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/linux/lib/crc/
H A DKconfig8 The CRC4 library functions. Select this if your module uses any of
14 The CRC7 library functions. Select this if your module uses any of
20 The CRC8 library functions. Select this if your module uses any of
26 The CRC16 library functions. Select this if your module uses any of
32 The CRC-CCITT library functions. Select this if your module uses any
38 The CRC-ITU-T library functions. Select this if your module uses
44 The CRC-T10DIF library functions. Select this if your module uses
60 The CRC32 library functions. Select this if your module uses any of
79 The CRC64 library functions. Select this if your module uses any of
/linux/lib/crypto/
H A DKconfig34 The BLAKE2b library functions. Select this if your module uses any of
54 Enable the ChaCha library interface. Select this if your module uses
73 The Curve25519 library functions. Select this if your module uses any
95 uses any of the functions from <crypto/md5.h>.
107 The Poly1305 library functions. Select this if your module uses any
142 The POLYVAL library functions. Select this if your module uses any of
161 uses any of the functions from <crypto/sha1.h>.
178 Select this if your module uses any of these functions from
198 Select this if your module uses any of these functions from
217 The SHA3 library functions. Select this if your module uses any of
/linux/drivers/gnss/
H A DKconfig24 Say Y here if you have a Mediatek-based GNSS receiver which uses a
36 Say Y here if you have a SiRFstar-based GNSS receiver which uses a
49 Say Y here if you have a u-blox GNSS receiver which uses a serial
61 Say Y here if you have a GNSS receiver which uses a USB interface.
/linux/Documentation/features/sched/membarrier-sync-core/
H A Darch-support.txt15 # riscv uses xRET as return from interrupt and to return to user-space.
31 # x86-32 uses IRET as return from interrupt, which takes care of the IPI.
32 # However, it uses both IRET and SYSEXIT to go back to user-space. The IRET
35 # x86-64 uses IRET as return from interrupt, which takes care of the IPI.
/linux/Documentation/sound/cards/
H A Demu-mixer.rst101 accumulators. ALSA uses accumulators 8 and 9 for left and right front PCM
108 accumulators. ALSA uses accumulators 2 and 3 for left and right surround PCM
115 accumulators. ALSA uses accumulators 14 and 15 for left and right side PCM
122 ALSA uses accumulator 6 for center PCM samples for 5.1 playback. The result samples
128 ALSA uses accumulator 7 for LFE PCM samples for 5.1 playback. The result samples
134 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM samples for
140 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM.
146 accumulators. ALSA uses accumulators 4 and 5 for left and right MIDI samples.
152 accumulator. ALSA uses accumulators 4 and 5 for left and right MIDI samples.
H A Daudigy-mixer.rst50 accumulators. ALSA uses accumulators 8 and 9 for left and right front PCM
56 accumulators. ALSA uses accumulators 2 and 3 for left and right surround PCM
63 accumulators. ALSA uses accumulators 14 and 15 for left and right side PCM
69 ALSA uses accumulator 6 for center PCM samples for 5.1 playback. The result
75 ALSA uses accumulator 7 for LFE PCM samples for 5.1 playback. The result
81 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM samples for
87 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM samples for
93 accumulators. ALSA uses accumulators 4 and 5 for left and right MIDI samples.
99 accumulator. ALSA uses accumulators 4 and 5 for left and right MIDI samples.
221 output are taken only from the raw iec958 ALSA PCM device (which uses
H A Dsb-live-mixer.rst65 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM samples.
71 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM samples.
78 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM samples.
85 accumulators. ALSA uses accumulators 0 and 1 for left and right PCM.
92 accumulator. ALSA uses accumulators 0 and 1 for left and right PCM.
99 accumulators. ALSA uses accumulators 4 and 5 for left and right MIDI samples.
105 accumulator. ALSA uses accumulators 4 and 5 for left and right MIDI samples.
112 accumulators. ALSA uses accumulators 2 and 3 for left and right rear PCM samples.
119 accumulators. ALSA uses accumulators 2 and 3 for left and right rear PCM samples.
126 ALSA uses accumulator 6 for center PCM sample. The result sample is forwarded
[all …]
/linux/Documentation/kbuild/
H A DKconfig.recursion-issue-0214 # core requirement, and one uses "select" while the other uses "depends on" to
32 # with CORE, one uses "depends on" while the other uses "select". Another
/linux/Documentation/userspace-api/ioctl/
H A Dioctl-decoding.rst9 uses 3 bits to encode read/write and 13 bits for size.
14 31-30 00 - no parameters: uses _IO macro
/linux/Documentation/rust/
H A Darch-support.rst6 Currently, the Rust compiler (``rustc``) uses LLVM for code generation,
10 which uses ``libclang``.
/linux/drivers/clk/sophgo/
H A DKconfig18 Sophgo SG2042 SoC. This clock IP uses three oscillators with
28 because it uses PLL clocks as input.
37 This clock IP depends on SG2042 Clock Generator because it uses
/linux/Documentation/ABI/testing/
H A Dsysfs-devices-system-ibm-rtl12 Users: The ibm-prtm userspace daemon uses this interface.
22 Users: The ibm-prtm userspace daemon uses this interface.
/linux/arch/riscv/
H A DKconfig.errata9 here if your platform uses Andes CPU cores.
30 here if your platform uses MIPS CPU cores.
39 The RISCV MIPS P8700 uses a different opcode for PAUSE.
53 here if your platform uses SiFive CPU cores.
104 here if your platform uses T-HEAD CPU cores.
/linux/Documentation/devicetree/bindings/clock/
H A Dkeystone-gate.txt1 Binding for Keystone gate control driver which uses PSC controller IP.
3 This binding uses the common clock binding[1].
/linux/drivers/soc/xilinx/
H A DKconfig12 This driver uses firmware driver as an interface for power
25 This driver uses firmware driver as an interface for event/power
/linux/arch/riscv/boot/dts/starfive/
H A Djh7100-starfive-visionfive-v1.dts26 * The board uses a Motorcomm YT8521 PHY supporting RGMII-ID, but requires
32 * which uses a Microchip PHY. Hence, most likely the Motorcomm PHY is the one
/linux/Documentation/driver-api/
H A Dslimbus.rst11 MIPI (Mobile Industry Processor Interface) alliance. The bus uses master/slave
15 (System-on-Chip) and peripheral components (typically codec). SLIMbus uses
25 channel uses dedicated ports on the device.
51 Per specification, SLIMbus uses "clock gears" to do power management based on
107 mode. Controller uses this sequence when it decides to enter low-power mode so
/linux/Documentation/userspace-api/media/drivers/
H A Ddw100.rst38 Each x, y coordinate register uses 16 bits to record the coordinate address in
63 If the control has not been set by the application, the driver uses an identity
78 vertex coordinates for x and y. Each x, y coordinate register uses 16 bits
/linux/arch/arc/lib/
H A Dmemcpy-700.S31 ; uses long immediate
37 ; uses long immediate
/linux/drivers/iommu/generic_pt/
H A DKconfig43 Selected automatically by an IOMMU driver that uses this format.
53 Selected automatically by an IOMMU driver that uses this format.
63 Selected automatically by an IOMMU driver that uses this format.
/linux/fs/sysfs/
H A DKconfig7 The sysfs filesystem is a virtual filesystem that the kernel uses to
17 /sbin/hotplug uses device and object attributes in sysfs to assist in
/linux/Documentation/driver-api/rapidio/
H A Dtsi721.rst12 To generate SRIO maintenance transactions this driver uses one of Tsi721 DMA
16 RapidIO messaging support uses dedicated messaging channels for each mailbox.
17 For inbound messages this driver uses destination ID matching to forward messages
76 by setting CONFIG_RAPIDIO_DMA_ENGINE option. Tsi721 miniport driver uses seven
/linux/Documentation/hwmon/
H A Dpwm-fan.rst4 This driver enables the use of a PWM module to drive a fan. It uses the
15 a PWM output. It uses the generic PWM interface, thus it can be used with
/linux/fs/squashfs/
H A DKconfig8 filesystem for Linux. It uses zlib, lz4, lzo, xz or zstd compression
105 By default Squashfs uses a single decompressor but it gives
112 This decompressor implementation uses up to two parallel
120 By default Squashfs uses a single decompressor but it gives
124 This decompressor implementation uses a maximum of one
125 decompressor per core. It uses percpu variables to ensure
284 SquashFS uses less memory at the expense of extra reads from disk.
/linux/Documentation/driver-api/firmware/
H A Ddirect-fs-lookup.rst9 uses common core kernel file loader facility kernel_read_file_from_path().
14 races with lookups and avoid uses of the custom fallback mechanisms

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