389 lines
12 KiB
C
389 lines
12 KiB
C
#include "acutest.h"
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#include "unicorn/unicorn.h"
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#include "unicorn_test.h"
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#include <stdbool.h>
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#include <stdio.h>
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const uint64_t code_start = 0x1000;
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const uint64_t code_len = 0x4000;
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static void uc_common_setup(uc_engine **uc, uc_arch arch, uc_mode mode,
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const char *code, uint64_t size, uc_cpu_arm64 cpu)
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{
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OK(uc_open(arch, mode, uc));
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OK(uc_ctl_set_cpu_model(*uc, cpu));
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OK(uc_mem_map(*uc, code_start, code_len, UC_PROT_ALL));
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OK(uc_mem_write(*uc, code_start, code, size));
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}
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static void test_arm64_until(void)
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{
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uc_engine *uc;
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char code[] = "\x30\x00\x80\xd2\x11\x04\x80\xd2\x9c\x23\x00\x91";
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/*
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mov x16, #1
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mov x17, #0x20
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add x28, x28, 8
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*/
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uint64_t r_x16 = 0x12341234;
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uint64_t r_x17 = 0x78907890;
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uint64_t r_pc = 0x00000000;
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uint64_t r_x28 = 0x12341234;
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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// initialize machine registers
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OK(uc_reg_write(uc, UC_ARM64_REG_X16, &r_x16));
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OK(uc_reg_write(uc, UC_ARM64_REG_X17, &r_x17));
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OK(uc_reg_write(uc, UC_ARM64_REG_X28, &r_x28));
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// emulate the three instructions
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OK(uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 3));
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OK(uc_reg_read(uc, UC_ARM64_REG_X16, &r_x16));
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OK(uc_reg_read(uc, UC_ARM64_REG_X17, &r_x17));
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OK(uc_reg_read(uc, UC_ARM64_REG_X28, &r_x28));
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OK(uc_reg_read(uc, UC_ARM64_REG_PC, &r_pc));
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TEST_CHECK(r_x16 == 0x1);
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TEST_CHECK(r_x17 == 0x20);
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TEST_CHECK(r_x28 == 0x1234123c);
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TEST_CHECK(r_pc == (code_start + sizeof(code) - 1));
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OK(uc_close(uc));
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}
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static void test_arm64_code_patching(void)
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{
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uc_engine *uc;
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char code[] = "\x00\x04\x00\x11"; // add w0, w0, 0x1
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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// zero out x0
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uint64_t r_x0 = 0x0;
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OK(uc_reg_write(uc, UC_ARM64_REG_X0, &r_x0));
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// emulate the instruction
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OK(uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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// check value
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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TEST_CHECK(r_x0 == 0x1);
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// patch instruction
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char patch_code[] = "\x00\xfc\x1f\x11"; // add w0, w0, 0x7FF
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OK(uc_mem_write(uc, code_start, patch_code, sizeof(patch_code) - 1));
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// zero out x0
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r_x0 = 0x0;
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OK(uc_reg_write(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_emu_start(uc, code_start, code_start + sizeof(patch_code) - 1, 0, 0));
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// check value
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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TEST_CHECK(r_x0 != 0x1);
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TEST_CHECK(r_x0 == 0x7ff);
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OK(uc_close(uc));
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}
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// Need to flush the cache before running the emulation after patching
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static void test_arm64_code_patching_count(void)
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{
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uc_engine *uc;
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char code[] = "\x00\x04\x00\x11"; // add w0, w0, 0x1
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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// zero out x0
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uint64_t r_x0 = 0x0;
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OK(uc_reg_write(uc, UC_ARM64_REG_X0, &r_x0));
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// emulate the instruction
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OK(uc_emu_start(uc, code_start, -1, 0, 1));
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// check value
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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TEST_CHECK(r_x0 == 0x1);
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// patch instruction
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char patch_code[] = "\x00\xfc\x1f\x11"; // add w0, w0, 0x7FF
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OK(uc_mem_write(uc, code_start, patch_code, sizeof(patch_code) - 1));
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OK(uc_ctl_remove_cache(uc, code_start,
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code_start + sizeof(patch_code) - 1));
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// zero out x0
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r_x0 = 0x0;
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OK(uc_reg_write(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_emu_start(uc, code_start, -1, 0, 1));
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// check value
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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TEST_CHECK(r_x0 != 0x1);
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TEST_CHECK(r_x0 == 0x7ff);
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OK(uc_close(uc));
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}
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static void test_arm64_v8_pac(void)
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{
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uc_engine *uc;
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char code[] = "\x28\xfd\xea\xc8"; // casal x10, x8, [x9]
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uint64_t r_x9, r_x8, mem;
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_MAX);
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OK(uc_mem_map(uc, 0x40000, 0x1000, UC_PROT_ALL));
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OK(uc_mem_write(uc, 0x40000, "\x00\x00\x00\x00\x00\x00\x00\x00", 8));
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r_x9 = 0x40000;
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OK(uc_reg_write(uc, UC_ARM64_REG_X9, &r_x9));
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r_x8 = 0xdeadbeafdeadbeaf;
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OK(uc_reg_write(uc, UC_ARM64_REG_X8, &r_x8));
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OK(uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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OK(uc_mem_read(uc, 0x40000, (void *)&mem, 8));
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TEST_CHECK(LEINT64(mem) == r_x8);
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OK(uc_close(uc));
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}
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static void test_arm64_read_sctlr(void)
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{
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uc_engine *uc;
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uc_arm64_cp_reg reg;
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OK(uc_open(UC_ARCH_ARM64, UC_MODE_LITTLE_ENDIAN | UC_MODE_ARM, &uc));
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// SCTLR_EL1. See arm reference.
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reg.crn = 1;
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reg.crm = 0;
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reg.op0 = 0b11;
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reg.op1 = 0;
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reg.op2 = 0;
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OK(uc_reg_read(uc, UC_ARM64_REG_CP_REG, ®));
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TEST_CHECK((reg.val >> 58) == 0);
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OK(uc_close(uc));
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}
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static uint32_t test_arm64_mrs_hook_cb(uc_engine *uc, uc_arm64_reg reg,
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const uc_arm64_cp_reg *cp_reg)
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{
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uint64_t r_x2 = 0x114514;
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OK(uc_reg_write(uc, reg, &r_x2));
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// Skip
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return 1;
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}
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static void test_arm64_mrs_hook(void)
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{
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uc_engine *uc;
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uc_hook hk;
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uint64_t r_x2;
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// mrs x2, tpidrro_el0
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char code[] = "\x62\xd0\x3b\xd5";
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_LITTLE_ENDIAN | UC_MODE_ARM,
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code, sizeof(code) - 1, UC_CPU_ARM64_A72);
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OK(uc_hook_add(uc, &hk, UC_HOOK_INSN, (void *)test_arm64_mrs_hook_cb, NULL,
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1, 0, UC_ARM64_INS_MRS));
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OK(uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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OK(uc_reg_read(uc, UC_ARM64_REG_X2, &r_x2));
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TEST_CHECK(r_x2 == 0x114514);
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OK(uc_hook_del(uc, hk));
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OK(uc_close(uc));
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}
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static bool test_arm64_correct_address_in_small_jump_hook_callback(
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uc_engine *uc, int type, uint64_t address, int size, int64_t value,
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void *user_data)
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{
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// Check registers
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uint64_t r_x0 = 0x0;
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uint64_t r_pc = 0x0;
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_reg_read(uc, UC_ARM64_REG_PC, &r_pc));
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TEST_CHECK(r_x0 == 0x7F00);
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TEST_CHECK(r_pc == 0x7F00);
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// Check address
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// printf("%lx\n", address);
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TEST_CHECK(address == 0x7F00);
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return false;
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}
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static void test_arm64_correct_address_in_small_jump_hook(void)
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{
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uc_engine *uc;
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// mov x0, 0x7F00;
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// br x0
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char code[] = "\x00\xe0\x8f\xd2\x00\x00\x1f\xd6";
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uint64_t r_x0 = 0x0;
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uint64_t r_pc = 0x0;
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uc_hook hook;
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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OK(uc_hook_add(uc, &hook, UC_HOOK_MEM_UNMAPPED,
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test_arm64_correct_address_in_small_jump_hook_callback, NULL,
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1, 0));
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uc_assert_err(
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UC_ERR_FETCH_UNMAPPED,
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uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_reg_read(uc, UC_ARM64_REG_PC, &r_pc));
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TEST_CHECK(r_x0 == 0x7F00);
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TEST_CHECK(r_pc == 0x7F00);
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OK(uc_close(uc));
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}
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static bool test_arm64_correct_address_in_long_jump_hook_callback(
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uc_engine *uc, int type, uint64_t address, int size, int64_t value,
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void *user_data)
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{
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// Check registers
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uint64_t r_x0 = 0x0;
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uint64_t r_pc = 0x0;
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_reg_read(uc, UC_ARM64_REG_PC, &r_pc));
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TEST_CHECK(r_x0 == 0x7FFFFFFFFFFFFF00);
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TEST_CHECK(r_pc == 0x7FFFFFFFFFFFFF00);
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// Check address
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// printf("%lx\n", address);
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TEST_CHECK(address == 0x7FFFFFFFFFFFFF00);
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return false;
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}
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static void test_arm64_correct_address_in_long_jump_hook(void)
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{
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uc_engine *uc;
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// mov x0, 0x7FFFFFFFFFFFFF00;
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// br x0
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char code[] = "\xe0\xdb\x78\xb2\x00\x00\x1f\xd6";
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uint64_t r_x0 = 0x0;
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uint64_t r_pc = 0x0;
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uc_hook hook;
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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OK(uc_hook_add(uc, &hook, UC_HOOK_MEM_UNMAPPED,
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test_arm64_correct_address_in_long_jump_hook_callback, NULL,
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1, 0));
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uc_assert_err(
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UC_ERR_FETCH_UNMAPPED,
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uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_reg_read(uc, UC_ARM64_REG_PC, &r_pc));
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TEST_CHECK(r_x0 == 0x7FFFFFFFFFFFFF00);
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TEST_CHECK(r_pc == 0x7FFFFFFFFFFFFF00);
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OK(uc_close(uc));
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}
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static void test_arm64_block_sync_pc_cb(uc_engine *uc, uint64_t addr,
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uint32_t size, void *data)
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{
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uint64_t val = code_start;
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bool first = *(bool *)data;
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if (first) {
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OK(uc_reg_write(uc, UC_ARM64_REG_PC, (void *)&val));
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*(bool *)data = false;
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}
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}
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static void test_arm64_block_sync_pc(void)
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{
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uc_engine *uc;
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// add x0, x0, #1234;bl t;t:mov x1, #5678;
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const char code[] = "\x00\x48\x13\x91\x01\x00\x00\x94\xc1\xc5\x82\xd2";
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uc_hook hk;
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uint64_t x0;
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bool data = true;
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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OK(uc_hook_add(uc, &hk, UC_HOOK_BLOCK, test_arm64_block_sync_pc_cb,
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(void *)&data, code_start + 8, code_start + 12));
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x0 = 0;
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OK(uc_reg_write(uc, UC_ARM64_REG_X0, (void *)&x0));
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OK(uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, (void *)&x0));
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TEST_CHECK(x0 == (1234 * 2));
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OK(uc_hook_del(uc, hk));
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OK(uc_close(uc));
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}
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static bool
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test_arm64_block_invalid_mem_read_write_sync_cb(uc_engine *uc, int type,
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uint64_t address, int size,
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int64_t value, void *user_data)
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{
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return 0;
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}
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static void test_arm64_block_invalid_mem_read_write_sync(void)
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{
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uc_engine *uc;
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// mov x0, #1
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// mov x1, #2
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// ldr x0, [x1]
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const char code[] = "\x20\x00\x80\xd2\x41\x00\x80\xd2\x20\x00\x40\xf9";
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uint64_t r_pc, r_x0, r_x1;
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uc_hook hk;
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uc_common_setup(&uc, UC_ARCH_ARM64, UC_MODE_ARM, code, sizeof(code) - 1,
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UC_CPU_ARM64_A72);
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OK(uc_hook_add(uc, &hk, UC_HOOK_MEM_READ,
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test_arm64_block_invalid_mem_read_write_sync_cb, NULL, 1,
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0));
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uc_assert_err(
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UC_ERR_READ_UNMAPPED,
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uc_emu_start(uc, code_start, code_start + sizeof(code) - 1, 0, 0));
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OK(uc_reg_read(uc, UC_ARM64_REG_PC, &r_pc));
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OK(uc_reg_read(uc, UC_ARM64_REG_X0, &r_x0));
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OK(uc_reg_read(uc, UC_ARM64_REG_X1, &r_x1));
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TEST_CHECK(r_pc == code_start + 8);
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TEST_CHECK(r_x0 == 1);
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TEST_CHECK(r_x1 == 2);
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OK(uc_close(uc));
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}
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TEST_LIST = {{"test_arm64_until", test_arm64_until},
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{"test_arm64_code_patching", test_arm64_code_patching},
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{"test_arm64_code_patching_count", test_arm64_code_patching_count},
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{"test_arm64_v8_pac", test_arm64_v8_pac},
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{"test_arm64_read_sctlr", test_arm64_read_sctlr},
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{"test_arm64_mrs_hook", test_arm64_mrs_hook},
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{"test_arm64_correct_address_in_small_jump_hook",
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test_arm64_correct_address_in_small_jump_hook},
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{"test_arm64_correct_address_in_long_jump_hook",
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test_arm64_correct_address_in_long_jump_hook},
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{"test_arm64_block_sync_pc", test_arm64_block_sync_pc},
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{"test_arm64_block_invalid_mem_read_write_sync",
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test_arm64_block_invalid_mem_read_write_sync},
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{NULL, NULL}};
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