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https://github.com/henrydcase/pqc.git
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ac2c20045c
* Add McEliece reference implementations * Add Vec implementations of McEliece * Add sse implementations * Add AVX2 implementations * Get rid of stuff not supported by Mac ABI * restrict to two cores * Ditch .data files * Remove .hidden from all .S files * speed up duplicate consistency tests by batching * make cpuinfo more robust * Hope to stabilize macos cpuinfo without ccache * Revert "Hope to stabilize macos cpuinfo without ccache" This reverts commit 6129c3cabe1abbc8b956bc87e902a698e32bf322. * Just hardcode what's available at travis * Fixed-size types in api.h * namespace all header files in mceliece * Ditch operations.h * Get rid of static inline functions * fixup! Ditch operations.h
170 lines
3.5 KiB
C
170 lines
3.5 KiB
C
/*
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This file is for functions for field arithmetic
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*/
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#include "gf.h"
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#include "params.h"
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gf PQCLEAN_MCELIECE348864_SSE_gf_iszero(gf a) {
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uint32_t t = a;
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t -= 1;
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t >>= 20;
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return (gf) t;
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}
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gf PQCLEAN_MCELIECE348864_SSE_gf_add(gf in0, gf in1) {
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return in0 ^ in1;
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}
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gf PQCLEAN_MCELIECE348864_SSE_gf_mul(gf in0, gf in1) {
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int i;
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uint32_t tmp;
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uint32_t t0;
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uint32_t t1;
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uint32_t t;
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t0 = in0;
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t1 = in1;
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tmp = t0 * (t1 & 1);
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for (i = 1; i < GFBITS; i++) {
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tmp ^= (t0 * (t1 & (1 << i)));
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}
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t = tmp & 0x7FC000;
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tmp ^= t >> 9;
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tmp ^= t >> 12;
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t = tmp & 0x3000;
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tmp ^= t >> 9;
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tmp ^= t >> 12;
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return tmp & ((1 << GFBITS) - 1);
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}
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/* input: field element in */
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/* return: in^2 */
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static inline gf gf_sq(gf in) {
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const uint32_t B[] = {0x55555555, 0x33333333, 0x0F0F0F0F, 0x00FF00FF};
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uint32_t x = in;
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uint32_t t;
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x = (x | (x << 8)) & B[3];
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x = (x | (x << 4)) & B[2];
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x = (x | (x << 2)) & B[1];
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x = (x | (x << 1)) & B[0];
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t = x & 0x7FC000;
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x ^= t >> 9;
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x ^= t >> 12;
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t = x & 0x3000;
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x ^= t >> 9;
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x ^= t >> 12;
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return x & ((1 << GFBITS) - 1);
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}
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gf PQCLEAN_MCELIECE348864_SSE_gf_inv(gf in) {
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gf tmp_11;
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gf tmp_1111;
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gf out = in;
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out = gf_sq(out);
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tmp_11 = PQCLEAN_MCELIECE348864_SSE_gf_mul(out, in); // 11
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out = gf_sq(tmp_11);
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out = gf_sq(out);
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tmp_1111 = PQCLEAN_MCELIECE348864_SSE_gf_mul(out, tmp_11); // 1111
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out = gf_sq(tmp_1111);
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out = gf_sq(out);
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out = gf_sq(out);
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out = gf_sq(out);
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out = PQCLEAN_MCELIECE348864_SSE_gf_mul(out, tmp_1111); // 11111111
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out = gf_sq(out);
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out = gf_sq(out);
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out = PQCLEAN_MCELIECE348864_SSE_gf_mul(out, tmp_11); // 1111111111
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out = gf_sq(out);
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out = PQCLEAN_MCELIECE348864_SSE_gf_mul(out, in); // 11111111111
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return gf_sq(out); // 111111111110
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}
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/* input: field element den, num */
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/* return: (num/den) */
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gf PQCLEAN_MCELIECE348864_SSE_gf_frac(gf den, gf num) {
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return PQCLEAN_MCELIECE348864_SSE_gf_mul(PQCLEAN_MCELIECE348864_SSE_gf_inv(den), num);
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}
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/* input: in0, in1 in GF((2^m)^t)*/
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/* output: out = in0*in1 */
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void PQCLEAN_MCELIECE348864_SSE_GF_mul(gf *out, const gf *in0, const gf *in1) {
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int i, j;
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gf prod[ SYS_T * 2 - 1 ];
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for (i = 0; i < SYS_T * 2 - 1; i++) {
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prod[i] = 0;
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}
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for (i = 0; i < SYS_T; i++) {
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for (j = 0; j < SYS_T; j++) {
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prod[i + j] ^= PQCLEAN_MCELIECE348864_SSE_gf_mul(in0[i], in1[j]);
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}
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}
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//
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for (i = (SYS_T - 1) * 2; i >= SYS_T; i--) {
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prod[i - SYS_T + 9] ^= PQCLEAN_MCELIECE348864_SSE_gf_mul(prod[i], (gf) 877);
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prod[i - SYS_T + 7] ^= PQCLEAN_MCELIECE348864_SSE_gf_mul(prod[i], (gf) 2888);
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prod[i - SYS_T + 5] ^= PQCLEAN_MCELIECE348864_SSE_gf_mul(prod[i], (gf) 1781);
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prod[i - SYS_T + 0] ^= PQCLEAN_MCELIECE348864_SSE_gf_mul(prod[i], (gf) 373);
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}
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for (i = 0; i < SYS_T; i++) {
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out[i] = prod[i];
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}
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}
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/* 2 field multiplications */
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uint64_t PQCLEAN_MCELIECE348864_SSE_gf_mul2(gf a, gf b0, gf b1) {
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int i;
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uint64_t tmp = 0;
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uint64_t t0;
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uint64_t t1;
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uint64_t t;
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uint64_t mask = 0x0000000100000001;
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t0 = a;
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t1 = b1;
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t1 = (t1 << 32) | b0;
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for (i = 0; i < GFBITS; i++) {
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tmp ^= t0 * (t1 & mask);
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mask += mask;
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}
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//
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t = tmp & 0x007FC000007FC000;
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tmp ^= (t >> 9) ^ (t >> 12);
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t = tmp & 0x0000300000003000;
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tmp ^= (t >> 9) ^ (t >> 12);
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return tmp & 0x00000FFF00000FFF;
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}
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