1b2441318SGreg Kroah-Hartman /* SPDX-License-Identifier: GPL-2.0 */ 21965aae3SH. Peter Anvin #ifndef _ASM_X86_EFI_H 31965aae3SH. Peter Anvin #define _ASM_X86_EFI_H 4bb898558SAl Viro 5df6b35f4SIngo Molnar #include <asm/fpu/api.h> 69788375dSMark Rutland #include <asm/processor-flags.h> 7c9f2a9a6SMatt Fleming #include <asm/tlb.h> 8dd84441aSDavid Woodhouse #include <asm/nospec-branch.h> 97e904a91SSai Praneeth #include <asm/mmu_context.h> 1014b864f4SArvind Sankar #include <linux/build_bug.h> 119b47c527SArvind Sankar #include <linux/kernel.h> 1265fddcfcSMike Rapoport #include <linux/pgtable.h> 13744937b0SIngo Molnar 149cd437acSArd Biesheuvel extern unsigned long efi_fw_vendor, efi_config_table; 159cd437acSArd Biesheuvel 16d2f7cbe7SBorislav Petkov /* 17d2f7cbe7SBorislav Petkov * We map the EFI regions needed for runtime services non-contiguously, 18d2f7cbe7SBorislav Petkov * with preserved alignment on virtual addresses starting from -4G down 19d2f7cbe7SBorislav Petkov * for a total max space of 64G. This way, we provide for stable runtime 20d2f7cbe7SBorislav Petkov * services addresses across kernels so that a kexec'd kernel can still 21d2f7cbe7SBorislav Petkov * use them. 22d2f7cbe7SBorislav Petkov * 23d2f7cbe7SBorislav Petkov * This is the main reason why we're doing stable VA mappings for RT 24d2f7cbe7SBorislav Petkov * services. 25d2f7cbe7SBorislav Petkov */ 26d2f7cbe7SBorislav Petkov 27b8ff87a6SMatt Fleming #define EFI32_LOADER_SIGNATURE "EL32" 28b8ff87a6SMatt Fleming #define EFI64_LOADER_SIGNATURE "EL64" 29b8ff87a6SMatt Fleming 309788375dSMark Rutland #define ARCH_EFI_IRQ_FLAGS_MASK X86_EFLAGS_IF 31bb898558SAl Viro 3214b864f4SArvind Sankar /* 3314b864f4SArvind Sankar * The EFI services are called through variadic functions in many cases. These 3414b864f4SArvind Sankar * functions are implemented in assembler and support only a fixed number of 3514b864f4SArvind Sankar * arguments. The macros below allows us to check at build time that we don't 3614b864f4SArvind Sankar * try to call them with too many arguments. 3714b864f4SArvind Sankar * 3814b864f4SArvind Sankar * __efi_nargs() will return the number of arguments if it is 7 or less, and 3914b864f4SArvind Sankar * cause a BUILD_BUG otherwise. The limitations of the C preprocessor make it 4014b864f4SArvind Sankar * impossible to calculate the exact number of arguments beyond some 4114b864f4SArvind Sankar * pre-defined limit. The maximum number of arguments currently supported by 4214b864f4SArvind Sankar * any of the thunks is 7, so this is good enough for now and can be extended 4314b864f4SArvind Sankar * in the obvious way if we ever need more. 4414b864f4SArvind Sankar */ 4514b864f4SArvind Sankar 4614b864f4SArvind Sankar #define __efi_nargs(...) __efi_nargs_(__VA_ARGS__) 4714b864f4SArvind Sankar #define __efi_nargs_(...) __efi_nargs__(0, ##__VA_ARGS__, \ 4814b864f4SArvind Sankar __efi_arg_sentinel(7), __efi_arg_sentinel(6), \ 4914b864f4SArvind Sankar __efi_arg_sentinel(5), __efi_arg_sentinel(4), \ 5014b864f4SArvind Sankar __efi_arg_sentinel(3), __efi_arg_sentinel(2), \ 5114b864f4SArvind Sankar __efi_arg_sentinel(1), __efi_arg_sentinel(0)) 5214b864f4SArvind Sankar #define __efi_nargs__(_0, _1, _2, _3, _4, _5, _6, _7, n, ...) \ 5314b864f4SArvind Sankar __take_second_arg(n, \ 5414b864f4SArvind Sankar ({ BUILD_BUG_ON_MSG(1, "__efi_nargs limit exceeded"); 8; })) 5514b864f4SArvind Sankar #define __efi_arg_sentinel(n) , n 5614b864f4SArvind Sankar 5714b864f4SArvind Sankar /* 5814b864f4SArvind Sankar * __efi_nargs_check(f, n, ...) will cause a BUILD_BUG if the ellipsis 5914b864f4SArvind Sankar * represents more than n arguments. 6014b864f4SArvind Sankar */ 6114b864f4SArvind Sankar 6214b864f4SArvind Sankar #define __efi_nargs_check(f, n, ...) \ 6314b864f4SArvind Sankar __efi_nargs_check_(f, __efi_nargs(__VA_ARGS__), n) 6414b864f4SArvind Sankar #define __efi_nargs_check_(f, p, n) __efi_nargs_check__(f, p, n) 6514b864f4SArvind Sankar #define __efi_nargs_check__(f, p, n) ({ \ 6614b864f4SArvind Sankar BUILD_BUG_ON_MSG( \ 6714b864f4SArvind Sankar (p) > (n), \ 6814b864f4SArvind Sankar #f " called with too many arguments (" #p ">" #n ")"); \ 6914b864f4SArvind Sankar }) 7014b864f4SArvind Sankar 71*b0dc553cSAndy Lutomirski static inline void efi_fpu_begin(void) 72*b0dc553cSAndy Lutomirski { 73*b0dc553cSAndy Lutomirski /* 74*b0dc553cSAndy Lutomirski * The UEFI calling convention (UEFI spec 2.3.2 and 2.3.4) requires 75*b0dc553cSAndy Lutomirski * that FCW and MXCSR (64-bit) must be initialized prior to calling 76*b0dc553cSAndy Lutomirski * UEFI code. (Oddly the spec does not require that the FPU stack 77*b0dc553cSAndy Lutomirski * be empty.) 78*b0dc553cSAndy Lutomirski */ 79*b0dc553cSAndy Lutomirski kernel_fpu_begin_mask(KFPU_387 | KFPU_MXCSR); 80*b0dc553cSAndy Lutomirski } 81*b0dc553cSAndy Lutomirski 82*b0dc553cSAndy Lutomirski static inline void efi_fpu_end(void) 83*b0dc553cSAndy Lutomirski { 84*b0dc553cSAndy Lutomirski kernel_fpu_end(); 85*b0dc553cSAndy Lutomirski } 86*b0dc553cSAndy Lutomirski 879788375dSMark Rutland #ifdef CONFIG_X86_32 88dd84441aSDavid Woodhouse #define arch_efi_call_virt_setup() \ 89dd84441aSDavid Woodhouse ({ \ 90*b0dc553cSAndy Lutomirski efi_fpu_begin(); \ 91dd84441aSDavid Woodhouse firmware_restrict_branch_speculation_start(); \ 92dd84441aSDavid Woodhouse }) 93dd84441aSDavid Woodhouse 94dd84441aSDavid Woodhouse #define arch_efi_call_virt_teardown() \ 95dd84441aSDavid Woodhouse ({ \ 96dd84441aSDavid Woodhouse firmware_restrict_branch_speculation_end(); \ 97*b0dc553cSAndy Lutomirski efi_fpu_end(); \ 98dd84441aSDavid Woodhouse }) 99dd84441aSDavid Woodhouse 10089ed4865SArd Biesheuvel #define arch_efi_call_virt(p, f, args...) p->f(args) 101982e239cSRicardo Neri 102bb898558SAl Viro #else /* !CONFIG_X86_32 */ 103bb898558SAl Viro 10462fa6e69SMatt Fleming #define EFI_LOADER_SIGNATURE "EL64" 105bb898558SAl Viro 10614b864f4SArvind Sankar extern asmlinkage u64 __efi_call(void *fp, ...); 10714b864f4SArvind Sankar 10814b864f4SArvind Sankar #define efi_call(...) ({ \ 10914b864f4SArvind Sankar __efi_nargs_check(efi_call, 7, __VA_ARGS__); \ 11014b864f4SArvind Sankar __efi_call(__VA_ARGS__); \ 11114b864f4SArvind Sankar }) 112bb898558SAl Viro 113c9f2a9a6SMatt Fleming /* 11403781e40SSai Praneeth * struct efi_scratch - Scratch space used while switching to/from efi_mm 11503781e40SSai Praneeth * @phys_stack: stack used during EFI Mixed Mode 11603781e40SSai Praneeth * @prev_mm: store/restore stolen mm_struct while switching to/from efi_mm 117c9f2a9a6SMatt Fleming */ 118c9f2a9a6SMatt Fleming struct efi_scratch { 119c9f2a9a6SMatt Fleming u64 phys_stack; 12003781e40SSai Praneeth struct mm_struct *prev_mm; 121c9f2a9a6SMatt Fleming } __packed; 122c9f2a9a6SMatt Fleming 123bc25f9dbSMark Rutland #define arch_efi_call_virt_setup() \ 124d2f7cbe7SBorislav Petkov ({ \ 125d2f7cbe7SBorislav Petkov efi_sync_low_kernel_mappings(); \ 126*b0dc553cSAndy Lutomirski efi_fpu_begin(); \ 127dd84441aSDavid Woodhouse firmware_restrict_branch_speculation_start(); \ 12803781e40SSai Praneeth efi_switch_mm(&efi_mm); \ 129bc25f9dbSMark Rutland }) 130bc25f9dbSMark Rutland 13180e75596SAlex Thorlton #define arch_efi_call_virt(p, f, args...) \ 13280e75596SAlex Thorlton efi_call((void *)p->f, args) \ 133bc25f9dbSMark Rutland 134bc25f9dbSMark Rutland #define arch_efi_call_virt_teardown() \ 135bc25f9dbSMark Rutland ({ \ 13603781e40SSai Praneeth efi_switch_mm(efi_scratch.prev_mm); \ 137dd84441aSDavid Woodhouse firmware_restrict_branch_speculation_end(); \ 138*b0dc553cSAndy Lutomirski efi_fpu_end(); \ 139d2f7cbe7SBorislav Petkov }) 140d2f7cbe7SBorislav Petkov 141a523841eSAndrey Ryabinin #ifdef CONFIG_KASAN 142769a8089SAndrey Ryabinin /* 143769a8089SAndrey Ryabinin * CONFIG_KASAN may redefine memset to __memset. __memset function is present 144769a8089SAndrey Ryabinin * only in kernel binary. Since the EFI stub linked into a separate binary it 145769a8089SAndrey Ryabinin * doesn't have __memset(). So we should use standard memset from 146769a8089SAndrey Ryabinin * arch/x86/boot/compressed/string.c. The same applies to memcpy and memmove. 147769a8089SAndrey Ryabinin */ 148769a8089SAndrey Ryabinin #undef memcpy 149769a8089SAndrey Ryabinin #undef memset 150769a8089SAndrey Ryabinin #undef memmove 151a523841eSAndrey Ryabinin #endif 152769a8089SAndrey Ryabinin 153bb898558SAl Viro #endif /* CONFIG_X86_32 */ 154bb898558SAl Viro 155d2f7cbe7SBorislav Petkov extern struct efi_scratch efi_scratch; 1564e78eb05SMathias Krause extern int __init efi_memblock_x86_reserve_range(void); 1570bbea1ceSTaku Izumi extern void __init efi_print_memmap(void); 158d2f7cbe7SBorislav Petkov extern void __init efi_map_region(efi_memory_desc_t *md); 1593b266496SDave Young extern void __init efi_map_region_fixed(efi_memory_desc_t *md); 160d2f7cbe7SBorislav Petkov extern void efi_sync_low_kernel_mappings(void); 16167a9108eSMatt Fleming extern int __init efi_alloc_page_tables(void); 1624e78eb05SMathias Krause extern int __init efi_setup_page_tables(unsigned long pa_memmap, unsigned num_pages); 1636d0cc887SSai Praneeth extern void __init efi_runtime_update_mappings(void); 16411cc8512SBorislav Petkov extern void __init efi_dump_pagetable(void); 165a5d90c92SBorislav Petkov extern void __init efi_apply_memmap_quirks(void); 166eeb9db09SSaurabh Tangri extern int __init efi_reuse_config(u64 tables, int nr_tables); 167eeb9db09SSaurabh Tangri extern void efi_delete_dummy_variable(void); 16803781e40SSai Praneeth extern void efi_switch_mm(struct mm_struct *mm); 1693425d934SSai Praneeth extern void efi_recover_from_page_fault(unsigned long phys_addr); 17047c33a09SSai Praneeth Prakhya extern void efi_free_boot_services(void); 171bb898558SAl Viro 172a088b858SArd Biesheuvel /* kexec external ABI */ 1731fec0533SDave Young struct efi_setup_data { 1741fec0533SDave Young u64 fw_vendor; 175a088b858SArd Biesheuvel u64 __unused; 1761fec0533SDave Young u64 tables; 1771fec0533SDave Young u64 smbios; 1781fec0533SDave Young u64 reserved[8]; 1791fec0533SDave Young }; 1801fec0533SDave Young 1811fec0533SDave Young extern u64 efi_setup; 1821fec0533SDave Young 1836b59e366SSatoru Takeuchi #ifdef CONFIG_EFI 18414b864f4SArvind Sankar extern efi_status_t __efi64_thunk(u32, ...); 18514b864f4SArvind Sankar 18614b864f4SArvind Sankar #define efi64_thunk(...) ({ \ 18714b864f4SArvind Sankar __efi_nargs_check(efi64_thunk, 6, __VA_ARGS__); \ 18814b864f4SArvind Sankar __efi64_thunk(__VA_ARGS__); \ 18914b864f4SArvind Sankar }) 1906b59e366SSatoru Takeuchi 191a8147dbaSArd Biesheuvel static inline bool efi_is_mixed(void) 1926b59e366SSatoru Takeuchi { 193a8147dbaSArd Biesheuvel if (!IS_ENABLED(CONFIG_EFI_MIXED)) 194a8147dbaSArd Biesheuvel return false; 195a8147dbaSArd Biesheuvel return IS_ENABLED(CONFIG_X86_64) && !efi_enabled(EFI_64BIT); 1966b59e366SSatoru Takeuchi } 1976b59e366SSatoru Takeuchi 1987d453eeeSMatt Fleming static inline bool efi_runtime_supported(void) 1997d453eeeSMatt Fleming { 2006cfcd6f0SArd Biesheuvel if (IS_ENABLED(CONFIG_X86_64) == efi_enabled(EFI_64BIT)) 2017d453eeeSMatt Fleming return true; 2027d453eeeSMatt Fleming 2031f299fadSArd Biesheuvel return IS_ENABLED(CONFIG_EFI_MIXED); 2047d453eeeSMatt Fleming } 2057d453eeeSMatt Fleming 2065c12af0cSDave Young extern void parse_efi_setup(u64 phys_addr, u32 data_len); 2074f9dbcfcSMatt Fleming 20821289ec0SArd Biesheuvel extern void efifb_setup_from_dmi(struct screen_info *si, const char *opt); 20921289ec0SArd Biesheuvel 2104f9dbcfcSMatt Fleming extern void efi_thunk_runtime_setup(void); 21169829470SArd Biesheuvel efi_status_t efi_set_virtual_address_map(unsigned long memory_map_size, 21269829470SArd Biesheuvel unsigned long descriptor_size, 21369829470SArd Biesheuvel u32 descriptor_version, 21459f2a619SArd Biesheuvel efi_memory_desc_t *virtual_map, 21559f2a619SArd Biesheuvel unsigned long systab_phys); 216243b6754SArd Biesheuvel 217243b6754SArd Biesheuvel /* arch specific definitions used by the stub code */ 218243b6754SArd Biesheuvel 219de8c5520SArvind Sankar #ifdef CONFIG_EFI_MIXED 220de8c5520SArvind Sankar 221de8c5520SArvind Sankar #define ARCH_HAS_EFISTUB_WRAPPERS 2220a755614SArd Biesheuvel 2230a755614SArd Biesheuvel static inline bool efi_is_64bit(void) 2240a755614SArd Biesheuvel { 225de8c5520SArvind Sankar extern const bool efi_is64; 226de8c5520SArvind Sankar 2270a755614SArd Biesheuvel return efi_is64; 2280a755614SArd Biesheuvel } 22927571616SLukas Wunner 230f958efe9SArd Biesheuvel static inline bool efi_is_native(void) 231f958efe9SArd Biesheuvel { 232f958efe9SArd Biesheuvel return efi_is_64bit(); 233f958efe9SArd Biesheuvel } 234f958efe9SArd Biesheuvel 235f958efe9SArd Biesheuvel #define efi_mixed_mode_cast(attr) \ 236f958efe9SArd Biesheuvel __builtin_choose_expr( \ 237f958efe9SArd Biesheuvel __builtin_types_compatible_p(u32, __typeof__(attr)), \ 238f958efe9SArd Biesheuvel (unsigned long)(attr), (attr)) 239f958efe9SArd Biesheuvel 24099ea8b1dSArd Biesheuvel #define efi_table_attr(inst, attr) \ 24199ea8b1dSArd Biesheuvel (efi_is_native() \ 24299ea8b1dSArd Biesheuvel ? inst->attr \ 24399ea8b1dSArd Biesheuvel : (__typeof__(inst->attr)) \ 24499ea8b1dSArd Biesheuvel efi_mixed_mode_cast(inst->mixed_mode.attr)) 2453552fdf2SLukas Wunner 246ea7d87f9SArvind Sankar /* 247ea7d87f9SArvind Sankar * The following macros allow translating arguments if necessary from native to 248ea7d87f9SArvind Sankar * mixed mode. The use case for this is to initialize the upper 32 bits of 249ea7d87f9SArvind Sankar * output parameters, and where the 32-bit method requires a 64-bit argument, 250ea7d87f9SArvind Sankar * which must be split up into two arguments to be thunked properly. 251ea7d87f9SArvind Sankar * 252ea7d87f9SArvind Sankar * As examples, the AllocatePool boot service returns the address of the 253ea7d87f9SArvind Sankar * allocation, but it will not set the high 32 bits of the address. To ensure 254ea7d87f9SArvind Sankar * that the full 64-bit address is initialized, we zero-init the address before 255ea7d87f9SArvind Sankar * calling the thunk. 256ea7d87f9SArvind Sankar * 257ea7d87f9SArvind Sankar * The FreePages boot service takes a 64-bit physical address even in 32-bit 258ea7d87f9SArvind Sankar * mode. For the thunk to work correctly, a native 64-bit call of 259ea7d87f9SArvind Sankar * free_pages(addr, size) 260ea7d87f9SArvind Sankar * must be translated to 261ea7d87f9SArvind Sankar * efi64_thunk(free_pages, addr & U32_MAX, addr >> 32, size) 262ea7d87f9SArvind Sankar * so that the two 32-bit halves of addr get pushed onto the stack separately. 263ea7d87f9SArvind Sankar */ 264ea7d87f9SArvind Sankar 265ea7d87f9SArvind Sankar static inline void *efi64_zero_upper(void *p) 266ea7d87f9SArvind Sankar { 267ea7d87f9SArvind Sankar ((u32 *)p)[1] = 0; 268ea7d87f9SArvind Sankar return p; 269ea7d87f9SArvind Sankar } 270ea7d87f9SArvind Sankar 2713b8f44fcSArd Biesheuvel static inline u32 efi64_convert_status(efi_status_t status) 2723b8f44fcSArd Biesheuvel { 2733b8f44fcSArd Biesheuvel return (u32)(status | (u64)status >> 32); 2743b8f44fcSArd Biesheuvel } 2753b8f44fcSArd Biesheuvel 276ea7d87f9SArvind Sankar #define __efi64_argmap_free_pages(addr, size) \ 277ea7d87f9SArvind Sankar ((addr), 0, (size)) 278ea7d87f9SArvind Sankar 279ea7d87f9SArvind Sankar #define __efi64_argmap_get_memory_map(mm_size, mm, key, size, ver) \ 280ea7d87f9SArvind Sankar ((mm_size), (mm), efi64_zero_upper(key), efi64_zero_upper(size), (ver)) 281ea7d87f9SArvind Sankar 282ea7d87f9SArvind Sankar #define __efi64_argmap_allocate_pool(type, size, buffer) \ 283ea7d87f9SArvind Sankar ((type), (size), efi64_zero_upper(buffer)) 284ea7d87f9SArvind Sankar 2859b47c527SArvind Sankar #define __efi64_argmap_create_event(type, tpl, f, c, event) \ 2869b47c527SArvind Sankar ((type), (tpl), (f), (c), efi64_zero_upper(event)) 2879b47c527SArvind Sankar 2889b47c527SArvind Sankar #define __efi64_argmap_set_timer(event, type, time) \ 2899b47c527SArvind Sankar ((event), (type), lower_32_bits(time), upper_32_bits(time)) 2909b47c527SArvind Sankar 2919b47c527SArvind Sankar #define __efi64_argmap_wait_for_event(num, event, index) \ 2929b47c527SArvind Sankar ((num), (event), efi64_zero_upper(index)) 2939b47c527SArvind Sankar 294ea7d87f9SArvind Sankar #define __efi64_argmap_handle_protocol(handle, protocol, interface) \ 295ea7d87f9SArvind Sankar ((handle), (protocol), efi64_zero_upper(interface)) 296ea7d87f9SArvind Sankar 297ea7d87f9SArvind Sankar #define __efi64_argmap_locate_protocol(protocol, reg, interface) \ 298ea7d87f9SArvind Sankar ((protocol), (reg), efi64_zero_upper(interface)) 299ea7d87f9SArvind Sankar 300abd26868SArd Biesheuvel #define __efi64_argmap_locate_device_path(protocol, path, handle) \ 301abd26868SArd Biesheuvel ((protocol), (path), efi64_zero_upper(handle)) 302abd26868SArd Biesheuvel 3033b8f44fcSArd Biesheuvel #define __efi64_argmap_exit(handle, status, size, data) \ 3043b8f44fcSArd Biesheuvel ((handle), efi64_convert_status(status), (size), (data)) 3053b8f44fcSArd Biesheuvel 3064444f854SMatthew Garrett /* PCI I/O */ 3074444f854SMatthew Garrett #define __efi64_argmap_get_location(protocol, seg, bus, dev, func) \ 3084444f854SMatthew Garrett ((protocol), efi64_zero_upper(seg), efi64_zero_upper(bus), \ 3094444f854SMatthew Garrett efi64_zero_upper(dev), efi64_zero_upper(func)) 3104444f854SMatthew Garrett 3112931d526SArd Biesheuvel /* LoadFile */ 3122931d526SArd Biesheuvel #define __efi64_argmap_load_file(protocol, path, policy, bufsize, buf) \ 3132931d526SArd Biesheuvel ((protocol), (path), (policy), efi64_zero_upper(bufsize), (buf)) 3142931d526SArd Biesheuvel 315b4b89a02SArvind Sankar /* Graphics Output Protocol */ 316b4b89a02SArvind Sankar #define __efi64_argmap_query_mode(gop, mode, size, info) \ 317b4b89a02SArvind Sankar ((gop), (mode), efi64_zero_upper(size), efi64_zero_upper(info)) 318b4b89a02SArvind Sankar 319ea7d87f9SArvind Sankar /* 320ea7d87f9SArvind Sankar * The macros below handle the plumbing for the argument mapping. To add a 321ea7d87f9SArvind Sankar * mapping for a specific EFI method, simply define a macro 322ea7d87f9SArvind Sankar * __efi64_argmap_<method name>, following the examples above. 323ea7d87f9SArvind Sankar */ 324ea7d87f9SArvind Sankar 325ea7d87f9SArvind Sankar #define __efi64_thunk_map(inst, func, ...) \ 326ea7d87f9SArvind Sankar efi64_thunk(inst->mixed_mode.func, \ 327ea7d87f9SArvind Sankar __efi64_argmap(__efi64_argmap_ ## func(__VA_ARGS__), \ 328ea7d87f9SArvind Sankar (__VA_ARGS__))) 329ea7d87f9SArvind Sankar 330ea7d87f9SArvind Sankar #define __efi64_argmap(mapped, args) \ 331ea7d87f9SArvind Sankar __PASTE(__efi64_argmap__, __efi_nargs(__efi_eat mapped))(mapped, args) 332ea7d87f9SArvind Sankar #define __efi64_argmap__0(mapped, args) __efi_eval mapped 333ea7d87f9SArvind Sankar #define __efi64_argmap__1(mapped, args) __efi_eval args 334ea7d87f9SArvind Sankar 335ea7d87f9SArvind Sankar #define __efi_eat(...) 336ea7d87f9SArvind Sankar #define __efi_eval(...) __VA_ARGS__ 337ea7d87f9SArvind Sankar 338ea7d87f9SArvind Sankar /* The three macros below handle dispatching via the thunk if needed */ 339ea7d87f9SArvind Sankar 34047c0fd39SArd Biesheuvel #define efi_call_proto(inst, func, ...) \ 341afc4cc71SArd Biesheuvel (efi_is_native() \ 34247c0fd39SArd Biesheuvel ? inst->func(inst, ##__VA_ARGS__) \ 343ea7d87f9SArvind Sankar : __efi64_thunk_map(inst, func, inst, ##__VA_ARGS__)) 3443552fdf2SLukas Wunner 345966291f6SArd Biesheuvel #define efi_bs_call(func, ...) \ 346afc4cc71SArd Biesheuvel (efi_is_native() \ 347ccc27ae7SArd Biesheuvel ? efi_system_table->boottime->func(__VA_ARGS__) \ 348ccc27ae7SArd Biesheuvel : __efi64_thunk_map(efi_table_attr(efi_system_table, \ 349ccc27ae7SArd Biesheuvel boottime), \ 350ccc27ae7SArd Biesheuvel func, __VA_ARGS__)) 351243b6754SArd Biesheuvel 352966291f6SArd Biesheuvel #define efi_rt_call(func, ...) \ 353afc4cc71SArd Biesheuvel (efi_is_native() \ 354ccc27ae7SArd Biesheuvel ? efi_system_table->runtime->func(__VA_ARGS__) \ 355ccc27ae7SArd Biesheuvel : __efi64_thunk_map(efi_table_attr(efi_system_table, \ 356ccc27ae7SArd Biesheuvel runtime), \ 357ccc27ae7SArd Biesheuvel func, __VA_ARGS__)) 358a2cd2f3fSDavid Howells 359de8c5520SArvind Sankar #else /* CONFIG_EFI_MIXED */ 360de8c5520SArvind Sankar 361de8c5520SArvind Sankar static inline bool efi_is_64bit(void) 362de8c5520SArvind Sankar { 363de8c5520SArvind Sankar return IS_ENABLED(CONFIG_X86_64); 364de8c5520SArvind Sankar } 365de8c5520SArvind Sankar 366de8c5520SArvind Sankar #endif /* CONFIG_EFI_MIXED */ 367de8c5520SArvind Sankar 36844be28e9SMatt Fleming extern bool efi_reboot_required(void); 369e55f31a5SArd Biesheuvel extern bool efi_is_table_address(unsigned long phys_addr); 37044be28e9SMatt Fleming 3716950e31bSDan Williams extern void efi_find_mirror(void); 3726950e31bSDan Williams extern void efi_reserve_boot_services(void); 3736b59e366SSatoru Takeuchi #else 3745c12af0cSDave Young static inline void parse_efi_setup(u64 phys_addr, u32 data_len) {} 37544be28e9SMatt Fleming static inline bool efi_reboot_required(void) 37644be28e9SMatt Fleming { 37744be28e9SMatt Fleming return false; 37844be28e9SMatt Fleming } 379e55f31a5SArd Biesheuvel static inline bool efi_is_table_address(unsigned long phys_addr) 380e55f31a5SArd Biesheuvel { 381e55f31a5SArd Biesheuvel return false; 382e55f31a5SArd Biesheuvel } 3836950e31bSDan Williams static inline void efi_find_mirror(void) 3846950e31bSDan Williams { 3856950e31bSDan Williams } 3866950e31bSDan Williams static inline void efi_reserve_boot_services(void) 3876950e31bSDan Williams { 3886950e31bSDan Williams } 389bb898558SAl Viro #endif /* CONFIG_EFI */ 390bb898558SAl Viro 391199c8471SDan Williams #ifdef CONFIG_EFI_FAKE_MEMMAP 392199c8471SDan Williams extern void __init efi_fake_memmap_early(void); 393199c8471SDan Williams #else 394199c8471SDan Williams static inline void efi_fake_memmap_early(void) 395199c8471SDan Williams { 396199c8471SDan Williams } 397199c8471SDan Williams #endif 398199c8471SDan Williams 39925519d68SChester Lin #define arch_ima_efi_boot_mode \ 40025519d68SChester Lin ({ extern struct boot_params boot_params; boot_params.secure_boot; }) 40125519d68SChester Lin 4021965aae3SH. Peter Anvin #endif /* _ASM_X86_EFI_H */ 403