427 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
		
		
			
		
	
	
			427 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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								/*
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								 * Copyright (c) 2003, 2007-14 Matteo Frigo
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								 * Copyright (c) 2003, 2007-14 Massachusetts Institute of Technology
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								 *
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								 * This program is free software; you can redistribute it and/or modify
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								 * it under the terms of the GNU General Public License as published by
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								 * the Free Software Foundation; either version 2 of the License, or
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								 * (at your option) any later version.
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								 *
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								 * This program is distributed in the hope that it will be useful,
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								 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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								 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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								 * GNU General Public License for more details.
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								 *
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								 * You should have received a copy of the GNU General Public License
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								 * along with this program; if not, write to the Free Software
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								 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA
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								 *
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								 */
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								/* This file was automatically generated --- DO NOT EDIT */
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								/* Generated on Tue Sep 14 10:45:29 EDT 2021 */
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								#include "dft/codelet-dft.h"
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								#if defined(ARCH_PREFERS_FMA) || defined(ISA_EXTENSION_PREFERS_FMA)
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								/* Generated by: ../../../genfft/gen_twiddle_c.native -fma -simd -compact -variables 4 -pipeline-latency 8 -n 16 -name t1fv_16 -include dft/simd/t1f.h */
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								/*
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								 * This function contains 87 FP additions, 64 FP multiplications,
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								 * (or, 53 additions, 30 multiplications, 34 fused multiply/add),
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								 * 36 stack variables, 3 constants, and 32 memory accesses
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								 */
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								#include "dft/simd/t1f.h"
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								static void t1fv_16(R *ri, R *ii, const R *W, stride rs, INT mb, INT me, INT ms)
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								{
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								     DVK(KP923879532, +0.923879532511286756128183189396788286822416626);
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								     DVK(KP707106781, +0.707106781186547524400844362104849039284835938);
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								     DVK(KP414213562, +0.414213562373095048801688724209698078569671875);
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								     {
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									  INT m;
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									  R *x;
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									  x = ri;
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									  for (m = mb, W = W + (mb * ((TWVL / VL) * 30)); m < me; m = m + VL, x = x + (VL * ms), W = W + (TWVL * 30), MAKE_VOLATILE_STRIDE(16, rs)) {
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									       V T4, TW, T9, T19, TD, TI, TZ, T1a, Tf, Tk, Tl, T13, T1c, Tq, Tv;
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									       V Tw, T16, T1d, T1, T3, T2;
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									       T1 = LD(&(x[0]), ms, &(x[0]));
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									       T2 = LD(&(x[WS(rs, 8)]), ms, &(x[0]));
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									       T3 = BYTWJ(&(W[TWVL * 14]), T2);
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									       T4 = VADD(T1, T3);
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									       TW = VSUB(T1, T3);
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									       {
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										    V T6, T8, T5, T7;
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										    T5 = LD(&(x[WS(rs, 4)]), ms, &(x[0]));
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										    T6 = BYTWJ(&(W[TWVL * 6]), T5);
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										    T7 = LD(&(x[WS(rs, 12)]), ms, &(x[0]));
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										    T8 = BYTWJ(&(W[TWVL * 22]), T7);
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										    T9 = VADD(T6, T8);
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										    T19 = VSUB(T6, T8);
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									       }
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									       {
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										    V TA, TH, TC, TF, TX, TY;
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										    {
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											 V Tz, TG, TB, TE;
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											 Tz = LD(&(x[WS(rs, 14)]), ms, &(x[0]));
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											 TA = BYTWJ(&(W[TWVL * 26]), Tz);
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											 TG = LD(&(x[WS(rs, 10)]), ms, &(x[0]));
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											 TH = BYTWJ(&(W[TWVL * 18]), TG);
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											 TB = LD(&(x[WS(rs, 6)]), ms, &(x[0]));
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											 TC = BYTWJ(&(W[TWVL * 10]), TB);
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											 TE = LD(&(x[WS(rs, 2)]), ms, &(x[0]));
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											 TF = BYTWJ(&(W[TWVL * 2]), TE);
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										    }
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										    TD = VADD(TA, TC);
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										    TI = VADD(TF, TH);
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										    TX = VSUB(TF, TH);
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										    TY = VSUB(TA, TC);
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										    TZ = VADD(TX, TY);
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										    T1a = VSUB(TY, TX);
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									       }
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									       {
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										    V Tc, Tj, Te, Th, T11, T12;
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										    {
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											 V Tb, Ti, Td, Tg;
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											 Tb = LD(&(x[WS(rs, 1)]), ms, &(x[WS(rs, 1)]));
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											 Tc = BYTWJ(&(W[0]), Tb);
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											 Ti = LD(&(x[WS(rs, 13)]), ms, &(x[WS(rs, 1)]));
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											 Tj = BYTWJ(&(W[TWVL * 24]), Ti);
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											 Td = LD(&(x[WS(rs, 9)]), ms, &(x[WS(rs, 1)]));
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											 Te = BYTWJ(&(W[TWVL * 16]), Td);
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											 Tg = LD(&(x[WS(rs, 5)]), ms, &(x[WS(rs, 1)]));
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											 Th = BYTWJ(&(W[TWVL * 8]), Tg);
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										    }
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										    Tf = VADD(Tc, Te);
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										    Tk = VADD(Th, Tj);
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										    Tl = VSUB(Tf, Tk);
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										    T11 = VSUB(Tc, Te);
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										    T12 = VSUB(Th, Tj);
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										    T13 = VFNMS(LDK(KP414213562), T12, T11);
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										    T1c = VFMA(LDK(KP414213562), T11, T12);
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									       }
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									       {
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										    V Tn, Tu, Tp, Ts, T14, T15;
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										    {
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											 V Tm, Tt, To, Tr;
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											 Tm = LD(&(x[WS(rs, 15)]), ms, &(x[WS(rs, 1)]));
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											 Tn = BYTWJ(&(W[TWVL * 28]), Tm);
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											 Tt = LD(&(x[WS(rs, 11)]), ms, &(x[WS(rs, 1)]));
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											 Tu = BYTWJ(&(W[TWVL * 20]), Tt);
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											 To = LD(&(x[WS(rs, 7)]), ms, &(x[WS(rs, 1)]));
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											 Tp = BYTWJ(&(W[TWVL * 12]), To);
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											 Tr = LD(&(x[WS(rs, 3)]), ms, &(x[WS(rs, 1)]));
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											 Ts = BYTWJ(&(W[TWVL * 4]), Tr);
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										    }
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										    Tq = VADD(Tn, Tp);
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										    Tv = VADD(Ts, Tu);
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										    Tw = VSUB(Tq, Tv);
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										    T14 = VSUB(Tn, Tp);
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										    T15 = VSUB(Tu, Ts);
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										    T16 = VFNMS(LDK(KP414213562), T15, T14);
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										    T1d = VFMA(LDK(KP414213562), T14, T15);
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									       }
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									       {
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										    V Ty, TM, TL, TN;
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										    {
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											 V Ta, Tx, TJ, TK;
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											 Ta = VSUB(T4, T9);
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											 Tx = VADD(Tl, Tw);
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											 Ty = VFNMS(LDK(KP707106781), Tx, Ta);
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											 TM = VFMA(LDK(KP707106781), Tx, Ta);
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											 TJ = VSUB(TD, TI);
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											 TK = VSUB(Tw, Tl);
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											 TL = VFNMS(LDK(KP707106781), TK, TJ);
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											 TN = VFMA(LDK(KP707106781), TK, TJ);
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										    }
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										    ST(&(x[WS(rs, 6)]), VFNMSI(TL, Ty), ms, &(x[0]));
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										    ST(&(x[WS(rs, 2)]), VFMAI(TN, TM), ms, &(x[0]));
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										    ST(&(x[WS(rs, 10)]), VFMAI(TL, Ty), ms, &(x[0]));
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										    ST(&(x[WS(rs, 14)]), VFNMSI(TN, TM), ms, &(x[0]));
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									       }
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									       {
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										    V T1k, T1o, T1n, T1p;
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										    {
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											 V T1i, T1j, T1l, T1m;
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											 T1i = VFNMS(LDK(KP707106781), TZ, TW);
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											 T1j = VADD(T1c, T1d);
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											 T1k = VFNMS(LDK(KP923879532), T1j, T1i);
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											 T1o = VFMA(LDK(KP923879532), T1j, T1i);
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											 T1l = VFMA(LDK(KP707106781), T1a, T19);
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											 T1m = VSUB(T16, T13);
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											 T1n = VFNMS(LDK(KP923879532), T1m, T1l);
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											 T1p = VFMA(LDK(KP923879532), T1m, T1l);
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										    }
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										    ST(&(x[WS(rs, 5)]), VFNMSI(T1n, T1k), ms, &(x[WS(rs, 1)]));
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										    ST(&(x[WS(rs, 13)]), VFNMSI(T1p, T1o), ms, &(x[WS(rs, 1)]));
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										    ST(&(x[WS(rs, 11)]), VFMAI(T1n, T1k), ms, &(x[WS(rs, 1)]));
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										    ST(&(x[WS(rs, 3)]), VFMAI(T1p, T1o), ms, &(x[WS(rs, 1)]));
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									       }
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									       {
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										    V TQ, TU, TT, TV;
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										    {
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											 V TO, TP, TR, TS;
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											 TO = VADD(T4, T9);
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											 TP = VADD(TI, TD);
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											 TQ = VADD(TO, TP);
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											 TU = VSUB(TO, TP);
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											 TR = VADD(Tf, Tk);
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											 TS = VADD(Tq, Tv);
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											 TT = VADD(TR, TS);
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											 TV = VSUB(TS, TR);
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										    }
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										    ST(&(x[WS(rs, 8)]), VSUB(TQ, TT), ms, &(x[0]));
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										    ST(&(x[WS(rs, 4)]), VFMAI(TV, TU), ms, &(x[0]));
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										    ST(&(x[0]), VADD(TQ, TT), ms, &(x[0]));
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										    ST(&(x[WS(rs, 12)]), VFNMSI(TV, TU), ms, &(x[0]));
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									       }
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									       {
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										    V T18, T1g, T1f, T1h;
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										    {
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											 V T10, T17, T1b, T1e;
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											 T10 = VFMA(LDK(KP707106781), TZ, TW);
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											 T17 = VADD(T13, T16);
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											 T18 = VFNMS(LDK(KP923879532), T17, T10);
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											 T1g = VFMA(LDK(KP923879532), T17, T10);
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											 T1b = VFNMS(LDK(KP707106781), T1a, T19);
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											 T1e = VSUB(T1c, T1d);
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											 T1f = VFNMS(LDK(KP923879532), T1e, T1b);
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											 T1h = VFMA(LDK(KP923879532), T1e, T1b);
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										    }
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										    ST(&(x[WS(rs, 9)]), VFNMSI(T1f, T18), ms, &(x[WS(rs, 1)]));
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										    ST(&(x[WS(rs, 15)]), VFMAI(T1h, T1g), ms, &(x[WS(rs, 1)]));
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										    ST(&(x[WS(rs, 7)]), VFMAI(T1f, T18), ms, &(x[WS(rs, 1)]));
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										    ST(&(x[WS(rs, 1)]), VFNMSI(T1h, T1g), ms, &(x[WS(rs, 1)]));
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									       }
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									  }
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								     }
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								     VLEAVE();
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								}
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								static const tw_instr twinstr[] = {
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								     VTW(0, 1),
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								     VTW(0, 2),
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								     VTW(0, 3),
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								     VTW(0, 4),
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								     VTW(0, 5),
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								     VTW(0, 6),
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								     VTW(0, 7),
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								     VTW(0, 8),
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								     VTW(0, 9),
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								     VTW(0, 10),
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								     VTW(0, 11),
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								     VTW(0, 12),
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								     VTW(0, 13),
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								     VTW(0, 14),
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								     VTW(0, 15),
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								     { TW_NEXT, VL, 0 }
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								};
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static const ct_desc desc = { 16, XSIMD_STRING("t1fv_16"), twinstr, &GENUS, { 53, 30, 34, 0 }, 0, 0, 0 };
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								void XSIMD(codelet_t1fv_16) (planner *p) {
							 | 
						||
| 
								 | 
							
								     X(kdft_dit_register) (p, t1fv_16, &desc);
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								#else
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								/* Generated by: ../../../genfft/gen_twiddle_c.native -simd -compact -variables 4 -pipeline-latency 8 -n 16 -name t1fv_16 -include dft/simd/t1f.h */
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								/*
							 | 
						||
| 
								 | 
							
								 * This function contains 87 FP additions, 42 FP multiplications,
							 | 
						||
| 
								 | 
							
								 * (or, 83 additions, 38 multiplications, 4 fused multiply/add),
							 | 
						||
| 
								 | 
							
								 * 36 stack variables, 3 constants, and 32 memory accesses
							 | 
						||
| 
								 | 
							
								 */
							 | 
						||
| 
								 | 
							
								#include "dft/simd/t1f.h"
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static void t1fv_16(R *ri, R *ii, const R *W, stride rs, INT mb, INT me, INT ms)
							 | 
						||
| 
								 | 
							
								{
							 | 
						||
| 
								 | 
							
								     DVK(KP923879532, +0.923879532511286756128183189396788286822416626);
							 | 
						||
| 
								 | 
							
								     DVK(KP382683432, +0.382683432365089771728459984030398866761344562);
							 | 
						||
| 
								 | 
							
								     DVK(KP707106781, +0.707106781186547524400844362104849039284835938);
							 | 
						||
| 
								 | 
							
								     {
							 | 
						||
| 
								 | 
							
									  INT m;
							 | 
						||
| 
								 | 
							
									  R *x;
							 | 
						||
| 
								 | 
							
									  x = ri;
							 | 
						||
| 
								 | 
							
									  for (m = mb, W = W + (mb * ((TWVL / VL) * 30)); m < me; m = m + VL, x = x + (VL * ms), W = W + (TWVL * 30), MAKE_VOLATILE_STRIDE(16, rs)) {
							 | 
						||
| 
								 | 
							
									       V TJ, T10, TD, T11, T1b, T1c, Ty, TK, T16, T17, T18, Tb, TN, T13, T14;
							 | 
						||
| 
								 | 
							
									       V T15, Tm, TM, TG, TI, TH;
							 | 
						||
| 
								 | 
							
									       TG = LD(&(x[0]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
									       TH = LD(&(x[WS(rs, 8)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
									       TI = BYTWJ(&(W[TWVL * 14]), TH);
							 | 
						||
| 
								 | 
							
									       TJ = VSUB(TG, TI);
							 | 
						||
| 
								 | 
							
									       T10 = VADD(TG, TI);
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V TA, TC, Tz, TB;
							 | 
						||
| 
								 | 
							
										    Tz = LD(&(x[WS(rs, 4)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    TA = BYTWJ(&(W[TWVL * 6]), Tz);
							 | 
						||
| 
								 | 
							
										    TB = LD(&(x[WS(rs, 12)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    TC = BYTWJ(&(W[TWVL * 22]), TB);
							 | 
						||
| 
								 | 
							
										    TD = VSUB(TA, TC);
							 | 
						||
| 
								 | 
							
										    T11 = VADD(TA, TC);
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V Tp, Tw, Tr, Tu, Ts, Tx;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V To, Tv, Tq, Tt;
							 | 
						||
| 
								 | 
							
											 To = LD(&(x[WS(rs, 14)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
											 Tp = BYTWJ(&(W[TWVL * 26]), To);
							 | 
						||
| 
								 | 
							
											 Tv = LD(&(x[WS(rs, 10)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
											 Tw = BYTWJ(&(W[TWVL * 18]), Tv);
							 | 
						||
| 
								 | 
							
											 Tq = LD(&(x[WS(rs, 6)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
											 Tr = BYTWJ(&(W[TWVL * 10]), Tq);
							 | 
						||
| 
								 | 
							
											 Tt = LD(&(x[WS(rs, 2)]), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
											 Tu = BYTWJ(&(W[TWVL * 2]), Tt);
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    T1b = VADD(Tp, Tr);
							 | 
						||
| 
								 | 
							
										    T1c = VADD(Tu, Tw);
							 | 
						||
| 
								 | 
							
										    Ts = VSUB(Tp, Tr);
							 | 
						||
| 
								 | 
							
										    Tx = VSUB(Tu, Tw);
							 | 
						||
| 
								 | 
							
										    Ty = VMUL(LDK(KP707106781), VSUB(Ts, Tx));
							 | 
						||
| 
								 | 
							
										    TK = VMUL(LDK(KP707106781), VADD(Tx, Ts));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V T2, T9, T4, T7, T5, Ta;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V T1, T8, T3, T6;
							 | 
						||
| 
								 | 
							
											 T1 = LD(&(x[WS(rs, 15)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 T2 = BYTWJ(&(W[TWVL * 28]), T1);
							 | 
						||
| 
								 | 
							
											 T8 = LD(&(x[WS(rs, 11)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 T9 = BYTWJ(&(W[TWVL * 20]), T8);
							 | 
						||
| 
								 | 
							
											 T3 = LD(&(x[WS(rs, 7)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 T4 = BYTWJ(&(W[TWVL * 12]), T3);
							 | 
						||
| 
								 | 
							
											 T6 = LD(&(x[WS(rs, 3)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 T7 = BYTWJ(&(W[TWVL * 4]), T6);
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    T16 = VADD(T2, T4);
							 | 
						||
| 
								 | 
							
										    T17 = VADD(T7, T9);
							 | 
						||
| 
								 | 
							
										    T18 = VSUB(T16, T17);
							 | 
						||
| 
								 | 
							
										    T5 = VSUB(T2, T4);
							 | 
						||
| 
								 | 
							
										    Ta = VSUB(T7, T9);
							 | 
						||
| 
								 | 
							
										    Tb = VFNMS(LDK(KP923879532), Ta, VMUL(LDK(KP382683432), T5));
							 | 
						||
| 
								 | 
							
										    TN = VFMA(LDK(KP923879532), T5, VMUL(LDK(KP382683432), Ta));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V Td, Tk, Tf, Ti, Tg, Tl;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V Tc, Tj, Te, Th;
							 | 
						||
| 
								 | 
							
											 Tc = LD(&(x[WS(rs, 1)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 Td = BYTWJ(&(W[0]), Tc);
							 | 
						||
| 
								 | 
							
											 Tj = LD(&(x[WS(rs, 13)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 Tk = BYTWJ(&(W[TWVL * 24]), Tj);
							 | 
						||
| 
								 | 
							
											 Te = LD(&(x[WS(rs, 9)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 Tf = BYTWJ(&(W[TWVL * 16]), Te);
							 | 
						||
| 
								 | 
							
											 Th = LD(&(x[WS(rs, 5)]), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
											 Ti = BYTWJ(&(W[TWVL * 8]), Th);
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    T13 = VADD(Td, Tf);
							 | 
						||
| 
								 | 
							
										    T14 = VADD(Ti, Tk);
							 | 
						||
| 
								 | 
							
										    T15 = VSUB(T13, T14);
							 | 
						||
| 
								 | 
							
										    Tg = VSUB(Td, Tf);
							 | 
						||
| 
								 | 
							
										    Tl = VSUB(Ti, Tk);
							 | 
						||
| 
								 | 
							
										    Tm = VFMA(LDK(KP382683432), Tg, VMUL(LDK(KP923879532), Tl));
							 | 
						||
| 
								 | 
							
										    TM = VFNMS(LDK(KP382683432), Tl, VMUL(LDK(KP923879532), Tg));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V T1a, T1g, T1f, T1h;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V T12, T19, T1d, T1e;
							 | 
						||
| 
								 | 
							
											 T12 = VSUB(T10, T11);
							 | 
						||
| 
								 | 
							
											 T19 = VMUL(LDK(KP707106781), VADD(T15, T18));
							 | 
						||
| 
								 | 
							
											 T1a = VADD(T12, T19);
							 | 
						||
| 
								 | 
							
											 T1g = VSUB(T12, T19);
							 | 
						||
| 
								 | 
							
											 T1d = VSUB(T1b, T1c);
							 | 
						||
| 
								 | 
							
											 T1e = VMUL(LDK(KP707106781), VSUB(T18, T15));
							 | 
						||
| 
								 | 
							
											 T1f = VBYI(VADD(T1d, T1e));
							 | 
						||
| 
								 | 
							
											 T1h = VBYI(VSUB(T1e, T1d));
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 14)]), VSUB(T1a, T1f), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 6)]), VADD(T1g, T1h), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 2)]), VADD(T1a, T1f), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 10)]), VSUB(T1g, T1h), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V T1k, T1o, T1n, T1p;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V T1i, T1j, T1l, T1m;
							 | 
						||
| 
								 | 
							
											 T1i = VADD(T10, T11);
							 | 
						||
| 
								 | 
							
											 T1j = VADD(T1c, T1b);
							 | 
						||
| 
								 | 
							
											 T1k = VADD(T1i, T1j);
							 | 
						||
| 
								 | 
							
											 T1o = VSUB(T1i, T1j);
							 | 
						||
| 
								 | 
							
											 T1l = VADD(T13, T14);
							 | 
						||
| 
								 | 
							
											 T1m = VADD(T16, T17);
							 | 
						||
| 
								 | 
							
											 T1n = VADD(T1l, T1m);
							 | 
						||
| 
								 | 
							
											 T1p = VBYI(VSUB(T1m, T1l));
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 8)]), VSUB(T1k, T1n), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 4)]), VADD(T1o, T1p), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[0]), VADD(T1k, T1n), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 12)]), VSUB(T1o, T1p), ms, &(x[0]));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V TF, TQ, TP, TR;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V Tn, TE, TL, TO;
							 | 
						||
| 
								 | 
							
											 Tn = VSUB(Tb, Tm);
							 | 
						||
| 
								 | 
							
											 TE = VSUB(Ty, TD);
							 | 
						||
| 
								 | 
							
											 TF = VBYI(VSUB(Tn, TE));
							 | 
						||
| 
								 | 
							
											 TQ = VBYI(VADD(TE, Tn));
							 | 
						||
| 
								 | 
							
											 TL = VADD(TJ, TK);
							 | 
						||
| 
								 | 
							
											 TO = VADD(TM, TN);
							 | 
						||
| 
								 | 
							
											 TP = VSUB(TL, TO);
							 | 
						||
| 
								 | 
							
											 TR = VADD(TL, TO);
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 7)]), VADD(TF, TP), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 15)]), VSUB(TR, TQ), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 9)]), VSUB(TP, TF), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 1)]), VADD(TQ, TR), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									       {
							 | 
						||
| 
								 | 
							
										    V TU, TY, TX, TZ;
							 | 
						||
| 
								 | 
							
										    {
							 | 
						||
| 
								 | 
							
											 V TS, TT, TV, TW;
							 | 
						||
| 
								 | 
							
											 TS = VSUB(TJ, TK);
							 | 
						||
| 
								 | 
							
											 TT = VADD(Tm, Tb);
							 | 
						||
| 
								 | 
							
											 TU = VADD(TS, TT);
							 | 
						||
| 
								 | 
							
											 TY = VSUB(TS, TT);
							 | 
						||
| 
								 | 
							
											 TV = VADD(TD, Ty);
							 | 
						||
| 
								 | 
							
											 TW = VSUB(TN, TM);
							 | 
						||
| 
								 | 
							
											 TX = VBYI(VADD(TV, TW));
							 | 
						||
| 
								 | 
							
											 TZ = VBYI(VSUB(TW, TV));
							 | 
						||
| 
								 | 
							
										    }
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 13)]), VSUB(TU, TX), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 5)]), VADD(TY, TZ), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 3)]), VADD(TU, TX), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
										    ST(&(x[WS(rs, 11)]), VSUB(TY, TZ), ms, &(x[WS(rs, 1)]));
							 | 
						||
| 
								 | 
							
									       }
							 | 
						||
| 
								 | 
							
									  }
							 | 
						||
| 
								 | 
							
								     }
							 | 
						||
| 
								 | 
							
								     VLEAVE();
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static const tw_instr twinstr[] = {
							 | 
						||
| 
								 | 
							
								     VTW(0, 1),
							 | 
						||
| 
								 | 
							
								     VTW(0, 2),
							 | 
						||
| 
								 | 
							
								     VTW(0, 3),
							 | 
						||
| 
								 | 
							
								     VTW(0, 4),
							 | 
						||
| 
								 | 
							
								     VTW(0, 5),
							 | 
						||
| 
								 | 
							
								     VTW(0, 6),
							 | 
						||
| 
								 | 
							
								     VTW(0, 7),
							 | 
						||
| 
								 | 
							
								     VTW(0, 8),
							 | 
						||
| 
								 | 
							
								     VTW(0, 9),
							 | 
						||
| 
								 | 
							
								     VTW(0, 10),
							 | 
						||
| 
								 | 
							
								     VTW(0, 11),
							 | 
						||
| 
								 | 
							
								     VTW(0, 12),
							 | 
						||
| 
								 | 
							
								     VTW(0, 13),
							 | 
						||
| 
								 | 
							
								     VTW(0, 14),
							 | 
						||
| 
								 | 
							
								     VTW(0, 15),
							 | 
						||
| 
								 | 
							
								     { TW_NEXT, VL, 0 }
							 | 
						||
| 
								 | 
							
								};
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								static const ct_desc desc = { 16, XSIMD_STRING("t1fv_16"), twinstr, &GENUS, { 83, 38, 4, 0 }, 0, 0, 0 };
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								void XSIMD(codelet_t1fv_16) (planner *p) {
							 | 
						||
| 
								 | 
							
								     X(kdft_dit_register) (p, t1fv_16, &desc);
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								#endif
							 |