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Converted to new SIMD: -m 30 -a 0
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@ -5,6 +5,8 @@
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#define _MD5_
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#define NEW_SIMD_CODE
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#include "include/constants.h"
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#include "include/kernel_vendor.h"
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@ -18,9 +20,7 @@
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#include "OpenCL/common.c"
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#include "include/rp_kernel.h"
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#include "OpenCL/rp.c"
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#define COMPARE_S "OpenCL/check_single_comp4.c"
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#define COMPARE_M "OpenCL/check_multi_comp4.c"
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#include "OpenCL/simd.c"
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// no unicode yet
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@ -80,64 +80,41 @@ __kernel void m00030_m04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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* loop
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*/
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for (u32 il_pos = 0; il_pos < rules_cnt; il_pos++)
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for (u32 il_pos = 0; il_pos < rules_cnt; il_pos += VECT_SIZE)
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{
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u32 w0[4];
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u32x w0[4] = { 0 };
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u32x w1[4] = { 0 };
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u32x w2[4] = { 0 };
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u32x w3[4] = { 0 };
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w0[0] = pw_buf0[0];
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w0[1] = pw_buf0[1];
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w0[2] = pw_buf0[2];
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w0[3] = pw_buf0[3];
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u32 w1[4];
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w1[0] = pw_buf1[0];
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w1[1] = pw_buf1[1];
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w1[2] = pw_buf1[2];
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w1[3] = pw_buf1[3];
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u32 w2[4];
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w2[0] = 0;
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w2[1] = 0;
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w2[2] = 0;
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w2[3] = 0;
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u32 w3[4];
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w3[0] = 0;
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w3[1] = 0;
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w3[2] = 0;
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w3[3] = 0;
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const u32 out_len = apply_rules (rules_buf[il_pos].cmds, w0, w1, pw_len);
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const u32 out_len = apply_rules_vect (pw_buf0, pw_buf1, pw_len, rules_buf, il_pos, w0, w1);
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/**
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* append salt
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*/
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u32 s0[4];
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u32x s0[4];
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s0[0] = salt_buf0[0];
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s0[1] = salt_buf0[1];
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s0[2] = salt_buf0[2];
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s0[3] = salt_buf0[3];
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u32 s1[4];
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u32x s1[4];
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s1[0] = salt_buf1[0];
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s1[1] = salt_buf1[1];
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s1[2] = salt_buf1[2];
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s1[3] = salt_buf1[3];
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u32 s2[4];
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u32x s2[4];
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s2[0] = 0;
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s2[1] = 0;
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s2[2] = 0;
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s2[3] = 0;
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u32 s3[4];
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u32x s3[4];
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s3[0] = 0;
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s3[1] = 0;
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@ -148,10 +125,10 @@ __kernel void m00030_m04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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const u32 out_salt_len = (out_len * 2) + salt_len;
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u32 w0_t[4];
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u32 w1_t[4];
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u32 w2_t[4];
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u32 w3_t[4];
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u32x w0_t[4];
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u32x w1_t[4];
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u32x w2_t[4];
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u32x w3_t[4];
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make_unicode (w0, w0_t, w1_t);
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make_unicode (w1, w2_t, w3_t);
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@ -181,10 +158,10 @@ __kernel void m00030_m04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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* md5
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*/
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u32 a = MD5M_A;
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u32 b = MD5M_B;
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u32 c = MD5M_C;
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u32 d = MD5M_D;
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u32x a = MD5M_A;
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u32x b = MD5M_B;
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u32x c = MD5M_C;
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u32x d = MD5M_D;
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MD5_STEP (MD5_Fo, a, b, c, d, w0_t[0], MD5C00, MD5S00);
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MD5_STEP (MD5_Fo, d, a, b, c, w0_t[1], MD5C01, MD5S01);
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@ -254,13 +231,7 @@ __kernel void m00030_m04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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MD5_STEP (MD5_I , c, d, a, b, w0_t[2], MD5C3e, MD5S32);
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MD5_STEP (MD5_I , b, c, d, a, w2_t[1], MD5C3f, MD5S33);
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const u32 r0 = a;
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const u32 r1 = d;
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const u32 r2 = c;
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const u32 r3 = b;
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#include COMPARE_M
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COMPARE_M_SIMD (a, d, c, b);
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}
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}
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@ -340,64 +311,41 @@ __kernel void m00030_s04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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* loop
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*/
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for (u32 il_pos = 0; il_pos < rules_cnt; il_pos++)
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for (u32 il_pos = 0; il_pos < rules_cnt; il_pos += VECT_SIZE)
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{
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u32 w0[4];
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u32x w0[4] = { 0 };
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u32x w1[4] = { 0 };
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u32x w2[4] = { 0 };
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u32x w3[4] = { 0 };
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w0[0] = pw_buf0[0];
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w0[1] = pw_buf0[1];
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w0[2] = pw_buf0[2];
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w0[3] = pw_buf0[3];
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u32 w1[4];
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w1[0] = pw_buf1[0];
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w1[1] = pw_buf1[1];
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w1[2] = pw_buf1[2];
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w1[3] = pw_buf1[3];
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u32 w2[4];
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w2[0] = 0;
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w2[1] = 0;
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w2[2] = 0;
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w2[3] = 0;
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u32 w3[4];
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w3[0] = 0;
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w3[1] = 0;
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w3[2] = 0;
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w3[3] = 0;
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const u32 out_len = apply_rules (rules_buf[il_pos].cmds, w0, w1, pw_len);
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const u32 out_len = apply_rules_vect (pw_buf0, pw_buf1, pw_len, rules_buf, il_pos, w0, w1);
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/**
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* append salt
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*/
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u32 s0[4];
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u32x s0[4];
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s0[0] = salt_buf0[0];
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s0[1] = salt_buf0[1];
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s0[2] = salt_buf0[2];
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s0[3] = salt_buf0[3];
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u32 s1[4];
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u32x s1[4];
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s1[0] = salt_buf1[0];
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s1[1] = salt_buf1[1];
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s1[2] = salt_buf1[2];
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s1[3] = salt_buf1[3];
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u32 s2[4];
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u32x s2[4];
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s2[0] = 0;
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s2[1] = 0;
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s2[2] = 0;
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s2[3] = 0;
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u32 s3[4];
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u32x s3[4];
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s3[0] = 0;
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s3[1] = 0;
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@ -408,10 +356,10 @@ __kernel void m00030_s04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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const u32 out_salt_len = (out_len * 2) + salt_len;
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u32 w0_t[4];
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u32 w1_t[4];
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u32 w2_t[4];
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u32 w3_t[4];
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u32x w0_t[4];
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u32x w1_t[4];
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u32x w2_t[4];
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u32x w3_t[4];
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make_unicode (w0, w0_t, w1_t);
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make_unicode (w1, w2_t, w3_t);
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@ -441,10 +389,10 @@ __kernel void m00030_s04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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* md5
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*/
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u32 a = MD5M_A;
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u32 b = MD5M_B;
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u32 c = MD5M_C;
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u32 d = MD5M_D;
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u32x a = MD5M_A;
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u32x b = MD5M_B;
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u32x c = MD5M_C;
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u32x d = MD5M_D;
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MD5_STEP (MD5_Fo, a, b, c, d, w0_t[0], MD5C00, MD5S00);
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MD5_STEP (MD5_Fo, d, a, b, c, w0_t[1], MD5C01, MD5S01);
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@ -511,21 +459,13 @@ __kernel void m00030_s04 (__global pw_t *pws, __global kernel_rule_t *rules_buf,
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MD5_STEP (MD5_I , b, c, d, a, w3_t[1], MD5C3b, MD5S33);
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MD5_STEP (MD5_I , a, b, c, d, w1_t[0], MD5C3c, MD5S30);
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bool q_cond = allx (search[0] != a);
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if (q_cond) continue;
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if (MATCHES_NONE_VS (a, search[0])) continue;
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MD5_STEP (MD5_I , d, a, b, c, w2_t[3], MD5C3d, MD5S31);
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MD5_STEP (MD5_I , c, d, a, b, w0_t[2], MD5C3e, MD5S32);
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MD5_STEP (MD5_I , b, c, d, a, w2_t[1], MD5C3f, MD5S33);
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const u32 r0 = a;
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const u32 r1 = d;
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const u32 r2 = c;
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const u32 r3 = b;
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#include COMPARE_S
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COMPARE_S_SIMD (a, d, c, b);
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}
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}
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