f276079942
lint-000-license-headers reports error. The SPDX identifier contains GPL-2.0 Update the identifier to GPL-2.0-only. BUG = N/A TEST = Build Intel Elkhart Lake Change-Id: If49fd014f14b481163bca6cd3131139b6d95c6d8 Signed-off-by: Frans Hendriks <fhendriks@eltan.com> Reviewed-on: https://review.coreboot.org/c/coreboot/+/50109 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Angel Pons <th3fanbus@gmail.com>
439 lines
10 KiB
C
439 lines
10 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Address sanitizer support.
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*
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* Parts of this file are based on mm/kasan
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* from the Linux kernel 4.19.137.
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*
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*/
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#include <console/console.h>
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#include <symbols.h>
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#include <assert.h>
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#include <arch/symbols.h>
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#include <asan.h>
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static inline void *asan_mem_to_shadow(const void *addr)
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{
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#if ENV_ROMSTAGE
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return (void *)((uintptr_t)&_asan_shadow + (((uintptr_t)addr -
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(uintptr_t)&_car_region_start) >> ASAN_SHADOW_SCALE_SHIFT));
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#elif ENV_RAMSTAGE
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return (void *)((uintptr_t)&_asan_shadow + (((uintptr_t)addr -
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(uintptr_t)&_data) >> ASAN_SHADOW_SCALE_SHIFT));
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#endif
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}
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static inline const void *asan_shadow_to_mem(const void *shadow_addr)
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{
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#if ENV_ROMSTAGE
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return (void *)((uintptr_t)&_car_region_start + (((uintptr_t)shadow_addr -
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(uintptr_t)&_asan_shadow) << ASAN_SHADOW_SCALE_SHIFT));
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#elif ENV_RAMSTAGE
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return (void *)((uintptr_t)&_data + (((uintptr_t)shadow_addr -
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(uintptr_t)&_asan_shadow) << ASAN_SHADOW_SCALE_SHIFT));
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#endif
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}
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static void asan_poison_shadow(const void *address, size_t size, u8 value)
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{
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void *shadow_start, *shadow_end;
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shadow_start = asan_mem_to_shadow(address);
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shadow_end = asan_mem_to_shadow(address + size);
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__builtin_memset(shadow_start, value, shadow_end - shadow_start);
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}
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void asan_unpoison_shadow(const void *address, size_t size)
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{
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asan_poison_shadow(address, size, 0);
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if (size & ASAN_SHADOW_MASK) {
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u8 *shadow = (u8 *)asan_mem_to_shadow(address + size);
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*shadow = size & ASAN_SHADOW_MASK;
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}
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}
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static __always_inline bool memory_is_poisoned_1(unsigned long addr)
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{
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s8 shadow_value = *(s8 *)asan_mem_to_shadow((void *)addr);
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if (unlikely(shadow_value)) {
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s8 last_accessible_byte = addr & ASAN_SHADOW_MASK;
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return unlikely(last_accessible_byte >= shadow_value);
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}
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return false;
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}
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static __always_inline bool memory_is_poisoned_2_4_8(unsigned long addr,
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unsigned long size)
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{
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u8 *shadow_addr = (u8 *)asan_mem_to_shadow((void *)addr);
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if (unlikely(((addr + size - 1) & ASAN_SHADOW_MASK) < size - 1))
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return *shadow_addr || memory_is_poisoned_1(addr + size - 1);
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return memory_is_poisoned_1(addr + size - 1);
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}
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static __always_inline bool memory_is_poisoned_16(unsigned long addr)
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{
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u16 *shadow_addr = (u16 *)asan_mem_to_shadow((void *)addr);
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if (unlikely(!IS_ALIGNED(addr, ASAN_SHADOW_SCALE_SIZE)))
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return *shadow_addr || memory_is_poisoned_1(addr + 15);
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return *shadow_addr;
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}
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static __always_inline unsigned long bytes_is_nonzero(const u8 *start,
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size_t size)
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{
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while (size) {
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if (unlikely(*start))
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return (unsigned long)start;
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start++;
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size--;
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}
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return 0;
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}
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static __always_inline unsigned long memory_is_nonzero(const void *start,
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const void *end)
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{
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unsigned int words;
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unsigned long ret;
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unsigned int prefix = (unsigned long)start % 8;
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if (end - start <= 16)
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return bytes_is_nonzero(start, end - start);
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if (prefix) {
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prefix = 8 - prefix;
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ret = bytes_is_nonzero(start, prefix);
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if (unlikely(ret))
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return ret;
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start += prefix;
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}
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words = (end - start) / 8;
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while (words) {
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if (unlikely(*(u64 *)start))
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return bytes_is_nonzero(start, 8);
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start += 8;
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words--;
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}
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return bytes_is_nonzero(start, (end - start) % 8);
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}
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static __always_inline bool memory_is_poisoned_n(unsigned long addr,
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size_t size)
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{
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unsigned long ret;
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ret = memory_is_nonzero(asan_mem_to_shadow((void *)addr),
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asan_mem_to_shadow((void *)addr + size - 1) + 1);
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if (unlikely(ret)) {
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unsigned long last_byte = addr + size - 1;
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s8 *last_shadow = (s8 *)asan_mem_to_shadow((void *)last_byte);
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if (unlikely(ret != (unsigned long)last_shadow ||
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((long)(last_byte & ASAN_SHADOW_MASK) >= *last_shadow)))
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return true;
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}
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return false;
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}
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static __always_inline bool memory_is_poisoned(unsigned long addr, size_t size)
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{
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if (__builtin_constant_p(size)) {
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switch (size) {
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case 1:
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return memory_is_poisoned_1(addr);
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case 2:
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case 4:
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case 8:
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return memory_is_poisoned_2_4_8(addr, size);
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case 16:
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return memory_is_poisoned_16(addr);
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default:
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assert(0);
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}
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}
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return memory_is_poisoned_n(addr, size);
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}
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static const void *find_first_bad_addr(const void *addr, size_t size)
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{
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u8 shadow_val = *(u8 *)asan_mem_to_shadow(addr);
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const void *first_bad_addr = addr;
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while (!shadow_val && first_bad_addr < addr + size) {
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first_bad_addr += ASAN_SHADOW_SCALE_SIZE;
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shadow_val = *(u8 *)asan_mem_to_shadow(first_bad_addr);
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}
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return first_bad_addr;
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}
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static const char *get_shadow_bug_type(const void *addr, size_t size)
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{
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const char *bug_type = "unknown-crash";
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u8 *shadow_addr;
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const void *first_bad_addr;
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if (addr < asan_shadow_to_mem((void *) &_asan_shadow))
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return bug_type;
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first_bad_addr = find_first_bad_addr(addr, size);
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shadow_addr = (u8 *)asan_mem_to_shadow(first_bad_addr);
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if (*shadow_addr > 0 && *shadow_addr <= ASAN_SHADOW_SCALE_SIZE - 1)
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shadow_addr++;
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switch (*shadow_addr) {
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case 0 ... ASAN_SHADOW_SCALE_SIZE - 1:
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bug_type = "out-of-bounds";
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break;
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case ASAN_GLOBAL_REDZONE:
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bug_type = "global-out-of-bounds";
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break;
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case ASAN_STACK_LEFT:
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case ASAN_STACK_MID:
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case ASAN_STACK_RIGHT:
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case ASAN_STACK_PARTIAL:
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bug_type = "stack-out-of-bounds";
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break;
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case ASAN_USE_AFTER_SCOPE:
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bug_type = "use-after-scope";
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break;
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default:
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bug_type = "unknown-crash";
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}
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return bug_type;
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}
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void asan_report(unsigned long addr, size_t size, bool is_write,
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unsigned long ip)
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{
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const char *bug_type = get_shadow_bug_type((void *) addr, size);
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printk(BIOS_ERR, "\n");
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printk(BIOS_ERR, "ASan: %s in %p\n", bug_type, (void *) ip);
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printk(BIOS_ERR, "%s of %zu byte%s at addr %p\n",
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is_write ? "Write" : "Read", size, (size > 1 ? "s" : ""),
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(void *) addr);
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printk(BIOS_ERR, "\n");
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}
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static __always_inline void check_memory_region_inline(unsigned long addr,
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size_t size, bool write,
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unsigned long ret_ip)
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{
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#if ENV_ROMSTAGE
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if (((uintptr_t)addr < (uintptr_t)&_car_region_start) ||
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((uintptr_t)addr > (uintptr_t)&_ebss))
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return;
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#elif ENV_RAMSTAGE
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if (((uintptr_t)addr < (uintptr_t)&_data) ||
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((uintptr_t)addr > (uintptr_t)&_eheap))
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return;
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#endif
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if (unlikely(size == 0))
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return;
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if (unlikely((void *)addr <
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asan_shadow_to_mem((void *) &_asan_shadow))) {
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asan_report(addr, size, write, ret_ip);
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return;
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}
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if (likely(!memory_is_poisoned(addr, size)))
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return;
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asan_report(addr, size, write, ret_ip);
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}
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void check_memory_region(unsigned long addr, size_t size, bool write,
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unsigned long ret_ip)
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{
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check_memory_region_inline(addr, size, write, ret_ip);
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}
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uintptr_t __asan_shadow_offset(uintptr_t addr)
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{
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#if ENV_ROMSTAGE
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return (uintptr_t)&_asan_shadow - (((uintptr_t)&_car_region_start) >>
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ASAN_SHADOW_SCALE_SHIFT);
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#elif ENV_RAMSTAGE
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return (uintptr_t)&_asan_shadow - (((uintptr_t)&_data) >>
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ASAN_SHADOW_SCALE_SHIFT);
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#endif
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}
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static void register_global(struct asan_global *global)
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{
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size_t aligned_size = ALIGN_UP(global->size, ASAN_SHADOW_SCALE_SIZE);
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asan_unpoison_shadow(global->beg, global->size);
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asan_poison_shadow(global->beg + aligned_size,
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global->size_with_redzone - aligned_size,
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ASAN_GLOBAL_REDZONE);
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}
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void __asan_register_globals(struct asan_global *globals, size_t size)
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{
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int i;
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for (i = 0; i < size; i++)
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register_global(&globals[i]);
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}
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void __asan_unregister_globals(struct asan_global *globals, size_t size)
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{
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}
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/*
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* GCC adds constructors invoking __asan_register_globals() and passes
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* information about global variable (address, size, size with redzone ...)
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* to it so we could poison variable's redzone.
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* This function calls those constructors.
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*/
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#if ENV_RAMSTAGE
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static void asan_ctors(void)
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{
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extern long __CTOR_LIST__;
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typedef void (*func_ptr)(void);
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func_ptr *ctor = (func_ptr *) &__CTOR_LIST__;
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if (ctor == NULL)
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return;
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for (; *ctor != (func_ptr) 0; ctor++)
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(*ctor)();
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}
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#endif
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void asan_init(void)
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{
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#if ENV_ROMSTAGE
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size_t size = (size_t)&_ebss - (size_t)&_car_region_start;
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asan_unpoison_shadow((void *)&_car_region_start, size);
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#elif ENV_RAMSTAGE
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size_t size = (size_t)&_eheap - (size_t)&_data;
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asan_unpoison_shadow((void *)&_data, size);
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asan_ctors();
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#endif
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}
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void __asan_poison_stack_memory(const void *addr, size_t size)
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{
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asan_poison_shadow(addr, ALIGN_UP(size, ASAN_SHADOW_SCALE_SIZE),
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ASAN_USE_AFTER_SCOPE);
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}
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void __asan_unpoison_stack_memory(const void *addr, size_t size)
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{
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asan_unpoison_shadow(addr, size);
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}
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#define DEFINE_ASAN_LOAD_STORE(size) \
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void __asan_load##size(unsigned long addr) \
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{ \
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check_memory_region_inline(addr, size, false, _RET_IP_);\
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} \
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void __asan_load##size##_noabort(unsigned long addr) \
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{ \
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check_memory_region_inline(addr, size, false, _RET_IP_);\
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} \
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void __asan_store##size(unsigned long addr) \
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{ \
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check_memory_region_inline(addr, size, true, _RET_IP_); \
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} \
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void __asan_store##size##_noabort(unsigned long addr) \
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{ \
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check_memory_region_inline(addr, size, true, _RET_IP_); \
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}
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DEFINE_ASAN_LOAD_STORE(1);
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DEFINE_ASAN_LOAD_STORE(2);
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DEFINE_ASAN_LOAD_STORE(4);
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DEFINE_ASAN_LOAD_STORE(8);
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DEFINE_ASAN_LOAD_STORE(16);
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void __asan_loadN(unsigned long addr, size_t size)
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{
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check_memory_region(addr, size, false, _RET_IP_);
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}
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void __asan_storeN(unsigned long addr, size_t size)
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{
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check_memory_region(addr, size, true, _RET_IP_);
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}
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void __asan_loadN_noabort(unsigned long addr, size_t size)
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{
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check_memory_region(addr, size, false, _RET_IP_);
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}
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void __asan_storeN_noabort(unsigned long addr, size_t size)
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{
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check_memory_region(addr, size, true, _RET_IP_);
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}
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void __asan_handle_no_return(void)
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{
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}
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#define DEFINE_ASAN_SET_SHADOW(byte) \
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void __asan_set_shadow_##byte(const void *addr, size_t size) \
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{ \
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__builtin_memset((void *)addr, 0x##byte, size); \
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}
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DEFINE_ASAN_SET_SHADOW(00);
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DEFINE_ASAN_SET_SHADOW(f1);
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DEFINE_ASAN_SET_SHADOW(f2);
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DEFINE_ASAN_SET_SHADOW(f3);
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DEFINE_ASAN_SET_SHADOW(f5);
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DEFINE_ASAN_SET_SHADOW(f8);
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#define DEFINE_ASAN_REPORT_LOAD(size) \
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void __asan_report_load##size##_noabort(unsigned long addr) \
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{ \
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asan_report(addr, size, false, _RET_IP_); \
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}
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#define DEFINE_ASAN_REPORT_STORE(size) \
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void __asan_report_store##size##_noabort(unsigned long addr) \
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{ \
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asan_report(addr, size, true, _RET_IP_); \
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}
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DEFINE_ASAN_REPORT_LOAD(1);
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DEFINE_ASAN_REPORT_LOAD(2);
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DEFINE_ASAN_REPORT_LOAD(4);
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DEFINE_ASAN_REPORT_LOAD(8);
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DEFINE_ASAN_REPORT_LOAD(16);
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DEFINE_ASAN_REPORT_STORE(1);
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DEFINE_ASAN_REPORT_STORE(2);
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DEFINE_ASAN_REPORT_STORE(4);
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DEFINE_ASAN_REPORT_STORE(8);
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DEFINE_ASAN_REPORT_STORE(16);
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void __asan_report_load_n_noabort(unsigned long addr, size_t size)
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{
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asan_report(addr, size, false, _RET_IP_);
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}
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void __asan_report_store_n_noabort(unsigned long addr, size_t size)
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{
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asan_report(addr, size, true, _RET_IP_);
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}
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