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/openbmc/linux/arch/x86/pci/
H A Dce4100.c45 #define KB (1024) macro
106 DEFINE_REG(2, 1, 0x10, (64*KB), reg_init, reg_read, reg_write)
107 DEFINE_REG(3, 0, 0x10, (64*KB), reg_init, reg_read, reg_write)
108 DEFINE_REG(4, 0, 0x10, (128*KB), reg_init, reg_read, reg_write)
109 DEFINE_REG(4, 1, 0x10, (128*KB), reg_init, reg_read, reg_write)
110 DEFINE_REG(6, 0, 0x10, (512*KB), reg_init, reg_read, reg_write)
111 DEFINE_REG(6, 1, 0x10, (512*KB), reg_init, reg_read, reg_write)
112 DEFINE_REG(6, 2, 0x10, (64*KB), reg_init, reg_read, reg_write)
114 DEFINE_REG(8, 1, 0x10, (64*KB), reg_init, reg_read, reg_write)
115 DEFINE_REG(8, 2, 0x10, (64*KB), reg_init, reg_read, reg_write)
[all …]
/openbmc/u-boot/board/freescale/t208xrdb/
H A DREADME13 - 2MB L2 cache and 512KB CoreNet platform cache (CPC)
89 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - CPLD 4KB
90 0xF_FF80_0000 0xF_FF80_FFFF IFC - NAND Flash 64KB
92 0xF_F803_0000 0xF_F803_FFFF PCI Express 4 I/O Space 64KB
93 0xF_F802_0000 0xF_F802_FFFF PCI Express 3 I/O Space 64KB
94 0xF_F801_0000 0xF_F801_FFFF PCI Express 2 I/O Space 64KB
95 0xF_F800_0000 0xF_F800_FFFF PCI Express 1 I/O Space 64KB
110 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
111 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
112 0xEFF00000 0xEFF1FFFF FMAN Ucode (current bank) 128KB
[all …]
/openbmc/linux/Documentation/translations/zh_CN/arch/arm64/
H A Dmemory.txt33 页大小为 4KB 的 4 级转换表和页大小为 64KB 的 3 级转换表。
35 AArch64 Linux 使用 3 级或 4 级转换表,其页大小配置为 4KB,对于用户和内核
37 对于页大小为 64KB的配置,仅使用 2 级转换表,有 42-bit (4TB) 的虚拟地址空间,但内存布局相同。
45 AArch64 Linux 在页大小为 4KB,并使用 3 级转换表时的内存布局:
53 AArch64 Linux 在页大小为 4KB,并使用 4 级转换表时的内存布局:
61 AArch64 Linux 在页大小为 64KB,并使用 2 级转换表时的内存布局:
69 AArch64 Linux 在页大小为 64KB,并使用 3 级转换表时的内存布局:
80 4KB 页大小的转换表查找:
95 64KB 页大小的转换表查找:
/openbmc/linux/Documentation/translations/zh_TW/arch/arm64/
H A Dmemory.txt37 頁大小爲 4KB 的 4 級轉換表和頁大小爲 64KB 的 3 級轉換表。
39 AArch64 Linux 使用 3 級或 4 級轉換表,其頁大小配置爲 4KB,對於用戶和內核
41 對於頁大小爲 64KB的配置,僅使用 2 級轉換表,有 42-bit (4TB) 的虛擬地址空間,但內存布局相同。
49 AArch64 Linux 在頁大小爲 4KB,並使用 3 級轉換表時的內存布局:
57 AArch64 Linux 在頁大小爲 4KB,並使用 4 級轉換表時的內存布局:
65 AArch64 Linux 在頁大小爲 64KB,並使用 2 級轉換表時的內存布局:
73 AArch64 Linux 在頁大小爲 64KB,並使用 3 級轉換表時的內存布局:
84 4KB 頁大小的轉換表查找:
99 64KB 頁大小的轉換表查找:
/openbmc/u-boot/board/freescale/t104xrdb/
H A DREADME45 - Four e5500 cores, each with a private 256 KB L2 cache
46 - 256 KB shared L3 CoreNet platform cache (CPC)
168 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - CPLD 4KB
169 0xF_FF80_0000 0xF_FF80_FFFF IFC - NAND Flash 64KB
171 0xF_F803_0000 0xF_F803_FFFF PCI Express 4 I/O Space 64KB
172 0xF_F802_0000 0xF_F802_FFFF PCI Express 3 I/O Space 64KB
173 0xF_F801_0000 0xF_F801_FFFF PCI Express 2 I/O Space 64KB
174 0xF_F800_0000 0xF_F800_FFFF PCI Express 1 I/O Space 64KB
189 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
190 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
[all …]
/openbmc/u-boot/board/freescale/t102xrdb/
H A DREADME14 - two e5500 cores, each with a private 256 KB L2 cache
19 - 256 KB shared L3 CoreNet platform cache (CPC)
129 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - CPLD 4KB
130 0xF_FF80_0000 0xF_FF80_FFFF IFC - NAND Flash 64KB
132 0xF_F802_0000 0xF_F802_FFFF PCI Express 3 I/O Space 64KB
133 0xF_F801_0000 0xF_F801_FFFF PCI Express 2 I/O Space 64KB
134 0xF_F800_0000 0xF_F800_FFFF PCI Express 1 I/O Space 64KB
148 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
149 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
150 0xEFF00000 0xEFF1FFFF FMAN Ucode (current bank) 128KB
[all …]
/openbmc/u-boot/board/freescale/t102xqds/
H A DREADME14 - two e5500 cores, each with a private 256 KB L2 cache
19 - 256 KB shared L3 CoreNet platform cache (CPC)
155 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - FPGA 4KB
156 0xF_FF80_0000 0xF_FF80_FFFF IFC - NAND Flash 64KB
158 0xF_F802_0000 0xF_F802_FFFF PCI Express 3 I/O Space 64KB
159 0xF_F801_0000 0xF_F801_FFFF PCI Express 2 I/O Space 64KB
160 0xF_F800_0000 0xF_F800_FFFF PCI Express 1 I/O Space 64KB
175 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
176 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
177 0xEFF00000 0xEFF1FFFF FMAN Ucode (current bank) 128KB
[all …]
/openbmc/u-boot/board/freescale/t208xqds/
H A DREADME13 - 2MB L2 cache and 512KB CoreNet platform cache (CPC)
69 - Three SPI flash (16MB N25Q128A + 16MB EN25S64 + 512KB SST25WF040)
124 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - CPLD 4KB
125 0xF_FF80_0000 0xF_FF80_FFFF IFC - NAND Flash 64KB
127 0xF_F803_0000 0xF_F803_FFFF PCI Express 4 I/O Space 64KB
128 0xF_F802_0000 0xF_F802_FFFF PCI Express 3 I/O Space 64KB
129 0xF_F801_0000 0xF_F801_FFFF PCI Express 2 I/O Space 64KB
130 0xF_F800_0000 0xF_F800_FFFF PCI Express 1 I/O Space 64KB
145 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
146 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
[all …]
/openbmc/u-boot/board/freescale/t1040qds/
H A DREADME14 - Four e5500 cores, each with a private 256 KB L2 cache
15 - 256 KB shared L3 CoreNet platform cache (CPC)
99 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - FPGA 4KB
100 0xF_FF80_0000 0xF_FF80_FFFF IFC - NAND Flash 64KB
102 0xF_F803_0000 0xF_F803_FFFF PCI Express 4 I/O Space 64KB
103 0xF_F802_0000 0xF_F802_FFFF PCI Express 3 I/O Space 64KB
104 0xF_F801_0000 0xF_F801_FFFF PCI Express 2 I/O Space 64KB
105 0xF_F800_0000 0xF_F800_FFFF PCI Express 1 I/O Space 64KB
121 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
122 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
[all …]
/openbmc/u-boot/doc/
H A DREADME.N121327 - 4KB & 1MB.
28 - 8KB & 1MB.
33 - Cache size: 8KB/16KB/32KB/64KB.
38 - Size: 4KB to 1MB.
H A DREADME.b4860qds90 - 2 KB internal memory space including
173 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - FPGA 4 KB
175 0xF_FF80_0000 0xF_FF80_FFFF IFC NAND Flash 64 KB
179 0xF_F800_0000 0xF_F800_FFFF PCIe I/O Space 64 KB
203 0xF_FFDF_0000 0xF_FFDF_0FFF IFC - FPGA 4 KB
205 0xF_FF80_0000 0xF_FF80_FFFF IFC NAND Flash 64 KB
209 0xF_F800_0000 0xF_F800_FFFF PCIe I/O Space 64 KB
230 0xEFF40000 0xEFFFFFFF U-Boot (current bank) 768KB
231 0xEFF20000 0xEFF3FFFF U-Boot env (current bank) 128KB
232 0xEFF00000 0xEFF1FFFF FMAN Ucode (current bank) 128KB
[all …]
/openbmc/linux/kernel/
H A Dtsacct.c85 #define KB 1024 macro
86 #define MB (1024*KB)
87 #define KB_MASK (~(KB-1))
97 do_div(stats->coremem, 1000 * KB); in xacct_add_tsk()
99 do_div(stats->virtmem, 1000 * KB); in xacct_add_tsk()
103 stats->hiwater_rss = get_mm_hiwater_rss(mm) * PAGE_SIZE / KB; in xacct_add_tsk()
104 stats->hiwater_vm = get_mm_hiwater_vm(mm) * PAGE_SIZE / KB; in xacct_add_tsk()
121 #undef KB
/openbmc/u-boot/board/freescale/t4qds/
H A DREADME111 0x0_f800_0000 (0xf_f800_0000) - 0x0_f803_ffff 256KB PCIE IO
114 0x0_ffdf_0000 (0xf_ffdf_0000) - 0x0_ffdf_03ff 4KB QIXIS
115 0x0_ffff_f000 (0x0_7fff_fff0) - 0x0_ffff_ffff 4KB Boot page translation for secondary cores
147 and copy U-Boot(768 KB) from NAND/SD device to DDR.
158 |SecureBoot header | 0xFFFC0000 (32KB) |
160 |GD, BD | 0xFFFC8000 (4KB) |
162 |ENV | 0xFFFC9000 (8KB) |
164 |HEAP | 0xFFFCB000 (50KB) |
166 |STACK | 0xFFFD8000 (22KB) |
168 |U-Boot SPL | 0xFFFD8000 (160KB) |
[all …]
/openbmc/linux/lib/lz4/
H A Dlz4hc_compress.c65 hc4->nextToUpdate = 64 * KB; in LZ4HC_init()
66 hc4->base = start - 64 * KB; in LZ4HC_init()
68 hc4->dictBase = start - 64 * KB; in LZ4HC_init()
69 hc4->dictLimit = 64 * KB; in LZ4HC_init()
70 hc4->lowLimit = 64 * KB; in LZ4HC_init()
111 const U32 lowLimit = (hc4->lowLimit + 64 * KB > (U32)(ip - base)) in LZ4HC_InsertAndFindBestMatch()
113 : (U32)(ip - base) - (64 * KB - 1); in LZ4HC_InsertAndFindBestMatch()
183 const U32 lowLimit = (hc4->lowLimit + 64 * KB > (U32)(ip - base)) in LZ4HC_InsertAndGetWiderMatch()
185 : (U32)(ip - base) - (64 * KB - 1); in LZ4HC_InsertAndGetWiderMatch()
631 if (dictSize > 64 * KB) { in LZ4_loadDictHC()
[all …]
H A Dlz4_compress.c43 static const int LZ4_64Klimit = ((64 * KB) + (MFLIMIT - 1));
795 if ((dictEnd - p) > 64 * KB) in LZ4_loadDict()
796 p = dictEnd - 64 * KB; in LZ4_loadDict()
797 dict->currentOffset += 64 * KB; in LZ4_loadDict()
819 U32 const delta = LZ4_dict->currentOffset - 64 * KB; in LZ4_renormDictT()
829 LZ4_dict->currentOffset = 64 * KB; in LZ4_renormDictT()
830 if (LZ4_dict->dictSize > 64 * KB) in LZ4_renormDictT()
831 LZ4_dict->dictSize = 64 * KB; in LZ4_renormDictT()
841 if ((U32)dictSize > 64 * KB) { in LZ4_saveDict()
843 dictSize = 64 * KB; in LZ4_saveDict()
[all …]
/openbmc/u-boot/board/freescale/ls1046ardb/
H A DREADME46 0x00_1000_0000 - 0x00_1000_FFFF OCRAM0 64KB
47 0x00_1001_0000 - 0x00_1001_FFFF OCRAM1 64KB
49 0x00_7E80_0000 - 0x00_7E80_FFFF IFC - NAND Flash 64KB
50 0x00_7FB0_0000 - 0x00_7FB0_0FFF IFC - CPLD 4KB
67 0x00_4090_0000 - 0x00_4093_FFFF FMan ucode 256KB
68 0x00_4094_0000 - 0x00_4097_FFFF QE/uQE firmware 256KB
/openbmc/linux/arch/arm64/boot/dts/xilinx/
H A Dzynqmp-sm-k26-revA.dts149 reg = <0x0 0x80000>; /* 512KB */
155 reg = <0x80000 0x80000>; /* 512KB */
161 reg = <0x100000 0x20000>; /* 128KB */
165 reg = <0x120000 0x20000>; /* 128KB */
169 reg = <0x140000 0xC0000>; /* 768KB */
177 reg = <0xF00000 0x80000>; /* 512KB */
187 reg = <0x1C80000 0x80000>; /* 512KB */
209 reg = <0x2200000 0x20000>; /* 128KB */
213 reg = <0x2220000 0x20000>; /* 128KB */
217 reg = <0x2240000 0x40000>; /* 256B but 256KB sector */
[all …]
/openbmc/openbmc/meta-arm/meta-arm-bsp/recipes-bsp/trusted-firmware-a/files/corstone1000/
H A D0003-fix-corstone1000-remove-unused-NS_SHARED_RAM-region.patch35 * partition size: 176 KB
39 - * partition size: 512 KB
48 -/* Last 512KB of CVM is allocated for shared RAM as an example openAMP */
55 #define PLAT_ARM_MAX_BL2_SIZE (180 * SZ_1K) /* 180 KB */
60 -/* The last 512KB of the SRAM is allocated as shared memory */
/openbmc/linux/Documentation/arch/arm64/
H A Dmemory.rst9 tables with a 4KB page size and up to 3 levels with a 64KB page size.
12 with the 4KB page configuration, allowing 39-bit (512GB) or 48-bit
14 64KB pages, only 2 levels of translation tables, allowing 42-bit (4TB)
18 only available when running with a 64KB page size and expands the
29 AArch64 Linux memory layout with 4KB pages + 4 levels (48-bit)::
46 AArch64 Linux memory layout with 64KB pages + 3 levels (52-bit with HW support)::
63 Translation table lookup with 4KB pages::
78 Translation table lookup with 64KB pages::
106 with a 64KB page size; then it is possible to use 52-bits of address
/openbmc/linux/Documentation/admin-guide/cgroup-v1/
H A Dhugetlb.rst46 hugetlb.64KB.limit_in_bytes
47 hugetlb.64KB.max_usage_in_bytes
48 hugetlb.64KB.numa_stat
49 hugetlb.64KB.usage_in_bytes
50 hugetlb.64KB.failcnt
51 hugetlb.64KB.rsvd.limit_in_bytes
52 hugetlb.64KB.rsvd.max_usage_in_bytes
53 hugetlb.64KB.rsvd.usage_in_bytes
54 hugetlb.64KB.rsvd.failcnt
/openbmc/linux/arch/arm/boot/dts/aspeed/
H A Dfacebook-bmc-flash-layout-128.dtsi10 * u-boot partition: 896KB.
18 * u-boot environment variables: 64KB.
26 * image metadata partition (64KB), used by Facebook internal
/openbmc/linux/arch/ia64/
H A DKconfig145 bool "4KB"
148 performance, a page size of 8KB or 16KB is recommended. For best
149 IA-32 compatibility, a page size of 4KB should be selected (the vast
151 size). For Itanium 2 or newer systems, a page size of 64KB can also
154 4KB For best IA-32 compatibility
155 8KB For best IA-64 performance
156 16KB For best IA-64 performance
157 64KB Requires Itanium 2 or newer processor.
159 If you don't know what to do, choose 16KB.
162 bool "8KB"
[all …]
/openbmc/u-boot/board/freescale/ls1043ardb/
H A DREADME42 0x00_1000_0000 0x00_1000_FFFF OCRAM0 64KB
43 0x00_1001_0000 0x00_1001_FFFF OCRAM1 64KB
46 0x00_7E80_0000 0x00_7E80_FFFF IFC - NAND Flash 64KB
47 0x00_7FB0_0000 0x00_7FB0_0FFF IFC - FPGA 4KB
/openbmc/u-boot/board/gateworks/gw_ventana/
H A DREADME111 MMC the SPL will be loaded from offset 0x400 (1KB). Once the SPL is
112 booted, it will load and execute U-Boot (u-boot.img) from offset 69KB
128 # copy SPL to 1KB offset
130 # copy U-Boot to 69KB offset
144 - spl : 1KB-69KB (68KB) required by IMX6 BOOT ROM
145 - uboot : 69KB-709KB (640KB) defined by
147 - env : 709KB-965KB (256KB) defined by
174 as the size of the SPL is fairly limitted (to 64KB based on the smallest
266 IMX6 BOOT ROM (fixed offset of 1KB), and U-Boot can be loaded by the SPL
267 (fixed offset of 69KB defined by CONFIG_SYS_MMCSD_RAW_MODE_U_BOOT_SECTOR).
[all …]
/openbmc/u-boot/board/freescale/ls1043aqds/
H A DREADME50 0x00_1000_0000 0x00_1000_FFFF OCRAM0 64KB
51 0x00_1001_0000 0x00_1001_FFFF OCRAM1 64KB
54 0x00_7E80_0000 0x00_7E80_FFFF IFC - NAND Flash 64KB
55 0x00_7FB0_0000 0x00_7FB0_0FFF IFC - FPGA 4KB

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