32 = be32_to_cpup(reserve_map_32++);
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KG
629 if (size_32 == 0)
630 break;
329dda08 631 DBG("reserving: %x -> %x\n", base_32, size_32);
95f72d1e 632 memblock_reserve(base_32, size_32);
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633 }
634 return;
635 }
636#endif
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637}
638
639void __init early_init_devtree(void *params)
640{
49a84965 641 phys_addr_t limit;
6ca4f749 642
44348105 643 DBG(" -> early_init_devtree(%p)\n", params);
9b6b563c 644
ad72a279
ME
645 /* Too early to BUG_ON(), do it by hand */
646 if (!early_init_dt_verify(params))
647 panic("BUG: Failed verifying flat device tree, bad version?");
648
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649 /* Setup flat device-tree pointer */
650 initial_boot_params = params;
651
458148c0
ME
652#ifdef CONFIG_PPC_RTAS
653 /* Some machines might need RTAS info for debugging, grab it now. */
654 of_scan_flat_dt(early_init_dt_scan_rtas, NULL);
655#endif
656
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BH
657#ifdef CONFIG_PPC_POWERNV
658 /* Some machines might need OPAL info for debugging, grab it now. */
659 of_scan_flat_dt(early_init_dt_scan_opal, NULL);
660#endif
661
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MS
662#ifdef CONFIG_FA_DUMP
663 /* scan tree to see if dump is active during last boot */
664 of_scan_flat_dt(early_init_dt_scan_fw_dump, NULL);
665#endif
666
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667 /* Retrieve various informations from the /chosen node of the
668 * device-tree, including the platform type, initrd location and
669 * size, TCE reserve, and more ...
670 */
3e47d147 671 of_scan_flat_dt(early_init_dt_scan_chosen_ppc, boot_command_line);
9b6b563c 672
95f72d1e 673 /* Scan memory nodes and rebuild MEMBLOCKs */
3c726f8d 674 of_scan_flat_dt(early_init_dt_scan_root, NULL);
51975db0 675 of_scan_flat_dt(early_init_dt_scan_memory_ppc, NULL);
846f77b0 676
846f77b0
ME
677 parse_early_param();
678
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KG
679 /* make sure we've parsed cmdline for mem= before this */
680 if (memory_limit)
a84fcd46 681 first_memblock_size = min_t(u64, first_memblock_size, memory_limit);
ba14f649 682 setup_initial_memory_limit(memstart_addr, first_memblock_size);
95f72d1e
YL
683 /* Reserve MEMBLOCK regions used by kernel, initrd, dt, etc... */
684 memblock_reserve(PHYSICAL_START, __pa(klimit) - PHYSICAL_START);
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685 /* If relocatable, reserve first 32k for interrupt vectors etc. */
686 if (PHYSICAL_START > MEMORY_START)
95f72d1e 687 memblock_reserve(MEMORY_START, 0x8000);
47310413 688 reserve_kdump_trampoline();
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MS
689#ifdef CONFIG_FA_DUMP
690 /*
691 * If we fail to reserve memory for firmware-assisted dump then
692 * fallback to kexec based kdump.
693 */
694 if (fadump_reserve_mem() == 0)
695#endif
696 reserve_crashkernel();
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697 early_reserve_mem();
698
14ed7409 699 /* Ensure that total memory size is page-aligned. */
6fbef13c 700 limit = ALIGN(memory_limit ?: memblock_phys_mem_size(), PAGE_SIZE);
95f72d1e 701 memblock_enforce_memory_limit(limit);
6ca4f749 702
1aadc056 703 memblock_allow_resize();
95f72d1e 704 memblock_dump_all();
2babf5c2 705
95f72d1e 706 DBG("Phys. mem: %llx\n", memblock_phys_mem_size());
2babf5c2
ME
707
708 /* We may need to relocate the flat tree, do it now.
709 * FIXME .. and the initrd too? */
710 move_device_tree();
711
1426d5a3
ME
712 allocate_pacas();
713
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714 DBG("Scanning CPUs ...\n");
715
25985edc 716 /* Retrieve CPU related informations from the flat tree
3c726f8d 717 * (altivec support, boot CPU ID, ...)
9b6b563c 718 */
3c726f8d 719 of_scan_flat_dt(early_init_dt_scan_cpus, NULL);
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BH
720 if (boot_cpuid < 0) {
721 printk("Failed to indentify boot CPU !\n");
722 BUG();
723 }
9b6b563c 724
7ac87abb
ME
725#if defined(CONFIG_SMP) && defined(CONFIG_PPC64)
726 /* We'll later wait for secondaries to check in; there are
727 * NCPUS-1 non-boot CPUs :-)
728 */
729 spinning_secondaries = boot_cpu_count - 1;
730#endif
731
55672ecf
MS
732#ifdef CONFIG_PPC_POWERNV
733 /* Scan and build the list of machine check recoverable ranges */
734 of_scan_flat_dt(early_init_dt_scan_recoverable_ranges, NULL);
735#endif
736
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737 DBG(" <- early_init_devtree()\n");
738}
739
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KH
740#ifdef CONFIG_RELOCATABLE
741/*
742 * This function run before early_init_devtree, so we have to init
743 * initial_boot_params.
744 */
745void __init early_get_first_memblock_info(void *params, phys_addr_t *size)
746{
747 /* Setup flat device-tree pointer */
748 initial_boot_params = params;
749
750 /*
751 * Scan the memory nodes and set add_mem_to_memblock to 0 to avoid
752 * mess the memblock.
753 */
754 add_mem_to_memblock = 0;
755 of_scan_flat_dt(early_init_dt_scan_root, NULL);
756 of_scan_flat_dt(early_init_dt_scan_memory_ppc, NULL);
757 add_mem_to_memblock = 1;
758
759 if (size)
760 *size = first_memblock_size;
761}
762#endif
763
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764/*******
765 *
766 * New implementation of the OF "find" APIs, return a refcounted
767 * object, call of_node_put() when done. The device tree and list
768 * are protected by a rw_lock.
769 *
770 * Note that property management will need some locking as well,
771 * this isn't dealt with yet.
772 *
773 *******/
774
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BH
775/**
776 * of_get_ibm_chip_id - Returns the IBM "chip-id" of a device
777 * @np: device node of the device
778 *
779 * This looks for a property "ibm,chip-id" in the node or any
780 * of its parents and returns its content, or -1 if it cannot
781 * be found.
782 */
783int of_get_ibm_chip_id(struct device_node *np)
784{
785 of_node_get(np);
786 while(np) {
787 struct device_node *old = np;
788 const __be32 *prop;
789
790 prop = of_get_property(np, "ibm,chip-id", NULL);
791 if (prop) {
792 of_node_put(np);
793 return be32_to_cpup(prop);
794 }
795 np = of_get_parent(np);
796 of_node_put(old);
797 }
798 return -1;
799}
800
3eb906c6
ME
801/**
802 * cpu_to_chip_id - Return the cpus chip-id
803 * @cpu: The logical cpu number.
804 *
805 * Return the value of the ibm,chip-id property corresponding to the given
806 * logical cpu number. If the chip-id can not be found, returns -1.
807 */
808int cpu_to_chip_id(int cpu)
809{
810 struct device_node *np;
811
812 np = of_get_cpu_node(cpu, NULL);
813 if (!np)
814 return -1;
815
816 of_node_put(np);
817 return of_get_ibm_chip_id(np);
818}
819EXPORT_SYMBOL(cpu_to_chip_id);
820
819d5965
SK
821bool arch_match_cpu_phys_id(int cpu, u64 phys_id)
822{
823 return (int)phys_id == get_hard_smp_processor_id(cpu);
824}