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hw/i386: Use Rev3 FADT (ACPI 2.0) instead of Rev1 to improve guest OS support.
This updates the FADT generated for x86/64 machine types from Revision 1 to 3. (Based on ACPI standard 2.0 instead of 1.0) The intention is to expose the reset register information to guest operating systems which require it, specifically OS X/macOS. Revision 1 FADTs do not contain the fields relating to the reset register. The new layout and contents remains backwards-compatible with operating systems which only support ACPI 1.0, as the existing fields are not modified by this change, as the 64-bit and 32-bit variants are allowed to co-exist according to the ACPI 2.0 standard. No regressions became apparent in tests with a range of Windows (XP-10) and Linux versions. The BIOS tables test suite's FADT checksum test has also been updated to reflect the new FADT layout and content. Signed-off-by: Phil Dennis-Jordan <phil@philjordan.eu> Message-Id: <1489558827-28971-2-git-send-email-phil@philjordan.eu> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
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e619b14746
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@ -272,7 +272,7 @@ build_facs(GArray *table_data, BIOSLinker *linker)
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}
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/* Load chipset information in FADT */
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static void fadt_setup(AcpiFadtDescriptorRev1 *fadt, AcpiPmInfo *pm)
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static void fadt_setup(AcpiFadtDescriptorRev3 *fadt, AcpiPmInfo *pm)
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{
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fadt->model = 1;
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fadt->reserved1 = 0;
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@ -304,6 +304,28 @@ static void fadt_setup(AcpiFadtDescriptorRev1 *fadt, AcpiPmInfo *pm)
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fadt->flags |= cpu_to_le32(1 << ACPI_FADT_F_FORCE_APIC_CLUSTER_MODEL);
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}
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fadt->century = RTC_CENTURY;
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fadt->flags |= cpu_to_le32(1 << ACPI_FADT_F_RESET_REG_SUP);
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fadt->reset_value = 0xf;
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fadt->reset_register.space_id = AML_SYSTEM_IO;
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fadt->reset_register.bit_width = 8;
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fadt->reset_register.address = cpu_to_le64(ICH9_RST_CNT_IOPORT);
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fadt->xpm1a_event_block.space_id = AML_SYSTEM_IO;
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fadt->xpm1a_event_block.bit_width = fadt->pm1_evt_len * 8;
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fadt->xpm1a_event_block.address = cpu_to_le64(pm->io_base);
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fadt->xpm1a_control_block.space_id = AML_SYSTEM_IO;
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fadt->xpm1a_control_block.bit_width = fadt->pm1_cnt_len * 8;
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fadt->xpm1a_control_block.address = cpu_to_le64(pm->io_base + 0x4);
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fadt->xpm_timer_block.space_id = AML_SYSTEM_IO;
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fadt->xpm_timer_block.bit_width = fadt->pm_tmr_len * 8;
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fadt->xpm_timer_block.address = cpu_to_le64(pm->io_base + 0x8);
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fadt->xgpe0_block.space_id = AML_SYSTEM_IO;
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fadt->xgpe0_block.bit_width = pm->gpe0_blk_len * 8;
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fadt->xgpe0_block.address = cpu_to_le64(pm->gpe0_blk);
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}
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@ -313,9 +335,10 @@ build_fadt(GArray *table_data, BIOSLinker *linker, AcpiPmInfo *pm,
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unsigned facs_tbl_offset, unsigned dsdt_tbl_offset,
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const char *oem_id, const char *oem_table_id)
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{
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AcpiFadtDescriptorRev1 *fadt = acpi_data_push(table_data, sizeof(*fadt));
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AcpiFadtDescriptorRev3 *fadt = acpi_data_push(table_data, sizeof(*fadt));
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unsigned fw_ctrl_offset = (char *)&fadt->firmware_ctrl - table_data->data;
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unsigned dsdt_entry_offset = (char *)&fadt->dsdt - table_data->data;
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unsigned xdsdt_entry_offset = (char *)&fadt->Xdsdt - table_data->data;
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/* FACS address to be filled by Guest linker */
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bios_linker_loader_add_pointer(linker,
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@ -327,9 +350,12 @@ build_fadt(GArray *table_data, BIOSLinker *linker, AcpiPmInfo *pm,
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bios_linker_loader_add_pointer(linker,
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ACPI_BUILD_TABLE_FILE, dsdt_entry_offset, sizeof(fadt->dsdt),
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ACPI_BUILD_TABLE_FILE, dsdt_tbl_offset);
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bios_linker_loader_add_pointer(linker,
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ACPI_BUILD_TABLE_FILE, xdsdt_entry_offset, sizeof(fadt->Xdsdt),
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ACPI_BUILD_TABLE_FILE, dsdt_tbl_offset);
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build_header(linker, table_data,
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(void *)fadt, "FACP", sizeof(*fadt), 1, oem_id, oem_table_id);
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(void *)fadt, "FACP", sizeof(*fadt), 3, oem_id, oem_table_id);
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}
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void pc_madt_cpu_entry(AcpiDeviceIf *adev, int uid,
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@ -131,17 +131,37 @@ typedef struct AcpiTableHeader AcpiTableHeader;
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uint8_t duty_width; /* Bit width of duty cycle field in p_cnt reg */ \
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uint8_t day_alrm; /* Index to day-of-month alarm in RTC CMOS RAM */ \
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uint8_t mon_alrm; /* Index to month-of-year alarm in RTC CMOS RAM */ \
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uint8_t century; /* Index to century in RTC CMOS RAM */
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struct AcpiFadtDescriptorRev1
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{
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ACPI_FADT_COMMON_DEF
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uint8_t reserved4; /* Reserved */
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uint8_t reserved4a; /* Reserved */
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uint8_t reserved4b; /* Reserved */
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uint32_t flags;
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} QEMU_PACKED;
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typedef struct AcpiFadtDescriptorRev1 AcpiFadtDescriptorRev1;
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uint8_t century; /* Index to century in RTC CMOS RAM */ \
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/* IA-PC Boot Architecture Flags (see below for individual flags) */ \
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uint16_t boot_flags; \
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uint8_t reserved; /* Reserved, must be zero */ \
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/* Miscellaneous flag bits (see below for individual flags) */ \
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uint32_t flags; \
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/* 64-bit address of the Reset register */ \
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struct AcpiGenericAddress reset_register; \
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/* Value to write to the reset_register port to reset the system */ \
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uint8_t reset_value; \
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/* ARM-Specific Boot Flags (see below for individual flags) (ACPI 5.1) */ \
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uint16_t arm_boot_flags; \
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uint8_t minor_revision; /* FADT Minor Revision (ACPI 5.1) */ \
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uint64_t Xfacs; /* 64-bit physical address of FACS */ \
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uint64_t Xdsdt; /* 64-bit physical address of DSDT */ \
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/* 64-bit Extended Power Mgt 1a Event Reg Blk address */ \
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struct AcpiGenericAddress xpm1a_event_block; \
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/* 64-bit Extended Power Mgt 1b Event Reg Blk address */ \
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struct AcpiGenericAddress xpm1b_event_block; \
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/* 64-bit Extended Power Mgt 1a Control Reg Blk address */ \
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struct AcpiGenericAddress xpm1a_control_block; \
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/* 64-bit Extended Power Mgt 1b Control Reg Blk address */ \
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struct AcpiGenericAddress xpm1b_control_block; \
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/* 64-bit Extended Power Mgt 2 Control Reg Blk address */ \
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struct AcpiGenericAddress xpm2_control_block; \
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/* 64-bit Extended Power Mgt Timer Ctrl Reg Blk address */ \
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struct AcpiGenericAddress xpm_timer_block; \
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/* 64-bit Extended General Purpose Event 0 Reg Blk address */ \
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struct AcpiGenericAddress xgpe0_block; \
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/* 64-bit Extended General Purpose Event 1 Reg Blk address */ \
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struct AcpiGenericAddress xgpe1_block; \
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struct AcpiGenericAddress {
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uint8_t space_id; /* Address space where struct or register exists */
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@ -151,38 +171,13 @@ struct AcpiGenericAddress {
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uint64_t address; /* 64-bit address of struct or register */
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} QEMU_PACKED;
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struct AcpiFadtDescriptorRev3 {
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ACPI_FADT_COMMON_DEF
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} QEMU_PACKED;
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typedef struct AcpiFadtDescriptorRev3 AcpiFadtDescriptorRev3;
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struct AcpiFadtDescriptorRev5_1 {
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ACPI_FADT_COMMON_DEF
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/* IA-PC Boot Architecture Flags (see below for individual flags) */
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uint16_t boot_flags;
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uint8_t reserved; /* Reserved, must be zero */
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/* Miscellaneous flag bits (see below for individual flags) */
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uint32_t flags;
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/* 64-bit address of the Reset register */
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struct AcpiGenericAddress reset_register;
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/* Value to write to the reset_register port to reset the system */
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uint8_t reset_value;
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/* ARM-Specific Boot Flags (see below for individual flags) (ACPI 5.1) */
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uint16_t arm_boot_flags;
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uint8_t minor_revision; /* FADT Minor Revision (ACPI 5.1) */
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uint64_t Xfacs; /* 64-bit physical address of FACS */
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uint64_t Xdsdt; /* 64-bit physical address of DSDT */
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/* 64-bit Extended Power Mgt 1a Event Reg Blk address */
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struct AcpiGenericAddress xpm1a_event_block;
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/* 64-bit Extended Power Mgt 1b Event Reg Blk address */
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struct AcpiGenericAddress xpm1b_event_block;
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/* 64-bit Extended Power Mgt 1a Control Reg Blk address */
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struct AcpiGenericAddress xpm1a_control_block;
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/* 64-bit Extended Power Mgt 1b Control Reg Blk address */
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struct AcpiGenericAddress xpm1b_control_block;
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/* 64-bit Extended Power Mgt 2 Control Reg Blk address */
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struct AcpiGenericAddress xpm2_control_block;
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/* 64-bit Extended Power Mgt Timer Ctrl Reg Blk address */
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struct AcpiGenericAddress xpm_timer_block;
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/* 64-bit Extended General Purpose Event 0 Reg Blk address */
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struct AcpiGenericAddress xgpe0_block;
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/* 64-bit Extended General Purpose Event 1 Reg Blk address */
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struct AcpiGenericAddress xgpe1_block;
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/* 64-bit Sleep Control register (ACPI 5.0) */
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struct AcpiGenericAddress sleep_control;
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/* 64-bit Sleep Status register (ACPI 5.0) */
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@ -87,6 +87,16 @@ typedef struct {
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g_assert_cmpstr(ACPI_ASSERT_CMP_str, ==, expected); \
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} while (0)
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#define ACPI_READ_GENERIC_ADDRESS(field, addr) \
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do { \
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ACPI_READ_FIELD((field).space_id, addr); \
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ACPI_READ_FIELD((field).bit_width, addr); \
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ACPI_READ_FIELD((field).bit_offset, addr); \
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ACPI_READ_FIELD((field).access_width, addr); \
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ACPI_READ_FIELD((field).address, addr); \
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} while (0);
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uint8_t acpi_calc_checksum(const uint8_t *data, int len);
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uint32_t acpi_find_rsdp_address(void);
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void acpi_parse_rsdp_table(uint32_t addr, AcpiRsdpDescriptor *rsdp_table);
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@ -29,7 +29,7 @@ typedef struct {
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uint32_t rsdp_addr;
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AcpiRsdpDescriptor rsdp_table;
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AcpiRsdtDescriptorRev1 rsdt_table;
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AcpiFadtDescriptorRev1 fadt_table;
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AcpiFadtDescriptorRev3 fadt_table;
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AcpiFacsDescriptorRev1 facs_table;
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uint32_t *rsdt_tables_addr;
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int rsdt_tables_nr;
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@ -126,7 +126,7 @@ static void test_acpi_rsdt_table(test_data *data)
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static void test_acpi_fadt_table(test_data *data)
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{
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AcpiFadtDescriptorRev1 *fadt_table = &data->fadt_table;
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AcpiFadtDescriptorRev3 *fadt_table = &data->fadt_table;
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uint32_t addr;
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/* FADT table comes first */
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@ -168,10 +168,23 @@ static void test_acpi_fadt_table(test_data *data)
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ACPI_READ_FIELD(fadt_table->day_alrm, addr);
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ACPI_READ_FIELD(fadt_table->mon_alrm, addr);
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ACPI_READ_FIELD(fadt_table->century, addr);
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ACPI_READ_FIELD(fadt_table->reserved4, addr);
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ACPI_READ_FIELD(fadt_table->reserved4a, addr);
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ACPI_READ_FIELD(fadt_table->reserved4b, addr);
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ACPI_READ_FIELD(fadt_table->boot_flags, addr);
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ACPI_READ_FIELD(fadt_table->reserved, addr);
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ACPI_READ_FIELD(fadt_table->flags, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->reset_register, addr);
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ACPI_READ_FIELD(fadt_table->reset_value, addr);
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ACPI_READ_FIELD(fadt_table->arm_boot_flags, addr);
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ACPI_READ_FIELD(fadt_table->minor_revision, addr);
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ACPI_READ_FIELD(fadt_table->Xfacs, addr);
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ACPI_READ_FIELD(fadt_table->Xdsdt, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xpm1a_event_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xpm1b_event_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xpm1a_control_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xpm1b_control_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xpm2_control_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xpm_timer_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xgpe0_block, addr);
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ACPI_READ_GENERIC_ADDRESS(fadt_table->xgpe1_block, addr);
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ACPI_ASSERT_CMP(fadt_table->signature, "FACP");
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g_assert(!acpi_calc_checksum((uint8_t *)fadt_table, fadt_table->length));
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