xref: /netbsd-src/sys/arch/aarch64/include/asan.h (revision 4def9d8babeb63d4624e044b3ee90c28f8d5cb82)
1*4def9d8bSskrll /*	$NetBSD: asan.h,v 1.19 2023/04/16 14:01:51 skrll Exp $	*/
2ed955d81Smaxv 
3ed955d81Smaxv /*
4b813e108Smaxv  * Copyright (c) 2018-2020 Maxime Villard, m00nbsd.net
5ed955d81Smaxv  * All rights reserved.
6ed955d81Smaxv  *
7b813e108Smaxv  * This code is part of the KASAN subsystem of the NetBSD kernel.
8ed955d81Smaxv  *
9ed955d81Smaxv  * Redistribution and use in source and binary forms, with or without
10ed955d81Smaxv  * modification, are permitted provided that the following conditions
11ed955d81Smaxv  * are met:
12ed955d81Smaxv  * 1. Redistributions of source code must retain the above copyright
13ed955d81Smaxv  *    notice, this list of conditions and the following disclaimer.
14ed955d81Smaxv  * 2. Redistributions in binary form must reproduce the above copyright
15ed955d81Smaxv  *    notice, this list of conditions and the following disclaimer in the
16ed955d81Smaxv  *    documentation and/or other materials provided with the distribution.
17ed955d81Smaxv  *
18b813e108Smaxv  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19b813e108Smaxv  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20b813e108Smaxv  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21b813e108Smaxv  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22b813e108Smaxv  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
23b813e108Smaxv  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
24b813e108Smaxv  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
25b813e108Smaxv  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
26b813e108Smaxv  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27b813e108Smaxv  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28b813e108Smaxv  * SUCH DAMAGE.
29ed955d81Smaxv  */
30ed955d81Smaxv 
31ed955d81Smaxv #include <sys/atomic.h>
32642c61d6Sskrll #include <sys/ksyms.h>
33642c61d6Sskrll 
349fc45356Sriastradh #include <uvm/uvm.h>
359fc45356Sriastradh 
36ed955d81Smaxv #include <aarch64/pmap.h>
37ed955d81Smaxv #include <aarch64/vmparam.h>
38ed955d81Smaxv #include <aarch64/armreg.h>
39f1cb8e84Smaxv #include <aarch64/machdep.h>
40ed955d81Smaxv 
41cde0ef3dSskrll #include <arm/cpufunc.h>
42cde0ef3dSskrll 
43ed955d81Smaxv #define __MD_VIRTUAL_SHIFT	48	/* 49bit address space, cut half */
44e2cfaf39Smaxv #define __MD_KERNMEM_BASE	0xFFFF000000000000 /* kern mem base address */
45ed955d81Smaxv 
46ed955d81Smaxv #define __MD_SHADOW_SIZE	(1ULL << (__MD_VIRTUAL_SHIFT - KASAN_SHADOW_SCALE_SHIFT))
473b86f967Sskrll #define KASAN_MD_SHADOW_START	(AARCH64_DIRECTMAP_END)
48ed955d81Smaxv #define KASAN_MD_SHADOW_END	(KASAN_MD_SHADOW_START + __MD_SHADOW_SIZE)
49ed955d81Smaxv 
50f1cb8e84Smaxv static bool __md_early __read_mostly = true;
51f1cb8e84Smaxv 
52ed955d81Smaxv static inline int8_t *
kasan_md_addr_to_shad(const void * addr)53ed955d81Smaxv kasan_md_addr_to_shad(const void *addr)
54ed955d81Smaxv {
55ed955d81Smaxv 	vaddr_t va = (vaddr_t)addr;
56ed955d81Smaxv 	return (int8_t *)(KASAN_MD_SHADOW_START +
57e2cfaf39Smaxv 	    ((va - __MD_KERNMEM_BASE) >> KASAN_SHADOW_SCALE_SHIFT));
58ed955d81Smaxv }
59ed955d81Smaxv 
60ed955d81Smaxv static inline bool
kasan_md_unsupported(vaddr_t addr)61ed955d81Smaxv kasan_md_unsupported(vaddr_t addr)
62ed955d81Smaxv {
63ed955d81Smaxv 	return (addr < VM_MIN_KERNEL_ADDRESS) ||
64*4def9d8bSskrll 	    (addr >= VM_KERNEL_IO_BASE);
65ed955d81Smaxv }
66ed955d81Smaxv 
67ed955d81Smaxv static paddr_t
__md_palloc(void)68ed955d81Smaxv __md_palloc(void)
69ed955d81Smaxv {
70ed955d81Smaxv 	paddr_t pa;
71ed955d81Smaxv 
7232baacd5Sskrll 	if (__predict_false(__md_early)) {
73ce95ee17Sskrll 		pa = (paddr_t)pmapboot_pagealloc();
7432baacd5Sskrll 		return pa;
7532baacd5Sskrll 	}
76ed955d81Smaxv 
7732baacd5Sskrll 	vaddr_t va;
7832baacd5Sskrll 	if (!uvm.page_init_done) {
7932baacd5Sskrll 		va = uvm_pageboot_alloc(PAGE_SIZE);
8032baacd5Sskrll 		pa = AARCH64_KVA_TO_PA(va);
8132baacd5Sskrll 	} else {
8232baacd5Sskrll 		struct vm_page *pg;
8332baacd5Sskrll retry:
8432baacd5Sskrll 		pg = uvm_pagealloc(NULL, 0, NULL, 0);
8532baacd5Sskrll 		if (pg == NULL) {
8632baacd5Sskrll 			uvm_wait(__func__);
8732baacd5Sskrll 			goto retry;
8832baacd5Sskrll 		}
8932baacd5Sskrll 
9032baacd5Sskrll 		pa = VM_PAGE_TO_PHYS(pg);
9132baacd5Sskrll 		va = AARCH64_PA_TO_KVA(pa);
9232baacd5Sskrll 	}
9332baacd5Sskrll 
9432baacd5Sskrll 	__builtin_memset((void *)va, 0, PAGE_SIZE);
95ed955d81Smaxv 	return pa;
96ed955d81Smaxv }
97ed955d81Smaxv 
98f06251c4Smaxv static inline paddr_t
__md_palloc_large(void)99f06251c4Smaxv __md_palloc_large(void)
100f06251c4Smaxv {
101f06251c4Smaxv 	struct pglist pglist;
102f06251c4Smaxv 	int ret;
103f06251c4Smaxv 
104f06251c4Smaxv 	if (!uvm.page_init_done)
105f06251c4Smaxv 		return 0;
106f06251c4Smaxv 
107f06251c4Smaxv 	ret = uvm_pglistalloc(L2_SIZE, 0, ~0UL, L2_SIZE, 0,
108f06251c4Smaxv 	    &pglist, 1, 0);
109f06251c4Smaxv 	if (ret != 0)
110f06251c4Smaxv 		return 0;
111f06251c4Smaxv 
112f06251c4Smaxv 	/* The page may not be zeroed. */
113f06251c4Smaxv 	return VM_PAGE_TO_PHYS(TAILQ_FIRST(&pglist));
114f06251c4Smaxv }
115f06251c4Smaxv 
116ed955d81Smaxv static void
kasan_md_shadow_map_page(vaddr_t va)117ed955d81Smaxv kasan_md_shadow_map_page(vaddr_t va)
118ed955d81Smaxv {
119ed955d81Smaxv 	pd_entry_t *l0, *l1, *l2, *l3;
120ed955d81Smaxv 	paddr_t l0pa, pa;
121ed955d81Smaxv 	pd_entry_t pde;
122ed955d81Smaxv 	size_t idx;
123ed955d81Smaxv 
124ed955d81Smaxv 	l0pa = reg_ttbr1_el1_read();
125f1cb8e84Smaxv 	if (__predict_false(__md_early)) {
126f1cb8e84Smaxv 		l0 = (void *)KERN_PHYSTOV(l0pa);
127f1cb8e84Smaxv 	} else {
128ed955d81Smaxv 		l0 = (void *)AARCH64_PA_TO_KVA(l0pa);
129f1cb8e84Smaxv 	}
130ed955d81Smaxv 
131ed955d81Smaxv 	idx = l0pde_index(va);
132ed955d81Smaxv 	pde = l0[idx];
133ed955d81Smaxv 	if (!l0pde_valid(pde)) {
134ed955d81Smaxv 		pa = __md_palloc();
135ed955d81Smaxv 		atomic_swap_64(&l0[idx], pa | L0_TABLE);
136ed955d81Smaxv 	} else {
137ed955d81Smaxv 		pa = l0pde_pa(pde);
138ed955d81Smaxv 	}
139f1cb8e84Smaxv 	if (__predict_false(__md_early)) {
140f1cb8e84Smaxv 		l1 = (void *)KERN_PHYSTOV(pa);
141f1cb8e84Smaxv 	} else {
142ed955d81Smaxv 		l1 = (void *)AARCH64_PA_TO_KVA(pa);
143f1cb8e84Smaxv 	}
144ed955d81Smaxv 
145ed955d81Smaxv 	idx = l1pde_index(va);
146ed955d81Smaxv 	pde = l1[idx];
147ed955d81Smaxv 	if (!l1pde_valid(pde)) {
148ed955d81Smaxv 		pa = __md_palloc();
149ed955d81Smaxv 		atomic_swap_64(&l1[idx], pa | L1_TABLE);
150ed955d81Smaxv 	} else {
151ed955d81Smaxv 		pa = l1pde_pa(pde);
152ed955d81Smaxv 	}
153f1cb8e84Smaxv 	if (__predict_false(__md_early)) {
154f1cb8e84Smaxv 		l2 = (void *)KERN_PHYSTOV(pa);
155f1cb8e84Smaxv 	} else {
156ed955d81Smaxv 		l2 = (void *)AARCH64_PA_TO_KVA(pa);
157f1cb8e84Smaxv 	}
158ed955d81Smaxv 
159ed955d81Smaxv 	idx = l2pde_index(va);
160ed955d81Smaxv 	pde = l2[idx];
161ed955d81Smaxv 	if (!l2pde_valid(pde)) {
162f06251c4Smaxv 		/* If possible, use L2_BLOCK to map it in advance. */
163f06251c4Smaxv 		if ((pa = __md_palloc_large()) != 0) {
164f06251c4Smaxv 			atomic_swap_64(&l2[idx], pa | L2_BLOCK |
165f06251c4Smaxv 			    LX_BLKPAG_UXN | LX_BLKPAG_PXN | LX_BLKPAG_AF |
166f06251c4Smaxv 			    LX_BLKPAG_SH_IS | LX_BLKPAG_AP_RW);
167f06251c4Smaxv 			aarch64_tlbi_by_va(va);
168f06251c4Smaxv 			__builtin_memset((void *)va, 0, L2_SIZE);
169f06251c4Smaxv 			return;
170f06251c4Smaxv 		}
171ed955d81Smaxv 		pa = __md_palloc();
172ed955d81Smaxv 		atomic_swap_64(&l2[idx], pa | L2_TABLE);
173f06251c4Smaxv 	} else if (l2pde_is_block(pde)) {
174f06251c4Smaxv 		/* This VA is already mapped as a block. */
175f06251c4Smaxv 		return;
176ed955d81Smaxv 	} else {
177ed955d81Smaxv 		pa = l2pde_pa(pde);
178ed955d81Smaxv 	}
179f1cb8e84Smaxv 	if (__predict_false(__md_early)) {
180f1cb8e84Smaxv 		l3 = (void *)KERN_PHYSTOV(pa);
181f1cb8e84Smaxv 	} else {
182ed955d81Smaxv 		l3 = (void *)AARCH64_PA_TO_KVA(pa);
183f1cb8e84Smaxv 	}
184ed955d81Smaxv 
185ed955d81Smaxv 	idx = l3pte_index(va);
186ed955d81Smaxv 	pde = l3[idx];
187ed955d81Smaxv 	if (!l3pte_valid(pde)) {
188ed955d81Smaxv 		pa = __md_palloc();
189ed955d81Smaxv 		atomic_swap_64(&l3[idx], pa | L3_PAGE | LX_BLKPAG_UXN |
190bc55635bSryo 		    LX_BLKPAG_PXN | LX_BLKPAG_AF | LX_BLKPAG_SH_IS |
191bbf99531Sskrll 		    LX_BLKPAG_AP_RW | LX_BLKPAG_ATTR_NORMAL_WB);
192ed955d81Smaxv 	}
1931208aa4dSskrll 	dsb(ishst);
1941208aa4dSskrll 	isb();
195ed955d81Smaxv }
196ed955d81Smaxv 
197f1cb8e84Smaxv static void
kasan_md_early_init(void * stack)198f1cb8e84Smaxv kasan_md_early_init(void *stack)
199f1cb8e84Smaxv {
200f1cb8e84Smaxv 	kasan_shadow_map(stack, USPACE);
201f1cb8e84Smaxv 	__md_early = false;
202f1cb8e84Smaxv }
203ed955d81Smaxv 
204ed955d81Smaxv static void
kasan_md_init(void)205ed955d81Smaxv kasan_md_init(void)
206ed955d81Smaxv {
207ed955d81Smaxv 
208ed955d81Smaxv 	CTASSERT((__MD_SHADOW_SIZE / L0_SIZE) == 64);
209ed955d81Smaxv 
21001099b44Sskrll 	extern vaddr_t kasan_kernelstart;
21101099b44Sskrll 	extern vaddr_t kasan_kernelsize;
21201099b44Sskrll 
21301099b44Sskrll 	kasan_shadow_map((void *)kasan_kernelstart, kasan_kernelsize);
21401099b44Sskrll 
215ed955d81Smaxv 	/* The VAs we've created until now. */
2169744a491Sskrll 	vaddr_t eva = pmap_growkernel(VM_KERNEL_VM_BASE);
21701099b44Sskrll 	kasan_shadow_map((void *)VM_KERNEL_VM_BASE, eva - VM_KERNEL_VM_BASE);
218ed955d81Smaxv }
219ed955d81Smaxv 
220642c61d6Sskrll static inline bool
__md_unwind_end(const char * name)221642c61d6Sskrll __md_unwind_end(const char *name)
222642c61d6Sskrll {
223642c61d6Sskrll 	if (!strncmp(name, "el0_trap", 8) ||
224642c61d6Sskrll 	    !strncmp(name, "el1_trap", 8)) {
225642c61d6Sskrll 		return true;
226642c61d6Sskrll 	}
227642c61d6Sskrll 
228642c61d6Sskrll 	return false;
229642c61d6Sskrll }
230642c61d6Sskrll 
231642c61d6Sskrll static void
kasan_md_unwind(void)232642c61d6Sskrll kasan_md_unwind(void)
233642c61d6Sskrll {
234642c61d6Sskrll 	uint64_t lr, *fp;
235642c61d6Sskrll 	const char *mod;
236642c61d6Sskrll 	const char *sym;
237642c61d6Sskrll 	size_t nsym;
238642c61d6Sskrll 	int error;
239642c61d6Sskrll 
240642c61d6Sskrll 	fp = (uint64_t *)__builtin_frame_address(0);
241642c61d6Sskrll 	nsym = 0;
242642c61d6Sskrll 
243642c61d6Sskrll 	while (1) {
244642c61d6Sskrll 		/*
245642c61d6Sskrll 		 * normal stack frame
246642c61d6Sskrll 		 *  fp[0]  saved fp(x29) value
247642c61d6Sskrll 		 *  fp[1]  saved lr(x30) value
248642c61d6Sskrll 		 */
249642c61d6Sskrll 		lr = fp[1];
250642c61d6Sskrll 
251642c61d6Sskrll 		if (lr < VM_MIN_KERNEL_ADDRESS) {
252642c61d6Sskrll 			break;
253642c61d6Sskrll 		}
254642c61d6Sskrll 		error = ksyms_getname(&mod, &sym, (vaddr_t)lr, KSYMS_PROC);
255642c61d6Sskrll 		if (error) {
256642c61d6Sskrll 			break;
257642c61d6Sskrll 		}
258642c61d6Sskrll 		printf("#%zu %p in %s <%s>\n", nsym, (void *)lr, sym, mod);
259642c61d6Sskrll 		if (__md_unwind_end(sym)) {
260642c61d6Sskrll 			break;
261642c61d6Sskrll 		}
262642c61d6Sskrll 
263642c61d6Sskrll 		fp = (uint64_t *)fp[0];
264642c61d6Sskrll 		if (fp == NULL) {
265642c61d6Sskrll 			break;
266642c61d6Sskrll 		}
267642c61d6Sskrll 		nsym++;
268642c61d6Sskrll 
269642c61d6Sskrll 		if (nsym >= 15) {
270642c61d6Sskrll 			break;
271642c61d6Sskrll 		}
272642c61d6Sskrll 	}
273642c61d6Sskrll }
274