blob: 105a57d73701b986bab193fc76f62019762d918f [file] [log] [blame]
Greg Kroah-Hartmanb2441312017-11-01 15:07:57 +01001// SPDX-License-Identifier: GPL-2.0
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01002/*
3 * Core of Xen paravirt_ops implementation.
4 *
5 * This file contains the xen_paravirt_ops structure itself, and the
6 * implementations for:
7 * - privileged instructions
8 * - interrupt flags
9 * - segment operations
10 * - booting and setup
11 *
12 * Jeremy Fitzhardinge <jeremy@xensource.com>, XenSource Inc, 2007
13 */
14
15#include <linux/cpu.h>
16#include <linux/kernel.h>
17#include <linux/init.h>
18#include <linux/smp.h>
19#include <linux/preempt.h>
20#include <linux/hardirq.h>
21#include <linux/percpu.h>
22#include <linux/delay.h>
23#include <linux/start_kernel.h>
24#include <linux/sched.h>
25#include <linux/kprobes.h>
26#include <linux/bootmem.h>
27#include <linux/export.h>
28#include <linux/mm.h>
29#include <linux/page-flags.h>
30#include <linux/highmem.h>
31#include <linux/console.h>
32#include <linux/pci.h>
33#include <linux/gfp.h>
34#include <linux/memblock.h>
35#include <linux/edd.h>
36#include <linux/frame.h>
37
38#include <xen/xen.h>
39#include <xen/events.h>
40#include <xen/interface/xen.h>
41#include <xen/interface/version.h>
42#include <xen/interface/physdev.h>
43#include <xen/interface/vcpu.h>
44#include <xen/interface/memory.h>
45#include <xen/interface/nmi.h>
46#include <xen/interface/xen-mca.h>
47#include <xen/features.h>
48#include <xen/page.h>
49#include <xen/hvc-console.h>
50#include <xen/acpi.h>
51
52#include <asm/paravirt.h>
53#include <asm/apic.h>
54#include <asm/page.h>
55#include <asm/xen/pci.h>
56#include <asm/xen/hypercall.h>
57#include <asm/xen/hypervisor.h>
58#include <asm/xen/cpuid.h>
59#include <asm/fixmap.h>
60#include <asm/processor.h>
61#include <asm/proto.h>
62#include <asm/msr-index.h>
63#include <asm/traps.h>
64#include <asm/setup.h>
65#include <asm/desc.h>
66#include <asm/pgalloc.h>
67#include <asm/pgtable.h>
68#include <asm/tlbflush.h>
69#include <asm/reboot.h>
70#include <asm/stackprotector.h>
71#include <asm/hypervisor.h>
72#include <asm/mach_traps.h>
73#include <asm/mwait.h>
74#include <asm/pci_x86.h>
75#include <asm/cpu.h>
76
77#ifdef CONFIG_ACPI
78#include <linux/acpi.h>
79#include <asm/acpi.h>
80#include <acpi/pdc_intel.h>
81#include <acpi/processor.h>
82#include <xen/interface/platform.h>
83#endif
84
85#include "xen-ops.h"
86#include "mmu.h"
87#include "smp.h"
88#include "multicalls.h"
89#include "pmu.h"
90
Jan Beulich2cc42ba2017-12-18 09:37:45 -070091#include "../kernel/cpu/cpu.h" /* get_cpu_cap() */
92
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +010093void *xen_initial_gdt;
94
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +010095static int xen_cpu_up_prepare_pv(unsigned int cpu);
96static int xen_cpu_dead_pv(unsigned int cpu);
97
98struct tls_descs {
99 struct desc_struct desc[3];
100};
101
102/*
103 * Updating the 3 TLS descriptors in the GDT on every task switch is
104 * surprisingly expensive so we avoid updating them if they haven't
105 * changed. Since Xen writes different descriptors than the one
106 * passed in the update_descriptor hypercall we keep shadow copies to
107 * compare against.
108 */
109static DEFINE_PER_CPU(struct tls_descs, shadow_tls_desc);
110
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100111static void __init xen_banner(void)
112{
113 unsigned version = HYPERVISOR_xen_version(XENVER_version, NULL);
114 struct xen_extraversion extra;
115 HYPERVISOR_xen_version(XENVER_extraversion, &extra);
116
Juergen Gross989513a2017-05-16 09:41:06 +0200117 pr_info("Booting paravirtualized kernel on %s\n", pv_info.name);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100118 printk(KERN_INFO "Xen version: %d.%d%s%s\n",
119 version >> 16, version & 0xffff, extra.extraversion,
120 xen_feature(XENFEAT_mmu_pt_update_preserve_ad) ? " (preserve-AD)" : "");
121}
Pavel Tatashin7b25b9c2018-07-19 16:55:31 -0400122
123static void __init xen_pv_init_platform(void)
124{
125 set_fixmap(FIX_PARAVIRT_BOOTMAP, xen_start_info->shared_info);
126 HYPERVISOR_shared_info = (void *)fix_to_virt(FIX_PARAVIRT_BOOTMAP);
127
128 /* xen clock uses per-cpu vcpu_info, need to init it for boot cpu */
129 xen_vcpu_info_reset(0);
130
131 /* pvclock is in shared info area */
132 xen_init_time_ops();
133}
134
135static void __init xen_pv_guest_late_init(void)
136{
137#ifndef CONFIG_SMP
138 /* Setup shared vcpu info for non-smp configurations */
139 xen_setup_vcpu_info_placement();
140#endif
141}
142
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100143/* Check if running on Xen version (major, minor) or later */
144bool
145xen_running_on_version_or_later(unsigned int major, unsigned int minor)
146{
147 unsigned int version;
148
149 if (!xen_domain())
150 return false;
151
152 version = HYPERVISOR_xen_version(XENVER_version, NULL);
153 if ((((version >> 16) == major) && ((version & 0xffff) >= minor)) ||
154 ((version >> 16) > major))
155 return true;
156 return false;
157}
158
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100159static __read_mostly unsigned int cpuid_leaf5_ecx_val;
160static __read_mostly unsigned int cpuid_leaf5_edx_val;
161
162static void xen_cpuid(unsigned int *ax, unsigned int *bx,
163 unsigned int *cx, unsigned int *dx)
164{
165 unsigned maskebx = ~0;
Juergen Gross6807cf62017-04-12 15:12:09 +0200166
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100167 /*
168 * Mask out inconvenient features, to try and disable as many
169 * unsupported kernel subsystems as possible.
170 */
171 switch (*ax) {
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100172 case CPUID_MWAIT_LEAF:
173 /* Synthesize the values.. */
174 *ax = 0;
175 *bx = 0;
176 *cx = cpuid_leaf5_ecx_val;
177 *dx = cpuid_leaf5_edx_val;
178 return;
179
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100180 case 0xb:
181 /* Suppress extended topology stuff */
182 maskebx = 0;
183 break;
184 }
185
186 asm(XEN_EMULATE_PREFIX "cpuid"
187 : "=a" (*ax),
188 "=b" (*bx),
189 "=c" (*cx),
190 "=d" (*dx)
191 : "0" (*ax), "2" (*cx));
192
193 *bx &= maskebx;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100194}
195STACK_FRAME_NON_STANDARD(xen_cpuid); /* XEN_EMULATE_PREFIX */
196
197static bool __init xen_check_mwait(void)
198{
199#ifdef CONFIG_ACPI
200 struct xen_platform_op op = {
201 .cmd = XENPF_set_processor_pminfo,
202 .u.set_pminfo.id = -1,
203 .u.set_pminfo.type = XEN_PM_PDC,
204 };
205 uint32_t buf[3];
206 unsigned int ax, bx, cx, dx;
207 unsigned int mwait_mask;
208
209 /* We need to determine whether it is OK to expose the MWAIT
210 * capability to the kernel to harvest deeper than C3 states from ACPI
211 * _CST using the processor_harvest_xen.c module. For this to work, we
212 * need to gather the MWAIT_LEAF values (which the cstate.c code
213 * checks against). The hypervisor won't expose the MWAIT flag because
214 * it would break backwards compatibility; so we will find out directly
215 * from the hardware and hypercall.
216 */
217 if (!xen_initial_domain())
218 return false;
219
220 /*
221 * When running under platform earlier than Xen4.2, do not expose
222 * mwait, to avoid the risk of loading native acpi pad driver
223 */
224 if (!xen_running_on_version_or_later(4, 2))
225 return false;
226
227 ax = 1;
228 cx = 0;
229
230 native_cpuid(&ax, &bx, &cx, &dx);
231
232 mwait_mask = (1 << (X86_FEATURE_EST % 32)) |
233 (1 << (X86_FEATURE_MWAIT % 32));
234
235 if ((cx & mwait_mask) != mwait_mask)
236 return false;
237
238 /* We need to emulate the MWAIT_LEAF and for that we need both
239 * ecx and edx. The hypercall provides only partial information.
240 */
241
242 ax = CPUID_MWAIT_LEAF;
243 bx = 0;
244 cx = 0;
245 dx = 0;
246
247 native_cpuid(&ax, &bx, &cx, &dx);
248
249 /* Ask the Hypervisor whether to clear ACPI_PDC_C_C2C3_FFH. If so,
250 * don't expose MWAIT_LEAF and let ACPI pick the IOPORT version of C3.
251 */
252 buf[0] = ACPI_PDC_REVISION_ID;
253 buf[1] = 1;
254 buf[2] = (ACPI_PDC_C_CAPABILITY_SMP | ACPI_PDC_EST_CAPABILITY_SWSMP);
255
256 set_xen_guest_handle(op.u.set_pminfo.pdc, buf);
257
258 if ((HYPERVISOR_platform_op(&op) == 0) &&
259 (buf[2] & (ACPI_PDC_C_C1_FFH | ACPI_PDC_C_C2C3_FFH))) {
260 cpuid_leaf5_ecx_val = cx;
261 cpuid_leaf5_edx_val = dx;
262 }
263 return true;
264#else
265 return false;
266#endif
267}
Juergen Gross6807cf62017-04-12 15:12:09 +0200268
269static bool __init xen_check_xsave(void)
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100270{
Juergen Gross40f4ac02017-04-25 08:47:40 +0200271 unsigned int cx, xsave_mask;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100272
Juergen Gross40f4ac02017-04-25 08:47:40 +0200273 cx = cpuid_ecx(1);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100274
Juergen Gross40f4ac02017-04-25 08:47:40 +0200275 xsave_mask = (1 << (X86_FEATURE_XSAVE % 32)) |
276 (1 << (X86_FEATURE_OSXSAVE % 32));
277
278 /* Xen will set CR4.OSXSAVE if supported and not disabled by force */
279 return (cx & xsave_mask) == xsave_mask;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100280}
281
Juergen Gross0808e802017-04-13 08:55:41 +0200282static void __init xen_init_capabilities(void)
283{
Juergen Gross0808e802017-04-13 08:55:41 +0200284 setup_force_cpu_cap(X86_FEATURE_XENPV);
Juergen Gross3ee99df2017-04-12 08:20:29 +0200285 setup_clear_cpu_cap(X86_FEATURE_DCA);
Juergen Grossfd9145f2017-04-12 08:27:07 +0200286 setup_clear_cpu_cap(X86_FEATURE_APERFMPERF);
Juergen Gross88f32562017-04-12 09:21:05 +0200287 setup_clear_cpu_cap(X86_FEATURE_MTRR);
Juergen Grossaa107152017-04-12 09:24:01 +0200288 setup_clear_cpu_cap(X86_FEATURE_ACC);
Juergen Grosse657fcc2017-04-12 12:45:57 +0200289 setup_clear_cpu_cap(X86_FEATURE_X2APIC);
Tom Lendackyf2f931c2017-07-17 16:10:29 -0500290 setup_clear_cpu_cap(X86_FEATURE_SME);
Juergen Grossb778d6b2017-04-12 09:27:47 +0200291
Andy Lutomirski660da7c2017-06-29 08:53:21 -0700292 /*
293 * Xen PV would need some work to support PCID: CR3 handling as well
294 * as xen_flush_tlb_others() would need updating.
295 */
296 setup_clear_cpu_cap(X86_FEATURE_PCID);
Juergen Grossb778d6b2017-04-12 09:27:47 +0200297
298 if (!xen_initial_domain())
299 setup_clear_cpu_cap(X86_FEATURE_ACPI);
Juergen Grossea015982017-04-12 12:37:00 +0200300
301 if (xen_check_mwait())
302 setup_force_cpu_cap(X86_FEATURE_MWAIT);
303 else
304 setup_clear_cpu_cap(X86_FEATURE_MWAIT);
Juergen Gross6807cf62017-04-12 15:12:09 +0200305
Juergen Gross40f4ac02017-04-25 08:47:40 +0200306 if (!xen_check_xsave()) {
Juergen Gross6807cf62017-04-12 15:12:09 +0200307 setup_clear_cpu_cap(X86_FEATURE_XSAVE);
308 setup_clear_cpu_cap(X86_FEATURE_OSXSAVE);
309 }
Juergen Gross0808e802017-04-13 08:55:41 +0200310}
311
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100312static void xen_set_debugreg(int reg, unsigned long val)
313{
314 HYPERVISOR_set_debugreg(reg, val);
315}
316
317static unsigned long xen_get_debugreg(int reg)
318{
319 return HYPERVISOR_get_debugreg(reg);
320}
321
322static void xen_end_context_switch(struct task_struct *next)
323{
324 xen_mc_flush();
325 paravirt_end_context_switch(next);
326}
327
328static unsigned long xen_store_tr(void)
329{
330 return 0;
331}
332
333/*
334 * Set the page permissions for a particular virtual address. If the
335 * address is a vmalloc mapping (or other non-linear mapping), then
336 * find the linear mapping of the page and also set its protections to
337 * match.
338 */
339static void set_aliased_prot(void *v, pgprot_t prot)
340{
341 int level;
342 pte_t *ptep;
343 pte_t pte;
344 unsigned long pfn;
345 struct page *page;
346 unsigned char dummy;
347
348 ptep = lookup_address((unsigned long)v, &level);
349 BUG_ON(ptep == NULL);
350
351 pfn = pte_pfn(*ptep);
352 page = pfn_to_page(pfn);
353
354 pte = pfn_pte(pfn, prot);
355
356 /*
357 * Careful: update_va_mapping() will fail if the virtual address
358 * we're poking isn't populated in the page tables. We don't
359 * need to worry about the direct map (that's always in the page
360 * tables), but we need to be careful about vmap space. In
361 * particular, the top level page table can lazily propagate
362 * entries between processes, so if we've switched mms since we
363 * vmapped the target in the first place, we might not have the
364 * top-level page table entry populated.
365 *
366 * We disable preemption because we want the same mm active when
367 * we probe the target and when we issue the hypercall. We'll
368 * have the same nominal mm, but if we're a kernel thread, lazy
369 * mm dropping could change our pgd.
370 *
371 * Out of an abundance of caution, this uses __get_user() to fault
372 * in the target address just in case there's some obscure case
373 * in which the target address isn't readable.
374 */
375
376 preempt_disable();
377
378 probe_kernel_read(&dummy, v, 1);
379
380 if (HYPERVISOR_update_va_mapping((unsigned long)v, pte, 0))
381 BUG();
382
383 if (!PageHighMem(page)) {
384 void *av = __va(PFN_PHYS(pfn));
385
386 if (av != v)
387 if (HYPERVISOR_update_va_mapping((unsigned long)av, pte, 0))
388 BUG();
389 } else
390 kmap_flush_unused();
391
392 preempt_enable();
393}
394
395static void xen_alloc_ldt(struct desc_struct *ldt, unsigned entries)
396{
397 const unsigned entries_per_page = PAGE_SIZE / LDT_ENTRY_SIZE;
398 int i;
399
400 /*
401 * We need to mark the all aliases of the LDT pages RO. We
402 * don't need to call vm_flush_aliases(), though, since that's
403 * only responsible for flushing aliases out the TLBs, not the
404 * page tables, and Xen will flush the TLB for us if needed.
405 *
406 * To avoid confusing future readers: none of this is necessary
407 * to load the LDT. The hypervisor only checks this when the
408 * LDT is faulted in due to subsequent descriptor access.
409 */
410
411 for (i = 0; i < entries; i += entries_per_page)
412 set_aliased_prot(ldt + i, PAGE_KERNEL_RO);
413}
414
415static void xen_free_ldt(struct desc_struct *ldt, unsigned entries)
416{
417 const unsigned entries_per_page = PAGE_SIZE / LDT_ENTRY_SIZE;
418 int i;
419
420 for (i = 0; i < entries; i += entries_per_page)
421 set_aliased_prot(ldt + i, PAGE_KERNEL);
422}
423
424static void xen_set_ldt(const void *addr, unsigned entries)
425{
426 struct mmuext_op *op;
427 struct multicall_space mcs = xen_mc_entry(sizeof(*op));
428
429 trace_xen_cpu_set_ldt(addr, entries);
430
431 op = mcs.args;
432 op->cmd = MMUEXT_SET_LDT;
433 op->arg1.linear_addr = (unsigned long)addr;
434 op->arg2.nr_ents = entries;
435
436 MULTI_mmuext_op(mcs.mc, op, 1, NULL, DOMID_SELF);
437
438 xen_mc_issue(PARAVIRT_LAZY_CPU);
439}
440
441static void xen_load_gdt(const struct desc_ptr *dtr)
442{
443 unsigned long va = dtr->address;
444 unsigned int size = dtr->size + 1;
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700445 unsigned long pfn, mfn;
446 int level;
447 pte_t *ptep;
448 void *virt;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100449
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700450 /* @size should be at most GDT_SIZE which is smaller than PAGE_SIZE. */
451 BUG_ON(size > PAGE_SIZE);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100452 BUG_ON(va & ~PAGE_MASK);
453
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700454 /*
455 * The GDT is per-cpu and is in the percpu data area.
456 * That can be virtually mapped, so we need to do a
457 * page-walk to get the underlying MFN for the
458 * hypercall. The page can also be in the kernel's
459 * linear range, so we need to RO that mapping too.
460 */
461 ptep = lookup_address(va, &level);
462 BUG_ON(ptep == NULL);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100463
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700464 pfn = pte_pfn(*ptep);
465 mfn = pfn_to_mfn(pfn);
466 virt = __va(PFN_PHYS(pfn));
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100467
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700468 make_lowmem_page_readonly((void *)va);
469 make_lowmem_page_readonly(virt);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100470
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700471 if (HYPERVISOR_set_gdt(&mfn, size / sizeof(struct desc_struct)))
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100472 BUG();
473}
474
475/*
476 * load_gdt for early boot, when the gdt is only mapped once
477 */
478static void __init xen_load_gdt_boot(const struct desc_ptr *dtr)
479{
480 unsigned long va = dtr->address;
481 unsigned int size = dtr->size + 1;
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700482 unsigned long pfn, mfn;
483 pte_t pte;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100484
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700485 /* @size should be at most GDT_SIZE which is smaller than PAGE_SIZE. */
486 BUG_ON(size > PAGE_SIZE);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100487 BUG_ON(va & ~PAGE_MASK);
488
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700489 pfn = virt_to_pfn(va);
490 mfn = pfn_to_mfn(pfn);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100491
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700492 pte = pfn_pte(pfn, PAGE_KERNEL_RO);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100493
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700494 if (HYPERVISOR_update_va_mapping((unsigned long)va, pte, 0))
495 BUG();
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100496
Laura Abbotteb0b4aa2018-04-18 10:08:32 -0700497 if (HYPERVISOR_set_gdt(&mfn, size / sizeof(struct desc_struct)))
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100498 BUG();
499}
500
501static inline bool desc_equal(const struct desc_struct *d1,
502 const struct desc_struct *d2)
503{
Thomas Gleixner9a98e772017-08-28 08:47:40 +0200504 return !memcmp(d1, d2, sizeof(*d1));
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100505}
506
507static void load_TLS_descriptor(struct thread_struct *t,
508 unsigned int cpu, unsigned int i)
509{
510 struct desc_struct *shadow = &per_cpu(shadow_tls_desc, cpu).desc[i];
511 struct desc_struct *gdt;
512 xmaddr_t maddr;
513 struct multicall_space mc;
514
515 if (desc_equal(shadow, &t->tls_array[i]))
516 return;
517
518 *shadow = t->tls_array[i];
519
520 gdt = get_cpu_gdt_rw(cpu);
521 maddr = arbitrary_virt_to_machine(&gdt[GDT_ENTRY_TLS_MIN+i]);
522 mc = __xen_mc_entry(0);
523
524 MULTI_update_descriptor(mc.mc, maddr.maddr, t->tls_array[i]);
525}
526
527static void xen_load_tls(struct thread_struct *t, unsigned int cpu)
528{
529 /*
530 * XXX sleazy hack: If we're being called in a lazy-cpu zone
531 * and lazy gs handling is enabled, it means we're in a
532 * context switch, and %gs has just been saved. This means we
533 * can zero it out to prevent faults on exit from the
534 * hypervisor if the next process has no %gs. Either way, it
535 * has been saved, and the new value will get loaded properly.
536 * This will go away as soon as Xen has been modified to not
537 * save/restore %gs for normal hypercalls.
538 *
539 * On x86_64, this hack is not used for %gs, because gs points
540 * to KERNEL_GS_BASE (and uses it for PDA references), so we
541 * must not zero %gs on x86_64
542 *
543 * For x86_64, we need to zero %fs, otherwise we may get an
544 * exception between the new %fs descriptor being loaded and
545 * %fs being effectively cleared at __switch_to().
546 */
547 if (paravirt_get_lazy_mode() == PARAVIRT_LAZY_CPU) {
548#ifdef CONFIG_X86_32
549 lazy_load_gs(0);
550#else
551 loadsegment(fs, 0);
552#endif
553 }
554
555 xen_mc_batch();
556
557 load_TLS_descriptor(t, cpu, 0);
558 load_TLS_descriptor(t, cpu, 1);
559 load_TLS_descriptor(t, cpu, 2);
560
561 xen_mc_issue(PARAVIRT_LAZY_CPU);
562}
563
564#ifdef CONFIG_X86_64
565static void xen_load_gs_index(unsigned int idx)
566{
567 if (HYPERVISOR_set_segment_base(SEGBASE_GS_USER_SEL, idx))
568 BUG();
569}
570#endif
571
572static void xen_write_ldt_entry(struct desc_struct *dt, int entrynum,
573 const void *ptr)
574{
575 xmaddr_t mach_lp = arbitrary_virt_to_machine(&dt[entrynum]);
576 u64 entry = *(u64 *)ptr;
577
578 trace_xen_cpu_write_ldt_entry(dt, entrynum, entry);
579
580 preempt_disable();
581
582 xen_mc_flush();
583 if (HYPERVISOR_update_descriptor(mach_lp.maddr, entry))
584 BUG();
585
586 preempt_enable();
587}
588
Juergen Gross5878d5d2017-08-31 19:42:49 +0200589#ifdef CONFIG_X86_64
590struct trap_array_entry {
591 void (*orig)(void);
592 void (*xen)(void);
593 bool ist_okay;
594};
595
596static struct trap_array_entry trap_array[] = {
597 { debug, xen_xendebug, true },
598 { int3, xen_xenint3, true },
599 { double_fault, xen_double_fault, true },
600#ifdef CONFIG_X86_MCE
601 { machine_check, xen_machine_check, true },
602#endif
Juergen Gross43e41112017-11-02 00:59:07 -0700603 { nmi, xen_xennmi, true },
Juergen Gross5878d5d2017-08-31 19:42:49 +0200604 { overflow, xen_overflow, false },
605#ifdef CONFIG_IA32_EMULATION
606 { entry_INT80_compat, xen_entry_INT80_compat, false },
607#endif
608 { page_fault, xen_page_fault, false },
609 { divide_error, xen_divide_error, false },
610 { bounds, xen_bounds, false },
611 { invalid_op, xen_invalid_op, false },
612 { device_not_available, xen_device_not_available, false },
613 { coprocessor_segment_overrun, xen_coprocessor_segment_overrun, false },
614 { invalid_TSS, xen_invalid_TSS, false },
615 { segment_not_present, xen_segment_not_present, false },
616 { stack_segment, xen_stack_segment, false },
617 { general_protection, xen_general_protection, false },
618 { spurious_interrupt_bug, xen_spurious_interrupt_bug, false },
619 { coprocessor_error, xen_coprocessor_error, false },
620 { alignment_check, xen_alignment_check, false },
621 { simd_coprocessor_error, xen_simd_coprocessor_error, false },
622};
623
Juergen Gross42b3a4c2017-11-24 09:42:21 +0100624static bool __ref get_trap_addr(void **addr, unsigned int ist)
Juergen Gross5878d5d2017-08-31 19:42:49 +0200625{
626 unsigned int nr;
627 bool ist_okay = false;
628
629 /*
630 * Replace trap handler addresses by Xen specific ones.
631 * Check for known traps using IST and whitelist them.
632 * The debugger ones are the only ones we care about.
633 * Xen will handle faults like double_fault, * so we should never see
634 * them. Warn if there's an unexpected IST-using fault handler.
635 */
636 for (nr = 0; nr < ARRAY_SIZE(trap_array); nr++) {
637 struct trap_array_entry *entry = trap_array + nr;
638
639 if (*addr == entry->orig) {
640 *addr = entry->xen;
641 ist_okay = entry->ist_okay;
642 break;
643 }
644 }
645
Juergen Gross42b3a4c2017-11-24 09:42:21 +0100646 if (nr == ARRAY_SIZE(trap_array) &&
647 *addr >= (void *)early_idt_handler_array[0] &&
648 *addr < (void *)early_idt_handler_array[NUM_EXCEPTION_VECTORS]) {
649 nr = (*addr - (void *)early_idt_handler_array[0]) /
650 EARLY_IDT_HANDLER_SIZE;
651 *addr = (void *)xen_early_idt_handler_array[nr];
652 }
653
Juergen Gross5878d5d2017-08-31 19:42:49 +0200654 if (WARN_ON(ist != 0 && !ist_okay))
655 return false;
656
657 return true;
658}
659#endif
660
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100661static int cvt_gate_to_trap(int vector, const gate_desc *val,
662 struct trap_info *info)
663{
664 unsigned long addr;
665
Thomas Gleixner64b163f2017-08-28 08:47:37 +0200666 if (val->bits.type != GATE_TRAP && val->bits.type != GATE_INTERRUPT)
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100667 return 0;
668
669 info->vector = vector;
670
Thomas Gleixner64b163f2017-08-28 08:47:37 +0200671 addr = gate_offset(val);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100672#ifdef CONFIG_X86_64
Juergen Gross5878d5d2017-08-31 19:42:49 +0200673 if (!get_trap_addr((void **)&addr, val->bits.ist))
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100674 return 0;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100675#endif /* CONFIG_X86_64 */
676 info->address = addr;
677
Thomas Gleixner64b163f2017-08-28 08:47:37 +0200678 info->cs = gate_segment(val);
679 info->flags = val->bits.dpl;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100680 /* interrupt gates clear IF */
Thomas Gleixner64b163f2017-08-28 08:47:37 +0200681 if (val->bits.type == GATE_INTERRUPT)
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100682 info->flags |= 1 << 2;
683
684 return 1;
685}
686
687/* Locations of each CPU's IDT */
688static DEFINE_PER_CPU(struct desc_ptr, idt_desc);
689
690/* Set an IDT entry. If the entry is part of the current IDT, then
691 also update Xen. */
692static void xen_write_idt_entry(gate_desc *dt, int entrynum, const gate_desc *g)
693{
694 unsigned long p = (unsigned long)&dt[entrynum];
695 unsigned long start, end;
696
697 trace_xen_cpu_write_idt_entry(dt, entrynum, g);
698
699 preempt_disable();
700
701 start = __this_cpu_read(idt_desc.address);
702 end = start + __this_cpu_read(idt_desc.size) + 1;
703
704 xen_mc_flush();
705
706 native_write_idt_entry(dt, entrynum, g);
707
708 if (p >= start && (p + 8) <= end) {
709 struct trap_info info[2];
710
711 info[1].address = 0;
712
713 if (cvt_gate_to_trap(entrynum, g, &info[0]))
714 if (HYPERVISOR_set_trap_table(info))
715 BUG();
716 }
717
718 preempt_enable();
719}
720
721static void xen_convert_trap_info(const struct desc_ptr *desc,
722 struct trap_info *traps)
723{
724 unsigned in, out, count;
725
726 count = (desc->size+1) / sizeof(gate_desc);
727 BUG_ON(count > 256);
728
729 for (in = out = 0; in < count; in++) {
730 gate_desc *entry = (gate_desc *)(desc->address) + in;
731
732 if (cvt_gate_to_trap(in, entry, &traps[out]))
733 out++;
734 }
735 traps[out].address = 0;
736}
737
738void xen_copy_trap_info(struct trap_info *traps)
739{
740 const struct desc_ptr *desc = this_cpu_ptr(&idt_desc);
741
742 xen_convert_trap_info(desc, traps);
743}
744
745/* Load a new IDT into Xen. In principle this can be per-CPU, so we
746 hold a spinlock to protect the static traps[] array (static because
747 it avoids allocation, and saves stack space). */
748static void xen_load_idt(const struct desc_ptr *desc)
749{
750 static DEFINE_SPINLOCK(lock);
751 static struct trap_info traps[257];
752
753 trace_xen_cpu_load_idt(desc);
754
755 spin_lock(&lock);
756
757 memcpy(this_cpu_ptr(&idt_desc), desc, sizeof(idt_desc));
758
759 xen_convert_trap_info(desc, traps);
760
761 xen_mc_flush();
762 if (HYPERVISOR_set_trap_table(traps))
763 BUG();
764
765 spin_unlock(&lock);
766}
767
768/* Write a GDT descriptor entry. Ignore LDT descriptors, since
769 they're handled differently. */
770static void xen_write_gdt_entry(struct desc_struct *dt, int entry,
771 const void *desc, int type)
772{
773 trace_xen_cpu_write_gdt_entry(dt, entry, desc, type);
774
775 preempt_disable();
776
777 switch (type) {
778 case DESC_LDT:
779 case DESC_TSS:
780 /* ignore */
781 break;
782
783 default: {
784 xmaddr_t maddr = arbitrary_virt_to_machine(&dt[entry]);
785
786 xen_mc_flush();
787 if (HYPERVISOR_update_descriptor(maddr.maddr, *(u64 *)desc))
788 BUG();
789 }
790
791 }
792
793 preempt_enable();
794}
795
796/*
797 * Version of write_gdt_entry for use at early boot-time needed to
798 * update an entry as simply as possible.
799 */
800static void __init xen_write_gdt_entry_boot(struct desc_struct *dt, int entry,
801 const void *desc, int type)
802{
803 trace_xen_cpu_write_gdt_entry(dt, entry, desc, type);
804
805 switch (type) {
806 case DESC_LDT:
807 case DESC_TSS:
808 /* ignore */
809 break;
810
811 default: {
812 xmaddr_t maddr = virt_to_machine(&dt[entry]);
813
814 if (HYPERVISOR_update_descriptor(maddr.maddr, *(u64 *)desc))
815 dt[entry] = *(struct desc_struct *)desc;
816 }
817
818 }
819}
820
Andy Lutomirskida51da12017-11-02 00:59:10 -0700821static void xen_load_sp0(unsigned long sp0)
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100822{
823 struct multicall_space mcs;
824
825 mcs = xen_mc_entry(0);
Andy Lutomirskida51da12017-11-02 00:59:10 -0700826 MULTI_stack_switch(mcs.mc, __KERNEL_DS, sp0);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100827 xen_mc_issue(PARAVIRT_LAZY_CPU);
Andy Lutomirskic482fee2017-12-04 15:07:29 +0100828 this_cpu_write(cpu_tss_rw.x86_tss.sp0, sp0);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100829}
830
831void xen_set_iopl_mask(unsigned mask)
832{
833 struct physdev_set_iopl set_iopl;
834
835 /* Force the change at ring 0. */
836 set_iopl.iopl = (mask == 0) ? 1 : (mask >> 12) & 3;
837 HYPERVISOR_physdev_op(PHYSDEVOP_set_iopl, &set_iopl);
838}
839
840static void xen_io_delay(void)
841{
842}
843
844static DEFINE_PER_CPU(unsigned long, xen_cr0_value);
845
846static unsigned long xen_read_cr0(void)
847{
848 unsigned long cr0 = this_cpu_read(xen_cr0_value);
849
850 if (unlikely(cr0 == 0)) {
851 cr0 = native_read_cr0();
852 this_cpu_write(xen_cr0_value, cr0);
853 }
854
855 return cr0;
856}
857
858static void xen_write_cr0(unsigned long cr0)
859{
860 struct multicall_space mcs;
861
862 this_cpu_write(xen_cr0_value, cr0);
863
864 /* Only pay attention to cr0.TS; everything else is
865 ignored. */
866 mcs = xen_mc_entry(0);
867
868 MULTI_fpu_taskswitch(mcs.mc, (cr0 & X86_CR0_TS) != 0);
869
870 xen_mc_issue(PARAVIRT_LAZY_CPU);
871}
872
873static void xen_write_cr4(unsigned long cr4)
874{
875 cr4 &= ~(X86_CR4_PGE | X86_CR4_PSE | X86_CR4_PCE);
876
877 native_write_cr4(cr4);
878}
879#ifdef CONFIG_X86_64
880static inline unsigned long xen_read_cr8(void)
881{
882 return 0;
883}
884static inline void xen_write_cr8(unsigned long val)
885{
886 BUG_ON(val);
887}
888#endif
889
890static u64 xen_read_msr_safe(unsigned int msr, int *err)
891{
892 u64 val;
893
894 if (pmu_msr_read(msr, &val, err))
895 return val;
896
897 val = native_read_msr_safe(msr, err);
898 switch (msr) {
899 case MSR_IA32_APICBASE:
900#ifdef CONFIG_X86_X2APIC
901 if (!(cpuid_ecx(1) & (1 << (X86_FEATURE_X2APIC & 31))))
902#endif
903 val &= ~X2APIC_ENABLE;
904 break;
905 }
906 return val;
907}
908
909static int xen_write_msr_safe(unsigned int msr, unsigned low, unsigned high)
910{
911 int ret;
912
913 ret = 0;
914
915 switch (msr) {
916#ifdef CONFIG_X86_64
917 unsigned which;
918 u64 base;
919
920 case MSR_FS_BASE: which = SEGBASE_FS; goto set;
921 case MSR_KERNEL_GS_BASE: which = SEGBASE_GS_USER; goto set;
922 case MSR_GS_BASE: which = SEGBASE_GS_KERNEL; goto set;
923
924 set:
925 base = ((u64)high << 32) | low;
926 if (HYPERVISOR_set_segment_base(which, base) != 0)
927 ret = -EIO;
928 break;
929#endif
930
931 case MSR_STAR:
932 case MSR_CSTAR:
933 case MSR_LSTAR:
934 case MSR_SYSCALL_MASK:
935 case MSR_IA32_SYSENTER_CS:
936 case MSR_IA32_SYSENTER_ESP:
937 case MSR_IA32_SYSENTER_EIP:
938 /* Fast syscall setup is all done in hypercalls, so
939 these are all ignored. Stub them out here to stop
940 Xen console noise. */
941 break;
942
943 default:
944 if (!pmu_msr_write(msr, low, high, &ret))
945 ret = native_write_msr_safe(msr, low, high);
946 }
947
948 return ret;
949}
950
951static u64 xen_read_msr(unsigned int msr)
952{
953 /*
954 * This will silently swallow a #GP from RDMSR. It may be worth
955 * changing that.
956 */
957 int err;
958
959 return xen_read_msr_safe(msr, &err);
960}
961
962static void xen_write_msr(unsigned int msr, unsigned low, unsigned high)
963{
964 /*
965 * This will silently swallow a #GP from WRMSR. It may be worth
966 * changing that.
967 */
968 xen_write_msr_safe(msr, low, high);
969}
970
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100971/* This is called once we have the cpu_possible_mask */
Pavel Tatashin7b25b9c2018-07-19 16:55:31 -0400972void __init xen_setup_vcpu_info_placement(void)
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100973{
974 int cpu;
975
976 for_each_possible_cpu(cpu) {
977 /* Set up direct vCPU id mapping for PV guests. */
978 per_cpu(xen_vcpu_id, cpu) = cpu;
Ankur Arorac9b5d982017-06-02 17:06:01 -0700979
980 /*
981 * xen_vcpu_setup(cpu) can fail -- in which case it
982 * falls back to the shared_info version for cpus
983 * where xen_vcpu_nr(cpu) < MAX_VIRT_CPUS.
984 *
985 * xen_cpu_up_prepare_pv() handles the rest by failing
986 * them in hotplug.
987 */
988 (void) xen_vcpu_setup(cpu);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +0100989 }
990
991 /*
992 * xen_vcpu_setup managed to place the vcpu_info within the
993 * percpu area for all cpus, so make use of it.
994 */
995 if (xen_have_vcpu_info_placement) {
996 pv_irq_ops.save_fl = __PV_IS_CALLEE_SAVE(xen_save_fl_direct);
997 pv_irq_ops.restore_fl = __PV_IS_CALLEE_SAVE(xen_restore_fl_direct);
998 pv_irq_ops.irq_disable = __PV_IS_CALLEE_SAVE(xen_irq_disable_direct);
999 pv_irq_ops.irq_enable = __PV_IS_CALLEE_SAVE(xen_irq_enable_direct);
1000 pv_mmu_ops.read_cr2 = xen_read_cr2_direct;
1001 }
1002}
1003
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001004static const struct pv_info xen_info __initconst = {
1005 .shared_kernel_pmd = 0,
1006
1007#ifdef CONFIG_X86_64
1008 .extra_user_64bit_cs = FLAT_USER_CS64,
1009#endif
1010 .name = "Xen",
1011};
1012
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001013static const struct pv_cpu_ops xen_cpu_ops __initconst = {
1014 .cpuid = xen_cpuid,
1015
1016 .set_debugreg = xen_set_debugreg,
1017 .get_debugreg = xen_get_debugreg,
1018
1019 .read_cr0 = xen_read_cr0,
1020 .write_cr0 = xen_write_cr0,
1021
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001022 .write_cr4 = xen_write_cr4,
1023
1024#ifdef CONFIG_X86_64
1025 .read_cr8 = xen_read_cr8,
1026 .write_cr8 = xen_write_cr8,
1027#endif
1028
1029 .wbinvd = native_wbinvd,
1030
1031 .read_msr = xen_read_msr,
1032 .write_msr = xen_write_msr,
1033
1034 .read_msr_safe = xen_read_msr_safe,
1035 .write_msr_safe = xen_write_msr_safe,
1036
1037 .read_pmc = xen_read_pmc,
1038
1039 .iret = xen_iret,
1040#ifdef CONFIG_X86_64
1041 .usergs_sysret64 = xen_sysret64,
1042#endif
1043
1044 .load_tr_desc = paravirt_nop,
1045 .set_ldt = xen_set_ldt,
1046 .load_gdt = xen_load_gdt,
1047 .load_idt = xen_load_idt,
1048 .load_tls = xen_load_tls,
1049#ifdef CONFIG_X86_64
1050 .load_gs_index = xen_load_gs_index,
1051#endif
1052
1053 .alloc_ldt = xen_alloc_ldt,
1054 .free_ldt = xen_free_ldt,
1055
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001056 .store_tr = xen_store_tr,
1057
1058 .write_ldt_entry = xen_write_ldt_entry,
1059 .write_gdt_entry = xen_write_gdt_entry,
1060 .write_idt_entry = xen_write_idt_entry,
1061 .load_sp0 = xen_load_sp0,
1062
1063 .set_iopl_mask = xen_set_iopl_mask,
1064 .io_delay = xen_io_delay,
1065
1066 /* Xen takes care of %gs when switching to usermode for us */
1067 .swapgs = paravirt_nop,
1068
1069 .start_context_switch = paravirt_start_context_switch,
1070 .end_context_switch = xen_end_context_switch,
1071};
1072
1073static void xen_restart(char *msg)
1074{
1075 xen_reboot(SHUTDOWN_reboot);
1076}
1077
1078static void xen_machine_halt(void)
1079{
1080 xen_reboot(SHUTDOWN_poweroff);
1081}
1082
1083static void xen_machine_power_off(void)
1084{
1085 if (pm_power_off)
1086 pm_power_off();
1087 xen_reboot(SHUTDOWN_poweroff);
1088}
1089
1090static void xen_crash_shutdown(struct pt_regs *regs)
1091{
1092 xen_reboot(SHUTDOWN_crash);
1093}
1094
1095static const struct machine_ops xen_machine_ops __initconst = {
1096 .restart = xen_restart,
1097 .halt = xen_machine_halt,
1098 .power_off = xen_machine_power_off,
1099 .shutdown = xen_machine_halt,
1100 .crash_shutdown = xen_crash_shutdown,
1101 .emergency_restart = xen_emergency_restart,
1102};
1103
1104static unsigned char xen_get_nmi_reason(void)
1105{
1106 unsigned char reason = 0;
1107
1108 /* Construct a value which looks like it came from port 0x61. */
1109 if (test_bit(_XEN_NMIREASON_io_error,
1110 &HYPERVISOR_shared_info->arch.nmi_reason))
1111 reason |= NMI_REASON_IOCHK;
1112 if (test_bit(_XEN_NMIREASON_pci_serr,
1113 &HYPERVISOR_shared_info->arch.nmi_reason))
1114 reason |= NMI_REASON_SERR;
1115
1116 return reason;
1117}
1118
1119static void __init xen_boot_params_init_edd(void)
1120{
1121#if IS_ENABLED(CONFIG_EDD)
1122 struct xen_platform_op op;
1123 struct edd_info *edd_info;
1124 u32 *mbr_signature;
1125 unsigned nr;
1126 int ret;
1127
1128 edd_info = boot_params.eddbuf;
1129 mbr_signature = boot_params.edd_mbr_sig_buffer;
1130
1131 op.cmd = XENPF_firmware_info;
1132
1133 op.u.firmware_info.type = XEN_FW_DISK_INFO;
1134 for (nr = 0; nr < EDDMAXNR; nr++) {
1135 struct edd_info *info = edd_info + nr;
1136
1137 op.u.firmware_info.index = nr;
1138 info->params.length = sizeof(info->params);
1139 set_xen_guest_handle(op.u.firmware_info.u.disk_info.edd_params,
1140 &info->params);
1141 ret = HYPERVISOR_platform_op(&op);
1142 if (ret)
1143 break;
1144
1145#define C(x) info->x = op.u.firmware_info.u.disk_info.x
1146 C(device);
1147 C(version);
1148 C(interface_support);
1149 C(legacy_max_cylinder);
1150 C(legacy_max_head);
1151 C(legacy_sectors_per_track);
1152#undef C
1153 }
1154 boot_params.eddbuf_entries = nr;
1155
1156 op.u.firmware_info.type = XEN_FW_DISK_MBR_SIGNATURE;
1157 for (nr = 0; nr < EDD_MBR_SIG_MAX; nr++) {
1158 op.u.firmware_info.index = nr;
1159 ret = HYPERVISOR_platform_op(&op);
1160 if (ret)
1161 break;
1162 mbr_signature[nr] = op.u.firmware_info.u.disk_mbr_signature.mbr_signature;
1163 }
1164 boot_params.edd_mbr_sig_buf_entries = nr;
1165#endif
1166}
1167
1168/*
1169 * Set up the GDT and segment registers for -fstack-protector. Until
1170 * we do this, we have to be careful not to call any stack-protected
1171 * function, which is most of the kernel.
1172 */
1173static void xen_setup_gdt(int cpu)
1174{
1175 pv_cpu_ops.write_gdt_entry = xen_write_gdt_entry_boot;
1176 pv_cpu_ops.load_gdt = xen_load_gdt_boot;
1177
1178 setup_stack_canary_segment(0);
1179 switch_to_new_gdt(0);
1180
1181 pv_cpu_ops.write_gdt_entry = xen_write_gdt_entry;
1182 pv_cpu_ops.load_gdt = xen_load_gdt;
1183}
1184
1185static void __init xen_dom0_set_legacy_features(void)
1186{
1187 x86_platform.legacy.rtc = 1;
1188}
1189
1190/* First C function to be called on Xen boot */
1191asmlinkage __visible void __init xen_start_kernel(void)
1192{
1193 struct physdev_set_iopl set_iopl;
1194 unsigned long initrd_start = 0;
1195 int rc;
1196
1197 if (!xen_start_info)
1198 return;
1199
1200 xen_domain_type = XEN_PV_DOMAIN;
Roger Pau Monne1fe83882018-06-08 10:40:38 +02001201 xen_start_flags = xen_start_info->flags;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001202
1203 xen_setup_features();
1204
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001205 /* Install Xen paravirt ops */
1206 pv_info = xen_info;
Juergen Grossedcb5cf2017-08-16 19:31:56 +02001207 pv_init_ops.patch = paravirt_patch_default;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001208 pv_cpu_ops = xen_cpu_ops;
Juergen Gross0ce0bba2018-07-12 17:40:34 +02001209 xen_init_irq_ops();
1210
1211 /*
1212 * Setup xen_vcpu early because it is needed for
1213 * local_irq_disable(), irqs_disabled(), e.g. in printk().
1214 *
1215 * Don't do the full vcpu_info placement stuff until we have
1216 * the cpu_possible_mask and a non-dummy shared_info.
1217 */
1218 xen_vcpu_info_reset(0);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001219
1220 x86_platform.get_nmi_reason = xen_get_nmi_reason;
1221
1222 x86_init.resources.memory_setup = xen_memory_setup;
Dou Liyang34fba3e2017-09-13 17:12:52 +08001223 x86_init.irqs.intr_mode_init = x86_init_noop;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001224 x86_init.oem.arch_setup = xen_arch_setup;
1225 x86_init.oem.banner = xen_banner;
Pavel Tatashin7b25b9c2018-07-19 16:55:31 -04001226 x86_init.hyper.init_platform = xen_pv_init_platform;
1227 x86_init.hyper.guest_late_init = xen_pv_guest_late_init;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001228
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001229 /*
1230 * Set up some pagetable state before starting to set any ptes.
1231 */
1232
Juergen Gross0ce0bba2018-07-12 17:40:34 +02001233 xen_setup_machphys_mapping();
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001234 xen_init_mmu_ops();
1235
1236 /* Prevent unwanted bits from being set in PTEs. */
1237 __supported_pte_mask &= ~_PAGE_GLOBAL;
Juergen Grosse69b5d32018-07-02 12:00:18 +02001238 __default_kernel_pte_mask &= ~_PAGE_GLOBAL;
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001239
1240 /*
1241 * Prevent page tables from being allocated in highmem, even
1242 * if CONFIG_HIGHPTE is enabled.
1243 */
1244 __userpte_alloc_gfp &= ~__GFP_HIGHMEM;
1245
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001246 /* Get mfn list */
1247 xen_build_dynamic_phys_to_machine();
1248
1249 /*
1250 * Set up kernel GDT and segment registers, mainly so that
1251 * -fstack-protector code can be executed.
1252 */
1253 xen_setup_gdt(0);
1254
Jason Andryuk36104cb2018-03-19 12:58:04 -04001255 /* Work out if we support NX */
1256 get_cpu_cap(&boot_cpu_data);
1257 x86_configure_nx();
1258
Juergen Gross42b3a4c2017-11-24 09:42:21 +01001259 /* Let's presume PV guests always boot on vCPU with id 0. */
1260 per_cpu(xen_vcpu_id, 0) = 0;
1261
Juergen Gross42b3a4c2017-11-24 09:42:21 +01001262 idt_setup_early_handler();
1263
Juergen Gross0808e802017-04-13 08:55:41 +02001264 xen_init_capabilities();
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001265
1266#ifdef CONFIG_X86_LOCAL_APIC
1267 /*
1268 * set up the basic apic ops.
1269 */
1270 xen_init_apic();
1271#endif
1272
1273 if (xen_feature(XENFEAT_mmu_pt_update_preserve_ad)) {
1274 pv_mmu_ops.ptep_modify_prot_start = xen_ptep_modify_prot_start;
1275 pv_mmu_ops.ptep_modify_prot_commit = xen_ptep_modify_prot_commit;
1276 }
1277
1278 machine_ops = xen_machine_ops;
1279
1280 /*
1281 * The only reliable way to retain the initial address of the
1282 * percpu gdt_page is to remember it here, so we can go and
1283 * mark it RW later, when the initial percpu area is freed.
1284 */
1285 xen_initial_gdt = &per_cpu(gdt_page, 0);
1286
1287 xen_smp_init();
1288
1289#ifdef CONFIG_ACPI_NUMA
1290 /*
1291 * The pages we from Xen are not related to machine pages, so
1292 * any NUMA information the kernel tries to get from ACPI will
1293 * be meaningless. Prevent it from trying.
1294 */
1295 acpi_numa = -1;
1296#endif
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001297 WARN_ON(xen_cpuhp_setup(xen_cpu_up_prepare_pv, xen_cpu_dead_pv));
1298
1299 local_irq_disable();
1300 early_boot_irqs_disabled = true;
1301
1302 xen_raw_console_write("mapping kernel into physical memory\n");
1303 xen_setup_kernel_pagetable((pgd_t *)xen_start_info->pt_base,
1304 xen_start_info->nr_pages);
1305 xen_reserve_special_pages();
1306
1307 /* keep using Xen gdt for now; no urgent need to change it */
1308
1309#ifdef CONFIG_X86_32
1310 pv_info.kernel_rpl = 1;
1311 if (xen_feature(XENFEAT_supervisor_mode_kernel))
1312 pv_info.kernel_rpl = 0;
1313#else
1314 pv_info.kernel_rpl = 0;
1315#endif
1316 /* set the limit of our address space */
1317 xen_reserve_top();
1318
1319 /*
1320 * We used to do this in xen_arch_setup, but that is too late
1321 * on AMD were early_cpu_init (run before ->arch_setup()) calls
1322 * early_amd_init which pokes 0xcf8 port.
1323 */
1324 set_iopl.iopl = 1;
1325 rc = HYPERVISOR_physdev_op(PHYSDEVOP_set_iopl, &set_iopl);
1326 if (rc != 0)
1327 xen_raw_printk("physdev_op failed %d\n", rc);
1328
1329#ifdef CONFIG_X86_32
1330 /* set up basic CPUID stuff */
1331 cpu_detect(&new_cpu_data);
1332 set_cpu_cap(&new_cpu_data, X86_FEATURE_FPU);
1333 new_cpu_data.x86_capability[CPUID_1_EDX] = cpuid_edx(1);
1334#endif
1335
1336 if (xen_start_info->mod_start) {
1337 if (xen_start_info->flags & SIF_MOD_START_PFN)
1338 initrd_start = PFN_PHYS(xen_start_info->mod_start);
1339 else
1340 initrd_start = __pa(xen_start_info->mod_start);
1341 }
1342
1343 /* Poke various useful things into boot_params */
1344 boot_params.hdr.type_of_loader = (9 << 4) | 0;
1345 boot_params.hdr.ramdisk_image = initrd_start;
1346 boot_params.hdr.ramdisk_size = xen_start_info->mod_len;
1347 boot_params.hdr.cmd_line_ptr = __pa(xen_start_info->cmd_line);
1348 boot_params.hdr.hardware_subarch = X86_SUBARCH_XEN;
1349
1350 if (!xen_initial_domain()) {
1351 add_preferred_console("xenboot", 0, NULL);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001352 if (pci_xen)
1353 x86_init.pci.arch_init = pci_xen_init;
1354 } else {
1355 const struct dom0_vga_console_info *info =
1356 (void *)((char *)xen_start_info +
1357 xen_start_info->console.dom0.info_off);
1358 struct xen_platform_op op = {
1359 .cmd = XENPF_firmware_info,
1360 .interface_version = XENPF_INTERFACE_VERSION,
1361 .u.firmware_info.type = XEN_FW_KBD_SHIFT_FLAGS,
1362 };
1363
1364 x86_platform.set_legacy_features =
1365 xen_dom0_set_legacy_features;
1366 xen_init_vga(info, xen_start_info->console.dom0.info_size);
1367 xen_start_info->console.domU.mfn = 0;
1368 xen_start_info->console.domU.evtchn = 0;
1369
1370 if (HYPERVISOR_platform_op(&op) == 0)
1371 boot_params.kbd_status = op.u.firmware_info.u.kbd_shift_flags;
1372
1373 /* Make sure ACS will be enabled */
1374 pci_request_acs();
1375
1376 xen_acpi_sleep_register();
1377
1378 /* Avoid searching for BIOS MP tables */
1379 x86_init.mpparse.find_smp_config = x86_init_noop;
1380 x86_init.mpparse.get_smp_config = x86_init_uint_noop;
1381
1382 xen_boot_params_init_edd();
1383 }
Juergen Gross47b02f42018-02-27 11:19:22 +01001384
1385 add_preferred_console("tty", 0, NULL);
1386 add_preferred_console("hvc", 0, NULL);
1387
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001388#ifdef CONFIG_PCI
1389 /* PCI BIOS service won't work from a PV guest. */
1390 pci_probe &= ~PCI_PROBE_BIOS;
1391#endif
1392 xen_raw_console_write("about to get started...\n");
1393
Ankur Aroraad73fd52017-06-02 17:05:58 -07001394 /* We need this for printk timestamps */
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001395 xen_setup_runstate_info(0);
1396
1397 xen_efi_init();
1398
1399 /* Start the world */
1400#ifdef CONFIG_X86_32
1401 i386_start_kernel();
1402#else
1403 cr4_init_shadow(); /* 32b kernel does this in i386_start_kernel() */
1404 x86_64_start_reservations((char *)__pa_symbol(&boot_params));
1405#endif
1406}
1407
1408static int xen_cpu_up_prepare_pv(unsigned int cpu)
1409{
1410 int rc;
1411
Ankur Arorac9b5d982017-06-02 17:06:01 -07001412 if (per_cpu(xen_vcpu, cpu) == NULL)
1413 return -ENODEV;
1414
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001415 xen_setup_timer(cpu);
1416
1417 rc = xen_smp_intr_init(cpu);
1418 if (rc) {
1419 WARN(1, "xen_smp_intr_init() for CPU %d failed: %d\n",
1420 cpu, rc);
1421 return rc;
1422 }
Vitaly Kuznetsov04e95762017-03-14 18:35:42 +01001423
1424 rc = xen_smp_intr_init_pv(cpu);
1425 if (rc) {
1426 WARN(1, "xen_smp_intr_init_pv() for CPU %d failed: %d\n",
1427 cpu, rc);
1428 return rc;
1429 }
1430
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001431 return 0;
1432}
1433
1434static int xen_cpu_dead_pv(unsigned int cpu)
1435{
1436 xen_smp_intr_free(cpu);
Vitaly Kuznetsov04e95762017-03-14 18:35:42 +01001437 xen_smp_intr_free_pv(cpu);
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001438
1439 xen_teardown_timer(cpu);
1440
1441 return 0;
1442}
1443
1444static uint32_t __init xen_platform_pv(void)
1445{
1446 if (xen_pv_domain())
1447 return xen_cpuid_base();
1448
1449 return 0;
1450}
1451
Juergen Gross03b2a322017-11-09 14:27:36 +01001452const __initconst struct hypervisor_x86 x86_hyper_xen_pv = {
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001453 .name = "Xen PV",
1454 .detect = xen_platform_pv,
Juergen Gross03b2a322017-11-09 14:27:36 +01001455 .type = X86_HYPER_XEN_PV,
Juergen Grossf72e38e2017-11-09 14:27:35 +01001456 .runtime.pin_vcpu = xen_pin_vcpu,
Vitaly Kuznetsove1dab142017-03-14 18:35:41 +01001457};