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@ -49,6 +49,7 @@ ck_swlock_init(struct ck_swlock *rw)
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{
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rw->value = 0;
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ck_pr_barrier();
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return;
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}
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@ -56,6 +57,7 @@ CK_CC_INLINE static void
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ck_swlock_write_unlock(ck_swlock_t *rw)
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{
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ck_pr_fence_release();
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ck_pr_and_32(&rw->value, CK_SWLOCK_READER_BITS);
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return;
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}
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@ -64,7 +66,8 @@ CK_CC_INLINE static bool
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ck_swlock_locked_writer(ck_swlock_t *rw)
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{
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return (ck_pr_load_32(&rw->value) & CK_SWLOCK_WRITER_BIT);
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ck_pr_fence_load();
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return ck_pr_load_32(&rw->value) & CK_SWLOCK_WRITER_BIT;
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}
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CK_CC_INLINE static void
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@ -80,6 +83,7 @@ CK_CC_INLINE static bool
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ck_swlock_locked(ck_swlock_t *rw)
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{
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ck_pr_fence_load();
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return ck_pr_load_32(&rw->value);
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}
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@ -94,6 +98,7 @@ ck_swlock_write_trylock(ck_swlock_t *rw)
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return false;
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}
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ck_pr_fence_acquire();
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return true;
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}
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@ -105,6 +110,7 @@ ck_swlock_write_lock(ck_swlock_t *rw)
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{
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ck_pr_or_32(&rw->value, CK_SWLOCK_WRITER_BIT);
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ck_pr_fence_acquire();
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while ((ck_pr_load_32(&rw->value) & CK_SWLOCK_READER_BITS) != 0)
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ck_pr_stall();
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@ -117,9 +123,11 @@ ck_swlock_write_latch(ck_swlock_t *rw)
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{
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ck_pr_or_32(&rw->value, CK_SWLOCK_WRITER_BIT);
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ck_pr_fence_acquire();
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/* Stall until readers have seen the latch and cleared. */
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while (ck_pr_cas_32(&rw->value, CK_SWLOCK_WRITER_BIT, (CK_SWLOCK_WRITER_BIT | CK_SWLOCK_LATCH_BIT)) == false) {
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while (ck_pr_cas_32(&rw->value, CK_SWLOCK_WRITER_BIT,
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(CK_SWLOCK_WRITER_BIT | CK_SWLOCK_LATCH_BIT)) == false) {
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do {
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ck_pr_stall();
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} while (ck_pr_load_uint(&rw->value) != CK_SWLOCK_WRITER_BIT);
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@ -132,6 +140,7 @@ CK_CC_INLINE static void
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ck_swlock_write_unlatch(ck_swlock_t *rw)
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{
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ck_pr_fence_release();
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ck_pr_store_32(&rw->value, 0);
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return;
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}
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@ -149,6 +158,7 @@ ck_swlock_read_trylock(ck_swlock_t *rw)
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return false;
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}
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ck_pr_fence_acquire();
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return true;
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}
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@ -158,7 +168,6 @@ CK_ELIDE_TRYLOCK_PROTOTYPE(ck_swlock_read, ck_swlock_t,
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CK_CC_INLINE static void
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ck_swlock_read_lock(ck_swlock_t *rw)
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{
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uint32_t l;
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for (;;) {
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while (ck_pr_load_32(&rw->value) & CK_SWLOCK_WRITER_BIT)
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@ -166,6 +175,8 @@ ck_swlock_read_lock(ck_swlock_t *rw)
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l = ck_pr_faa_32(&rw->value, 1);
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ck_pr_fence_acquire();
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if (!(l & CK_SWLOCK_WRITER_BIT))
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return;
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@ -178,7 +189,6 @@ ck_swlock_read_lock(ck_swlock_t *rw)
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CK_CC_INLINE static bool
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ck_swlock_read_trylatchlock(ck_swlock_t *rw)
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{
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uint32_t l = ck_pr_load_32(&rw->value);
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if (l & CK_SWLOCK_WRITER_BIT)
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@ -186,6 +196,8 @@ ck_swlock_read_trylatchlock(ck_swlock_t *rw)
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l = ck_pr_faa_32(&rw->value, 1);
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ck_pr_fence_acquire();
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if (!(l & CK_SWLOCK_WRITER_BIT))
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return true;
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@ -199,7 +211,6 @@ ck_swlock_read_trylatchlock(ck_swlock_t *rw)
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CK_CC_INLINE static void
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ck_swlock_read_latchlock(ck_swlock_t *rw)
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{
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uint32_t l;
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for (;;) {
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while (ck_pr_load_32(&rw->value) & CK_SWLOCK_WRITER_BIT)
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@ -207,6 +218,8 @@ ck_swlock_read_latchlock(ck_swlock_t *rw)
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l = ck_pr_faa_32(&rw->value, 1);
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ck_pr_fence_acquire();
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if (!(l & (CK_SWLOCK_LATCH_BIT | CK_SWLOCK_WRITER_BIT)))
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return;
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@ -222,6 +235,7 @@ CK_CC_INLINE static bool
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ck_swlock_locked_reader(ck_swlock_t *rw)
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{
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ck_pr_fence_load();
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return ck_pr_load_32(&rw->value) & CK_SWLOCK_READER_BITS;
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}
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@ -229,6 +243,7 @@ CK_CC_INLINE static void
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ck_swlock_read_unlock(ck_swlock_t *rw)
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{
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ck_pr_fence_release();
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ck_pr_dec_32(&rw->value);
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return;
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}
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