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https://github.com/saitohirga/WSJT-X.git
synced 2024-11-22 04:11:16 -05:00
Move demod and bit metric calculation to a subroutine. This will make
it easier to experiment with alternative schemes for demod.
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@ -573,6 +573,7 @@ set (wsjt_FSRCS
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lib/sync64.f90
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lib/sync65.f90
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lib/ft4/getcandidates4.f90
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lib/ft4/get_ft4_bitmetrics.f90
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lib/ft8/sync8.f90
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lib/ft8/sync8d.f90
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lib/ft4/sync4d.f90
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114
lib/ft4/get_ft4_bitmetrics.f90
Normal file
114
lib/ft4/get_ft4_bitmetrics.f90
Normal file
@ -0,0 +1,114 @@
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subroutine get_ft4_bitmetrics(cd,smax,bitmetrics,badsync)
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include 'ft4_params.f90'
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parameter (NSS=NSPS/NDOWN,NDMAX=NMAX/NDOWN)
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complex cd(0:NN*NSS-1)
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complex cs(0:3,NN)
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complex csymb(NSS)
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integer icos4a(0:3),icos4b(0:3),icos4c(0:3),icos4d(0:3)
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integer graymap(0:3)
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integer ip(1)
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logical one(0:255,0:7) ! 256 4-symbol sequences, 8 bits
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logical first
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logical badsync
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real bitmetrics(2*NN,3)
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real s2(0:255)
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real s4(0:3,NN)
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data icos4a/0,1,3,2/
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data icos4b/1,0,2,3/
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data icos4c/2,3,1,0/
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data icos4d/3,2,0,1/
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data graymap/0,1,3,2/
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data first/.true./
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save first,one
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if(first) then
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one=.false.
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do i=0,255
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do j=0,7
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if(iand(i,2**j).ne.0) one(i,j)=.true.
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enddo
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enddo
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first=.false.
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endif
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do k=1,NN
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i1=(k-1)*NSS
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csymb=cd(i1:i1+NSS-1)
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call four2a(csymb,NSS,1,-1,1)
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cs(0:3,k)=csymb(1:4)
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s4(0:3,k)=abs(csymb(1:4))
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enddo
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! Sync quality check
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is1=0
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is2=0
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is3=0
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is4=0
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badsync=.false.
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do k=1,4
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ip=maxloc(s4(:,k))
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if(icos4a(k-1).eq.(ip(1)-1)) is1=is1+1
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ip=maxloc(s4(:,k+33))
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if(icos4b(k-1).eq.(ip(1)-1)) is2=is2+1
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ip=maxloc(s4(:,k+66))
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if(icos4c(k-1).eq.(ip(1)-1)) is3=is3+1
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ip=maxloc(s4(:,k+99))
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if(icos4d(k-1).eq.(ip(1)-1)) is4=is4+1
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enddo
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nsync=is1+is2+is3+is4 !Number of correct hard sync symbols, 0-16
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if(smax .lt. 0.7 .or. nsync .lt. 8) then
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badsync=.true.
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return
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endif
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do nseq=1,3 !Try coherent sequences of 1, 2, and 4 symbols
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if(nseq.eq.1) nsym=1
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if(nseq.eq.2) nsym=2
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if(nseq.eq.3) nsym=4
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nt=2**(2*nsym)
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do ks=1,NN-nsym+1,nsym !87+16=103 symbols.
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amax=-1.0
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do i=0,nt-1
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i1=i/64
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i2=iand(i,63)/16
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i3=iand(i,15)/4
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i4=iand(i,3)
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if(nsym.eq.1) then
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s2(i)=abs(cs(graymap(i4),ks))
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elseif(nsym.eq.2) then
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s2(i)=abs(cs(graymap(i3),ks)+cs(graymap(i4),ks+1))
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elseif(nsym.eq.4) then
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s2(i)=abs(cs(graymap(i1),ks ) + &
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cs(graymap(i2),ks+1) + &
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cs(graymap(i3),ks+2) + &
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cs(graymap(i4),ks+3) &
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)
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else
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print*,"Error - nsym must be 1, 2, or 4."
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endif
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enddo
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ipt=1+(ks-1)*2
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if(nsym.eq.1) ibmax=1
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if(nsym.eq.2) ibmax=3
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if(nsym.eq.4) ibmax=7
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do ib=0,ibmax
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bm=maxval(s2(0:nt-1),one(0:nt-1,ibmax-ib)) - &
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maxval(s2(0:nt-1),.not.one(0:nt-1,ibmax-ib))
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if(ipt+ib.gt.2*NN) cycle
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bitmetrics(ipt+ib,nseq)=bm
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enddo
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enddo
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enddo
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bitmetrics(205:206,2)=bitmetrics(205:206,1)
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bitmetrics(201:204,3)=bitmetrics(201:204,2)
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bitmetrics(205:206,3)=bitmetrics(205:206,1)
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call normalizebmet(bitmetrics(:,1),2*NN)
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call normalizebmet(bitmetrics(:,2),2*NN)
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call normalizebmet(bitmetrics(:,3),2*NN)
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return
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end subroutine get_ft4_bitmetrics
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@ -45,43 +45,31 @@ contains
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complex cb(0:NDMAX-1)
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complex cd(0:NN*NSS-1) !Complex waveform
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complex ctwk(2*NSS),ctwk2(2*NSS,-16:16)
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complex csymb(NSS)
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complex cs(0:3,NN)
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real s4(0:3,NN)
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real bmeta(2*NN),bmetb(2*NN),bmetc(2*NN)
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real a(5)
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real bitmetrics(2*NN,3)
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real dd(NMAX)
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real llr(2*ND),llra(2*ND),llrb(2*ND),llrc(2*ND),llrd(2*ND)
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real s2(0:255)
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real candidate(3,100)
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real savg(NH1),sbase(NH1)
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integer apbits(2*ND)
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integer apmy_ru(28),aphis_fd(28)
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integer icos4a(0:3),icos4b(0:3),icos4c(0:3),icos4d(0:3)
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integer*2 iwave(NMAX) !Raw received data
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integer*1 message77(77),rvec(77),apmask(2*ND),cw(2*ND)
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integer*1 hbits(2*NN)
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integer graymap(0:3)
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integer i4tone(103)
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integer ip(1)
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integer nappasses(0:5) ! # of decoding passes for QSO States 0-5
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integer naptypes(0:5,4) ! nQSOProgress, decoding pass
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integer mcq(29)
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integer mrrr(19),m73(19),mrr73(19)
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logical nohiscall,unpk77_success
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logical one(0:255,0:7) ! 256 4-symbol sequences, 8 bits
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logical first, dobigfft
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logical dosubtract,doosd
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logical badsync
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logical, intent(in) :: lapcqonly
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data icos4a/0,1,3,2/
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data icos4b/1,0,2,3/
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data icos4c/2,3,1,0/
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data icos4d/3,2,0,1/
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data graymap/0,1,3,2/
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data first/.true./
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data mcq/0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,1,0,0/
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data mrrr/0,1,1,1,1,1,1,0,1,0,0,1,0,0,1,0,0,0,1/
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@ -90,7 +78,7 @@ contains
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data rvec/0,1,0,0,1,0,1,0,0,1,0,1,1,1,1,0,1,0,0,0,1,0,0,1,1,0,1,1,0, &
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1,0,0,1,0,1,1,0,0,0,0,1,0,0,0,1,0,1,0,0,1,1,1,1,0,0,1,0,1, &
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0,1,0,1,0,1,1,0,1,1,1,1,1,0,0,0,1,0,1/
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save fs,dt,tt,txt,twopi,h,one,first,apbits,nappasses,naptypes, &
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save fs,dt,tt,txt,twopi,h,first,apbits,nappasses,naptypes, &
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mycall0,hiscall0,cqstr0,ctwk2
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this%callback => callback
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@ -105,12 +93,6 @@ contains
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txt=NZ*dt !Transmission length (s) without ramp up/down
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twopi=8.0*atan(1.0)
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h=1.0
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one=.false.
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do i=0,255
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do j=0,7
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if(iand(i,2**j).ne.0) one(i,j)=.true.
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enddo
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enddo
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do idf=-16,16
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a=0.
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@ -302,89 +284,14 @@ contains
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else
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cd(-ibest:ibest+NN*NSS-1)=cb(0:NN*NSS+2*ibest-1)
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endif
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call timer('four2a ',0)
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do k=1,NN
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i1=(k-1)*NSS
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csymb=cd(i1:i1+NSS-1)
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call four2a(csymb,NSS,1,-1,1)
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cs(0:3,k)=csymb(1:4)
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s4(0:3,k)=abs(csymb(1:4))
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enddo
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call timer('four2a ',1)
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! Sync quality check
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is1=0
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is2=0
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is3=0
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is4=0
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do k=1,4
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ip=maxloc(s4(:,k))
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if(icos4a(k-1).eq.(ip(1)-1)) is1=is1+1
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ip=maxloc(s4(:,k+33))
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if(icos4b(k-1).eq.(ip(1)-1)) is2=is2+1
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ip=maxloc(s4(:,k+66))
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if(icos4c(k-1).eq.(ip(1)-1)) is3=is3+1
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ip=maxloc(s4(:,k+99))
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if(icos4d(k-1).eq.(ip(1)-1)) is4=is4+1
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enddo
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nsync=is1+is2+is3+is4 !Number of correct hard sync symbols, 0-16
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if(smax .lt. 0.7 .or. nsync .lt. 8) cycle
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do nseq=1,3 !Try coherent sequences of 1, 2, and 4 symbols
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if(nseq.eq.1) nsym=1
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if(nseq.eq.2) nsym=2
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if(nseq.eq.3) nsym=4
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nt=2**(2*nsym)
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do ks=1,NN-nsym+1,nsym !87+16=103 symbols.
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amax=-1.0
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do i=0,nt-1
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i1=i/64
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i2=iand(i,63)/16
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i3=iand(i,15)/4
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i4=iand(i,3)
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if(nsym.eq.1) then
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s2(i)=abs(cs(graymap(i4),ks))
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elseif(nsym.eq.2) then
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s2(i)=abs(cs(graymap(i3),ks)+cs(graymap(i4),ks+1))
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elseif(nsym.eq.4) then
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s2(i)=abs(cs(graymap(i1),ks ) + &
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cs(graymap(i2),ks+1) + &
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cs(graymap(i3),ks+2) + &
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cs(graymap(i4),ks+3) &
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)
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else
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print*,"Error - nsym must be 1, 2, or 4."
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endif
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enddo
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ipt=1+(ks-1)*2
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if(nsym.eq.1) ibmax=1
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if(nsym.eq.2) ibmax=3
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if(nsym.eq.4) ibmax=7
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do ib=0,ibmax
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bm=maxval(s2(0:nt-1),one(0:nt-1,ibmax-ib)) - &
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maxval(s2(0:nt-1),.not.one(0:nt-1,ibmax-ib))
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if(ipt+ib.gt.2*NN) cycle
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if(nsym.eq.1) then
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bmeta(ipt+ib)=bm
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elseif(nsym.eq.2) then
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bmetb(ipt+ib)=bm
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elseif(nsym.eq.4) then
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bmetc(ipt+ib)=bm
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endif
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enddo
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enddo
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enddo
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bmetb(205:206)=bmeta(205:206)
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bmetc(201:204)=bmetb(201:204)
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bmetc(205:206)=bmeta(205:206)
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call normalizebmet(bmeta,2*NN)
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call normalizebmet(bmetb,2*NN)
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call normalizebmet(bmetc,2*NN)
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call timer('bitmet ',0)
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call get_ft4_bitmetrics(cd,smax,bitmetrics,badsync)
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call timer('bitmet ',1)
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if(badsync) cycle
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hbits=0
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where(bmeta.ge.0) hbits=1
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where(bitmetrics(:,1).ge.0) hbits=1
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ns1=count(hbits( 1: 8).eq.(/0,0,0,1,1,0,1,1/))
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ns2=count(hbits( 67: 74).eq.(/0,1,0,0,1,1,1,0/))
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ns3=count(hbits(133:140).eq.(/1,1,1,0,0,1,0,0/))
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@ -393,17 +300,17 @@ contains
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if(nsync_qual.lt. 20) cycle
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scalefac=2.83
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llra( 1: 58)=bmeta( 9: 66)
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llra( 59:116)=bmeta( 75:132)
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llra(117:174)=bmeta(141:198)
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llra( 1: 58)=bitmetrics( 9: 66, 1)
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llra( 59:116)=bitmetrics( 75:132, 1)
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llra(117:174)=bitmetrics(141:198, 1)
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llra=scalefac*llra
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llrb( 1: 58)=bmetb( 9: 66)
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llrb( 59:116)=bmetb( 75:132)
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llrb(117:174)=bmetb(141:198)
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llrb( 1: 58)=bitmetrics( 9: 66, 2)
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llrb( 59:116)=bitmetrics( 75:132, 2)
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llrb(117:174)=bitmetrics(141:198, 2)
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llrb=scalefac*llrb
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llrc( 1: 58)=bmetc( 9: 66)
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llrc( 59:116)=bmetc( 75:132)
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llrc(117:174)=bmetc(141:198)
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llrc( 1: 58)=bitmetrics( 9: 66, 3)
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llrc( 59:116)=bitmetrics( 75:132, 3)
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llrc(117:174)=bitmetrics(141:198, 3)
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llrc=scalefac*llrc
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apmag=maxval(abs(llra))*1.1
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