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https://git.kernel.org/pub/scm/linux/kernel/git/kdave/btrfs-progs.git
synced 2024-11-26 21:54:31 +08:00
btrfs-progs: fix detection of accelerated implementation.
The build fails with crypto backends other than builtin, the initializers cannot be reached as they're ifdef-ed out. Move hash_init_accel under the right condition and delete the algorithm-specific initializers as they're used only by the hash test and that can simply call hash_init_accel to set the implementation. All the -m flags need to be detected at configure time and the flag used for ifdef (HAVE_CFLAG_m*), not the actual feature defined by compiler as the dispatcher function is not built with the -m flags. The uname check for x86_64 must be dropped so on i386/i586 we can still build accelerated version. Signed-off-by: David Sterba <dsterba@suse.com>
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6439e92cba
commit
4fc291a465
8
Makefile
8
Makefile
@ -130,14 +130,18 @@ LIBBTRFSUTIL_LDFLAGS = $(SUBST_LDFLAGS) \
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# Default implementation
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CRYPTO_OBJECTS =
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ifeq ($(shell uname -m),x86_64)
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ifeq ($(HAVE_CFLAG_msse2),1)
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crypto_blake2b_sse2_cflags = -msse2
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endif
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ifeq ($(HAVE_CFLAG_msse41),1)
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crypto_blake2b_sse41_cflags = -msse4.1
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endif
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ifeq ($(HAVE_CFLAG_mavx2),1)
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crypto_blake2b_avx2_cflags = -mavx2
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endif
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ifeq ($(HAVE_CFLAG_msha),1)
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crypto_sha256_x86_cflags = -msse4.1 -msha
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endif
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endif
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LIBS = $(LIBS_BASE) $(LIBS_CRYPTO)
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LIBBTRFS_LIBS = $(LIBS_BASE) $(LIBS_CRYPTO)
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@ -24,6 +24,9 @@ PYTHON_CFLAGS = @PYTHON_CFLAGS@
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CRYPTOPROVIDER_BUILTIN = @CRYPTOPROVIDER_BUILTIN@
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CRYPTO_CFLAGS = @GCRYPT_CFLAGS@ @SODIUM_CFLAGS@ @KCAPI_CFLAGS@
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HAVE_CFLAG_msse2 = @HAVE_CFLAG_msse2@
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HAVE_CFLAG_msse41 = @HAVE_CFLAG_msse41@
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HAVE_CFLAG_mavx2 = @HAVE_CFLAG_mavx2@
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HAVE_CFLAG_msha = @HAVE_CFLAG_msha@
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SUBST_CFLAGS = @CFLAGS@
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12
configure.ac
12
configure.ac
@ -43,6 +43,18 @@ AC_C_CONST
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AC_C_VOLATILE
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AC_C_BIGENDIAN
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AX_CHECK_COMPILE_FLAG([-msse2], [HAVE_CFLAG_msse2=1], [HAVE_CFLAG_msse2=0])
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AC_SUBST([HAVE_CFLAG_msse2])
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AC_DEFINE_UNQUOTED([HAVE_CFLAG_msse2], [$HAVE_CFLAG_msse2], [Compiler supports -msse2])
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AX_CHECK_COMPILE_FLAG([-msse4.1], [HAVE_CFLAG_msse41=1], [HAVE_CFLAG_msse41=0])
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AC_SUBST([HAVE_CFLAG_msse41])
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AC_DEFINE_UNQUOTED([HAVE_CFLAG_msse41], [$HAVE_CFLAG_msse41], [Compiler supports -msse4.1])
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AX_CHECK_COMPILE_FLAG([-mavx2], [HAVE_CFLAG_mavx2=1], [HAVE_CFLAG_mavx2=0])
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AC_SUBST([HAVE_CFLAG_mavx2])
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AC_DEFINE_UNQUOTED([HAVE_CFLAG_mavx2], [$HAVE_CFLAG_mavx2], [Compiler supports -mavx2])
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AX_CHECK_COMPILE_FLAG([-msha], [HAVE_CFLAG_msha=1], [HAVE_CFLAG_msha=0])
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AC_SUBST([HAVE_CFLAG_msha])
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AC_DEFINE_UNQUOTED([HAVE_CFLAG_msha], [$HAVE_CFLAG_msha], [Compiler supports -msha])
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@ -229,15 +229,15 @@ static void (*blake2b_compress)( blake2b_state *S, const uint8_t block[BLAKE2B_B
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void blake2_init_accel(void)
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{
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if (0);
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#if HAVE_AVX2
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#if HAVE_CFLAG_mavx2 == 1
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else if (cpu_has_feature(CPU_FLAG_AVX2))
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blake2b_compress = blake2b_compress_avx2;
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#endif
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#if HAVE_SSE41
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#if HAVE_CFLAG_msse41 == 1
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else if (cpu_has_feature(CPU_FLAG_SSE41))
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blake2b_compress = blake2b_compress_sse41;
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#endif
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#if HAVE_SSE2
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#if HAVE_CFLAG_msse2 == 1
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else if (cpu_has_feature(CPU_FLAG_SSE2))
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blake2b_compress = blake2b_compress_sse2;
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#endif
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@ -183,27 +183,26 @@ int main(int argc, char **argv) {
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u64 cycles;
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u64 time;
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unsigned long cpu_flag;
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void (*init_accel)(void);
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} contestants[] = {
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{ .name = "NULL-NOP", .digest = hash_null_nop, .digest_size = 32 },
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{ .name = "NULL-MEMCPY", .digest = hash_null_memcpy, .digest_size = 32 },
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{ .name = "CRC32C-ref", .digest = hash_crc32c, .digest_size = 4,
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.cpu_flag = CPU_FLAG_NONE, .init_accel = hash_init_crc32c },
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.cpu_flag = CPU_FLAG_NONE },
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{ .name = "CRC32C-NI", .digest = hash_crc32c, .digest_size = 4,
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.cpu_flag = CPU_FLAG_SSE42, .init_accel = hash_init_crc32c },
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.cpu_flag = CPU_FLAG_SSE42 },
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{ .name = "XXHASH", .digest = hash_xxhash, .digest_size = 8 },
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{ .name = "SHA256-ref", .digest = hash_sha256, .digest_size = 32,
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.cpu_flag = CPU_FLAG_NONE, .init_accel = hash_init_sha256 },
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.cpu_flag = CPU_FLAG_NONE },
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{ .name = "SHA256-NI", .digest = hash_sha256, .digest_size = 32,
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.cpu_flag = CPU_FLAG_SHA, .init_accel = hash_init_sha256 },
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.cpu_flag = CPU_FLAG_SHA },
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{ .name = "BLAKE2-ref", .digest = hash_blake2b, .digest_size = 32,
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.cpu_flag = CPU_FLAG_NONE, .init_accel = hash_init_blake2 },
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.cpu_flag = CPU_FLAG_NONE },
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{ .name = "BLAKE2-SSE2", .digest = hash_blake2b, .digest_size = 32,
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.cpu_flag = CPU_FLAG_SSE2, .init_accel = hash_init_blake2 },
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.cpu_flag = CPU_FLAG_SSE2 },
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{ .name = "BLAKE2-SSE41", .digest = hash_blake2b, .digest_size = 32,
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.cpu_flag = CPU_FLAG_SSE41, .init_accel = hash_init_blake2 },
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.cpu_flag = CPU_FLAG_SSE41 },
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{ .name = "BLAKE2-AVX2", .digest = hash_blake2b, .digest_size = 32,
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.cpu_flag = CPU_FLAG_AVX2, .init_accel = hash_init_blake2 },
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.cpu_flag = CPU_FLAG_AVX2 },
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};
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int units = UNITS_CYCLES;
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@ -278,7 +277,7 @@ int main(int argc, char **argv) {
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if (c->cpu_flag) {
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cpu_set_level(c->cpu_flag);
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c->init_accel();
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hash_init_accel();
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}
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tstart = get_time();
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start = get_cycles(units);
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@ -20,28 +20,11 @@
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#include "crypto/sha.h"
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#include "crypto/blake2.h"
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void hash_init_accel(void)
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{
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crc32c_init_accel();
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blake2_init_accel();
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sha256_init_accel();
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}
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void hash_init_crc32c(void)
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{
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crc32c_init_accel();
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}
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void hash_init_blake2(void)
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{
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blake2_init_accel();
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}
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void hash_init_sha256(void)
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{
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sha256_init_accel();
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}
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/*
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* Default builtin implementations
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*/
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@ -70,6 +53,13 @@ int hash_xxhash(const u8 *buf, size_t length, u8 *out)
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*/
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#if CRYPTOPROVIDER_BUILTIN == 1
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void hash_init_accel(void)
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{
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crc32c_init_accel();
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blake2_init_accel();
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sha256_init_accel();
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}
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int hash_sha256(const u8 *buf, size_t len, u8 *out)
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{
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SHA256Context context;
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@ -98,6 +88,11 @@ int hash_blake2b(const u8 *buf, size_t len, u8 *out)
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#include <gcrypt.h>
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void hash_init_accel(void)
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{
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crc32c_init_accel();
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}
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int hash_sha256(const u8 *buf, size_t len, u8 *out)
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{
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gcry_md_hash_buffer(GCRY_MD_SHA256, out, buf, len);
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@ -117,6 +112,11 @@ int hash_blake2b(const u8 *buf, size_t len, u8 *out)
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#include <sodium/crypto_hash_sha256.h>
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#include <sodium/crypto_generichash_blake2b.h>
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void hash_init_accel(void)
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{
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crc32c_init_accel();
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}
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int hash_sha256(const u8 *buf, size_t len, u8 *out)
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{
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return crypto_hash_sha256(out, buf, len);
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@ -134,6 +134,11 @@ int hash_blake2b(const u8 *buf, size_t len, u8 *out)
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#include <kcapi.h>
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void hash_init_accel(void)
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{
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crc32c_init_accel();
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}
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int hash_sha256(const u8 *buf, size_t len, u8 *out)
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{
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static struct kcapi_handle *handle = NULL;
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@ -28,7 +28,5 @@ int hash_blake2b(const u8 *buf, size_t length, u8 *out);
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void hash_init_accel(void);
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void hash_init_crc32c(void);
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void hash_init_blake2(void);
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void hash_init_sha256(void);
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#endif
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@ -97,7 +97,7 @@ static uint32_t SHA256_H0[SHA256HashSize/4] = {
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static void (*sha256_process_message_block)(SHA256Context *context) = SHA224_256ProcessMessageBlock;
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#ifdef __SHA__
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#if HAVE_CFLAG_msha == 1
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void sha256_process_x86(uint32_t state[8], const uint8_t data[], uint32_t length);
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static void sha256_process_x86_dispatch(SHA256Context *context)
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@ -110,7 +110,7 @@ static void sha256_process_x86_dispatch(SHA256Context *context)
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void sha256_init_accel(void)
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{
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#ifdef __SHA__
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#if HAVE_CFLAG_msha == 1
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if (cpu_has_feature(CPU_FLAG_SHA))
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sha256_process_message_block = sha256_process_x86_dispatch;
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else
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