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author | Rich Felker <dalias@aerifal.cx> | 2016-01-21 19:28:15 +0000 |
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committer | Rich Felker <dalias@aerifal.cx> | 2016-01-21 19:43:04 +0000 |
commit | 61b1e75f7d8004461f2e18f171c26c2f545eed32 (patch) | |
tree | 7a88f8d51ee3f049745b147b7f36fc8ee22e0e62 /src/internal/futex.h | |
parent | 1315596b510189b5159e742110b504177bdd4932 (diff) | |
download | musl-61b1e75f7d8004461f2e18f171c26c2f545eed32.tar.gz musl-61b1e75f7d8004461f2e18f171c26c2f545eed32.tar.bz2 musl-61b1e75f7d8004461f2e18f171c26c2f545eed32.tar.xz musl-61b1e75f7d8004461f2e18f171c26c2f545eed32.zip |
overhaul sh atomics for new atomics framework, add j-core cas.l backend
sh needs runtime-selected atomic backends since there are a number of
supported models that use non-forwards-compatible (non-smp-compatible)
atomic mechanisms. previously, the code paths for this were highly
inefficient since they involved C function calls with multiple
branches in the callee and heavy spills in the caller. the new code
performs calls the runtime-selected asm fragment from inline asm with
extremely minimal clobbers, rather than using a function call.
for the sh4a case where the atomic mechanism is known and there is no
forward-compatibility issue, the movli.l and movco.l instructions are
provided as a_ll and a_sc, allowing the new shared atomic.h to
generate efficient inline versions of all the basic atomic operations
without needing a cas loop.
Diffstat (limited to 'src/internal/futex.h')
0 files changed, 0 insertions, 0 deletions