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Kostya Serebryany019b76f2011-11-30 01:07:02 +00001//===-- asan_mapping.h ------------------------------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file is a part of AddressSanitizer, an address sanity checker.
11//
12// Defines ASan memory mapping.
13//===----------------------------------------------------------------------===//
14#ifndef ASAN_MAPPING_H
15#define ASAN_MAPPING_H
16
17#include "asan_internal.h"
18
19// The full explanation of the memory mapping could be found here:
20// http://code.google.com/p/address-sanitizer/wiki/AddressSanitizerAlgorithm
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +000021//
22// Typical shadow mapping on Linux/x86_64 with SHADOW_OFFSET == 0x00007fff8000:
23// || `[0x10007fff8000, 0x7fffffffffff]` || HighMem ||
24// || `[0x02008fff7000, 0x10007fff7fff]` || HighShadow ||
25// || `[0x00008fff7000, 0x02008fff6fff]` || ShadowGap ||
26// || `[0x00007fff8000, 0x00008fff6fff]` || LowShadow ||
27// || `[0x000000000000, 0x00007fff7fff]` || LowMem ||
28//
29// When SHADOW_OFFSET is zero (-pie):
30// || `[0x100000000000, 0x7fffffffffff]` || HighMem ||
31// || `[0x020000000000, 0x0fffffffffff]` || HighShadow ||
32// || `[0x000000040000, 0x01ffffffffff]` || ShadowGap ||
33//
34// Special case when something is already mapped between
Kostya Serebryanyabebb572013-02-28 12:28:37 +000035// 0x003000000000 and 0x005000000000 (e.g. when prelink is installed):
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +000036// || `[0x10007fff8000, 0x7fffffffffff]` || HighMem ||
37// || `[0x02008fff7000, 0x10007fff7fff]` || HighShadow ||
Kostya Serebryanyabebb572013-02-28 12:28:37 +000038// || `[0x005000000000, 0x02008fff6fff]` || ShadowGap3 ||
39// || `[0x003000000000, 0x004fffffffff]` || MidMem ||
40// || `[0x000a7fff8000, 0x002fffffffff]` || ShadowGap2 ||
41// || `[0x00067fff8000, 0x000a7fff7fff]` || MidShadow ||
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +000042// || `[0x00008fff7000, 0x00067fff7fff]` || ShadowGap ||
43// || `[0x00007fff8000, 0x00008fff6fff]` || LowShadow ||
44// || `[0x000000000000, 0x00007fff7fff]` || LowMem ||
45//
Kostya Serebryany88d0eac2014-03-27 07:36:26 +000046// Default Linux/i386 mapping on x86_64 machine:
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +000047// || `[0x40000000, 0xffffffff]` || HighMem ||
48// || `[0x28000000, 0x3fffffff]` || HighShadow ||
49// || `[0x24000000, 0x27ffffff]` || ShadowGap ||
50// || `[0x20000000, 0x23ffffff]` || LowShadow ||
51// || `[0x00000000, 0x1fffffff]` || LowMem ||
Kostya Serebryanyc1aa0e82013-06-03 14:49:25 +000052//
Kostya Serebryany88d0eac2014-03-27 07:36:26 +000053// Default Linux/i386 mapping on i386 machine
54// (addresses starting with 0xc0000000 are reserved
55// for kernel and thus not sanitized):
56// || `[0x38000000, 0xbfffffff]` || HighMem ||
57// || `[0x27000000, 0x37ffffff]` || HighShadow ||
58// || `[0x24000000, 0x26ffffff]` || ShadowGap ||
59// || `[0x20000000, 0x23ffffff]` || LowShadow ||
60// || `[0x00000000, 0x1fffffff]` || LowMem ||
61//
Kumar Sukhani14a4f242015-01-31 09:13:58 +000062// Default Linux/MIPS32 mapping:
Kostya Serebryanyc5bd9812014-11-04 19:46:15 +000063// || `[0x2aaa0000, 0xffffffff]` || HighMem ||
64// || `[0x0fff4000, 0x2aa9ffff]` || HighShadow ||
65// || `[0x0bff4000, 0x0fff3fff]` || ShadowGap ||
66// || `[0x0aaa0000, 0x0bff3fff]` || LowShadow ||
67// || `[0x00000000, 0x0aa9ffff]` || LowMem ||
Viktor Kutuzov626edb62014-05-12 11:03:46 +000068//
Kumar Sukhani14a4f242015-01-31 09:13:58 +000069// Default Linux/MIPS64 mapping:
70// || `[0x4000000000, 0xffffffffff]` || HighMem ||
71// || `[0x2800000000, 0x3fffffffff]` || HighShadow ||
72// || `[0x2400000000, 0x27ffffffff]` || ShadowGap ||
73// || `[0x2000000000, 0x23ffffffff]` || LowShadow ||
74// || `[0x0000000000, 0x1fffffffff]` || LowMem ||
75//
Adhemerval Zanella975998b2015-08-05 15:13:33 +000076// Default Linux/AArch64 (39-bit VMA) mapping:
77// || `[0x2000000000, 0x7fffffffff]` || highmem ||
78// || `[0x1400000000, 0x1fffffffff]` || highshadow ||
79// || `[0x1200000000, 0x13ffffffff]` || shadowgap ||
80// || `[0x1000000000, 0x11ffffffff]` || lowshadow ||
81// || `[0x0000000000, 0x0fffffffff]` || lowmem ||
82//
Adhemerval Zanellaeccc9392015-08-20 18:49:40 +000083// Default Linux/AArch64 (42-bit VMA) mapping:
84// || `[0x10000000000, 0x3ffffffffff]` || highmem ||
85// || `[0x0a000000000, 0x0ffffffffff]` || highshadow ||
86// || `[0x09000000000, 0x09fffffffff]` || shadowgap ||
87// || `[0x08000000000, 0x08fffffffff]` || lowshadow ||
88// || `[0x00000000000, 0x07fffffffff]` || lowmem ||
89//
Viktor Kutuzov626edb62014-05-12 11:03:46 +000090// Shadow mapping on FreeBSD/x86-64 with SHADOW_OFFSET == 0x400000000000:
91// || `[0x500000000000, 0x7fffffffffff]` || HighMem ||
92// || `[0x4a0000000000, 0x4fffffffffff]` || HighShadow ||
93// || `[0x480000000000, 0x49ffffffffff]` || ShadowGap ||
94// || `[0x400000000000, 0x47ffffffffff]` || LowShadow ||
95// || `[0x000000000000, 0x3fffffffffff]` || LowMem ||
96//
97// Shadow mapping on FreeBSD/i386 with SHADOW_OFFSET == 0x40000000:
98// || `[0x60000000, 0xffffffff]` || HighMem ||
99// || `[0x4c000000, 0x5fffffff]` || HighShadow ||
100// || `[0x48000000, 0x4bffffff]` || ShadowGap ||
101// || `[0x40000000, 0x47ffffff]` || LowShadow ||
102// || `[0x00000000, 0x3fffffff]` || LowMem ||
Timur Iskhodzhanov00ede842015-01-12 17:38:58 +0000103//
104// Default Windows/i386 mapping:
Timur Iskhodzhanovb4b6b742015-01-22 12:24:21 +0000105// (the exact location of HighShadow/HighMem may vary depending
106// on WoW64, /LARGEADDRESSAWARE, etc).
107// || `[0x50000000, 0xffffffff]` || HighMem ||
108// || `[0x3a000000, 0x4fffffff]` || HighShadow ||
109// || `[0x36000000, 0x39ffffff]` || ShadowGap ||
110// || `[0x30000000, 0x35ffffff]` || LowShadow ||
111// || `[0x00000000, 0x2fffffff]` || LowMem ||
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000112
Alexey Samsonov48e25642013-09-16 15:45:06 +0000113static const u64 kDefaultShadowScale = 3;
Alexander Potapenkoa51e4832014-04-23 17:14:45 +0000114static const u64 kDefaultShadowOffset32 = 1ULL << 29; // 0x20000000
Alexey Samsonov48e25642013-09-16 15:45:06 +0000115static const u64 kDefaultShadowOffset64 = 1ULL << 44;
116static const u64 kDefaultShort64bitShadowOffset = 0x7FFF8000; // < 2G.
Chris Bienemand1a14442015-06-23 21:39:54 +0000117static const u64 kIosShadowOffset32 = 1ULL << 30; // 0x40000000
118static const u64 kIosShadowOffset64 = 0x130000000;
119static const u64 kIosSimShadowOffset32 = 1ULL << 30;
120static const u64 kIosSimShadowOffset64 = kDefaultShadowOffset64;
Adhemerval Zanellaeccc9392015-08-20 18:49:40 +0000121#if SANITIZER_AARCH64_VMA == 39
Kostya Serebryanyc98ce282014-02-13 07:50:20 +0000122static const u64 kAArch64_ShadowOffset64 = 1ULL << 36;
Adhemerval Zanellaeccc9392015-08-20 18:49:40 +0000123#elif SANITIZER_AARCH64_VMA == 42
124static const u64 kAArch64_ShadowOffset64 = 1ULL << 39;
125#endif
Kostya Serebryanyc5bd9812014-11-04 19:46:15 +0000126static const u64 kMIPS32_ShadowOffset32 = 0x0aaa0000;
Kumar Sukhani14a4f242015-01-31 09:13:58 +0000127static const u64 kMIPS64_ShadowOffset64 = 1ULL << 37;
Evgeniy Stepanovdd7cb282014-05-30 08:52:03 +0000128static const u64 kPPC64_ShadowOffset64 = 1ULL << 41;
Viktor Kutuzov626edb62014-05-12 11:03:46 +0000129static const u64 kFreeBSD_ShadowOffset32 = 1ULL << 30; // 0x40000000
130static const u64 kFreeBSD_ShadowOffset64 = 1ULL << 46; // 0x400000000000
Timur Iskhodzhanovb4b6b742015-01-22 12:24:21 +0000131static const u64 kWindowsShadowOffset32 = 3ULL << 28; // 0x30000000
Alexey Samsonov48e25642013-09-16 15:45:06 +0000132
Evgeniy Stepanove259b652014-01-16 10:16:19 +0000133#define SHADOW_SCALE kDefaultShadowScale
Evgeniy Stepanov4d81f862015-07-29 18:22:25 +0000134
135
136#if SANITIZER_WORDSIZE == 32
137# if SANITIZER_ANDROID
138# define SHADOW_OFFSET (0)
139# elif defined(__mips__)
Evgeniy Stepanove259b652014-01-16 10:16:19 +0000140# define SHADOW_OFFSET kMIPS32_ShadowOffset32
Viktor Kutuzov626edb62014-05-12 11:03:46 +0000141# elif SANITIZER_FREEBSD
142# define SHADOW_OFFSET kFreeBSD_ShadowOffset32
Timur Iskhodzhanov00ede842015-01-12 17:38:58 +0000143# elif SANITIZER_WINDOWS
144# define SHADOW_OFFSET kWindowsShadowOffset32
Chris Bienemand1a14442015-06-23 21:39:54 +0000145# elif SANITIZER_IOSSIM
146# define SHADOW_OFFSET kIosSimShadowOffset32
147# elif SANITIZER_IOS
148# define SHADOW_OFFSET kIosShadowOffset32
Evgeniy Stepanov8f247012012-05-23 11:52:37 +0000149# else
Timur Iskhodzhanov00ede842015-01-12 17:38:58 +0000150# define SHADOW_OFFSET kDefaultShadowOffset32
Evgeniy Stepanove259b652014-01-16 10:16:19 +0000151# endif
Evgeniy Stepanov4d81f862015-07-29 18:22:25 +0000152#else
Kostya Serebryanyc98ce282014-02-13 07:50:20 +0000153# if defined(__aarch64__)
154# define SHADOW_OFFSET kAArch64_ShadowOffset64
Evgeniy Stepanovdd7cb282014-05-30 08:52:03 +0000155# elif defined(__powerpc64__)
156# define SHADOW_OFFSET kPPC64_ShadowOffset64
Viktor Kutuzov626edb62014-05-12 11:03:46 +0000157# elif SANITIZER_FREEBSD
158# define SHADOW_OFFSET kFreeBSD_ShadowOffset64
Kostya Serebryanyc98ce282014-02-13 07:50:20 +0000159# elif SANITIZER_MAC
Evgeniy Stepanove259b652014-01-16 10:16:19 +0000160# define SHADOW_OFFSET kDefaultShadowOffset64
Kostya Serebryany2dd74372014-11-12 18:23:16 +0000161# elif defined(__mips64)
162# define SHADOW_OFFSET kMIPS64_ShadowOffset64
Chris Bienemand1a14442015-06-23 21:39:54 +0000163# elif SANITIZER_IOSSIM
164# define SHADOW_OFFSET kIosSimShadowOffset64
165# elif SANITIZER_IOS
166# define SHADOW_OFFSET kIosShadowOffset64
Evgeniy Stepanove259b652014-01-16 10:16:19 +0000167# else
168# define SHADOW_OFFSET kDefaultShort64bitShadowOffset
Evgeniy Stepanov8f247012012-05-23 11:52:37 +0000169# endif
Evgeniy Stepanove259b652014-01-16 10:16:19 +0000170#endif
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000171
172#define SHADOW_GRANULARITY (1ULL << SHADOW_SCALE)
Kostya Serebryany8f267132013-01-23 13:27:43 +0000173#define MEM_TO_SHADOW(mem) (((mem) >> SHADOW_SCALE) + (SHADOW_OFFSET))
Evgeniy Stepanovd989be12012-05-12 12:33:10 +0000174#define SHADOW_TO_MEM(shadow) (((shadow) - SHADOW_OFFSET) << SHADOW_SCALE)
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000175
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000176#define kLowMemBeg 0
177#define kLowMemEnd (SHADOW_OFFSET ? SHADOW_OFFSET - 1 : 0)
178
179#define kLowShadowBeg SHADOW_OFFSET
180#define kLowShadowEnd MEM_TO_SHADOW(kLowMemEnd)
181
182#define kHighMemBeg (MEM_TO_SHADOW(kHighMemEnd) + 1)
183
184#define kHighShadowBeg MEM_TO_SHADOW(kHighMemBeg)
185#define kHighShadowEnd MEM_TO_SHADOW(kHighMemEnd)
186
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000187# define kMidShadowBeg MEM_TO_SHADOW(kMidMemBeg)
188# define kMidShadowEnd MEM_TO_SHADOW(kMidMemEnd)
189
Kostya Serebryanydf198db2012-11-24 05:03:11 +0000190// With the zero shadow base we can not actually map pages starting from 0.
191// This constant is somewhat arbitrary.
Evgeniy Stepanovaa915882015-08-07 22:38:44 +0000192#define kZeroBaseShadowStart 0
193#define kZeroBaseMaxShadowStart (1 << 18)
Kostya Serebryanydf198db2012-11-24 05:03:11 +0000194
195#define kShadowGapBeg (kLowShadowEnd ? kLowShadowEnd + 1 \
196 : kZeroBaseShadowStart)
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000197#define kShadowGapEnd ((kMidMemBeg ? kMidShadowBeg : kHighShadowBeg) - 1)
198
199#define kShadowGap2Beg (kMidMemBeg ? kMidShadowEnd + 1 : 0)
200#define kShadowGap2End (kMidMemBeg ? kMidMemBeg - 1 : 0)
201
202#define kShadowGap3Beg (kMidMemBeg ? kMidMemEnd + 1 : 0)
203#define kShadowGap3End (kMidMemBeg ? kHighShadowBeg - 1 : 0)
204
205#define DO_ASAN_MAPPING_PROFILE 0 // Set to 1 to profile the functions below.
206
207#if DO_ASAN_MAPPING_PROFILE
208# define PROFILE_ASAN_MAPPING() AsanMappingProfile[__LINE__]++;
209#else
210# define PROFILE_ASAN_MAPPING()
211#endif
212
213// If 1, all shadow boundaries are constants.
214// Don't set to 1 other than for testing.
215#define ASAN_FIXED_MAPPING 0
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000216
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000217namespace __asan {
218
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000219extern uptr AsanMappingProfile[];
220
221#if ASAN_FIXED_MAPPING
222// Fixed mapping for 64-bit Linux. Mostly used for performance comparison
223// with non-fixed mapping. As of r175253 (Feb 2013) the performance
224// difference between fixed and non-fixed mapping is below the noise level.
225static uptr kHighMemEnd = 0x7fffffffffffULL;
226static uptr kMidMemBeg = 0x3000000000ULL;
Kostya Serebryanyabebb572013-02-28 12:28:37 +0000227static uptr kMidMemEnd = 0x4fffffffffULL;
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000228#else
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000229extern uptr kHighMemEnd, kMidMemBeg, kMidMemEnd; // Initialized in __asan_init.
230#endif
Kostya Serebryany8f267132013-01-23 13:27:43 +0000231
Kostya Serebryany8d032042012-05-31 14:35:53 +0000232static inline bool AddrIsInLowMem(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000233 PROFILE_ASAN_MAPPING();
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000234 return a < kLowMemEnd;
235}
236
Kostya Serebryany8d032042012-05-31 14:35:53 +0000237static inline bool AddrIsInLowShadow(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000238 PROFILE_ASAN_MAPPING();
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000239 return a >= kLowShadowBeg && a <= kLowShadowEnd;
240}
241
Kostya Serebryany8d032042012-05-31 14:35:53 +0000242static inline bool AddrIsInHighMem(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000243 PROFILE_ASAN_MAPPING();
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000244 return a >= kHighMemBeg && a <= kHighMemEnd;
245}
246
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000247static inline bool AddrIsInMidMem(uptr a) {
248 PROFILE_ASAN_MAPPING();
249 return kMidMemBeg && a >= kMidMemBeg && a <= kMidMemEnd;
250}
251
Kostya Serebryany8d032042012-05-31 14:35:53 +0000252static inline bool AddrIsInMem(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000253 PROFILE_ASAN_MAPPING();
254 return AddrIsInLowMem(a) || AddrIsInMidMem(a) || AddrIsInHighMem(a);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000255}
256
Kostya Serebryany8d032042012-05-31 14:35:53 +0000257static inline uptr MemToShadow(uptr p) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000258 PROFILE_ASAN_MAPPING();
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000259 CHECK(AddrIsInMem(p));
260 return MEM_TO_SHADOW(p);
261}
262
Kostya Serebryany8d032042012-05-31 14:35:53 +0000263static inline bool AddrIsInHighShadow(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000264 PROFILE_ASAN_MAPPING();
265 return a >= kHighShadowBeg && a <= kHighMemEnd;
266}
267
268static inline bool AddrIsInMidShadow(uptr a) {
269 PROFILE_ASAN_MAPPING();
270 return kMidMemBeg && a >= kMidShadowBeg && a <= kMidMemEnd;
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000271}
272
Kostya Serebryany8d032042012-05-31 14:35:53 +0000273static inline bool AddrIsInShadow(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000274 PROFILE_ASAN_MAPPING();
275 return AddrIsInLowShadow(a) || AddrIsInMidShadow(a) || AddrIsInHighShadow(a);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000276}
277
Alexander Potapenko7f3e84c2012-07-23 08:22:27 +0000278static inline bool AddrIsInShadowGap(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000279 PROFILE_ASAN_MAPPING();
280 if (kMidMemBeg) {
281 if (a <= kShadowGapEnd)
282 return SHADOW_OFFSET == 0 || a >= kShadowGapBeg;
283 return (a >= kShadowGap2Beg && a <= kShadowGap2End) ||
284 (a >= kShadowGap3Beg && a <= kShadowGap3End);
285 }
Alexey Samsonov6ad1d782013-01-21 10:51:18 +0000286 // In zero-based shadow mode we treat addresses near zero as addresses
287 // in shadow gap as well.
Alexey Samsonov362286f2013-01-21 11:36:38 +0000288 if (SHADOW_OFFSET == 0)
Alexey Samsonov6ad1d782013-01-21 10:51:18 +0000289 return a <= kShadowGapEnd;
Alexander Potapenko7f3e84c2012-07-23 08:22:27 +0000290 return a >= kShadowGapBeg && a <= kShadowGapEnd;
291}
292
Kostya Serebryany8d032042012-05-31 14:35:53 +0000293static inline bool AddrIsAlignedByGranularity(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000294 PROFILE_ASAN_MAPPING();
Kostya Serebryany15dd3f22011-11-30 18:50:23 +0000295 return (a & (SHADOW_GRANULARITY - 1)) == 0;
296}
297
Kostya Serebryany8d032042012-05-31 14:35:53 +0000298static inline bool AddressIsPoisoned(uptr a) {
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000299 PROFILE_ASAN_MAPPING();
Kostya Serebryany8d032042012-05-31 14:35:53 +0000300 const uptr kAccessSize = 1;
Kostya Serebryanyab5be262013-02-21 07:07:39 +0000301 u8 *shadow_address = (u8*)MEM_TO_SHADOW(a);
Kostya Serebryany1d35d152012-05-31 15:02:07 +0000302 s8 shadow_value = *shadow_address;
Kostya Serebryanyfd203712012-03-15 01:18:06 +0000303 if (shadow_value) {
Kostya Serebryany1d35d152012-05-31 15:02:07 +0000304 u8 last_accessed_byte = (a & (SHADOW_GRANULARITY - 1))
Kostya Serebryanyfd203712012-03-15 01:18:06 +0000305 + kAccessSize - 1;
306 return (last_accessed_byte >= shadow_value);
307 }
308 return false;
309}
310
Kostya Serebryanyfd61b6f2013-02-15 12:00:24 +0000311// Must be after all calls to PROFILE_ASAN_MAPPING().
312static const uptr kAsanMappingProfileSize = __LINE__;
313
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000314} // namespace __asan
315
316#endif // ASAN_MAPPING_H