Home
last modified time | relevance | path

Searched refs:efficiency (Results 1 – 41 of 41) sorted by relevance

/linux-4.1.27/arch/arm/kernel/
Dtopology.c58 unsigned long efficiency; member
127 capacity = ((be32_to_cpup(rate)) >> 20) * cpu_eff->efficiency; in parse_dt_topology()
/linux-4.1.27/Documentation/devicetree/bindings/leds/
Dleds-lp8860.txt3 The LP8860-Q1 is an high-efficiency LED
/linux-4.1.27/fs/nfs/flexfilelayout/
Dflexfilelayout.h46 u32 efficiency; member
Dflexfilelayout.c190 if (fls->mirror_array[i]->efficiency < in ff_layout_sort_mirrors()
191 fls->mirror_array[j]->efficiency) { in ff_layout_sort_mirrors()
302 fls->mirror_array[i]->efficiency = be32_to_cpup(p); in ff_layout_alloc_lseg()
/linux-4.1.27/Documentation/devicetree/bindings/mfd/
Daxp20x.txt33 for heavier loads. Forcing PWM mode trades efficiency
Ds2mpa01.txt5 efficiency buck converters including Dual-Phase buck converter, various LDOs,
/linux-4.1.27/Documentation/devicetree/bindings/regulator/
Dmax77802.txt6 The MAX77802 PMIC has 10 high-efficiency Buck and 32 Low-dropout (LDO)
/linux-4.1.27/Documentation/ABI/obsolete/
Dsysfs-block-zram91 efficiency can be calculated using compr_data_size and this
/linux-4.1.27/Documentation/scheduler/
Dsched-bwc.txt53 For efficiency run-time is transferred between the global pool and CPU local
/linux-4.1.27/Documentation/networking/
De1000e.txt132 microseconds. Receive interrupt reduction can improve CPU efficiency if
165 efficiency if properly tuned for specific network traffic. If the
Dxfrm_sync.txt167 to be reached. This is done for simplicity and efficiency reasons.
De1000.txt193 microseconds. Receive interrupt reduction can improve CPU efficiency if
283 efficiency if properly tuned for specific network traffic. If the
Ddecnet.txt211 to gain the best efficiency. Better still is to use a card which supports
Dvortex.txt211 efficiency.
Dixgb.txt146 efficiency if properly tuned for specific network traffic. Increasing
/linux-4.1.27/Documentation/ABI/testing/
Dsysfs-block-zram122 efficiency can be calculated using compr_data_size and this
/linux-4.1.27/kernel/time/
DKconfig163 large a concern as is energy efficiency. The sysidle subsystem
/linux-4.1.27/Documentation/arm/
Dkernel_user_helpers.txt8 code to be executed directly in user mode for best efficiency but which is
/linux-4.1.27/arch/microblaze/
DKconfig237 larger dma transfers increasing IO efficiency and reducing
/linux-4.1.27/Documentation/fb/
Dudlfb.txt17 Because of the efficiency of bulk transfers and a protocol on top that
/linux-4.1.27/Documentation/accounting/
Dtaskstats.txt89 set over time. However, for the sake of efficiency, an explicit deregistration
/linux-4.1.27/Documentation/
Diostats.txt64 efficiency. Thus two 4K reads may become one 8K read before it is
Dassoc_array.txt68 tree. To improve memory efficiency, shortcuts can be emplaced to skip over
Dxillybus.txt291 balances between bus bandwidth efficiency (preventing a lot of partially
DDMA-API.txt548 For reasons of efficiency, most platforms choose to track the declared
Dkernel-parameters.txt2992 efficiency for asymmetric multiprocessors.
3002 energy efficiency by requiring that the kthreads
3184 real-time latency, and degrade energy efficiency.
/linux-4.1.27/init/
DKconfig125 in efficiency, compression and decompression speed.
607 scheduling-clock interrupts for energy-efficiency reasons will
647 parameter), thus improving energy efficiency. On the other
651 Say Y if energy efficiency is critically important, and you
777 or energy-efficiency reasons, but the real reason it exists
792 or energy-efficiency reasons.
/linux-4.1.27/Documentation/filesystems/
Dsquashfs.txt191 For space efficiency regular files store uid and gid indexes, which are
Dramfs-rootfs-initramfs.txt222 This has the memory efficiency advantages of initramfs (no ramdisk block
Dext4.txt49 converted to use 256 byte for greater efficiency via:
/linux-4.1.27/Documentation/ide/
DChangeLog.ide-tape.1995-200294 * typically results in better IDE bus efficiency and
/linux-4.1.27/Documentation/timers/
DNO_HZ.txt6 efficiency and reducing OS jitter. Reducing OS jitter is important for
/linux-4.1.27/drivers/regulator/
DKconfig369 The MAXIM MAX8973 high-efficiency. three phase, DC-DC step-down
/linux-4.1.27/Documentation/filesystems/configfs/
Dconfigfs.txt55 with only one value per file. The same efficiency caveats from sysfs
/linux-4.1.27/net/ipv4/
DKconfig578 congestion window. It's design goals target high efficiency,
/linux-4.1.27/Documentation/development-process/
D4.Coding119 become enamored of the perceived efficiency inherent in avoiding a function
/linux-4.1.27/Documentation/netlabel/
Ddraft-ietf-cipso-ipsecurity-01.txt682 efficiency purposes this capability is only a desired feature for CIPSO
/linux-4.1.27/arch/powerpc/
DKconfig539 larger dma transfers increasing IO efficiency and reducing
/linux-4.1.27/Documentation/filesystems/caching/
Dnetfs-api.txt607 be merged for greater efficiency.
/linux-4.1.27/Documentation/cgroups/
Dmemory.txt561 For efficiency, as other kernel components, memory cgroup uses some optimization
Dcpusets.txt78 efficiency just by letting the operating system automatically share