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/Linux-v6.1/Documentation/devicetree/bindings/i2c/
Di2c-gate.yaml16 there are no competing masters to consider for gates and therefore there is
/Linux-v6.1/net/dccp/ccids/
DKconfig20 be reasonably fair when competing for bandwidth with TCP-like flows,
/Linux-v6.1/tools/testing/selftests/bpf/benchs/
Drun_bench_ringbufs.sh40 header "Single-producer, consumer/producer competing on the same CPU, low batch count"
/Linux-v6.1/Documentation/
Datomic_t.txt115 This is typically true on 'normal' platforms, where a regular competing STORE
328 guarantees between competing LL/SC sections, such a guarantee does not
/Linux-v6.1/fs/jffs2/
Dbackground.c108 * are generally competing for a higher latency resource - in jffs2_garbage_collect_thread()
/Linux-v6.1/Documentation/usb/
DCREDITS137 introductory documents (competing with Alberto's :).
/Linux-v6.1/include/drm/
Ddrm_modeset_lock.h42 * Each thread competing for a set of locks must use one acquire
/Linux-v6.1/arch/mips/include/asm/
Dsync.h140 * such that the Invalidate of a competing LL-SC goes 'missing' and SC
/Linux-v6.1/drivers/nvdimm/
Dpmem.c342 * caches and finally write. A competing pread thread will be held
345 * the recovery write is complete. Competing recovery write threads
/Linux-v6.1/Documentation/driver-api/dmaengine/
Ddmatest.rst17 competing for the same channel.
/Linux-v6.1/fs/9p/
Dvfs_addr.c287 * there's more than one writer competing for the same cache block. in v9fs_write_begin()
/Linux-v6.1/tools/testing/selftests/powerpc/mm/
Dpkey_siginfo.c8 * attempted to be protected by two different keys from two competing
/Linux-v6.1/Documentation/block/
Dbfq-iosched.rst194 processes are competing for the device at the same time, but
282 - If several processes are competing for the device at the same time,
/Linux-v6.1/Documentation/locking/
Dww-mutex-design.rst116 expect the number of simultaneous competing transactions to be typically small,
/Linux-v6.1/Documentation/filesystems/caching/
Dnetfs-api.rst380 competing DIO writes to the same storage in the cache.
/Linux-v6.1/Documentation/admin-guide/sysctl/
Dnet.rst142 RPS (e.g. RFS, aRFS) processing is competing with the registered NAPI poll function
/Linux-v6.1/block/
Dblk-wbt.c473 * the idle limit, or go to normal if we haven't had competing in get_limit()
/Linux-v6.1/LICENSES/preferred/
DLGPL-2.198 advantage over competing non-free programs. These disadvantages are the
/Linux-v6.1/fs/ext4/
Dfile.c558 * of partial blocks of two competing unaligned IOs can result in data in ext4_dio_write_iter()
/Linux-v6.1/fs/afs/
Dwrite.c61 * there's more than one writer competing for the same cache block. in afs_write_begin()
/Linux-v6.1/drivers/gpu/drm/i915/
Di915_active.c260 * worth competing to claim it atomically for ourselves (for in __active_lookup()
/Linux-v6.1/drivers/memory/tegra/
Dtegra20-emc.c1177 * competing memory accesses. This means that threshold should be in tegra_emc_devfreq_init()
/Linux-v6.1/drivers/clocksource/
Dsh_cmt.c421 /* we're competing with the interrupt handler. in sh_cmt_clock_event_program_verify()
/Linux-v6.1/mm/
Dutil.c959 * balancing memory across competing virtual machines that are hosted.
/Linux-v6.1/drivers/gpu/drm/amd/amdkfd/
Dkfd_priv.h773 * number of CU's a device has along with number of other competing processes

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