1 /*
2  * Copyright (c) 2013-2021, ARM Limited and Contributors. All rights reserved.
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #ifndef CONTEXT_H
8 #define CONTEXT_H
9 
10 #include <lib/utils_def.h>
11 
12 /*******************************************************************************
13  * Constants that allow assembler code to access members of and the 'gp_regs'
14  * structure at their correct offsets.
15  ******************************************************************************/
16 #define CTX_GPREGS_OFFSET	U(0x0)
17 #define CTX_GPREG_X0		U(0x0)
18 #define CTX_GPREG_X1		U(0x8)
19 #define CTX_GPREG_X2		U(0x10)
20 #define CTX_GPREG_X3		U(0x18)
21 #define CTX_GPREG_X4		U(0x20)
22 #define CTX_GPREG_X5		U(0x28)
23 #define CTX_GPREG_X6		U(0x30)
24 #define CTX_GPREG_X7		U(0x38)
25 #define CTX_GPREG_X8		U(0x40)
26 #define CTX_GPREG_X9		U(0x48)
27 #define CTX_GPREG_X10		U(0x50)
28 #define CTX_GPREG_X11		U(0x58)
29 #define CTX_GPREG_X12		U(0x60)
30 #define CTX_GPREG_X13		U(0x68)
31 #define CTX_GPREG_X14		U(0x70)
32 #define CTX_GPREG_X15		U(0x78)
33 #define CTX_GPREG_X16		U(0x80)
34 #define CTX_GPREG_X17		U(0x88)
35 #define CTX_GPREG_X18		U(0x90)
36 #define CTX_GPREG_X19		U(0x98)
37 #define CTX_GPREG_X20		U(0xa0)
38 #define CTX_GPREG_X21		U(0xa8)
39 #define CTX_GPREG_X22		U(0xb0)
40 #define CTX_GPREG_X23		U(0xb8)
41 #define CTX_GPREG_X24		U(0xc0)
42 #define CTX_GPREG_X25		U(0xc8)
43 #define CTX_GPREG_X26		U(0xd0)
44 #define CTX_GPREG_X27		U(0xd8)
45 #define CTX_GPREG_X28		U(0xe0)
46 #define CTX_GPREG_X29		U(0xe8)
47 #define CTX_GPREG_LR		U(0xf0)
48 #define CTX_GPREG_SP_EL0	U(0xf8)
49 #define CTX_GPREGS_END		U(0x100)
50 
51 /*******************************************************************************
52  * Constants that allow assembler code to access members of and the 'el3_state'
53  * structure at their correct offsets. Note that some of the registers are only
54  * 32-bits wide but are stored as 64-bit values for convenience
55  ******************************************************************************/
56 #define CTX_EL3STATE_OFFSET	(CTX_GPREGS_OFFSET + CTX_GPREGS_END)
57 #define CTX_SCR_EL3		U(0x0)
58 #define CTX_ESR_EL3		U(0x8)
59 #define CTX_RUNTIME_SP		U(0x10)
60 #define CTX_SPSR_EL3		U(0x18)
61 #define CTX_ELR_EL3		U(0x20)
62 #define CTX_PMCR_EL0		U(0x28)
63 #define CTX_IS_IN_EL3		U(0x30)
64 #define CTX_CPTR_EL3		U(0x38)
65 #define CTX_ZCR_EL3		U(0x40)
66 #define CTX_EL3STATE_END	U(0x50) /* Align to the next 16 byte boundary */
67 
68 /*******************************************************************************
69  * Constants that allow assembler code to access members of and the
70  * 'el1_sys_regs' structure at their correct offsets. Note that some of the
71  * registers are only 32-bits wide but are stored as 64-bit values for
72  * convenience
73  ******************************************************************************/
74 #define CTX_EL1_SYSREGS_OFFSET	(CTX_EL3STATE_OFFSET + CTX_EL3STATE_END)
75 #define CTX_SPSR_EL1		U(0x0)
76 #define CTX_ELR_EL1		U(0x8)
77 #define CTX_SCTLR_EL1		U(0x10)
78 #define CTX_TCR_EL1		U(0x18)
79 #define CTX_CPACR_EL1		U(0x20)
80 #define CTX_CSSELR_EL1		U(0x28)
81 #define CTX_SP_EL1		U(0x30)
82 #define CTX_ESR_EL1		U(0x38)
83 #define CTX_TTBR0_EL1		U(0x40)
84 #define CTX_TTBR1_EL1		U(0x48)
85 #define CTX_MAIR_EL1		U(0x50)
86 #define CTX_AMAIR_EL1		U(0x58)
87 #define CTX_ACTLR_EL1		U(0x60)
88 #define CTX_TPIDR_EL1		U(0x68)
89 #define CTX_TPIDR_EL0		U(0x70)
90 #define CTX_TPIDRRO_EL0		U(0x78)
91 #define CTX_PAR_EL1		U(0x80)
92 #define CTX_FAR_EL1		U(0x88)
93 #define CTX_AFSR0_EL1		U(0x90)
94 #define CTX_AFSR1_EL1		U(0x98)
95 #define CTX_CONTEXTIDR_EL1	U(0xa0)
96 #define CTX_VBAR_EL1		U(0xa8)
97 
98 /*
99  * If the platform is AArch64-only, there is no need to save and restore these
100  * AArch32 registers.
101  */
102 #if CTX_INCLUDE_AARCH32_REGS
103 #define CTX_SPSR_ABT		U(0xb0)	/* Align to the next 16 byte boundary */
104 #define CTX_SPSR_UND		U(0xb8)
105 #define CTX_SPSR_IRQ		U(0xc0)
106 #define CTX_SPSR_FIQ		U(0xc8)
107 #define CTX_DACR32_EL2		U(0xd0)
108 #define CTX_IFSR32_EL2		U(0xd8)
109 #define CTX_AARCH32_END		U(0xe0) /* Align to the next 16 byte boundary */
110 #else
111 #define CTX_AARCH32_END		U(0xb0)	/* Align to the next 16 byte boundary */
112 #endif /* CTX_INCLUDE_AARCH32_REGS */
113 
114 /*
115  * If the timer registers aren't saved and restored, we don't have to reserve
116  * space for them in the context
117  */
118 #if NS_TIMER_SWITCH
119 #define CTX_CNTP_CTL_EL0	(CTX_AARCH32_END + U(0x0))
120 #define CTX_CNTP_CVAL_EL0	(CTX_AARCH32_END + U(0x8))
121 #define CTX_CNTV_CTL_EL0	(CTX_AARCH32_END + U(0x10))
122 #define CTX_CNTV_CVAL_EL0	(CTX_AARCH32_END + U(0x18))
123 #define CTX_CNTKCTL_EL1		(CTX_AARCH32_END + U(0x20))
124 #define CTX_TIMER_SYSREGS_END	(CTX_AARCH32_END + U(0x30)) /* Align to the next 16 byte boundary */
125 #else
126 #define CTX_TIMER_SYSREGS_END	CTX_AARCH32_END
127 #endif /* NS_TIMER_SWITCH */
128 
129 #if CTX_INCLUDE_MTE_REGS
130 #define CTX_TFSRE0_EL1		(CTX_TIMER_SYSREGS_END + U(0x0))
131 #define CTX_TFSR_EL1		(CTX_TIMER_SYSREGS_END + U(0x8))
132 #define CTX_RGSR_EL1		(CTX_TIMER_SYSREGS_END + U(0x10))
133 #define CTX_GCR_EL1		(CTX_TIMER_SYSREGS_END + U(0x18))
134 
135 /* Align to the next 16 byte boundary */
136 #define CTX_MTE_REGS_END	(CTX_TIMER_SYSREGS_END + U(0x20))
137 #else
138 #define CTX_MTE_REGS_END	CTX_TIMER_SYSREGS_END
139 #endif /* CTX_INCLUDE_MTE_REGS */
140 
141 /*
142  * End of system registers.
143  */
144 #define CTX_EL1_SYSREGS_END		CTX_MTE_REGS_END
145 
146 /*
147  * EL2 register set
148  */
149 
150 #if CTX_INCLUDE_EL2_REGS
151 /* For later discussion
152  * ICH_AP0R<n>_EL2
153  * ICH_AP1R<n>_EL2
154  * AMEVCNTVOFF0<n>_EL2
155  * AMEVCNTVOFF1<n>_EL2
156  * ICH_LR<n>_EL2
157  */
158 #define CTX_EL2_SYSREGS_OFFSET	(CTX_EL1_SYSREGS_OFFSET + CTX_EL1_SYSREGS_END)
159 
160 #define CTX_ACTLR_EL2		U(0x0)
161 #define CTX_AFSR0_EL2		U(0x8)
162 #define CTX_AFSR1_EL2		U(0x10)
163 #define CTX_AMAIR_EL2		U(0x18)
164 #define CTX_CNTHCTL_EL2		U(0x20)
165 #define CTX_CNTVOFF_EL2		U(0x28)
166 #define CTX_CPTR_EL2		U(0x30)
167 #define CTX_DBGVCR32_EL2	U(0x38)
168 #define CTX_ELR_EL2		U(0x40)
169 #define CTX_ESR_EL2		U(0x48)
170 #define CTX_FAR_EL2		U(0x50)
171 #define CTX_HACR_EL2		U(0x58)
172 #define CTX_HCR_EL2		U(0x60)
173 #define CTX_HPFAR_EL2		U(0x68)
174 #define CTX_HSTR_EL2		U(0x70)
175 #define CTX_ICC_SRE_EL2		U(0x78)
176 #define CTX_ICH_HCR_EL2		U(0x80)
177 #define CTX_ICH_VMCR_EL2	U(0x88)
178 #define CTX_MAIR_EL2		U(0x90)
179 #define CTX_MDCR_EL2		U(0x98)
180 #define CTX_PMSCR_EL2		U(0xa0)
181 #define CTX_SCTLR_EL2		U(0xa8)
182 #define CTX_SPSR_EL2		U(0xb0)
183 #define CTX_SP_EL2		U(0xb8)
184 #define CTX_TCR_EL2		U(0xc0)
185 #define CTX_TPIDR_EL2		U(0xc8)
186 #define CTX_TTBR0_EL2		U(0xd0)
187 #define CTX_VBAR_EL2		U(0xd8)
188 #define CTX_VMPIDR_EL2		U(0xe0)
189 #define CTX_VPIDR_EL2		U(0xe8)
190 #define CTX_VTCR_EL2		U(0xf0)
191 #define CTX_VTTBR_EL2		U(0xf8)
192 
193 // Only if MTE registers in use
194 #define CTX_TFSR_EL2		U(0x100)
195 
196 // Only if ENABLE_MPAM_FOR_LOWER_ELS==1
197 #define CTX_MPAM2_EL2		U(0x108)
198 #define CTX_MPAMHCR_EL2		U(0x110)
199 #define CTX_MPAMVPM0_EL2	U(0x118)
200 #define CTX_MPAMVPM1_EL2	U(0x120)
201 #define CTX_MPAMVPM2_EL2	U(0x128)
202 #define CTX_MPAMVPM3_EL2	U(0x130)
203 #define CTX_MPAMVPM4_EL2	U(0x138)
204 #define CTX_MPAMVPM5_EL2	U(0x140)
205 #define CTX_MPAMVPM6_EL2	U(0x148)
206 #define CTX_MPAMVPM7_EL2	U(0x150)
207 #define CTX_MPAMVPMV_EL2	U(0x158)
208 
209 // Starting with Armv8.6
210 #define CTX_HAFGRTR_EL2		U(0x160)
211 #define CTX_HDFGRTR_EL2		U(0x168)
212 #define CTX_HDFGWTR_EL2		U(0x170)
213 #define CTX_HFGITR_EL2		U(0x178)
214 #define CTX_HFGRTR_EL2		U(0x180)
215 #define CTX_HFGWTR_EL2		U(0x188)
216 #define CTX_CNTPOFF_EL2		U(0x190)
217 
218 // Starting with Armv8.4
219 #define CTX_CONTEXTIDR_EL2	U(0x198)
220 #define CTX_SDER32_EL2		U(0x1a0)
221 #define CTX_TTBR1_EL2		U(0x1a8)
222 #define CTX_VDISR_EL2		U(0x1b0)
223 #define CTX_VNCR_EL2		U(0x1b8)
224 #define CTX_VSESR_EL2		U(0x1c0)
225 #define CTX_VSTCR_EL2		U(0x1c8)
226 #define CTX_VSTTBR_EL2		U(0x1d0)
227 #define CTX_TRFCR_EL2		U(0x1d8)
228 
229 // Starting with Armv8.5
230 #define CTX_SCXTNUM_EL2		U(0x1e0)
231 /* Align to the next 16 byte boundary */
232 #define CTX_EL2_SYSREGS_END	U(0x1f0)
233 
234 #endif /* CTX_INCLUDE_EL2_REGS */
235 
236 /*******************************************************************************
237  * Constants that allow assembler code to access members of and the 'fp_regs'
238  * structure at their correct offsets.
239  ******************************************************************************/
240 #if CTX_INCLUDE_EL2_REGS
241 # define CTX_FPREGS_OFFSET	(CTX_EL2_SYSREGS_OFFSET + CTX_EL2_SYSREGS_END)
242 #else
243 # define CTX_FPREGS_OFFSET	(CTX_EL1_SYSREGS_OFFSET + CTX_EL1_SYSREGS_END)
244 #endif
245 #if CTX_INCLUDE_FPREGS
246 #define CTX_FP_Q0		U(0x0)
247 #define CTX_FP_Q1		U(0x10)
248 #define CTX_FP_Q2		U(0x20)
249 #define CTX_FP_Q3		U(0x30)
250 #define CTX_FP_Q4		U(0x40)
251 #define CTX_FP_Q5		U(0x50)
252 #define CTX_FP_Q6		U(0x60)
253 #define CTX_FP_Q7		U(0x70)
254 #define CTX_FP_Q8		U(0x80)
255 #define CTX_FP_Q9		U(0x90)
256 #define CTX_FP_Q10		U(0xa0)
257 #define CTX_FP_Q11		U(0xb0)
258 #define CTX_FP_Q12		U(0xc0)
259 #define CTX_FP_Q13		U(0xd0)
260 #define CTX_FP_Q14		U(0xe0)
261 #define CTX_FP_Q15		U(0xf0)
262 #define CTX_FP_Q16		U(0x100)
263 #define CTX_FP_Q17		U(0x110)
264 #define CTX_FP_Q18		U(0x120)
265 #define CTX_FP_Q19		U(0x130)
266 #define CTX_FP_Q20		U(0x140)
267 #define CTX_FP_Q21		U(0x150)
268 #define CTX_FP_Q22		U(0x160)
269 #define CTX_FP_Q23		U(0x170)
270 #define CTX_FP_Q24		U(0x180)
271 #define CTX_FP_Q25		U(0x190)
272 #define CTX_FP_Q26		U(0x1a0)
273 #define CTX_FP_Q27		U(0x1b0)
274 #define CTX_FP_Q28		U(0x1c0)
275 #define CTX_FP_Q29		U(0x1d0)
276 #define CTX_FP_Q30		U(0x1e0)
277 #define CTX_FP_Q31		U(0x1f0)
278 #define CTX_FP_FPSR		U(0x200)
279 #define CTX_FP_FPCR		U(0x208)
280 #if CTX_INCLUDE_AARCH32_REGS
281 #define CTX_FP_FPEXC32_EL2	U(0x210)
282 #define CTX_FPREGS_END		U(0x220) /* Align to the next 16 byte boundary */
283 #else
284 #define CTX_FPREGS_END		U(0x210) /* Align to the next 16 byte boundary */
285 #endif
286 #else
287 #define CTX_FPREGS_END		U(0)
288 #endif
289 
290 /*******************************************************************************
291  * Registers related to CVE-2018-3639
292  ******************************************************************************/
293 #define CTX_CVE_2018_3639_OFFSET	(CTX_FPREGS_OFFSET + CTX_FPREGS_END)
294 #define CTX_CVE_2018_3639_DISABLE	U(0)
295 #define CTX_CVE_2018_3639_END		U(0x10) /* Align to the next 16 byte boundary */
296 
297 /*******************************************************************************
298  * Registers related to ARMv8.3-PAuth.
299  ******************************************************************************/
300 #define CTX_PAUTH_REGS_OFFSET	(CTX_CVE_2018_3639_OFFSET + CTX_CVE_2018_3639_END)
301 #if CTX_INCLUDE_PAUTH_REGS
302 #define CTX_PACIAKEY_LO		U(0x0)
303 #define CTX_PACIAKEY_HI		U(0x8)
304 #define CTX_PACIBKEY_LO		U(0x10)
305 #define CTX_PACIBKEY_HI		U(0x18)
306 #define CTX_PACDAKEY_LO		U(0x20)
307 #define CTX_PACDAKEY_HI		U(0x28)
308 #define CTX_PACDBKEY_LO		U(0x30)
309 #define CTX_PACDBKEY_HI		U(0x38)
310 #define CTX_PACGAKEY_LO		U(0x40)
311 #define CTX_PACGAKEY_HI		U(0x48)
312 #define CTX_PAUTH_REGS_END	U(0x50) /* Align to the next 16 byte boundary */
313 #else
314 #define CTX_PAUTH_REGS_END	U(0)
315 #endif /* CTX_INCLUDE_PAUTH_REGS */
316 
317 #ifndef __ASSEMBLER__
318 
319 #include <stdint.h>
320 
321 #include <lib/cassert.h>
322 
323 /*
324  * Common constants to help define the 'cpu_context' structure and its
325  * members below.
326  */
327 #define DWORD_SHIFT		U(3)
328 #define DEFINE_REG_STRUCT(name, num_regs)	\
329 	typedef struct name {			\
330 		uint64_t ctx_regs[num_regs];	\
331 	}  __aligned(16) name##_t
332 
333 /* Constants to determine the size of individual context structures */
334 #define CTX_GPREG_ALL		(CTX_GPREGS_END >> DWORD_SHIFT)
335 #define CTX_EL1_SYSREGS_ALL	(CTX_EL1_SYSREGS_END >> DWORD_SHIFT)
336 #if CTX_INCLUDE_EL2_REGS
337 # define CTX_EL2_SYSREGS_ALL	(CTX_EL2_SYSREGS_END >> DWORD_SHIFT)
338 #endif
339 #if CTX_INCLUDE_FPREGS
340 # define CTX_FPREG_ALL		(CTX_FPREGS_END >> DWORD_SHIFT)
341 #endif
342 #define CTX_EL3STATE_ALL	(CTX_EL3STATE_END >> DWORD_SHIFT)
343 #define CTX_CVE_2018_3639_ALL	(CTX_CVE_2018_3639_END >> DWORD_SHIFT)
344 #if CTX_INCLUDE_PAUTH_REGS
345 # define CTX_PAUTH_REGS_ALL	(CTX_PAUTH_REGS_END >> DWORD_SHIFT)
346 #endif
347 
348 /*
349  * AArch64 general purpose register context structure. Usually x0-x18,
350  * lr are saved as the compiler is expected to preserve the remaining
351  * callee saved registers if used by the C runtime and the assembler
352  * does not touch the remaining. But in case of world switch during
353  * exception handling, we need to save the callee registers too.
354  */
355 DEFINE_REG_STRUCT(gp_regs, CTX_GPREG_ALL);
356 
357 /*
358  * AArch64 EL1 system register context structure for preserving the
359  * architectural state during world switches.
360  */
361 DEFINE_REG_STRUCT(el1_sysregs, CTX_EL1_SYSREGS_ALL);
362 
363 
364 /*
365  * AArch64 EL2 system register context structure for preserving the
366  * architectural state during world switches.
367  */
368 #if CTX_INCLUDE_EL2_REGS
369 DEFINE_REG_STRUCT(el2_sysregs, CTX_EL2_SYSREGS_ALL);
370 #endif
371 
372 /*
373  * AArch64 floating point register context structure for preserving
374  * the floating point state during switches from one security state to
375  * another.
376  */
377 #if CTX_INCLUDE_FPREGS
378 DEFINE_REG_STRUCT(fp_regs, CTX_FPREG_ALL);
379 #endif
380 
381 /*
382  * Miscellaneous registers used by EL3 firmware to maintain its state
383  * across exception entries and exits
384  */
385 DEFINE_REG_STRUCT(el3_state, CTX_EL3STATE_ALL);
386 
387 /* Function pointer used by CVE-2018-3639 dynamic mitigation */
388 DEFINE_REG_STRUCT(cve_2018_3639, CTX_CVE_2018_3639_ALL);
389 
390 /* Registers associated to ARMv8.3-PAuth */
391 #if CTX_INCLUDE_PAUTH_REGS
392 DEFINE_REG_STRUCT(pauth, CTX_PAUTH_REGS_ALL);
393 #endif
394 
395 /*
396  * Macros to access members of any of the above structures using their
397  * offsets
398  */
399 #define read_ctx_reg(ctx, offset)	((ctx)->ctx_regs[(offset) >> DWORD_SHIFT])
400 #define write_ctx_reg(ctx, offset, val)	(((ctx)->ctx_regs[(offset) >> DWORD_SHIFT]) \
401 					 = (uint64_t) (val))
402 
403 /*
404  * Top-level context structure which is used by EL3 firmware to
405  * preserve the state of a core at EL1 in one of the two security
406  * states and save enough EL3 meta data to be able to return to that
407  * EL and security state. The context management library will be used
408  * to ensure that SP_EL3 always points to an instance of this
409  * structure at exception entry and exit. Each instance will
410  * correspond to either the secure or the non-secure state.
411  */
412 typedef struct cpu_context {
413 	gp_regs_t gpregs_ctx;
414 	el3_state_t el3state_ctx;
415 	el1_sysregs_t el1_sysregs_ctx;
416 #if CTX_INCLUDE_EL2_REGS
417 	el2_sysregs_t el2_sysregs_ctx;
418 #endif
419 #if CTX_INCLUDE_FPREGS
420 	fp_regs_t fpregs_ctx;
421 #endif
422 	cve_2018_3639_t cve_2018_3639_ctx;
423 #if CTX_INCLUDE_PAUTH_REGS
424 	pauth_t pauth_ctx;
425 #endif
426 } cpu_context_t;
427 
428 /* Macros to access members of the 'cpu_context_t' structure */
429 #define get_el3state_ctx(h)	(&((cpu_context_t *) h)->el3state_ctx)
430 #if CTX_INCLUDE_FPREGS
431 # define get_fpregs_ctx(h)	(&((cpu_context_t *) h)->fpregs_ctx)
432 #endif
433 #define get_el1_sysregs_ctx(h)	(&((cpu_context_t *) h)->el1_sysregs_ctx)
434 #if CTX_INCLUDE_EL2_REGS
435 # define get_el2_sysregs_ctx(h)	(&((cpu_context_t *) h)->el2_sysregs_ctx)
436 #endif
437 #define get_gpregs_ctx(h)	(&((cpu_context_t *) h)->gpregs_ctx)
438 #define get_cve_2018_3639_ctx(h)	(&((cpu_context_t *) h)->cve_2018_3639_ctx)
439 #if CTX_INCLUDE_PAUTH_REGS
440 # define get_pauth_ctx(h)	(&((cpu_context_t *) h)->pauth_ctx)
441 #endif
442 
443 /*
444  * Compile time assertions related to the 'cpu_context' structure to
445  * ensure that the assembler and the compiler view of the offsets of
446  * the structure members is the same.
447  */
448 CASSERT(CTX_GPREGS_OFFSET == __builtin_offsetof(cpu_context_t, gpregs_ctx), \
449 	assert_core_context_gp_offset_mismatch);
450 CASSERT(CTX_EL1_SYSREGS_OFFSET == __builtin_offsetof(cpu_context_t, el1_sysregs_ctx), \
451 	assert_core_context_el1_sys_offset_mismatch);
452 #if CTX_INCLUDE_EL2_REGS
453 CASSERT(CTX_EL2_SYSREGS_OFFSET == __builtin_offsetof(cpu_context_t, el2_sysregs_ctx), \
454 	assert_core_context_el2_sys_offset_mismatch);
455 #endif
456 #if CTX_INCLUDE_FPREGS
457 CASSERT(CTX_FPREGS_OFFSET == __builtin_offsetof(cpu_context_t, fpregs_ctx), \
458 	assert_core_context_fp_offset_mismatch);
459 #endif
460 CASSERT(CTX_EL3STATE_OFFSET == __builtin_offsetof(cpu_context_t, el3state_ctx), \
461 	assert_core_context_el3state_offset_mismatch);
462 CASSERT(CTX_CVE_2018_3639_OFFSET == __builtin_offsetof(cpu_context_t, cve_2018_3639_ctx), \
463 	assert_core_context_cve_2018_3639_offset_mismatch);
464 #if CTX_INCLUDE_PAUTH_REGS
465 CASSERT(CTX_PAUTH_REGS_OFFSET == __builtin_offsetof(cpu_context_t, pauth_ctx), \
466 	assert_core_context_pauth_offset_mismatch);
467 #endif
468 
469 /*
470  * Helper macro to set the general purpose registers that correspond to
471  * parameters in an aapcs_64 call i.e. x0-x7
472  */
473 #define set_aapcs_args0(ctx, x0)				do {	\
474 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X0, x0);	\
475 	} while (0)
476 #define set_aapcs_args1(ctx, x0, x1)				do {	\
477 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X1, x1);	\
478 		set_aapcs_args0(ctx, x0);				\
479 	} while (0)
480 #define set_aapcs_args2(ctx, x0, x1, x2)			do {	\
481 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X2, x2);	\
482 		set_aapcs_args1(ctx, x0, x1);				\
483 	} while (0)
484 #define set_aapcs_args3(ctx, x0, x1, x2, x3)			do {	\
485 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X3, x3);	\
486 		set_aapcs_args2(ctx, x0, x1, x2);			\
487 	} while (0)
488 #define set_aapcs_args4(ctx, x0, x1, x2, x3, x4)		do {	\
489 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X4, x4);	\
490 		set_aapcs_args3(ctx, x0, x1, x2, x3);			\
491 	} while (0)
492 #define set_aapcs_args5(ctx, x0, x1, x2, x3, x4, x5)		do {	\
493 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X5, x5);	\
494 		set_aapcs_args4(ctx, x0, x1, x2, x3, x4);		\
495 	} while (0)
496 #define set_aapcs_args6(ctx, x0, x1, x2, x3, x4, x5, x6)	do {	\
497 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X6, x6);	\
498 		set_aapcs_args5(ctx, x0, x1, x2, x3, x4, x5);		\
499 	} while (0)
500 #define set_aapcs_args7(ctx, x0, x1, x2, x3, x4, x5, x6, x7)	do {	\
501 		write_ctx_reg(get_gpregs_ctx(ctx), CTX_GPREG_X7, x7);	\
502 		set_aapcs_args6(ctx, x0, x1, x2, x3, x4, x5, x6);	\
503 	} while (0)
504 
505 /*******************************************************************************
506  * Function prototypes
507  ******************************************************************************/
508 void el1_sysregs_context_save(el1_sysregs_t *regs);
509 void el1_sysregs_context_restore(el1_sysregs_t *regs);
510 
511 #if CTX_INCLUDE_EL2_REGS
512 void el2_sysregs_context_save(el2_sysregs_t *regs);
513 void el2_sysregs_context_restore(el2_sysregs_t *regs);
514 #endif
515 
516 #if CTX_INCLUDE_FPREGS
517 void fpregs_context_save(fp_regs_t *regs);
518 void fpregs_context_restore(fp_regs_t *regs);
519 #endif
520 
521 #endif /* __ASSEMBLER__ */
522 
523 #endif /* CONTEXT_H */
524