curve25519-fiat32: uninline certain functions
While this has a negative performance impact on x86_64, it has a positive performance impact on smaller machines, which is where we're actually using this code. For example, an A53: Before: fiat32: 228605 cycles per call After: fiat32: 188307 cycles per call Signed-off-by: Jason A. Donenfeld <Jason@zx2c4.com>
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@ -232,7 +232,7 @@ static __always_inline void fe_1(fe *h)
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h->v[0] = 1;
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}
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static __always_inline void fe_add_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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static void fe_add_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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{
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{ const uint32_t x20 = in1[9];
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{ const uint32_t x21 = in1[8];
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@ -275,7 +275,7 @@ static __always_inline void fe_add(fe_loose *h, const fe *f, const fe *g)
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fe_add_impl(h->v, f->v, g->v);
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}
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static __always_inline void fe_sub_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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static void fe_sub_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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{
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{ const uint32_t x20 = in1[9];
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{ const uint32_t x21 = in1[8];
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@ -318,7 +318,7 @@ static __always_inline void fe_sub(fe_loose *h, const fe *f, const fe *g)
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fe_sub_impl(h->v, f->v, g->v);
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}
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static __always_inline void fe_mul_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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static void fe_mul_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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{
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{ const uint32_t x20 = in1[9];
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{ const uint32_t x21 = in1[8];
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@ -449,7 +449,7 @@ static __always_inline void fe_mul_tll(fe *h, const fe_loose *f, const fe_loose
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fe_mul_impl(h->v, f->v, g->v);
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}
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static __always_inline void fe_sqr_impl(uint32_t out[10], const uint32_t in1[10])
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static void fe_sqr_impl(uint32_t out[10], const uint32_t in1[10])
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{
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{ const uint32_t x17 = in1[9];
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{ const uint32_t x18 = in1[8];
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@ -957,7 +957,7 @@ static __always_inline void fe_1(fe *h)
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h->v[0] = 1;
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}
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static __always_inline void fe_add_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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static void fe_add_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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{
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{ const uint32_t x20 = in1[9];
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{ const uint32_t x21 = in1[8];
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@ -1000,7 +1000,7 @@ static __always_inline void fe_add(fe_loose *h, const fe *f, const fe *g)
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fe_add_impl(h->v, f->v, g->v);
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}
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static __always_inline void fe_sub_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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static void fe_sub_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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{
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{ const uint32_t x20 = in1[9];
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{ const uint32_t x21 = in1[8];
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@ -1043,7 +1043,7 @@ static __always_inline void fe_sub(fe_loose *h, const fe *f, const fe *g)
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fe_sub_impl(h->v, f->v, g->v);
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}
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static __always_inline void fe_mul_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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static void fe_mul_impl(uint32_t out[10], const uint32_t in1[10], const uint32_t in2[10])
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{
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{ const uint32_t x20 = in1[9];
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{ const uint32_t x21 = in1[8];
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@ -1174,7 +1174,7 @@ static __always_inline void fe_mul_tll(fe *h, const fe_loose *f, const fe_loose
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fe_mul_impl(h->v, f->v, g->v);
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}
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static __always_inline void fe_sqr_impl(uint32_t out[10], const uint32_t in1[10])
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static void fe_sqr_impl(uint32_t out[10], const uint32_t in1[10])
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{
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{ const uint32_t x17 = in1[9];
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{ const uint32_t x18 = in1[8];
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