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Searched refs:PE (Results 1 – 25 of 48) sorted by relevance

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/linux/Documentation/arch/powerpc/
H A Dpci_iov_resource_on_powernv.rst22 A Partitionable Endpoint (PE) is a way to group the various resources
28 There is thus, in HW, a table of PE states that contains a pair of "frozen"
30 cleared independently) for each PE.
32 When a PE is frozen, all stores in any direction are dropped and all loads
54 correspondence between a PCIe RID (bus/dev/fn) with a PE number.
57 - For DMA we then provide an entire address space for each PE that can
66 bridge being triggered. There's a PE# in the interrupt controller
67 descriptor table as well which is compared with the PE# obtained from
96 maps each segment to a PE#. That allows portions of the MMIO space
103 can be assigned to a PE.
[all …]
/linux/Documentation/translations/zh_CN/arch/riscv/
H A Dboot-image-header.rst35 u32 res3; /* Reserved for PE COFF offset */
37 这种头格式与PE/COFF文件头兼容,并在很大程度上受到ARM64文件头的启发。因此,ARM64
44 EFI应用程序一样加载,EFI规范中规定在内核镜像的开始需要PE/COFF镜像文件头。为了
45 支持EFI桩,应该用“MZ”魔术字符替换掉code0,并且res3(偏移量未0x3c)应指向PE/COFF
/linux/arch/arm/boot/compressed/
H A Defi-header.S19 @ PE/COFF signature "MZ" in the first two bytes, so the kernel
36 @ The PE header can be anywhere in the file, but for
38 @ The offset to the PE/COFF header needs to be at offset
41 @ PE/COFF offset, and the "MZ" bytes at offset 0x0.
43 .long pe_header - start @ Offset to the PE header.
/linux/Documentation/arch/riscv/
H A Dboot-image-header.rst22 u32 res3; /* Reserved for PE COFF offset */
24 This header format is compliant with PE/COFF header and largely inspired from
32 needs PE/COFF image header in the beginning of the kernel image in order to
35 PE/COFF header.
/linux/Documentation/translations/zh_TW/arch/loongarch/
H A Dbooting.rst37 內核鏡像是EFI鏡像。作爲PE文件,它們有一個64字節的頭部結構體,如下所示::
48 u32 pe_header - _head /* 到PE頭的偏移量 */
/linux/Documentation/translations/zh_CN/arch/loongarch/
H A Dbooting.rst37 内核镜像是EFI镜像。作为PE文件,它们有一个64字节的头部结构体,如下所示::
48 u32 pe_header - _head /* 到PE头的偏移量 */
/linux/arch/m68k/include/asm/
H A DMC68328.h538 #define PE(x) (1 << (x)) macro
540 #define PE_CSA1 PE(1) /* Use CSA1 as PE(1) */
541 #define PE_CSA2 PE(2) /* Use CSA2 as PE(2) */
542 #define PE_CSA3 PE(3) /* Use CSA3 as PE(3) */
543 #define PE_CSB0 PE(4) /* Use CSB0 as PE(4) */
544 #define PE_CSB1 PE(5) /* Use CSB1 as PE(5) */
545 #define PE_CSB2 PE(6) /* Use CSB2 as PE(6) */
546 #define PE_CSB3 PE(7) /* Use CSB3 as PE(7) */
/linux/Documentation/translations/zh_CN/arch/arm64/
H A Dbooting.txt102 u32 res5; /* 保留 (用于 PE COFF 偏移) */
112 res5 是到 PE 文件头的偏移,而 PE 文件头含有 EFI 的启动入口点
/linux/Documentation/translations/zh_TW/arch/arm64/
H A Dbooting.txt106 u32 res5; /* 保留 (用於 PE COFF 偏移) */
116 res5 是到 PE 文件頭的偏移,而 PE 文件頭含有 EFI 的啓動入口點
/linux/Documentation/arch/loongarch/
H A Dbooting.rst30 Linux/LoongArch kernel images are EFI images. Being PE files, they have
42 u32 pe_header - _head /* Offset to the PE header */
/linux/Documentation/driver-api/
H A Dvfio.rst474 one table per a IOMMU group which is a Partitionable Endpoint (PE)
475 (PE is often a PCI domain but not always).
483 out of the window leads to the whole PE isolation.
492 4) According to sPAPR specification, A Partitionable Endpoint (PE) is an I/O
494 error recovery. A PE may be a single or multi-function IOA (IO Adapter), a
561 * PE, and put child devices belonging to same IOMMU group to the
562 * PE instance for later reference.
565 /* Check the PE's state and make sure it's in functional state */
588 * of the PCI device. Check the PE's state to see if that has been
594 * produce any more PCI traffic from/to the affected PE until
[all …]
/linux/drivers/gpib/gpio/
H A Dgpib_bitbang.c167 #define PE all_descriptors[16] macro
1226 gpios_vector[&(PE) - &all_descriptors[0]] = -1; in bb_attach()
1232 gpios_vector[&(PE) - &all_descriptors[0]] = -1; in bb_attach()
1243 gpios_vector[&(PE) - &all_descriptors[0]] = -1; in bb_attach()
1264 gpiod_direction_output(PE, 1); in bb_attach()
1444 gpiod_set_value(PE, 1); /* set data lines to transmit on sn75160b */ in SET_DIR_WRITE()
1462 gpiod_set_value(PE, 0); /* set data lines to receive on sn75160b */ in SET_DIR_READ()
/linux/crypto/asymmetric_keys/
H A DKconfig81 bool "Support for PE file signature verification"
89 signed PE binary.
/linux/arch/x86/realmode/rm/
H A Dtrampoline_32.S53 movw $1, %dx # protected mode (PE) bit
/linux/Documentation/admin-guide/
H A Defi-stub.rst6 as a PE/COFF image, thereby convincing EFI firmware loaders to load
17 masquerades as a PE/COFF image and the EFI stub is linked into the
/linux/arch/arm/boot/dts/allwinner/
H A Dsun8i-t113s-netcube-nagami-keypad-carrier.dts96 "ETH_CRSDV", "ETH_RXD0", "ETH_RXD1", "ETH_TXCK", // PE
H A Dsun8i-v3s-netcube-kumquat.dts196 "Q12", "Q11", "Q10", "Q9", // PE
H A Dsun8i-t113s-netcube-nagami.dtsi196 "ETH_CRSDV", "ETH_RXD0", "ETH_RXD1", "ETH_TXCK", // PE
/linux/Documentation/arch/arm/
H A Duefi.rst34 PE/COFF executable, including a loader application that makes it possible to
/linux/arch/x86/boot/
H A Dheader.S49 # Offset to the PE header.
175 .word IMAGE_FILE_MACHINE_I386 # PE machine type
/linux/Documentation/ABI/testing/
H A Dsysfs-bus-coresight-devices-etm4x21 Description: (Read) Indicates the number of PE comparator inputs that are
98 Description: (RW) Controls which PE to trace.
296 Description: (RW) Access the start stop control register for PE input
329 Description: (RW) Access the selected single show PE comparator control
/linux/arch/x86/kernel/
H A Dhead_32.S270 andl $0x80000011,%eax # Save PG,PE,ET
/linux/Documentation/trace/coresight/
H A Dcoresight-etm4x-reference.rst280 Access a single shot PE comparator input control register.
311 Access PE start stop comparator input control registers
604 Number of PE comparator inputs
/linux/drivers/net/wireless/intel/iwlwifi/pcie/
H A Ddrv.c1071 IWL_DEV_INFO(iwl_rf_pe, iwl_bn201_name, RF_TYPE(PE)),
1072 IWL_DEV_INFO(iwl_rf_pe, iwl_be223_name, RF_TYPE(PE),
1074 IWL_DEV_INFO(iwl_rf_pe, iwl_bn203_name, RF_TYPE(PE),
/linux/drivers/media/dvb-frontends/
H A Dbcm3510_priv.h301 u8 PE :1; /* baud clock pin */ member

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