| [a0bcf1] | 1 | /** \file myfft.c | 
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|  | 2 | * FastFourierTransformations for parallel computing. | 
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|  | 3 | * Implements FFT on multiple machines using fftw package. The most important | 
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|  | 4 | * routines are the hither and back transformations: fft_3d_real_to_complex() and | 
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|  | 5 | * fft_3d_complex_to_real(). For fftw plans are needed, which are created by | 
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|  | 6 | * fft_3d_create_plan() and destroyed by fft_3d_destroy_plan(). Plan weights | 
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|  | 7 | * can be copied CopyElementOnepw() and there are sort critera GetKeyOnepw(), | 
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|  | 8 | * GetKeyOnepw2PZI().\n | 
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|  | 9 | * Wave functions can - for the purpose of testing - be filled with random values | 
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|  | 10 | * by InitDataTestR(). | 
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|  | 11 | * | 
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|  | 12 | Project: ParallelCarParrinello | 
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|  | 13 | \author Jan Hamaekers | 
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|  | 14 | \date 2000 | 
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|  | 15 |  | 
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|  | 16 | File: myfft.c | 
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|  | 17 | $Id: myfft.c,v 1.23 2007/02/05 15:28:39 foo Exp $ | 
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|  | 18 | */ | 
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|  | 19 |  | 
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|  | 20 | #include<stdlib.h> | 
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|  | 21 | #include<stdio.h> | 
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|  | 22 | #include<unistd.h> | 
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|  | 23 | #include<math.h> | 
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|  | 24 | #include<string.h> | 
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|  | 25 |  | 
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|  | 26 | // use double precision fft when we have it | 
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|  | 27 | #ifdef HAVE_CONFIG_H | 
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|  | 28 | #include <config.h> | 
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|  | 29 | #endif | 
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|  | 30 |  | 
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|  | 31 | #ifdef HAVE_DFFTW_H | 
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|  | 32 | #include "dfftw.h" | 
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|  | 33 | #else | 
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|  | 34 | #include "fftw.h" | 
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|  | 35 | #endif | 
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|  | 36 |  | 
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|  | 37 | #ifdef HAVE_DRFFTW_H | 
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|  | 38 | #include "drfftw.h" | 
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|  | 39 | #else | 
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|  | 40 | #include "rfftw.h" | 
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|  | 41 | #endif | 
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|  | 42 |  | 
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|  | 43 | #include"data.h" | 
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|  | 44 | #include"helpers.h" | 
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|  | 45 | #include"output.h" | 
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|  | 46 | #include"errors.h" | 
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|  | 47 | #include"mergesort2.h" | 
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|  | 48 | #include"mymath.h" | 
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|  | 49 | #include"myfft.h" | 
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|  | 50 |  | 
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|  | 51 |  | 
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|  | 52 | /** Returns negative value of the weight of a plan_weight as sort critera. | 
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|  | 53 | * \param *a plan_weight array | 
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|  | 54 | * \param i index of element | 
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|  | 55 | * \param *Args unused (only for contingency) | 
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|  | 56 | */ | 
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|  | 57 | static double GetKeyOnepw(void *a, int i, void *Args) { | 
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|  | 58 | return(-((struct plan_weight *)a)[i].weight); | 
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|  | 59 | } | 
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|  | 60 |  | 
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|  | 61 | /** Returns "index + twice the process number + \a Args[2]" of a plan_weight as sort critera. | 
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|  | 62 | * \a Args[2] is only added if: Index % \a Args[1] != Args[1] - 1 | 
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|  | 63 | * \param *a plan_weight array | 
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|  | 64 | * \param i index of element | 
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|  | 65 | * \param *Args | 
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|  | 66 | */ | 
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|  | 67 | static double GetKeyOnepw2PZI(void *a, int i, void *Args) { | 
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|  | 68 | return(((struct plan_weight *)a)[i].Index+((int *)Args)[2]*( ( ((struct plan_weight *)a)[i].Index%((int *)Args)[1]!=((int *)Args)[1]-1)+2*(((struct plan_weight *)a)[i].PE))); | 
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|  | 69 | } | 
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|  | 70 |  | 
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|  | 71 | /** Copies one element from a plan weight array \a *b to another \a *a. | 
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|  | 72 | * Copies from \a i-th element of \a *a index, weight and PE to \a *b | 
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|  | 73 | * \param *a source plan weight array | 
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|  | 74 | * \param i index of source element | 
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|  | 75 | * \param *b destination plan weight array | 
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|  | 76 | * \param j index of destination element | 
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|  | 77 | */ | 
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|  | 78 | static void CopyElementOnepw(void *a, int i, void *b, int j) { | 
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|  | 79 | ((struct plan_weight *)a)[i].Index = ((struct plan_weight *)b)[j].Index; | 
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|  | 80 | ((struct plan_weight *)a)[i].weight = ((struct plan_weight *)b)[j].weight; | 
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|  | 81 | ((struct plan_weight *)a)[i].PE = ((struct plan_weight *)b)[j].PE; | 
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|  | 82 | } | 
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|  | 83 |  | 
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|  | 84 | /** Creates a 3d plan for the FFT to use in transforms. | 
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|  | 85 | * \sa fft_plan_3d | 
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|  | 86 | * \param *P Problem at hand | 
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|  | 87 | * \param comm MPI Communicator | 
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|  | 88 | * \param E_cut Energy cutoff | 
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|  | 89 | * \param MaxLevel number of lattice levels | 
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|  | 90 | * \param *LevelSizes size increas factor from level to level for MaxLevel's | 
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|  | 91 | * \param GBasisSQ[] scalar product of reciprocal basis vectors | 
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|  | 92 | * \param N[] mesh points per dimension NDIM | 
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|  | 93 | * \param *MaxNoOfnFields maximum number of NFields per level | 
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|  | 94 | * \param **NFields NField per level per field | 
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|  | 95 | */ | 
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|  | 96 | struct fft_plan_3d *fft_3d_create_plan(struct Problem *P, MPI_Comm comm, const double E_cut, const int MaxLevel, const int *LevelSizes, const double GBasisSQ[NDIM], const int N[NDIM], const int *MaxNoOfnFields, int **NFields) { | 
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|  | 97 | struct fft_plan_3d *plan; | 
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|  | 98 | int *MaxNFields; | 
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|  | 99 | int i; | 
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|  | 100 | int j; | 
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|  | 101 | int ny; | 
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|  | 102 | int Index; | 
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|  | 103 | int LevelSize=1;      // factorial level increase from 0th to maxlevel | 
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|  | 104 | int n[NDIM]; | 
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|  | 105 | int Args[3]; | 
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|  | 106 | double weight; | 
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|  | 107 | // Initialization of plan | 
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|  | 108 | plan = (struct fft_plan_3d *) | 
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|  | 109 | Malloc(sizeof(struct fft_plan_3d),"create_plan"); | 
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|  | 110 | plan->P = P; | 
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|  | 111 | plan->local_data = NULL; | 
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|  | 112 | plan->work = NULL; | 
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|  | 113 | plan->MaxLevel = MaxLevel; | 
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|  | 114 | plan->LevelSizes = (int *) | 
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|  | 115 | Malloc(sizeof(int)*MaxLevel,"create_plan: MaxLevels"); | 
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|  | 116 | for (i=0; i < MaxLevel; i++) { | 
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|  | 117 | LevelSize *= LevelSizes[i]; | 
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|  | 118 | plan->LevelSizes[i] = LevelSizes[i]; | 
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|  | 119 | } | 
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|  | 120 | plan->E_cut = E_cut; | 
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|  | 121 | plan->LevelSize = LevelSize; | 
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|  | 122 | if (N[0] % LevelSize != 0 || N[1] % LevelSize != 0 || N[2] % LevelSize != 0) | 
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|  | 123 | Error(SomeError,"create_plan: N[0] % LevelSize != 0 || N[1] % LevelSize != 0 || N[2] % LevelSize != 0"); | 
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|  | 124 | // MPI part of plan | 
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|  | 125 | MPI_Comm_dup(comm, &plan->comm);             // Duplicates an existing communicator with all its cached information | 
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|  | 126 | MPI_Comm_size(plan->comm, &plan->MaxPE); // Determines the size of the group associated with a communictor | 
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|  | 127 | MPI_Comm_rank(plan->comm, &plan->myPE);  // Determines the rank of the calling process in the communicator | 
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|  | 128 | plan->PENo = (int *) | 
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|  | 129 | Malloc(2*sizeof(int)*plan->MaxPE,"create_plan: PENo");      // Malloc 2 ints per process in communicator group | 
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|  | 130 | for (i=0; i < 2*plan->MaxPE; i++)     // all set to zero | 
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|  | 131 | plan->PENo[i] = 0; | 
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|  | 132 |  | 
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|  | 133 | for (i=0; i < NDIM; i++) { | 
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|  | 134 | plan->N[i] = N[i]; | 
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|  | 135 | plan->GBasisSQ[i] = GBasisSQ[i]; | 
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|  | 136 | plan->NLSR[i] = N[i] / LevelSize; | 
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|  | 137 | } | 
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|  | 138 | plan->Maxpw = (N[1] / LevelSize) * ((N[2] / LevelSize)/2+1); | 
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|  | 139 | if (P->Call.out[LeaderOut]) fprintf(stderr,"Create_Plan: E_cut %g, N[] %i %i %i, LS %i, Maxpw %i\n",E_cut, N[0],N[1],N[2], LevelSize, plan->Maxpw); | 
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|  | 140 | if (plan->NLSR[0] % plan->MaxPE != 0 || plan->Maxpw % plan->MaxPE != 0) // check if dividable among processes | 
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|  | 141 | Error(SomeError,"create_plan: plan->NLSR[0] % plan->MaxPE != 0 || plan->Maxpw % plan->MaxPE != 0"); | 
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|  | 142 | plan->pw = (struct plan_weight *) | 
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|  | 143 | Malloc(plan->Maxpw*sizeof(struct plan_weight),"create_plan_weight"); // Allocating plan weight | 
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|  | 144 | plan->pwFS = (struct plan_weight *) | 
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|  | 145 | Malloc((plan->Maxpw+1)*sizeof(struct plan_weight),"create_plan_weight_FS"); | 
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|  | 146 | for (n[1]=0; n[1] < plan->NLSR[1]; n[1]++) { | 
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|  | 147 | for (n[2]=0; n[2] < (plan->NLSR[2]/2+1); n[2]++) { | 
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|  | 148 | ny = (n[1] >= (plan->NLSR[1]/2+1) ? n[1]-plan->NLSR[1] : n[1]); | 
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|  | 149 | Index = CalcRowMajor2D(n[1],n[2],plan->NLSR[1],plan->NLSR[2]/2+1); | 
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|  | 150 | plan->pw[Index].Index = Index; | 
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|  | 151 | //fprintf(stderr,"(%i) plan->pw[%i] = %i\n",P->Par.me,Index, plan->pw[Index].Index); | 
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|  | 152 | if (GBasisSQ[0] < MYEPSILON) fprintf(stderr,"fft_3d_create_plan: GBasisSQ[0] = %lg\n",GBasisSQ[0]); | 
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|  | 153 | weight = (2.*E_cut/(LevelSize*LevelSize)-ny*ny*GBasisSQ[1]-n[2]*n[2]*GBasisSQ[2])/GBasisSQ[0]; | 
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|  | 154 | if (weight > 0.0) | 
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|  | 155 | plan->pw[Index].weight = sqrt(weight); | 
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|  | 156 | else | 
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|  | 157 | plan->pw[Index].weight = 0.0; | 
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|  | 158 | if (n[2] == plan->NLSR[2]/2) plan->pw[Index].weight += 4.*sqrt(2.*E_cut/(LevelSize*LevelSize)/GBasisSQ[0]); | 
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|  | 159 | if (n[2] == 0) plan->pw[Index].weight += 2.*sqrt(2.*E_cut/(LevelSize*LevelSize)/GBasisSQ[0]); | 
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|  | 160 | } | 
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|  | 161 | } | 
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|  | 162 | naturalmergesort(plan->pw,plan->pwFS,0,plan->Maxpw-1,&GetKeyOnepw,NULL,&CopyElementOnepw); | 
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|  | 163 | if (plan->Maxpw < plan->MaxPE) Error(SomeError,"create_plan: plan->Maxpw < plan->MaxPE"); | 
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|  | 164 | if (plan->Maxpw / plan->MaxPE <  plan->NLSR[1] + plan->NLSR[1]/plan->MaxPE) | 
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|  | 165 | Error(SomeError,"create_plan: plan->Maxpw / plan->MaxPE <  plan->NLSR[1] + plan->NLSR[1]/plan->MaxPE"); | 
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|  | 166 | for (i=0; i < plan->Maxpw; i++) { | 
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|  | 167 | if (i < plan->NLSR[1]) { | 
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|  | 168 | plan->pw[i].PE = i % plan->MaxPE; | 
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|  | 169 | } else { | 
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|  | 170 | if (i-plan->NLSR[1] < plan->NLSR[1]) { | 
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|  | 171 | plan->pw[i].PE = 0; | 
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|  | 172 | } else { | 
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|  | 173 | if (i-2*plan->NLSR[1] < (plan->MaxPE-1)*plan->NLSR[1]) { | 
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|  | 174 | plan->pw[i].PE = ((i%(plan->MaxPE-1))+1); | 
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|  | 175 | } else { | 
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|  | 176 | plan->pw[i].PE = i%plan->MaxPE; | 
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|  | 177 | } | 
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|  | 178 | } | 
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|  | 179 | } | 
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|  | 180 | plan->PENo[2*(i % plan->MaxPE)]++; | 
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|  | 181 | if (plan->pw[i].Index%(plan->NLSR[2]/2+1) == plan->NLSR[2]/2) | 
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|  | 182 | plan->pw[i].weight -= 4.*sqrt(2.*E_cut/(LevelSize*LevelSize)/GBasisSQ[0]); | 
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|  | 183 | if (plan->pw[i].Index%(plan->NLSR[2]/2+1) == 0) { | 
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|  | 184 | plan->pw[i].weight -= 2.*sqrt(2.*E_cut/(LevelSize*LevelSize)/GBasisSQ[0]); | 
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|  | 185 | if (plan->pw[i].Index%(plan->NLSR[2]/2+1) >= plan->NLSR[2]/2+1) { | 
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|  | 186 | plan->pw[i].weight = 0.0; | 
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|  | 187 | } else { | 
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|  | 188 | if (plan->pw[i].Index % (plan->NLSR[2]/2+1) == 0) { | 
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|  | 189 | plan->PENo[2*(plan->pw[i].PE)+1] += floor(plan->pw[i].weight)+1; | 
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|  | 190 | } else { | 
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|  | 191 | plan->PENo[2*(plan->pw[i].PE)+1] += 2*floor(plan->pw[i].weight)+1; | 
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|  | 192 | } | 
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|  | 193 | } | 
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|  | 194 | } else { | 
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|  | 195 | plan->PENo[2*(plan->pw[i].PE)+1] += 2*floor(plan->pw[i].weight)+1; | 
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|  | 196 | } | 
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|  | 197 | } | 
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|  | 198 | plan->LocalMaxpw = plan->PENo[2*plan->myPE]; | 
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|  | 199 | Args[0]=plan->MaxPE; Args[1]=plan->NLSR[2]/2+1; Args[2]=plan->Maxpw; | 
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|  | 200 | naturalmergesort(plan->pw,plan->pwFS,0,plan->Maxpw-1,&GetKeyOnepw2PZI,Args,&CopyElementOnepw); | 
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|  | 201 | for (j=0; j < plan->MaxPE; j++) { | 
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|  | 202 | for (i= plan->NLSR[1]/plan->MaxPE-1; i >= 0; i--) { | 
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|  | 203 | /*if (i != 0 && i+plan->LocalMaxpw*j >= i*(plan->NLSR[1]/2+1)+plan->LocalMaxpw*j) | 
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|  | 204 | Error(SomeError,"Createplan: i != 0 && i+plan->LocalMaxpw*j ? i*(plan->NLSR[2]/2+1)+plan->LocalMaxpw*j");*/ | 
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|  | 205 | CopyElementOnepw(plan->pwFS,plan->LocalMaxpw,plan->pw,i+plan->LocalMaxpw*j); | 
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|  | 206 | CopyElementOnepw(plan->pw,i+plan->LocalMaxpw*j,plan->pw,(i+1)*(plan->NLSR[2]/2+1)-1+plan->LocalMaxpw*j); | 
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|  | 207 | CopyElementOnepw(plan->pw,(i+1)*(plan->NLSR[2]/2+1)-1+plan->LocalMaxpw*j,plan->pwFS,plan->LocalMaxpw); | 
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|  | 208 | } | 
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|  | 209 | } | 
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|  | 210 | plan->Localpw = &plan->pw[plan->myPE*plan->LocalMaxpw]; | 
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|  | 211 | if (P->Call.out[PsiOut]) { | 
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|  | 212 | fprintf(stderr,"pw\n"); | 
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|  | 213 | for (i=plan->myPE*plan->LocalMaxpw; i < (plan->myPE+1)*plan->LocalMaxpw; i++) // print my local weights | 
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|  | 214 | fprintf(stderr,"(%i)W(%g)I(%i)P(%i) ",i,plan->pw[i].weight,plan->pw[i].Index,plan->pw[i].PE); | 
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|  | 215 | fprintf(stderr,"\n"); | 
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|  | 216 | } | 
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|  | 217 | if (P->Call.out[LeaderOut]) { | 
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|  | 218 | fprintf(stderr,"pwPENo\n"); | 
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|  | 219 | for (i=0; i < plan->MaxPE; i++) | 
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|  | 220 | fprintf(stderr,"(%i)W(%i)X(%i) ",i,plan->PENo[2*i+1],plan->PENo[2*i]); | 
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|  | 221 | fprintf(stderr,"\n"); | 
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|  | 222 | } | 
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| [64fa9e] | 223 | Free(plan->pwFS, "fft_3d_create_plan: plan->pwFS"); | 
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| [a0bcf1] | 224 | plan->pwFS = NULL; | 
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|  | 225 |  | 
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|  | 226 | plan->Lev_CR_RC = (int *) | 
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|  | 227 | Malloc(2*sizeof(int)*MaxLevel,"create_plan: Lev_CR_RC"); | 
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|  | 228 | for (i=0; i < 2*MaxLevel; i++) plan->Lev_CR_RC[i] = 1; | 
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|  | 229 | plan->Levplan = (struct LevelPlan *) | 
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|  | 230 | Malloc(sizeof(struct LevelPlan)*MaxLevel,"create_plan:Levplan"); | 
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|  | 231 | plan->MaxNoOfnFields = (int *) | 
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|  | 232 | Malloc(sizeof(int)*MaxLevel,"create_plan:MaxNoOfnFields"); | 
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|  | 233 | for (i=0; i<MaxLevel;i++) | 
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|  | 234 | plan->MaxNoOfnFields[i] = MaxNoOfnFields[i]; | 
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|  | 235 | plan->NFields = (int **) | 
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|  | 236 | Malloc(sizeof(int *)*MaxLevel,"create_plan:NFields"); | 
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|  | 237 | MaxNFields = (int *) | 
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|  | 238 | Malloc(sizeof(int)*MaxLevel,"create_plan:MaxNFields"); | 
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|  | 239 | for (i=0; i<MaxLevel;i++) { | 
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|  | 240 | plan->NFields[i] = (int *) | 
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|  | 241 | Malloc(sizeof(int )*MaxNoOfnFields[i],"create_plan:NFields"); | 
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|  | 242 | MaxNFields[i] = 0; | 
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|  | 243 | for (j=0; j <  plan->MaxNoOfnFields[i]; j++) { | 
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|  | 244 | plan->NFields[i][j] = NFields[i][j]; | 
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|  | 245 | if (NFields[i][j] < 1) Error(SomeError,"Create_plan: NFields[j] < 1"); | 
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|  | 246 | if (NFields[i][j] > MaxNFields[i]) MaxNFields[i] = NFields[i][j]; | 
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|  | 247 | } | 
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|  | 248 | } | 
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|  | 249 | plan->LevelBlockSize = plan->LevelSize*plan->LevelSize*plan->LevelSize; | 
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|  | 250 | for (i=MaxLevel-1; i >= 0; i--) { | 
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|  | 251 | if (i == MaxLevel-1) | 
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|  | 252 | plan->Levplan[i].LevelFactor = LevelSizes[MaxLevel-1]; | 
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|  | 253 | else | 
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|  | 254 | plan->Levplan[i].LevelFactor = plan->Levplan[i+1].LevelFactor*LevelSizes[i]; | 
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|  | 255 | for (j=0; j < NDIM; j++) | 
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|  | 256 | plan->Levplan[i].N[j] = plan->NLSR[j]*plan->Levplan[i].LevelFactor; | 
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|  | 257 | plan->Levplan[i].LevelNo = i; | 
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|  | 258 | plan->LocalDataSize = (plan->Levplan[i].N[0]*plan->Levplan[i].N[1]*(plan->Levplan[i].N[2]/2+1)*MaxNFields[i])/plan->MaxPE; | 
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|  | 259 | plan->LocalWorkSize = plan->LocalDataSize; | 
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|  | 260 | plan->local_data = (fftw_complex *) | 
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|  | 261 | Realloc(plan->local_data, sizeof(fftw_complex)*plan->LocalDataSize,"create_plan: localdata"); | 
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|  | 262 | plan->work = (fftw_complex *) | 
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|  | 263 | Realloc(plan->work, sizeof(fftw_complex)*plan->LocalWorkSize,"create_plan: work"); | 
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|  | 264 | plan->Levplan[i].ny = plan->Levplan[i].N[1]; | 
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|  | 265 | plan->Levplan[i].local_ny = plan->Levplan[i].N[1]/plan->MaxPE; | 
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|  | 266 | plan->Levplan[i].nz = plan->Levplan[i].N[2]/2+1; | 
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|  | 267 | plan->Levplan[i].local_nx = plan->Levplan[i].N[0]/plan->MaxPE; | 
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|  | 268 | plan->Levplan[i].nx = plan->Levplan[i].N[0]; | 
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|  | 269 | plan->Levplan[i].start_nx =  plan->Levplan[i].local_nx * plan->myPE; | 
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|  | 270 | plan->Levplan[i].local_nyz = plan->Levplan[i].local_ny*plan->Levplan[i].nz; | 
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|  | 271 | plan->Levplan[i].nyz = plan->Levplan[i].ny*plan->Levplan[i].nz; | 
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|  | 272 | fprintf(stderr,"(%i) nlocal (x%i, y%i, yz%i), n (%i, %i, %i), N (%i, %i, %i)\n", P->Par.me, plan->Levplan[i].local_nx, plan->Levplan[i].local_ny, plan->Levplan[i].local_nyz, plan->Levplan[i].nx, plan->Levplan[i].ny, plan->Levplan[i].nz, plan->Levplan[i].N[0], plan->Levplan[i].N[1], plan->Levplan[i].N[2]); | 
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|  | 273 | plan->Levplan[i].LocalSizeC = plan->Levplan[i].nx*plan->Levplan[i].local_nyz; | 
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|  | 274 | plan->Levplan[i].LocalSizeR = plan->Levplan[i].local_nx*plan->Levplan[i].ny*plan->Levplan[i].N[2]; | 
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|  | 275 | plan->Levplan[i].LevelBlockSize = plan->Levplan[i].LevelFactor* plan->Levplan[i].LevelFactor*plan->Levplan[i].LevelFactor; | 
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|  | 276 | plan->Levplan[i].SendRecvBlockSize = plan->Levplan[i].local_nyz*plan->Levplan[i].local_nx; | 
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|  | 277 | plan->Levplan[i].PermBlockSize = plan->Levplan[i].LevelFactor; | 
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|  | 278 | if (P->Call.out[LeaderOut]) | 
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|  | 279 | fprintf(stderr,"Create_Plan: Level(%i) LevelFactor(%i) LevelBlockSize(%i)\n",i,plan->Levplan[i].LevelFactor, plan->Levplan[i].LevelBlockSize); | 
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|  | 280 | if (plan->Lev_CR_RC[2*i]) { | 
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|  | 281 | plan->Levplan[i].xplanCR = (fftw_plan *) | 
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|  | 282 | Malloc(sizeof(fftw_plan)*plan->MaxNoOfnFields[i],"Create_Plan: xplanCR"); | 
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|  | 283 | plan->Levplan[i].yzplanCR = (rfftwnd_plan *) | 
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|  | 284 | Malloc(sizeof(rfftwnd_plan)*plan->MaxNoOfnFields[i],"Create_Plan: yzplanCR"); | 
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|  | 285 | for (j=0; j<plan->MaxNoOfnFields[i]; j++) { | 
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|  | 286 | plan->Levplan[i].xplanCR[j] = fftw_create_plan_specific(plan->Levplan[i].N[0], FFTW_BACKWARD, fftw_flag | FFTW_OUT_OF_PLACE,plan->local_data,plan->NFields[i][j],plan->work,plan->NFields[i][j]*plan->Levplan[i].local_nyz); | 
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|  | 287 | plan->Levplan[i].yzplanCR[j] = rfftw2d_create_plan_specific(plan->Levplan[i].N[1], plan->Levplan[i].N[2], FFTW_COMPLEX_TO_REAL, fftw_flag | FFTW_OUT_OF_PLACE,(fftw_real *)plan->local_data,plan->NFields[i][j],(fftw_real *)plan->work,plan->NFields[i][j]); | 
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|  | 288 | } | 
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|  | 289 | } else { | 
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|  | 290 | plan->Levplan[i].xplanCR = NULL; | 
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|  | 291 | plan->Levplan[i].yzplanCR = NULL; | 
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|  | 292 | } | 
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|  | 293 | if (plan->Lev_CR_RC[2*i+1]) { | 
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|  | 294 | plan->Levplan[i].xplanRC = (fftw_plan *) | 
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|  | 295 | Malloc(sizeof(fftw_plan)*plan->MaxNoOfnFields[i],"Create_Plan: xplanRC"); | 
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|  | 296 | plan->Levplan[i].yzplanRC = (rfftwnd_plan *) | 
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|  | 297 | Malloc(sizeof(rfftwnd_plan)*plan->MaxNoOfnFields[i],"Create_Plan: yzplanRC"); | 
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|  | 298 | for (j=0; j<plan->MaxNoOfnFields[i]; j++) { | 
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|  | 299 | plan->Levplan[i].xplanRC[j] = fftw_create_plan_specific(plan->Levplan[i].N[0], FFTW_FORWARD, fftw_flag | FFTW_OUT_OF_PLACE,plan->local_data,plan->NFields[i][j]*plan->Levplan[i].local_nyz,plan->work,plan->NFields[i][j]); | 
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|  | 300 | plan->Levplan[i].yzplanRC[j] = rfftw2d_create_plan_specific(plan->Levplan[i].N[1], plan->Levplan[i].N[2], FFTW_REAL_TO_COMPLEX, fftw_flag | FFTW_OUT_OF_PLACE,(fftw_real *)plan->local_data,plan->NFields[i][j],(fftw_real *)plan->work,plan->NFields[i][j]); | 
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|  | 301 | } | 
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|  | 302 | } else { | 
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|  | 303 | plan->Levplan[i].xplanRC = NULL; | 
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|  | 304 | plan->Levplan[i].yzplanRC = NULL; | 
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|  | 305 | } | 
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|  | 306 | } | 
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|  | 307 | if (plan->local_data != NULL) { | 
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| [64fa9e] | 308 | Free(plan->local_data, "fft_3d_create_plan: plan->local_data"); | 
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| [a0bcf1] | 309 | plan->local_data = NULL; | 
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|  | 310 | } | 
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|  | 311 | if (plan->work != NULL) { | 
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| [64fa9e] | 312 | Free(plan->local_data, "fft_3d_create_plan: plan->local_data"); | 
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| [a0bcf1] | 313 | plan->work = NULL; | 
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|  | 314 | } | 
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| [64fa9e] | 315 | Free(MaxNFields, "fft_3d_create_plan: MaxNFields"); | 
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| [a0bcf1] | 316 | return plan; | 
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|  | 317 | } | 
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|  | 318 |  | 
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|  | 319 | void fft_3d_destroy_plan(const struct Problem *P, struct fft_plan_3d *plan) { | 
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|  | 320 | int i,j; | 
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|  | 321 | //if (P->Call.out[LeaderOut]) fprintf(stderr,"Destroy_Plan\n"); | 
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|  | 322 | for (i=0; i< plan->MaxLevel; i++) { | 
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|  | 323 | for (j=0; j< plan->MaxNoOfnFields[i]; j++) { | 
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|  | 324 | fftw_destroy_plan(plan->Levplan[i].xplanCR[j]); | 
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|  | 325 | fftw_destroy_plan(plan->Levplan[i].xplanRC[j]); | 
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|  | 326 | rfftwnd_destroy_plan(plan->Levplan[i].yzplanCR[j]); | 
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|  | 327 | rfftwnd_destroy_plan(plan->Levplan[i].yzplanRC[j]); | 
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|  | 328 | } | 
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| [64fa9e] | 329 | Free(plan->Levplan[i].xplanCR, "fft_3d_destroy_plan: plan->Levplan[i].xplanCR"); | 
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|  | 330 | Free(plan->Levplan[i].xplanRC, "fft_3d_destroy_plan: plan->Levplan[i].xplanRC"); | 
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|  | 331 | Free(plan->Levplan[i].yzplanCR, "fft_3d_destroy_plan: plan->Levplan[i].yzplanCR"); | 
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|  | 332 | Free(plan->Levplan[i].yzplanRC, "fft_3d_destroy_plan: plan->Levplan[i].yzplanRC"); | 
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|  | 333 | Free(plan->NFields[i], "fft_3d_destroy_plan: plan->NFields[i]"); | 
|---|
| [a0bcf1] | 334 | } | 
|---|
| [64fa9e] | 335 | Free(plan->MaxNoOfnFields, "fft_3d_destroy_plan: plan->MaxNoOfnFields"); | 
|---|
|  | 336 | Free(plan->NFields, "fft_3d_destroy_plan: plan->NFields"); | 
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|  | 337 | Free(plan->Levplan, "fft_3d_destroy_plan: plan->Levplan"); | 
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|  | 338 | Free(plan->PENo, "fft_3d_destroy_plan: plan->PENo"); | 
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| [a0bcf1] | 339 | plan->PENo = NULL; | 
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| [64fa9e] | 340 | Free(plan->LevelSizes, "fft_3d_destroy_plan: plan->LevelSizes"); | 
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| [a0bcf1] | 341 | plan->LevelSizes = NULL; | 
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| [64fa9e] | 342 | Free(plan->Lev_CR_RC, "fft_3d_destroy_plan: plan->Lev_CR_RC"); | 
|---|
| [a0bcf1] | 343 | plan->Lev_CR_RC = NULL; | 
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| [64fa9e] | 344 | Free(plan->pw, "fft_3d_destroy_plan: plan->pw"); | 
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| [a0bcf1] | 345 | plan->pw = NULL; | 
|---|
|  | 346 | plan->Levplan = NULL; | 
|---|
|  | 347 | MPI_Comm_free(&plan->comm); | 
|---|
| [64fa9e] | 348 | Free(plan, "fft_3d_destroy_plan: plan"); | 
|---|
| [a0bcf1] | 349 | } | 
|---|
|  | 350 |  | 
|---|
|  | 351 | static void FirstDimTransCR(const struct fft_plan_3d *plan,  const struct LevelPlan *Lplan, const int nFieldsNo, fftw_complex *local_data, fftw_complex *work) { /* local_data -> work */ | 
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|  | 352 | int local_nyz = Lplan->local_nyz; | 
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|  | 353 | int nx = Lplan->N[0]; | 
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|  | 354 | int fft_iter; | 
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|  | 355 | int nFields = plan->NFields[Lplan->LevelNo][nFieldsNo]; | 
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|  | 356 | fftw_plan fft_x = Lplan->xplanCR[nFieldsNo]; | 
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|  | 357 | if (nFields > 1) { | 
|---|
|  | 358 | for (fft_iter = 0; fft_iter < local_nyz; ++fft_iter) | 
|---|
|  | 359 | fftw(fft_x, nFields, | 
|---|
|  | 360 | local_data + (nx * nFields) * fft_iter, nFields, 1, | 
|---|
|  | 361 | work+nFields*fft_iter, nFields*local_nyz, 1); | 
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|  | 362 | } else | 
|---|
|  | 363 | fftw(fft_x, local_nyz, | 
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|  | 364 | local_data, 1, nx, | 
|---|
|  | 365 | work, local_nyz, 1); | 
|---|
|  | 366 | } | 
|---|
|  | 367 |  | 
|---|
|  | 368 | static void OtherDimTransCR(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int nFieldsNo, fftw_complex *local_data, fftw_complex *work) { /* work -> local_data */ | 
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|  | 369 | int local_nx = Lplan->local_nx; | 
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|  | 370 | int nyz = Lplan->nyz; | 
|---|
|  | 371 | int fft_iter; | 
|---|
|  | 372 | int rnyz = Lplan->N[1]*Lplan->N[2]; | 
|---|
|  | 373 | int nFields = plan->NFields[Lplan->LevelNo][nFieldsNo]; | 
|---|
|  | 374 | rfftwnd_plan fft = Lplan->yzplanCR[nFieldsNo]; | 
|---|
|  | 375 | if (nFields > 1) { | 
|---|
|  | 376 | for (fft_iter = 0; fft_iter < local_nx; ++fft_iter) | 
|---|
|  | 377 | rfftwnd_complex_to_real(fft, nFields, | 
|---|
|  | 378 | ((fftw_complex *) work)+ (nyz * nFields) * fft_iter, | 
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|  | 379 | nFields, 1, | 
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|  | 380 | ((fftw_real *)local_data)+ (rnyz * nFields) * fft_iter | 
|---|
|  | 381 | , nFields, 1); | 
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|  | 382 | } else { | 
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|  | 383 | rfftwnd_complex_to_real(fft, local_nx, | 
|---|
|  | 384 | (fftw_complex *) work, | 
|---|
|  | 385 | 1, nyz, | 
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|  | 386 | (fftw_real *)local_data | 
|---|
|  | 387 | , 1, rnyz); | 
|---|
|  | 388 | } | 
|---|
|  | 389 | } | 
|---|
|  | 390 |  | 
|---|
|  | 391 | static void TransposeMPICR(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int el_size, double *local_data,  double *work) { /* work -> local_data */ | 
|---|
|  | 392 | MPI_Alltoall(work, Lplan->SendRecvBlockSize * el_size, MPI_DOUBLE, | 
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|  | 393 | local_data, Lplan->SendRecvBlockSize * el_size, MPI_DOUBLE, | 
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|  | 394 | plan->comm); | 
|---|
|  | 395 | } | 
|---|
|  | 396 |  | 
|---|
|  | 397 | static void LocalPermutationCR(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int el_size, double *local_data,  double *work) { /* data -> work */ | 
|---|
|  | 398 | int x,PEy,ly,z,Z,Y,srcIndex,destIndex,Index,cpyes,Ly; | 
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|  | 399 | int lnx=Lplan->local_nx,lny=plan->NLSR[1]/plan->MaxPE,nz=plan->NLSR[2]/2+1,MaxPE=plan->MaxPE,ny=plan->NLSR[1]; | 
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|  | 400 | int es = el_size*Lplan->PermBlockSize; | 
|---|
|  | 401 | int LevelFactor = Lplan->LevelFactor; | 
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|  | 402 | int snz = (nz-1)*es+el_size; | 
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|  | 403 | struct plan_weight *pw = plan->pw; | 
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|  | 404 | for (x=0; x < lnx; x++) | 
|---|
|  | 405 | for (PEy=0; PEy < MaxPE; PEy++) | 
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|  | 406 | for (ly=0; ly < lny; ly++) | 
|---|
|  | 407 | for (Ly=0; Ly < LevelFactor;Ly++) | 
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|  | 408 | for (z=0; z < nz; z++) { | 
|---|
|  | 409 | Z = z*es; | 
|---|
|  | 410 | srcIndex = Z+snz*(Ly+LevelFactor*(ly+lny*(x+lnx*(PEy)))); | 
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|  | 411 | Index = pw[z+nz*(ly+lny*PEy)].Index; | 
|---|
|  | 412 | Z = Index%nz; | 
|---|
|  | 413 | Z = Z*es; | 
|---|
|  | 414 | Y = ((Index/nz)*LevelFactor+Ly); | 
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|  | 415 | destIndex = Z+snz*(Y+LevelFactor*ny*(x)); | 
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|  | 416 | cpyes = (z == nz-1 ? el_size : es); | 
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|  | 417 | memcpy( &work[destIndex], | 
|---|
|  | 418 | &local_data[srcIndex], | 
|---|
|  | 419 | cpyes * sizeof(double)); | 
|---|
|  | 420 | } | 
|---|
|  | 421 | } | 
|---|
|  | 422 |  | 
|---|
|  | 423 | // does complex to real 3d fftransformation (reciprocal base -> real base) | 
|---|
|  | 424 | /** Inverse Fast Fourier Transformation of plane wave coefficients. | 
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|  | 425 | * If given state is \f$\langle \chi_{i,G} | \psi_i (r) \rangle \f$, result is \f$| \psi_i (r) \rangle\f$ | 
|---|
|  | 426 | * Calls subsequently (reverse order of calling as in fft_3d_real_to_complex()) | 
|---|
|  | 427 | * -# FirstDimTransCR()\n | 
|---|
|  | 428 | * -# TransposeMPICR()\n | 
|---|
|  | 429 | * -# LocalPermutationCR()\n | 
|---|
|  | 430 | * -# OtherDimTransCR()\n | 
|---|
|  | 431 | * \param *plan the transformation plan | 
|---|
|  | 432 | * \param Level current level number | 
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|  | 433 | * \param nFieldsNo number of parallel ffts (in case of LevelUp) | 
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|  | 434 | * \param *local_data real base wave function coefficients, \f$\psi_i (G)\f$, on return \f$\psi_i (r)\f$ | 
|---|
|  | 435 | * \param *work temporary array for coefficients | 
|---|
|  | 436 | * \warning coefficients in \a *local_date and *work are destroyed! | 
|---|
|  | 437 | * \note Due to the symmetry of the reciprocal coefficients, not all of them are stored in memory. Thus | 
|---|
|  | 438 | *       the whole set must be rebuild before this inverse transformation can be called. From 0 to | 
|---|
|  | 439 | *       LatticeLevel::MaxG copied to negative counterpart and for 0 to LatticeLevel::MaxDoubleG the | 
|---|
|  | 440 | *       complex conjugate must be formed (see \ref density.c). | 
|---|
|  | 441 | */ | 
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|  | 442 | void fft_3d_complex_to_real(const struct fft_plan_3d *plan, const int Level, const int nFieldsNo, fftw_complex *local_data, fftw_complex *work) { /* local data -> local_data, work destroyed */ | 
|---|
|  | 443 | int el_size = (sizeof(fftw_complex) / sizeof(double)); | 
|---|
|  | 444 | int nFields = plan->NFields[Level][nFieldsNo]; | 
|---|
|  | 445 | struct LevelPlan *Lplan = &plan->Levplan[Level]; | 
|---|
|  | 446 | if (!plan->Lev_CR_RC[2*Level]) Error(SomeError,"fft_3d_complex_to_real: !plan->Lev_CR_RC[2*i]"); | 
|---|
|  | 447 | if (nFieldsNo < 0 || nFieldsNo >= plan->MaxNoOfnFields[Level]) Error(SomeError,"fft_3d_complex_to_real: nFieldsNo < 0 || nFieldsNo >= plan->MaxNoOfnFields[Level]"); | 
|---|
|  | 448 | el_size *= nFields; | 
|---|
|  | 449 | //if (isnan(work[0].re)) | 
|---|
|  | 450 | //fprintf(stderr,"fft_3d_complex_to_real,FirstDimTransCR: before work %lg\n",work[0].re); | 
|---|
|  | 451 | FirstDimTransCR(plan, Lplan, nFieldsNo, local_data, work); | 
|---|
|  | 452 | //if (isnan(work[0].re)) | 
|---|
|  | 453 | //fprintf(stderr,"fft_3d_complex_to_real,FirstDimTransCR: after work %lg\n",work[0].re); | 
|---|
|  | 454 | TransposeMPICR(plan, Lplan, el_size, (double *)local_data, (double *)work); | 
|---|
|  | 455 | LocalPermutationCR(plan, Lplan, el_size, (double *)local_data, (double *)work); | 
|---|
|  | 456 | OtherDimTransCR(plan, Lplan, nFieldsNo, local_data, work); | 
|---|
|  | 457 | } | 
|---|
|  | 458 |  | 
|---|
|  | 459 | static void FirstDimTransRC(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int nFieldsNo, fftw_complex *local_data, fftw_complex *work) { /* work -> local_data */ | 
|---|
|  | 460 | int local_nyz = Lplan->local_nyz; | 
|---|
|  | 461 | int nx = Lplan->N[0]; | 
|---|
|  | 462 | int fft_iter; | 
|---|
|  | 463 | int nFields = plan->NFields[Lplan->LevelNo][nFieldsNo]; | 
|---|
|  | 464 | fftw_plan fft_x = Lplan->xplanRC[nFieldsNo]; | 
|---|
|  | 465 | if (nFields > 1) { | 
|---|
|  | 466 | for (fft_iter = 0; fft_iter < local_nyz; ++fft_iter) | 
|---|
|  | 467 | fftw(fft_x, nFields, | 
|---|
|  | 468 | work+nFields*fft_iter, nFields*local_nyz, 1, | 
|---|
|  | 469 | local_data + (nx * nFields) * fft_iter, nFields, 1); | 
|---|
|  | 470 | } else | 
|---|
|  | 471 | fftw(fft_x, local_nyz, | 
|---|
|  | 472 | work, local_nyz, 1, | 
|---|
|  | 473 | local_data, 1, nx); | 
|---|
|  | 474 | } | 
|---|
|  | 475 |  | 
|---|
|  | 476 | static void OtherDimTransRC(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int nFieldsNo, fftw_complex *local_data, fftw_complex *work) { /* local_data -> work */ | 
|---|
|  | 477 | int local_nx = Lplan->local_nx; | 
|---|
|  | 478 | int nyz = Lplan->nyz; | 
|---|
|  | 479 | int rnyz = Lplan->N[1]*Lplan->N[2]; | 
|---|
|  | 480 | int fft_iter; | 
|---|
|  | 481 | int nFields = plan->NFields[Lplan->LevelNo][nFieldsNo]; | 
|---|
|  | 482 | rfftwnd_plan fft = Lplan->yzplanRC[nFieldsNo]; | 
|---|
|  | 483 | if (nFields > 1) { | 
|---|
|  | 484 | for (fft_iter = 0; fft_iter < local_nx; ++fft_iter) | 
|---|
|  | 485 | rfftwnd_real_to_complex(fft, nFields, | 
|---|
|  | 486 | ((fftw_real *) local_data) + (rnyz * nFields) * fft_iter, | 
|---|
|  | 487 | nFields, 1, | 
|---|
|  | 488 | ((fftw_complex *)work)+ (nyz * nFields) * fft_iter | 
|---|
|  | 489 | , nFields, 1); | 
|---|
|  | 490 | } else { | 
|---|
|  | 491 | rfftwnd_real_to_complex(fft, local_nx, | 
|---|
|  | 492 | (fftw_real *) local_data, | 
|---|
|  | 493 | 1, rnyz, | 
|---|
|  | 494 | (fftw_complex *) work | 
|---|
|  | 495 | , 1, nyz); | 
|---|
|  | 496 | } | 
|---|
|  | 497 | } | 
|---|
|  | 498 |  | 
|---|
|  | 499 | static void TransposeMPIRC(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int el_size, double *local_data,  double *work) { /* local_data -> work */ | 
|---|
|  | 500 | MPI_Alltoall(local_data, Lplan->SendRecvBlockSize * el_size, MPI_DOUBLE, | 
|---|
|  | 501 | work, Lplan->SendRecvBlockSize * el_size, MPI_DOUBLE, | 
|---|
|  | 502 | plan->comm); | 
|---|
|  | 503 | } | 
|---|
|  | 504 |  | 
|---|
|  | 505 | static void LocalPermutationRC(const struct fft_plan_3d *plan, const struct LevelPlan *Lplan, const int el_size, double *local_data,  double *work) { /* work -> data*/ | 
|---|
|  | 506 | int x,PEy,ly,z,Z,Y,srcIndex,destIndex,Index,cpyes,Ly; | 
|---|
|  | 507 | int lnx=Lplan->local_nx,lny=plan->NLSR[1]/plan->MaxPE,nz=plan->NLSR[2]/2+1,MaxPE=plan->MaxPE,ny=plan->NLSR[1]; | 
|---|
|  | 508 | int es = el_size*Lplan->PermBlockSize; | 
|---|
|  | 509 | int LevelFactor = Lplan->LevelFactor; | 
|---|
|  | 510 | int snz = (nz-1)*es+el_size; | 
|---|
|  | 511 | struct plan_weight *pw = plan->pw; | 
|---|
|  | 512 | for (x=0; x < lnx; x++) | 
|---|
|  | 513 | for (PEy=0; PEy < MaxPE; PEy++) | 
|---|
|  | 514 | for (ly=0; ly < lny; ly++) | 
|---|
|  | 515 | for (Ly=0; Ly < LevelFactor;Ly++) | 
|---|
|  | 516 | for (z=0; z < nz; z++) { | 
|---|
|  | 517 | Z = z*es; | 
|---|
|  | 518 | destIndex = Z+snz*(Ly+LevelFactor*(ly+lny*(x+lnx*(PEy)))); | 
|---|
|  | 519 | Index = pw[z+nz*(ly+lny*PEy)].Index; | 
|---|
|  | 520 | Z = Index%nz; | 
|---|
|  | 521 | Z = Z*es; | 
|---|
|  | 522 | Y = ((Index/nz)*LevelFactor+Ly); | 
|---|
|  | 523 | srcIndex = Z+snz*(Y+LevelFactor*ny*(x)); | 
|---|
|  | 524 | cpyes = (z == nz-1 ? el_size : es); | 
|---|
|  | 525 | memcpy( &local_data[destIndex], | 
|---|
|  | 526 | &work[srcIndex], | 
|---|
|  | 527 | cpyes * sizeof(double)); | 
|---|
|  | 528 | } | 
|---|
|  | 529 | } | 
|---|
|  | 530 |  | 
|---|
|  | 531 | /** Normal Fast Fourier Transformation of plane wave coefficients. | 
|---|
|  | 532 | * If given state is \f$| \psi_i (r) \rangle \f$, result is \f$\langle \chi_{i,G} | \psi_i (r) \rangle\f$ | 
|---|
|  | 533 | * Calls subsequently | 
|---|
|  | 534 | * -# OtherDimTransRC()\n | 
|---|
|  | 535 | * -# LocalPermutationRC()\n | 
|---|
|  | 536 | * -# TransposeMPIRC()\n | 
|---|
|  | 537 | * -# FirstDimTransRC()\n | 
|---|
|  | 538 | * \param *plan the transformation plan | 
|---|
|  | 539 | * \param Level current level number | 
|---|
|  | 540 | * \param nFieldsNo number of parallel ffts (in case of LevelUp) | 
|---|
|  | 541 | * \param *local_data real base wave function coefficients, \f$\psi_i (r)\f$, on return \f$\psi_i (G)\f$ | 
|---|
|  | 542 | * \param *work temporary array for coefficients | 
|---|
|  | 543 | * \warning coefficients in \a *local_date and *work are destroyed! | 
|---|
|  | 544 | */ | 
|---|
|  | 545 | void fft_3d_real_to_complex(const struct fft_plan_3d *plan, const int Level, const int nFieldsNo, fftw_complex *local_data, fftw_complex *work) { /* local data -> local_data, work destroyed */ | 
|---|
|  | 546 | int el_size = (sizeof(fftw_complex) / sizeof(double)); | 
|---|
|  | 547 | int nFields = plan->NFields[Level][nFieldsNo]; | 
|---|
|  | 548 | struct LevelPlan *Lplan = &plan->Levplan[Level]; | 
|---|
|  | 549 | if (!plan->Lev_CR_RC[2*Level+1]) Error(SomeError,"fft_3d_real_to_complex: !plan->Lev_CR_RC[2*i+1]"); | 
|---|
|  | 550 | if (nFieldsNo < 0 || nFieldsNo >= plan->MaxNoOfnFields[Level]) Error(SomeError,"fft_3d_real_to_complex: nFieldsNo < 0 || nFieldsNo >= plan->MaxNoOfnFields[Level]"); | 
|---|
|  | 551 | el_size *= nFields; | 
|---|
|  | 552 | OtherDimTransRC(plan, Lplan, nFieldsNo, local_data, work); | 
|---|
|  | 553 | LocalPermutationRC(plan, Lplan, el_size, (double *)local_data, (double *)work); | 
|---|
|  | 554 | TransposeMPIRC(plan, Lplan, el_size, (double *)local_data, (double *)work); | 
|---|
|  | 555 | FirstDimTransRC(plan, Lplan, nFieldsNo, local_data, work); | 
|---|
|  | 556 | } | 
|---|
|  | 557 |  | 
|---|
|  | 558 | /** Fills \a *local_data with random values. | 
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|  | 559 | * \param *plan fft plan | 
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|  | 560 | * \param Level current level number | 
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|  | 561 | * \param nFields number of nFields (of parallel ffts) | 
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|  | 562 | * \param *local_data array of coefficients to be set at random values | 
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|  | 563 | */ | 
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|  | 564 | void InitDataTestR(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_real *local_data) { | 
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|  | 565 | int x,y,z,n,Index,i; | 
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|  | 566 | int Nx = plan->Levplan[Level].N[0]/plan->MaxPE; | 
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|  | 567 | int Ny = plan->Levplan[Level].N[1]; | 
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|  | 568 | int Nz = plan->Levplan[Level].N[2]; | 
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|  | 569 | srand((unsigned int)Level); | 
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|  | 570 | for (i=0;i<plan->myPE*Nx*Ny*Nz*nFields;i++) rand(); | 
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|  | 571 | for (x=0; x < Nx; x++) { | 
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|  | 572 | for (y = 0; y < Ny; y++) { | 
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|  | 573 | for (z = 0; z < Nz; z++) { | 
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|  | 574 | for (n=0; n < nFields; n++) { | 
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|  | 575 | Index = n+nFields*(z+Nz*(y+Ny*(x))); | 
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|  | 576 | local_data[Index]=1.-2.*(rand()/(double)RAND_MAX); | 
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|  | 577 | } | 
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|  | 578 | } | 
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|  | 579 | } | 
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|  | 580 | } | 
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|  | 581 | } | 
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|  | 582 |  | 
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|  | 583 | /* | 
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|  | 584 | static void OutputDataTestWR(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_real *local_data,FILE *target) { | 
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|  | 585 | int x,y,z,n,Index; | 
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|  | 586 | int Nx = plan->Levplan[Level].N[0]/plan->MaxPE; | 
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|  | 587 | int Ny = plan->Levplan[Level].N[1]; | 
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|  | 588 | int Nz = plan->Levplan[Level].N[2]; | 
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|  | 589 | fprintf(target,"Level=%i\n",Level); | 
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|  | 590 | for (x=0; x < Nx; x++) { | 
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|  | 591 | fprintf(target,"x=%i\n",x+Nx*plan->myPE); | 
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|  | 592 | for (y = 0; y < Ny; y++) { | 
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|  | 593 | fprintf(target,"y=%5i     ",y); | 
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|  | 594 | for (z = 0; z < Nz; z++) { | 
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|  | 595 | for (n=0; n < nFields; n++) { | 
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|  | 596 | Index = n+nFields*(z+2*(Nz/2+1)*(y+Ny*(x))); | 
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|  | 597 | fprintf(target,"%10.5f ",local_data[Index]); | 
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|  | 598 | } | 
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|  | 599 | } | 
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|  | 600 | fprintf(target,"\n"); | 
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|  | 601 | } | 
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|  | 602 | } | 
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|  | 603 | } | 
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|  | 604 |  | 
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|  | 605 | static void OutputDataTestR(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_real *local_data, double factor,FILE *target) { | 
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|  | 606 | int x,y,z,n,Index; | 
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|  | 607 | int Nx = plan->Levplan[Level].N[0]/plan->MaxPE; | 
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|  | 608 | int Ny = plan->Levplan[Level].N[1]; | 
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|  | 609 | int Nz = plan->Levplan[Level].N[2]; | 
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|  | 610 | fprintf(target,"Level=%i\n",Level); | 
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|  | 611 | for (x=0; x < Nx; x++) { | 
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|  | 612 | fprintf(target,"x=%i\n",x+Nx*plan->myPE); | 
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|  | 613 | for (y = 0; y < Ny; y++) { | 
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|  | 614 | fprintf(target,"y=%5i     ",y); | 
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|  | 615 | for (z = 0; z < Nz; z++) { | 
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|  | 616 | for (n=0; n < nFields; n++) { | 
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|  | 617 | Index = n+nFields*(z+Nz*(y+Ny*(x))); | 
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|  | 618 | fprintf(target,"%10.5f ",local_data[Index]*factor); | 
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|  | 619 | } | 
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|  | 620 | } | 
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|  | 621 | fprintf(target,"\n"); | 
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|  | 622 | } | 
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|  | 623 | } | 
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|  | 624 | } | 
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|  | 625 |  | 
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|  | 626 | static void InitDataTestWR(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_real *local_data) { | 
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|  | 627 | int i,x,y,z,n,Index,Value=0; | 
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|  | 628 | int Nx = plan->Levplan[Level].N[0]/plan->MaxPE; | 
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|  | 629 | int Ny = plan->Levplan[Level].N[1]; | 
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|  | 630 | int Nz = plan->Levplan[Level].N[2]; | 
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|  | 631 | srand(Level); | 
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|  | 632 | for (i=0;i<plan->myPE*Nx*Ny*Nz*nFields;i++) rand(); | 
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|  | 633 | for (x=0; x < Nx; x++) { | 
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|  | 634 | for (y = 0; y < Ny; y++) { | 
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|  | 635 | for (z = 0; z < Nz; z++) { | 
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|  | 636 | for (n=0; n < nFields; n++) { | 
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|  | 637 | Index = n+nFields*(z+2*(Nz/2+1)*(y+Ny*(x))); | 
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|  | 638 | local_data[Index] = 1.-2.*(rand()/(double)RAND_MAX); | 
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|  | 639 | Value++; | 
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|  | 640 | } | 
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|  | 641 | } | 
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|  | 642 | } | 
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|  | 643 | } | 
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|  | 644 | } | 
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|  | 645 |  | 
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|  | 646 | static void OutputDataTestWCA(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_complex *local_data,double factor,FILE *target) { | 
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|  | 647 | int x,y,z,yz,n,Index,Y,Z,YZ; | 
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|  | 648 | int Nx = plan->Levplan[Level].N[0]; | 
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|  | 649 | int Ny = plan->Levplan[Level].N[1]/plan->MaxPE; | 
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|  | 650 | int Nz = plan->Levplan[Level].N[2]/2+1; | 
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|  | 651 | int NZ = plan->NLSR[2]/2+1; | 
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|  | 652 | fprintf(target,"Level=%i\n",Level); | 
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|  | 653 | for (y = 0; y < Ny; y++) { | 
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|  | 654 | for (z = 0; z < Nz; z++) { | 
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|  | 655 | Y = (y+plan->myPE*Ny)/plan->Levplan[Level].LevelFactor; | 
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|  | 656 | Z = z/plan->Levplan[Level].LevelFactor; | 
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|  | 657 | YZ = Z+NZ*Y; | 
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|  | 658 | yz = z+Nz*y; | 
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|  | 659 | fprintf(target,"yz=%i(%i)\n",yz+plan->myPE*Ny*Nz,YZ); | 
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|  | 660 | for (x=0; x < Nx; x++) { | 
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|  | 661 | for (n=0; n < nFields; n++) { | 
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|  | 662 | Index = n+nFields*(z+Nz*(x+Nx*(y))); | 
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|  | 663 | fprintf(target,"%10.5f %10.5f ",local_data[Index].re*factor,local_data[Index].im*factor); | 
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|  | 664 | } | 
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|  | 665 | } | 
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|  | 666 | fprintf(target,"\n"); | 
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|  | 667 | } | 
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|  | 668 |  | 
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|  | 669 | } | 
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|  | 670 | } | 
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|  | 671 |  | 
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|  | 672 | static void OutputDataTestCA(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_complex *local_data,double factor,FILE *target) { | 
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|  | 673 | int x,yz,n,Index,Y,Z,YZ,y,z; | 
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|  | 674 | int Nx = plan->Levplan[Level].nx; | 
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|  | 675 | int Ny = plan->Levplan[Level].local_ny ; | 
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|  | 676 | int Nz = plan->Levplan[Level].nz; | 
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|  | 677 | int Nyz = Ny*Nz; | 
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|  | 678 | int NZ = plan->NLSR[2]/2+1; | 
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|  | 679 | fprintf(target,"Level=%i\n",Level); | 
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|  | 680 | for (y = 0; y < Ny; y++) { | 
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|  | 681 | for (z = 0; z < Nz; z++) { | 
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|  | 682 | Y = (y+plan->myPE*Ny)/plan->Levplan[Level].LevelFactor; | 
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|  | 683 | Z = z/plan->Levplan[Level].LevelFactor; | 
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|  | 684 | YZ = Z+NZ*Y; | 
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|  | 685 | YZ = plan->pw[YZ].Index; | 
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|  | 686 | yz = z+Nz*y; | 
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|  | 687 | fprintf(target,"yz=%i(%i)\n",yz+plan->myPE*Nyz,YZ); | 
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|  | 688 | for (x=0; x < Nx; x++) { | 
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|  | 689 | for (n=0; n < nFields; n++) { | 
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|  | 690 | Index = n+nFields*(x+Nx*(yz)); | 
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|  | 691 | fprintf(target,"%10.5f %10.5f ",((double *)local_data)[2*Index]*factor,((double *)local_data)[2*Index+1]*factor); | 
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|  | 692 | } | 
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|  | 693 | } | 
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|  | 694 | fprintf(target,"\n"); | 
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|  | 695 | } | 
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|  | 696 | } | 
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|  | 697 | } | 
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|  | 698 |  | 
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|  | 699 | static void InitDataTestCA(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_complex *local_data) { | 
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|  | 700 | int x,yz,n,Index,Y,Z,YZ,y,z,Value=0; | 
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|  | 701 | int Nx = plan->Levplan[Level].nx; | 
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|  | 702 | int Ny = plan->Levplan[Level].local_ny ; | 
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|  | 703 | int Nz = plan->Levplan[Level].nz; | 
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|  | 704 | int Nyz = plan->Levplan[Level].ny*Nz; | 
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|  | 705 | int NZ = plan->NLSR[2]/2+1; | 
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|  | 706 | int YY; | 
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|  | 707 | for (y = 0; y < Ny; y++) { | 
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|  | 708 | for (z = 0; z < Nz; z++) { | 
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|  | 709 | Y = (y+plan->myPE*Ny)/plan->Levplan[Level].LevelFactor; | 
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|  | 710 | YY = (y+plan->myPE*Ny)%plan->Levplan[Level].LevelFactor; | 
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|  | 711 | Z = z/plan->Levplan[Level].Level; | 
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|  | 712 | YZ = Z+NZ*Y; | 
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|  | 713 | YZ = plan->pw[YZ].Index; | 
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|  | 714 | Z = (YZ%NZ)*plan->Levplan[Level].LevelFactor+(z)%plan->Levplan[Level].LevelFactor; | 
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|  | 715 | yz = Z+Nz*(((YZ/NZ)*plan->Levplan[Level].LevelFactor+YY)); | 
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|  | 716 | for (x=0; x < Nx; x++) { | 
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|  | 717 | for (n=0; n < nFields; n++) { | 
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|  | 718 | Index = n+nFields*(x+Nx*(z+Nz*y)); | 
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|  | 719 | Value = n+nFields*(yz+Nyz*x); | 
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|  | 720 | local_data[Index].re = Value*2; | 
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|  | 721 | local_data[Index].im = Value*2+1; | 
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|  | 722 | } | 
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|  | 723 | } | 
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|  | 724 | } | 
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|  | 725 | } | 
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|  | 726 | } | 
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|  | 727 |  | 
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|  | 728 | static void OutputDataTestCB(const struct fft_plan_3d *plan, const int Level, const int nFields,fftw_complex *local_data,double factor,FILE *target) { | 
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|  | 729 | int x,yz,n,Index,Y,Z,YZ,y,z; | 
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|  | 730 | int Nx = plan->Levplan[Level].local_nx; | 
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|  | 731 | int Ny = plan->Levplan[Level].ny ; | 
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|  | 732 | int Nz = plan->Levplan[Level].nz; | 
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|  | 733 | int NZ = plan->NLSR[2]/2+1; | 
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|  | 734 | fprintf(target,"Level=%i\n",Level); | 
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|  | 735 | for (x=0; x < Nx; x++) { | 
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|  | 736 | fprintf(target,"x=%i\n",x+plan->myPE*Nx); | 
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|  | 737 | for (y = 0; y < Ny; y++) { | 
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|  | 738 | for (z = 0; z < Nz; z++) { | 
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|  | 739 | Y = (y)/plan->Levplan[Level].LevelFactor; | 
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|  | 740 | Z = z/plan->Levplan[Level].LevelFactor; | 
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|  | 741 | YZ = Z+NZ*Y; | 
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|  | 742 | YZ = plan->pw[YZ].Index; | 
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|  | 743 | yz = z+Nz*y; | 
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|  | 744 | for (n=0; n < nFields; n++) { | 
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|  | 745 | Index = n+nFields*(yz+Ny*Nz*(x)); | 
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|  | 746 | fprintf(target,"%10.5f %10.5f ",local_data[Index].re*factor,local_data[Index].im*factor); | 
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|  | 747 | } | 
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|  | 748 | } | 
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|  | 749 | fprintf(target,"\n"); | 
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|  | 750 | } | 
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|  | 751 | } | 
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|  | 752 | } | 
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|  | 753 |  | 
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|  | 754 | void fft_3d_c2r_r2c_Test(struct Problem *P, const struct fft_plan_3d *plan, const int nFields) { | 
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|  | 755 | int i,j,Max=10; | 
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|  | 756 | double time1, time2, timeCR, timeRC, time1CR, time1RC, factor =1.0; | 
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|  | 757 | int local_nx, local_x_start,  local_ny_after_transpose,local_y_start_after_transpose,total_local_size; | 
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|  | 758 | FILE *data0,*data1,*data0C,*data1C; | 
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|  | 759 | OpenFileNo2(P,&data0,".data0",plan->myPE,"w",P->Call.out[ReadOut]); | 
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|  | 760 | OpenFileNo2(P,&data1,".data1",plan->myPE,"w",P->Call.out[ReadOut]); | 
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|  | 761 | OpenFileNo2(P,&data0C,".data0C",plan->myPE,"w",P->Call.out[ReadOut]); | 
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|  | 762 | OpenFileNo2(P,&data1C,".data1C",plan->myPE,"w",P->Call.out[ReadOut]); | 
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|  | 763 | fprintf(stderr, "(%i)C2RTest: \n", P->Par.me); | 
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|  | 764 | for (i=plan->MaxLevel-1; i >= 0; i--) { | 
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|  | 765 | timeCR = 0; | 
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|  | 766 | timeRC = 0; | 
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|  | 767 | time1RC = 0; | 
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|  | 768 | time1CR = 0; | 
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|  | 769 | fprintf(stderr,"PE(%i) L(%i) Nx(%i) Nyz(%i) nF(%i)\n",plan->myPE,i,plan->Levplan[i].N[0],plan->Levplan[i].local_nyz,nFields); | 
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|  | 770 | factor = 1./(plan->Levplan[i].N[0]*plan->Levplan[i].N[1]*plan->Levplan[i].N[2]); | 
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|  | 771 | for (j=0; j < Max; j++) { | 
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|  | 772 | InitDataTestR(plan,i,nFields,(fftw_real *)plan->local_data); | 
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|  | 773 | time1 = GetTime(); | 
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|  | 774 | fft_3d_real_to_complex(plan,i,nFields,plan->local_data, plan->work); | 
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|  | 775 | time2 = GetTime(); | 
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|  | 776 | timeRC += (time2 - time1); | 
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|  | 777 | time1 = GetTime(); | 
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|  | 778 | fft_3d_complex_to_real(plan,i,nFields,plan->local_data, plan->work); | 
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|  | 779 | time2 = GetTime(); | 
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|  | 780 | timeCR += (time2 - time1); | 
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|  | 781 |  | 
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|  | 782 | } | 
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|  | 783 | fprintf(stderr,"PE(%i): L(%i) CR:sec(%g) RC:sec(%g)\n",plan->myPE, i, timeCR, timeRC); | 
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|  | 784 | } | 
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|  | 785 | fclose(data0); | 
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|  | 786 | fclose(data1); | 
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|  | 787 | fclose(data0C); | 
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|  | 788 | fclose(data1C); | 
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|  | 789 | } | 
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|  | 790 | */ | 
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