mirror of
https://github.com/saitohirga/WSJT-X.git
synced 2024-11-26 06:08:42 -05:00
485 lines
15 KiB
Fortran
485 lines
15 KiB
Fortran
subroutine ft4_decode(cdatetime0,tbuf,nfa,nfb,nQSOProgress,ncontest,nfqso, &
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iwave,ndecodes,mycall,hiscall,cqstr,line,data_dir)
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use packjt77
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include 'ft4_params.f90'
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parameter (NSS=NSPS/NDOWN)
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character message*37,msgsent*37,msg0*37
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character c77*77
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character*61 line,linex(100)
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character*37 decodes(100)
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character*512 data_dir,fname
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character*17 cdatetime0
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character*12 mycall,hiscall
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character*12 mycall0,hiscall0
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character*6 hhmmss
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character*4 cqstr,cqstr0
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complex cd2(0:NMAX/NDOWN-1) !Complex waveform
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complex cb(0:NMAX/NDOWN-1)
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complex cd(0:NN*NSS-1) !Complex waveform
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complex ctwk(4*NSS),ctwk2(4*NSS)
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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 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 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
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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 msg0/' '/
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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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data m73/0,1,1,1,1,1,1,0,1,0,0,1,0,1,0,0,0,0,1/
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data mrr73/0,1,1,1,1,1,1,0,0,1,1,1,0,1,0,1,0,0,1/
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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,linex,apbits,nappasses,naptypes, &
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mycall0,hiscall0,msg0,cqstr0
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call clockit('ft4_deco',0)
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hhmmss=cdatetime0(8:13)
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if(first) then
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fs=12000.0/NDOWN !Sample rate after downsampling
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dt=1/fs !Sample interval after downsample (s)
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tt=NSPS*dt !Duration of "itone" symbols (s)
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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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mrrr=2*mod(mrrr+rvec(59:77),2)-1
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m73=2*mod(m73+rvec(59:77),2)-1
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mrr73=2*mod(mrr73+rvec(59:77),2)-1
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nappasses(0)=2
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nappasses(1)=2
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nappasses(2)=2
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nappasses(3)=2
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nappasses(4)=2
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nappasses(5)=3
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! iaptype
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!------------------------
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! 1 CQ ??? ??? (29 ap bits)
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! 2 MyCall ??? ??? (29 ap bits)
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! 3 MyCall DxCall ??? (58 ap bits)
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! 4 MyCall DxCall RRR (77 ap bits)
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! 5 MyCall DxCall 73 (77 ap bits)
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! 6 MyCall DxCall RR73 (77 ap bits)
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!********
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naptypes(0,1:4)=(/1,2,0,0/) ! Tx6 selected (CQ)
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naptypes(1,1:4)=(/2,3,0,0/) ! Tx1
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naptypes(2,1:4)=(/2,3,0,0/) ! Tx2
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naptypes(3,1:4)=(/3,6,0,0/) ! Tx3
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naptypes(4,1:4)=(/3,6,0,0/) ! Tx4
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naptypes(5,1:4)=(/3,1,2,0/) ! Tx5
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mycall0=''
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hiscall0=''
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cqstr0=''
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first=.false.
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endif
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if(cqstr.ne.cqstr0) then
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i0=index(cqstr,' ')
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if(i0.le.1) then
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message='CQ A1AA AA01'
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else
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message='CQ '//cqstr(1:i0-1)//' A1AA AA01'
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endif
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i3=-1
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n3=-1
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call pack77(message,i3,n3,c77)
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call unpack77(c77,1,msgsent,unpk77_success)
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read(c77,'(29i1)') mcq
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mcq=2*mod(mcq+rvec(1:29),2)-1
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cqstr0=cqstr
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endif
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l1=index(mycall,char(0))
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if(l1.ne.0) mycall(l1:)=" "
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l1=index(hiscall,char(0))
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if(l1.ne.0) hiscall(l1:)=" "
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if(mycall.ne.mycall0 .or. hiscall.ne.hiscall0) then
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apbits=0
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apbits(1)=99
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apbits(30)=99
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apmy_ru=0
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aphis_fd=0
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if(len(trim(mycall)) .lt. 3) go to 10
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nohiscall=.false.
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hiscall0=hiscall
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if(len(trim(hiscall0)).lt.3) then
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hiscall0=mycall ! use mycall for dummy hiscall - mycall won't be hashed.
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nohiscall=.true.
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endif
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message=trim(mycall)//' '//trim(hiscall0)//' RR73'
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i3=-1
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n3=-1
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call pack77(message,i3,n3,c77)
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call unpack77(c77,1,msgsent,unpk77_success)
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if(i3.ne.1 .or. (message.ne.msgsent) .or. .not.unpk77_success) go to 10
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read(c77,'(77i1)') message77
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apmy_ru=2*mod(message77(1:28)+rvec(2:29),2)-1
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aphis_fd=2*mod(message77(30:57)+rvec(29:56),2)-1
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message77=mod(message77+rvec,2)
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call encode174_91(message77,cw)
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apbits=2*cw-1
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if(nohiscall) apbits(30)=99
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10 continue
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mycall0=mycall
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hiscall0=hiscall
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endif
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candidate=0.0
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ncand=0
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syncmin=1.2
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maxcand=100
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fa=nfa
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fb=nfb
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call clockit('getcand4',0)
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call getcandidates4(iwave,fa,fb,syncmin,nfqso,maxcand,savg,candidate, &
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ncand,sbase)
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call clockit('getcand4',1)
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ndecodes=0
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do icand=1,ncand
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f0=candidate(1,icand)
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snr=candidate(3,icand)-1.0
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if( f0.le.10.0 .or. f0.ge.4990.0 ) cycle
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call clockit('ft4_down',0)
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call ft4_downsample(iwave,f0,cd2) !Downsample from 512 to 32 Sa/Symbol
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call clockit('ft4_down',1)
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sum2=sum(cd2*conjg(cd2))/(real(NMAX)/real(NDOWN))
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if(sum2.gt.0.0) cd2=cd2/sqrt(sum2)
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! Sample rate is now 12000/16 = 750 samples/second
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do isync=1,2
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if(isync.eq.1) then
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idfmin=-12
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idfmax=12
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idfstp=3
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ibmin=0
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ibmax=216 !Max DT = 216/750 = 0.288 s
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ibstp=4
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else
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idfmin=idfbest-4
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idfmax=idfbest+4
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idfstp=1
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ibmin=max(0,ibest-5)
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ibmax=min(ibest+5,NMAX/NDOWN-1)
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ibstp=1
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endif
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ibest=-1
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smax=-99.
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idfbest=0
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do idf=idfmin,idfmax,idfstp
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a=0.
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a(1)=real(idf)
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ctwk=1.
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call clockit('twkfreq1',0)
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call twkfreq1(ctwk,4*NSS,fs,a,ctwk2)
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call clockit('twkfreq1',1)
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call clockit('sync4d ',0)
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do istart=ibmin,ibmax,ibstp
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call sync4d(cd2,istart,ctwk2,1,sync,sync2) !Find sync power
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if(sync.gt.smax) then
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smax=sync
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ibest=istart
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idfbest=idf
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endif
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enddo
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call clockit('sync4d ',1)
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enddo
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enddo
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f0=f0+real(idfbest)
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if( f0.le.10.0 .or. f0.ge.4990.0 ) cycle
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call clockit('ft4down ',0)
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call ft4_downsample(iwave,f0,cb) !Final downsample with corrected f0
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call clockit('ft4down ',1)
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sum2=sum(abs(cb)**2)/(real(NSS)*NN)
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if(sum2.gt.0.0) cb=cb/sqrt(sum2)
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cd=cb(ibest:ibest+NN*NSS-1)
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call clockit('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 clockit('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 clockit('normaliz',0)
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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 clockit('normaliz',1)
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hbits=0
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where(bmeta.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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ns4=count(hbits(199:206).eq.(/1,0,1,1,0,0,0,1/))
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nsync_qual=ns1+ns2+ns3+ns4
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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=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=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=scalefac*llrc
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apmag=maxval(abs(llra))*1.1
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npasses=3+nappasses(nQSOProgress)
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if(ncontest.ge.5) npasses=3 ! Don't support Fox and Hound
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do ipass=1,npasses
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if(ipass.eq.1) llr=llra
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if(ipass.eq.2) llr=llrb
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if(ipass.eq.3) llr=llrc
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if(ipass.le.3) then
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apmask=0
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iaptype=0
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endif
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if(ipass .gt. 3) then
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llrd=llrc
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iaptype=naptypes(nQSOProgress,ipass-3)
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! ncontest=0 : NONE
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! 1 : NA_VHF
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! 2 : EU_VHF
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! 3 : FIELD DAY
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! 4 : RTTY
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! 5 : FOX
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! 6 : HOUND
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!
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! Conditions that cause us to bail out of AP decoding
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napwid=50
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if(ncontest.le.4 .and. iaptype.ge.3 .and. (abs(f0-nfqso).gt.napwid) ) cycle
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if(iaptype.ge.2 .and. apbits(1).gt.1) cycle ! No, or nonstandard, mycall
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if(iaptype.ge.3 .and. apbits(30).gt.1) cycle ! No, or nonstandard, dxcall
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if(iaptype.eq.1) then ! CQ or CQ TEST or CQ FD or CQ RU or CQ SCC
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apmask=0
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apmask(1:29)=1
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llrd(1:29)=apmag*mcq(1:29)
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endif
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if(iaptype.eq.2) then ! MyCall,???,???
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apmask=0
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if(ncontest.eq.0.or.ncontest.eq.1) then
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apmask(1:29)=1
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llrd(1:29)=apmag*apbits(1:29)
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else if(ncontest.eq.2) then
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apmask(1:28)=1
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llrd(1:28)=apmag*apbits(1:28)
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else if(ncontest.eq.3) then
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apmask(1:28)=1
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llrd(1:28)=apmag*apbits(1:28)
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else if(ncontest.eq.4) then
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apmask(2:29)=1
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llrd(2:29)=apmag*apmy_ru(1:28)
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endif
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endif
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if(iaptype.eq.3) then ! MyCall,DxCall,???
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apmask=0
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if(ncontest.eq.0.or.ncontest.eq.1.or.ncontest.eq.2) then
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apmask(1:58)=1
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llrd(1:58)=apmag*apbits(1:58)
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else if(ncontest.eq.3) then ! Field Day
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apmask(1:56)=1
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llrd(1:28)=apmag*apbits(1:28)
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llrd(29:56)=apmag*aphis_fd(1:28)
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else if(ncontest.eq.4) then ! RTTY RU
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apmask(2:57)=1
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llrd(2:29)=apmag*apmy_ru(1:28)
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llrd(30:57)=apmag*apbits(30:57)
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endif
|
|
endif
|
|
|
|
if(iaptype.eq.4 .or. iaptype.eq.5 .or. iaptype.eq.6) then
|
|
apmask=0
|
|
if(ncontest.le.4) then
|
|
apmask(1:91)=1 ! mycall, hiscall, RRR|73|RR73
|
|
if(iaptype.eq.6) llrd(1:91)=apmag*apbits(1:91)
|
|
endif
|
|
endif
|
|
|
|
llr=llrd
|
|
endif
|
|
max_iterations=40
|
|
message77=0
|
|
call clockit('bpdecode',0)
|
|
call bpdecode174_91(llr,apmask,max_iterations,message77, &
|
|
cw,nharderror,niterations)
|
|
call clockit('bpdecode',1)
|
|
if(sum(message77).eq.0) cycle
|
|
if( nharderror.ge.0 ) then
|
|
message77=mod(message77+rvec,2) ! remove rvec scrambling
|
|
write(c77,'(77i1)') message77(1:77)
|
|
call unpack77(c77,1,message,unpk77_success)
|
|
idupe=0
|
|
do i=1,ndecodes
|
|
if(decodes(i).eq.message) idupe=1
|
|
enddo
|
|
if(ibest.le.10 .and. message.eq.msg0) idupe=1 !Already decoded
|
|
if(idupe.eq.1) exit
|
|
ndecodes=ndecodes+1
|
|
decodes(ndecodes)=message
|
|
if(snr.gt.0.0) then
|
|
xsnr=10*log10(snr)-14.0
|
|
else
|
|
xsnr=-20.0
|
|
endif
|
|
nsnr=nint(max(-20.0,xsnr))
|
|
freq=f0
|
|
tsig=mod(tbuf + ibest/750.0,100.0)
|
|
|
|
write(line,1000) hhmmss,nsnr,tsig,nint(freq),message
|
|
1000 format(a6,i4,f5.1,i5,' + ',1x,a37)
|
|
l1=index(data_dir,char(0))-1
|
|
if(l1.ge.1) data_dir(l1+1:l1+1)="/"
|
|
fname=data_dir(1:l1+1)//'all_ft4.txt'
|
|
open(24,file=trim(fname),status='unknown',position='append')
|
|
write(24,1002) cdatetime0,nsnr,tsig,nint(freq),message, &
|
|
nharderror,nsync_qual,ipass,niterations,iaptype,nsync
|
|
if(hhmmss.eq.' ') write(*,1002) cdatetime0,nsnr, &
|
|
tsig,nint(freq),message,nharderror,nsync_qual,ipass, &
|
|
niterations,iaptype
|
|
1002 format(a17,i4,f5.1,i5,' Rx ',a37,6i4)
|
|
close(24)
|
|
linex(ndecodes)=line
|
|
if(ibest.ge.ibmax-15) msg0=message !Possible dupe candidate
|
|
exit
|
|
endif
|
|
enddo !Sequence estimation
|
|
enddo !Candidate list
|
|
call clockit('ft4_deco',1)
|
|
call clockit2(data_dir)
|
|
call clockit('ft4_deco',101)
|
|
return
|
|
|
|
entry get_ft4msg(idecode,line)
|
|
line=linex(idecode)
|
|
return
|
|
|
|
end subroutine ft4_decode
|