blob: 8ac57e2c52faeeb84dc12f7a6f998648d77ef493 [file] [log] [blame]
Alexander Graf2a342ed2010-07-29 14:47:48 +02001/*
2 * Copyright (C) 2010 SUSE Linux Products GmbH. All rights reserved.
3 *
4 * Authors:
5 * Alexander Graf <agraf@suse.de>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License, version 2, as
9 * published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
19 */
20
21#include <linux/kvm_host.h>
22#include <linux/init.h>
23#include <linux/kvm_para.h>
24#include <linux/slab.h>
25#include <linux/of.h>
26
27#include <asm/reg.h>
28#include <asm/kvm_ppc.h>
29#include <asm/sections.h>
30#include <asm/cacheflush.h>
31#include <asm/disassemble.h>
32
Alexander Grafd17051c2010-07-29 14:47:57 +020033#define KVM_MAGIC_PAGE (-4096L)
34#define magic_var(x) KVM_MAGIC_PAGE + offsetof(struct kvm_vcpu_arch_shared, x)
35
Alexander Grafd1293c92010-07-29 14:47:59 +020036#define KVM_INST_LWZ 0x80000000
37#define KVM_INST_STW 0x90000000
38#define KVM_INST_LD 0xe8000000
39#define KVM_INST_STD 0xf8000000
40#define KVM_INST_NOP 0x60000000
41#define KVM_INST_B 0x48000000
42#define KVM_INST_B_MASK 0x03ffffff
43#define KVM_INST_B_MAX 0x01ffffff
44
Alexander Graf73a18102010-07-29 14:47:58 +020045#define KVM_MASK_RT 0x03e00000
Alexander Grafd1293c92010-07-29 14:47:59 +020046#define KVM_INST_MFMSR 0x7c0000a6
47#define KVM_INST_MFSPR_SPRG0 0x7c1042a6
48#define KVM_INST_MFSPR_SPRG1 0x7c1142a6
49#define KVM_INST_MFSPR_SPRG2 0x7c1242a6
50#define KVM_INST_MFSPR_SPRG3 0x7c1342a6
51#define KVM_INST_MFSPR_SRR0 0x7c1a02a6
52#define KVM_INST_MFSPR_SRR1 0x7c1b02a6
53#define KVM_INST_MFSPR_DAR 0x7c1302a6
54#define KVM_INST_MFSPR_DSISR 0x7c1202a6
55
56#define KVM_INST_MTSPR_SPRG0 0x7c1043a6
57#define KVM_INST_MTSPR_SPRG1 0x7c1143a6
58#define KVM_INST_MTSPR_SPRG2 0x7c1243a6
59#define KVM_INST_MTSPR_SPRG3 0x7c1343a6
60#define KVM_INST_MTSPR_SRR0 0x7c1a03a6
61#define KVM_INST_MTSPR_SRR1 0x7c1b03a6
62#define KVM_INST_MTSPR_DAR 0x7c1303a6
63#define KVM_INST_MTSPR_DSISR 0x7c1203a6
Alexander Graf73a18102010-07-29 14:47:58 +020064
Alexander Grafd1290b152010-07-29 14:48:00 +020065#define KVM_INST_TLBSYNC 0x7c00046c
Alexander Graf78109272010-07-29 14:48:05 +020066#define KVM_INST_MTMSRD_L0 0x7c000164
Alexander Graf819a63d2010-07-29 14:48:04 +020067#define KVM_INST_MTMSRD_L1 0x7c010164
Alexander Graf78109272010-07-29 14:48:05 +020068#define KVM_INST_MTMSR 0x7c000124
Alexander Grafd1290b152010-07-29 14:48:00 +020069
Alexander Graf73a18102010-07-29 14:47:58 +020070static bool kvm_patching_worked = true;
Alexander Graf2d4f5672010-07-29 14:48:01 +020071static char kvm_tmp[1024 * 1024];
72static int kvm_tmp_index;
Alexander Graf73a18102010-07-29 14:47:58 +020073
74static inline void kvm_patch_ins(u32 *inst, u32 new_inst)
75{
76 *inst = new_inst;
77 flush_icache_range((ulong)inst, (ulong)inst + 4);
78}
79
Alexander Grafd1293c92010-07-29 14:47:59 +020080static void kvm_patch_ins_ld(u32 *inst, long addr, u32 rt)
81{
82#ifdef CONFIG_64BIT
83 kvm_patch_ins(inst, KVM_INST_LD | rt | (addr & 0x0000fffc));
84#else
85 kvm_patch_ins(inst, KVM_INST_LWZ | rt | ((addr + 4) & 0x0000fffc));
86#endif
87}
88
89static void kvm_patch_ins_lwz(u32 *inst, long addr, u32 rt)
90{
91 kvm_patch_ins(inst, KVM_INST_LWZ | rt | (addr & 0x0000ffff));
92}
93
94static void kvm_patch_ins_std(u32 *inst, long addr, u32 rt)
95{
96#ifdef CONFIG_64BIT
97 kvm_patch_ins(inst, KVM_INST_STD | rt | (addr & 0x0000fffc));
98#else
99 kvm_patch_ins(inst, KVM_INST_STW | rt | ((addr + 4) & 0x0000fffc));
100#endif
101}
102
103static void kvm_patch_ins_stw(u32 *inst, long addr, u32 rt)
104{
105 kvm_patch_ins(inst, KVM_INST_STW | rt | (addr & 0x0000fffc));
106}
107
Alexander Grafd1290b152010-07-29 14:48:00 +0200108static void kvm_patch_ins_nop(u32 *inst)
109{
110 kvm_patch_ins(inst, KVM_INST_NOP);
111}
112
Alexander Graf71ee8e32010-07-29 14:48:02 +0200113static void kvm_patch_ins_b(u32 *inst, int addr)
114{
115#ifdef CONFIG_RELOCATABLE
116 /* On relocatable kernels interrupts handlers and our code
117 can be in different regions, so we don't patch them */
118
119 extern u32 __end_interrupts;
120 if ((ulong)inst < (ulong)&__end_interrupts)
121 return;
122#endif
123
124 kvm_patch_ins(inst, KVM_INST_B | (addr & KVM_INST_B_MASK));
125}
126
Alexander Graf2d4f5672010-07-29 14:48:01 +0200127static u32 *kvm_alloc(int len)
128{
129 u32 *p;
130
131 if ((kvm_tmp_index + len) > ARRAY_SIZE(kvm_tmp)) {
132 printk(KERN_ERR "KVM: No more space (%d + %d)\n",
133 kvm_tmp_index, len);
134 kvm_patching_worked = false;
135 return NULL;
136 }
137
138 p = (void*)&kvm_tmp[kvm_tmp_index];
139 kvm_tmp_index += len;
140
141 return p;
142}
143
Alexander Graf819a63d2010-07-29 14:48:04 +0200144extern u32 kvm_emulate_mtmsrd_branch_offs;
145extern u32 kvm_emulate_mtmsrd_reg_offs;
146extern u32 kvm_emulate_mtmsrd_len;
147extern u32 kvm_emulate_mtmsrd[];
148
149static void kvm_patch_ins_mtmsrd(u32 *inst, u32 rt)
150{
151 u32 *p;
152 int distance_start;
153 int distance_end;
154 ulong next_inst;
155
156 p = kvm_alloc(kvm_emulate_mtmsrd_len * 4);
157 if (!p)
158 return;
159
160 /* Find out where we are and put everything there */
161 distance_start = (ulong)p - (ulong)inst;
162 next_inst = ((ulong)inst + 4);
163 distance_end = next_inst - (ulong)&p[kvm_emulate_mtmsrd_branch_offs];
164
165 /* Make sure we only write valid b instructions */
166 if (distance_start > KVM_INST_B_MAX) {
167 kvm_patching_worked = false;
168 return;
169 }
170
171 /* Modify the chunk to fit the invocation */
172 memcpy(p, kvm_emulate_mtmsrd, kvm_emulate_mtmsrd_len * 4);
173 p[kvm_emulate_mtmsrd_branch_offs] |= distance_end & KVM_INST_B_MASK;
174 p[kvm_emulate_mtmsrd_reg_offs] |= rt;
175 flush_icache_range((ulong)p, (ulong)p + kvm_emulate_mtmsrd_len * 4);
176
177 /* Patch the invocation */
178 kvm_patch_ins_b(inst, distance_start);
179}
180
Alexander Graf78109272010-07-29 14:48:05 +0200181extern u32 kvm_emulate_mtmsr_branch_offs;
182extern u32 kvm_emulate_mtmsr_reg1_offs;
183extern u32 kvm_emulate_mtmsr_reg2_offs;
184extern u32 kvm_emulate_mtmsr_reg3_offs;
185extern u32 kvm_emulate_mtmsr_orig_ins_offs;
186extern u32 kvm_emulate_mtmsr_len;
187extern u32 kvm_emulate_mtmsr[];
188
189static void kvm_patch_ins_mtmsr(u32 *inst, u32 rt)
190{
191 u32 *p;
192 int distance_start;
193 int distance_end;
194 ulong next_inst;
195
196 p = kvm_alloc(kvm_emulate_mtmsr_len * 4);
197 if (!p)
198 return;
199
200 /* Find out where we are and put everything there */
201 distance_start = (ulong)p - (ulong)inst;
202 next_inst = ((ulong)inst + 4);
203 distance_end = next_inst - (ulong)&p[kvm_emulate_mtmsr_branch_offs];
204
205 /* Make sure we only write valid b instructions */
206 if (distance_start > KVM_INST_B_MAX) {
207 kvm_patching_worked = false;
208 return;
209 }
210
211 /* Modify the chunk to fit the invocation */
212 memcpy(p, kvm_emulate_mtmsr, kvm_emulate_mtmsr_len * 4);
213 p[kvm_emulate_mtmsr_branch_offs] |= distance_end & KVM_INST_B_MASK;
214 p[kvm_emulate_mtmsr_reg1_offs] |= rt;
215 p[kvm_emulate_mtmsr_reg2_offs] |= rt;
216 p[kvm_emulate_mtmsr_reg3_offs] |= rt;
217 p[kvm_emulate_mtmsr_orig_ins_offs] = *inst;
218 flush_icache_range((ulong)p, (ulong)p + kvm_emulate_mtmsr_len * 4);
219
220 /* Patch the invocation */
221 kvm_patch_ins_b(inst, distance_start);
222}
223
Alexander Graf73a18102010-07-29 14:47:58 +0200224static void kvm_map_magic_page(void *data)
225{
226 kvm_hypercall2(KVM_HC_PPC_MAP_MAGIC_PAGE,
227 KVM_MAGIC_PAGE, /* Physical Address */
228 KVM_MAGIC_PAGE); /* Effective Address */
229}
230
231static void kvm_check_ins(u32 *inst)
232{
233 u32 _inst = *inst;
234 u32 inst_no_rt = _inst & ~KVM_MASK_RT;
235 u32 inst_rt = _inst & KVM_MASK_RT;
236
237 switch (inst_no_rt) {
Alexander Grafd1293c92010-07-29 14:47:59 +0200238 /* Loads */
239 case KVM_INST_MFMSR:
240 kvm_patch_ins_ld(inst, magic_var(msr), inst_rt);
241 break;
242 case KVM_INST_MFSPR_SPRG0:
243 kvm_patch_ins_ld(inst, magic_var(sprg0), inst_rt);
244 break;
245 case KVM_INST_MFSPR_SPRG1:
246 kvm_patch_ins_ld(inst, magic_var(sprg1), inst_rt);
247 break;
248 case KVM_INST_MFSPR_SPRG2:
249 kvm_patch_ins_ld(inst, magic_var(sprg2), inst_rt);
250 break;
251 case KVM_INST_MFSPR_SPRG3:
252 kvm_patch_ins_ld(inst, magic_var(sprg3), inst_rt);
253 break;
254 case KVM_INST_MFSPR_SRR0:
255 kvm_patch_ins_ld(inst, magic_var(srr0), inst_rt);
256 break;
257 case KVM_INST_MFSPR_SRR1:
258 kvm_patch_ins_ld(inst, magic_var(srr1), inst_rt);
259 break;
260 case KVM_INST_MFSPR_DAR:
261 kvm_patch_ins_ld(inst, magic_var(dar), inst_rt);
262 break;
263 case KVM_INST_MFSPR_DSISR:
264 kvm_patch_ins_lwz(inst, magic_var(dsisr), inst_rt);
265 break;
266
267 /* Stores */
268 case KVM_INST_MTSPR_SPRG0:
269 kvm_patch_ins_std(inst, magic_var(sprg0), inst_rt);
270 break;
271 case KVM_INST_MTSPR_SPRG1:
272 kvm_patch_ins_std(inst, magic_var(sprg1), inst_rt);
273 break;
274 case KVM_INST_MTSPR_SPRG2:
275 kvm_patch_ins_std(inst, magic_var(sprg2), inst_rt);
276 break;
277 case KVM_INST_MTSPR_SPRG3:
278 kvm_patch_ins_std(inst, magic_var(sprg3), inst_rt);
279 break;
280 case KVM_INST_MTSPR_SRR0:
281 kvm_patch_ins_std(inst, magic_var(srr0), inst_rt);
282 break;
283 case KVM_INST_MTSPR_SRR1:
284 kvm_patch_ins_std(inst, magic_var(srr1), inst_rt);
285 break;
286 case KVM_INST_MTSPR_DAR:
287 kvm_patch_ins_std(inst, magic_var(dar), inst_rt);
288 break;
289 case KVM_INST_MTSPR_DSISR:
290 kvm_patch_ins_stw(inst, magic_var(dsisr), inst_rt);
291 break;
Alexander Grafd1290b152010-07-29 14:48:00 +0200292
293 /* Nops */
294 case KVM_INST_TLBSYNC:
295 kvm_patch_ins_nop(inst);
296 break;
Alexander Graf819a63d2010-07-29 14:48:04 +0200297
298 /* Rewrites */
299 case KVM_INST_MTMSRD_L1:
300 /* We use r30 and r31 during the hook */
301 if (get_rt(inst_rt) < 30)
302 kvm_patch_ins_mtmsrd(inst, inst_rt);
303 break;
Alexander Graf78109272010-07-29 14:48:05 +0200304 case KVM_INST_MTMSR:
305 case KVM_INST_MTMSRD_L0:
306 /* We use r30 and r31 during the hook */
307 if (get_rt(inst_rt) < 30)
308 kvm_patch_ins_mtmsr(inst, inst_rt);
309 break;
Alexander Graf73a18102010-07-29 14:47:58 +0200310 }
311
312 switch (_inst) {
313 }
314}
315
316static void kvm_use_magic_page(void)
317{
318 u32 *p;
319 u32 *start, *end;
320 u32 tmp;
321
322 /* Tell the host to map the magic page to -4096 on all CPUs */
323 on_each_cpu(kvm_map_magic_page, NULL, 1);
324
325 /* Quick self-test to see if the mapping works */
326 if (__get_user(tmp, (u32*)KVM_MAGIC_PAGE)) {
327 kvm_patching_worked = false;
328 return;
329 }
330
331 /* Now loop through all code and find instructions */
332 start = (void*)_stext;
333 end = (void*)_etext;
334
335 for (p = start; p < end; p++)
336 kvm_check_ins(p);
337
338 printk(KERN_INFO "KVM: Live patching for a fast VM %s\n",
339 kvm_patching_worked ? "worked" : "failed");
340}
341
Alexander Graf2a342ed2010-07-29 14:47:48 +0200342unsigned long kvm_hypercall(unsigned long *in,
343 unsigned long *out,
344 unsigned long nr)
345{
346 unsigned long register r0 asm("r0");
347 unsigned long register r3 asm("r3") = in[0];
348 unsigned long register r4 asm("r4") = in[1];
349 unsigned long register r5 asm("r5") = in[2];
350 unsigned long register r6 asm("r6") = in[3];
351 unsigned long register r7 asm("r7") = in[4];
352 unsigned long register r8 asm("r8") = in[5];
353 unsigned long register r9 asm("r9") = in[6];
354 unsigned long register r10 asm("r10") = in[7];
355 unsigned long register r11 asm("r11") = nr;
356 unsigned long register r12 asm("r12");
357
358 asm volatile("bl kvm_hypercall_start"
359 : "=r"(r0), "=r"(r3), "=r"(r4), "=r"(r5), "=r"(r6),
360 "=r"(r7), "=r"(r8), "=r"(r9), "=r"(r10), "=r"(r11),
361 "=r"(r12)
362 : "r"(r3), "r"(r4), "r"(r5), "r"(r6), "r"(r7), "r"(r8),
363 "r"(r9), "r"(r10), "r"(r11)
364 : "memory", "cc", "xer", "ctr", "lr");
365
366 out[0] = r4;
367 out[1] = r5;
368 out[2] = r6;
369 out[3] = r7;
370 out[4] = r8;
371 out[5] = r9;
372 out[6] = r10;
373 out[7] = r11;
374
375 return r3;
376}
377EXPORT_SYMBOL_GPL(kvm_hypercall);
Alexander Graf73a18102010-07-29 14:47:58 +0200378
379static int kvm_para_setup(void)
380{
381 extern u32 kvm_hypercall_start;
382 struct device_node *hyper_node;
383 u32 *insts;
384 int len, i;
385
386 hyper_node = of_find_node_by_path("/hypervisor");
387 if (!hyper_node)
388 return -1;
389
390 insts = (u32*)of_get_property(hyper_node, "hcall-instructions", &len);
391 if (len % 4)
392 return -1;
393 if (len > (4 * 4))
394 return -1;
395
396 for (i = 0; i < (len / 4); i++)
397 kvm_patch_ins(&(&kvm_hypercall_start)[i], insts[i]);
398
399 return 0;
400}
401
Alexander Graf2d4f5672010-07-29 14:48:01 +0200402static __init void kvm_free_tmp(void)
403{
404 unsigned long start, end;
405
406 start = (ulong)&kvm_tmp[kvm_tmp_index + (PAGE_SIZE - 1)] & PAGE_MASK;
407 end = (ulong)&kvm_tmp[ARRAY_SIZE(kvm_tmp)] & PAGE_MASK;
408
409 /* Free the tmp space we don't need */
410 for (; start < end; start += PAGE_SIZE) {
411 ClearPageReserved(virt_to_page(start));
412 init_page_count(virt_to_page(start));
413 free_page(start);
414 totalram_pages++;
415 }
416}
417
Alexander Graf73a18102010-07-29 14:47:58 +0200418static int __init kvm_guest_init(void)
419{
420 if (!kvm_para_available())
Alexander Graf2d4f5672010-07-29 14:48:01 +0200421 goto free_tmp;
Alexander Graf73a18102010-07-29 14:47:58 +0200422
423 if (kvm_para_setup())
Alexander Graf2d4f5672010-07-29 14:48:01 +0200424 goto free_tmp;
Alexander Graf73a18102010-07-29 14:47:58 +0200425
426 if (kvm_para_has_feature(KVM_FEATURE_MAGIC_PAGE))
427 kvm_use_magic_page();
428
Alexander Graf2d4f5672010-07-29 14:48:01 +0200429free_tmp:
430 kvm_free_tmp();
431
Alexander Graf73a18102010-07-29 14:47:58 +0200432 return 0;
433}
434
435postcore_initcall(kvm_guest_init);