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-rw-r--r--indra/llmath/llvector4a.cpp4
1 files changed, 2 insertions, 2 deletions
diff --git a/indra/llmath/llvector4a.cpp b/indra/llmath/llvector4a.cpp
index df20585d16..c1845b0d94 100644
--- a/indra/llmath/llvector4a.cpp
+++ b/indra/llmath/llvector4a.cpp
@@ -111,7 +111,7 @@ void LLVector4a::quantize8( const LLVector4a& low, const LLVector4a& high )
// 8-bit quantization means we can do with just 12 bits of reciprocal accuracy
const LLVector4a oneOverDelta = _mm_rcp_ps(delta.mQ);
// {
-// static LL_ALIGN_16( const F32 F_TWO_4A[4] ) = { 2.f, 2.f, 2.f, 2.f };
+// alignas(16) static const F32 F_TWO_4A[4] = { 2.f, 2.f, 2.f, 2.f };
// LLVector4a two; two.load4a( F_TWO_4A );
//
// // Here we use _mm_rcp_ps plus one round of newton-raphson
@@ -156,7 +156,7 @@ void LLVector4a::quantize16( const LLVector4a& low, const LLVector4a& high )
// 16-bit quantization means we need a round of Newton-Raphson
LLVector4a oneOverDelta;
{
- static LL_ALIGN_16( const F32 F_TWO_4A[4] ) = { 2.f, 2.f, 2.f, 2.f };
+ alignas(16) static const F32 F_TWO_4A[4] = { 2.f, 2.f, 2.f, 2.f };
ll_assert_aligned(F_TWO_4A,16);
LLVector4a two; two.load4a( F_TWO_4A );