Chris@82: /* Chris@82: * Copyright (c) 2003, 2007-14 Matteo Frigo Chris@82: * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology Chris@82: * Chris@82: * This program is free software; you can redistribute it and/or modify Chris@82: * it under the terms of the GNU General Public License as published by Chris@82: * the Free Software Foundation; either version 2 of the License, or Chris@82: * (at your option) any later version. Chris@82: * Chris@82: * This program is distributed in the hope that it will be useful, Chris@82: * but WITHOUT ANY WARRANTY; without even the implied warranty of Chris@82: * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the Chris@82: * GNU General Public License for more details. Chris@82: * Chris@82: * You should have received a copy of the GNU General Public License Chris@82: * along with this program; if not, write to the Free Software Chris@82: * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA Chris@82: * Chris@82: */ Chris@82: Chris@82: /* This file was automatically generated --- DO NOT EDIT */ Chris@82: /* Generated on Thu May 24 08:06:29 EDT 2018 */ Chris@82: Chris@82: #include "rdft/codelet-rdft.h" Chris@82: Chris@82: #if defined(ARCH_PREFERS_FMA) || defined(ISA_EXTENSION_PREFERS_FMA) Chris@82: Chris@82: /* Generated by: ../../../genfft/gen_hc2hc.native -fma -compact -variables 4 -pipeline-latency 4 -n 9 -dit -name hf_9 -include rdft/scalar/hf.h */ Chris@82: Chris@82: /* Chris@82: * This function contains 96 FP additions, 88 FP multiplications, Chris@82: * (or, 24 additions, 16 multiplications, 72 fused multiply/add), Chris@82: * 55 stack variables, 10 constants, and 36 memory accesses Chris@82: */ Chris@82: #include "rdft/scalar/hf.h" Chris@82: Chris@82: static void hf_9(R *cr, R *ci, const R *W, stride rs, INT mb, INT me, INT ms) Chris@82: { Chris@82: DK(KP852868531, +0.852868531952443209628250963940074071936020296); Chris@82: DK(KP492403876, +0.492403876506104029683371512294761506835321626); Chris@82: DK(KP984807753, +0.984807753012208059366743024589523013670643252); Chris@82: DK(KP777861913, +0.777861913430206160028177977318626690410586096); Chris@82: DK(KP839099631, +0.839099631177280011763127298123181364687434283); Chris@82: DK(KP954188894, +0.954188894138671133499268364187245676532219158); Chris@82: DK(KP363970234, +0.363970234266202361351047882776834043890471784); Chris@82: DK(KP176326980, +0.176326980708464973471090386868618986121633062); Chris@82: DK(KP866025403, +0.866025403784438646763723170752936183471402627); Chris@82: DK(KP500000000, +0.500000000000000000000000000000000000000000000); Chris@82: { Chris@82: INT m; Chris@82: for (m = mb, W = W + ((mb - 1) * 16); m < me; m = m + 1, cr = cr + ms, ci = ci - ms, W = W + 16, MAKE_VOLATILE_STRIDE(18, rs)) { Chris@82: E T1, T1P, Te, T1S, T10, T1Q, T1a, T1d, Ty, T18, Tl, T13, T19, T1c, T1l; Chris@82: E T1r, TS, T1p, TF, T1o, T1g, T1q; Chris@82: T1 = cr[0]; Chris@82: T1P = ci[0]; Chris@82: { Chris@82: E T3, T6, T4, TW, T9, Tc, Ta, TY, T2, T8; Chris@82: T3 = cr[WS(rs, 3)]; Chris@82: T6 = ci[WS(rs, 3)]; Chris@82: T2 = W[4]; Chris@82: T4 = T2 * T3; Chris@82: TW = T2 * T6; Chris@82: T9 = cr[WS(rs, 6)]; Chris@82: Tc = ci[WS(rs, 6)]; Chris@82: T8 = W[10]; Chris@82: Ta = T8 * T9; Chris@82: TY = T8 * Tc; Chris@82: { Chris@82: E T7, TX, Td, TZ, T5, Tb; Chris@82: T5 = W[5]; Chris@82: T7 = FMA(T5, T6, T4); Chris@82: TX = FNMS(T5, T3, TW); Chris@82: Tb = W[11]; Chris@82: Td = FMA(Tb, Tc, Ta); Chris@82: TZ = FNMS(Tb, T9, TY); Chris@82: Te = T7 + Td; Chris@82: T1S = Td - T7; Chris@82: T10 = TX - TZ; Chris@82: T1Q = TX + TZ; Chris@82: } Chris@82: } Chris@82: { Chris@82: E Th, Tk, Ti, T12, Tx, T17, Tr, T15, Tg, Tj; Chris@82: Th = cr[WS(rs, 1)]; Chris@82: Tk = ci[WS(rs, 1)]; Chris@82: Tg = W[0]; Chris@82: Ti = Tg * Th; Chris@82: T12 = Tg * Tk; Chris@82: { Chris@82: E Tt, Tw, Tu, T16, Ts, Tv; Chris@82: Tt = cr[WS(rs, 7)]; Chris@82: Tw = ci[WS(rs, 7)]; Chris@82: Ts = W[12]; Chris@82: Tu = Ts * Tt; Chris@82: T16 = Ts * Tw; Chris@82: Tv = W[13]; Chris@82: Tx = FMA(Tv, Tw, Tu); Chris@82: T17 = FNMS(Tv, Tt, T16); Chris@82: } Chris@82: { Chris@82: E Tn, Tq, To, T14, Tm, Tp; Chris@82: Tn = cr[WS(rs, 4)]; Chris@82: Tq = ci[WS(rs, 4)]; Chris@82: Tm = W[6]; Chris@82: To = Tm * Tn; Chris@82: T14 = Tm * Tq; Chris@82: Tp = W[7]; Chris@82: Tr = FMA(Tp, Tq, To); Chris@82: T15 = FNMS(Tp, Tn, T14); Chris@82: } Chris@82: T1a = Tr - Tx; Chris@82: T1d = T15 - T17; Chris@82: Ty = Tr + Tx; Chris@82: T18 = T15 + T17; Chris@82: Tj = W[1]; Chris@82: Tl = FMA(Tj, Tk, Ti); Chris@82: T13 = FNMS(Tj, Th, T12); Chris@82: T19 = FNMS(KP500000000, T18, T13); Chris@82: T1c = FNMS(KP500000000, Ty, Tl); Chris@82: } Chris@82: { Chris@82: E TB, TE, TC, T1n, TR, T1k, TL, T1i, TA, TD; Chris@82: TB = cr[WS(rs, 2)]; Chris@82: TE = ci[WS(rs, 2)]; Chris@82: TA = W[2]; Chris@82: TC = TA * TB; Chris@82: T1n = TA * TE; Chris@82: { Chris@82: E TN, TQ, TO, T1j, TM, TP; Chris@82: TN = cr[WS(rs, 8)]; Chris@82: TQ = ci[WS(rs, 8)]; Chris@82: TM = W[14]; Chris@82: TO = TM * TN; Chris@82: T1j = TM * TQ; Chris@82: TP = W[15]; Chris@82: TR = FMA(TP, TQ, TO); Chris@82: T1k = FNMS(TP, TN, T1j); Chris@82: } Chris@82: { Chris@82: E TH, TK, TI, T1h, TG, TJ; Chris@82: TH = cr[WS(rs, 5)]; Chris@82: TK = ci[WS(rs, 5)]; Chris@82: TG = W[8]; Chris@82: TI = TG * TH; Chris@82: T1h = TG * TK; Chris@82: TJ = W[9]; Chris@82: TL = FMA(TJ, TK, TI); Chris@82: T1i = FNMS(TJ, TH, T1h); Chris@82: } Chris@82: T1l = T1i - T1k; Chris@82: T1r = TR - TL; Chris@82: TS = TL + TR; Chris@82: T1p = T1i + T1k; Chris@82: TD = W[3]; Chris@82: TF = FMA(TD, TE, TC); Chris@82: T1o = FNMS(TD, TB, T1n); Chris@82: T1g = FNMS(KP500000000, TS, TF); Chris@82: T1q = FNMS(KP500000000, T1p, T1o); Chris@82: } Chris@82: { Chris@82: E Tf, T21, TU, T24, T1O, T22, T1L, T23; Chris@82: Tf = T1 + Te; Chris@82: T21 = T1Q + T1P; Chris@82: { Chris@82: E Tz, TT, T1M, T1N; Chris@82: Tz = Tl + Ty; Chris@82: TT = TF + TS; Chris@82: TU = Tz + TT; Chris@82: T24 = TT - Tz; Chris@82: T1M = T13 + T18; Chris@82: T1N = T1o + T1p; Chris@82: T1O = T1M - T1N; Chris@82: T22 = T1M + T1N; Chris@82: } Chris@82: cr[0] = Tf + TU; Chris@82: ci[WS(rs, 8)] = T22 + T21; Chris@82: T1L = FNMS(KP500000000, TU, Tf); Chris@82: ci[WS(rs, 2)] = FNMS(KP866025403, T1O, T1L); Chris@82: cr[WS(rs, 3)] = FMA(KP866025403, T1O, T1L); Chris@82: T23 = FNMS(KP500000000, T22, T21); Chris@82: cr[WS(rs, 6)] = FMS(KP866025403, T24, T23); Chris@82: ci[WS(rs, 5)] = FMA(KP866025403, T24, T23); Chris@82: } Chris@82: { Chris@82: E T11, T1z, T1T, T1X, T1f, T1w, T1t, T1x, T1u, T1Y, T1C, T1I, T1F, T1J, T1G; Chris@82: E T1U, TV, T1R; Chris@82: TV = FNMS(KP500000000, Te, T1); Chris@82: T11 = FNMS(KP866025403, T10, TV); Chris@82: T1z = FMA(KP866025403, T10, TV); Chris@82: T1R = FNMS(KP500000000, T1Q, T1P); Chris@82: T1T = FMA(KP866025403, T1S, T1R); Chris@82: T1X = FNMS(KP866025403, T1S, T1R); Chris@82: { Chris@82: E T1b, T1e, T1m, T1s; Chris@82: T1b = FMA(KP866025403, T1a, T19); Chris@82: T1e = FNMS(KP866025403, T1d, T1c); Chris@82: T1f = FMA(KP176326980, T1e, T1b); Chris@82: T1w = FNMS(KP176326980, T1b, T1e); Chris@82: T1m = FNMS(KP866025403, T1l, T1g); Chris@82: T1s = FNMS(KP866025403, T1r, T1q); Chris@82: T1t = FNMS(KP363970234, T1s, T1m); Chris@82: T1x = FMA(KP363970234, T1m, T1s); Chris@82: } Chris@82: T1u = FNMS(KP954188894, T1t, T1f); Chris@82: T1Y = FMA(KP954188894, T1x, T1w); Chris@82: { Chris@82: E T1A, T1B, T1D, T1E; Chris@82: T1A = FMA(KP866025403, T1r, T1q); Chris@82: T1B = FMA(KP866025403, T1l, T1g); Chris@82: T1C = FMA(KP176326980, T1B, T1A); Chris@82: T1I = FNMS(KP176326980, T1A, T1B); Chris@82: T1D = FMA(KP866025403, T1d, T1c); Chris@82: T1E = FNMS(KP866025403, T1a, T19); Chris@82: T1F = FMA(KP839099631, T1E, T1D); Chris@82: T1J = FNMS(KP839099631, T1D, T1E); Chris@82: } Chris@82: T1G = FMA(KP777861913, T1F, T1C); Chris@82: T1U = FNMS(KP777861913, T1J, T1I); Chris@82: cr[WS(rs, 2)] = FMA(KP984807753, T1u, T11); Chris@82: ci[WS(rs, 7)] = FNMS(KP984807753, T1U, T1T); Chris@82: ci[WS(rs, 6)] = FNMS(KP984807753, T1Y, T1X); Chris@82: cr[WS(rs, 1)] = FMA(KP984807753, T1G, T1z); Chris@82: { Chris@82: E T1V, T1W, T1H, T1K; Chris@82: T1V = FMA(KP492403876, T1U, T1T); Chris@82: T1W = FNMS(KP777861913, T1F, T1C); Chris@82: cr[WS(rs, 7)] = FMS(KP852868531, T1W, T1V); Chris@82: ci[WS(rs, 4)] = FMA(KP852868531, T1W, T1V); Chris@82: T1H = FNMS(KP492403876, T1G, T1z); Chris@82: T1K = FMA(KP777861913, T1J, T1I); Chris@82: ci[WS(rs, 1)] = FNMS(KP852868531, T1K, T1H); Chris@82: cr[WS(rs, 4)] = FMA(KP852868531, T1K, T1H); Chris@82: } Chris@82: { Chris@82: E T1v, T1y, T1Z, T20; Chris@82: T1v = FNMS(KP492403876, T1u, T11); Chris@82: T1y = FNMS(KP954188894, T1x, T1w); Chris@82: ci[WS(rs, 3)] = FNMS(KP852868531, T1y, T1v); Chris@82: ci[0] = FMA(KP852868531, T1y, T1v); Chris@82: T1Z = FMA(KP492403876, T1Y, T1X); Chris@82: T20 = FMA(KP954188894, T1t, T1f); Chris@82: cr[WS(rs, 5)] = FMS(KP852868531, T20, T1Z); Chris@82: cr[WS(rs, 8)] = -(FMA(KP852868531, T20, T1Z)); Chris@82: } Chris@82: } Chris@82: } Chris@82: } Chris@82: } Chris@82: Chris@82: static const tw_instr twinstr[] = { Chris@82: {TW_FULL, 1, 9}, Chris@82: {TW_NEXT, 1, 0} Chris@82: }; Chris@82: Chris@82: static const hc2hc_desc desc = { 9, "hf_9", twinstr, &GENUS, {24, 16, 72, 0} }; Chris@82: Chris@82: void X(codelet_hf_9) (planner *p) { Chris@82: X(khc2hc_register) (p, hf_9, &desc); Chris@82: } Chris@82: #else Chris@82: Chris@82: /* Generated by: ../../../genfft/gen_hc2hc.native -compact -variables 4 -pipeline-latency 4 -n 9 -dit -name hf_9 -include rdft/scalar/hf.h */ Chris@82: Chris@82: /* Chris@82: * This function contains 96 FP additions, 72 FP multiplications, Chris@82: * (or, 60 additions, 36 multiplications, 36 fused multiply/add), Chris@82: * 41 stack variables, 8 constants, and 36 memory accesses Chris@82: */ Chris@82: #include "rdft/scalar/hf.h" Chris@82: Chris@82: static void hf_9(R *cr, R *ci, const R *W, stride rs, INT mb, INT me, INT ms) Chris@82: { Chris@82: DK(KP642787609, +0.642787609686539326322643409907263432907559884); Chris@82: DK(KP766044443, +0.766044443118978035202392650555416673935832457); Chris@82: DK(KP939692620, +0.939692620785908384054109277324731469936208134); Chris@82: DK(KP342020143, +0.342020143325668733044099614682259580763083368); Chris@82: DK(KP984807753, +0.984807753012208059366743024589523013670643252); Chris@82: DK(KP173648177, +0.173648177666930348851716626769314796000375677); Chris@82: DK(KP500000000, +0.500000000000000000000000000000000000000000000); Chris@82: DK(KP866025403, +0.866025403784438646763723170752936183471402627); Chris@82: { Chris@82: INT m; Chris@82: for (m = mb, W = W + ((mb - 1) * 16); m < me; m = m + 1, cr = cr + ms, ci = ci - ms, W = W + 16, MAKE_VOLATILE_STRIDE(18, rs)) { Chris@82: E T1, T1B, TQ, T1A, Tc, TN, T1C, T1D, TL, T1x, T19, T1o, T1c, T1n, Tu; Chris@82: E T1w, TW, T1k, T11, T1l; Chris@82: { Chris@82: E T6, TO, Tb, TP; Chris@82: T1 = cr[0]; Chris@82: T1B = ci[0]; Chris@82: { Chris@82: E T3, T5, T2, T4; Chris@82: T3 = cr[WS(rs, 3)]; Chris@82: T5 = ci[WS(rs, 3)]; Chris@82: T2 = W[4]; Chris@82: T4 = W[5]; Chris@82: T6 = FMA(T2, T3, T4 * T5); Chris@82: TO = FNMS(T4, T3, T2 * T5); Chris@82: } Chris@82: { Chris@82: E T8, Ta, T7, T9; Chris@82: T8 = cr[WS(rs, 6)]; Chris@82: Ta = ci[WS(rs, 6)]; Chris@82: T7 = W[10]; Chris@82: T9 = W[11]; Chris@82: Tb = FMA(T7, T8, T9 * Ta); Chris@82: TP = FNMS(T9, T8, T7 * Ta); Chris@82: } Chris@82: TQ = KP866025403 * (TO - TP); Chris@82: T1A = KP866025403 * (Tb - T6); Chris@82: Tc = T6 + Tb; Chris@82: TN = FNMS(KP500000000, Tc, T1); Chris@82: T1C = TO + TP; Chris@82: T1D = FNMS(KP500000000, T1C, T1B); Chris@82: } Chris@82: { Chris@82: E Tz, T13, TE, T14, TJ, T15, TK, T16; Chris@82: { Chris@82: E Tw, Ty, Tv, Tx; Chris@82: Tw = cr[WS(rs, 2)]; Chris@82: Ty = ci[WS(rs, 2)]; Chris@82: Tv = W[2]; Chris@82: Tx = W[3]; Chris@82: Tz = FMA(Tv, Tw, Tx * Ty); Chris@82: T13 = FNMS(Tx, Tw, Tv * Ty); Chris@82: } Chris@82: { Chris@82: E TB, TD, TA, TC; Chris@82: TB = cr[WS(rs, 5)]; Chris@82: TD = ci[WS(rs, 5)]; Chris@82: TA = W[8]; Chris@82: TC = W[9]; Chris@82: TE = FMA(TA, TB, TC * TD); Chris@82: T14 = FNMS(TC, TB, TA * TD); Chris@82: } Chris@82: { Chris@82: E TG, TI, TF, TH; Chris@82: TG = cr[WS(rs, 8)]; Chris@82: TI = ci[WS(rs, 8)]; Chris@82: TF = W[14]; Chris@82: TH = W[15]; Chris@82: TJ = FMA(TF, TG, TH * TI); Chris@82: T15 = FNMS(TH, TG, TF * TI); Chris@82: } Chris@82: TK = TE + TJ; Chris@82: T16 = T14 + T15; Chris@82: TL = Tz + TK; Chris@82: T1x = T13 + T16; Chris@82: { Chris@82: E T17, T18, T1a, T1b; Chris@82: T17 = FNMS(KP500000000, T16, T13); Chris@82: T18 = KP866025403 * (TJ - TE); Chris@82: T19 = T17 - T18; Chris@82: T1o = T18 + T17; Chris@82: T1a = FNMS(KP500000000, TK, Tz); Chris@82: T1b = KP866025403 * (T14 - T15); Chris@82: T1c = T1a - T1b; Chris@82: T1n = T1a + T1b; Chris@82: } Chris@82: } Chris@82: { Chris@82: E Ti, TX, Tn, TT, Ts, TU, Tt, TY; Chris@82: { Chris@82: E Tf, Th, Te, Tg; Chris@82: Tf = cr[WS(rs, 1)]; Chris@82: Th = ci[WS(rs, 1)]; Chris@82: Te = W[0]; Chris@82: Tg = W[1]; Chris@82: Ti = FMA(Te, Tf, Tg * Th); Chris@82: TX = FNMS(Tg, Tf, Te * Th); Chris@82: } Chris@82: { Chris@82: E Tk, Tm, Tj, Tl; Chris@82: Tk = cr[WS(rs, 4)]; Chris@82: Tm = ci[WS(rs, 4)]; Chris@82: Tj = W[6]; Chris@82: Tl = W[7]; Chris@82: Tn = FMA(Tj, Tk, Tl * Tm); Chris@82: TT = FNMS(Tl, Tk, Tj * Tm); Chris@82: } Chris@82: { Chris@82: E Tp, Tr, To, Tq; Chris@82: Tp = cr[WS(rs, 7)]; Chris@82: Tr = ci[WS(rs, 7)]; Chris@82: To = W[12]; Chris@82: Tq = W[13]; Chris@82: Ts = FMA(To, Tp, Tq * Tr); Chris@82: TU = FNMS(Tq, Tp, To * Tr); Chris@82: } Chris@82: Tt = Tn + Ts; Chris@82: TY = TT + TU; Chris@82: Tu = Ti + Tt; Chris@82: T1w = TX + TY; Chris@82: { Chris@82: E TS, TV, TZ, T10; Chris@82: TS = FNMS(KP500000000, Tt, Ti); Chris@82: TV = KP866025403 * (TT - TU); Chris@82: TW = TS - TV; Chris@82: T1k = TS + TV; Chris@82: TZ = FNMS(KP500000000, TY, TX); Chris@82: T10 = KP866025403 * (Ts - Tn); Chris@82: T11 = TZ - T10; Chris@82: T1l = T10 + TZ; Chris@82: } Chris@82: } Chris@82: { Chris@82: E T1y, Td, TM, T1v; Chris@82: T1y = KP866025403 * (T1w - T1x); Chris@82: Td = T1 + Tc; Chris@82: TM = Tu + TL; Chris@82: T1v = FNMS(KP500000000, TM, Td); Chris@82: cr[0] = Td + TM; Chris@82: cr[WS(rs, 3)] = T1v + T1y; Chris@82: ci[WS(rs, 2)] = T1v - T1y; Chris@82: } Chris@82: { Chris@82: E TR, T1I, T1e, T1K, T1i, T1H, T1f, T1J; Chris@82: TR = TN - TQ; Chris@82: T1I = T1D - T1A; Chris@82: { Chris@82: E T12, T1d, T1g, T1h; Chris@82: T12 = FMA(KP173648177, TW, KP984807753 * T11); Chris@82: T1d = FNMS(KP939692620, T1c, KP342020143 * T19); Chris@82: T1e = T12 + T1d; Chris@82: T1K = KP866025403 * (T1d - T12); Chris@82: T1g = FNMS(KP984807753, TW, KP173648177 * T11); Chris@82: T1h = FMA(KP342020143, T1c, KP939692620 * T19); Chris@82: T1i = KP866025403 * (T1g + T1h); Chris@82: T1H = T1g - T1h; Chris@82: } Chris@82: cr[WS(rs, 2)] = TR + T1e; Chris@82: ci[WS(rs, 6)] = T1H + T1I; Chris@82: T1f = FNMS(KP500000000, T1e, TR); Chris@82: ci[0] = T1f - T1i; Chris@82: ci[WS(rs, 3)] = T1f + T1i; Chris@82: T1J = FMS(KP500000000, T1H, T1I); Chris@82: cr[WS(rs, 5)] = T1J - T1K; Chris@82: cr[WS(rs, 8)] = T1K + T1J; Chris@82: } Chris@82: { Chris@82: E T1L, T1M, T1N, T1O; Chris@82: T1L = KP866025403 * (TL - Tu); Chris@82: T1M = T1C + T1B; Chris@82: T1N = T1w + T1x; Chris@82: T1O = FNMS(KP500000000, T1N, T1M); Chris@82: cr[WS(rs, 6)] = T1L - T1O; Chris@82: ci[WS(rs, 8)] = T1N + T1M; Chris@82: ci[WS(rs, 5)] = T1L + T1O; Chris@82: } Chris@82: { Chris@82: E T1j, T1E, T1q, T1z, T1u, T1F, T1r, T1G; Chris@82: T1j = TN + TQ; Chris@82: T1E = T1A + T1D; Chris@82: { Chris@82: E T1m, T1p, T1s, T1t; Chris@82: T1m = FMA(KP766044443, T1k, KP642787609 * T1l); Chris@82: T1p = FMA(KP173648177, T1n, KP984807753 * T1o); Chris@82: T1q = T1m + T1p; Chris@82: T1z = KP866025403 * (T1p - T1m); Chris@82: T1s = FNMS(KP642787609, T1k, KP766044443 * T1l); Chris@82: T1t = FNMS(KP984807753, T1n, KP173648177 * T1o); Chris@82: T1u = KP866025403 * (T1s - T1t); Chris@82: T1F = T1s + T1t; Chris@82: } Chris@82: cr[WS(rs, 1)] = T1j + T1q; Chris@82: T1r = FNMS(KP500000000, T1q, T1j); Chris@82: ci[WS(rs, 1)] = T1r - T1u; Chris@82: cr[WS(rs, 4)] = T1r + T1u; Chris@82: ci[WS(rs, 7)] = T1F + T1E; Chris@82: T1G = FNMS(KP500000000, T1F, T1E); Chris@82: cr[WS(rs, 7)] = T1z - T1G; Chris@82: ci[WS(rs, 4)] = T1z + T1G; Chris@82: } Chris@82: } Chris@82: } Chris@82: } Chris@82: Chris@82: static const tw_instr twinstr[] = { Chris@82: {TW_FULL, 1, 9}, Chris@82: {TW_NEXT, 1, 0} Chris@82: }; Chris@82: Chris@82: static const hc2hc_desc desc = { 9, "hf_9", twinstr, &GENUS, {60, 36, 36, 0} }; Chris@82: Chris@82: void X(codelet_hf_9) (planner *p) { Chris@82: X(khc2hc_register) (p, hf_9, &desc); Chris@82: } Chris@82: #endif