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Bring ldpcsim40.f90 up to date and add coherent averaging option to both ldpcsim144 and ldpcsim40. These routines simulate only the performance of the code and the hash/CRC.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@7580 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
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@ -14,7 +14,7 @@ integer*1 i1hash(4)
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integer*1 msgbits(80)
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integer*4 i4Msg6BitWords(13)
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integer ihash
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real*8, allocatable :: lratio(:), rxdata(:)
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real*8, allocatable :: lratio(:), rxdata(:), rxavgd(:)
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real, allocatable :: yy(:), llr(:)
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equivalence(ihash,i1hash)
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@ -24,14 +24,14 @@ enddo
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nargs=iargc()
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if(nargs.ne.4) then
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print*,'Usage: ldpcsim niter ndither #trials s '
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print*,'Usage: ldpcsim niter navg #trials s '
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print*,'eg: ldpcsim 10 1 1000 0.75'
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return
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endif
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call getarg(1,arg)
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read(arg,*) max_iterations
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call getarg(2,arg)
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read(arg,*) max_dither
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read(arg,*) navg
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call getarg(3,arg)
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read(arg,*) ntrials
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call getarg(4,arg)
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@ -44,10 +44,10 @@ rate=real(K)/real(N)
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write(*,*) "rate: ",rate
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write(*,*) "niter= ",max_iterations," ndither= ",max_dither," s= ",s
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write(*,*) "niter= ",max_iterations," navg= ",navg," s= ",s
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allocate ( codeword(N), decoded(K), message(K) )
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allocate ( lratio(N), rxdata(N), yy(N), llr(N) )
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allocate ( lratio(N), rxdata(N), rxavgd(N), yy(N), llr(N) )
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msg="K9AN K1JT EN50"
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call packmsg(msg,i4Msg6BitWords,itype) !Pack into 12 6-bit bytes
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@ -95,11 +95,16 @@ do idb = -6, 14
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nbadhash=0
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do itrial=1, ntrials
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rxavgd=0d0
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do iav=1,navg
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call sgran()
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! Create a realization of a noisy received word
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do i=1,N
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rxdata(i) = 2.0*codeword(i)-1.0 + sigma*gran()
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enddo
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rxavgd=rxavgd+rxdata
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enddo
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rxdata=rxavgd
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! Correct signal normalization is important for this decoder.
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rxav=sum(rxdata)/N
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@ -7,39 +7,41 @@ use packjt
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character*22 msg,msgsent,msgreceived
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character*8 arg
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integer*1, allocatable :: codeword(:), decoded(:), message(:)
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real*8, allocatable :: lratio(:), rxdata(:)
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real*8, allocatable :: rxdata(:), rxavgd(:)
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real, allocatable :: llr(:)
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integer ihash
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integer*1 hardbits(32)
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nargs=iargc()
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if(nargs.ne.4) then
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print*,'Usage: ldpcsim niter ndither #trials s '
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print*,'Usage: ldpcsim niter navg #trials s '
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print*,'eg: ldpcsim 10 1 1000 0.75'
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return
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endif
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call getarg(1,arg)
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read(arg,*) max_iterations
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call getarg(2,arg)
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read(arg,*) max_dither
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read(arg,*) navg
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call getarg(3,arg)
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read(arg,*) ntrials
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call getarg(4,arg)
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read(arg,*) s
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n=32
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K=16
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N=32
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!rate=real(K)/real(N)
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! don't count hash bits as data bits
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rate=4.0/real(N)
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write(*,*) "rate: ",rate
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write(*,*) "niter= ",max_iterations," ndither= ",max_dither," s= ",s
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write(*,*) "niter= ",max_iterations,"navg= ",navg," s= ",s
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allocate ( codeword(N), decoded(K), message(K) )
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allocate ( lratio(N), rxdata(N), llr(N) )
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allocate ( rxdata(N), rxavgd(N), llr(N) )
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msg="K1JT K9AN"
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irpt=14
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call fmtmsg(msg,iz)
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call hash(msg,22,ihash)
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irpt=14
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ihash=iand(ihash,4095) !12-bit hash
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ig=16*ihash + irpt !4-bit report
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write(*,*) irpt,ihash,ig
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@ -62,11 +64,16 @@ do idb = 0, 30
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itsum=0
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do itrial=1, ntrials
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rxavgd=0d0
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do iav=1,navg
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call sgran()
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! Create a realization of a noisy received word
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do i=1,N
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rxdata(i) = 2.0*codeword(i)-1.0 + sigma*gran()
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enddo
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rxavgd=rxavgd+rxdata
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enddo
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rxdata=rxavgd
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! Correct signal normalization is important for this decoder.
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rxav=sum(rxdata)/N
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@ -80,7 +87,6 @@ do idb = 0, 30
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endif
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llr=2.0*rxdata/(ss*ss)
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lratio=exp(llr)
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call bpdecode40(llr, max_iterations, decoded, niterations)
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! If the decoder finds a valid codeword, niterations will be .ge. 0.
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