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@@ -198,6 +198,73 @@ static unsigned best_accel(void)
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return info & CPUINFO_SSE2 ? 1 : 0;
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}
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+#elif defined(__aarch64__) && defined(__ARM_NEON)
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+#include <arm_neon.h>
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+
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+/*
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+ * Helper for preventing the compiler from reassociating
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+ * chains of binary vector operations.
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+ */
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+#define REASSOC_BARRIER(vec0, vec1) asm("" : "+w"(vec0), "+w"(vec1))
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+
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+static bool buffer_is_zero_simd(const void *buf, size_t len)
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+{
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+ uint32x4_t t0, t1, t2, t3;
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+
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+ /* Align head/tail to 16-byte boundaries. */
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+ const uint32x4_t *p = QEMU_ALIGN_PTR_DOWN(buf + 16, 16);
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+ const uint32x4_t *e = QEMU_ALIGN_PTR_DOWN(buf + len - 1, 16);
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+
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+ /* Unaligned loads at head/tail. */
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+ t0 = vld1q_u32(buf) | vld1q_u32(buf + len - 16);
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+
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+ /* Collect a partial block at tail end. */
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+ t1 = e[-7] | e[-6];
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+ t2 = e[-5] | e[-4];
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+ t3 = e[-3] | e[-2];
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+ t0 |= e[-1];
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+ REASSOC_BARRIER(t0, t1);
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+ REASSOC_BARRIER(t2, t3);
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+ t0 |= t1;
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+ t2 |= t3;
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+ REASSOC_BARRIER(t0, t2);
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+ t0 |= t2;
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+
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+ /*
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+ * Loop over complete 128-byte blocks.
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+ * With the head and tail removed, e - p >= 14, so the loop
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+ * must iterate at least once.
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+ */
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+ do {
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+ /*
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+ * Reduce via UMAXV. Whatever the actual result,
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+ * it will only be zero if all input bytes are zero.
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+ */
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+ if (unlikely(vmaxvq_u32(t0) != 0)) {
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+ return false;
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+ }
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+
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+ t0 = p[0] | p[1];
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+ t1 = p[2] | p[3];
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+ t2 = p[4] | p[5];
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+ t3 = p[6] | p[7];
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+ REASSOC_BARRIER(t0, t1);
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+ REASSOC_BARRIER(t2, t3);
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+ t0 |= t1;
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+ t2 |= t3;
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+ REASSOC_BARRIER(t0, t2);
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+ t0 |= t2;
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+ p += 8;
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+ } while (p < e - 7);
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+
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+ return vmaxvq_u32(t0) == 0;
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+}
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+
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+#define best_accel() 1
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+static biz_accel_fn const accel_table[] = {
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+ buffer_is_zero_int_ge256,
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+ buffer_is_zero_simd,
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+};
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#else
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#define best_accel() 0
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static biz_accel_fn const accel_table[1] = {
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