!!matvec with matmul
!#define __MATVEC_N(y,Mat,Vec) y=MATMUL(Mat,Vec)
!#define __MATVEC_T(y,Mat,Vec) y=MATMUL(Vec,Mat)
!#define __PMATVEC_N(fy,y,Mat,Vec) y=fyy+MATMUL(Mat,Vec)
!#define __PMATVEC_T(fy,y,Mat,Vec) y=fy y+MATMUL(Vec,Mat)
!#define __AMATVEC_N(y,fMat,Mat,Vec) y=fMatMATMUL(Mat,Vec)
!#define __AMATVEC_T(y,fMat,Mat,Vec) y=fMat MATMUL(Vec,Mat)
!#define __PAMATVEC_N(fy,y,fMat,Mat,Vec) y=fyy+fMat MATMUL(Mat,Vec)
!#define __PAMATVEC_T(fy,y,fMat,Mat,Vec) y=fyy+fMat MATMUL(Vec,Mat)
!!#define __GENERICMATVEC(NT,fy,y,fMat,Mat,Vec) CALL DGEMV(NT,SIZE(Mat,1),SIZE(Mat,2),fMat,Mat,SIZE(Mat,1),Vec,1,fy,y,1)
!!matmat with matmul
!#define __MATMAT_NN(Y,A,B) Y=MATMUL(A,B)
!#define __MATMAT_TN(Y,A,B) Y=MATMUL(TRANSPOSE(A),B)
!#define __MATMAT_NT(Y,A,B) Y=MATMUL(A,TRANSPOSE(B))
!#define __MATMAT_TT(Y,A,B) Y=TRANSPOSE(MATMUL(B,A))
!#define __PMATMAT_NN(fy,Y,A,B) Y=fyY+MATMUL(A,B)
!#define __PMATMAT_TN(fy,Y,A,B) Y=fy Y+MATMUL(TRANSPOSE(A),B)
!#define __PMATMAT_NT(fy,Y,A,B) Y=fyY+MATMUL(A,TRANSPOSE(B))
!#define __PMATMAT_TT(fy,Y,A,B) Y=fy Y+TRANSPOSE(MATMUL(B,A))
!#define __AMATMAT_NN(Y,fa,A,B) Y=faMATMUL(A,B)
!#define __AMATMAT_TN(Y,fa,A,B) Y=fa MATMUL(TRANSPOSE(A),B)
!#define __AMATMAT_NT(Y,fa,A,B) Y=faMATMUL(A,TRANSPOSE(B))
!#define __AMATMAT_TT(Y,fa,A,B) Y=fa TRANSPOSE(MATMUL(B,A))
!#define __PAMATMAT_NN(fy,Y,fa,A,B) Y=fyY+fa MATMUL(A,B)
!#define __PAMATMAT_TN(fy,Y,fa,A,B) Y=fyY+fa MATMUL(TRANSPOSE(A),B)
!#define __PAMATMAT_NT(fy,Y,fa,A,B) Y=fyY+fa MATMUL(A,TRANSPOSE(B))
!#define __PAMATMAT_TT(fy,Y,fa,A,B) Y=fyY+fa TRANSPOSE(MATMUL(B,A))
! GEMM does in general Y = fa A^?B^? + fy Y
! with structure: (m x n) = (m x k) (k x n)
! Y=A B : DGEMM('N','N',m,n,k,fa,Amat ,m, Bmat,k, fy,Y,m)
! Y=A^TB : DGEMM('T','N',m,n,k,fa,Amat ,k, Bmat,k, fy,Y,m)
! Y=A B^T : DGEMM('N','T',m,n,k,fa,Amat ,m, Bmat,n, fy,Y,m)
! Y=A^T*B^T : DGEMM('T','T',m,n,k,fa,Amat ,k, Bmat,n, fy,Y,m)
!#define __GENERICMATMAT_NN(fy,Y,fa,A,B) CALL DGEMM('N','N',SIZE(A,1),SIZE(B,2),SIZE(B,1),fa,A,SIZE(A,1),B,SIZE(B,1),fy,Y,SIZE(A,1))
!#define __GENERICMATMAT_TN(fy,Y,fa,A,B) CALL DGEMM('T','N',SIZE(A,2),SIZE(B,2),SIZE(B,1),fa,A,SIZE(B,1),B,SIZE(B,1),fy,Y,SIZE(A,2))
!#define __GENERICMATMAT_NT(fy,Y,fa,A,B) CALL DGEMM('N','T',SIZE(A,1),SIZE(B,1),SIZE(B,2),fa,A,SIZE(A,1),B,SIZE(B,1),fy,Y,SIZE(A,1))
!#define __GENERICMATMAT_TT(fy,Y,fa,A,B) CALL DGEMM('T','T',SIZE(A,2),SIZE(B,1),SIZE(B,2),fa,A,SIZE(B,2),B,SIZE(B,1),fy,Y,SIZE(A,2))
! SIMPLE INTERFACE FOR DGEMM, specifying nrows/ncols of mat A and nrows/ncols of mat B (for any transpose!)
! GEMM does in general Y = fa A^?B^? + fy Y
! with structure: (m x n) = (m x k) (k x n)
! Y=A B : DGEMM('N','N',m,n,k,fa,Amat ,m, Bmat,k, fy,Y,m)
! Y=A^TB : DGEMM('T','N',m,n,k,fa,Amat ,k, Bmat,k, fy,Y,m)
! Y=A B^T : DGEMM('N','T',m,n,k,fa,Amat ,m, Bmat,n, fy,Y,m)
! Y=A^T*B^T : DGEMM('T','T',m,n,k,fa,Amat ,k, Bmat,n, fy,Y,m)
sourcefile~~convert_gvec_to_jorek.f90~~EfferentGraph
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Source Code
!===================================================================================================================================
! Copyright (c) 2025 GVEC Contributors, Max Planck Institute for Plasma Physics
! License: MIT
!===================================================================================================================================
#include "defines.FPP"
!===================================================================================================================================
!>
!!# **GVEC_TO_JOREK** converter program
!!
!===================================================================================================================================
PROGRAM CONVERT_GVEC_TO_JOREK
USE MODgvec_Globals
USE MODgvec_gvec_to_jorek
!$ USE omp_lib
IMPLICIT NONE
!-----------------------------------------------------------------------------------------------------------------------------------
!local variables
REAL ( wp ) :: StartTime , EndTime
!===================================================================================================================================
__ PERFINIT
__ PERFON ( 'main' )
CALL CPU_TIME ( StartTime )
!$ StartTime=OMP_GET_WTIME()
!header
WRITE ( Unit_stdOut , '(132("="))' )
WRITE ( Unit_stdOut , '(5(("*",A128,2X,"*",:,"\n")))' )&
' - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - ' &
, ' - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - ' &
, ' - - - - - - - - - - CONVERT GVEC => JOREK - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - ' &
, ' - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - ' &
, ' - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - '
WRITE ( Unit_stdOut , '(132("="))' )
!$ WRITE(UNIT_stdOut,'(A,I6)')' Number of OpenMP threads : ',OMP_GET_MAX_THREADS()
!$ WRITE(Unit_stdOut,'(132("="))')
CALL GET_CLA_gvec_to_jorek ()
!initialization phase
CALL Init_gvec_to_jorek ()
CALL gvec_to_jorek_writeToFile ()
CALL Finalize_gvec_to_jorek ()
CALL CPU_TIME ( EndTime )
!$ EndTime=OMP_GET_WTIME()
WRITE ( Unit_stdOut , fmt_sep )
WRITE ( Unit_stdOut , '(A,F8.2,A)' ) ' CONVERT GVEC TO JOREK FINISHED! [' , EndTime - StartTime , ' sec ]'
WRITE ( Unit_stdOut , fmt_sep )
__ PERFOFF ( 'main' )
__ PERFOUT ( 'main' )
END PROGRAM CONVERT_GVEC_TO_JOREK