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64f0bcb6b0
Now that calc_var_mtrrs_with_hole() always chooses the optimal allocation, there is no need for calc_var_mtrrs_without_hole() any more. Drop it and all the logic to decide which one to call. Tests performed compared to "upstream" (before "cpu/x86/mtrr: Optimize hole carving strategy") on a Lenovo/X200s with 48MiB GFX stolen memory. 2GiB total RAM: 3 MTRRs saved MTRR: Physical address space: 0x0000000000000000 - 0x00000000000a0000 size 0x000a0000 type 6 0x00000000000a0000 - 0x00000000000c0000 size 0x00020000 type 0 0x00000000000c0000 - 0x000000007ac00000 size 0x7ab40000 type 6 0x000000007ac00000 - 0x00000000d0000000 size 0x55400000 type 0 0x00000000d0000000 - 0x00000000e0000000 size 0x10000000 type 1 0x00000000e0000000 - 0x0000000100000000 size 0x20000000 type 0 upstream: MTRR: Removing WRCOMB type. WB/UC MTRR counts: 7/8 > 6. MTRR: default type WB/UC MTRR counts: 4/7. MTRR: WB selected as default type. MTRR: 0 base 0x000000007ac00000 mask 0x0000000fffc00000 type 0 MTRR: 1 base 0x000000007b000000 mask 0x0000000fff000000 type 0 MTRR: 2 base 0x000000007c000000 mask 0x0000000ffc000000 type 0 MTRR: 3 base 0x0000000080000000 mask 0x0000000f80000000 type 0 patched: MTRR: default type WB/UC MTRR counts: 7/5. MTRR: UC selected as default type. MTRR: 0 base 0x0000000000000000 mask 0x0000000f80000000 type 6 MTRR: 1 base 0x000000007ac00000 mask 0x0000000fffc00000 type 0 MTRR: 2 base 0x000000007b000000 mask 0x0000000fff000000 type 0 MTRR: 3 base 0x000000007c000000 mask 0x0000000ffc000000 type 0 MTRR: 4 base 0x00000000d0000000 mask 0x0000000ff0000000 type 1 4GiB total RAM: no MTRRs saved but slightly more accurate alignment MTRR: Physical address space: 0x0000000000000000 - 0x00000000000a0000 size 0x000a0000 type 6 0x00000000000a0000 - 0x00000000000c0000 size 0x00020000 type 0 0x00000000000c0000 - 0x000000007cc00000 size 0x7cb40000 type 6 0x000000007cc00000 - 0x00000000d0000000 size 0x53400000 type 0 0x00000000d0000000 - 0x00000000e0000000 size 0x10000000 type 1 0x00000000e0000000 - 0x0000000100000000 size 0x20000000 type 0 0x0000000100000000 - 0x000000017c000000 size 0x7c000000 type 6 upstream: MTRR: default type WB/UC MTRR counts: 7/6. MTRR: UC selected as default type. MTRR: 0 base 0x0000000000000000 mask 0x0000000f80000000 type 6 MTRR: 1 base 0x000000007cc00000 mask 0x0000000fffc00000 type 0 MTRR: 2 base 0x000000007d000000 mask 0x0000000fff000000 type 0 MTRR: 3 base 0x000000007e000000 mask 0x0000000ffe000000 type 0 MTRR: 4 base 0x00000000d0000000 mask 0x0000000ff0000000 type 1 MTRR: 5 base 0x0000000100000000 mask 0x0000000f00000000 type 6 patched: MTRR: default type WB/UC MTRR counts: 7/6. MTRR: UC selected as default type. MTRR: 0 base 0x0000000000000000 mask 0x0000000f80000000 type 6 MTRR: 1 base 0x000000007cc00000 mask 0x0000000fffc00000 type 0 MTRR: 2 base 0x000000007d000000 mask 0x0000000fff000000 type 0 MTRR: 3 base 0x000000007e000000 mask 0x0000000ffe000000 type 0 MTRR: 4 base 0x00000000d0000000 mask 0x0000000ff0000000 type 1 MTRR: 5 base 0x0000000100000000 mask 0x0000000f80000000 type 6 8GiB total RAM: possible savings but WB still beats UC MTRR: Physical address space: 0x0000000000000000 - 0x00000000000a0000 size 0x000a0000 type 6 0x00000000000a0000 - 0x00000000000c0000 size 0x00020000 type 0 0x00000000000c0000 - 0x000000007cc00000 size 0x7cb40000 type 6 0x000000007cc00000 - 0x00000000d0000000 size 0x53400000 type 0 0x00000000d0000000 - 0x00000000e0000000 size 0x10000000 type 1 0x00000000e0000000 - 0x0000000100000000 size 0x20000000 type 0 0x0000000100000000 - 0x000000027c000000 size 0x17c000000 type 6 upstream: MTRR: Removing WRCOMB type. WB/UC MTRR counts: 7/11 > 6. MTRR: default type WB/UC MTRR counts: 4/10. MTRR: WB selected as default type. MTRR: 0 base 0x000000007cc00000 mask 0x0000000fffc00000 type 0 MTRR: 1 base 0x000000007d000000 mask 0x0000000fff000000 type 0 MTRR: 2 base 0x000000007e000000 mask 0x0000000ffe000000 type 0 MTRR: 3 base 0x0000000080000000 mask 0x0000000f80000000 type 0 patched: MTRR: Removing WRCOMB type. WB/UC MTRR counts: 7/7 > 6. MTRR: default type WB/UC MTRR counts: 4/6. MTRR: WB selected as default type. MTRR: 0 base 0x000000007cc00000 mask 0x0000000fffc00000 type 0 MTRR: 1 base 0x000000007d000000 mask 0x0000000fff000000 type 0 MTRR: 2 base 0x000000007e000000 mask 0x0000000ffe000000 type 0 MTRR: 3 base 0x0000000080000000 mask 0x0000000f80000000 type 0 Change-Id: Iedf7dfad61d6baac91973062e2688ad866f05afd Signed-off-by: Nico Huber <nico.h@gmx.de> Reviewed-on: https://review.coreboot.org/21916 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Aaron Durbin <adurbin@chromium.org> |
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3rdparty | ||
configs | ||
Documentation | ||
payloads | ||
src | ||
util | ||
.checkpatch.conf | ||
.clang-format | ||
.gitignore | ||
.gitmodules | ||
.gitreview | ||
COPYING | ||
gnat.adc | ||
MAINTAINERS | ||
Makefile | ||
Makefile.inc | ||
README | ||
toolchain.inc |
------------------------------------------------------------------------------- coreboot README ------------------------------------------------------------------------------- coreboot is a Free Software project aimed at replacing the proprietary BIOS (firmware) found in most computers. coreboot performs a little bit of hardware initialization and then executes additional boot logic, called a payload. With the separation of hardware initialization and later boot logic, coreboot can scale from specialized applications that run directly firmware, run operating systems in flash, load custom bootloaders, or implement firmware standards, like PC BIOS services or UEFI. This allows for systems to only include the features necessary in the target application, reducing the amount of code and flash space required. coreboot was formerly known as LinuxBIOS. Payloads -------- After the basic initialization of the hardware has been performed, any desired "payload" can be started by coreboot. See https://www.coreboot.org/Payloads for a list of supported payloads. Supported Hardware ------------------ coreboot supports a wide range of chipsets, devices, and mainboards. For details please consult: * https://www.coreboot.org/Supported_Motherboards * https://www.coreboot.org/Supported_Chipsets_and_Devices Build Requirements ------------------ * make * gcc / g++ Because Linux distribution compilers tend to use lots of patches. coreboot does lots of "unusual" things in its build system, some of which break due to those patches, sometimes by gcc aborting, sometimes - and that's worse - by generating broken object code. Two options: use our toolchain (eg. make crosstools-i386) or enable the ANY_TOOLCHAIN Kconfig option if you're feeling lucky (no support in this case). * iasl (for targets with ACPI support) * pkg-config * libssl-dev (openssl) Optional: * doxygen (for generating/viewing documentation) * gdb (for better debugging facilities on some targets) * ncurses (for 'make menuconfig' and 'make nconfig') * flex and bison (for regenerating parsers) Building coreboot ----------------- Please consult https://www.coreboot.org/Build_HOWTO for details. Testing coreboot Without Modifying Your Hardware ------------------------------------------------ If you want to test coreboot without any risks before you really decide to use it on your hardware, you can use the QEMU system emulator to run coreboot virtually in QEMU. Please see https://www.coreboot.org/QEMU for details. Website and Mailing List ------------------------ Further details on the project, a FAQ, many HOWTOs, news, development guidelines and more can be found on the coreboot website: https://www.coreboot.org You can contact us directly on the coreboot mailing list: https://www.coreboot.org/Mailinglist Copyright and License --------------------- The copyright on coreboot is owned by quite a large number of individual developers and companies. Please check the individual source files for details. coreboot is licensed under the terms of the GNU General Public License (GPL). Some files are licensed under the "GPL (version 2, or any later version)", and some files are licensed under the "GPL, version 2". For some parts, which were derived from other projects, other (GPL-compatible) licenses may apply. Please check the individual source files for details. This makes the resulting coreboot images licensed under the GPL, version 2.