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x86/process: Allow runtime control of Speculative Store Bypass
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1/* SPDX-License-Identifier: GPL-2.0 */
2
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3#ifndef _ASM_X86_NOSPEC_BRANCH_H_
4#define _ASM_X86_NOSPEC_BRANCH_H_
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5
6#include <asm/alternative.h>
7#include <asm/alternative-asm.h>
8#include <asm/cpufeatures.h>
ea00f301 9#include <asm/msr-index.h>
76b04384 10
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11/*
12 * Fill the CPU return stack buffer.
13 *
14 * Each entry in the RSB, if used for a speculative 'ret', contains an
15 * infinite 'pause; lfence; jmp' loop to capture speculative execution.
16 *
17 * This is required in various cases for retpoline and IBRS-based
18 * mitigations for the Spectre variant 2 vulnerability. Sometimes to
19 * eliminate potentially bogus entries from the RSB, and sometimes
20 * purely to ensure that it doesn't get empty, which on some CPUs would
21 * allow predictions from other (unwanted!) sources to be used.
22 *
23 * We define a CPP macro such that it can be used from both .S files and
24 * inline assembly. It's possible to do a .macro and then include that
25 * from C via asm(".include <asm/nospec-branch.h>") but let's not go there.
26 */
27
28#define RSB_CLEAR_LOOPS 32 /* To forcibly overwrite all entries */
29#define RSB_FILL_LOOPS 16 /* To avoid underflow */
30
31/*
32 * Google experimented with loop-unrolling and this turned out to be
33 * the optimal version — two calls, each with their own speculation
34 * trap should their return address end up getting used, in a loop.
35 */
36#define __FILL_RETURN_BUFFER(reg, nr, sp) \
37 mov $(nr/2), reg; \
38771: \
39 call 772f; \
40773: /* speculation trap */ \
41 pause; \
42 lfence; \
43 jmp 773b; \
44772: \
45 call 774f; \
46775: /* speculation trap */ \
47 pause; \
48 lfence; \
49 jmp 775b; \
50774: \
51 dec reg; \
52 jnz 771b; \
53 add $(BITS_PER_LONG/8) * nr, sp;
54
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55#ifdef __ASSEMBLY__
56
57/*
58 * This should be used immediately before a retpoline alternative. It tells
59 * objtool where the retpolines are so that it can make sense of the control
60 * flow by just reading the original instruction(s) and ignoring the
61 * alternatives.
62 */
63.macro ANNOTATE_NOSPEC_ALTERNATIVE
64 .Lannotate_\@:
65 .pushsection .discard.nospec
66 .long .Lannotate_\@ - .
67 .popsection
68.endm
69
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70/*
71 * This should be used immediately before an indirect jump/call. It tells
72 * objtool the subsequent indirect jump/call is vouched safe for retpoline
73 * builds.
74 */
75.macro ANNOTATE_RETPOLINE_SAFE
76 .Lannotate_\@:
77 .pushsection .discard.retpoline_safe
78 _ASM_PTR .Lannotate_\@
79 .popsection
80.endm
81
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82/*
83 * These are the bare retpoline primitives for indirect jmp and call.
84 * Do not use these directly; they only exist to make the ALTERNATIVE
85 * invocation below less ugly.
86 */
87.macro RETPOLINE_JMP reg:req
88 call .Ldo_rop_\@
89.Lspec_trap_\@:
90 pause
28d437d5 91 lfence
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92 jmp .Lspec_trap_\@
93.Ldo_rop_\@:
94 mov \reg, (%_ASM_SP)
95 ret
96.endm
97
98/*
99 * This is a wrapper around RETPOLINE_JMP so the called function in reg
100 * returns to the instruction after the macro.
101 */
102.macro RETPOLINE_CALL reg:req
103 jmp .Ldo_call_\@
104.Ldo_retpoline_jmp_\@:
105 RETPOLINE_JMP \reg
106.Ldo_call_\@:
107 call .Ldo_retpoline_jmp_\@
108.endm
109
110/*
111 * JMP_NOSPEC and CALL_NOSPEC macros can be used instead of a simple
112 * indirect jmp/call which may be susceptible to the Spectre variant 2
113 * attack.
114 */
115.macro JMP_NOSPEC reg:req
116#ifdef CONFIG_RETPOLINE
117 ANNOTATE_NOSPEC_ALTERNATIVE
9e0e3c51 118 ALTERNATIVE_2 __stringify(ANNOTATE_RETPOLINE_SAFE; jmp *\reg), \
76b04384 119 __stringify(RETPOLINE_JMP \reg), X86_FEATURE_RETPOLINE, \
9e0e3c51 120 __stringify(lfence; ANNOTATE_RETPOLINE_SAFE; jmp *\reg), X86_FEATURE_RETPOLINE_AMD
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121#else
122 jmp *\reg
123#endif
124.endm
125
126.macro CALL_NOSPEC reg:req
127#ifdef CONFIG_RETPOLINE
128 ANNOTATE_NOSPEC_ALTERNATIVE
9e0e3c51 129 ALTERNATIVE_2 __stringify(ANNOTATE_RETPOLINE_SAFE; call *\reg), \
76b04384 130 __stringify(RETPOLINE_CALL \reg), X86_FEATURE_RETPOLINE,\
9e0e3c51 131 __stringify(lfence; ANNOTATE_RETPOLINE_SAFE; call *\reg), X86_FEATURE_RETPOLINE_AMD
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132#else
133 call *\reg
134#endif
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135.endm
136
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137 /*
138 * A simpler FILL_RETURN_BUFFER macro. Don't make people use the CPP
139 * monstrosity above, manually.
140 */
141.macro FILL_RETURN_BUFFER reg:req nr:req ftr:req
117cc7a9 142#ifdef CONFIG_RETPOLINE
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143 ANNOTATE_NOSPEC_ALTERNATIVE
144 ALTERNATIVE "jmp .Lskip_rsb_\@", \
145 __stringify(__FILL_RETURN_BUFFER(\reg,\nr,%_ASM_SP)) \
146 \ftr
147.Lskip_rsb_\@:
117cc7a9 148#endif
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149.endm
150
151#else /* __ASSEMBLY__ */
152
153#define ANNOTATE_NOSPEC_ALTERNATIVE \
154 "999:\n\t" \
155 ".pushsection .discard.nospec\n\t" \
156 ".long 999b - .\n\t" \
157 ".popsection\n\t"
158
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159#define ANNOTATE_RETPOLINE_SAFE \
160 "999:\n\t" \
161 ".pushsection .discard.retpoline_safe\n\t" \
162 _ASM_PTR " 999b\n\t" \
163 ".popsection\n\t"
164
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165#if defined(CONFIG_X86_64) && defined(RETPOLINE)
166
167/*
168 * Since the inline asm uses the %V modifier which is only in newer GCC,
169 * the 64-bit one is dependent on RETPOLINE not CONFIG_RETPOLINE.
170 */
171# define CALL_NOSPEC \
172 ANNOTATE_NOSPEC_ALTERNATIVE \
173 ALTERNATIVE( \
9e0e3c51 174 ANNOTATE_RETPOLINE_SAFE \
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175 "call *%[thunk_target]\n", \
176 "call __x86_indirect_thunk_%V[thunk_target]\n", \
177 X86_FEATURE_RETPOLINE)
178# define THUNK_TARGET(addr) [thunk_target] "r" (addr)
179
180#elif defined(CONFIG_X86_32) && defined(CONFIG_RETPOLINE)
181/*
182 * For i386 we use the original ret-equivalent retpoline, because
183 * otherwise we'll run out of registers. We don't care about CET
184 * here, anyway.
185 */
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186# define CALL_NOSPEC \
187 ALTERNATIVE( \
188 ANNOTATE_RETPOLINE_SAFE \
189 "call *%[thunk_target]\n", \
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190 " jmp 904f;\n" \
191 " .align 16\n" \
192 "901: call 903f;\n" \
193 "902: pause;\n" \
28d437d5 194 " lfence;\n" \
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195 " jmp 902b;\n" \
196 " .align 16\n" \
197 "903: addl $4, %%esp;\n" \
198 " pushl %[thunk_target];\n" \
199 " ret;\n" \
200 " .align 16\n" \
201 "904: call 901b;\n", \
202 X86_FEATURE_RETPOLINE)
203
204# define THUNK_TARGET(addr) [thunk_target] "rm" (addr)
117cc7a9 205#else /* No retpoline for C / inline asm */
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206# define CALL_NOSPEC "call *%[thunk_target]\n"
207# define THUNK_TARGET(addr) [thunk_target] "rm" (addr)
208#endif
209
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210/* The Spectre V2 mitigation variants */
211enum spectre_v2_mitigation {
212 SPECTRE_V2_NONE,
213 SPECTRE_V2_RETPOLINE_MINIMAL,
214 SPECTRE_V2_RETPOLINE_MINIMAL_AMD,
215 SPECTRE_V2_RETPOLINE_GENERIC,
216 SPECTRE_V2_RETPOLINE_AMD,
217 SPECTRE_V2_IBRS,
218};
219
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220/*
221 * The Intel specification for the SPEC_CTRL MSR requires that we
222 * preserve any already set reserved bits at boot time (e.g. for
223 * future additions that this kernel is not currently aware of).
224 * We then set any additional mitigation bits that we want
225 * ourselves and always use this as the base for SPEC_CTRL.
226 * We also use this when handling guest entry/exit as below.
227 */
228extern void x86_spec_ctrl_set(u64);
229extern u64 x86_spec_ctrl_get_default(void);
230
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231/* The Speculative Store Bypass disable variants */
232enum ssb_mitigation {
233 SPEC_STORE_BYPASS_NONE,
234 SPEC_STORE_BYPASS_DISABLE,
235};
236
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237extern char __indirect_thunk_start[];
238extern char __indirect_thunk_end[];
239
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240/*
241 * On VMEXIT we must ensure that no RSB predictions learned in the guest
242 * can be followed in the host, by overwriting the RSB completely. Both
243 * retpoline and IBRS mitigations for Spectre v2 need this; only on future
af189c95 244 * CPUs with IBRS_ALL *might* it be avoided.
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245 */
246static inline void vmexit_fill_RSB(void)
247{
248#ifdef CONFIG_RETPOLINE
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249 unsigned long loops;
250
251 asm volatile (ANNOTATE_NOSPEC_ALTERNATIVE
252 ALTERNATIVE("jmp 910f",
253 __stringify(__FILL_RETURN_BUFFER(%0, RSB_CLEAR_LOOPS, %1)),
254 X86_FEATURE_RETPOLINE)
255 "910:"
256 : "=r" (loops), ASM_CALL_CONSTRAINT
257 : : "memory" );
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258#endif
259}
3f7d8755 260
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261static __always_inline
262void alternative_msr_write(unsigned int msr, u64 val, unsigned int feature)
263{
264 asm volatile(ALTERNATIVE("", "wrmsr", %c[feature])
265 : : "c" (msr),
266 "a" (val),
267 "d" (val >> 32),
268 [feature] "i" (feature)
269 : "memory");
270}
dd84441a 271
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272static inline void indirect_branch_prediction_barrier(void)
273{
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274 u64 val = PRED_CMD_IBPB;
275
276 alternative_msr_write(MSR_IA32_PRED_CMD, val, X86_FEATURE_USE_IBPB);
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277}
278
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279/*
280 * With retpoline, we must use IBRS to restrict branch prediction
281 * before calling into firmware.
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282 *
283 * (Implemented as CPP macros due to header hell.)
dd84441a 284 */
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285#define firmware_restrict_branch_speculation_start() \
286do { \
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287 u64 val = x86_spec_ctrl_get_default() | SPEC_CTRL_IBRS; \
288 \
d72f4e29 289 preempt_disable(); \
1b86883c 290 alternative_msr_write(MSR_IA32_SPEC_CTRL, val, \
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291 X86_FEATURE_USE_IBRS_FW); \
292} while (0)
dd84441a 293
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294#define firmware_restrict_branch_speculation_end() \
295do { \
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296 u64 val = x86_spec_ctrl_get_default(); \
297 \
298 alternative_msr_write(MSR_IA32_SPEC_CTRL, val, \
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299 X86_FEATURE_USE_IBRS_FW); \
300 preempt_enable(); \
301} while (0)
20ffa1ca 302
76b04384 303#endif /* __ASSEMBLY__ */
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304
305/*
306 * Below is used in the eBPF JIT compiler and emits the byte sequence
307 * for the following assembly:
308 *
309 * With retpolines configured:
310 *
311 * callq do_rop
312 * spec_trap:
313 * pause
314 * lfence
315 * jmp spec_trap
316 * do_rop:
317 * mov %rax,(%rsp)
318 * retq
319 *
320 * Without retpolines configured:
321 *
322 * jmp *%rax
323 */
324#ifdef CONFIG_RETPOLINE
325# define RETPOLINE_RAX_BPF_JIT_SIZE 17
326# define RETPOLINE_RAX_BPF_JIT() \
327 EMIT1_off32(0xE8, 7); /* callq do_rop */ \
328 /* spec_trap: */ \
329 EMIT2(0xF3, 0x90); /* pause */ \
330 EMIT3(0x0F, 0xAE, 0xE8); /* lfence */ \
331 EMIT2(0xEB, 0xF9); /* jmp spec_trap */ \
332 /* do_rop: */ \
333 EMIT4(0x48, 0x89, 0x04, 0x24); /* mov %rax,(%rsp) */ \
334 EMIT1(0xC3); /* retq */
335#else
336# define RETPOLINE_RAX_BPF_JIT_SIZE 2
337# define RETPOLINE_RAX_BPF_JIT() \
338 EMIT2(0xFF, 0xE0); /* jmp *%rax */
339#endif
340
7a32fc51 341#endif /* _ASM_X86_NOSPEC_BRANCH_H_ */