h_mem_assist.c revision 1.13 1 1.13 christos /* $NetBSD: h_mem_assist.c,v 1.13 2019/10/14 01:15:32 christos Exp $ */
2 1.7 maxv
3 1.1 maxv /*
4 1.12 maxv * Copyright (c) 2018-2019 The NetBSD Foundation, Inc.
5 1.1 maxv * All rights reserved.
6 1.1 maxv *
7 1.1 maxv * This code is derived from software contributed to The NetBSD Foundation
8 1.1 maxv * by Maxime Villard.
9 1.1 maxv *
10 1.1 maxv * Redistribution and use in source and binary forms, with or without
11 1.1 maxv * modification, are permitted provided that the following conditions
12 1.1 maxv * are met:
13 1.1 maxv * 1. Redistributions of source code must retain the above copyright
14 1.1 maxv * notice, this list of conditions and the following disclaimer.
15 1.1 maxv * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 maxv * notice, this list of conditions and the following disclaimer in the
17 1.1 maxv * documentation and/or other materials provided with the distribution.
18 1.1 maxv *
19 1.1 maxv * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 maxv * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 maxv * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 maxv * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 maxv * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 maxv * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 maxv * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 maxv * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 maxv * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 maxv * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 maxv * POSSIBILITY OF SUCH DAMAGE.
30 1.1 maxv */
31 1.1 maxv
32 1.1 maxv #include <stdio.h>
33 1.1 maxv #include <stdlib.h>
34 1.1 maxv #include <stdint.h>
35 1.1 maxv #include <stdbool.h>
36 1.1 maxv #include <unistd.h>
37 1.1 maxv #include <string.h>
38 1.1 maxv #include <err.h>
39 1.1 maxv #include <errno.h>
40 1.1 maxv #include <sys/types.h>
41 1.1 maxv #include <sys/mman.h>
42 1.1 maxv #include <machine/segments.h>
43 1.1 maxv #include <machine/psl.h>
44 1.1 maxv #include <machine/pte.h>
45 1.1 maxv #include <x86/specialreg.h>
46 1.1 maxv
47 1.1 maxv #include <nvmm.h>
48 1.1 maxv
49 1.1 maxv #define PAGE_SIZE 4096
50 1.1 maxv
51 1.1 maxv static uint8_t mmiobuf[PAGE_SIZE];
52 1.1 maxv static uint8_t *instbuf;
53 1.1 maxv
54 1.12 maxv /* -------------------------------------------------------------------------- */
55 1.12 maxv
56 1.12 maxv static void
57 1.12 maxv mem_callback(struct nvmm_mem *mem)
58 1.12 maxv {
59 1.12 maxv size_t off;
60 1.12 maxv
61 1.12 maxv if (mem->gpa < 0x1000 || mem->gpa + mem->size > 0x1000 + PAGE_SIZE) {
62 1.12 maxv printf("Out of page\n");
63 1.12 maxv exit(-1);
64 1.12 maxv }
65 1.12 maxv
66 1.12 maxv off = mem->gpa - 0x1000;
67 1.12 maxv
68 1.12 maxv printf("-> gpa = %p\n", (void *)mem->gpa);
69 1.12 maxv
70 1.12 maxv if (mem->write) {
71 1.12 maxv memcpy(mmiobuf + off, mem->data, mem->size);
72 1.12 maxv } else {
73 1.12 maxv memcpy(mem->data, mmiobuf + off, mem->size);
74 1.12 maxv }
75 1.12 maxv }
76 1.12 maxv
77 1.12 maxv static int
78 1.12 maxv handle_memory(struct nvmm_machine *mach, struct nvmm_vcpu *vcpu)
79 1.12 maxv {
80 1.12 maxv int ret;
81 1.12 maxv
82 1.12 maxv ret = nvmm_assist_mem(mach, vcpu);
83 1.12 maxv if (ret == -1) {
84 1.12 maxv err(errno, "nvmm_assist_mem");
85 1.12 maxv }
86 1.12 maxv
87 1.12 maxv return 0;
88 1.12 maxv }
89 1.12 maxv
90 1.12 maxv static void
91 1.12 maxv run_machine(struct nvmm_machine *mach, struct nvmm_vcpu *vcpu)
92 1.12 maxv {
93 1.12 maxv struct nvmm_exit *exit = vcpu->exit;
94 1.12 maxv
95 1.12 maxv while (1) {
96 1.12 maxv if (nvmm_vcpu_run(mach, vcpu) == -1)
97 1.12 maxv err(errno, "nvmm_vcpu_run");
98 1.12 maxv
99 1.12 maxv switch (exit->reason) {
100 1.12 maxv case NVMM_EXIT_NONE:
101 1.12 maxv break;
102 1.12 maxv
103 1.12 maxv case NVMM_EXIT_MSR:
104 1.12 maxv /* Stop here. */
105 1.12 maxv return;
106 1.12 maxv
107 1.12 maxv case NVMM_EXIT_MEMORY:
108 1.12 maxv handle_memory(mach, vcpu);
109 1.12 maxv break;
110 1.12 maxv
111 1.12 maxv case NVMM_EXIT_SHUTDOWN:
112 1.12 maxv printf("Shutting down!\n");
113 1.12 maxv return;
114 1.12 maxv
115 1.12 maxv default:
116 1.12 maxv printf("Invalid!\n");
117 1.12 maxv return;
118 1.12 maxv }
119 1.12 maxv }
120 1.12 maxv }
121 1.12 maxv
122 1.12 maxv static struct nvmm_callbacks callbacks = {
123 1.12 maxv .io = NULL,
124 1.12 maxv .mem = mem_callback
125 1.12 maxv };
126 1.12 maxv
127 1.12 maxv /* -------------------------------------------------------------------------- */
128 1.12 maxv
129 1.12 maxv struct test {
130 1.12 maxv const char *name;
131 1.12 maxv uint8_t *code_begin;
132 1.12 maxv uint8_t *code_end;
133 1.12 maxv uint64_t wanted;
134 1.12 maxv uint64_t off;
135 1.12 maxv };
136 1.12 maxv
137 1.12 maxv static void
138 1.12 maxv run_test(struct nvmm_machine *mach, struct nvmm_vcpu *vcpu,
139 1.12 maxv const struct test *test)
140 1.12 maxv {
141 1.12 maxv uint64_t *res;
142 1.12 maxv size_t size;
143 1.12 maxv
144 1.12 maxv size = (size_t)test->code_end - (size_t)test->code_begin;
145 1.12 maxv
146 1.12 maxv memset(mmiobuf, 0, PAGE_SIZE);
147 1.12 maxv memcpy(instbuf, test->code_begin, size);
148 1.12 maxv
149 1.12 maxv run_machine(mach, vcpu);
150 1.12 maxv
151 1.12 maxv res = (uint64_t *)(mmiobuf + test->off);
152 1.12 maxv if (*res == test->wanted) {
153 1.12 maxv printf("Test '%s' passed\n", test->name);
154 1.12 maxv } else {
155 1.12 maxv printf("Test '%s' failed, wanted 0x%lx, got 0x%lx\n", test->name,
156 1.12 maxv test->wanted, *res);
157 1.12 maxv }
158 1.12 maxv }
159 1.12 maxv
160 1.12 maxv /* -------------------------------------------------------------------------- */
161 1.12 maxv
162 1.12 maxv extern uint8_t test1_begin, test1_end;
163 1.12 maxv extern uint8_t test2_begin, test2_end;
164 1.12 maxv extern uint8_t test3_begin, test3_end;
165 1.12 maxv extern uint8_t test4_begin, test4_end;
166 1.12 maxv extern uint8_t test5_begin, test5_end;
167 1.12 maxv extern uint8_t test6_begin, test6_end;
168 1.12 maxv extern uint8_t test7_begin, test7_end;
169 1.12 maxv extern uint8_t test8_begin, test8_end;
170 1.12 maxv extern uint8_t test9_begin, test9_end;
171 1.12 maxv extern uint8_t test10_begin, test10_end;
172 1.12 maxv extern uint8_t test11_begin, test11_end;
173 1.12 maxv extern uint8_t test12_begin, test12_end;
174 1.12 maxv extern uint8_t test13_begin, test13_end;
175 1.12 maxv extern uint8_t test14_begin, test14_end;
176 1.12 maxv
177 1.12 maxv static const struct test tests64[] = {
178 1.13 christos { "test1 - MOV", &test1_begin, &test1_end, 0x3004, 0 },
179 1.13 christos { "test2 - OR", &test2_begin, &test2_end, 0x16FF, 0 },
180 1.13 christos { "test3 - AND", &test3_begin, &test3_end, 0x1FC0, 0 },
181 1.13 christos { "test4 - XOR", &test4_begin, &test4_end, 0x10CF, 0 },
182 1.13 christos { "test5 - Address Sizes", &test5_begin, &test5_end, 0x1F00, 0 },
183 1.13 christos { "test6 - DMO", &test6_begin, &test6_end, 0xFFAB, 0 },
184 1.13 christos { "test7 - STOS", &test7_begin, &test7_end, 0x00123456, 0 },
185 1.13 christos { "test8 - LODS", &test8_begin, &test8_end, 0x12345678, 0 },
186 1.13 christos { "test9 - MOVS", &test9_begin, &test9_end, 0x12345678, 0 },
187 1.13 christos { "test10 - MOVZXB", &test10_begin, &test10_end, 0x00000078, 0 },
188 1.13 christos { "test11 - MOVZXW", &test11_begin, &test11_end, 0x00005678, 0 },
189 1.13 christos { "test12 - CMP", &test12_begin, &test12_end, 0x00000001, 0 },
190 1.13 christos { "test13 - SUB", &test13_begin, &test13_end, 0x0000000F0000A0FF, 0 },
191 1.13 christos { "test14 - TEST", &test14_begin, &test14_end, 0x00000001, 0 },
192 1.13 christos { NULL, NULL, NULL, -1, 0 }
193 1.12 maxv };
194 1.12 maxv
195 1.1 maxv static void
196 1.1 maxv init_seg(struct nvmm_x64_state_seg *seg, int type, int sel)
197 1.1 maxv {
198 1.1 maxv seg->selector = sel;
199 1.1 maxv seg->attrib.type = type;
200 1.6 maxv seg->attrib.s = (type & 0b10000) != 0;
201 1.1 maxv seg->attrib.dpl = 0;
202 1.1 maxv seg->attrib.p = 1;
203 1.1 maxv seg->attrib.avl = 1;
204 1.6 maxv seg->attrib.l = 1;
205 1.6 maxv seg->attrib.def = 0;
206 1.6 maxv seg->attrib.g = 1;
207 1.3 maxv seg->limit = 0x0000FFFF;
208 1.1 maxv seg->base = 0x00000000;
209 1.1 maxv }
210 1.1 maxv
211 1.1 maxv static void
212 1.12 maxv reset_machine64(struct nvmm_machine *mach, struct nvmm_vcpu *vcpu)
213 1.1 maxv {
214 1.11 maxv struct nvmm_x64_state *state = vcpu->state;
215 1.1 maxv
216 1.11 maxv memset(state, 0, sizeof(*state));
217 1.1 maxv
218 1.1 maxv /* Default. */
219 1.11 maxv state->gprs[NVMM_X64_GPR_RFLAGS] = PSL_MBO;
220 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_CS], SDT_MEMERA, GSEL(GCODE_SEL, SEL_KPL));
221 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_SS], SDT_MEMRWA, GSEL(GDATA_SEL, SEL_KPL));
222 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_DS], SDT_MEMRWA, GSEL(GDATA_SEL, SEL_KPL));
223 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_ES], SDT_MEMRWA, GSEL(GDATA_SEL, SEL_KPL));
224 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_FS], SDT_MEMRWA, GSEL(GDATA_SEL, SEL_KPL));
225 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_GS], SDT_MEMRWA, GSEL(GDATA_SEL, SEL_KPL));
226 1.1 maxv
227 1.1 maxv /* Blank. */
228 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_GDT], 0, 0);
229 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_IDT], 0, 0);
230 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_LDT], SDT_SYSLDT, 0);
231 1.11 maxv init_seg(&state->segs[NVMM_X64_SEG_TR], SDT_SYS386BSY, 0);
232 1.1 maxv
233 1.1 maxv /* Protected mode enabled. */
234 1.11 maxv state->crs[NVMM_X64_CR_CR0] = CR0_PG|CR0_PE|CR0_NE|CR0_TS|CR0_MP|CR0_WP|CR0_AM;
235 1.1 maxv
236 1.1 maxv /* 64bit mode enabled. */
237 1.11 maxv state->crs[NVMM_X64_CR_CR4] = CR4_PAE;
238 1.11 maxv state->msrs[NVMM_X64_MSR_EFER] = EFER_LME | EFER_SCE | EFER_LMA;
239 1.1 maxv
240 1.1 maxv /* Stolen from x86/pmap.c */
241 1.1 maxv #define PATENTRY(n, type) (type << ((n) * 8))
242 1.1 maxv #define PAT_UC 0x0ULL
243 1.1 maxv #define PAT_WC 0x1ULL
244 1.1 maxv #define PAT_WT 0x4ULL
245 1.1 maxv #define PAT_WP 0x5ULL
246 1.1 maxv #define PAT_WB 0x6ULL
247 1.1 maxv #define PAT_UCMINUS 0x7ULL
248 1.11 maxv state->msrs[NVMM_X64_MSR_PAT] =
249 1.1 maxv PATENTRY(0, PAT_WB) | PATENTRY(1, PAT_WT) |
250 1.1 maxv PATENTRY(2, PAT_UCMINUS) | PATENTRY(3, PAT_UC) |
251 1.1 maxv PATENTRY(4, PAT_WB) | PATENTRY(5, PAT_WT) |
252 1.1 maxv PATENTRY(6, PAT_UCMINUS) | PATENTRY(7, PAT_UC);
253 1.1 maxv
254 1.1 maxv /* Page tables. */
255 1.11 maxv state->crs[NVMM_X64_CR_CR3] = 0x3000;
256 1.1 maxv
257 1.11 maxv state->gprs[NVMM_X64_GPR_RIP] = 0x2000;
258 1.1 maxv
259 1.11 maxv if (nvmm_vcpu_setstate(mach, vcpu, NVMM_X64_STATE_ALL) == -1)
260 1.1 maxv err(errno, "nvmm_vcpu_setstate");
261 1.1 maxv }
262 1.1 maxv
263 1.1 maxv static void
264 1.12 maxv map_pages64(struct nvmm_machine *mach)
265 1.1 maxv {
266 1.1 maxv pt_entry_t *L4, *L3, *L2, *L1;
267 1.9 htodd int ret;
268 1.1 maxv
269 1.1 maxv instbuf = mmap(NULL, PAGE_SIZE, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
270 1.1 maxv -1, 0);
271 1.1 maxv if (instbuf == MAP_FAILED)
272 1.1 maxv err(errno, "mmap");
273 1.1 maxv
274 1.1 maxv if (nvmm_hva_map(mach, (uintptr_t)instbuf, PAGE_SIZE) == -1)
275 1.1 maxv err(errno, "nvmm_hva_map");
276 1.8 maxv ret = nvmm_gpa_map(mach, (uintptr_t)instbuf, 0x2000, PAGE_SIZE,
277 1.8 maxv PROT_READ|PROT_EXEC);
278 1.8 maxv if (ret == -1)
279 1.1 maxv err(errno, "nvmm_gpa_map");
280 1.1 maxv
281 1.1 maxv L4 = mmap(NULL, PAGE_SIZE, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
282 1.1 maxv -1, 0);
283 1.1 maxv if (L4 == MAP_FAILED)
284 1.1 maxv err(errno, "mmap");
285 1.1 maxv L3 = mmap(NULL, PAGE_SIZE, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
286 1.1 maxv -1, 0);
287 1.1 maxv if (L3 == MAP_FAILED)
288 1.1 maxv err(errno, "mmap");
289 1.1 maxv L2 = mmap(NULL, PAGE_SIZE, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
290 1.1 maxv -1, 0);
291 1.1 maxv if (L2 == MAP_FAILED)
292 1.1 maxv err(errno, "mmap");
293 1.1 maxv L1 = mmap(NULL, PAGE_SIZE, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
294 1.1 maxv -1, 0);
295 1.1 maxv if (L1 == MAP_FAILED)
296 1.1 maxv err(errno, "mmap");
297 1.1 maxv
298 1.1 maxv if (nvmm_hva_map(mach, (uintptr_t)L4, PAGE_SIZE) == -1)
299 1.1 maxv err(errno, "nvmm_hva_map");
300 1.1 maxv if (nvmm_hva_map(mach, (uintptr_t)L3, PAGE_SIZE) == -1)
301 1.1 maxv err(errno, "nvmm_hva_map");
302 1.1 maxv if (nvmm_hva_map(mach, (uintptr_t)L2, PAGE_SIZE) == -1)
303 1.1 maxv err(errno, "nvmm_hva_map");
304 1.1 maxv if (nvmm_hva_map(mach, (uintptr_t)L1, PAGE_SIZE) == -1)
305 1.1 maxv err(errno, "nvmm_hva_map");
306 1.1 maxv
307 1.8 maxv ret = nvmm_gpa_map(mach, (uintptr_t)L4, 0x3000, PAGE_SIZE,
308 1.8 maxv PROT_READ|PROT_WRITE);
309 1.8 maxv if (ret == -1)
310 1.1 maxv err(errno, "nvmm_gpa_map");
311 1.8 maxv ret = nvmm_gpa_map(mach, (uintptr_t)L3, 0x4000, PAGE_SIZE,
312 1.8 maxv PROT_READ|PROT_WRITE);
313 1.8 maxv if (ret == -1)
314 1.1 maxv err(errno, "nvmm_gpa_map");
315 1.8 maxv ret = nvmm_gpa_map(mach, (uintptr_t)L2, 0x5000, PAGE_SIZE,
316 1.8 maxv PROT_READ|PROT_WRITE);
317 1.8 maxv if (ret == -1)
318 1.1 maxv err(errno, "nvmm_gpa_map");
319 1.8 maxv ret = nvmm_gpa_map(mach, (uintptr_t)L1, 0x6000, PAGE_SIZE,
320 1.8 maxv PROT_READ|PROT_WRITE);
321 1.8 maxv if (ret == -1)
322 1.1 maxv err(errno, "nvmm_gpa_map");
323 1.1 maxv
324 1.1 maxv memset(L4, 0, PAGE_SIZE);
325 1.1 maxv memset(L3, 0, PAGE_SIZE);
326 1.1 maxv memset(L2, 0, PAGE_SIZE);
327 1.1 maxv memset(L1, 0, PAGE_SIZE);
328 1.1 maxv
329 1.7 maxv L4[0] = PTE_P | PTE_W | 0x4000;
330 1.7 maxv L3[0] = PTE_P | PTE_W | 0x5000;
331 1.7 maxv L2[0] = PTE_P | PTE_W | 0x6000;
332 1.7 maxv L1[0x2000 / PAGE_SIZE] = PTE_P | PTE_W | 0x2000;
333 1.7 maxv L1[0x1000 / PAGE_SIZE] = PTE_P | PTE_W | 0x1000;
334 1.1 maxv }
335 1.1 maxv
336 1.12 maxv /*
337 1.12 maxv * 0x1000: MMIO address, unmapped
338 1.12 maxv * 0x2000: Instructions, mapped
339 1.12 maxv * 0x3000: L4
340 1.12 maxv * 0x4000: L3
341 1.12 maxv * 0x5000: L2
342 1.12 maxv * 0x6000: L1
343 1.12 maxv */
344 1.1 maxv static void
345 1.12 maxv test_vm64(void)
346 1.1 maxv {
347 1.12 maxv struct nvmm_machine mach;
348 1.12 maxv struct nvmm_vcpu vcpu;
349 1.12 maxv size_t i;
350 1.12 maxv
351 1.12 maxv if (nvmm_machine_create(&mach) == -1)
352 1.12 maxv err(errno, "nvmm_machine_create");
353 1.12 maxv if (nvmm_vcpu_create(&mach, 0, &vcpu) == -1)
354 1.12 maxv err(errno, "nvmm_vcpu_create");
355 1.12 maxv nvmm_machine_configure(&mach, NVMM_MACH_CONF_CALLBACKS, &callbacks);
356 1.12 maxv map_pages64(&mach);
357 1.1 maxv
358 1.12 maxv for (i = 0; tests64[i].name != NULL; i++) {
359 1.12 maxv reset_machine64(&mach, &vcpu);
360 1.12 maxv run_test(&mach, &vcpu, &tests64[i]);
361 1.1 maxv }
362 1.1 maxv
363 1.12 maxv if (nvmm_machine_destroy(&mach) == -1)
364 1.12 maxv err(errno, "nvmm_machine_destroy");
365 1.1 maxv }
366 1.2 maxv
367 1.12 maxv /* -------------------------------------------------------------------------- */
368 1.1 maxv
369 1.12 maxv extern uint8_t test_16bit_1_begin, test_16bit_1_end;
370 1.12 maxv extern uint8_t test_16bit_2_begin, test_16bit_2_end;
371 1.12 maxv extern uint8_t test_16bit_3_begin, test_16bit_3_end;
372 1.12 maxv extern uint8_t test_16bit_4_begin, test_16bit_4_end;
373 1.12 maxv extern uint8_t test_16bit_5_begin, test_16bit_5_end;
374 1.12 maxv
375 1.12 maxv static const struct test tests16[] = {
376 1.12 maxv { "16bit test1 - MOV single", &test_16bit_1_begin, &test_16bit_1_end,
377 1.12 maxv 0x023, 0x10f1 - 0x1000 },
378 1.12 maxv { "16bit test2 - MOV dual", &test_16bit_2_begin, &test_16bit_2_end,
379 1.12 maxv 0x123, 0x10f3 - 0x1000 },
380 1.12 maxv { "16bit test3 - MOV dual+disp", &test_16bit_3_begin, &test_16bit_3_end,
381 1.12 maxv 0x678, 0x10f1 - 0x1000 },
382 1.12 maxv { "16bit test4 - Mixed", &test_16bit_4_begin, &test_16bit_4_end,
383 1.12 maxv 0x1011, 0x10f6 - 0x1000 },
384 1.12 maxv { "16bit test5 - disp16-only", &test_16bit_5_begin, &test_16bit_5_end,
385 1.12 maxv 0x12, 0x1234 - 0x1000 },
386 1.12 maxv { NULL, NULL, NULL, -1, -1 }
387 1.12 maxv };
388 1.1 maxv
389 1.1 maxv static void
390 1.12 maxv reset_machine16(struct nvmm_machine *mach, struct nvmm_vcpu *vcpu)
391 1.1 maxv {
392 1.12 maxv struct nvmm_x64_state *state = vcpu->state;
393 1.1 maxv
394 1.12 maxv if (nvmm_vcpu_getstate(mach, vcpu, NVMM_X64_STATE_ALL) == -1)
395 1.12 maxv err(errno, "nvmm_vcpu_setstate");
396 1.1 maxv
397 1.12 maxv state->segs[NVMM_X64_SEG_CS].base = 0;
398 1.12 maxv state->segs[NVMM_X64_SEG_CS].limit = 0xFFFFFFFF;
399 1.12 maxv state->gprs[NVMM_X64_GPR_RIP] = 0x2000;
400 1.1 maxv
401 1.12 maxv if (nvmm_vcpu_setstate(mach, vcpu, NVMM_X64_STATE_ALL) == -1)
402 1.12 maxv err(errno, "nvmm_vcpu_setstate");
403 1.1 maxv }
404 1.1 maxv
405 1.1 maxv static void
406 1.12 maxv map_pages16(struct nvmm_machine *mach)
407 1.1 maxv {
408 1.12 maxv int ret;
409 1.1 maxv
410 1.12 maxv instbuf = mmap(NULL, PAGE_SIZE, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
411 1.12 maxv -1, 0);
412 1.12 maxv if (instbuf == MAP_FAILED)
413 1.12 maxv err(errno, "mmap");
414 1.1 maxv
415 1.12 maxv if (nvmm_hva_map(mach, (uintptr_t)instbuf, PAGE_SIZE) == -1)
416 1.12 maxv err(errno, "nvmm_hva_map");
417 1.12 maxv ret = nvmm_gpa_map(mach, (uintptr_t)instbuf, 0x2000, PAGE_SIZE,
418 1.12 maxv PROT_READ|PROT_EXEC);
419 1.12 maxv if (ret == -1)
420 1.12 maxv err(errno, "nvmm_gpa_map");
421 1.1 maxv }
422 1.1 maxv
423 1.1 maxv /*
424 1.1 maxv * 0x1000: MMIO address, unmapped
425 1.1 maxv * 0x2000: Instructions, mapped
426 1.1 maxv */
427 1.12 maxv static void
428 1.12 maxv test_vm16(void)
429 1.1 maxv {
430 1.1 maxv struct nvmm_machine mach;
431 1.11 maxv struct nvmm_vcpu vcpu;
432 1.1 maxv size_t i;
433 1.1 maxv
434 1.1 maxv if (nvmm_machine_create(&mach) == -1)
435 1.1 maxv err(errno, "nvmm_machine_create");
436 1.11 maxv if (nvmm_vcpu_create(&mach, 0, &vcpu) == -1)
437 1.1 maxv err(errno, "nvmm_vcpu_create");
438 1.10 maxv nvmm_machine_configure(&mach, NVMM_MACH_CONF_CALLBACKS, &callbacks);
439 1.12 maxv map_pages16(&mach);
440 1.1 maxv
441 1.12 maxv for (i = 0; tests16[i].name != NULL; i++) {
442 1.12 maxv reset_machine16(&mach, &vcpu);
443 1.12 maxv run_test(&mach, &vcpu, &tests16[i]);
444 1.1 maxv }
445 1.1 maxv
446 1.12 maxv if (nvmm_machine_destroy(&mach) == -1)
447 1.12 maxv err(errno, "nvmm_machine_destroy");
448 1.12 maxv }
449 1.12 maxv
450 1.12 maxv /* -------------------------------------------------------------------------- */
451 1.12 maxv
452 1.12 maxv int main(int argc, char *argv[])
453 1.12 maxv {
454 1.12 maxv test_vm64();
455 1.12 maxv test_vm16();
456 1.1 maxv return 0;
457 1.1 maxv }
458