3 Star 2 Fork 1

ela/eqspy

加入 Gitee
与超过 1200万 开发者一起发现、参与优秀开源项目,私有仓库也完全免费 :)
免费加入
文件
克隆/下载
fftw3.f03 52.31 KB
一键复制 编辑 原始数据 按行查看 历史
ela 提交于 2015-07-09 06:08 . nothing
12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094109510961097109810991100110111021103110411051106110711081109111011111112111311141115111611171118111911201121112211231124112511261127112811291130113111321133113411351136113711381139114011411142114311441145114611471148114911501151115211531154115511561157115811591160116111621163116411651166116711681169117011711172117311741175117611771178117911801181118211831184118511861187118811891190119111921193119411951196119711981199120012011202120312041205120612071208120912101211121212131214121512161217121812191220122112221223122412251226
! Generated automatically. DO NOT EDIT!
integer, parameter :: C_FFTW_R2R_KIND = C_INT32_T
integer(C_INT), parameter :: FFTW_R2HC = 0
integer(C_INT), parameter :: FFTW_HC2R = 1
integer(C_INT), parameter :: FFTW_DHT = 2
integer(C_INT), parameter :: FFTW_REDFT00 = 3
integer(C_INT), parameter :: FFTW_REDFT01 = 4
integer(C_INT), parameter :: FFTW_REDFT10 = 5
integer(C_INT), parameter :: FFTW_REDFT11 = 6
integer(C_INT), parameter :: FFTW_RODFT00 = 7
integer(C_INT), parameter :: FFTW_RODFT01 = 8
integer(C_INT), parameter :: FFTW_RODFT10 = 9
integer(C_INT), parameter :: FFTW_RODFT11 = 10
integer(C_INT), parameter :: FFTW_FORWARD = -1
integer(C_INT), parameter :: FFTW_BACKWARD = +1
integer(C_INT), parameter :: FFTW_MEASURE = 0
integer(C_INT), parameter :: FFTW_DESTROY_INPUT = 1
integer(C_INT), parameter :: FFTW_UNALIGNED = 2
integer(C_INT), parameter :: FFTW_CONSERVE_MEMORY = 4
integer(C_INT), parameter :: FFTW_EXHAUSTIVE = 8
integer(C_INT), parameter :: FFTW_PRESERVE_INPUT = 16
integer(C_INT), parameter :: FFTW_PATIENT = 32
integer(C_INT), parameter :: FFTW_ESTIMATE = 64
integer(C_INT), parameter :: FFTW_WISDOM_ONLY = 2097152
integer(C_INT), parameter :: FFTW_ESTIMATE_PATIENT = 128
integer(C_INT), parameter :: FFTW_BELIEVE_PCOST = 256
integer(C_INT), parameter :: FFTW_NO_DFT_R2HC = 512
integer(C_INT), parameter :: FFTW_NO_NONTHREADED = 1024
integer(C_INT), parameter :: FFTW_NO_BUFFERING = 2048
integer(C_INT), parameter :: FFTW_NO_INDIRECT_OP = 4096
integer(C_INT), parameter :: FFTW_ALLOW_LARGE_GENERIC = 8192
integer(C_INT), parameter :: FFTW_NO_RANK_SPLITS = 16384
integer(C_INT), parameter :: FFTW_NO_VRANK_SPLITS = 32768
integer(C_INT), parameter :: FFTW_NO_VRECURSE = 65536
integer(C_INT), parameter :: FFTW_NO_SIMD = 131072
integer(C_INT), parameter :: FFTW_NO_SLOW = 262144
integer(C_INT), parameter :: FFTW_NO_FIXED_RADIX_LARGE_N = 524288
integer(C_INT), parameter :: FFTW_ALLOW_PRUNING = 1048576
type, bind(C) :: fftw_iodim
integer(C_INT) n, is, os
end type fftw_iodim
type, bind(C) :: fftw_iodim64
integer(C_INTPTR_T) n, is, os
end type fftw_iodim64
interface
type(C_PTR) function fftw_plan_dft(rank,n,in,out,sign,flags) bind(C, name='fftw_plan_dft')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_dft
type(C_PTR) function fftw_plan_dft_1d(n,in,out,sign,flags) bind(C, name='fftw_plan_dft_1d')
import
integer(C_INT), value :: n
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_dft_1d
type(C_PTR) function fftw_plan_dft_2d(n0,n1,in,out,sign,flags) bind(C, name='fftw_plan_dft_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_dft_2d
type(C_PTR) function fftw_plan_dft_3d(n0,n1,n2,in,out,sign,flags) bind(C, name='fftw_plan_dft_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_dft_3d
type(C_PTR) function fftw_plan_many_dft(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,sign,flags) &
bind(C, name='fftw_plan_many_dft')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_many_dft
type(C_PTR) function fftw_plan_guru_dft(rank,dims,howmany_rank,howmany_dims,in,out,sign,flags) &
bind(C, name='fftw_plan_guru_dft')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_guru_dft
type(C_PTR) function fftw_plan_guru_split_dft(rank,dims,howmany_rank,howmany_dims,ri,ii,ro,io,flags) &
bind(C, name='fftw_plan_guru_split_dft')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: ri
real(C_DOUBLE), dimension(*), intent(out) :: ii
real(C_DOUBLE), dimension(*), intent(out) :: ro
real(C_DOUBLE), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftw_plan_guru_split_dft
type(C_PTR) function fftw_plan_guru64_dft(rank,dims,howmany_rank,howmany_dims,in,out,sign,flags) &
bind(C, name='fftw_plan_guru64_dft')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftw_plan_guru64_dft
type(C_PTR) function fftw_plan_guru64_split_dft(rank,dims,howmany_rank,howmany_dims,ri,ii,ro,io,flags) &
bind(C, name='fftw_plan_guru64_split_dft')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: ri
real(C_DOUBLE), dimension(*), intent(out) :: ii
real(C_DOUBLE), dimension(*), intent(out) :: ro
real(C_DOUBLE), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftw_plan_guru64_split_dft
subroutine fftw_execute_dft(p,in,out) bind(C, name='fftw_execute_dft')
import
type(C_PTR), value :: p
complex(C_DOUBLE_COMPLEX), dimension(*), intent(inout) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
end subroutine fftw_execute_dft
subroutine fftw_execute_split_dft(p,ri,ii,ro,io) bind(C, name='fftw_execute_split_dft')
import
type(C_PTR), value :: p
real(C_DOUBLE), dimension(*), intent(inout) :: ri
real(C_DOUBLE), dimension(*), intent(inout) :: ii
real(C_DOUBLE), dimension(*), intent(out) :: ro
real(C_DOUBLE), dimension(*), intent(out) :: io
end subroutine fftw_execute_split_dft
type(C_PTR) function fftw_plan_many_dft_r2c(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,flags) &
bind(C, name='fftw_plan_many_dft_r2c')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
real(C_DOUBLE), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_INT), value :: flags
end function fftw_plan_many_dft_r2c
type(C_PTR) function fftw_plan_dft_r2c(rank,n,in,out,flags) bind(C, name='fftw_plan_dft_r2c')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
real(C_DOUBLE), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_r2c
type(C_PTR) function fftw_plan_dft_r2c_1d(n,in,out,flags) bind(C, name='fftw_plan_dft_r2c_1d')
import
integer(C_INT), value :: n
real(C_DOUBLE), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_r2c_1d
type(C_PTR) function fftw_plan_dft_r2c_2d(n0,n1,in,out,flags) bind(C, name='fftw_plan_dft_r2c_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
real(C_DOUBLE), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_r2c_2d
type(C_PTR) function fftw_plan_dft_r2c_3d(n0,n1,n2,in,out,flags) bind(C, name='fftw_plan_dft_r2c_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
real(C_DOUBLE), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_r2c_3d
type(C_PTR) function fftw_plan_many_dft_c2r(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,flags) &
bind(C, name='fftw_plan_many_dft_c2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_INT), value :: flags
end function fftw_plan_many_dft_c2r
type(C_PTR) function fftw_plan_dft_c2r(rank,n,in,out,flags) bind(C, name='fftw_plan_dft_c2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_c2r
type(C_PTR) function fftw_plan_dft_c2r_1d(n,in,out,flags) bind(C, name='fftw_plan_dft_c2r_1d')
import
integer(C_INT), value :: n
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_c2r_1d
type(C_PTR) function fftw_plan_dft_c2r_2d(n0,n1,in,out,flags) bind(C, name='fftw_plan_dft_c2r_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_c2r_2d
type(C_PTR) function fftw_plan_dft_c2r_3d(n0,n1,n2,in,out,flags) bind(C, name='fftw_plan_dft_c2r_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_dft_c2r_3d
type(C_PTR) function fftw_plan_guru_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftw_plan_guru_dft_r2c')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_guru_dft_r2c
type(C_PTR) function fftw_plan_guru_dft_c2r(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftw_plan_guru_dft_c2r')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_guru_dft_c2r
type(C_PTR) function fftw_plan_guru_split_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,ro,io,flags) &
bind(C, name='fftw_plan_guru_split_dft_r2c')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: ro
real(C_DOUBLE), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftw_plan_guru_split_dft_r2c
type(C_PTR) function fftw_plan_guru_split_dft_c2r(rank,dims,howmany_rank,howmany_dims,ri,ii,out,flags) &
bind(C, name='fftw_plan_guru_split_dft_c2r')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: ri
real(C_DOUBLE), dimension(*), intent(out) :: ii
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_guru_split_dft_c2r
type(C_PTR) function fftw_plan_guru64_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftw_plan_guru64_dft_r2c')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_guru64_dft_r2c
type(C_PTR) function fftw_plan_guru64_dft_c2r(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftw_plan_guru64_dft_c2r')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_guru64_dft_c2r
type(C_PTR) function fftw_plan_guru64_split_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,ro,io,flags) &
bind(C, name='fftw_plan_guru64_split_dft_r2c')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: ro
real(C_DOUBLE), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftw_plan_guru64_split_dft_r2c
type(C_PTR) function fftw_plan_guru64_split_dft_c2r(rank,dims,howmany_rank,howmany_dims,ri,ii,out,flags) &
bind(C, name='fftw_plan_guru64_split_dft_c2r')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: ri
real(C_DOUBLE), dimension(*), intent(out) :: ii
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftw_plan_guru64_split_dft_c2r
subroutine fftw_execute_dft_r2c(p,in,out) bind(C, name='fftw_execute_dft_r2c')
import
type(C_PTR), value :: p
real(C_DOUBLE), dimension(*), intent(inout) :: in
complex(C_DOUBLE_COMPLEX), dimension(*), intent(out) :: out
end subroutine fftw_execute_dft_r2c
subroutine fftw_execute_dft_c2r(p,in,out) bind(C, name='fftw_execute_dft_c2r')
import
type(C_PTR), value :: p
complex(C_DOUBLE_COMPLEX), dimension(*), intent(inout) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
end subroutine fftw_execute_dft_c2r
subroutine fftw_execute_split_dft_r2c(p,in,ro,io) bind(C, name='fftw_execute_split_dft_r2c')
import
type(C_PTR), value :: p
real(C_DOUBLE), dimension(*), intent(inout) :: in
real(C_DOUBLE), dimension(*), intent(out) :: ro
real(C_DOUBLE), dimension(*), intent(out) :: io
end subroutine fftw_execute_split_dft_r2c
subroutine fftw_execute_split_dft_c2r(p,ri,ii,out) bind(C, name='fftw_execute_split_dft_c2r')
import
type(C_PTR), value :: p
real(C_DOUBLE), dimension(*), intent(inout) :: ri
real(C_DOUBLE), dimension(*), intent(inout) :: ii
real(C_DOUBLE), dimension(*), intent(out) :: out
end subroutine fftw_execute_split_dft_c2r
type(C_PTR) function fftw_plan_many_r2r(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,kind,flags) &
bind(C, name='fftw_plan_many_r2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
real(C_DOUBLE), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftw_plan_many_r2r
type(C_PTR) function fftw_plan_r2r(rank,n,in,out,kind,flags) bind(C, name='fftw_plan_r2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftw_plan_r2r
type(C_PTR) function fftw_plan_r2r_1d(n,in,out,kind,flags) bind(C, name='fftw_plan_r2r_1d')
import
integer(C_INT), value :: n
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), value :: kind
integer(C_INT), value :: flags
end function fftw_plan_r2r_1d
type(C_PTR) function fftw_plan_r2r_2d(n0,n1,in,out,kind0,kind1,flags) bind(C, name='fftw_plan_r2r_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), value :: kind0
integer(C_FFTW_R2R_KIND), value :: kind1
integer(C_INT), value :: flags
end function fftw_plan_r2r_2d
type(C_PTR) function fftw_plan_r2r_3d(n0,n1,n2,in,out,kind0,kind1,kind2,flags) bind(C, name='fftw_plan_r2r_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), value :: kind0
integer(C_FFTW_R2R_KIND), value :: kind1
integer(C_FFTW_R2R_KIND), value :: kind2
integer(C_INT), value :: flags
end function fftw_plan_r2r_3d
type(C_PTR) function fftw_plan_guru_r2r(rank,dims,howmany_rank,howmany_dims,in,out,kind,flags) &
bind(C, name='fftw_plan_guru_r2r')
import
integer(C_INT), value :: rank
type(fftw_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftw_plan_guru_r2r
type(C_PTR) function fftw_plan_guru64_r2r(rank,dims,howmany_rank,howmany_dims,in,out,kind,flags) &
bind(C, name='fftw_plan_guru64_r2r')
import
integer(C_INT), value :: rank
type(fftw_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftw_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_DOUBLE), dimension(*), intent(out) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftw_plan_guru64_r2r
subroutine fftw_execute_r2r(p,in,out) bind(C, name='fftw_execute_r2r')
import
type(C_PTR), value :: p
real(C_DOUBLE), dimension(*), intent(inout) :: in
real(C_DOUBLE), dimension(*), intent(out) :: out
end subroutine fftw_execute_r2r
subroutine fftw_destroy_plan(p) bind(C, name='fftw_destroy_plan')
import
type(C_PTR), value :: p
end subroutine fftw_destroy_plan
subroutine fftw_forget_wisdom() bind(C, name='fftw_forget_wisdom')
import
end subroutine fftw_forget_wisdom
subroutine fftw_cleanup() bind(C, name='fftw_cleanup')
import
end subroutine fftw_cleanup
subroutine fftw_set_timelimit(t) bind(C, name='fftw_set_timelimit')
import
real(C_DOUBLE), value :: t
end subroutine fftw_set_timelimit
subroutine fftw_plan_with_nthreads(nthreads) bind(C, name='fftw_plan_with_nthreads')
import
integer(C_INT), value :: nthreads
end subroutine fftw_plan_with_nthreads
integer(C_INT) function fftw_init_threads() bind(C, name='fftw_init_threads')
import
end function fftw_init_threads
subroutine fftw_cleanup_threads() bind(C, name='fftw_cleanup_threads')
import
end subroutine fftw_cleanup_threads
integer(C_INT) function fftw_export_wisdom_to_filename(filename) bind(C, name='fftw_export_wisdom_to_filename')
import
character(C_CHAR), dimension(*), intent(in) :: filename
end function fftw_export_wisdom_to_filename
subroutine fftw_export_wisdom_to_file(output_file) bind(C, name='fftw_export_wisdom_to_file')
import
type(C_PTR), value :: output_file
end subroutine fftw_export_wisdom_to_file
type(C_PTR) function fftw_export_wisdom_to_string() bind(C, name='fftw_export_wisdom_to_string')
import
end function fftw_export_wisdom_to_string
subroutine fftw_export_wisdom(write_char,data) bind(C, name='fftw_export_wisdom')
import
type(C_FUNPTR), value :: write_char
type(C_PTR), value :: data
end subroutine fftw_export_wisdom
integer(C_INT) function fftw_import_system_wisdom() bind(C, name='fftw_import_system_wisdom')
import
end function fftw_import_system_wisdom
integer(C_INT) function fftw_import_wisdom_from_filename(filename) bind(C, name='fftw_import_wisdom_from_filename')
import
character(C_CHAR), dimension(*), intent(in) :: filename
end function fftw_import_wisdom_from_filename
integer(C_INT) function fftw_import_wisdom_from_file(input_file) bind(C, name='fftw_import_wisdom_from_file')
import
type(C_PTR), value :: input_file
end function fftw_import_wisdom_from_file
integer(C_INT) function fftw_import_wisdom_from_string(input_string) bind(C, name='fftw_import_wisdom_from_string')
import
character(C_CHAR), dimension(*), intent(in) :: input_string
end function fftw_import_wisdom_from_string
integer(C_INT) function fftw_import_wisdom(read_char,data) bind(C, name='fftw_import_wisdom')
import
type(C_FUNPTR), value :: read_char
type(C_PTR), value :: data
end function fftw_import_wisdom
subroutine fftw_fprint_plan(p,output_file) bind(C, name='fftw_fprint_plan')
import
type(C_PTR), value :: p
type(C_PTR), value :: output_file
end subroutine fftw_fprint_plan
subroutine fftw_print_plan(p) bind(C, name='fftw_print_plan')
import
type(C_PTR), value :: p
end subroutine fftw_print_plan
type(C_PTR) function fftw_malloc(n) bind(C, name='fftw_malloc')
import
integer(C_SIZE_T), value :: n
end function fftw_malloc
type(C_PTR) function fftw_alloc_real(n) bind(C, name='fftw_alloc_real')
import
integer(C_SIZE_T), value :: n
end function fftw_alloc_real
type(C_PTR) function fftw_alloc_complex(n) bind(C, name='fftw_alloc_complex')
import
integer(C_SIZE_T), value :: n
end function fftw_alloc_complex
subroutine fftw_free(p) bind(C, name='fftw_free')
import
type(C_PTR), value :: p
end subroutine fftw_free
subroutine fftw_flops(p,add,mul,fmas) bind(C, name='fftw_flops')
import
type(C_PTR), value :: p
real(C_DOUBLE), intent(out) :: add
real(C_DOUBLE), intent(out) :: mul
real(C_DOUBLE), intent(out) :: fmas
end subroutine fftw_flops
real(C_DOUBLE) function fftw_estimate_cost(p) bind(C, name='fftw_estimate_cost')
import
type(C_PTR), value :: p
end function fftw_estimate_cost
real(C_DOUBLE) function fftw_cost(p) bind(C, name='fftw_cost')
import
type(C_PTR), value :: p
end function fftw_cost
end interface
type, bind(C) :: fftwf_iodim
integer(C_INT) n, is, os
end type fftwf_iodim
type, bind(C) :: fftwf_iodim64
integer(C_INTPTR_T) n, is, os
end type fftwf_iodim64
interface
type(C_PTR) function fftwf_plan_dft(rank,n,in,out,sign,flags) bind(C, name='fftwf_plan_dft')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_dft
type(C_PTR) function fftwf_plan_dft_1d(n,in,out,sign,flags) bind(C, name='fftwf_plan_dft_1d')
import
integer(C_INT), value :: n
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_dft_1d
type(C_PTR) function fftwf_plan_dft_2d(n0,n1,in,out,sign,flags) bind(C, name='fftwf_plan_dft_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_dft_2d
type(C_PTR) function fftwf_plan_dft_3d(n0,n1,n2,in,out,sign,flags) bind(C, name='fftwf_plan_dft_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_dft_3d
type(C_PTR) function fftwf_plan_many_dft(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,sign,flags) &
bind(C, name='fftwf_plan_many_dft')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_many_dft
type(C_PTR) function fftwf_plan_guru_dft(rank,dims,howmany_rank,howmany_dims,in,out,sign,flags) &
bind(C, name='fftwf_plan_guru_dft')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_guru_dft
type(C_PTR) function fftwf_plan_guru_split_dft(rank,dims,howmany_rank,howmany_dims,ri,ii,ro,io,flags) &
bind(C, name='fftwf_plan_guru_split_dft')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: ri
real(C_FLOAT), dimension(*), intent(out) :: ii
real(C_FLOAT), dimension(*), intent(out) :: ro
real(C_FLOAT), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftwf_plan_guru_split_dft
type(C_PTR) function fftwf_plan_guru64_dft(rank,dims,howmany_rank,howmany_dims,in,out,sign,flags) &
bind(C, name='fftwf_plan_guru64_dft')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: sign
integer(C_INT), value :: flags
end function fftwf_plan_guru64_dft
type(C_PTR) function fftwf_plan_guru64_split_dft(rank,dims,howmany_rank,howmany_dims,ri,ii,ro,io,flags) &
bind(C, name='fftwf_plan_guru64_split_dft')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: ri
real(C_FLOAT), dimension(*), intent(out) :: ii
real(C_FLOAT), dimension(*), intent(out) :: ro
real(C_FLOAT), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftwf_plan_guru64_split_dft
subroutine fftwf_execute_dft(p,in,out) bind(C, name='fftwf_execute_dft')
import
type(C_PTR), value :: p
complex(C_FLOAT_COMPLEX), dimension(*), intent(inout) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
end subroutine fftwf_execute_dft
subroutine fftwf_execute_split_dft(p,ri,ii,ro,io) bind(C, name='fftwf_execute_split_dft')
import
type(C_PTR), value :: p
real(C_FLOAT), dimension(*), intent(inout) :: ri
real(C_FLOAT), dimension(*), intent(inout) :: ii
real(C_FLOAT), dimension(*), intent(out) :: ro
real(C_FLOAT), dimension(*), intent(out) :: io
end subroutine fftwf_execute_split_dft
type(C_PTR) function fftwf_plan_many_dft_r2c(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,flags) &
bind(C, name='fftwf_plan_many_dft_r2c')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
real(C_FLOAT), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_INT), value :: flags
end function fftwf_plan_many_dft_r2c
type(C_PTR) function fftwf_plan_dft_r2c(rank,n,in,out,flags) bind(C, name='fftwf_plan_dft_r2c')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
real(C_FLOAT), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_r2c
type(C_PTR) function fftwf_plan_dft_r2c_1d(n,in,out,flags) bind(C, name='fftwf_plan_dft_r2c_1d')
import
integer(C_INT), value :: n
real(C_FLOAT), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_r2c_1d
type(C_PTR) function fftwf_plan_dft_r2c_2d(n0,n1,in,out,flags) bind(C, name='fftwf_plan_dft_r2c_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
real(C_FLOAT), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_r2c_2d
type(C_PTR) function fftwf_plan_dft_r2c_3d(n0,n1,n2,in,out,flags) bind(C, name='fftwf_plan_dft_r2c_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
real(C_FLOAT), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_r2c_3d
type(C_PTR) function fftwf_plan_many_dft_c2r(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,flags) &
bind(C, name='fftwf_plan_many_dft_c2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_INT), value :: flags
end function fftwf_plan_many_dft_c2r
type(C_PTR) function fftwf_plan_dft_c2r(rank,n,in,out,flags) bind(C, name='fftwf_plan_dft_c2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_c2r
type(C_PTR) function fftwf_plan_dft_c2r_1d(n,in,out,flags) bind(C, name='fftwf_plan_dft_c2r_1d')
import
integer(C_INT), value :: n
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_c2r_1d
type(C_PTR) function fftwf_plan_dft_c2r_2d(n0,n1,in,out,flags) bind(C, name='fftwf_plan_dft_c2r_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_c2r_2d
type(C_PTR) function fftwf_plan_dft_c2r_3d(n0,n1,n2,in,out,flags) bind(C, name='fftwf_plan_dft_c2r_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_dft_c2r_3d
type(C_PTR) function fftwf_plan_guru_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftwf_plan_guru_dft_r2c')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_guru_dft_r2c
type(C_PTR) function fftwf_plan_guru_dft_c2r(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftwf_plan_guru_dft_c2r')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_guru_dft_c2r
type(C_PTR) function fftwf_plan_guru_split_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,ro,io,flags) &
bind(C, name='fftwf_plan_guru_split_dft_r2c')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: ro
real(C_FLOAT), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftwf_plan_guru_split_dft_r2c
type(C_PTR) function fftwf_plan_guru_split_dft_c2r(rank,dims,howmany_rank,howmany_dims,ri,ii,out,flags) &
bind(C, name='fftwf_plan_guru_split_dft_c2r')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: ri
real(C_FLOAT), dimension(*), intent(out) :: ii
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_guru_split_dft_c2r
type(C_PTR) function fftwf_plan_guru64_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftwf_plan_guru64_dft_r2c')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_guru64_dft_r2c
type(C_PTR) function fftwf_plan_guru64_dft_c2r(rank,dims,howmany_rank,howmany_dims,in,out,flags) &
bind(C, name='fftwf_plan_guru64_dft_c2r')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_guru64_dft_c2r
type(C_PTR) function fftwf_plan_guru64_split_dft_r2c(rank,dims,howmany_rank,howmany_dims,in,ro,io,flags) &
bind(C, name='fftwf_plan_guru64_split_dft_r2c')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: ro
real(C_FLOAT), dimension(*), intent(out) :: io
integer(C_INT), value :: flags
end function fftwf_plan_guru64_split_dft_r2c
type(C_PTR) function fftwf_plan_guru64_split_dft_c2r(rank,dims,howmany_rank,howmany_dims,ri,ii,out,flags) &
bind(C, name='fftwf_plan_guru64_split_dft_c2r')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: ri
real(C_FLOAT), dimension(*), intent(out) :: ii
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), value :: flags
end function fftwf_plan_guru64_split_dft_c2r
subroutine fftwf_execute_dft_r2c(p,in,out) bind(C, name='fftwf_execute_dft_r2c')
import
type(C_PTR), value :: p
real(C_FLOAT), dimension(*), intent(inout) :: in
complex(C_FLOAT_COMPLEX), dimension(*), intent(out) :: out
end subroutine fftwf_execute_dft_r2c
subroutine fftwf_execute_dft_c2r(p,in,out) bind(C, name='fftwf_execute_dft_c2r')
import
type(C_PTR), value :: p
complex(C_FLOAT_COMPLEX), dimension(*), intent(inout) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
end subroutine fftwf_execute_dft_c2r
subroutine fftwf_execute_split_dft_r2c(p,in,ro,io) bind(C, name='fftwf_execute_split_dft_r2c')
import
type(C_PTR), value :: p
real(C_FLOAT), dimension(*), intent(inout) :: in
real(C_FLOAT), dimension(*), intent(out) :: ro
real(C_FLOAT), dimension(*), intent(out) :: io
end subroutine fftwf_execute_split_dft_r2c
subroutine fftwf_execute_split_dft_c2r(p,ri,ii,out) bind(C, name='fftwf_execute_split_dft_c2r')
import
type(C_PTR), value :: p
real(C_FLOAT), dimension(*), intent(inout) :: ri
real(C_FLOAT), dimension(*), intent(inout) :: ii
real(C_FLOAT), dimension(*), intent(out) :: out
end subroutine fftwf_execute_split_dft_c2r
type(C_PTR) function fftwf_plan_many_r2r(rank,n,howmany,in,inembed,istride,idist,out,onembed,ostride,odist,kind,flags) &
bind(C, name='fftwf_plan_many_r2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
integer(C_INT), value :: howmany
real(C_FLOAT), dimension(*), intent(out) :: in
integer(C_INT), dimension(*), intent(in) :: inembed
integer(C_INT), value :: istride
integer(C_INT), value :: idist
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_INT), dimension(*), intent(in) :: onembed
integer(C_INT), value :: ostride
integer(C_INT), value :: odist
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftwf_plan_many_r2r
type(C_PTR) function fftwf_plan_r2r(rank,n,in,out,kind,flags) bind(C, name='fftwf_plan_r2r')
import
integer(C_INT), value :: rank
integer(C_INT), dimension(*), intent(in) :: n
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftwf_plan_r2r
type(C_PTR) function fftwf_plan_r2r_1d(n,in,out,kind,flags) bind(C, name='fftwf_plan_r2r_1d')
import
integer(C_INT), value :: n
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), value :: kind
integer(C_INT), value :: flags
end function fftwf_plan_r2r_1d
type(C_PTR) function fftwf_plan_r2r_2d(n0,n1,in,out,kind0,kind1,flags) bind(C, name='fftwf_plan_r2r_2d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), value :: kind0
integer(C_FFTW_R2R_KIND), value :: kind1
integer(C_INT), value :: flags
end function fftwf_plan_r2r_2d
type(C_PTR) function fftwf_plan_r2r_3d(n0,n1,n2,in,out,kind0,kind1,kind2,flags) bind(C, name='fftwf_plan_r2r_3d')
import
integer(C_INT), value :: n0
integer(C_INT), value :: n1
integer(C_INT), value :: n2
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), value :: kind0
integer(C_FFTW_R2R_KIND), value :: kind1
integer(C_FFTW_R2R_KIND), value :: kind2
integer(C_INT), value :: flags
end function fftwf_plan_r2r_3d
type(C_PTR) function fftwf_plan_guru_r2r(rank,dims,howmany_rank,howmany_dims,in,out,kind,flags) &
bind(C, name='fftwf_plan_guru_r2r')
import
integer(C_INT), value :: rank
type(fftwf_iodim), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftwf_plan_guru_r2r
type(C_PTR) function fftwf_plan_guru64_r2r(rank,dims,howmany_rank,howmany_dims,in,out,kind,flags) &
bind(C, name='fftwf_plan_guru64_r2r')
import
integer(C_INT), value :: rank
type(fftwf_iodim64), dimension(*), intent(in) :: dims
integer(C_INT), value :: howmany_rank
type(fftwf_iodim64), dimension(*), intent(in) :: howmany_dims
real(C_FLOAT), dimension(*), intent(out) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
integer(C_FFTW_R2R_KIND), dimension(*), intent(in) :: kind
integer(C_INT), value :: flags
end function fftwf_plan_guru64_r2r
subroutine fftwf_execute_r2r(p,in,out) bind(C, name='fftwf_execute_r2r')
import
type(C_PTR), value :: p
real(C_FLOAT), dimension(*), intent(inout) :: in
real(C_FLOAT), dimension(*), intent(out) :: out
end subroutine fftwf_execute_r2r
subroutine fftwf_destroy_plan(p) bind(C, name='fftwf_destroy_plan')
import
type(C_PTR), value :: p
end subroutine fftwf_destroy_plan
subroutine fftwf_forget_wisdom() bind(C, name='fftwf_forget_wisdom')
import
end subroutine fftwf_forget_wisdom
subroutine fftwf_cleanup() bind(C, name='fftwf_cleanup')
import
end subroutine fftwf_cleanup
subroutine fftwf_set_timelimit(t) bind(C, name='fftwf_set_timelimit')
import
real(C_DOUBLE), value :: t
end subroutine fftwf_set_timelimit
subroutine fftwf_plan_with_nthreads(nthreads) bind(C, name='fftwf_plan_with_nthreads')
import
integer(C_INT), value :: nthreads
end subroutine fftwf_plan_with_nthreads
integer(C_INT) function fftwf_init_threads() bind(C, name='fftwf_init_threads')
import
end function fftwf_init_threads
subroutine fftwf_cleanup_threads() bind(C, name='fftwf_cleanup_threads')
import
end subroutine fftwf_cleanup_threads
integer(C_INT) function fftwf_export_wisdom_to_filename(filename) bind(C, name='fftwf_export_wisdom_to_filename')
import
character(C_CHAR), dimension(*), intent(in) :: filename
end function fftwf_export_wisdom_to_filename
subroutine fftwf_export_wisdom_to_file(output_file) bind(C, name='fftwf_export_wisdom_to_file')
import
type(C_PTR), value :: output_file
end subroutine fftwf_export_wisdom_to_file
type(C_PTR) function fftwf_export_wisdom_to_string() bind(C, name='fftwf_export_wisdom_to_string')
import
end function fftwf_export_wisdom_to_string
subroutine fftwf_export_wisdom(write_char,data) bind(C, name='fftwf_export_wisdom')
import
type(C_FUNPTR), value :: write_char
type(C_PTR), value :: data
end subroutine fftwf_export_wisdom
integer(C_INT) function fftwf_import_system_wisdom() bind(C, name='fftwf_import_system_wisdom')
import
end function fftwf_import_system_wisdom
integer(C_INT) function fftwf_import_wisdom_from_filename(filename) bind(C, name='fftwf_import_wisdom_from_filename')
import
character(C_CHAR), dimension(*), intent(in) :: filename
end function fftwf_import_wisdom_from_filename
integer(C_INT) function fftwf_import_wisdom_from_file(input_file) bind(C, name='fftwf_import_wisdom_from_file')
import
type(C_PTR), value :: input_file
end function fftwf_import_wisdom_from_file
integer(C_INT) function fftwf_import_wisdom_from_string(input_string) bind(C, name='fftwf_import_wisdom_from_string')
import
character(C_CHAR), dimension(*), intent(in) :: input_string
end function fftwf_import_wisdom_from_string
integer(C_INT) function fftwf_import_wisdom(read_char,data) bind(C, name='fftwf_import_wisdom')
import
type(C_FUNPTR), value :: read_char
type(C_PTR), value :: data
end function fftwf_import_wisdom
subroutine fftwf_fprint_plan(p,output_file) bind(C, name='fftwf_fprint_plan')
import
type(C_PTR), value :: p
type(C_PTR), value :: output_file
end subroutine fftwf_fprint_plan
subroutine fftwf_print_plan(p) bind(C, name='fftwf_print_plan')
import
type(C_PTR), value :: p
end subroutine fftwf_print_plan
type(C_PTR) function fftwf_malloc(n) bind(C, name='fftwf_malloc')
import
integer(C_SIZE_T), value :: n
end function fftwf_malloc
type(C_PTR) function fftwf_alloc_real(n) bind(C, name='fftwf_alloc_real')
import
integer(C_SIZE_T), value :: n
end function fftwf_alloc_real
type(C_PTR) function fftwf_alloc_complex(n) bind(C, name='fftwf_alloc_complex')
import
integer(C_SIZE_T), value :: n
end function fftwf_alloc_complex
subroutine fftwf_free(p) bind(C, name='fftwf_free')
import
type(C_PTR), value :: p
end subroutine fftwf_free
subroutine fftwf_flops(p,add,mul,fmas) bind(C, name='fftwf_flops')
import
type(C_PTR), value :: p
real(C_DOUBLE), intent(out) :: add
real(C_DOUBLE), intent(out) :: mul
real(C_DOUBLE), intent(out) :: fmas
end subroutine fftwf_flops
real(C_DOUBLE) function fftwf_estimate_cost(p) bind(C, name='fftwf_estimate_cost')
import
type(C_PTR), value :: p
end function fftwf_estimate_cost
real(C_DOUBLE) function fftwf_cost(p) bind(C, name='fftwf_cost')
import
type(C_PTR), value :: p
end function fftwf_cost
end interface
马建仓 AI 助手
尝试更多
代码解读
代码找茬
代码优化
Python
1
https://gitee.com/ela/eqspy.git
git@gitee.com:ela/eqspy.git
ela
eqspy
eqspy
master

搜索帮助

0d507c66 1850385 C8b1a773 1850385