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Not finished, but thunderstorm is coming ...
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/map65@489 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
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@ -43,7 +43,8 @@ integer idphi !Phase offset in Y channel (deg) GUI
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integer nkeep !Timeout limit for band maps (min) GUI
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integer nmode !Which WSJT mode? GUI,Decoder
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integer mode65 !JT65 sub-mode (A/B/C ==> 1/2/4) GUI,SoundIn,Decoder
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integer nclip !Clipping level GUI
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integer nbpp !# FFT Bins/pixel, wideband waterfall Spec
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integer nfullspec !Set to 1 to display full spectrum GUI
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integer ndebug !Write debugging info? GUI
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integer ndphi !Set to 1 to compute dphi GUI,Decoder
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integer nblank !Is NB checked? GUI
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@ -103,7 +104,7 @@ common/gcom2/ps0(431),psavg(450),s2(64,3100),ccf(-5:540), &
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ndecdone,npingtime,ierr,lauto,mantx,nrestart,ntr,nmsg,nsave,nadd5, &
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dftolerance,LDecoded,rxdone,monitoring,nzap,minsigdb, &
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nclearave,nfreeze,nafc,ncsmin,newspec,nfa,nfb,nfcal,idphi,nkeep, &
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nmode,mode65,nclip,ndebug,ndphi, &
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nmode,mode65,nbpp,nfullspec,ndebug,ndphi, &
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nblank,nport,mousedf,mousefqso,neme,nrw26,naggressive,ntx2,nagain, &
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shok,sendingsh,d2a(661500),d2b(661500),b(60000),jza,jzb,ntime, &
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idinterval,msmax,lenappdir,idf,ndiskdat,nlines,nflat,ntxreq,ntxnow, &
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1
map65.py
1
map65.py
@ -1761,6 +1761,7 @@ GenStdMsgs()
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Audio.gcom4.addpfx=(options.addpfx.get().lstrip()+' ')[:8]
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Audio.gcom2.mousefqso=125
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Audio.gcom2.ncsmin=4
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Audio.gcom2.nfullspec=0
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monitor()
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first=1
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if g.Win32: root.iconbitmap("wsjt.ico")
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30
spec.f90
30
spec.f90
@ -37,11 +37,6 @@ subroutine spec(brightness,contrast,ngain,nspeed,a,a2)
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nlines=322/nadd
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call zero(s,NFFT*NY)
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k=0
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fselect=mousefqso + 1.6
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imid=nint(1000.0*(fselect-125.0+48.0)/df)
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ia=imid-374
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ib=ia+749
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do j=1,nlines
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do n=1,nadd
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k=k+1
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@ -60,16 +55,30 @@ subroutine spec(brightness,contrast,ngain,nspeed,a,a2)
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gain=40*sqrt(nstep(nspeed)/5.0) * 5.0**(0.01*contrast)
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gamma=1.3 + 0.01*contrast
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offset=(brightness+64.0)/2
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k=0
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fac=20.0/nadd
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nbpp=NFFT/NX !Bins per pixel in wide waterfall
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do j=nlines,1,-1 !Reverse order so last will be on top
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nbpp=(nfb-nfa)*NFFT/(96.0*NX) !Bins per pixel in wideband (upper) waterfall
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fselect=mousefqso + 1.6
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imid=nint(1000.0*(fselect-125.0+48.0)/df)
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fmid=0.5*(nfa+nfb)
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imid0=nint(1000.0*(fmid-125.0+48.0)/df)
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i0=imid-374
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ii0=imid-374*nbpp
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if(nfullspec.eq.1) then
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nbpp=NFFT/NX
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ii0=0
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endif
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k=0
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do j=nlines,1,-1 !Reverse order so last will be on top
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do i=1,NX
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k=k+1
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n=0
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x=0.
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do ii=(i-1)*nbpp+1,i*nbpp
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iia=(i-1)*nbpp + ii0 + 1
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iib=i*nbpp + ii0
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do ii=iia,iib
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x=max(x,s(ii,j))
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enddo
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x=fac*x
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@ -77,8 +86,9 @@ subroutine spec(brightness,contrast,ngain,nspeed,a,a2)
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n=min(252,max(0,n))
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a(k)=n
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! Now do the lower (zoomed) waterfall with one FFT bin per pixel.
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n=0
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x=fac*s(ia+i-1,j)
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x=fac*s(i0+i-1,j)
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if(x.gt.0.0) n=(3.0*x)**gamma + offset
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n=min(252,max(0,n))
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a2(k)=n
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25
specjt.py
25
specjt.py
@ -110,8 +110,13 @@ def pal_AFMHot():
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#---------------------------------------------------- fdf_change
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# Readout of graphical cursor location
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def fdf_change(event):
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df=96.0/750.0
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fmid=122.8 # empirical
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bw=float(Audio.gcom2.nfb - Audio.gcom2.nfa)
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fmid=130.0
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if Audio.gcom2.nfullspec:
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bw=96.0 #Total bw 96 kHz
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fmid=125.0 - 2.2 #Empirical
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df=bw/NX #kHz per pixel
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g.Freq=df*(event.x-375) + fmid
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n=int(g.Freq+0.5)
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t="%d" % (n,)
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@ -319,11 +324,15 @@ def update():
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#-------------------------------------------------------- draw_axis
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def draw_axis():
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c.delete(ALL)
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xmid=125.0 - 2.3 #Empirical
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bw=96.0
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x1=int(xmid-0.6*bw)
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x2=int(xmid+0.6*bw)
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xdf=bw/NX #128 Hz
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bw=float(Audio.gcom2.nfb - Audio.gcom2.nfa)
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xmid=130.0
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if Audio.gcom2.nfullspec:
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bw=96.0 #Total bw 96 kHz
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xmid=125.0 - 2.3 #Empirical
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xdf=bw/NX #kHz per pixel
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x1=int(xmid-0.6*bw) #Make it too wide, to be
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x2=int(xmid+0.6*bw) #sure to get all the numbers
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# print Audio.gcom2.nfullspec,bw,xdf,x1,x2
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for ix in range(x1,x2,1):
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i=0.5*NX + (ix-xmid)/xdf
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j=20
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@ -334,7 +343,7 @@ def draw_axis():
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if ix<100: x=x+1
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y=8
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c.create_text(x,y,text=str(ix))
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c.create_line(i,25,i,j,fill='black')
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c.create_line(i,25,i,j,fill='black') #Draw the upper scale
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c2.delete(ALL)
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xmid2=0
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