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https://github.com/saitohirga/WSJT-X.git
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152 lines
4.7 KiB
Fortran
152 lines
4.7 KiB
Fortran
module qra66_decode
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type :: qra66_decoder
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procedure(qra66_decode_callback), pointer :: callback
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contains
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procedure :: decode
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end type qra66_decoder
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abstract interface
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subroutine qra66_decode_callback (this,nutc,sync,nsnr,dt,freq, &
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decoded,nap,qual,ntrperiod,fmid,w50)
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import qra66_decoder
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implicit none
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class(qra66_decoder), intent(inout) :: this
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integer, intent(in) :: nutc
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real, intent(in) :: sync
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integer, intent(in) :: nsnr
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real, intent(in) :: dt
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real, intent(in) :: freq
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character(len=37), intent(in) :: decoded
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integer, intent(in) :: nap
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real, intent(in) :: qual
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integer, intent(in) :: ntrperiod
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real, intent(in) :: fmid
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real, intent(in) :: w50
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end subroutine qra66_decode_callback
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end interface
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contains
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subroutine decode(this,callback,iwave,nutc,nfqso,ntol,ndepth, &
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mycall,hiscall,hisgrid)
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use timer_module, only: timer
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use packjt
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use, intrinsic :: iso_c_binding
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parameter (NFFT1=15*12000,NFFT2=15*6000)
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class(qra66_decoder), intent(inout) :: this
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procedure(qra66_decode_callback) :: callback
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character(len=12) :: mycall, hiscall
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character(len=6) :: hisgrid
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character*37 decoded
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integer*2 iwave(NFFT1) !Raw data
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integer dat4(12)
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logical lapdx,ltext
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complex c0(0:NFFT1-1) !Analytic signal, 6000 S/s
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real s3(-64:127,63)
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real a(5)
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data nc1z/-1/,nc2z/-1/,ng2z/-1/,maxaptypez/-1/
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save nc1z,nc2z,ng2z,maxaptypez
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this%callback => callback
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nsps=1920
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baud=12000.0/nsps
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df1=12000.0/NFFT1
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if(nutc.eq.-999) print*,lapdx,nfa,nfb,nfqso !Silence warning
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! Prime the QRA decoder for possible use of AP
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call packcall(mycall(1:6),nc1,ltext)
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call packcall(hiscall(1:6),nc2,ltext)
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call packgrid(hisgrid(1:4),ng2,ltext)
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nSubmode=0
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b90=20.0 !8 to 25 is OK; not very critical
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nFadingModel=1
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! AP control could be done differently, but this works well:
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maxaptype=0
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if(ndepth.eq.2) maxaptype=3
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if(ndepth.eq.3) maxaptype=5
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if(nc1.ne.nc1z .or. nc2.ne.nc2z .or. ng2.ne.ng2z .or. &
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maxaptype.ne.maxaptypez) then
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do naptype=0,maxaptype
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if(naptype.eq.2 .and. maxaptype.eq.4) cycle
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call qra64_dec(s3,nc1,nc2,ng2,naptype,1,nSubmode,b90, &
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nFadingModel,dat4,snr2,irc)
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enddo
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nc1z=nc1
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nc2z=nc2
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ng2z=ng2
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maxaptypez=maxaptype
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endif
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naptype=maxaptype
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! Downsample to give complex data at 6000 S/s
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fac=2.0/NFFT1
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c0=fac*iwave
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call four2a(c0,NFFT1,1,-1,1) !Forward c2c FFT
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c0(NFFT2/2+1:NFFT2)=0. !Zero the top half
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c0(0)=0.5*c0(0)
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call four2a(c0,nfft2,1,1,1) !Inverse c2c FFT
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call timer('sync66 ',0)
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call sync66(iwave,15*12000,nsps,nfqso,ntol,xdt,f0,snr1)
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call timer('sync66 ',1)
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jpk=(xdt+0.5)*6000 - 384 !### Empirical ###
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if(jpk.lt.0) jpk=0
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a=0.
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a(1)=-(f0 + 2.0*baud) !Data tones start 2 bins higher
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call twkfreq(c0,c0,15*6000,6000.0,a)
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xdt=jpk/6000.0 - 0.5
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call spec66(c0(jpk:jpk+85*NSPS/2-1),s3)
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do j=1,63 !Normalize to symbol baseline
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call pctile(s3(:,j),192,40,base)
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s3(:,j)=s3(:,j)/base
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enddo
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s3max=20.0
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do j=1,63 !Apply AGC to suppress pings
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xx=maxval(s3(-64:127,j))
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if(xx.gt.s3max) s3(-64:127,j)=s3(-64:127,j)*s3max/xx
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enddo
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!Call Nico's QRA64 decoder
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call timer('qra64_de',0)
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call qra64_dec(s3,nc1,nc2,ng2,naptype,0,nSubmode,b90, &
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nFadingModel,dat4,snr2,irc)
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call timer('qra64_de',1)
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snr2=snr2 + 5.563 !10*log(6912/1920)
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if(irc.gt.0) call badmsg(irc,dat4,nc1,nc2,ng2)
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decoded=' '
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if(irc.ge.0) then
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call unpackmsg(dat4,decoded) !Unpack the user message
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call fmtmsg(decoded,iz)
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if(index(decoded,"000AAA ").ge.1) then
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! Suppress a certain type of garbage decode.
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decoded=' '
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irc=-1
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endif
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nsnr=nint(snr2)
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call this%callback(nutc,sync,nsnr,xdt,f0,decoded, &
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irc,qual,ntrperiod,fmid,w50)
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else
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snr2=0.
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nsnr=nint(db(sync))
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!### TEMPORARY? ###
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call this%callback(nutc,sync,nsnr,xdt,f0,decoded, &
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irc,qual,ntrperiod,fmid,w50)
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!###
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endif
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! write(61,3061) nutc,irc,xdt,f0,snr1,snr2,trim(decoded)
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!3061 format(i6.6,i4,4f10.2,2x,a)
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return
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end subroutine decode
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end module qra66_decode
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