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/openbmc/qemu/tests/functional/
H A Dtest_mem_addr_space.py19 # the VM generates empty logs. A delay of 1 second is added for
21 DELAY_Q35_BOOT_SEQUENCE = 1
28 access up to a maximum of 64GiB of memory. Memory hotplug region begins
29 at 4 GiB boundary when "above_4g_mem_size" is 0 (this would be true when
30 we have 0.5 GiB of VM memory, see pc_q35_init()). This means total
31 hotpluggable memory size is 60 GiB. Per slot, we reserve 1 GiB of memory
33 actual memory size of 59 GiB. If the VM is started with 0.5 GiB of
34 memory, maxmem should be set to a maximum value of 59.5 GiB to ensure
42 '512,slots=1,maxmem=59.6G',
44 '-object', 'memory-backend-ram,id=mem1,size=1G',
[all …]
H A Dtest_linux_initrd.py31 '1a27cb42559ce29237ac186699d063556ad69c8349d732bb1bd8d614e5a8cc2e')
40 Pretends to boot QEMU with an initrd file with size of 2GiB
43 cannot support more than 2GiB initrd.
47 max_size = 2 * (1024 ** 3) - 1
58 self.assertEqual(self.vm.exitcode(), 1)
60 max_size + 1)
66 QEMU has supported up to 4 GiB initrd for recent kernel
71 max_size = 2 * (1024 ** 3) + 1
/openbmc/u-boot/drivers/mtd/nand/raw/
H A Dnand_ids.c28 LEGACY_ID_NAND("NAND 1MiB 5V 8-bit", 0x6e, 1, SZ_4K, SP_OPTIONS),
30 LEGACY_ID_NAND("NAND 1MiB 3,3V 8-bit", 0xe8, 1, SZ_4K, SP_OPTIONS),
31 LEGACY_ID_NAND("NAND 1MiB 3,3V 8-bit", 0xec, 1, SZ_4K, SP_OPTIONS),
42 {"TC58NVG0S3E 1G 3.3V 8-bit",
44 SZ_2K, SZ_128, SZ_128K, 0, 8, 64, NAND_ECC_INFO(1, SZ_512),
75 NAND_ECC_INFO(56, SZ_1K), 1 },
83 LEGACY_ID_NAND("NAND 16MiB 1,8V 8-bit", 0x33, 16, SZ_16K, SP_OPTIONS),
85 LEGACY_ID_NAND("NAND 16MiB 1,8V 16-bit", 0x43, 16, SZ_16K, SP_OPTIONS16),
88 LEGACY_ID_NAND("NAND 32MiB 1,8V 8-bit", 0x35, 32, SZ_16K, SP_OPTIONS),
90 LEGACY_ID_NAND("NAND 32MiB 1,8V 16-bit", 0x45, 32, SZ_16K, SP_OPTIONS16),
[all …]
/openbmc/linux/drivers/mtd/nand/raw/
H A Dnand_ids.c29 {"TC58NVG0S3E 1G 3.3V 8-bit",
31 SZ_2K, SZ_128, SZ_128K, 0, 8, 64, NAND_ECC_INFO(1, SZ_512), },
74 LEGACY_ID_NAND("NAND 16MiB 1,8V 8-bit", 0x33, 16, SZ_16K, SP_OPTIONS),
76 LEGACY_ID_NAND("NAND 16MiB 1,8V 16-bit", 0x43, 16, SZ_16K, SP_OPTIONS16),
79 LEGACY_ID_NAND("NAND 32MiB 1,8V 8-bit", 0x35, 32, SZ_16K, SP_OPTIONS),
81 LEGACY_ID_NAND("NAND 32MiB 1,8V 16-bit", 0x45, 32, SZ_16K, SP_OPTIONS16),
84 LEGACY_ID_NAND("NAND 64MiB 1,8V 8-bit", 0x36, 64, SZ_16K, SP_OPTIONS),
86 LEGACY_ID_NAND("NAND 64MiB 1,8V 16-bit", 0x46, 64, SZ_16K, SP_OPTIONS16),
89 LEGACY_ID_NAND("NAND 128MiB 1,8V 8-bit", 0x78, 128, SZ_16K, SP_OPTIONS),
90 LEGACY_ID_NAND("NAND 128MiB 1,8V 8-bit", 0x39, 128, SZ_16K, SP_OPTIONS),
[all …]
/openbmc/u-boot/arch/arm/mach-tegra/
H A Dboard2.c75 return -1; in tegra_board_id()
84 if (board_id != -1) in checkboard()
188 #define USBCMD_FS2 (1 << 15) in board_early_init_f()
215 if (gd->bd->bi_dram[1].start) { in board_late_init()
218 * bank 1 is not mapped by the U-Boot MMU configuration, and so in board_late_init()
221 efi_add_memory_map(gd->bd->bi_dram[1].start, in board_late_init()
222 gd->bd->bi_dram[1].size >> EFI_PAGE_SHIFT, in board_late_init()
230 env_set("cpu_ns_mode", "1"); in board_late_init()
269 return (0 - CONFIG_ARMV7_SECURE_BASE) & ~(SZ_2M - 1); in carveout_size()
276 * Determine the amount of usable RAM below 4GiB, taking into account any
[all …]
/openbmc/qemu/tests/qemu-iotests/
H A D172.out28 discard_granularity = 4294967295 (4 GiB)
57 discard_granularity = 4294967295 (4 GiB)
89 unit = 1 (0x1)
96 discard_granularity = 4294967295 (4 GiB)
110 discard_granularity = 4294967295 (4 GiB)
146 unit = 1 (0x1)
153 discard_granularity = 4294967295 (4 GiB)
167 discard_granularity = 4294967295 (4 GiB)
204 unit = 1 (0x1)
211 discard_granularity = 4294967295 (4 GiB)
[all …]
H A D215.out7 1 KiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
16 2 GiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
18 1 KiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
20 2 GiB (0x80010000) bytes allocated at offset 0 bytes (0x0)
21 1023.938 MiB (0x3fff0000) bytes not allocated at offset 2 GiB (0x80010000)
22 64 KiB (0x10000) bytes allocated at offset 3 GiB (0xc0000000)
23 1023.938 MiB (0x3fff0000) bytes not allocated at offset 3 GiB (0xc0010000)
H A D197.out7 1 KiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
16 2 GiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
18 1 KiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
20 2 GiB (0x80010000) bytes allocated at offset 0 bytes (0x0)
21 1023.938 MiB (0x3fff0000) bytes not allocated at offset 2 GiB (0x80010000)
22 64 KiB (0x10000) bytes allocated at offset 3 GiB (0xc0000000)
23 1023.938 MiB (0x3fff0000) bytes not allocated at offset 3 GiB (0xc0010000)
31 1 KiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
32 1 KiB (0x400) bytes allocated at offset 0 bytes (0x0)
H A D237.out17 virtual size: 5 GiB (5368709120 bytes)
127 {"execute": "blockdev-create", "arguments": {"job-id": "job0", "options": {"adapter-type": 1, "driv…
174 filename: TEST_IMG.1
195 filename: TEST_IMG.1
208 virtual size: 1 GiB (1073741824 bytes)
216 filename: TEST_IMG.1
228 virtual size: 1 GiB (1073741824 bytes)
237 filename: TEST_IMG.1
250 virtual size: 2 GiB (2147483648 bytes)
258 filename: TEST_IMG.1
[all …]
/openbmc/linux/arch/x86/include/asm/
H A Dpage_64_types.h10 #define KASAN_STACK_ORDER 1
18 #define EXCEPTION_STACK_ORDER (1 + KASAN_STACK_ORDER)
28 #define IST_INDEX_NMI 1
37 * The gap is to allow a space for LDT remap for PTI (1 pgd slot) and space for
61 #define task_size_max() ((_AC(1,UL) << __VIRTUAL_MASK_SHIFT) - PAGE_SIZE)
65 #define DEFAULT_MAP_WINDOW ((1UL << 47) - PAGE_SIZE)
86 * This can be at most 1 GiB, due to the fixmap living in the next 1 GiB (see
89 * On KASLR use 1 GiB by default, leaving 1 GiB for modules once the
92 * If KASLR is disabled we can shrink it to 0.5 GiB and increase the size
93 * of the modules area to 1.5 GiB.
/openbmc/linux/Documentation/filesystems/ext4/
H A Dblocks.rst7 sectors between 1KiB and 64KiB, and the number of sectors must be an
20 :widths: 1 1 1 1 1
21 :header-rows: 1
24 - 1KiB
57 - 32GiB
66 - 1,074,791,436
74 - 16GiB
75 - 256GiB
82 :widths: 1 1 1 1 1
83 :header-rows: 1
[all …]
/openbmc/u-boot/arch/arm/mach-snapdragon/
H A DKconfig22 - 1GiB RAM
23 - 8GiB eMMC, uSD slot
25 - 2x Host, 1x Device USB port
35 - 3GiB RAM
36 - 32GiB UFS drive
/openbmc/qemu/tests/qemu-iotests/tests/
H A Dmigrate-bitmaps-postcopy-test36 GiB = 1024 * 1024 * 1024 variable
39 (0, GiB),
40 (2 * GiB + 512 * 5, 512),
41 (3 * GiB + 512 * 5, 512),
42 (100 * GiB, GiB)
46 (3 * GiB + 512 * 8, 512),
47 (4 * GiB + 512 * 8, 512),
48 (50 * GiB, GiB),
49 (100 * GiB + GiB // 2, GiB)
141 for i in range(1, nb_bitmaps):
/openbmc/u-boot/arch/arm/mach-rockchip/rk3399/
H A DKconfig23 * on-module USB 3.0 hub (2x USB 3.0 host + 1x USB 2.0 host)
27 * on-module DDR3 (1GB, 2GB and 4GB configurations available)
45 * 2GiB/4GiB LPDDR3 RAM
46 * 1x USB 3.0 type A, 1x USB 2.0 type A (host mode only),
47 1x USB 3.0 type C OTG
50 * 2GiB/4GiB DDR3 RAM
54 1x USB 3.0 type C OTG
/openbmc/u-boot/test/lib/
H A Dlmb.c19 ut_asserteq(lmb->memory.cnt, 1); in check_lmb()
29 if (num_reserved > 1) { in check_lmb()
30 ut_asserteq(lmb->reserved.region[1].base, base2); in check_lmb()
31 ut_asserteq(lmb->reserved.region[1].size, size2); in check_lmb()
83 ut_asserteq(lmb.memory.region[1].base, ram); in test_multi_alloc()
84 ut_asserteq(lmb.memory.region[1].size, ram_size); in test_multi_alloc()
86 ut_asserteq(lmb.memory.cnt, 1); in test_multi_alloc()
94 ASSERT_LMB(&lmb, 0, 0, 1, alloc_64k_addr, 0x10000, in test_multi_alloc()
98 a = lmb_alloc(&lmb, 4, 1); in test_multi_alloc()
103 b = lmb_alloc_base(&lmb, 4, 1, alloc_64k_end); in test_multi_alloc()
[all …]
/openbmc/qemu/bsd-user/riscv/
H A Dtarget_arch_vmparam.h26 #define TARGET_MAXTSIZ (1 * GiB) /* max text size */
28 #define TARGET_MAXDSIZ (1 * GiB) /* max data size */
30 #define TARGET_MAXSSIZ (1 * GiB) /* max stack size */
/openbmc/qemu/hw/arm/
H A Dcubieboard.c45 exit(1); in cubieboard_init()
48 /* This board has fixed size RAM (512MiB or 1GiB) */ in cubieboard_init()
50 machine->ram_size != 1 * GiB) { in cubieboard_init()
51 error_report("This machine can only be used with 512MiB or 1GiB RAM"); in cubieboard_init()
52 exit(1); in cubieboard_init()
59 if (!object_property_set_int(OBJECT(&a10->emac), "phy-addr", 1, &err)) { in cubieboard_init()
61 exit(1); in cubieboard_init()
67 exit(1); in cubieboard_init()
73 exit(1); in cubieboard_init()
78 exit(1); in cubieboard_init()
[all …]
/openbmc/qemu/docs/system/arm/
H A Draspi.rst10 Cortex-A7 (4 cores), 1 GiB of RAM
14 Cortex-A53 (4 cores), 1 GiB of RAM
16 Cortex-A72 (4 cores), 2 GiB of RAM
/openbmc/qemu/bsd-user/aarch64/
H A Dtarget_arch_vmparam.h48 #define TARGET_MAXTSIZ (1 * GiB) /* max text size */
50 #define TARGET_MAXDSIZ (1 * GiB) /* max data size */
52 #define TARGET_MAXSSIZ (1 * GiB) /* max stack size */
66 state->xregs[1] = retval2; /* XXX not really used on 64-bit arch */ in set_second_rval()
71 return state->xregs[1]; in get_second_rval()
/openbmc/linux/arch/arm64/boot/dts/realtek/
H A Drtd1295-xnano-x5.dts14 memory@1f000 {
16 reg = <0x1f000 0x3ffe1000>; /* boot ROM to 1 GiB or 2 GiB */
H A Drtd1395-bpi-m4.dts16 reg = <0x2f000 0x3ffd1000>; /* boot ROM to 1 GiB or 2 GiB */
/openbmc/linux/Documentation/mm/
H A Dhighmem.rst24 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
/openbmc/u-boot/board/advantech/dms-ba16/
H A DKconfig8 bool "1GiB"
11 bool "2GiB"
/openbmc/linux/Documentation/devicetree/bindings/mtd/partitions/
H A Dfixed-partitions.yaml56 #address-cells = <1>;
57 #size-cells = <1>;
73 #address-cells = <1>;
76 /* a 4 GiB partition */
90 /* an 8 GiB partition */
92 label = "filesystem #1";
96 /* a 4 GiB partition */
106 #address-cells = <1>;
107 #size-cells = <1>;
126 #address-cells = <1>;
[all …]
/openbmc/u-boot/arch/arm/mach-owl/
H A DKconfig16 - 2GiB RAM
17 - 8GiB eMMC, uSD slot
19 - 2x Host, 1x Device USB port

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