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https://github.com/saitohirga/WSJT-X.git
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94472ac31c
The long FFTs can now use the multi-threaded FFTW routines. Subroutine decode9.f90 was renamed jt9fano.f90. The JT9 decoder's top-level functions were removed from decoder.f90 and put into a separate subroutine decjt90.f90. Subroutine decoder.f90 is now configured for possible use of OpenMP SECTIONS, with the JT9 and JT65 decoders running concurrently on a multi-core machine. Note, however, that this concurrent processing is not yet fully implemented. Probably calls to timer need to be removed; some variables used in calls to jt65a and decjt9 may need to be declared PRIVATE in decoder; some sections probably need to be declared CRITICAL; probably some SAVE statements in downstream routines have made them not thread-safe; etc., etc. I'm a neophyte at using OpenMP. Comments, suggestions, and/or tests by others will be welcome! git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@4919 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
93 lines
2.4 KiB
Fortran
93 lines
2.4 KiB
Fortran
subroutine downsam9(id2,npts8,nsps8,newdat,nspsd,fpk,c2,nz2)
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!Downsample from id2() into C2() so as to yield nspsd samples per symbol,
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!mixing from fpk down to zero frequency.
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use, intrinsic :: iso_c_binding
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use FFTW3
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include 'constants.f90'
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! parameter (NMAX1=1024*1920)
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parameter (NMAX1=884736)
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type(C_PTR) :: plan !Pointers plan for big FFT
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integer*2 id2(0:8*npts8-1)
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real*4 x1(0:NMAX1-1)
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complex c1(0:NMAX1/2)
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complex c2(0:4096-1)
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real s(5000)
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logical first
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common/patience/npatience,nthreads
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data first/.true./
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save plan,first
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nfft1=1024*nsps8 !Forward FFT length
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df1=12000.0/nfft1
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npts=8*npts8
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if(newdat.eq.1) then
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fac=6.963e-6 !Why this weird constant?
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do i=0,npts-1
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x1(i)=fac*id2(i)
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enddo
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x1(npts:nfft1-1)=0. !Zero the rest of x1
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endif
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if(first) then
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nflags=FFTW_ESTIMATE
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if(npatience.eq.1) nflags=FFTW_ESTIMATE_PATIENT
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if(npatience.eq.2) nflags=FFTW_MEASURE
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if(npatience.eq.3) nflags=FFTW_PATIENT
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if(npatience.eq.4) nflags=FFTW_EXHAUSTIVE
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! Plan the FFTs just once
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plan=fftwf_plan_dft_r2c_1d(nfft1,x1,c1,nflags)
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first=.false.
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endif
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if(newdat.eq.1) then
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fac=6.963e-6 !Why this weird constant?
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do i=0,npts-1
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x1(i)=fac*id2(i)
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enddo
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x1(npts:nfft1-1)=0. !Zero the rest of x1
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call timer('FFTbig9 ',0)
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call fftwf_execute_dft_r2c(plan,x1,c1)
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call timer('FFTbig9 ',1)
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nadd=int(1.0/df1)
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s=0.
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do i=1,5000
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j=int((i-1)/df1)
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do n=1,nadd
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j=j+1
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s(i)=s(i)+real(c1(j))**2 + aimag(c1(j))**2
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enddo
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enddo
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endif
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ndown=8*nsps8/nspsd !Downsample factor
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nfft2=nfft1/ndown !Backward FFT length
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nh2=nfft2/2
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nf=nint(fpk)
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i0=int(fpk/df1)
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nw=100
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ia=max(1,nf-nw)
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ib=min(5000,nf+nw)
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call timer('pctile_1',0)
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call pctile(s(ia),ib-ia+1,40,avenoise)
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call timer('pctile_1',1)
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fac=sqrt(1.0/avenoise)
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do i=0,nfft2-1
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j=i0+i
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if(i.gt.nh2) j=j-nfft2
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c2(i)=fac*c1(j)
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enddo
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call timer('FFTsmal9',0)
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call four2a(c2,nfft2,1,1,1) !FFT back to time domain
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call timer('FFTsmal9',1)
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nz2=8*npts8/ndown
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return
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end subroutine downsam9
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