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c fin = 1
c SCILAB function : scicos
c Copyright INRIA
subroutine intsscicos
include '../stack.h'
integer start,run,finish,flag,linear
parameter (start=28,run=27,finish=15,linear=21)
integer id(nsiz)
double precision simpar(7)
integer pointi
integer funnum
external funnum
c
integer solver
common /dbcos/ idb
integer kfun
common /curblk/ kfun
c
integer iadr, sadr
c
iadr(l)=l+l-1
sadr(l)=(l/2)+1
rhs = max(0,rhs)
c
lbuf = 1
lw = lstk(top+1)
l0 = lstk(top+1-rhs)
if (rhs .ne. 6) then
call error(39)
return
endif
if (lhs .gt. 2) then
call error(41)
return
endif
c checking variable state (number 1)
c
il1 = iadr(lstk(top-rhs+1))
if (istk(il1) .ne. 16) then
err = 1
call error(56)
return
endif
n1=istk(il1+1)
l1=sadr(il1+n1+3)
c
c -- subvariable x0(state) --
il1e2=iadr(l1+istk(il1+3)-1)
n1e2 = istk(il1e2+1)
l1e2 = sadr(il1e2+4)
c
c -- subvariable z0(state) --
il1e3=iadr(l1+istk(il1+4)-1)
n1e3 = istk(il1e3+1)
l1e3 = sadr(il1e3+4)
c
c -- subvariable work(state) --
il1e4=iadr(l1+istk(il1+5)-1)
n1e4 = istk(il1e4+1)
l1e4 = sadr(il1e4+4)
c
c -- subvariable tevts(state) --
il1e5=iadr(l1+istk(il1+6)-1)
n1e5 = istk(il1e5+1)
l1e5 = sadr(il1e5+4)
c
c -- subvariable evtspt(state) --
il1e6=iadr(l1+istk(il1+7)-1)
n1e6 = istk(il1e6+1)
l1e6 = sadr(il1e6+4)
c
c -- subvariable pointi(state) --
il1e7=iadr(l1+istk(il1+8)-1)
l1e7 = sadr(il1e7+4)
pointi=stk(l1e7)
c
c -- subvariable outtb(state) --
il1e8=iadr(l1+istk(il1+9)-1)
n1e8 = istk(il1e8+1)
nout = n1e8
l1e8 = sadr(il1e8+4)
c
c checking variable tcur (number 2)
c
il2 = iadr(lstk(top-rhs+2))
if (istk(il2) .ne. 1) then
err = 2
call error(53)
return
endif
if (istk(il2+1)*istk(il2+2) .ne. 1) then
err = 2
call error(89)
return
endif
l2 = sadr(il2+4)
c checking variable tf (number 3)
c
il3 = iadr(lstk(top-rhs+3))
if (istk(il3) .ne. 1) then
err = 3
call error(53)
return
endif
if (istk(il3+1)*istk(il3+2) .ne. 1) then
err = 3
call error(89)
return
endif
l3 = sadr(il3+4)
c checking variable sim (number 4)
c
il4 = iadr(lstk(top-rhs+4))
if (istk(il4) .ne. 16) then
err = 4
call error(56)
return
endif
n4=istk(il4+1)
l4=sadr(il4+n4+3)
c
c -- subvariable funptr(sim) --
il4e2=iadr(l4+istk(il4+3)-1)
if (istk(il4e2) .ne. 15) then
err = 4
call error(56)
return
endif
nblk =istk(il4e2+1)
l4e2 = sadr(il4e2+nblk+3)
c
c -- subvariable xptr(sim) --
il4e3=iadr(l4+istk(il4+4)-1)
n4e3 = istk(il4e3+1)
l4e3 = sadr(il4e3+4)
c
c -- subvariable zptr(sim) --
il4e4=iadr(l4+istk(il4+5)-1)
n4e4 = istk(il4e4+1)
l4e4 = sadr(il4e4+4)
c
c -- subvariable zcptr (sim)
il4e5=iadr(l4+istk(il4+6)-1)
n4e5 = istk(il4e5+1)
l4e5 = sadr(il4e5+4)
c
c -- subvariable inpptr(sim) --
il4e6=iadr(l4+istk(il4+7)-1)
n4e6 = istk(il4e6+1)
ninpptr = n4e6
l4e6 = sadr(il4e6+4)
c
c -- subvariable outptr(sim) --
il4e7=iadr(l4+istk(il4+8)-1)
n4e7 = istk(il4e7+1)
noutptr = n4e7
l4e7 = sadr(il4e7+4)
c
c -- subvariable inplnk(sim) --
il4e8=iadr(l4+istk(il4+9)-1)
n4e8 = istk(il4e8+1)
ninplnk = n4e8
l4e8 = sadr(il4e8+4)
c
c -- subvariable outlnk(sim) --
il4e9=iadr(l4+istk(il4+10)-1)
n4e9 = istk(il4e9+1)
noutlnk = n4e9
l4e9 = sadr(il4e9+4)
c
c -- subvariable lnkptr(sim) --
il4e10=iadr(l4+istk(il4+11)-1)
n4e10 = istk(il4e10+1)
nlnkptr = n4e10
l4e10 = sadr(il4e10+4)
c
c -- subvariable rpar(sim) --
il4e11=iadr(l4+istk(il4+12)-1)
n4e11 = istk(il4e11+1)
nrpar = n4e11
l4e11 = sadr(il4e11+4)
c
c -- subvariable rpptr(sim) --
il4e12=iadr(l4+istk(il4+13)-1)
n4e12 = istk(il4e12+1)
l4e12 = sadr(il4e12+4)
c
c -- subvariable ipar(sim) --
il4e13=iadr(l4+istk(il4+14)-1)
n4e13 = istk(il4e13+1)
nipar = n4e13
l4e13 = sadr(il4e13+4)
c
c -- subvariable ipptr(sim) --
il4e14=iadr(l4+istk(il4+15)-1)
n4e14 = istk(il4e14+1)
l4e14 = sadr(il4e14+4)
c
c -- subvariable clkptr(sim) --
il4e15=iadr(l4+istk(il4+16)-1)
n4e15 = istk(il4e15+1)
l4e15 = sadr(il4e15+4)
c
c -- subvariable ordptr(sim) --
il4e16=iadr(l4+istk(il4+17)-1)
n4e16 = istk(il4e16+1)*istk(il4e16+2)
l4e16 = sadr(il4e16+4)
c
c -- subvariable execlk(sim) --
il4e17=iadr(l4+istk(il4+18)-1)
n4e17 = istk(il4e17+1)
m4e17 = istk(il4e17+2)
l4e17 = sadr(il4e17+4)
c
c -- subvariable ordclk(sim) --
il4e18=iadr(l4+istk(il4+19)-1)
n4e18 = istk(il4e18+1)
m4e18 = istk(il4e18+2)
l4e18 = sadr(il4e18+4)
c
c -- subvariable cord(sim) --
il4e19=iadr(l4+istk(il4+20)-1)
n4e19 = istk(il4e19+1)
m4e19= istk(il4e19+2)
l4e19 = sadr(il4e19+4)
c
c -- subvariable oord(sim) --
il4e20=iadr(l4+istk(il4+21)-1)
n4e20 = istk(il4e20+1)
m4e20=istk(il4e20+2)
l4e20 = sadr(il4e20+4)
c
c -- subvariable zord(sim) --
il4e21=iadr(l4+istk(il4+22)-1)
n4e21 = istk(il4e21+1)
m4e21=istk(il4e21+2)
l4e21 = sadr(il4e21+4)
c
c -- subvariable critev(sim) --
il4e22=iadr(l4+istk(il4+23)-1)
n4e22 = istk(il4e22+1)
l4e22 = sadr(il4e22+4)
c
c -- subvariable nb(sim) --
il4e23=iadr(l4+istk(il4+24)-1)
l4e23 = sadr(il4e23+4)
c
if (stk(l4e23) .ne. nblk) then
call error(42)
return
endif
c
c -- subvariable ztyp(sim) --
il4e24=iadr(l4+istk(il4+25)-1)
n4e24 = istk(il4e24+1)
l4e24 = sadr(il4e24+4)
lztyp=l4e24
c
c -- subvariable ndblk(sim) --
il4e25=iadr(l4+istk(il4+26)-1)
l4e25 = sadr(il4e25+4)
ndblk=stk(l4e25)
c
c -- subvariable ndcblk(sim) --
il4e26=iadr(l4+istk(il4+27)-1)
l4e26 = sadr(il4e26+4)
c
c -- subvariable subscr(sim) --
il4e27=iadr(l4+istk(il4+28)-1)
n4e27 = istk(il4e27+1)
l4e27 = sadr(il4e27+4)
c
c -- subvariable funtyp(sim) --
il4e28=iadr(l4+istk(il4+29)-1)
n4e28 = istk(il4e28+1)
l4e28 = sadr(il4e28+4)
c
c -- subvariable iord(sim) --
il4e29=iadr(l4+istk(il4+30)-1)
n4e29 = istk(il4e29+1)
m4e29=istk(il4e29+2)
niord=n4e29
l4e29 = sadr(il4e29+4)
c
c -- subvariable labels(sim) --
if(n4.ge.30) then
il4e30=iadr(l4+istk(il4+31)-1)
n4e30 = istk(il4e30+1)*istk(il4e30+2)
labptr=il4e30+4
llab=labptr+n4e30+1
nlab=istk(llab-1)-1
else
n4e30=nblk+1
labptr=iadr(lw)
llab=labptr+n4e30
err=sadr(llab+1)-lstk(bot)
if(err.gt.0) then
call error(17)
return
endif
nlab=1
call iset(n4e30,1,istk(labptr),1)
endif
c -- subvariable modptr(sim) --
il4e31=iadr(l4+istk(il4+32)-1)
n4e31 = istk(il4e31+1)
l4e31 = sadr(il4e31+4)
c
c
c
c checking variable flag (number 5)
il5 = iadr(lstk(top-rhs+5))
if (istk(il5) .ne. 10) then
err = 5
call error(55)
return
endif
if (istk(il5+1)*istk(il5+2) .ne. 1) then
err = 5
call error(89)
return
endif
if(istk(il5+6).eq.start) then
flag=1
elseif(istk(il5+6).eq.run) then
flag=2
elseif(istk(il5+6).eq.finish) then
flag=3
elseif(istk(il5+6).eq.linear) then
flag=4
else
err=5
call error(44)
return
endif
if(rhs.ge.6) then
c checking variable simpar (number 6)
c [atol rtol ttol, deltat, scale, impl, hmax]
c
il6 = iadr(lstk(top-rhs+6))
if (istk(il6) .ne. 1) then
err = 6
call error(53)
return
endif
m6 = istk(il6+1)*istk(il6+2)
if (m6 .ne. 5.and. m6.ne.4.and. m6.ne.6.and. m6.ne.7) then
err = 6
call error(89)
return
endif
l6 = sadr(il6+4)
endif
c
c cross variable size checking
c
if (n1e5 .ne. n1e6) then
call error(42)
return
endif
if (n4e3 .ne. n4e4) then
call error(42)
return
endif
if (n4e3 .ne. n4e5) then
call error(42)
return
endif
if (n4e3 .ne. n4e6) then
call error(42)
return
endif
if (n4e3 .ne. n4e7) then
call error(42)
return
endif
if (n4e3 .ne. n4e12) then
call error(42)
return
endif
if (n4e3 .ne. n4e14) then
call error(42)
return
endif
if (n4e3 .ne. n4e15) then
call error(42)
return
endif
c if (m4e16.ne.2.and.n4e16.ne.0) then
c call error(42)
c return
c endif
c if (m4e17.ne.2.and.n4e17.ne.0) then
c call error(42)
c return
c endif
if (m4e18.ne.2.and.n4e18.ne.0) then
call error(42)
return
endif
if (m4e19.ne.2.and.n4e19.ne.0) then
call error(42)
return
endif
if (m4e20.ne.2.and.n4e20.ne.0) then
call error(42)
return
endif
if (m4e21.ne.2.and.n4e21.ne.0) then
call error(42)
return
endif
if (m4e29.ne.2.and.n4e29.ne.0) then
call error(42)
return
endif
c
c cross formal parameter checking
c not implemented yet
c
c cross equal output variable checking
c not implemented yet
call entier(n4e3,stk(l4e3),istk(iadr(l4e3)))
call entier(n4e4,stk(l4e4),istk(iadr(l4e4)))
call entier(n4e5,stk(l4e5),istk(iadr(l4e5)))
call entier(n1e6,stk(l1e6),istk(iadr(l1e6)))
call entier(n4e6,stk(l4e6),istk(iadr(l4e6)))
call entier(n4e7,stk(l4e7),istk(iadr(l4e7)))
call entier(n4e8,stk(l4e8),istk(iadr(l4e8)))
call entier(n4e9,stk(l4e9),istk(iadr(l4e9)))
call entier(n4e10,stk(l4e10),istk(iadr(l4e10)))
call entier(n4e12,stk(l4e12),istk(iadr(l4e12)))
call entier(n4e13,stk(l4e13),istk(iadr(l4e13)))
call entier(n4e14,stk(l4e14),istk(iadr(l4e14)))
call entier(n4e15,stk(l4e15),istk(iadr(l4e15)))
call entier(n4e16,stk(l4e16),istk(iadr(l4e16)))
call entier(n4e31,stk(l4e31),istk(iadr(l4e31)))
call entier(n4e18*m4e18,stk(l4e18),istk(iadr(l4e18)))
call entier(n4e19*m4e19,stk(l4e19),istk(iadr(l4e19)))
call entier(n4e20*m4e20,stk(l4e20),istk(iadr(l4e20)))
call entier(n4e21*m4e21,stk(l4e21),istk(iadr(l4e21)))
call entier(n4e22,stk(l4e22),istk(iadr(l4e22)))
call entier(1,stk(l4e23),istk(iadr(l4e23)))
call entier(n4e24,stk(l4e24),istk(iadr(l4e24)))
ilztyp=iadr(l4e24)
call entier(1,stk(l4e25),istk(iadr(l4e25)))
call entier(1,stk(l4e26),istk(iadr(l4e26)))
call entier(n4e27,stk(l4e27),istk(iadr(l4e27)))
call entier(n4e28,stk(l4e28),istk(iadr(l4e28)))
ilfuntyp=iadr(l4e28)
call entier(n4e29*m4e29,stk(l4e29),istk(iadr(l4e29)))
c
if(m6.eq.4) then
call dcopy(4,stk(l6),1,simpar,1)
simpar(5)= 0.d0
simpar(6)= 0.d0
simpar(7)= 0.d0
elseif(m6.eq.5) then
call dcopy(5,stk(l6),1,simpar,1)
simpar(6)= 0.d0
simpar(7)= 0.d0
elseif(m6.eq.6) then
call dcopy(6,stk(l6),1,simpar,1)
simpar(7)= 0.d0
else
call dcopy(7,stk(l6),1,simpar,1)
endif
solver=simpar(6)
c
lfunpt=iadr(lw)
lw=sadr(lfunpt+nblk)
c
linpptr=iadr(l4e6)
llnkptr=iadr(l4e10)
iloutptr=iadr(l4e7)
c
c
c ng=istk(iadr(l4e5)+n4e5-1)-1
ilinp=iadr(l4e4)
err=lw-lstk(bot)
if (err .gt. 0) then
call error(17)
return
endif
c
c lock working area
lstk(top+1)=lw
c Set function table for blocks
lf=l4e2
do 10 i=1,nblk
ilf=iadr(lf)
if(istk(ilf).eq.11.or.istk(ilf).eq.13) then
C Block is defined by a scilab function given in the structure
istk(lfunpt-1+i)=-lf
elseif(istk(ilf).eq.10) then
buf=' '
nn=istk(ilf+5)-1
call cvstr(nn,istk(ilf+6),buf,1)
buf(nn+1:nn+1)=char(0)
ifun=funnum(buf(1:nn+1))
if (ifun.gt.0) then
C Block is defined by a C or Fortran procedure
istk(lfunpt-1+i)=ifun
else
C Block is defined by a predefined scilab function
call namstr(id,istk(ilf+6),nn,0)
fin=0
call funs(id)
if (fun.eq.-1.or.fun.eq.-2) then
istk(lfunpt-1+i)=-lstk(fin)
else
kfun=i
buf='unknown block :'//buf(1:nn)
call error(888)
return
endif
endif
else
err=4
call error(44)
return
endif
lf=lf+istk(il4e2+2+i)-istk(il4e2+1+i)
10 continue
c
if(ddt.ne.0) idb=1
c
call scicos(stk(l1e2),istk(iadr(l4e3)),stk(l1e3),
$ stk(l1e4),istk(ilinp),
$ istk(iadr(l4e31)),
& istk(llab),istk(labptr),stk(l2),stk(l3),stk(l1e5),
$ istk(iadr(l1e6)),n1e5,pointi,stk(l1e8),nout,
$ istk(lfunpt),istk(iadr(l4e28)),istk(linpptr),
$ istk(iloutptr),istk(iadr(l4e8)),istk(iadr(l4e9)),
$ istk(llnkptr),nlnkptr,stk(l4e11),istk(iadr(l4e12)),
$ istk(iadr(l4e13)),istk(iadr(l4e14)),istk(iadr(l4e15)),
$ istk(iadr(l4e16)),n4e16,
$ istk(iadr(l4e18)),istk(iadr(l4e19)),n4e19,
$ istk(iadr(l4e29)),n4e29,
$ istk(iadr(l4e20)),n4e20,istk(iadr(l4e21)),n4e21,
$ istk(iadr(l4e22)),nblk,istk(iadr(l4e24)),istk(iadr(l4e5)),
$ istk(iadr(l4e27)),n4e27,simpar,flag,ierr)
idb=0
if (ierr .gt. 0 ) then
if(ierr.eq.1) then
buf='scheduling problem'
kfun=0
elseif(ierr.eq.2) then
buf='input to zero-crossing stuck on zero'
kfun=0
elseif(ierr.eq.6) then
buf='a block has been called with input out of its domain'
elseif(ierr.eq.7) then
buf='singularity in a block'
elseif(ierr.eq.8) then
buf='block produces an internal error'
elseif(ierr.ge.1000) then
buf='unknown or erroneous block'
elseif(ierr.ge.100) then
istate=-(ierr-100)
write(buf,'(''integration problem istate='',i5)') istate
kfun=0
elseif(ierr.eq.3) then
buf='event conflict'
kfun=0
elseif(ierr.eq.20) then
buf='initial conditions not converging'
kfun=0
elseif(ierr.eq.4) then
buf='algrebraic loop detected'
kfun=0
elseif(ierr.eq.5) then
buf='cannot allocate memory'
kfun=0
elseif(ierr.eq.21) then
write(buf,'(''cannot allocate memory in block='',i5)')
$ kfun
kfun=0
elseif(ierr.eq.22) then
buf='sliding mode condition, cannot integrate'
kfun=0
else
buf='scicos unexpected error,please report...'
kfun=0
endif
if(.not.(err.gt.0.or.err1.gt.0)) call error(888)
fun=0
return
endif
if (err .gt. 0) return
c
fun=0
top=top-rhs
c
if(lhs .ge. 1) then
c
c output variable: x0(x)
c
c change pointi to double
stk(l1e7)=pointi
c change iz to double
c call int2db(n1e4,istk(iadr(l1e4)),-1,stk(l1e4),-1)
c change evtspt to double
call int2db(n1e6,istk(iadr(l1e6)),-1,stk(l1e6),-1)
top=top+1
endif
c
if(lhs .ge. 2) then
c
c output variable: t
c
top=top+1
endif
c
return
end
c
subroutine intctree
include '../stack.h'
integer iadr, sadr
iadr(l)=l+l-1
sadr(l)=(l/2)+1
c
lw = lstk(top+1)
ilw=iadr(lw)
top=top-rhs+1
itop=top
ilv=iadr(lstk(top))
lv=sadr(ilv+4)
nb=istk(ilv+1)*istk(ilv+2)
call entier(nb,stk(lv),istk(iadr(lv)))
top=top+1
iln=iadr(lstk(top))
ln=sadr(iln+4)
nnb=istk(iln+1)*istk(iln+2)
call entier(nnb,stk(ln),istk(iadr(ln)))
top=top+1
ild=iadr(lstk(top))
ld=sadr(ild+4)
nnb=istk(ild+1)*istk(ild+2)
call entier(nnb,stk(ld),istk(iadr(ld)))
top=top+1
ilo=iadr(lstk(top))
lo=sadr(ilo+4)
nnb=istk(ilo+1)*istk(ilo+2)
call entier(nnb,stk(lo),istk(iadr(lo)))
top=top+1
ilc=iadr(lstk(top))
lc=sadr(ilc+4)
nnb=istk(ilc+1)*istk(ilc+2)
call entier(nnb,stk(lc),istk(iadr(lc)))
ilord=ilw
ilw=ilw+nb
lw = sadr(ilw + nb)
err = lw - lstk(bot )
if (err .gt. 0) then
call error(17 )
return
endif
call sctree(nb,istk(iadr(lv)),istk(iadr(ln)),
& istk(iadr(ld)),istk(iadr(lo)),
& istk(iadr(lc)),istk(ilord),nord,iok,istk(ilw))
top=itop
istk(ilv+1)=nord
istk(ilv+2)=1
call int2db(nord,istk(ilord),1,stk(lv),1)
lstk(top+1)=lv+nord
top=top+1
ilv1=iadr(lstk(top))
istk(ilv1)=1
istk(ilv1+1)=1
istk(ilv1+2)=1
istk(ilv1+3)=0
lv1=sadr(ilv1+4)
stk(lv1)=dble(iok)
lstk(top+1)=lv1+1
return
end
c interface function
c ********************
subroutine intscicos
c
include '../stack.h'
c
logical putlhsvar,checkrhs,checklhs
character*(nlgh) fname
c
goto (1,2,3,4,5,6,7,8,9) fin
return
1 call intsscicos
return
2 call intctree
return
3 continue
fname='sci_tree2'
c [ord,ok]=tree2(vec,outoin,outoinptr,dep_ut)
if(.not.checklhs(fname,2,2)) return
if(.not.checkrhs(fname,4,4)) return
call intree2(fname)
goto 9988
4 continue
fname='sci_tree3'
c [ord,ok]=tree3(vec,dep_ut,typ_l,bexe,boptr,blnk,blptr)
if(.not.checklhs(fname,2,2)) return
if(.not.checkrhs(fname,7,7)) return
call intree3(fname)
goto 9988
5 continue
fname='sci_tree4'
c [r1,r2,ok]=tree4(vec,outoin,outoinptr,dep_ut,typ_r)
if(.not.checklhs(fname,2,2)) return
if(.not.checkrhs(fname,5,5)) return
call intree4(fname)
goto 9988
6 continue
fname='realtimeinit'
call intsrealtimeinit(fname)
goto 9988
7 continue
fname='realtime'
call intsrealtime(fname)
goto 9988
8 continue
c scicos_debug(i)
fname='scicos_debug'
call scicosdebug(fname)
goto 9988
9 continue
fname='scicos_debug_count'
call scicosdebugcount(fname)
goto 9988
9988 if(.not.putlhsvar())return
end
c ********************
subroutine intree2(fname)
c
include '../stack.h'
c
logical createvar,getrhsvar
character*(*) fname
c
iadr(l)=l+l-1
if(.not.getrhsvar(1,'i',nvec,mvec,ipvec)) return
if(.not.getrhsvar(2,'i',noin,moin,ipoin)) return
if(.not.getrhsvar(3,'i',noinr,moinr,ipoinr)) return
if(.not.getrhsvar(4,'i',ndep,mdep,ipdep)) return
c
if(.not.createvar(5,'i',nvec*mvec,1,ipord)) return
if(.not.createvar(6,'i',1,1,ipok)) return
c
call ftree2(istk(ipvec),nvec*mvec,istk(ipdep),
$ istk(ipoin),istk(ipoinr),istk(ipord),
$ nord,istk(ipok))
lhsvar(1)=5
lhsvar(2)=6
c nbrows(5)=nord
istk(iadr(iwhere(5))+1)=nord
end
c ********************
subroutine intree3(fname)
c
include '../stack.h'
c
logical createvar,getrhsvar
character*(*) fname
c
iadr(l)=l+l-1
if(.not.getrhsvar(1,'i',nvec,mvec,ipvec)) return
if(.not.getrhsvar(2,'i',ndep,mdep,ipdep)) return
if(.not.getrhsvar(3,'i',ntyp,mtyp,iptyp)) return
if(.not.getrhsvar(4,'i',nbex,mbex,ipbex)) return
if(.not.getrhsvar(5,'i',nbop,mbop,ipbop)) return
if(.not.getrhsvar(6,'i',nbln,mbln,ipbln)) return
if(.not.getrhsvar(7,'i',nblr,mblr,ipblr)) return
c
if(.not.createvar(8,'i',nvec*mvec,1,ipord)) return
if(.not.createvar(9,'i',1,1,ipok)) return
if(.not.createvar(10,'i',1,nvec*mvec,ipkk)) return
c
call ftree3(istk(ipvec),nvec*mvec,istk(ipdep),
$ istk(iptyp),istk(ipbex),istk(ipbop),istk(ipbln),
$ istk(ipblr),istk(ipkk),istk(ipord),nord,
$ istk(ipok))
lhsvar(1)=8
lhsvar(2)=9
c nbrows(8)=nord
istk(iadr(iwhere(8))+1)=nord
end
c ********************
subroutine intree4(fname)
c
include '../stack.h'
c
logical createvar,getrhsvar
character*(*) fname
c
iadr(l)=l+l-1
if(.not.getrhsvar(1,'i',nvec,mvec,ipvec)) return
if(.not.getrhsvar(2,'i',noin,moin,ipoin)) return
if(.not.getrhsvar(3,'i',noinr,moinr,ipoinr)) return
if(.not.getrhsvar(4,'i',nnd,mnd,ipnd)) return
if(.not.getrhsvar(5,'i',ntyp,mtyp,iptyp)) return
c
if(.not.createvar(6,'i',1,nnd*mnd,ipr1)) return
if(.not.createvar(7,'i',1,nnd*mnd,ipr2)) return
c
call ftree4(istk(ipvec),nvec*mvec,istk(ipnd),mnd,
$ istk(iptyp),istk(ipoin),istk(ipoinr),istk(ipr1),
$ istk(ipr2),nr)
lhsvar(1)=6
lhsvar(2)=7
c nbcols(6)=nr
istk(iadr(iwhere(6))+2)=nr
c nbcols(7)=nr
istk(iadr(iwhere(7))+2)=nr
end
c ********************
subroutine scicosdebug(fname)
c
include '../stack.h'
c
common /cosdebug/ cosd
logical getrhsvar, createvar,checklhs,checkrhs
integer cosd
character*(*) fname
c
rhs = max(0,rhs)
if(.not.checklhs(fname,1,1)) return
if(.not.checkrhs(fname,-1,1)) return
if (rhs.eq.1) then
if(.not.getrhsvar(1,'i',n,m,i)) return
cosd=istk(i)
lhsvar(1)=0
else
if(.not.createvar(1,'d',1,1,ipr1)) return
stk(ipr1)=cosd
lhsvar(1)=1
endif
end
c ********************
subroutine scicosdebugcount(fname)
c
include '../stack.h'
c
common /cosdebugcounter/ counter
logical getrhsvar, createvar,checklhs,checkrhs
integer counter
character*(*) fname
c
rhs = max(0,rhs)
if(.not.checklhs(fname,1,1)) return
if(.not.checkrhs(fname,-1,0)) return
if(.not.createvar(1,'d',1,1,ipr1)) return
stk(ipr1)=counter
lhsvar(1)=1
end
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