| /linux/Documentation/filesystems/ext4/ |
| H A D | blocks.rst | 57 - 32GiB 74 - 16GiB 75 - 256GiB 119 - 32GiB 136 - 16GiB 137 - 256GiB
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| /linux/Documentation/mm/ |
| H A D | highmem.rst | 24 kernel entry/exit. This means the available virtual memory space (4GiB on 27 The traditional split for architectures using this approach is 3:1, 3GiB for 28 userspace and the top 1GiB for kernel space:: 38 This means that the kernel can at most map 1GiB of physical memory at any one 186 The i386 arch, under some circumstances, will permit you to stick up to 64GiB 202 The general recommendation is that you don't use more than 8GiB on a 32-bit
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| /linux/arch/arm64/boot/dts/realtek/ |
| H A D | rtd1395-bpi-m4.dts | 16 reg = <0x2f000 0x3ffd1000>; /* boot ROM to 1 GiB or 2 GiB */
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| H A D | rtd1295-xnano-x5.dts | 16 reg = <0x1f000 0x3ffe1000>; /* boot ROM to 1 GiB or 2 GiB */
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| H A D | rtd1395-lionskin.dts | 16 reg = <0x2f000 0x3ffd1000>; /* boot ROM to 1 GiB or 2 GiB */
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| H A D | rtd1295-mele-v9.dts | 17 reg = <0x1f000 0x7ffe1000>; /* boot ROM to 2 GiB */
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| H A D | rtd1295-probox2-ava.dts | 17 reg = <0x1f000 0x7ffe1000>; /* boot ROM to 2 GiB */
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| H A D | rtd1296-ds418.dts | 16 reg = <0x1f000 0x7ffe1000>; /* boot ROM to 2 GiB */
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| H A D | rtd1293-ds418j.dts | 16 reg = <0x1f000 0x3ffe1000>; /* boot ROM to 1 GiB */
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| H A D | rtd1295-zidoo-x9s.dts | 16 reg = <0x1f000 0x7ffe1000>; /* boot ROM to 2 GiB */
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| H A D | rtd1619-mjolnir.dts | 17 reg = <0x2e000 0x7ffd2000>; /* boot ROM to 2 GiB */
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| /linux/arch/arm64/boot/dts/amlogic/ |
| H A D | meson-gxl-s905w-tx3-mini.dts | 20 reg = <0x0 0x0 0x0 0x40000000>; /* 1 GiB or 2 GiB */
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| H A D | meson-axg-jethome-jethub-j110-rev-3.dts | 16 /* 2GiB or 4GiB RAM */
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| H A D | meson-axg-jethome-jethub-j110-rev-2.dts | 16 /* 2GiB or 4GiB RAM */
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| H A D | meson-gxm-wetek-core2.dts | 19 reg = <0x0 0x0 0x0 0x80000000>; /* 2 GiB or 3 GiB */
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| /linux/arch/arm64/boot/dts/broadcom/ |
| H A D | bcm2712.dtsi | 537 /* ~4GiB, 32-bit, non-prefetchable at PCIe 00_0000_0000 */ 539 /* 12GiB, 64-bit, prefetchable at PCIe 04_0000_0000 */ 543 /* 64GiB, 64-bit, prefetchable at PCIe 10_0000_0000 */ 574 /* ~4GiB, 32-bit, non-prefetchable at PCIe 00_0000_0000 */ 576 /* 12GiB, 64-bit, prefetchable at PCIe 04_0000_0000 */ 580 /* 64GiB, 64-bit, non-prefetchable at PCIe 10_0000_0000 */ 613 /* ~4GiB, 32-bit, non-prefetchable at PCIe 00_0000_0000 */ 615 /* 12GiB, 64-bit, prefetchable at PCIe 04_0000_0000 */ 621 /* 64GiB, 64-bit, prefetchable at PCIe 10_0000_0000 */
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| /linux/tools/perf/Documentation/ |
| H A D | perf-iostat.txt | 57 375083606016 bytes (375 GB, 349 GiB) copied, 215.974 s, 1.7 GB/s 76 375083606016 bytes (375 GB, 349 GiB) copied, 197.08 s, 1.9 GB/s
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| /linux/Documentation/virt/ |
| H A D | ne_overview.rst | 47 be aligned 2 MiB / 1 GiB physically contiguous memory regions (or multiple of 62 device is placed in memory below the typical 4 GiB.
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| /linux/drivers/gpu/drm/xe/ |
| H A D | xe_lmtt_2l.c | 58 #define LMTT_2L_HAW 37 /* 128 GiB */ 60 #define LMTT_2L_HAW 35 /* 32 GiB */
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| /linux/Documentation/driver-api/cxl/platform/ |
| H A D | cdat.rst | 39 DPA Base : 0000000040000000 <- 1GiB base 40 DPA Length : 0000000080000000 <- 2GiB size
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| /linux/arch/arm/boot/dts/intel/socfpga/ |
| H A D | socfpga_cyclone5_mcv.dtsi | 15 reg = <0x0 0x40000000>; /* 1 GiB */
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| /linux/arch/arm/boot/dts/actions/ |
| H A D | owl-s500-sparky.dts | 26 reg = <0x0 0x40000000>; /* 1 or 2 GiB */
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| /linux/arch/arm/boot/dts/realtek/ |
| H A D | rtd1195-mele-x1000.dts | 26 <0x19100000 0x26f00000>; /* NOR flash to 1 GiB */
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| H A D | rtd1195-horseradish.dts | 26 <0x19100000 0x26f00000>; /* NOR flash to 1 GiB */
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| /linux/Documentation/core-api/ |
| H A D | swiotlb.rst | 32 limitations. As physical memory sizes grew beyond 4 GiB, some devices could 34 the 4 GiB line, these devices with addressing limitations could still work and 100 with a max of 1 GiB, which has the potential to be very wasteful of memory. 151 memory. The default pool is allocated below the 4 GiB physical address line so
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