WSJT-X/lib/fast_decode.f90

91 lines
1.9 KiB
Fortran

subroutine fast_decode(id2,narg,trperiod,line,mycall_12, &
hiscall_12)
parameter (NMAX=30*12000)
integer*2 id2(NMAX)
integer*2 id2a(NMAX)
integer*2 id2b(NMAX)
integer narg(0:14)
double precision trperiod
real dat(30*12000)
complex cdat(262145),cdat2(262145)
logical pick,first
character*6 cfile6
character*80 line(100)
character*12 mycall_12,hiscall_12
character*6 mycall,hiscall
data first/.true./,nutca/0/,nutcb/0/
save npts,cdat,cdat2,id2a,id2b,nutca,nutcb
if(first) then
id2a=0
id2b=0
first=.false.
endif
mycall=mycall_12(1:6)
hiscall=hiscall_12(1:6)
nutc=narg(0)
ndat0=narg(1)
nsubmode=narg(2)
newdat=narg(3)
minsync=narg(4)
npick=narg(5)
t0=0.001*narg(6)
t1=0.001*narg(7)
tmid=0.5*(t0+t1)
maxlines=narg(8)
nmode=narg(9)
nrxfreq=narg(10)
ntol=narg(11)
nhashcalls=narg(12)
line(1:100)(1:1)=char(0)
if(t0.gt.trperiod) go to 900
if(t0.gt.t1) go to 900
if(nmode.eq.102) then
call fast9(id2,narg,line)
go to 900
endif
if(newdat.eq.1) then
cdat2=cdat
ndat=ndat0
call wav11(id2,ndat,dat)
nzz=11025*int(trperiod) !beware if fractional T/R period ever used here
if(ndat.lt.nzz) dat(ndat+1:nzz)=0.0
ndat=min(ndat,30*11025)
call ana932(dat,ndat,cdat,npts) !Make downsampled analytic signal
endif
! Now cdat() is the downsampled analytic signal.
! New sample rate = fsample = BW = 11025 * (9/32) = 3100.78125 Hz
! NB: npts, nsps, etc., are all reduced by 9/32
write(cfile6,'(i6.6)') nutc
nfreeze=1
mousedf=0
mousebutton=0
mode4=1
if(nsubmode.eq.1) mode4=2
nafc=0
ndebug=0
t2=0.
ia=1
ib=npts
pick=.false.
if(npick.gt.0) then
pick=.true.
dt=1.0/11025.0 * (32.0/9.0)
ia=t0/dt + 1.
ib=t1/dt + 1.
t2=t0
endif
jz=ib-ia+1
line(1:100)(1:1)=char(0)
900 return
end subroutine fast_decode