GNU Linux-libre 4.9.337-gnu1
[releases.git] / arch / arc / kernel / setup.c
1 /*
2  * Copyright (C) 2004, 2007-2010, 2011-2012 Synopsys, Inc. (www.synopsys.com)
3  *
4  * This program is free software; you can redistribute it and/or modify
5  * it under the terms of the GNU General Public License version 2 as
6  * published by the Free Software Foundation.
7  */
8
9 #include <linux/seq_file.h>
10 #include <linux/fs.h>
11 #include <linux/delay.h>
12 #include <linux/root_dev.h>
13 #include <linux/console.h>
14 #include <linux/module.h>
15 #include <linux/sizes.h>
16 #include <linux/cpu.h>
17 #include <linux/of_fdt.h>
18 #include <linux/of.h>
19 #include <linux/cache.h>
20 #include <asm/sections.h>
21 #include <asm/arcregs.h>
22 #include <asm/tlb.h>
23 #include <asm/setup.h>
24 #include <asm/page.h>
25 #include <asm/irq.h>
26 #include <asm/unwind.h>
27 #include <asm/mach_desc.h>
28 #include <asm/smp.h>
29
30 #define FIX_PTR(x)  __asm__ __volatile__(";" : "+r"(x))
31
32 unsigned int intr_to_DE_cnt;
33
34 /* Part of U-boot ABI: see head.S */
35 int __initdata uboot_tag;
36 int __initdata uboot_magic;
37 char __initdata *uboot_arg;
38
39 const struct machine_desc *machine_desc;
40
41 struct task_struct *_current_task[NR_CPUS];     /* For stack switching */
42
43 struct cpuinfo_arc cpuinfo_arc700[NR_CPUS];
44
45 static const struct id_to_str arc_cpu_rel[] = {
46 #ifdef CONFIG_ISA_ARCOMPACT
47         { 0x34, "R4.10"},
48         { 0x35, "R4.11"},
49 #else
50         { 0x51, "R2.0" },
51         { 0x52, "R2.1" },
52         { 0x53, "R3.0" },
53 #endif
54         { 0x00, NULL   }
55 };
56
57 static const struct id_to_str arc_cpu_nm[] = {
58 #ifdef CONFIG_ISA_ARCOMPACT
59         { 0x20, "ARC 600"   },
60         { 0x30, "ARC 770"   },  /* 750 identified seperately */
61 #else
62         { 0x40, "ARC EM"  },
63         { 0x50, "ARC HS38"  },
64 #endif
65         { 0x00, "Unknown"   }
66 };
67
68 static void read_decode_ccm_bcr(struct cpuinfo_arc *cpu)
69 {
70         if (is_isa_arcompact()) {
71                 struct bcr_iccm_arcompact iccm;
72                 struct bcr_dccm_arcompact dccm;
73
74                 READ_BCR(ARC_REG_ICCM_BUILD, iccm);
75                 if (iccm.ver) {
76                         cpu->iccm.sz = 4096 << iccm.sz; /* 8K to 512K */
77                         cpu->iccm.base_addr = iccm.base << 16;
78                 }
79
80                 READ_BCR(ARC_REG_DCCM_BUILD, dccm);
81                 if (dccm.ver) {
82                         unsigned long base;
83                         cpu->dccm.sz = 2048 << dccm.sz; /* 2K to 256K */
84
85                         base = read_aux_reg(ARC_REG_DCCM_BASE_BUILD);
86                         cpu->dccm.base_addr = base & ~0xF;
87                 }
88         } else {
89                 struct bcr_iccm_arcv2 iccm;
90                 struct bcr_dccm_arcv2 dccm;
91                 unsigned long region;
92
93                 READ_BCR(ARC_REG_ICCM_BUILD, iccm);
94                 if (iccm.ver) {
95                         cpu->iccm.sz = 256 << iccm.sz00;        /* 512B to 16M */
96                         if (iccm.sz00 == 0xF && iccm.sz01 > 0)
97                                 cpu->iccm.sz <<= iccm.sz01;
98
99                         region = read_aux_reg(ARC_REG_AUX_ICCM);
100                         cpu->iccm.base_addr = region & 0xF0000000;
101                 }
102
103                 READ_BCR(ARC_REG_DCCM_BUILD, dccm);
104                 if (dccm.ver) {
105                         cpu->dccm.sz = 256 << dccm.sz0;
106                         if (dccm.sz0 == 0xF && dccm.sz1 > 0)
107                                 cpu->dccm.sz <<= dccm.sz1;
108
109                         region = read_aux_reg(ARC_REG_AUX_DCCM);
110                         cpu->dccm.base_addr = region & 0xF0000000;
111                 }
112         }
113 }
114
115 static void read_arc_build_cfg_regs(void)
116 {
117         struct bcr_timer timer;
118         struct bcr_generic bcr;
119         struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
120         const struct id_to_str *tbl;
121
122         FIX_PTR(cpu);
123
124         READ_BCR(AUX_IDENTITY, cpu->core);
125         READ_BCR(ARC_REG_ISA_CFG_BCR, cpu->isa);
126
127         for (tbl = &arc_cpu_rel[0]; tbl->id != 0; tbl++) {
128                 if (cpu->core.family == tbl->id) {
129                         cpu->details = tbl->str;
130                         break;
131                 }
132         }
133
134         for (tbl = &arc_cpu_nm[0]; tbl->id != 0; tbl++) {
135                 if ((cpu->core.family & 0xF0) == tbl->id)
136                         break;
137         }
138         cpu->name = tbl->str;
139
140         READ_BCR(ARC_REG_TIMERS_BCR, timer);
141         cpu->extn.timer0 = timer.t0;
142         cpu->extn.timer1 = timer.t1;
143         cpu->extn.rtc = timer.rtc;
144
145         cpu->vec_base = read_aux_reg(AUX_INTR_VEC_BASE);
146
147         READ_BCR(ARC_REG_MUL_BCR, cpu->extn_mpy);
148
149         cpu->extn.norm = read_aux_reg(ARC_REG_NORM_BCR) > 1 ? 1 : 0; /* 2,3 */
150         cpu->extn.barrel = read_aux_reg(ARC_REG_BARREL_BCR) > 1 ? 1 : 0; /* 2,3 */
151         cpu->extn.swap = read_aux_reg(ARC_REG_SWAP_BCR) ? 1 : 0;        /* 1,3 */
152         cpu->extn.crc = read_aux_reg(ARC_REG_CRC_BCR) ? 1 : 0;
153         cpu->extn.minmax = read_aux_reg(ARC_REG_MIXMAX_BCR) > 1 ? 1 : 0; /* 2 */
154         cpu->extn.swape = (cpu->core.family >= 0x34) ? 1 :
155                                 IS_ENABLED(CONFIG_ARC_HAS_SWAPE);
156
157         READ_BCR(ARC_REG_XY_MEM_BCR, cpu->extn_xymem);
158
159         /* Read CCM BCRs for boot reporting even if not enabled in Kconfig */
160         read_decode_ccm_bcr(cpu);
161
162         read_decode_mmu_bcr();
163         read_decode_cache_bcr();
164
165         if (is_isa_arcompact()) {
166                 struct bcr_fp_arcompact sp, dp;
167                 struct bcr_bpu_arcompact bpu;
168
169                 READ_BCR(ARC_REG_FP_BCR, sp);
170                 READ_BCR(ARC_REG_DPFP_BCR, dp);
171                 cpu->extn.fpu_sp = sp.ver ? 1 : 0;
172                 cpu->extn.fpu_dp = dp.ver ? 1 : 0;
173
174                 READ_BCR(ARC_REG_BPU_BCR, bpu);
175                 cpu->bpu.ver = bpu.ver;
176                 cpu->bpu.full = bpu.fam ? 1 : 0;
177                 if (bpu.ent) {
178                         cpu->bpu.num_cache = 256 << (bpu.ent - 1);
179                         cpu->bpu.num_pred = 256 << (bpu.ent - 1);
180                 }
181         } else {
182                 struct bcr_fp_arcv2 spdp;
183                 struct bcr_bpu_arcv2 bpu;
184
185                 READ_BCR(ARC_REG_FP_V2_BCR, spdp);
186                 cpu->extn.fpu_sp = spdp.sp ? 1 : 0;
187                 cpu->extn.fpu_dp = spdp.dp ? 1 : 0;
188
189                 READ_BCR(ARC_REG_BPU_BCR, bpu);
190                 cpu->bpu.ver = bpu.ver;
191                 cpu->bpu.full = bpu.ft;
192                 cpu->bpu.num_cache = 256 << bpu.bce;
193                 cpu->bpu.num_pred = 2048 << bpu.pte;
194         }
195
196         READ_BCR(ARC_REG_AP_BCR, bcr);
197         cpu->extn.ap = bcr.ver ? 1 : 0;
198
199         READ_BCR(ARC_REG_SMART_BCR, bcr);
200         cpu->extn.smart = bcr.ver ? 1 : 0;
201
202         READ_BCR(ARC_REG_RTT_BCR, bcr);
203         cpu->extn.rtt = bcr.ver ? 1 : 0;
204
205         cpu->extn.debug = cpu->extn.ap | cpu->extn.smart | cpu->extn.rtt;
206
207         /* some hacks for lack of feature BCR info in old ARC700 cores */
208         if (is_isa_arcompact()) {
209                 if (!cpu->isa.ver)      /* ISA BCR absent, use Kconfig info */
210                         cpu->isa.atomic = IS_ENABLED(CONFIG_ARC_HAS_LLSC);
211                 else
212                         cpu->isa.atomic = cpu->isa.atomic1;
213
214                 cpu->isa.be = IS_ENABLED(CONFIG_CPU_BIG_ENDIAN);
215
216                  /* there's no direct way to distinguish 750 vs. 770 */
217                 if (unlikely(cpu->core.family < 0x34 || cpu->mmu.ver < 3))
218                         cpu->name = "ARC750";
219         }
220 }
221
222 static char *arc_cpu_mumbojumbo(int cpu_id, char *buf, int len)
223 {
224         struct cpuinfo_arc *cpu = &cpuinfo_arc700[cpu_id];
225         struct bcr_identity *core = &cpu->core;
226         int i, n = 0;
227
228         FIX_PTR(cpu);
229
230         n += scnprintf(buf + n, len - n,
231                        "\nIDENTITY\t: ARCVER [%#02x] ARCNUM [%#02x] CHIPID [%#4x]\n",
232                        core->family, core->cpu_id, core->chip_id);
233
234         n += scnprintf(buf + n, len - n, "processor [%d]\t: %s %s (%s ISA) %s\n",
235                        cpu_id, cpu->name, cpu->details,
236                        is_isa_arcompact() ? "ARCompact" : "ARCv2",
237                        IS_AVAIL1(cpu->isa.be, "[Big-Endian]"));
238
239         n += scnprintf(buf + n, len - n, "Timers\t\t: %s%s%s%s\nISA Extn\t: ",
240                        IS_AVAIL1(cpu->extn.timer0, "Timer0 "),
241                        IS_AVAIL1(cpu->extn.timer1, "Timer1 "),
242                        IS_AVAIL2(cpu->extn.rtc, "Local-64-bit-Ctr ",
243                                  CONFIG_ARC_HAS_RTC));
244
245         n += i = scnprintf(buf + n, len - n, "%s%s%s%s%s",
246                            IS_AVAIL2(cpu->isa.atomic, "atomic ", CONFIG_ARC_HAS_LLSC),
247                            IS_AVAIL2(cpu->isa.ldd, "ll64 ", CONFIG_ARC_HAS_LL64),
248                            IS_AVAIL1(cpu->isa.unalign, "unalign (not used)"));
249
250         if (i)
251                 n += scnprintf(buf + n, len - n, "\n\t\t: ");
252
253         if (cpu->extn_mpy.ver) {
254                 if (cpu->extn_mpy.ver <= 0x2) { /* ARCompact */
255                         n += scnprintf(buf + n, len - n, "mpy ");
256                 } else {
257                         int opt = 2;    /* stock MPY/MPYH */
258
259                         if (cpu->extn_mpy.dsp)  /* OPT 7-9 */
260                                 opt = cpu->extn_mpy.dsp + 6;
261
262                         n += scnprintf(buf + n, len - n, "mpy[opt %d] ", opt);
263                 }
264         }
265
266         n += scnprintf(buf + n, len - n, "%s%s%s%s%s%s%s%s\n",
267                        IS_AVAIL1(cpu->isa.div_rem, "div_rem "),
268                        IS_AVAIL1(cpu->extn.norm, "norm "),
269                        IS_AVAIL1(cpu->extn.barrel, "barrel-shift "),
270                        IS_AVAIL1(cpu->extn.swap, "swap "),
271                        IS_AVAIL1(cpu->extn.minmax, "minmax "),
272                        IS_AVAIL1(cpu->extn.crc, "crc "),
273                        IS_AVAIL2(cpu->extn.swape, "swape", CONFIG_ARC_HAS_SWAPE));
274
275         if (cpu->bpu.ver)
276                 n += scnprintf(buf + n, len - n,
277                               "BPU\t\t: %s%s match, cache:%d, Predict Table:%d\n",
278                               IS_AVAIL1(cpu->bpu.full, "full"),
279                               IS_AVAIL1(!cpu->bpu.full, "partial"),
280                               cpu->bpu.num_cache, cpu->bpu.num_pred);
281
282         return buf;
283 }
284
285 static char *arc_extn_mumbojumbo(int cpu_id, char *buf, int len)
286 {
287         int n = 0;
288         struct cpuinfo_arc *cpu = &cpuinfo_arc700[cpu_id];
289
290         FIX_PTR(cpu);
291
292         n += scnprintf(buf + n, len - n, "Vector Table\t: %#x\n", cpu->vec_base);
293
294         if (cpu->extn.fpu_sp || cpu->extn.fpu_dp)
295                 n += scnprintf(buf + n, len - n, "FPU\t\t: %s%s\n",
296                                IS_AVAIL1(cpu->extn.fpu_sp, "SP "),
297                                IS_AVAIL1(cpu->extn.fpu_dp, "DP "));
298
299         if (cpu->extn.debug)
300                 n += scnprintf(buf + n, len - n, "DEBUG\t\t: %s%s%s\n",
301                                IS_AVAIL1(cpu->extn.ap, "ActionPoint "),
302                                IS_AVAIL1(cpu->extn.smart, "smaRT "),
303                                IS_AVAIL1(cpu->extn.rtt, "RTT "));
304
305         if (cpu->dccm.sz || cpu->iccm.sz)
306                 n += scnprintf(buf + n, len - n, "Extn [CCM]\t: DCCM @ %x, %d KB / ICCM: @ %x, %d KB\n",
307                                cpu->dccm.base_addr, TO_KB(cpu->dccm.sz),
308                                cpu->iccm.base_addr, TO_KB(cpu->iccm.sz));
309
310         n += scnprintf(buf + n, len - n, "OS ABI [v%d]\t: %s\n",
311                         EF_ARC_OSABI_CURRENT >> 8,
312                         EF_ARC_OSABI_CURRENT == EF_ARC_OSABI_V3 ?
313                         "no-legacy-syscalls" : "64-bit data any register aligned");
314
315         return buf;
316 }
317
318 static void arc_chk_core_config(void)
319 {
320         struct cpuinfo_arc *cpu = &cpuinfo_arc700[smp_processor_id()];
321         int fpu_enabled;
322
323         if (!cpu->extn.timer0)
324                 panic("Timer0 is not present!\n");
325
326         if (!cpu->extn.timer1)
327                 panic("Timer1 is not present!\n");
328
329 #ifdef CONFIG_ARC_HAS_DCCM
330         /*
331          * DCCM can be arbit placed in hardware.
332          * Make sure it's placement/sz matches what Linux is built with
333          */
334         if ((unsigned int)__arc_dccm_base != cpu->dccm.base_addr)
335                 panic("Linux built with incorrect DCCM Base address\n");
336
337         if (CONFIG_ARC_DCCM_SZ * SZ_1K != cpu->dccm.sz)
338                 panic("Linux built with incorrect DCCM Size\n");
339 #endif
340
341 #ifdef CONFIG_ARC_HAS_ICCM
342         if (CONFIG_ARC_ICCM_SZ * SZ_1K != cpu->iccm.sz)
343                 panic("Linux built with incorrect ICCM Size\n");
344 #endif
345
346         /*
347          * FP hardware/software config sanity
348          * -If hardware contains DPFP, kernel needs to save/restore FPU state
349          * -If not, it will crash trying to save/restore the non-existant regs
350          *
351          * (only DPDP checked since SP has no arch visible regs)
352          */
353         fpu_enabled = IS_ENABLED(CONFIG_ARC_FPU_SAVE_RESTORE);
354
355         if (cpu->extn.fpu_dp && !fpu_enabled)
356                 pr_warn("CONFIG_ARC_FPU_SAVE_RESTORE needed for working apps\n");
357         else if (!cpu->extn.fpu_dp && fpu_enabled)
358                 panic("FPU non-existent, disable CONFIG_ARC_FPU_SAVE_RESTORE\n");
359 }
360
361 /*
362  * Initialize and setup the processor core
363  * This is called by all the CPUs thus should not do special case stuff
364  *    such as only for boot CPU etc
365  */
366
367 void setup_processor(void)
368 {
369         char str[512];
370         int cpu_id = smp_processor_id();
371
372         read_arc_build_cfg_regs();
373         arc_init_IRQ();
374
375         printk(arc_cpu_mumbojumbo(cpu_id, str, sizeof(str)));
376
377         arc_mmu_init();
378         arc_cache_init();
379
380         printk(arc_extn_mumbojumbo(cpu_id, str, sizeof(str)));
381         printk(arc_platform_smp_cpuinfo());
382
383         arc_chk_core_config();
384 }
385
386 static inline bool uboot_arg_invalid(unsigned long addr)
387 {
388         /*
389          * Check that it is a untranslated address (although MMU is not enabled
390          * yet, it being a high address ensures this is not by fluke)
391          */
392         if (addr < PAGE_OFFSET)
393                 return true;
394
395         /* Check that address doesn't clobber resident kernel image */
396         return addr >= (unsigned long)_stext && addr <= (unsigned long)_end;
397 }
398
399 #define IGNORE_ARGS             "Ignore U-boot args: "
400
401 /* uboot_tag values for U-boot - kernel ABI revision 0; see head.S */
402 #define UBOOT_TAG_NONE          0
403 #define UBOOT_TAG_CMDLINE       1
404 #define UBOOT_TAG_DTB           2
405 /* We always pass 0 as magic from U-boot */
406 #define UBOOT_MAGIC_VALUE       0
407
408 void __init handle_uboot_args(void)
409 {
410         bool use_embedded_dtb = true;
411         bool append_cmdline = false;
412
413 #ifdef CONFIG_ARC_UBOOT_SUPPORT
414         /* check that we know this tag */
415         if (uboot_tag != UBOOT_TAG_NONE &&
416             uboot_tag != UBOOT_TAG_CMDLINE &&
417             uboot_tag != UBOOT_TAG_DTB) {
418                 pr_warn(IGNORE_ARGS "invalid uboot tag: '%08x'\n", uboot_tag);
419                 goto ignore_uboot_args;
420         }
421
422         if (uboot_magic != UBOOT_MAGIC_VALUE) {
423                 pr_warn(IGNORE_ARGS "non zero uboot magic\n");
424                 goto ignore_uboot_args;
425         }
426
427         if (uboot_tag != UBOOT_TAG_NONE &&
428             uboot_arg_invalid((unsigned long)uboot_arg)) {
429                 pr_warn(IGNORE_ARGS "invalid uboot arg: '%px'\n", uboot_arg);
430                 goto ignore_uboot_args;
431         }
432
433         /* see if U-boot passed an external Device Tree blob */
434         if (uboot_tag == UBOOT_TAG_DTB) {
435                 machine_desc = setup_machine_fdt((void *)uboot_arg);
436
437                 /* external Device Tree blob is invalid - use embedded one */
438                 use_embedded_dtb = !machine_desc;
439         }
440
441         if (uboot_tag == UBOOT_TAG_CMDLINE)
442                 append_cmdline = true;
443
444 ignore_uboot_args:
445 #endif
446
447         if (use_embedded_dtb) {
448                 machine_desc = setup_machine_fdt(__dtb_start);
449                 if (!machine_desc)
450                         panic("Embedded DT invalid\n");
451         }
452
453         /*
454          * NOTE: @boot_command_line is populated by setup_machine_fdt() so this
455          * append processing can only happen after.
456          */
457         if (append_cmdline) {
458                 /* Ensure a whitespace between the 2 cmdlines */
459                 strlcat(boot_command_line, " ", COMMAND_LINE_SIZE);
460                 strlcat(boot_command_line, uboot_arg, COMMAND_LINE_SIZE);
461         }
462 }
463
464 void __init setup_arch(char **cmdline_p)
465 {
466         handle_uboot_args();
467
468         /* Save unparsed command line copy for /proc/cmdline */
469         *cmdline_p = boot_command_line;
470
471         /* To force early parsing of things like mem=xxx */
472         parse_early_param();
473
474         /* Platform/board specific: e.g. early console registration */
475         if (machine_desc->init_early)
476                 machine_desc->init_early();
477
478         smp_init_cpus();
479
480         setup_processor();
481         setup_arch_memory();
482
483         /* copy flat DT out of .init and then unflatten it */
484         unflatten_and_copy_device_tree();
485
486         /* Can be issue if someone passes cmd line arg "ro"
487          * But that is unlikely so keeping it as it is
488          */
489         root_mountflags &= ~MS_RDONLY;
490
491 #if defined(CONFIG_VT) && defined(CONFIG_DUMMY_CONSOLE)
492         conswitchp = &dummy_con;
493 #endif
494
495         arc_unwind_init();
496 }
497
498 static int __init customize_machine(void)
499 {
500         if (machine_desc->init_machine)
501                 machine_desc->init_machine();
502
503         return 0;
504 }
505 arch_initcall(customize_machine);
506
507 static int __init init_late_machine(void)
508 {
509         if (machine_desc->init_late)
510                 machine_desc->init_late();
511
512         return 0;
513 }
514 late_initcall(init_late_machine);
515 /*
516  *  Get CPU information for use by the procfs.
517  */
518
519 #define cpu_to_ptr(c)   ((void *)(0xFFFF0000 | (unsigned int)(c)))
520 #define ptr_to_cpu(p)   (~0xFFFF0000UL & (unsigned int)(p))
521
522 static int show_cpuinfo(struct seq_file *m, void *v)
523 {
524         char *str;
525         int cpu_id = ptr_to_cpu(v);
526         struct device_node *core_clk = of_find_node_by_name(NULL, "core_clk");
527         u32 freq = 0;
528
529         if (!cpu_online(cpu_id)) {
530                 seq_printf(m, "processor [%d]\t: Offline\n", cpu_id);
531                 goto done;
532         }
533
534         str = (char *)__get_free_page(GFP_TEMPORARY);
535         if (!str)
536                 goto done;
537
538         seq_printf(m, arc_cpu_mumbojumbo(cpu_id, str, PAGE_SIZE));
539
540         of_property_read_u32(core_clk, "clock-frequency", &freq);
541         if (freq)
542                 seq_printf(m, "CPU speed\t: %u.%02u Mhz\n",
543                            freq / 1000000, (freq / 10000) % 100);
544
545         seq_printf(m, "Bogo MIPS\t: %lu.%02lu\n",
546                    loops_per_jiffy / (500000 / HZ),
547                    (loops_per_jiffy / (5000 / HZ)) % 100);
548
549         seq_printf(m, arc_mmu_mumbojumbo(cpu_id, str, PAGE_SIZE));
550         seq_printf(m, arc_cache_mumbojumbo(cpu_id, str, PAGE_SIZE));
551         seq_printf(m, arc_extn_mumbojumbo(cpu_id, str, PAGE_SIZE));
552         seq_printf(m, arc_platform_smp_cpuinfo());
553
554         free_page((unsigned long)str);
555 done:
556         seq_printf(m, "\n");
557
558         return 0;
559 }
560
561 static void *c_start(struct seq_file *m, loff_t *pos)
562 {
563         /*
564          * Callback returns cpu-id to iterator for show routine, NULL to stop.
565          * However since NULL is also a valid cpu-id (0), we use a round-about
566          * way to pass it w/o having to kmalloc/free a 2 byte string.
567          * Encode cpu-id as 0xFFcccc, which is decoded by show routine.
568          */
569         return *pos < nr_cpu_ids ? cpu_to_ptr(*pos) : NULL;
570 }
571
572 static void *c_next(struct seq_file *m, void *v, loff_t *pos)
573 {
574         ++*pos;
575         return c_start(m, pos);
576 }
577
578 static void c_stop(struct seq_file *m, void *v)
579 {
580 }
581
582 const struct seq_operations cpuinfo_op = {
583         .start  = c_start,
584         .next   = c_next,
585         .stop   = c_stop,
586         .show   = show_cpuinfo
587 };
588
589 static DEFINE_PER_CPU(struct cpu, cpu_topology);
590
591 static int __init topology_init(void)
592 {
593         int cpu;
594
595         for_each_present_cpu(cpu)
596             register_cpu(&per_cpu(cpu_topology, cpu), cpu);
597
598         return 0;
599 }
600
601 subsys_initcall(topology_init);