28#if defined(_WIN32) && !defined(_WIN64)
29#define dec_directives_win32
47#ifdef dec_directives_win32
57 INTEGER,
Dimension(:),
Pointer :: cntvect
70 coi_error = max( coi_error,
coidef_numnz( cntvect, 12 ) )
74 coi_error = max( coi_error,
coidef_optfile( cntvect,
'Range04.opt' ) )
84#if defined(CONOPT_LICENSE_INT_1) && defined(CONOPT_LICENSE_INT_2) && defined(CONOPT_LICENSE_INT_3) && defined(CONOPT_LICENSE_TEXT)
85 coi_error = max( coi_error,
coidef_license( cntvect, conopt_license_int_1, conopt_license_int_2, conopt_license_int_3, conopt_license_text) )
88 If ( coi_error .ne. 0 )
THEN
90 write(*,*)
'**** Fatal Error while loading CONOPT Callback routines.'
92 call flog(
"Skipping Solve due to setup errors", 1 )
104 write(*,*)
'End of Range04 example A. Return code=',coi_error
106 If ( coi_error /= 0 )
then
107 call flog(
"Errors encountered during solution A", 1 )
109 call flog(
"Status or Solution routine was not called A", 1 )
111 call flog(
"Solver and Model Status was not as expected (1,1) A", 1 )
112 elseif ( abs(
obj-0.5d0 ) > 0.000001d0 )
then
113 call flog(
"Incorrect objective returned A", 1 )
125 write(*,*)
'End of Range04 example B. Return code=',coi_error
127 If ( coi_error /= 0 )
then
128 call flog(
"Errors encountered during solution B", 1 )
130 call flog(
"Status or Solution routine was not called B", 1 )
132 call flog(
"Solver and Model Status was not as expected (1,1) B", 1 )
133 elseif ( abs(
obj-2.0d0 ) > 0.000001d0 )
then
134 call flog(
"Incorrect objective returned B", 1 )
139 if (
coi_free(cntvect) /= 0 )
call flog(
"Error while freeing control vector",1)
141 call flog(
"Successful Solve", 0 )
152Integer Function rng_readmatrix( lower, curr, upper, vsta, type, rhs, esta, &
153 colsta, rowno, value, nlflag, n, m, nz, &
155#ifdef dec_directives_win32
159 integer,
intent (in) :: n
160 integer,
intent (in) :: m
161 integer,
intent (in) :: nz
162 real*8,
intent (in out),
dimension(n) :: lower
163 real*8,
intent (in out),
dimension(n) :: curr
164 real*8,
intent (in out),
dimension(n) :: upper
165 integer,
intent (in out),
dimension(n) :: vsta
167 integer,
intent (out),
dimension(m) ::
type
168 integer,
intent (in out),
dimension(m) :: esta
170 real*8,
intent (in out),
dimension(m) :: rhs
171 integer,
intent (in out),
dimension(n+1) :: colsta
172 integer,
intent (out),
dimension(nz) :: rowno
173 integer,
intent (in out),
dimension(nz) :: nlflag
174 real*8,
intent (in out),
dimension(nz) ::
value
198 type(2) = 2; rhs(2) = 2.5d0
199 type(3) = 1; rhs(3) = 1.5d0
200 type(4) = 2; rhs(4) = 2.0d0
201 type(5) = 1; rhs(5) = 2.0d0
integer function std_solution(xval, xmar, xbas, xsta, yval, ymar, ybas, ysta, n, m, usrmem)
integer function std_status(modsta, solsta, iter, objval, usrmem)
subroutine checkdual(case, minmax)
integer function std_message(smsg, dmsg, nmsg, llen, usrmem, msgv)
integer function std_errmsg(rowno, colno, posno, msglen, usrmem, msg)
integer(c_int) function coidef_message(cntvect, coi_message)
define callback routine for handling messages returned during the solution process.
integer(c_int) function coidef_solution(cntvect, coi_solution)
define callback routine for returning the final solution values.
integer(c_int) function coidef_status(cntvect, coi_status)
define callback routine for returning the completion status.
integer(c_int) function coidef_readmatrix(cntvect, coi_readmatrix)
define callback routine for providing the matrix data to CONOPT.
integer(c_int) function coidef_errmsg(cntvect, coi_errmsg)
define callback routine for returning error messages for row, column or Jacobian elements.
integer(c_int) function coidef_optfile(cntvect, optfile)
define callback routine for defining an options file.
integer(c_int) function coidef_license(cntvect, licint1, licint2, licint3, licstring)
define the License Information.
integer(c_int) function coidef_numvar(cntvect, numvar)
defines the number of variables in the model.
integer(c_int) function coidef_numcon(cntvect, numcon)
defines the number of constraints in the model.
integer(c_int) function coidef_numnlnz(cntvect, numnlnz)
defines the Number of Nonlinear Nonzeros.
integer(c_int) function coidef_optdir(cntvect, optdir)
defines the Optimization Direction.
integer(c_int) function coidef_numnz(cntvect, numnz)
defines the number of nonzero elements in the Jacobian.
integer(c_int) function coidef_objvar(cntvect, objvar)
defines the Objective Variable.
integer(c_int) function coi_create(cntvect)
initializes CONOPT and creates the control vector.
integer(c_int) function coi_free(cntvect)
frees the control vector.
integer(c_int) function coi_solve(cntvect)
method for starting the solving process of CONOPT.
integer, parameter minimize
subroutine flog(msg, code)
integer, parameter maximize
integer function rng_readmatrix(lower, curr, upper, vsta, type, rhs, esta, colsta, rowno, value, nlflag, n, m, nz, usrmem)
Define information about the model.
program range04
Main program. A simple setup and call of CONOPT.