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04d5e5a119
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190 lines
3.7 KiB
Common Lisp
190 lines
3.7 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 "inc_vendor.h"
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#include "inc_types.h"
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#include "inc_platform.cl"
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#include "inc_common.cl"
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#include "inc_simd.cl"
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#include "inc_hash_sha512.cl"
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#endif
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#define COMPARE_S "inc_comp_single.cl"
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#define COMPARE_M "inc_comp_multi.cl"
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typedef struct ecryptfs_tmp
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{
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u64 out[8];
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} ecryptfs_tmp_t;
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KERNEL_FQ void m12200_init (KERN_ATTR_TMPS (ecryptfs_tmp_t))
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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_max) return;
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sha512_ctx_t ctx;
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sha512_init (&ctx);
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sha512_update_global (&ctx, salt_bufs[SALT_POS].salt_buf, salt_bufs[SALT_POS].salt_len);
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sha512_update_global_swap (&ctx, pws[gid].i, pws[gid].pw_len);
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sha512_final (&ctx);
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tmps[gid].out[0] = ctx.h[0];
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tmps[gid].out[1] = ctx.h[1];
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tmps[gid].out[2] = ctx.h[2];
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tmps[gid].out[3] = ctx.h[3];
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tmps[gid].out[4] = ctx.h[4];
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tmps[gid].out[5] = ctx.h[5];
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tmps[gid].out[6] = ctx.h[6];
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tmps[gid].out[7] = ctx.h[7];
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}
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KERNEL_FQ void m12200_loop (KERN_ATTR_TMPS (ecryptfs_tmp_t))
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{
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const u64 gid = get_global_id (0);
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if ((gid * VECT_SIZE) >= gid_max) return;
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u64x t0 = pack64v (tmps, out, gid, 0);
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u64x t1 = pack64v (tmps, out, gid, 1);
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u64x t2 = pack64v (tmps, out, gid, 2);
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u64x t3 = pack64v (tmps, out, gid, 3);
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u64x t4 = pack64v (tmps, out, gid, 4);
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u64x t5 = pack64v (tmps, out, gid, 5);
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u64x t6 = pack64v (tmps, out, gid, 6);
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u64x t7 = pack64v (tmps, out, gid, 7);
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u32x w0[4];
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u32x w1[4];
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u32x w2[4];
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u32x w3[4];
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u32x w4[4];
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u32x w5[4];
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u32x w6[4];
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u32x w7[4];
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w0[0] = 0;
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w0[1] = 0;
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w0[2] = 0;
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w0[3] = 0;
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w1[0] = 0;
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w1[1] = 0;
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w1[2] = 0;
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w1[3] = 0;
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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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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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w4[0] = 0x80000000;
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w4[1] = 0;
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w4[2] = 0;
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w4[3] = 0;
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w5[0] = 0;
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w5[1] = 0;
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w5[2] = 0;
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w5[3] = 0;
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w6[0] = 0;
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w6[1] = 0;
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w6[2] = 0;
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w6[3] = 0;
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w7[0] = 0;
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w7[1] = 0;
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w7[2] = 0;
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w7[3] = 64 * 8;
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for (u32 i = 0, j = loop_pos; i < loop_cnt; i++, j++)
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{
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w0[0] = h32_from_64 (t0);
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w0[1] = l32_from_64 (t0);
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w0[2] = h32_from_64 (t1);
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w0[3] = l32_from_64 (t1);
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w1[0] = h32_from_64 (t2);
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w1[1] = l32_from_64 (t2);
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w1[2] = h32_from_64 (t3);
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w1[3] = l32_from_64 (t3);
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w2[0] = h32_from_64 (t4);
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w2[1] = l32_from_64 (t4);
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w2[2] = h32_from_64 (t5);
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w2[3] = l32_from_64 (t5);
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w3[0] = h32_from_64 (t6);
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w3[1] = l32_from_64 (t6);
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w3[2] = h32_from_64 (t7);
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w3[3] = l32_from_64 (t7);
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u64x digest[8];
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digest[0] = SHA512M_A;
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digest[1] = SHA512M_B;
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digest[2] = SHA512M_C;
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digest[3] = SHA512M_D;
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digest[4] = SHA512M_E;
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digest[5] = SHA512M_F;
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digest[6] = SHA512M_G;
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digest[7] = SHA512M_H;
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sha512_transform_vector (w0, w1, w2, w3, w4, w5, w6, w7, digest);
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t0 = digest[0];
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t1 = digest[1];
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t2 = digest[2];
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t3 = digest[3];
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t4 = digest[4];
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t5 = digest[5];
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t6 = digest[6];
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t7 = digest[7];
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}
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unpack64v (tmps, out, gid, 0, t0);
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unpack64v (tmps, out, gid, 1, t1);
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unpack64v (tmps, out, gid, 2, t2);
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unpack64v (tmps, out, gid, 3, t3);
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unpack64v (tmps, out, gid, 4, t4);
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unpack64v (tmps, out, gid, 5, t5);
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unpack64v (tmps, out, gid, 6, t6);
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unpack64v (tmps, out, gid, 7, t7);
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}
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KERNEL_FQ void m12200_comp (KERN_ATTR_TMPS (ecryptfs_tmp_t))
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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_max) return;
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const u64 lid = get_local_id (0);
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const u64 a = tmps[gid].out[0];
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const u32 r0 = h32_from_64_S (a);
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const u32 r1 = l32_from_64_S (a);
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const u32 r2 = 0;
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const u32 r3 = 0;
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#define il_pos 0
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#ifdef KERNEL_STATIC
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#include COMPARE_M
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#endif
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}
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