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200 lines
3.9 KiB
Common Lisp
200 lines
3.9 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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#define NEW_SIMD_CODE
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#ifdef KERNEL_STATIC
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#include M2S(INCLUDE_PATH/inc_vendor.h)
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#include M2S(INCLUDE_PATH/inc_types.h)
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#include M2S(INCLUDE_PATH/inc_platform.cl)
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#include M2S(INCLUDE_PATH/inc_common.cl)
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#include M2S(INCLUDE_PATH/inc_rp_optimized.h)
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#include M2S(INCLUDE_PATH/inc_rp_optimized.cl)
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#include M2S(INCLUDE_PATH/inc_simd.cl)
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#include M2S(INCLUDE_PATH/inc_hash_blake2s.cl)
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#endif
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KERNEL_FQ void m35000_m04 (KERN_ATTR_RULES ())
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{
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/**
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* base
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*/
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const u64 gid = get_global_id (0);
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if (gid >= GID_CNT) return;
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u32 pw_buf0[4];
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u32 pw_buf1[4];
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pw_buf0[0] = pws[gid].i[0];
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pw_buf0[1] = pws[gid].i[1];
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pw_buf0[2] = pws[gid].i[2];
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pw_buf0[3] = pws[gid].i[3];
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pw_buf1[0] = pws[gid].i[4];
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pw_buf1[1] = pws[gid].i[5];
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pw_buf1[2] = pws[gid].i[6];
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pw_buf1[3] = pws[gid].i[7];
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const u32 pw_len = pws[gid].pw_len & 63;
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/**
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* loop
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*/
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for (u32 il_pos = 0; il_pos < IL_CNT; il_pos += VECT_SIZE)
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{
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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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const u32x out_len = apply_rules_vect_optimized (pw_buf0, pw_buf1, pw_len, rules_buf, il_pos, w0, w1);
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u32x m[16];
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m[ 0] = w0[0];
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m[ 1] = w0[1];
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m[ 2] = w0[2];
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m[ 3] = w0[3];
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m[ 4] = w1[0];
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m[ 5] = w1[1];
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m[ 6] = w1[2];
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m[ 7] = w1[3];
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m[ 8] = 0;
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m[ 9] = 0;
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m[10] = 0;
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m[11] = 0;
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m[12] = 0;
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m[13] = 0;
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m[14] = 0;
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m[15] = 0;
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u32x h[8];
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h[0] = BLAKE2S_IV_00 ^ 0x01010020;
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h[1] = BLAKE2S_IV_01;
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h[2] = BLAKE2S_IV_02;
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h[3] = BLAKE2S_IV_03;
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h[4] = BLAKE2S_IV_04;
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h[5] = BLAKE2S_IV_05;
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h[6] = BLAKE2S_IV_06;
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h[7] = BLAKE2S_IV_07;
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blake2s_transform_vector (h, m, out_len, BLAKE2S_FINAL);
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const u32x r0 = h[DGST_R0];
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const u32x r1 = h[DGST_R1];
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const u32x r2 = h[DGST_R2];
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const u32x r3 = h[DGST_R3];
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COMPARE_M_SIMD (r0, r1, r2, r3);
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}
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}
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KERNEL_FQ void m35000_m08 (KERN_ATTR_RULES ())
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{
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}
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KERNEL_FQ void m35000_m16 (KERN_ATTR_RULES ())
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{
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}
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KERNEL_FQ void m35000_s04 (KERN_ATTR_RULES ())
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{
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/**
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* base
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*/
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const u64 gid = get_global_id (0);
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if (gid >= GID_CNT) return;
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u32 pw_buf0[4];
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u32 pw_buf1[4];
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pw_buf0[0] = pws[gid].i[0];
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pw_buf0[1] = pws[gid].i[1];
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pw_buf0[2] = pws[gid].i[2];
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pw_buf0[3] = pws[gid].i[3];
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pw_buf1[0] = pws[gid].i[4];
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pw_buf1[1] = pws[gid].i[5];
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pw_buf1[2] = pws[gid].i[6];
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pw_buf1[3] = pws[gid].i[7];
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const u32 pw_len = pws[gid].pw_len & 63;
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/**
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* digest
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*/
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const u32 search[4] =
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{
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digests_buf[DIGESTS_OFFSET_HOST].digest_buf[DGST_R0],
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digests_buf[DIGESTS_OFFSET_HOST].digest_buf[DGST_R1],
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digests_buf[DIGESTS_OFFSET_HOST].digest_buf[DGST_R2],
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digests_buf[DIGESTS_OFFSET_HOST].digest_buf[DGST_R3]
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};
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/**
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* loop
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*/
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for (u32 il_pos = 0; il_pos < IL_CNT; il_pos += VECT_SIZE)
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{
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u32x w0[4] = { 0 };
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u32x w1[4] = { 0 };
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const u32x out_len = apply_rules_vect_optimized (pw_buf0, pw_buf1, pw_len, rules_buf, il_pos, w0, w1);
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u32x m[16];
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m[ 0] = w0[0];
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m[ 1] = w0[1];
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m[ 2] = w0[2];
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m[ 3] = w0[3];
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m[ 4] = w1[0];
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m[ 5] = w1[1];
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m[ 6] = w1[2];
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m[ 7] = w1[3];
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m[ 8] = 0;
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m[ 9] = 0;
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m[10] = 0;
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m[11] = 0;
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m[12] = 0;
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m[13] = 0;
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m[14] = 0;
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m[15] = 0;
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u32x h[8];
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h[0] = BLAKE2S_IV_00 ^ 0x01010020;
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h[1] = BLAKE2S_IV_01;
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h[2] = BLAKE2S_IV_02;
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h[3] = BLAKE2S_IV_03;
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h[4] = BLAKE2S_IV_04;
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h[5] = BLAKE2S_IV_05;
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h[6] = BLAKE2S_IV_06;
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h[7] = BLAKE2S_IV_07;
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blake2s_transform_vector (h, m, out_len, BLAKE2S_FINAL);
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const u32x r0 = h[DGST_R0];
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const u32x r1 = h[DGST_R1];
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const u32x r2 = h[DGST_R2];
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const u32x r3 = h[DGST_R3];
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COMPARE_S_SIMD (r0, r1, r2, r3);
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}
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}
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KERNEL_FQ void m35000_s08 (KERN_ATTR_RULES ())
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{
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}
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KERNEL_FQ void m35000_s16 (KERN_ATTR_RULES ())
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{
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}
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