xen: resume interrupts before system devices.
[linux-2.6-block.git] / arch / x86 / xen / enlighten.c
CommitLineData
5ead97c8
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1/*
2 * Core of Xen paravirt_ops implementation.
3 *
4 * This file contains the xen_paravirt_ops structure itself, and the
5 * implementations for:
6 * - privileged instructions
7 * - interrupt flags
8 * - segment operations
9 * - booting and setup
10 *
11 * Jeremy Fitzhardinge <jeremy@xensource.com>, XenSource Inc, 2007
12 */
13
14#include <linux/kernel.h>
15#include <linux/init.h>
16#include <linux/smp.h>
17#include <linux/preempt.h>
f120f13e 18#include <linux/hardirq.h>
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19#include <linux/percpu.h>
20#include <linux/delay.h>
21#include <linux/start_kernel.h>
22#include <linux/sched.h>
23#include <linux/bootmem.h>
24#include <linux/module.h>
f4f97b3e
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25#include <linux/mm.h>
26#include <linux/page-flags.h>
27#include <linux/highmem.h>
b8c2d3df 28#include <linux/console.h>
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29
30#include <xen/interface/xen.h>
ecbf29cd 31#include <xen/interface/version.h>
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32#include <xen/interface/physdev.h>
33#include <xen/interface/vcpu.h>
34#include <xen/features.h>
35#include <xen/page.h>
084a2a4e 36#include <xen/hvc-console.h>
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37
38#include <asm/paravirt.h>
7b6aa335 39#include <asm/apic.h>
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40#include <asm/page.h>
41#include <asm/xen/hypercall.h>
42#include <asm/xen/hypervisor.h>
43#include <asm/fixmap.h>
44#include <asm/processor.h>
1153968a 45#include <asm/msr-index.h>
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46#include <asm/setup.h>
47#include <asm/desc.h>
48#include <asm/pgtable.h>
f87e4cac 49#include <asm/tlbflush.h>
fefa629a 50#include <asm/reboot.h>
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51
52#include "xen-ops.h"
3b827c1b 53#include "mmu.h"
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54#include "multicalls.h"
55
56EXPORT_SYMBOL_GPL(hypercall_page);
57
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58DEFINE_PER_CPU(struct vcpu_info *, xen_vcpu);
59DEFINE_PER_CPU(struct vcpu_info, xen_vcpu_info);
9f79991d 60
6e833587
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61enum xen_domain_type xen_domain_type = XEN_NATIVE;
62EXPORT_SYMBOL_GPL(xen_domain_type);
63
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64struct start_info *xen_start_info;
65EXPORT_SYMBOL_GPL(xen_start_info);
66
a0d695c8 67struct shared_info xen_dummy_shared_info;
60223a32 68
38341432
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69void *xen_initial_gdt;
70
60223a32
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71/*
72 * Point at some empty memory to start with. We map the real shared_info
73 * page as soon as fixmap is up and running.
74 */
a0d695c8 75struct shared_info *HYPERVISOR_shared_info = (void *)&xen_dummy_shared_info;
60223a32
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76
77/*
78 * Flag to determine whether vcpu info placement is available on all
79 * VCPUs. We assume it is to start with, and then set it to zero on
80 * the first failure. This is because it can succeed on some VCPUs
81 * and not others, since it can involve hypervisor memory allocation,
82 * or because the guest failed to guarantee all the appropriate
83 * constraints on all VCPUs (ie buffer can't cross a page boundary).
84 *
85 * Note that any particular CPU may be using a placed vcpu structure,
86 * but we can only optimise if the all are.
87 *
88 * 0: not available, 1: available
89 */
e4d04071 90static int have_vcpu_info_placement = 1;
60223a32 91
9c7a7942 92static void xen_vcpu_setup(int cpu)
5ead97c8 93{
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94 struct vcpu_register_vcpu_info info;
95 int err;
96 struct vcpu_info *vcpup;
97
a0d695c8 98 BUG_ON(HYPERVISOR_shared_info == &xen_dummy_shared_info);
5ead97c8 99 per_cpu(xen_vcpu, cpu) = &HYPERVISOR_shared_info->vcpu_info[cpu];
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100
101 if (!have_vcpu_info_placement)
102 return; /* already tested, not available */
103
104 vcpup = &per_cpu(xen_vcpu_info, cpu);
105
9976b39b 106 info.mfn = arbitrary_virt_to_mfn(vcpup);
60223a32
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107 info.offset = offset_in_page(vcpup);
108
e3d26976 109 printk(KERN_DEBUG "trying to map vcpu_info %d at %p, mfn %llx, offset %d\n",
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110 cpu, vcpup, info.mfn, info.offset);
111
112 /* Check to see if the hypervisor will put the vcpu_info
113 structure where we want it, which allows direct access via
114 a percpu-variable. */
115 err = HYPERVISOR_vcpu_op(VCPUOP_register_vcpu_info, cpu, &info);
116
117 if (err) {
118 printk(KERN_DEBUG "register_vcpu_info failed: err=%d\n", err);
119 have_vcpu_info_placement = 0;
120 } else {
121 /* This cpu is using the registered vcpu info, even if
122 later ones fail to. */
123 per_cpu(xen_vcpu, cpu) = vcpup;
6487673b 124
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125 printk(KERN_DEBUG "cpu %d using vcpu_info at %p\n",
126 cpu, vcpup);
127 }
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128}
129
9c7a7942
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130/*
131 * On restore, set the vcpu placement up again.
132 * If it fails, then we're in a bad state, since
133 * we can't back out from using it...
134 */
135void xen_vcpu_restore(void)
136{
137 if (have_vcpu_info_placement) {
138 int cpu;
139
140 for_each_online_cpu(cpu) {
141 bool other_cpu = (cpu != smp_processor_id());
142
143 if (other_cpu &&
144 HYPERVISOR_vcpu_op(VCPUOP_down, cpu, NULL))
145 BUG();
146
147 xen_vcpu_setup(cpu);
148
149 if (other_cpu &&
150 HYPERVISOR_vcpu_op(VCPUOP_up, cpu, NULL))
151 BUG();
152 }
153
154 BUG_ON(!have_vcpu_info_placement);
155 }
156}
157
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158static void __init xen_banner(void)
159{
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160 unsigned version = HYPERVISOR_xen_version(XENVER_version, NULL);
161 struct xen_extraversion extra;
162 HYPERVISOR_xen_version(XENVER_extraversion, &extra);
163
5ead97c8 164 printk(KERN_INFO "Booting paravirtualized kernel on %s\n",
93b1eab3 165 pv_info.name);
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166 printk(KERN_INFO "Xen version: %d.%d%s%s\n",
167 version >> 16, version & 0xffff, extra.extraversion,
e57778a1 168 xen_feature(XENFEAT_mmu_pt_update_preserve_ad) ? " (preserve-AD)" : "");
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169}
170
e826fe1b
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171static __read_mostly unsigned int cpuid_leaf1_edx_mask = ~0;
172static __read_mostly unsigned int cpuid_leaf1_ecx_mask = ~0;
173
65ea5b03
PA
174static void xen_cpuid(unsigned int *ax, unsigned int *bx,
175 unsigned int *cx, unsigned int *dx)
5ead97c8 176{
e826fe1b 177 unsigned maskecx = ~0;
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178 unsigned maskedx = ~0;
179
180 /*
181 * Mask out inconvenient features, to try and disable as many
182 * unsupported kernel subsystems as possible.
183 */
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184 if (*ax == 1) {
185 maskecx = cpuid_leaf1_ecx_mask;
186 maskedx = cpuid_leaf1_edx_mask;
187 }
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188
189 asm(XEN_EMULATE_PREFIX "cpuid"
65ea5b03
PA
190 : "=a" (*ax),
191 "=b" (*bx),
192 "=c" (*cx),
193 "=d" (*dx)
194 : "0" (*ax), "2" (*cx));
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195
196 *cx &= maskecx;
65ea5b03 197 *dx &= maskedx;
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198}
199
e826fe1b
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200static __init void xen_init_cpuid_mask(void)
201{
202 unsigned int ax, bx, cx, dx;
203
204 cpuid_leaf1_edx_mask =
205 ~((1 << X86_FEATURE_MCE) | /* disable MCE */
206 (1 << X86_FEATURE_MCA) | /* disable MCA */
207 (1 << X86_FEATURE_ACC)); /* thermal monitoring */
208
209 if (!xen_initial_domain())
210 cpuid_leaf1_edx_mask &=
211 ~((1 << X86_FEATURE_APIC) | /* disable local APIC */
212 (1 << X86_FEATURE_ACPI)); /* disable ACPI */
213
214 ax = 1;
215 xen_cpuid(&ax, &bx, &cx, &dx);
216
217 /* cpuid claims we support xsave; try enabling it to see what happens */
218 if (cx & (1 << (X86_FEATURE_XSAVE % 32))) {
219 unsigned long cr4;
220
221 set_in_cr4(X86_CR4_OSXSAVE);
222
223 cr4 = read_cr4();
224
225 if ((cr4 & X86_CR4_OSXSAVE) == 0)
226 cpuid_leaf1_ecx_mask &= ~(1 << (X86_FEATURE_XSAVE % 32));
227
228 clear_in_cr4(X86_CR4_OSXSAVE);
229 }
230}
231
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232static void xen_set_debugreg(int reg, unsigned long val)
233{
234 HYPERVISOR_set_debugreg(reg, val);
235}
236
237static unsigned long xen_get_debugreg(int reg)
238{
239 return HYPERVISOR_get_debugreg(reg);
240}
241
224101ed 242static void xen_end_context_switch(struct task_struct *next)
5ead97c8 243{
5ead97c8 244 xen_mc_flush();
224101ed 245 paravirt_end_context_switch(next);
5ead97c8
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246}
247
248static unsigned long xen_store_tr(void)
249{
250 return 0;
251}
252
a05d2eba 253/*
cef43bf6
JF
254 * Set the page permissions for a particular virtual address. If the
255 * address is a vmalloc mapping (or other non-linear mapping), then
256 * find the linear mapping of the page and also set its protections to
257 * match.
a05d2eba
JF
258 */
259static void set_aliased_prot(void *v, pgprot_t prot)
260{
261 int level;
262 pte_t *ptep;
263 pte_t pte;
264 unsigned long pfn;
265 struct page *page;
266
267 ptep = lookup_address((unsigned long)v, &level);
268 BUG_ON(ptep == NULL);
269
270 pfn = pte_pfn(*ptep);
271 page = pfn_to_page(pfn);
272
273 pte = pfn_pte(pfn, prot);
274
275 if (HYPERVISOR_update_va_mapping((unsigned long)v, pte, 0))
276 BUG();
277
278 if (!PageHighMem(page)) {
279 void *av = __va(PFN_PHYS(pfn));
280
281 if (av != v)
282 if (HYPERVISOR_update_va_mapping((unsigned long)av, pte, 0))
283 BUG();
284 } else
285 kmap_flush_unused();
286}
287
38ffbe66
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288static void xen_alloc_ldt(struct desc_struct *ldt, unsigned entries)
289{
a05d2eba 290 const unsigned entries_per_page = PAGE_SIZE / LDT_ENTRY_SIZE;
38ffbe66
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291 int i;
292
a05d2eba
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293 for(i = 0; i < entries; i += entries_per_page)
294 set_aliased_prot(ldt + i, PAGE_KERNEL_RO);
38ffbe66
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295}
296
297static void xen_free_ldt(struct desc_struct *ldt, unsigned entries)
298{
a05d2eba 299 const unsigned entries_per_page = PAGE_SIZE / LDT_ENTRY_SIZE;
38ffbe66
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300 int i;
301
a05d2eba
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302 for(i = 0; i < entries; i += entries_per_page)
303 set_aliased_prot(ldt + i, PAGE_KERNEL);
38ffbe66
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304}
305
5ead97c8
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306static void xen_set_ldt(const void *addr, unsigned entries)
307{
5ead97c8
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308 struct mmuext_op *op;
309 struct multicall_space mcs = xen_mc_entry(sizeof(*op));
310
311 op = mcs.args;
312 op->cmd = MMUEXT_SET_LDT;
4dbf7af6 313 op->arg1.linear_addr = (unsigned long)addr;
5ead97c8
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314 op->arg2.nr_ents = entries;
315
316 MULTI_mmuext_op(mcs.mc, op, 1, NULL, DOMID_SELF);
317
318 xen_mc_issue(PARAVIRT_LAZY_CPU);
319}
320
6b68f01b 321static void xen_load_gdt(const struct desc_ptr *dtr)
5ead97c8 322{
5ead97c8
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323 unsigned long va = dtr->address;
324 unsigned int size = dtr->size + 1;
325 unsigned pages = (size + PAGE_SIZE - 1) / PAGE_SIZE;
3ce5fa7e 326 unsigned long frames[pages];
5ead97c8 327 int f;
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328
329 /* A GDT can be up to 64k in size, which corresponds to 8192
330 8-byte entries, or 16 4k pages.. */
331
332 BUG_ON(size > 65536);
333 BUG_ON(va & ~PAGE_MASK);
334
5ead97c8 335 for (f = 0; va < dtr->address + size; va += PAGE_SIZE, f++) {
6ed6bf42
JF
336 int level;
337 pte_t *ptep = lookup_address(va, &level);
338 unsigned long pfn, mfn;
339 void *virt;
340
341 BUG_ON(ptep == NULL);
342
343 pfn = pte_pfn(*ptep);
344 mfn = pfn_to_mfn(pfn);
345 virt = __va(PFN_PHYS(pfn));
346
347 frames[f] = mfn;
9976b39b 348
5ead97c8 349 make_lowmem_page_readonly((void *)va);
6ed6bf42 350 make_lowmem_page_readonly(virt);
5ead97c8
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351 }
352
3ce5fa7e
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353 if (HYPERVISOR_set_gdt(frames, size / sizeof(struct desc_struct)))
354 BUG();
5ead97c8
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355}
356
357static void load_TLS_descriptor(struct thread_struct *t,
358 unsigned int cpu, unsigned int i)
359{
360 struct desc_struct *gdt = get_cpu_gdt_table(cpu);
9976b39b 361 xmaddr_t maddr = arbitrary_virt_to_machine(&gdt[GDT_ENTRY_TLS_MIN+i]);
5ead97c8
JF
362 struct multicall_space mc = __xen_mc_entry(0);
363
364 MULTI_update_descriptor(mc.mc, maddr.maddr, t->tls_array[i]);
365}
366
367static void xen_load_tls(struct thread_struct *t, unsigned int cpu)
368{
8b84ad94 369 /*
ccbeed3a
TH
370 * XXX sleazy hack: If we're being called in a lazy-cpu zone
371 * and lazy gs handling is enabled, it means we're in a
372 * context switch, and %gs has just been saved. This means we
373 * can zero it out to prevent faults on exit from the
374 * hypervisor if the next process has no %gs. Either way, it
375 * has been saved, and the new value will get loaded properly.
376 * This will go away as soon as Xen has been modified to not
377 * save/restore %gs for normal hypercalls.
8a95408e
EH
378 *
379 * On x86_64, this hack is not used for %gs, because gs points
380 * to KERNEL_GS_BASE (and uses it for PDA references), so we
381 * must not zero %gs on x86_64
382 *
383 * For x86_64, we need to zero %fs, otherwise we may get an
384 * exception between the new %fs descriptor being loaded and
385 * %fs being effectively cleared at __switch_to().
8b84ad94 386 */
8a95408e
EH
387 if (paravirt_get_lazy_mode() == PARAVIRT_LAZY_CPU) {
388#ifdef CONFIG_X86_32
ccbeed3a 389 lazy_load_gs(0);
8a95408e
EH
390#else
391 loadsegment(fs, 0);
392#endif
393 }
394
395 xen_mc_batch();
396
397 load_TLS_descriptor(t, cpu, 0);
398 load_TLS_descriptor(t, cpu, 1);
399 load_TLS_descriptor(t, cpu, 2);
400
401 xen_mc_issue(PARAVIRT_LAZY_CPU);
5ead97c8
JF
402}
403
a8fc1089
EH
404#ifdef CONFIG_X86_64
405static void xen_load_gs_index(unsigned int idx)
406{
407 if (HYPERVISOR_set_segment_base(SEGBASE_GS_USER_SEL, idx))
408 BUG();
5ead97c8 409}
a8fc1089 410#endif
5ead97c8
JF
411
412static void xen_write_ldt_entry(struct desc_struct *dt, int entrynum,
75b8bb3e 413 const void *ptr)
5ead97c8 414{
cef43bf6 415 xmaddr_t mach_lp = arbitrary_virt_to_machine(&dt[entrynum]);
75b8bb3e 416 u64 entry = *(u64 *)ptr;
5ead97c8 417
f120f13e
JF
418 preempt_disable();
419
5ead97c8
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420 xen_mc_flush();
421 if (HYPERVISOR_update_descriptor(mach_lp.maddr, entry))
422 BUG();
f120f13e
JF
423
424 preempt_enable();
5ead97c8
JF
425}
426
e176d367 427static int cvt_gate_to_trap(int vector, const gate_desc *val,
5ead97c8
JF
428 struct trap_info *info)
429{
e176d367 430 if (val->type != 0xf && val->type != 0xe)
5ead97c8
JF
431 return 0;
432
433 info->vector = vector;
e176d367
EH
434 info->address = gate_offset(*val);
435 info->cs = gate_segment(*val);
436 info->flags = val->dpl;
5ead97c8 437 /* interrupt gates clear IF */
e176d367 438 if (val->type == 0xe)
5ead97c8
JF
439 info->flags |= 4;
440
441 return 1;
442}
443
444/* Locations of each CPU's IDT */
6b68f01b 445static DEFINE_PER_CPU(struct desc_ptr, idt_desc);
5ead97c8
JF
446
447/* Set an IDT entry. If the entry is part of the current IDT, then
448 also update Xen. */
8d947344 449static void xen_write_idt_entry(gate_desc *dt, int entrynum, const gate_desc *g)
5ead97c8 450{
5ead97c8 451 unsigned long p = (unsigned long)&dt[entrynum];
f120f13e
JF
452 unsigned long start, end;
453
454 preempt_disable();
455
456 start = __get_cpu_var(idt_desc).address;
457 end = start + __get_cpu_var(idt_desc).size + 1;
5ead97c8
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458
459 xen_mc_flush();
460
8d947344 461 native_write_idt_entry(dt, entrynum, g);
5ead97c8
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462
463 if (p >= start && (p + 8) <= end) {
464 struct trap_info info[2];
465
466 info[1].address = 0;
467
e176d367 468 if (cvt_gate_to_trap(entrynum, g, &info[0]))
5ead97c8
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469 if (HYPERVISOR_set_trap_table(info))
470 BUG();
471 }
f120f13e
JF
472
473 preempt_enable();
5ead97c8
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474}
475
6b68f01b 476static void xen_convert_trap_info(const struct desc_ptr *desc,
f87e4cac 477 struct trap_info *traps)
5ead97c8 478{
5ead97c8
JF
479 unsigned in, out, count;
480
e176d367 481 count = (desc->size+1) / sizeof(gate_desc);
5ead97c8
JF
482 BUG_ON(count > 256);
483
5ead97c8 484 for (in = out = 0; in < count; in++) {
e176d367 485 gate_desc *entry = (gate_desc*)(desc->address) + in;
5ead97c8 486
e176d367 487 if (cvt_gate_to_trap(in, entry, &traps[out]))
5ead97c8
JF
488 out++;
489 }
490 traps[out].address = 0;
f87e4cac
JF
491}
492
493void xen_copy_trap_info(struct trap_info *traps)
494{
6b68f01b 495 const struct desc_ptr *desc = &__get_cpu_var(idt_desc);
f87e4cac
JF
496
497 xen_convert_trap_info(desc, traps);
f87e4cac
JF
498}
499
500/* Load a new IDT into Xen. In principle this can be per-CPU, so we
501 hold a spinlock to protect the static traps[] array (static because
502 it avoids allocation, and saves stack space). */
6b68f01b 503static void xen_load_idt(const struct desc_ptr *desc)
f87e4cac
JF
504{
505 static DEFINE_SPINLOCK(lock);
506 static struct trap_info traps[257];
f87e4cac
JF
507
508 spin_lock(&lock);
509
f120f13e
JF
510 __get_cpu_var(idt_desc) = *desc;
511
f87e4cac 512 xen_convert_trap_info(desc, traps);
5ead97c8
JF
513
514 xen_mc_flush();
515 if (HYPERVISOR_set_trap_table(traps))
516 BUG();
517
518 spin_unlock(&lock);
519}
520
521/* Write a GDT descriptor entry. Ignore LDT descriptors, since
522 they're handled differently. */
523static void xen_write_gdt_entry(struct desc_struct *dt, int entry,
014b15be 524 const void *desc, int type)
5ead97c8 525{
f120f13e
JF
526 preempt_disable();
527
014b15be
GOC
528 switch (type) {
529 case DESC_LDT:
530 case DESC_TSS:
5ead97c8
JF
531 /* ignore */
532 break;
533
534 default: {
9976b39b 535 xmaddr_t maddr = arbitrary_virt_to_machine(&dt[entry]);
5ead97c8
JF
536
537 xen_mc_flush();
014b15be 538 if (HYPERVISOR_update_descriptor(maddr.maddr, *(u64 *)desc))
5ead97c8
JF
539 BUG();
540 }
541
542 }
f120f13e
JF
543
544 preempt_enable();
5ead97c8
JF
545}
546
faca6227 547static void xen_load_sp0(struct tss_struct *tss,
a05d2eba 548 struct thread_struct *thread)
5ead97c8
JF
549{
550 struct multicall_space mcs = xen_mc_entry(0);
faca6227 551 MULTI_stack_switch(mcs.mc, __KERNEL_DS, thread->sp0);
5ead97c8
JF
552 xen_mc_issue(PARAVIRT_LAZY_CPU);
553}
554
555static void xen_set_iopl_mask(unsigned mask)
556{
557 struct physdev_set_iopl set_iopl;
558
559 /* Force the change at ring 0. */
560 set_iopl.iopl = (mask == 0) ? 1 : (mask >> 12) & 3;
561 HYPERVISOR_physdev_op(PHYSDEVOP_set_iopl, &set_iopl);
562}
563
564static void xen_io_delay(void)
565{
566}
567
568#ifdef CONFIG_X86_LOCAL_APIC
ad66dd34 569static u32 xen_apic_read(u32 reg)
5ead97c8
JF
570{
571 return 0;
572}
f87e4cac 573
ad66dd34 574static void xen_apic_write(u32 reg, u32 val)
f87e4cac
JF
575{
576 /* Warn to see if there's any stray references */
577 WARN_ON(1);
578}
ad66dd34 579
ad66dd34
SS
580static u64 xen_apic_icr_read(void)
581{
582 return 0;
583}
584
585static void xen_apic_icr_write(u32 low, u32 id)
586{
587 /* Warn to see if there's any stray references */
588 WARN_ON(1);
589}
590
591static void xen_apic_wait_icr_idle(void)
592{
593 return;
594}
595
94a8c3c2
YL
596static u32 xen_safe_apic_wait_icr_idle(void)
597{
598 return 0;
599}
600
c1eeb2de
YL
601static void set_xen_basic_apic_ops(void)
602{
603 apic->read = xen_apic_read;
604 apic->write = xen_apic_write;
605 apic->icr_read = xen_apic_icr_read;
606 apic->icr_write = xen_apic_icr_write;
607 apic->wait_icr_idle = xen_apic_wait_icr_idle;
608 apic->safe_wait_icr_idle = xen_safe_apic_wait_icr_idle;
609}
ad66dd34 610
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611#endif
612
f87e4cac 613
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JF
614static void xen_clts(void)
615{
616 struct multicall_space mcs;
617
618 mcs = xen_mc_entry(0);
619
620 MULTI_fpu_taskswitch(mcs.mc, 0);
621
622 xen_mc_issue(PARAVIRT_LAZY_CPU);
623}
624
625static void xen_write_cr0(unsigned long cr0)
626{
627 struct multicall_space mcs;
628
629 /* Only pay attention to cr0.TS; everything else is
630 ignored. */
631 mcs = xen_mc_entry(0);
632
633 MULTI_fpu_taskswitch(mcs.mc, (cr0 & X86_CR0_TS) != 0);
634
635 xen_mc_issue(PARAVIRT_LAZY_CPU);
636}
637
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638static void xen_write_cr4(unsigned long cr4)
639{
2956a351
JF
640 cr4 &= ~X86_CR4_PGE;
641 cr4 &= ~X86_CR4_PSE;
642
643 native_write_cr4(cr4);
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JF
644}
645
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646static int xen_write_msr_safe(unsigned int msr, unsigned low, unsigned high)
647{
648 int ret;
649
650 ret = 0;
651
f63c2f24 652 switch (msr) {
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653#ifdef CONFIG_X86_64
654 unsigned which;
655 u64 base;
656
657 case MSR_FS_BASE: which = SEGBASE_FS; goto set;
658 case MSR_KERNEL_GS_BASE: which = SEGBASE_GS_USER; goto set;
659 case MSR_GS_BASE: which = SEGBASE_GS_KERNEL; goto set;
660
661 set:
662 base = ((u64)high << 32) | low;
663 if (HYPERVISOR_set_segment_base(which, base) != 0)
664 ret = -EFAULT;
665 break;
666#endif
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JF
667
668 case MSR_STAR:
669 case MSR_CSTAR:
670 case MSR_LSTAR:
671 case MSR_SYSCALL_MASK:
672 case MSR_IA32_SYSENTER_CS:
673 case MSR_IA32_SYSENTER_ESP:
674 case MSR_IA32_SYSENTER_EIP:
675 /* Fast syscall setup is all done in hypercalls, so
676 these are all ignored. Stub them out here to stop
677 Xen console noise. */
678 break;
679
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680 default:
681 ret = native_write_msr_safe(msr, low, high);
682 }
683
684 return ret;
685}
686
0e91398f 687void xen_setup_shared_info(void)
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688{
689 if (!xen_feature(XENFEAT_auto_translated_physmap)) {
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JF
690 set_fixmap(FIX_PARAVIRT_BOOTMAP,
691 xen_start_info->shared_info);
692
693 HYPERVISOR_shared_info =
694 (struct shared_info *)fix_to_virt(FIX_PARAVIRT_BOOTMAP);
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695 } else
696 HYPERVISOR_shared_info =
697 (struct shared_info *)__va(xen_start_info->shared_info);
698
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699#ifndef CONFIG_SMP
700 /* In UP this is as good a place as any to set up shared info */
701 xen_setup_vcpu_info_placement();
702#endif
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703
704 xen_setup_mfn_list_list();
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705}
706
60223a32 707/* This is called once we have the cpu_possible_map */
0e91398f 708void xen_setup_vcpu_info_placement(void)
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709{
710 int cpu;
711
712 for_each_possible_cpu(cpu)
713 xen_vcpu_setup(cpu);
714
715 /* xen_vcpu_setup managed to place the vcpu_info within the
716 percpu area for all cpus, so make use of it */
717 if (have_vcpu_info_placement) {
718 printk(KERN_INFO "Xen: using vcpu_info placement\n");
719
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JF
720 pv_irq_ops.save_fl = __PV_IS_CALLEE_SAVE(xen_save_fl_direct);
721 pv_irq_ops.restore_fl = __PV_IS_CALLEE_SAVE(xen_restore_fl_direct);
722 pv_irq_ops.irq_disable = __PV_IS_CALLEE_SAVE(xen_irq_disable_direct);
723 pv_irq_ops.irq_enable = __PV_IS_CALLEE_SAVE(xen_irq_enable_direct);
93b1eab3 724 pv_mmu_ops.read_cr2 = xen_read_cr2_direct;
60223a32 725 }
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726}
727
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AK
728static unsigned xen_patch(u8 type, u16 clobbers, void *insnbuf,
729 unsigned long addr, unsigned len)
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JF
730{
731 char *start, *end, *reloc;
732 unsigned ret;
733
734 start = end = reloc = NULL;
735
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736#define SITE(op, x) \
737 case PARAVIRT_PATCH(op.x): \
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JF
738 if (have_vcpu_info_placement) { \
739 start = (char *)xen_##x##_direct; \
740 end = xen_##x##_direct_end; \
741 reloc = xen_##x##_direct_reloc; \
742 } \
743 goto patch_site
744
745 switch (type) {
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746 SITE(pv_irq_ops, irq_enable);
747 SITE(pv_irq_ops, irq_disable);
748 SITE(pv_irq_ops, save_fl);
749 SITE(pv_irq_ops, restore_fl);
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750#undef SITE
751
752 patch_site:
753 if (start == NULL || (end-start) > len)
754 goto default_patch;
755
ab144f5e 756 ret = paravirt_patch_insns(insnbuf, len, start, end);
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757
758 /* Note: because reloc is assigned from something that
759 appears to be an array, gcc assumes it's non-null,
760 but doesn't know its relationship with start and
761 end. */
762 if (reloc > start && reloc < end) {
763 int reloc_off = reloc - start;
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AK
764 long *relocp = (long *)(insnbuf + reloc_off);
765 long delta = start - (char *)addr;
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766
767 *relocp += delta;
768 }
769 break;
770
771 default_patch:
772 default:
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AK
773 ret = paravirt_patch_default(type, clobbers, insnbuf,
774 addr, len);
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775 break;
776 }
777
778 return ret;
779}
780
93b1eab3 781static const struct pv_info xen_info __initdata = {
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782 .paravirt_enabled = 1,
783 .shared_kernel_pmd = 0,
784
785 .name = "Xen",
93b1eab3 786};
5ead97c8 787
93b1eab3 788static const struct pv_init_ops xen_init_ops __initdata = {
6487673b 789 .patch = xen_patch,
5ead97c8 790
93b1eab3 791 .banner = xen_banner,
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792 .memory_setup = xen_memory_setup,
793 .arch_setup = xen_arch_setup,
e2426cf8 794 .post_allocator_init = xen_post_allocator_init,
93b1eab3 795};
5ead97c8 796
93b1eab3 797static const struct pv_time_ops xen_time_ops __initdata = {
15c84731 798 .time_init = xen_time_init,
93b1eab3 799
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JF
800 .set_wallclock = xen_set_wallclock,
801 .get_wallclock = xen_get_wallclock,
e93ef949 802 .get_tsc_khz = xen_tsc_khz,
ab550288 803 .sched_clock = xen_sched_clock,
93b1eab3 804};
15c84731 805
93b1eab3 806static const struct pv_cpu_ops xen_cpu_ops __initdata = {
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JF
807 .cpuid = xen_cpuid,
808
809 .set_debugreg = xen_set_debugreg,
810 .get_debugreg = xen_get_debugreg,
811
7b1333aa 812 .clts = xen_clts,
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813
814 .read_cr0 = native_read_cr0,
7b1333aa 815 .write_cr0 = xen_write_cr0,
5ead97c8 816
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817 .read_cr4 = native_read_cr4,
818 .read_cr4_safe = native_read_cr4_safe,
819 .write_cr4 = xen_write_cr4,
820
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821 .wbinvd = native_wbinvd,
822
823 .read_msr = native_read_msr_safe,
1153968a 824 .write_msr = xen_write_msr_safe,
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825 .read_tsc = native_read_tsc,
826 .read_pmc = native_read_pmc,
827
81e103f1 828 .iret = xen_iret,
d75cd22f 829 .irq_enable_sysexit = xen_sysexit,
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JF
830#ifdef CONFIG_X86_64
831 .usergs_sysret32 = xen_sysret32,
832 .usergs_sysret64 = xen_sysret64,
833#endif
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834
835 .load_tr_desc = paravirt_nop,
836 .set_ldt = xen_set_ldt,
837 .load_gdt = xen_load_gdt,
838 .load_idt = xen_load_idt,
839 .load_tls = xen_load_tls,
a8fc1089
EH
840#ifdef CONFIG_X86_64
841 .load_gs_index = xen_load_gs_index,
842#endif
5ead97c8 843
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JF
844 .alloc_ldt = xen_alloc_ldt,
845 .free_ldt = xen_free_ldt,
846
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847 .store_gdt = native_store_gdt,
848 .store_idt = native_store_idt,
849 .store_tr = xen_store_tr,
850
851 .write_ldt_entry = xen_write_ldt_entry,
852 .write_gdt_entry = xen_write_gdt_entry,
853 .write_idt_entry = xen_write_idt_entry,
faca6227 854 .load_sp0 = xen_load_sp0,
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JF
855
856 .set_iopl_mask = xen_set_iopl_mask,
857 .io_delay = xen_io_delay,
858
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JF
859 /* Xen takes care of %gs when switching to usermode for us */
860 .swapgs = paravirt_nop,
861
224101ed
JF
862 .start_context_switch = paravirt_start_context_switch,
863 .end_context_switch = xen_end_context_switch,
93b1eab3
JF
864};
865
93b1eab3 866static const struct pv_apic_ops xen_apic_ops __initdata = {
5ead97c8 867#ifdef CONFIG_X86_LOCAL_APIC
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868 .setup_boot_clock = paravirt_nop,
869 .setup_secondary_clock = paravirt_nop,
870 .startup_ipi_hook = paravirt_nop,
871#endif
93b1eab3
JF
872};
873
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874static void xen_reboot(int reason)
875{
349c709f
JF
876 struct sched_shutdown r = { .reason = reason };
877
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878#ifdef CONFIG_SMP
879 smp_send_stop();
880#endif
881
349c709f 882 if (HYPERVISOR_sched_op(SCHEDOP_shutdown, &r))
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JF
883 BUG();
884}
885
886static void xen_restart(char *msg)
887{
888 xen_reboot(SHUTDOWN_reboot);
889}
890
891static void xen_emergency_restart(void)
892{
893 xen_reboot(SHUTDOWN_reboot);
894}
895
896static void xen_machine_halt(void)
897{
898 xen_reboot(SHUTDOWN_poweroff);
899}
900
901static void xen_crash_shutdown(struct pt_regs *regs)
902{
903 xen_reboot(SHUTDOWN_crash);
904}
905
906static const struct machine_ops __initdata xen_machine_ops = {
907 .restart = xen_restart,
908 .halt = xen_machine_halt,
909 .power_off = xen_machine_halt,
910 .shutdown = xen_machine_halt,
911 .crash_shutdown = xen_crash_shutdown,
912 .emergency_restart = xen_emergency_restart,
913};
914
6487673b 915
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916/* First C function to be called on Xen boot */
917asmlinkage void __init xen_start_kernel(void)
918{
919 pgd_t *pgd;
920
921 if (!xen_start_info)
922 return;
923
6e833587
JF
924 xen_domain_type = XEN_PV_DOMAIN;
925
7999f4b4 926 BUG_ON(memcmp(xen_start_info->magic, "xen-3", 5) != 0);
5ead97c8 927
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928 xen_setup_features();
929
5ead97c8 930 /* Install Xen paravirt ops */
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JF
931 pv_info = xen_info;
932 pv_init_ops = xen_init_ops;
933 pv_time_ops = xen_time_ops;
934 pv_cpu_ops = xen_cpu_ops;
93b1eab3
JF
935 pv_apic_ops = xen_apic_ops;
936 pv_mmu_ops = xen_mmu_ops;
93b1eab3 937
0d1edf46
JF
938 xen_init_irq_ops();
939
e826fe1b
JF
940 xen_init_cpuid_mask();
941
94a8c3c2 942#ifdef CONFIG_X86_LOCAL_APIC
ad66dd34 943 /*
94a8c3c2 944 * set up the basic apic ops.
ad66dd34 945 */
c1eeb2de 946 set_xen_basic_apic_ops();
ad66dd34 947#endif
93b1eab3 948
e57778a1
JF
949 if (xen_feature(XENFEAT_mmu_pt_update_preserve_ad)) {
950 pv_mmu_ops.ptep_modify_prot_start = xen_ptep_modify_prot_start;
951 pv_mmu_ops.ptep_modify_prot_commit = xen_ptep_modify_prot_commit;
952 }
953
fefa629a
JF
954 machine_ops = xen_machine_ops;
955
38341432
JF
956#ifdef CONFIG_X86_64
957 /*
958 * Setup percpu state. We only need to do this for 64-bit
959 * because 32-bit already has %fs set properly.
960 */
795f99b6 961 load_percpu_segment(0);
38341432
JF
962#endif
963 /*
964 * The only reliable way to retain the initial address of the
965 * percpu gdt_page is to remember it here, so we can go and
966 * mark it RW later, when the initial percpu area is freed.
967 */
968 xen_initial_gdt = &per_cpu(gdt_page, 0);
795f99b6 969
a9e7062d 970 xen_smp_init();
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JF
971
972 /* Get mfn list */
973 if (!xen_feature(XENFEAT_auto_translated_physmap))
d451bb7a 974 xen_build_dynamic_phys_to_machine();
5ead97c8
JF
975
976 pgd = (pgd_t *)xen_start_info->pt_base;
977
084a2a4e
JF
978 /* Prevent unwanted bits from being set in PTEs. */
979 __supported_pte_mask &= ~_PAGE_GLOBAL;
6e833587 980 if (!xen_initial_domain())
084a2a4e 981 __supported_pte_mask &= ~(_PAGE_PWT | _PAGE_PCD);
60223a32 982
60223a32 983 /* Don't do the full vcpu_info placement stuff until we have a
2e8fe719 984 possible map and a non-dummy shared_info. */
60223a32 985 per_cpu(xen_vcpu, 0) = &HYPERVISOR_shared_info->vcpu_info[0];
5ead97c8 986
55d80856
JF
987 local_irq_disable();
988 early_boot_irqs_off();
989
084a2a4e 990 xen_raw_console_write("mapping kernel into physical memory\n");
d114e198 991 pgd = xen_setup_kernel_pagetable(pgd, xen_start_info->nr_pages);
5ead97c8 992
084a2a4e 993 init_mm.pgd = pgd;
5ead97c8
JF
994
995 /* keep using Xen gdt for now; no urgent need to change it */
996
93b1eab3 997 pv_info.kernel_rpl = 1;
5ead97c8 998 if (xen_feature(XENFEAT_supervisor_mode_kernel))
93b1eab3 999 pv_info.kernel_rpl = 0;
5ead97c8
JF
1000
1001 /* set the limit of our address space */
fb1d8404 1002 xen_reserve_top();
5ead97c8 1003
7d087b68 1004#ifdef CONFIG_X86_32
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JF
1005 /* set up basic CPUID stuff */
1006 cpu_detect(&new_cpu_data);
1007 new_cpu_data.hard_math = 1;
1008 new_cpu_data.x86_capability[0] = cpuid_edx(1);
7d087b68 1009#endif
5ead97c8
JF
1010
1011 /* Poke various useful things into boot_params */
30c82645
PA
1012 boot_params.hdr.type_of_loader = (9 << 4) | 0;
1013 boot_params.hdr.ramdisk_image = xen_start_info->mod_start
1014 ? __pa(xen_start_info->mod_start) : 0;
1015 boot_params.hdr.ramdisk_size = xen_start_info->mod_len;
b7c3c5c1 1016 boot_params.hdr.cmd_line_ptr = __pa(xen_start_info->cmd_line);
5ead97c8 1017
6e833587 1018 if (!xen_initial_domain()) {
83abc70a 1019 add_preferred_console("xenboot", 0, NULL);
9e124fe1 1020 add_preferred_console("tty", 0, NULL);
b8c2d3df 1021 add_preferred_console("hvc", 0, NULL);
9e124fe1 1022 }
b8c2d3df 1023
084a2a4e
JF
1024 xen_raw_console_write("about to get started...\n");
1025
5ead97c8 1026 /* Start the world */
f5d36de0 1027#ifdef CONFIG_X86_32
f0d43100 1028 i386_start_kernel();
f5d36de0 1029#else
084a2a4e 1030 x86_64_start_reservations((char *)__pa_symbol(&boot_params));
f5d36de0 1031#endif
5ead97c8 1032}