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328 lines
6.3 KiB
Common Lisp
328 lines
6.3 KiB
Common Lisp
/**
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* Author......: See docs/credits.txt
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* License.....: MIT
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*/
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#include "inc_vendor.h"
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#include "inc_types.h"
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#include "inc_platform.h"
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#ifdef IS_NATIVE
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#define FIXED_THREAD_COUNT(n)
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#define SYNC_THREADS()
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#endif
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#ifdef IS_AMD
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DECLSPEC u64x rotl64 (const u64x a, const int n)
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{
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return rotr64 (a, 64 - n);
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}
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DECLSPEC u64x rotr64 (const u64x a, const int n)
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{
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#if VECT_SIZE == 1
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return rotr64_S (a, n);
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#else
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return ((a >> n) | ((a << (64 - n))));
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#endif
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}
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DECLSPEC u64 rotl64_S (const u64 a, const int n)
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{
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return rotr64_S (a, 64 - n);
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}
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DECLSPEC u64 rotr64_S (const u64 a, const int n)
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{
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vconv64_t in;
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in.v64 = a;
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const u32 a0 = in.v32.a;
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const u32 a1 = in.v32.b;
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vconv64_t out;
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if (n < 32)
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{
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out.v32.a = amd_bitalign (a1, a0, n);
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out.v32.b = amd_bitalign (a0, a1, n);
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}
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else
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{
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out.v32.a = amd_bitalign (a0, a1, n - 32);
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out.v32.b = amd_bitalign (a1, a0, n - 32);
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}
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return out.v64;
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}
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#endif
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#if defined IS_CUDA
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#if ATTACK_EXEC == 11
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CONSTANT_VK u32 generic_constant[8192]; // 32k
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#if ATTACK_KERN == 0
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#define bfs_buf g_bfs_buf
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#define rules_buf ((const kernel_rule_t *) generic_constant)
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#define words_buf_s g_words_buf_s
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#define words_buf_r g_words_buf_r
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#elif ATTACK_KERN == 1
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#define bfs_buf g_bfs_buf
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#define rules_buf g_rules_buf
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#define words_buf_s g_words_buf_s
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#define words_buf_r g_words_buf_r
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#elif ATTACK_KERN == 3
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#define rules_buf g_rules_buf
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#define bfs_buf ((const bf_t *) generic_constant)
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#define words_buf_s ((const bs_word_t *) generic_constant)
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#define words_buf_r ((const u32x *) generic_constant)
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#endif
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#endif
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DECLSPEC u32 hc_atomic_dec (GLOBAL_AS u32 *p)
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{
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volatile const u32 val = 1;
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return atomicSub (p, val);
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}
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DECLSPEC u32 hc_atomic_inc (GLOBAL_AS u32 *p)
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{
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volatile const u32 val = 1;
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return atomicAdd (p, val);
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}
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DECLSPEC u32 hc_atomic_or (GLOBAL_AS u32 *p, volatile const u32 val)
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{
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return atomicOr (p, val);
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}
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DECLSPEC size_t get_global_id (const u32 dimindx __attribute__((unused)))
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{
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return (blockIdx.x * blockDim.x) + threadIdx.x;
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}
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DECLSPEC size_t get_local_id (const u32 dimindx __attribute__((unused)))
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{
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return threadIdx.x;
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}
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DECLSPEC size_t get_local_size (const u32 dimindx __attribute__((unused)))
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{
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// verify
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return blockDim.x;
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}
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DECLSPEC u32x rotl32 (const u32x a, const int n)
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{
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return ((a << n) | ((a >> (32 - n))));
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}
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DECLSPEC u32x rotr32 (const u32x a, const int n)
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{
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return ((a >> n) | ((a << (32 - n))));
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}
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DECLSPEC u32 rotl32_S (const u32 a, const int n)
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{
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return ((a << n) | ((a >> (32 - n))));
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}
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DECLSPEC u32 rotr32_S (const u32 a, const int n)
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{
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return ((a >> n) | ((a << (32 - n))));
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}
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DECLSPEC u64x rotl64 (const u64x a, const int n)
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{
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return ((a << n) | ((a >> (64 - n))));
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}
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DECLSPEC u64x rotr64 (const u64x a, const int n)
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{
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return ((a >> n) | ((a << (64 - n))));
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}
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DECLSPEC u64 rotl64_S (const u64 a, const int n)
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{
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return ((a << n) | ((a >> (64 - n))));
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}
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DECLSPEC u64 rotr64_S (const u64 a, const int n)
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{
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return ((a >> n) | ((a << (64 - n))));
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}
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#define FIXED_THREAD_COUNT(n) __launch_bounds__((n), 0)
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#define SYNC_THREADS() __syncthreads ()
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#endif
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#if defined IS_HIP
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#if ATTACK_EXEC == 11
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CONSTANT_VK u32 generic_constant[8192] __attribute__((used)); // 32k
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#if ATTACK_KERN == 0
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#define bfs_buf g_bfs_buf
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#define rules_buf ((const kernel_rule_t *) generic_constant)
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#define words_buf_s g_words_buf_s
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#define words_buf_r g_words_buf_r
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#elif ATTACK_KERN == 1
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#define bfs_buf g_bfs_buf
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#define rules_buf g_rules_buf
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#define words_buf_s g_words_buf_s
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#define words_buf_r g_words_buf_r
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#elif ATTACK_KERN == 3
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#define rules_buf g_rules_buf
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#define bfs_buf ((const bf_t *) generic_constant)
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#define words_buf_s ((const bs_word_t *) generic_constant)
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#define words_buf_r ((const u32x *) generic_constant)
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#endif
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#endif
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DECLSPEC u32 hc_atomic_dec (GLOBAL_AS u32 *p)
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{
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volatile const u32 val = 1;
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return atomicSub (p, val);
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}
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DECLSPEC u32 hc_atomic_inc (GLOBAL_AS u32 *p)
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{
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volatile const u32 val = 1;
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return atomicAdd (p, val);
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}
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DECLSPEC u32 hc_atomic_or (GLOBAL_AS u32 *p, volatile const u32 val)
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{
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return atomicOr (p, val);
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}
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DECLSPEC size_t get_global_id (const u32 dimindx __attribute__((unused)))
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{
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return (blockIdx.x * blockDim.x) + threadIdx.x;
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}
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DECLSPEC size_t get_local_id (const u32 dimindx __attribute__((unused)))
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{
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return threadIdx.x;
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}
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DECLSPEC size_t get_local_size (const u32 dimindx __attribute__((unused)))
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{
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// verify
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return blockDim.x;
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}
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DECLSPEC u32x rotl32 (const u32x a, const int n)
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{
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return ((a << n) | ((a >> (32 - n))));
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}
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DECLSPEC u32x rotr32 (const u32x a, const int n)
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{
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return ((a >> n) | ((a << (32 - n))));
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}
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DECLSPEC u32 rotl32_S (const u32 a, const int n)
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{
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return ((a << n) | ((a >> (32 - n))));
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}
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DECLSPEC u32 rotr32_S (const u32 a, const int n)
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{
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return ((a >> n) | ((a << (32 - n))));
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}
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DECLSPEC u64x rotl64 (const u64x a, const int n)
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{
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return rotr64 (a, 64 - n);
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}
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DECLSPEC u32 amd_bitalign_S (const u32 a, const u32 b, const int n)
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{
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u32 r = 0;
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__asm__ ("V_ALIGNBIT_B32 %0, %1, %2, %3;" : "=v"(r): "v"(a), "v"(b), "I"(n));
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return r;
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}
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DECLSPEC u64x rotr64 (const u64x a, const int n)
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{
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#if VECT_SIZE == 1
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return rotr64_S (a, n);
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#else
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return ((a >> n) | ((a << (64 - n))));
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#endif
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}
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DECLSPEC u64 rotl64_S (const u64 a, const int n)
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{
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return rotr64_S (a, 64 - n);
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}
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DECLSPEC u64 rotr64_S (const u64 a, const int n)
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{
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vconv64_t in;
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in.v64 = a;
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const u32 a0 = in.v32.a;
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const u32 a1 = in.v32.b;
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vconv64_t out;
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if (n < 32)
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{
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out.v32.a = amd_bitalign_S (a1, a0, n);
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out.v32.b = amd_bitalign_S (a0, a1, n);
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}
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else
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{
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out.v32.a = amd_bitalign_S (a0, a1, n - 32);
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out.v32.b = amd_bitalign_S (a1, a0, n - 32);
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}
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return out.v64;
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}
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#define FIXED_THREAD_COUNT(n) __launch_bounds__((n), 0)
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#define SYNC_THREADS() __syncthreads ()
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#endif
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#ifdef IS_OPENCL
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DECLSPEC u32 hc_atomic_dec (volatile GLOBAL_AS u32 *p)
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{
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volatile const u32 val = 1;
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return atomic_sub (p, val);
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}
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DECLSPEC u32 hc_atomic_inc (volatile GLOBAL_AS u32 *p)
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{
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volatile const u32 val = 1;
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return atomic_add (p, val);
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}
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DECLSPEC u32 hc_atomic_or (volatile GLOBAL_AS u32 *p, volatile const u32 val)
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{
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return atomic_or (p, val);
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}
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#define FIXED_THREAD_COUNT(n) __attribute__((reqd_work_group_size((n), 1, 1)))
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#define SYNC_THREADS() barrier (CLK_LOCAL_MEM_FENCE)
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#endif
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