f4a2713ac8
Change-Id: Ia40e9ffdf29b5dab2f122f673ff6802a58bc690f
94 lines
3.2 KiB
C
94 lines
3.2 KiB
C
// REQUIRES: aarch64-registered-target
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// RUN: %clang_cc1 -triple aarch64-none-linux-gnu -target-feature +neon \
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// RUN: -target-feature +crypto -S -O3 -o - %s | FileCheck %s
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// RUN: not %clang_cc1 -triple aarch64-none-linux-gnu -target-feature +neon \
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// RUN: -S -O3 -o - %s 2>&1 | FileCheck --check-prefix=CHECK-NO-CRYPTO %s
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// Test new aarch64 intrinsics and types
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#include <arm_neon.h>
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uint8x16_t test_vaeseq_u8(uint8x16_t data, uint8x16_t key) {
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// CHECK: test_vaeseq_u8
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// CHECK-NO-CRYPTO: warning: implicit declaration of function 'vaeseq_u8' is invalid in C99
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return vaeseq_u8(data, key);
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// CHECK: aese {{v[0-9]+}}.16b, {{v[0-9]+}}.16b
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}
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uint8x16_t test_vaesdq_u8(uint8x16_t data, uint8x16_t key) {
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// CHECK: test_vaesdq_u8
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return vaesdq_u8(data, key);
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// CHECK: aesd {{v[0-9]+}}.16b, {{v[0-9]+}}.16b
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}
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uint8x16_t test_vaesmcq_u8(uint8x16_t data) {
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// CHECK: test_vaesmcq_u8
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return vaesmcq_u8(data);
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// CHECK: aesmc {{v[0-9]+}}.16b, {{v[0-9]+}}.16b
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}
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uint8x16_t test_vaesimcq_u8(uint8x16_t data) {
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// CHECK: test_vaesimcq_u8
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return vaesimcq_u8(data);
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// CHECK: aesimc {{v[0-9]+}}.16b, {{v[0-9]+}}.16b
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}
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uint32_t test_vsha1h_u32(uint32_t hash_e) {
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// CHECK: test_vsha1h_u32
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return vsha1h_u32(hash_e);
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// CHECK: sha1h {{s[0-9]+}}, {{s[0-9]+}}
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}
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uint32x4_t test_vsha1su1q_u32(uint32x4_t tw0_3, uint32x4_t w12_15) {
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// CHECK: test_vsha1su1q_u32
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return vsha1su1q_u32(tw0_3, w12_15);
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// CHECK: sha1su1 {{v[0-9]+}}.4s, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha256su0q_u32(uint32x4_t w0_3, uint32x4_t w4_7) {
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// CHECK: test_vsha256su0q_u32
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return vsha256su0q_u32(w0_3, w4_7);
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// CHECK: sha256su0 {{v[0-9]+}}.4s, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha1cq_u32(uint32x4_t hash_abcd, uint32_t hash_e, uint32x4_t wk) {
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// CHECK: test_vsha1cq_u32
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return vsha1cq_u32(hash_abcd, hash_e, wk);
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// CHECK: sha1c {{q[0-9]+}}, {{s[0-9]+}}, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha1pq_u32(uint32x4_t hash_abcd, uint32_t hash_e, uint32x4_t wk) {
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// CHECK: test_vsha1pq_u32
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return vsha1pq_u32(hash_abcd, hash_e, wk);
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// CHECK: sha1p {{q[0-9]+}}, {{s[0-9]+}}, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha1mq_u32(uint32x4_t hash_abcd, uint32_t hash_e, uint32x4_t wk) {
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// CHECK: test_vsha1mq_u32
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return vsha1mq_u32(hash_abcd, hash_e, wk);
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// CHECK: sha1m {{q[0-9]+}}, {{s[0-9]+}}, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha1su0q_u32(uint32x4_t w0_3, uint32x4_t w4_7, uint32x4_t w8_11) {
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// CHECK: test_vsha1su0q_u32
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return vsha1su0q_u32(w0_3, w4_7, w8_11);
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// CHECK: sha1su0 {{v[0-9]+}}.4s, {{v[0-9]+}}.4s, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha256hq_u32(uint32x4_t hash_abcd, uint32x4_t hash_efgh, uint32x4_t wk) {
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// CHECK: test_vsha256hq_u32
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return vsha256hq_u32(hash_abcd, hash_efgh, wk);
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// CHECK: sha256h {{q[0-9]+}}, {{q[0-9]+}}, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha256h2q_u32(uint32x4_t hash_efgh, uint32x4_t hash_abcd, uint32x4_t wk) {
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// CHECK: test_vsha256h2q_u32
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return vsha256h2q_u32(hash_efgh, hash_abcd, wk);
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// CHECK: sha256h2 {{q[0-9]+}}, {{q[0-9]+}}, {{v[0-9]+}}.4s
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}
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uint32x4_t test_vsha256su1q_u32(uint32x4_t tw0_3, uint32x4_t w8_11, uint32x4_t w12_15) {
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// CHECK: test_vsha256su1q_u32
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return vsha256su1q_u32(tw0_3, w8_11, w12_15);
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// CHECK: sha256su1 {{v[0-9]+}}.4s, {{v[0-9]+}}.4s, {{v[0-9]+}}.4s
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}
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