msan.h revision 1.1 1 1.1 maxv /* $NetBSD: msan.h,v 1.1 2019/11/14 16:23:52 maxv Exp $ */
2 1.1 maxv
3 1.1 maxv /*
4 1.1 maxv * Copyright (c) 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 <sys/ksyms.h>
33 1.1 maxv
34 1.1 maxv #include <amd64/pmap.h>
35 1.1 maxv #include <amd64/vmparam.h>
36 1.1 maxv
37 1.1 maxv #ifdef __HAVE_PCPU_AREA
38 1.1 maxv #error "PCPU area not allowed with KMSAN"
39 1.1 maxv #endif
40 1.1 maxv #ifdef __HAVE_DIRECT_MAP
41 1.1 maxv #error "DMAP not allowed with KMSAN"
42 1.1 maxv #endif
43 1.1 maxv
44 1.1 maxv /*
45 1.1 maxv * One big shadow, divided in two sub-shadows (SHAD and ORIG), themselves
46 1.1 maxv * divided in two regions (MAIN and KERN).
47 1.1 maxv */
48 1.1 maxv
49 1.1 maxv #define __MD_SHADOW_SIZE 0x20000000000ULL /* 4 * NBPD_L4 */
50 1.1 maxv #define __MD_SHADOW_START (VA_SIGN_NEG((L4_SLOT_KMSAN * NBPD_L4)))
51 1.1 maxv #define __MD_SHADOW_END (__MD_SHADOW_START + __MD_SHADOW_SIZE)
52 1.1 maxv
53 1.1 maxv #define __MD_SHAD_MAIN_START (__MD_SHADOW_START)
54 1.1 maxv #define __MD_SHAD_KERN_START (__MD_SHADOW_START + 0x8000000000ULL)
55 1.1 maxv
56 1.1 maxv #define __MD_ORIG_MAIN_START (__MD_SHAD_KERN_START + 0x8000000000ULL)
57 1.1 maxv #define __MD_ORIG_KERN_START (__MD_ORIG_MAIN_START + 0x8000000000ULL)
58 1.1 maxv
59 1.1 maxv #define __MD_PTR_BASE 0xFFFFFFFF80000000ULL
60 1.1 maxv #define __MD_ORIG_TYPE __BITS(31,28)
61 1.1 maxv
62 1.1 maxv static inline int8_t *
63 1.1 maxv kmsan_md_addr_to_shad(const void *addr)
64 1.1 maxv {
65 1.1 maxv vaddr_t va = (vaddr_t)addr;
66 1.1 maxv
67 1.1 maxv if (va >= vm_min_kernel_address && va < vm_max_kernel_address) {
68 1.1 maxv return (int8_t *)(__MD_SHAD_MAIN_START + (va - vm_min_kernel_address));
69 1.1 maxv } else if (va >= KERNBASE) {
70 1.1 maxv return (int8_t *)(__MD_SHAD_KERN_START + (va - KERNBASE));
71 1.1 maxv } else {
72 1.1 maxv panic("%s: impossible, va=%p", __func__, (void *)va);
73 1.1 maxv }
74 1.1 maxv }
75 1.1 maxv
76 1.1 maxv static inline int8_t *
77 1.1 maxv kmsan_md_addr_to_orig(const void *addr)
78 1.1 maxv {
79 1.1 maxv vaddr_t va = (vaddr_t)addr;
80 1.1 maxv
81 1.1 maxv if (va >= vm_min_kernel_address && va < vm_max_kernel_address) {
82 1.1 maxv return (int8_t *)(__MD_ORIG_MAIN_START + (va - vm_min_kernel_address));
83 1.1 maxv } else if (va >= KERNBASE) {
84 1.1 maxv return (int8_t *)(__MD_ORIG_KERN_START + (va - KERNBASE));
85 1.1 maxv } else {
86 1.1 maxv panic("%s: impossible, va=%p", __func__, (void *)va);
87 1.1 maxv }
88 1.1 maxv }
89 1.1 maxv
90 1.1 maxv static inline bool
91 1.1 maxv kmsan_md_unsupported(vaddr_t addr)
92 1.1 maxv {
93 1.1 maxv return (addr >= (vaddr_t)PTE_BASE &&
94 1.1 maxv addr < ((vaddr_t)PTE_BASE + NBPD_L4));
95 1.1 maxv }
96 1.1 maxv
97 1.1 maxv static inline paddr_t
98 1.1 maxv __md_palloc(void)
99 1.1 maxv {
100 1.1 maxv return pmap_get_physpage();
101 1.1 maxv }
102 1.1 maxv
103 1.1 maxv static void
104 1.1 maxv kmsan_md_shadow_map_page(vaddr_t va)
105 1.1 maxv {
106 1.1 maxv paddr_t pa;
107 1.1 maxv
108 1.1 maxv KASSERT(va >= __MD_SHADOW_START && va < __MD_SHADOW_END);
109 1.1 maxv
110 1.1 maxv if (!pmap_valid_entry(L4_BASE[pl4_i(va)])) {
111 1.1 maxv pa = __md_palloc();
112 1.1 maxv L4_BASE[pl4_i(va)] = pa | PTE_W | pmap_pg_nx | PTE_P;
113 1.1 maxv }
114 1.1 maxv if (!pmap_valid_entry(L3_BASE[pl3_i(va)])) {
115 1.1 maxv pa = __md_palloc();
116 1.1 maxv L3_BASE[pl3_i(va)] = pa | PTE_W | pmap_pg_nx | PTE_P;
117 1.1 maxv }
118 1.1 maxv if (!pmap_valid_entry(L2_BASE[pl2_i(va)])) {
119 1.1 maxv pa = __md_palloc();
120 1.1 maxv L2_BASE[pl2_i(va)] = pa | PTE_W | pmap_pg_nx | PTE_P;
121 1.1 maxv }
122 1.1 maxv if (!pmap_valid_entry(L1_BASE[pl1_i(va)])) {
123 1.1 maxv pa = __md_palloc();
124 1.1 maxv L1_BASE[pl1_i(va)] = pa | PTE_W | pmap_pg_g | pmap_pg_nx | PTE_P;
125 1.1 maxv }
126 1.1 maxv }
127 1.1 maxv
128 1.1 maxv static void
129 1.1 maxv kmsan_md_init(void)
130 1.1 maxv {
131 1.1 maxv extern struct bootspace bootspace;
132 1.1 maxv size_t i;
133 1.1 maxv
134 1.1 maxv CTASSERT((__MD_SHADOW_SIZE / NBPD_L4) == NL4_SLOT_KMSAN);
135 1.1 maxv
136 1.1 maxv /* Kernel. */
137 1.1 maxv for (i = 0; i < BTSPACE_NSEGS; i++) {
138 1.1 maxv if (bootspace.segs[i].type == BTSEG_NONE) {
139 1.1 maxv continue;
140 1.1 maxv }
141 1.1 maxv kmsan_shadow_map((void *)bootspace.segs[i].va,
142 1.1 maxv bootspace.segs[i].sz);
143 1.1 maxv }
144 1.1 maxv
145 1.1 maxv /* Boot region. */
146 1.1 maxv kmsan_shadow_map((void *)bootspace.boot.va, bootspace.boot.sz);
147 1.1 maxv
148 1.1 maxv /* Module map. */
149 1.1 maxv kmsan_shadow_map((void *)bootspace.smodule,
150 1.1 maxv (size_t)(bootspace.emodule - bootspace.smodule));
151 1.1 maxv
152 1.1 maxv /* The bootstrap spare va. */
153 1.1 maxv kmsan_shadow_map((void *)bootspace.spareva, PAGE_SIZE);
154 1.1 maxv }
155 1.1 maxv
156 1.1 maxv static inline msan_orig_t
157 1.1 maxv kmsan_md_orig_encode(int type, uintptr_t ptr)
158 1.1 maxv {
159 1.1 maxv msan_orig_t ret;
160 1.1 maxv
161 1.1 maxv ret = (ptr & 0xFFFFFFFF) & ~__MD_ORIG_TYPE;
162 1.1 maxv ret |= __SHIFTIN(type, __MD_ORIG_TYPE);
163 1.1 maxv
164 1.1 maxv return ret;
165 1.1 maxv }
166 1.1 maxv
167 1.1 maxv static inline void
168 1.1 maxv kmsan_md_orig_decode(msan_orig_t orig, int *type, uintptr_t *ptr)
169 1.1 maxv {
170 1.1 maxv *type = __SHIFTOUT(orig, __MD_ORIG_TYPE);
171 1.1 maxv *ptr = (uintptr_t)(orig & ~__MD_ORIG_TYPE) | __MD_PTR_BASE;
172 1.1 maxv }
173 1.1 maxv
174 1.1 maxv static inline bool
175 1.1 maxv kmsan_md_is_pc(uintptr_t ptr)
176 1.1 maxv {
177 1.1 maxv extern uint8_t __rodata_start;
178 1.1 maxv
179 1.1 maxv return (ptr < (uintptr_t)&__rodata_start);
180 1.1 maxv }
181 1.1 maxv
182 1.1 maxv static inline bool
183 1.1 maxv __md_unwind_end(const char *name)
184 1.1 maxv {
185 1.1 maxv if (!strcmp(name, "syscall") ||
186 1.1 maxv !strcmp(name, "alltraps") ||
187 1.1 maxv !strcmp(name, "handle_syscall") ||
188 1.1 maxv !strncmp(name, "Xtrap", 5) ||
189 1.1 maxv !strncmp(name, "Xintr", 5) ||
190 1.1 maxv !strncmp(name, "Xhandle", 7) ||
191 1.1 maxv !strncmp(name, "Xresume", 7) ||
192 1.1 maxv !strncmp(name, "Xstray", 6) ||
193 1.1 maxv !strncmp(name, "Xhold", 5) ||
194 1.1 maxv !strncmp(name, "Xrecurse", 8) ||
195 1.1 maxv !strcmp(name, "Xdoreti") ||
196 1.1 maxv !strncmp(name, "Xsoft", 5)) {
197 1.1 maxv return true;
198 1.1 maxv }
199 1.1 maxv
200 1.1 maxv return false;
201 1.1 maxv }
202 1.1 maxv
203 1.1 maxv static void
204 1.1 maxv kmsan_md_unwind(void)
205 1.1 maxv {
206 1.1 maxv uint64_t *rbp, rip;
207 1.1 maxv const char *mod;
208 1.1 maxv const char *sym;
209 1.1 maxv size_t nsym;
210 1.1 maxv int error;
211 1.1 maxv
212 1.1 maxv rbp = (uint64_t *)__builtin_frame_address(0);
213 1.1 maxv nsym = 0;
214 1.1 maxv
215 1.1 maxv while (1) {
216 1.1 maxv /* 8(%rbp) contains the saved %rip. */
217 1.1 maxv rip = *(rbp + 1);
218 1.1 maxv
219 1.1 maxv if (rip < KERNBASE) {
220 1.1 maxv break;
221 1.1 maxv }
222 1.1 maxv error = ksyms_getname(&mod, &sym, (vaddr_t)rip, KSYMS_PROC);
223 1.1 maxv if (error) {
224 1.1 maxv break;
225 1.1 maxv }
226 1.1 maxv kmsan_printf("#%zu %p in %s <%s>\n", nsym, (void *)rip, sym, mod);
227 1.1 maxv if (__md_unwind_end(sym)) {
228 1.1 maxv break;
229 1.1 maxv }
230 1.1 maxv
231 1.1 maxv rbp = (uint64_t *)*(rbp);
232 1.1 maxv if (rbp == 0) {
233 1.1 maxv break;
234 1.1 maxv }
235 1.1 maxv nsym++;
236 1.1 maxv
237 1.1 maxv if (nsym >= 15) {
238 1.1 maxv break;
239 1.1 maxv }
240 1.1 maxv }
241 1.1 maxv }
242