| /linux/Documentation/arch/x86/ |
| H A D | amd-hfi.rst | 16 architectural class and CPUs are comprised of cores of various efficiency and 38 efficiency capability data for each CPU in the system. The scheduler can use 45 describes an efficiency and performance ranking for each classification. 74 about the performance and energy efficiency of each CPU in the system. Each 77 efficiency value indicates more efficiency. Energy efficiency and performance 83 a reordering of the performance and efficiency ranking. Table updates happen 95 on that processor for performance or energy efficiency reasons, respectively. 119 performance and energy efficiency capabilities of each CPU in the system. 122 rankings both for performance and efficiency for each workload classification.
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| H A D | intel-hfi.rst | 14 The HFI gives the operating system a performance and energy efficiency 22 about the performance and energy efficiency of each CPU in the system. Each 24 indicate higher capability. Energy efficiency and performance are reported in 41 that processor for performance or energy efficiency reasons, respectively.
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| /linux/arch/arm/kernel/ |
| H A D | topology.c | 52 unsigned long efficiency; member 128 capacity = ((be32_to_cpup(rate)) >> 20) * cpu_eff->efficiency; in parse_dt_topology()
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| /linux/Documentation/features/core/jump-labels/ |
| H A D | arch-support.txt | 4 # description: arch supports live patched, high efficiency branches
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| /linux/drivers/platform/x86/amd/hfi/ |
| H A D | Kconfig | 15 energy efficiency capabilities of each heterogeneous CPU core. These
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| /linux/Documentation/hwmon/ |
| H A D | tps546d24.rst | 29 pin to improve efficiency and reduce power dissipation of the converter.
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| H A D | pm6764tr.rst | 30 maintaining the best efficiency over all loading conditions without compromising transient
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| H A D | ltc2947.rst | 27 accumulates if current is positive (to check battery charging efficiency for
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| /linux/Documentation/gpu/ |
| H A D | afbc.rst | 29 maximum compression efficiency), the component order must be: 71 bad for compression efficiency, and so it's recommended to avoid
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| /linux/Documentation/driver-api/thermal/ |
| H A D | power_allocator.rst | 249 devices. They express the relative power efficiency of different 251 efficiency. Weighting is relative such that if each cooling device 254 the same kind of compute, but with different efficiency. For example,
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| /linux/sound/soc/codecs/ |
| H A D | Kconfig | 680 The Awinic AW88395 is an I2S/TDM input, high efficiency 692 The awinic AW88166 is an I2S/TDM input, high efficiency 704 The awinic AW88261 is an I2S/TDM input, high efficiency 716 The awinic AW88081 is an I2S/TDM input, high efficiency 728 sound quality, which is a new high efficiency, low 745 The awinic AW88399 is an I2S/TDM input, high efficiency 2004 high-efficiency Class-D audio amplifier. 2035 high-efficiency, four-channel class-D audio power amplifier 2121 high-efficiency mono Class-D audio power amplifiers. 2204 Enable support for Texas Instruments TAS2780 high-efficiency [all …]
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| /linux/Documentation/driver-api/soundwire/ |
| H A D | bra.rst | 32 efficiency of the protocol by requiring multiple BRA transfers 40 (4) The BRA transport efficiency depends on the available 43 also impacts efficiency: since Column0 cannot be used for
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| /linux/Documentation/admin-guide/pm/ |
| H A D | amd-pstate.rst | 124 cause an efficiency penalty but should reduce the instantaneous power 159 toward performance (0x0) or energy efficiency (0xff). 317 to the low-level firmware about the user's desired energy vs efficiency 347 efficiency or manage temperature. 386 efficiency frequency management method on AMD processors. 413 wants to bias toward performance (0x0) or energy efficiency (0xff) to the CPPC firmware.
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| /linux/Documentation/core-api/ |
| H A D | union_find.rst | 87 efficiency of subsequent find operations.
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| /linux/Documentation/userspace-api/media/v4l/ |
| H A D | pixfmt-srggb8-pisp-comp.rst | 28 efficiency; the nominal black level and amount of offset must be signalled out
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| /linux/Documentation/filesystems/ |
| H A D | erofs.rst | 31 space efficiency while maintaining high performance. 50 - Two compact inode metadata layouts for space and performance efficiency: 62 - Support tailpacking inline data for better space efficiency and reduce
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| /linux/Documentation/mm/ |
| H A D | multigen_lru.rst | 9 memory. It directly impacts the kswapd CPU usage and RAM efficiency. 29 Exploiting spatial locality improves efficiency when gathering the
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| /linux/Documentation/filesystems/ext4/ |
| H A D | ifork.rst | 52 metadata block use, and some improvement in disk efficiency. The inode
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| /linux/kernel/rcu/ |
| H A D | Kconfig | 210 scheduling-clock interrupts for energy-efficiency reasons will 361 to boot with these energy-efficiency delays disabled. Use the
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| /linux/Documentation/arch/arm/ |
| H A D | kernel_user_helpers.rst | 9 code to be executed directly in user mode for best efficiency but which is
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| /linux/Documentation/admin-guide/mm/ |
| H A D | multigen_lru.rst | 9 memory. It directly impacts the kswapd CPU usage and RAM efficiency.
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| /linux/Documentation/networking/device_drivers/ethernet/intel/ |
| H A D | e1000e.rst | 121 microseconds. Receive interrupt reduction can improve CPU efficiency if 150 microseconds. Transmit interrupt reduction can improve CPU efficiency if
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| H A D | e1000.rst | 213 microseconds. Receive interrupt reduction can improve CPU efficiency if 281 efficiency if properly tuned for specific network traffic. If the
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| /linux/fs/erofs/ |
| H A D | Kconfig | 28 chunk-based deduplication ensure space efficiency while maintaining
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| /linux/Documentation/fb/ |
| H A D | udlfb.rst | 17 Because of the efficiency of bulk transfers and a protocol on top that
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