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-rw-r--r--math/aarch64/sve/sinpif.c58
1 files changed, 58 insertions, 0 deletions
diff --git a/math/aarch64/sve/sinpif.c b/math/aarch64/sve/sinpif.c
new file mode 100644
index 000000000000..b91768a29cb6
--- /dev/null
+++ b/math/aarch64/sve/sinpif.c
@@ -0,0 +1,58 @@
+/*
+ * Single-precision SVE sinpi(x) function.
+ *
+ * Copyright (c) 2023-2024, Arm Limited.
+ * SPDX-License-Identifier: MIT OR Apache-2.0 WITH LLVM-exception
+ */
+
+#include "sv_math.h"
+#include "mathlib.h"
+#include "test_sig.h"
+#include "test_defs.h"
+#include "sv_poly_f32.h"
+
+static const struct data
+{
+ float poly[6], range_val;
+} data = {
+ /* Taylor series coefficents for sin(pi * x). */
+ .poly = { 0x1.921fb6p1f, -0x1.4abbcep2f, 0x1.466bc6p1f, -0x1.32d2ccp-1f,
+ 0x1.50783p-4f, -0x1.e30750p-8f },
+ .range_val = 0x1p31,
+};
+
+/* A fast SVE implementation of sinpif.
+ Maximum error 2.48 ULP:
+ _ZGVsMxv_sinpif(0x1.d062b6p-2) got 0x1.fa8c06p-1
+ want 0x1.fa8c02p-1. */
+svfloat32_t SV_NAME_F1 (sinpi) (svfloat32_t x, const svbool_t pg)
+{
+ const struct data *d = ptr_barrier (&data);
+
+ /* range reduction into -1/2 .. 1/2
+ with n = rint(x) and r = r - n. */
+ svfloat32_t n = svrinta_x (pg, x);
+ svfloat32_t r = svsub_x (pg, x, n);
+
+ /* Result should be negated based on if n is odd or not. */
+ svbool_t cmp = svaclt (pg, x, d->range_val);
+ svuint32_t intn = svreinterpret_u32 (svcvt_s32_z (pg, n));
+ svuint32_t sign = svlsl_z (cmp, intn, 31);
+
+ /* y = sin(r). */
+ svfloat32_t r2 = svmul_x (pg, r, r);
+ svfloat32_t y = sv_horner_5_f32_x (pg, r2, d->poly);
+ y = svmul_x (pg, y, r);
+
+ return svreinterpret_f32 (sveor_x (pg, svreinterpret_u32 (y), sign));
+}
+
+#if WANT_TRIGPI_TESTS
+TEST_ULP (SV_NAME_F1 (sinpi), 1.99)
+TEST_DISABLE_FENV (SV_NAME_F1 (sinpi))
+TEST_SYM_INTERVAL (SV_NAME_F1 (sinpi), 0, 0x1p-31, 5000)
+TEST_SYM_INTERVAL (SV_NAME_F1 (sinpi), 0x1p-31, 0.5, 10000)
+TEST_SYM_INTERVAL (SV_NAME_F1 (sinpi), 0.5, 0x1p22f, 10000)
+TEST_SYM_INTERVAL (SV_NAME_F1 (sinpi), 0x1p22f, inf, 10000)
+#endif
+CLOSE_SVE_ATTR