| 1 | !WRF:DRIVER_LAYER:INTEGRATION |
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| 2 | ! |
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| 3 | |
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| 4 | MODULE module_integrate |
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| 5 | |
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| 6 | CONTAINS |
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| 7 | |
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| 8 | RECURSIVE SUBROUTINE integrate ( grid ) |
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| 9 | |
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| 10 | |
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| 11 | |
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| 12 | USE module_domain |
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| 13 | USE module_driver_constants |
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| 14 | USE module_nesting |
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| 15 | USE module_configure |
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| 16 | USE module_timing |
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| 17 | USE module_utility |
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| 18 | |
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| 19 | IMPLICIT NONE |
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| 20 | |
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| 21 | ! Input data. |
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| 22 | |
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| 23 | TYPE(domain) , POINTER :: grid |
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| 24 | |
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| 25 | ! module_integrate:integrate |
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| 26 | ! <DESCRIPTION> |
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| 27 | ! This is a driver-level routine that controls the integration of a |
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| 28 | ! domain and subdomains rooted at the domain. |
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| 29 | ! |
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| 30 | ! The integrate routine takes a domain pointed to by the argument |
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| 31 | ! <em>grid</em> and advances the domain and its associated nests from the |
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| 32 | ! grid's current time, stored within grid%domain_clock, to a given time |
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| 33 | ! forward in the simulation, stored as grid%stop_subtime. The |
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| 34 | ! stop_subtime value is arbitrary and does not have to be the same as |
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| 35 | ! time that the domain finished integrating. The simulation stop time |
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| 36 | ! for the grid is known to the grid's clock (grid%domain_clock) and that |
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| 37 | ! is checked with a call to domain_clockisstoptime prior to beginning the |
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| 38 | ! loop over time period that is specified by the |
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| 39 | ! current time/stop_subtime interval. |
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| 40 | ! |
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| 41 | ! The clock, the simulation stop time for the domain, and other timing |
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| 42 | ! aspects for the grid are set up in the routine |
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| 43 | ! (<a href="setup_timekeeping.html">setup_timekeeping</a>) at the time |
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| 44 | ! that the domain is initialized. |
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| 45 | ! The lower-level time library and the type declarations for the times |
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| 46 | ! and time intervals used are defined either in |
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| 47 | ! external/esmf_time_f90/module_utility.F90 or in |
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| 48 | ! external/io_esmf/module_utility.F90 depending on a build-time decision to |
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| 49 | ! incorporate either the embedded ESMF subset implementation contained in |
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| 50 | ! external/esmf_time_f90 or to use a site-specific installation of the ESMF |
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| 51 | ! library. This decision is made during the configuration step of the WRF |
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| 52 | ! build process. Note that arithmetic and comparison is performed on these |
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| 53 | ! data types using F90 operator overloading, also defined in that library. |
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| 54 | ! |
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| 55 | ! This routine is the lowest level of the WRF Driver Layer and for the most |
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| 56 | ! part the WRF routines that are called from here are in the topmost level |
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| 57 | ! of the Mediation Layer. Mediation layer routines typically are not |
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| 58 | ! defined in modules. Therefore, the routines that this routine calls |
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| 59 | ! have explicit interfaces specified in an interface block in this routine. |
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| 60 | ! |
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| 61 | ! As part of the Driver Layer, this routine is intended to be non model-specific |
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| 62 | ! and so a minimum of WRF-specific logic is coded at this level. Rather, there |
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| 63 | ! are a number of calls to mediation layer routines that contain this logic, some |
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| 64 | ! of which are merely stubs in WRF Mediation Layer that sits below this routine |
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| 65 | ! in the call tree. The routines that integrate calls in WRF are defined in |
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| 66 | ! share/mediation_integrate.F. |
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| 67 | ! |
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| 68 | ! Flow of control |
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| 69 | ! |
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| 70 | ! 1. Check to see that the domain is not finished |
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| 71 | ! by testing the value returned by domain_clockisstoptime for the |
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| 72 | ! domain. |
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| 73 | ! |
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| 74 | ! 2. <a href=model_to_grid_config_rec.html>Model_to_grid_config_rec</a> is called to load the local config_flags |
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| 75 | ! structure with the configuration information for the grid stored |
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| 76 | ! in model_config_rec and indexed by the grid's unique integer id. These |
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| 77 | ! structures are defined in frame/module_configure.F. |
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| 78 | ! |
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| 79 | ! 3. The current time of the domain is retrieved from the domain's clock |
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| 80 | ! using domain_get_current_time. |
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| 81 | ! |
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| 82 | ! 4. Iterate forward while the current time is less than the stop subtime. |
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| 83 | ! |
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| 84 | ! 4.a. Start timing for this iteration (only on node zero in distributed-memory runs) |
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| 85 | ! |
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| 86 | ! 4.b. Call <a href=med_setup_step.html>med_setup_step</a> to allow the mediation layer to |
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| 87 | ! do anything that's needed to call the solver for this domain. In WRF this means setting |
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| 88 | ! the indices into the 4D tracer arrays for the domain. |
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| 89 | ! |
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| 90 | ! 4.c. Check for any nests that need to be started up at this time. This is done |
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| 91 | ! calling the logical function <a href=nests_to_open.html>nests_to_open</a> (defined in |
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| 92 | ! frame/module_nesting.F) which returns true and the index into the current domain's list |
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| 93 | ! of children to use for the nest when one needs to be started. |
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| 94 | ! |
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| 95 | ! 4.c.1 Call <a href=alloc_and_configure_domain.html>alloc_and_configure_domain</a> to allocate |
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| 96 | ! the new nest and link it as a child of this grid. |
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| 97 | ! |
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| 98 | ! 4.c.2 Call <a href=setup_Timekeeping.html>setup_Timekeeping</a> for the nest. |
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| 99 | ! |
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| 100 | ! 4.c.3 Initialize the nest's arrays by calling <a href=med_nest_initial.html>med_nest_initial</a>. This will |
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| 101 | ! either interpolate data from this grid onto the nest, read it in from a file, or both. In a restart run, this |
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| 102 | ! is also where the nest reads in its restart file. |
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| 103 | ! |
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| 104 | ! 4.d If a nest was opened above, check for and resolve overlaps (this is not implemented in WRF 2.0, which |
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| 105 | ! supports multiple nests on the same level but does not support overlapping). |
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| 106 | ! |
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| 107 | ! 4.e Give the mediation layer an opportunity to do something before the solver is called by |
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| 108 | ! calling <a href=med_before_solve_io.html>med_before_solve_io</a>. In WRF this is the point at which history and |
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| 109 | ! restart data is output. |
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| 110 | ! |
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| 111 | ! 4.f Call <a href=solve_interface.html>solve_interface</a> which calls the solver that advance the domain |
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| 112 | ! one time step, then advance the domain's clock by calling domain_clockadvance. |
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| 113 | ! The enclosing WHILE loop around this section is for handling other domains |
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| 114 | ! with which this domain may overlap. It is not active in WRF 2.0 and only |
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| 115 | ! executes one trip. |
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| 116 | ! |
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| 117 | ! 4.g Call med_calc_model_time and med_after_solve_io, which are stubs in WRF. |
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| 118 | ! |
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| 119 | ! 4.h Iterate over the children of this domain (<tt>DO kid = 1, max_nests</tt>) and check each child pointer to see |
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| 120 | ! if it is associated (and therefore, active). |
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| 121 | ! |
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| 122 | ! 4.h.1 Force the nested domain boundaries from this domain by calling <a href=med_nest_force.html>med_nest_force</a>. |
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| 123 | ! |
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| 124 | ! 4.h.2 Setup the time period over which the nest is to run. Sine the current grid has been advanced one time step |
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| 125 | ! and the nest has not, the start for the nest is this grid's current time minus one time step. The nest's stop_subtime |
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| 126 | ! is the current time, bringing the nest up the same time level as this grid, its parent. |
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| 127 | ! |
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| 128 | ! 4.h.3 Recursively call this routine, integrate, to advance the nest's time. Since it is recursive, this will |
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| 129 | ! also advance all the domains who are nests of this nest and so on. In other words, when this call returns, all |
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| 130 | ! the domains rooted at the nest will be at the current time. |
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| 131 | ! |
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| 132 | ! 4.h.4 Feedback data from the nested domain back onto this domain by calling <a href=med_nest_feedback.html>med_nest_feedback</a>. |
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| 133 | ! |
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| 134 | ! 4.i Write the time to compute this grid and its subtree. This marks the end of the loop begun at step 4, above. |
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| 135 | ! |
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| 136 | ! 5. Give the mediation layer an opportunity to do I/O at the end of the sequence of steps that brought the |
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| 137 | ! grid up to stop_subtime with a call to <a href=med_last_solve_io.html>med_last_solve_io</a>. In WRF, this |
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| 138 | ! is used to generate the final history and/or restart output when the domain reaches the end of it's integration. |
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| 139 | ! There is logic here to make sure this occurs correctly on a nest, since the nest may finish before its parent. |
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| 140 | ! </DESCRIPTION> |
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| 141 | |
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| 142 | ! Local data. |
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| 143 | |
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| 144 | CHARACTER*32 :: outname, rstname |
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| 145 | TYPE(domain) , POINTER :: grid_ptr , new_nest |
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| 146 | TYPE(domain) :: intermediate_grid |
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| 147 | INTEGER :: step |
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| 148 | INTEGER :: nestid , kid |
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| 149 | LOGICAL :: a_nest_was_opened |
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| 150 | INTEGER :: fid , rid |
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| 151 | LOGICAL :: lbc_opened |
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| 152 | REAL :: time, btime, bfrq |
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| 153 | CHARACTER*256 :: message, message2 |
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| 154 | TYPE (grid_config_rec_type) :: config_flags |
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| 155 | LOGICAL , EXTERNAL :: wrf_dm_on_monitor |
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| 156 | INTEGER :: idum1 , idum2 , ierr , open_status |
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| 157 | LOGICAL :: should_do_last_io |
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| 158 | |
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| 159 | ! interface |
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| 160 | INTERFACE |
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| 161 | ! mediation-supplied solver |
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| 162 | SUBROUTINE solve_interface ( grid ) |
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| 163 | USE module_domain |
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| 164 | TYPE (domain) grid |
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| 165 | END SUBROUTINE solve_interface |
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| 166 | ! mediation-supplied routine to allow driver to pass time information |
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| 167 | ! down to mediation/model layer |
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| 168 | SUBROUTINE med_calc_model_time ( grid , config_flags ) |
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| 169 | USE module_domain |
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| 170 | USE module_configure |
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| 171 | TYPE (domain) grid |
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| 172 | TYPE (grid_config_rec_type) config_flags |
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| 173 | END SUBROUTINE med_calc_model_time |
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| 174 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 175 | ! perform I/O before the call to the solve routine |
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| 176 | SUBROUTINE med_before_solve_io ( grid , config_flags ) |
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| 177 | USE module_domain |
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| 178 | USE module_configure |
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| 179 | TYPE (domain) grid |
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| 180 | TYPE (grid_config_rec_type) config_flags |
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| 181 | END SUBROUTINE med_before_solve_io |
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| 182 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 183 | ! perform I/O after the call to the solve routine |
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| 184 | SUBROUTINE med_after_solve_io ( grid , config_flags ) |
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| 185 | USE module_domain |
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| 186 | USE module_configure |
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| 187 | TYPE (domain) grid |
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| 188 | TYPE (grid_config_rec_type) config_flags |
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| 189 | END SUBROUTINE med_after_solve_io |
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| 190 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 191 | ! perform I/O to initialize a new nest |
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| 192 | SUBROUTINE med_pre_nest_initial ( parent , newid , config_flags ) |
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| 193 | USE module_domain |
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| 194 | USE module_configure |
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| 195 | TYPE (domain), POINTER :: parent |
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| 196 | INTEGER, INTENT(IN) :: newid |
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| 197 | TYPE (grid_config_rec_type) config_flags |
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| 198 | END SUBROUTINE med_pre_nest_initial |
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| 199 | SUBROUTINE med_nest_initial ( parent , grid , config_flags ) |
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| 200 | USE module_domain |
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| 201 | USE module_configure |
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| 202 | TYPE (domain), POINTER :: grid , parent |
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| 203 | TYPE (grid_config_rec_type) config_flags |
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| 204 | END SUBROUTINE med_nest_initial |
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| 205 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 206 | ! provide parent->nest forcing |
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| 207 | SUBROUTINE med_nest_force ( parent , grid , config_flags ) |
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| 208 | USE module_domain |
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| 209 | USE module_configure |
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| 210 | TYPE (domain), POINTER :: grid, parent |
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| 211 | TYPE (grid_config_rec_type) config_flags |
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| 212 | END SUBROUTINE med_nest_force |
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| 213 | |
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| 214 | #ifdef MOVE_NESTS |
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| 215 | SUBROUTINE med_nest_move ( parent , grid ) |
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| 216 | USE module_domain |
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| 217 | USE module_configure |
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| 218 | TYPE (domain), POINTER :: grid , parent |
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| 219 | END SUBROUTINE med_nest_move |
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| 220 | #endif |
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| 221 | |
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| 222 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 223 | ! provide parent->nest feedback |
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| 224 | SUBROUTINE med_nest_feedback ( parent , grid , config_flags ) |
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| 225 | USE module_domain |
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| 226 | USE module_configure |
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| 227 | TYPE (domain), POINTER :: grid , parent |
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| 228 | TYPE (grid_config_rec_type) config_flags |
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| 229 | END SUBROUTINE med_nest_feedback |
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| 230 | |
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| 231 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 232 | ! perform I/O prior to the close of this call to integrate |
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| 233 | SUBROUTINE med_last_solve_io ( grid , config_flags ) |
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| 234 | USE module_domain |
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| 235 | USE module_configure |
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| 236 | TYPE (domain) grid |
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| 237 | TYPE (grid_config_rec_type) config_flags |
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| 238 | END SUBROUTINE med_last_solve_io |
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| 239 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 240 | ! perform setup before iteration over steps in this call to integrate |
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| 241 | SUBROUTINE med_setup_step ( grid , config_flags ) |
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| 242 | USE module_domain |
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| 243 | USE module_configure |
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| 244 | TYPE (domain) grid |
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| 245 | TYPE (grid_config_rec_type) config_flags |
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| 246 | END SUBROUTINE med_setup_step |
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| 247 | ! mediation-supplied routine that gives mediation layer opportunity to |
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| 248 | ! perform setup before iteration over steps in this call to integrate |
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| 249 | SUBROUTINE med_endup_step ( grid , config_flags ) |
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| 250 | USE module_domain |
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| 251 | USE module_configure |
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| 252 | TYPE (domain) grid |
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| 253 | TYPE (grid_config_rec_type) config_flags |
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| 254 | END SUBROUTINE med_endup_step |
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| 255 | ! mediation-supplied routine that intializes the nest from the grid |
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| 256 | ! by interpolation |
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| 257 | |
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| 258 | SUBROUTINE Setup_Timekeeping( grid ) |
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| 259 | USE module_domain |
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| 260 | TYPE(domain), POINTER :: grid |
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| 261 | END SUBROUTINE |
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| 262 | |
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| 263 | END INTERFACE |
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| 264 | |
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| 265 | ! This allows us to reference the current grid from anywhere beneath |
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| 266 | ! this point for debugging purposes. |
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| 267 | ! In the case of operations involving already initialized parent and child, |
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| 268 | ! the current grid is set to the child grid. |
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| 269 | !$$$ Improve this later to track both parent and child... |
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| 270 | !$$$ Use either an optional argument or another interface... |
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| 271 | CALL set_current_grid_ptr( grid ) |
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| 272 | |
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| 273 | IF ( .NOT. domain_clockisstoptime( grid ) ) THEN |
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| 274 | CALL model_to_grid_config_rec ( grid%id , model_config_rec , config_flags ) |
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| 275 | IF ( .NOT. grid%return_after_training_io ) THEN |
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| 276 | CALL domain_clockprint ( 150, grid, 'DEBUG: top of integrate(),' ) |
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| 277 | ENDIF |
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| 278 | DO WHILE ( .NOT. domain_clockisstopsubtime(grid) ) |
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| 279 | IF ( .NOT. grid%return_after_training_io ) THEN |
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| 280 | IF ( wrf_dm_on_monitor() ) THEN |
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| 281 | CALL start_timing |
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| 282 | END IF |
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| 283 | ENDIF |
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| 284 | CALL med_setup_step ( grid , config_flags ) |
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| 285 | IF ( .NOT. grid%return_after_training_io ) THEN |
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| 286 | a_nest_was_opened = .false. |
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| 287 | ! for each nest whose time has come... |
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| 288 | DO WHILE ( nests_to_open( grid , nestid , kid ) ) |
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| 289 | ! nestid is index into model_config_rec (module_configure) of the grid |
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| 290 | ! to be opened; kid is index into an open slot in grid's list of children |
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| 291 | a_nest_was_opened = .true. |
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| 292 | CALL med_pre_nest_initial ( grid , nestid , config_flags ) |
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| 293 | CALL alloc_and_configure_domain ( domain_id = nestid , & |
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| 294 | grid = new_nest , & |
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| 295 | parent = grid , & |
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| 296 | kid = kid ) |
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| 297 | CALL Setup_Timekeeping (new_nest) |
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| 298 | CALL med_nest_initial ( grid , new_nest , config_flags ) |
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| 299 | END DO |
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| 300 | IF ( a_nest_was_opened ) THEN |
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| 301 | CALL set_overlaps ( grid ) ! find overlapping and set pointers |
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| 302 | END IF |
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| 303 | ENDIF |
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| 304 | CALL med_before_solve_io ( grid , config_flags ) |
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| 305 | IF ( grid%return_after_training_io ) THEN |
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| 306 | CALL wrf_debug( 1, 'DEBUG: module_integrate() returned after training' ) |
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| 307 | RETURN ! an ugly hack for sure, only needed for ESMF |
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| 308 | ENDIF |
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| 309 | grid_ptr => grid |
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| 310 | DO WHILE ( ASSOCIATED( grid_ptr ) ) |
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| 311 | CALL set_current_grid_ptr( grid_ptr ) |
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| 312 | CALL wrf_debug( 100 , 'module_integrate: calling solve interface ' ) |
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| 313 | CALL solve_interface ( grid_ptr ) |
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| 314 | CALL domain_clockadvance ( grid_ptr ) |
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| 315 | CALL wrf_debug( 100 , 'module_integrate: back from solve interface ' ) |
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| 316 | ! print lots of time-related information for testing |
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| 317 | ! switch this on with namelist variable self_test_domain |
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| 318 | CALL domain_time_test( grid_ptr, 'domain_clockadvance' ) |
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| 319 | grid_ptr => grid_ptr%sibling |
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| 320 | END DO |
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| 321 | CALL set_current_grid_ptr( grid ) |
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| 322 | CALL med_calc_model_time ( grid , config_flags ) |
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| 323 | CALL med_after_solve_io ( grid , config_flags ) |
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| 324 | grid_ptr => grid |
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| 325 | DO WHILE ( ASSOCIATED( grid_ptr ) ) |
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| 326 | DO kid = 1, max_nests |
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| 327 | IF ( ASSOCIATED( grid_ptr%nests(kid)%ptr ) ) THEN |
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| 328 | CALL set_current_grid_ptr( grid_ptr%nests(kid)%ptr ) |
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| 329 | ! Recursive -- advance nests from previous time level to this time level. |
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| 330 | CALL wrf_debug( 100 , 'module_integrate: calling med_nest_force ' ) |
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| 331 | CALL med_nest_force ( grid_ptr , grid_ptr%nests(kid)%ptr , config_flags ) |
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| 332 | CALL wrf_debug( 100 , 'module_integrate: back from med_nest_force ' ) |
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| 333 | grid_ptr%nests(kid)%ptr%start_subtime = & |
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| 334 | domain_get_current_time(grid) - domain_get_time_step(grid) |
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| 335 | grid_ptr%nests(kid)%ptr%stop_subtime = & |
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| 336 | domain_get_current_time(grid) |
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| 337 | CALL integrate ( grid_ptr%nests(kid)%ptr ) |
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| 338 | CALL wrf_debug( 100 , 'module_integrate: back from recursive call to integrate ' ) |
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| 339 | CALL wrf_debug( 100 , 'module_integrate: calling med_nest_feedback ' ) |
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| 340 | CALL med_nest_feedback ( grid_ptr , grid_ptr%nests(kid)%ptr , config_flags ) |
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| 341 | CALL wrf_debug( 100 , 'module_integrate: back from med_nest_feedback ' ) |
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| 342 | #ifdef MOVE_NESTS |
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| 343 | IF ( .NOT. domain_clockisstoptime( head_grid ) ) THEN |
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| 344 | CALL med_nest_move ( grid_ptr , grid_ptr%nests(kid)%ptr ) |
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| 345 | ENDIF |
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| 346 | #endif |
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| 347 | END IF |
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| 348 | END DO |
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| 349 | grid_ptr => grid_ptr%sibling |
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| 350 | END DO |
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| 351 | CALL set_current_grid_ptr( grid ) |
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| 352 | ! Report on the timing for a single time step. |
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| 353 | IF ( wrf_dm_on_monitor() ) THEN |
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| 354 | ! begin KLUDGE |
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| 355 | ! ia32 pgi 6.0-2 and prescribed moving nest: the returned date string message2 is |
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| 356 | ! corrupt after the first specified move UNLESS the string is initialized to all |
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| 357 | ! spaces - REMOVE THIS INIT OF MESSAGE2 WHEN POSSIBLE |
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| 358 | ! 2005 10 28 |
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| 359 | message2=' ' // & |
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| 360 | ' ' // & |
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| 361 | ' ' // & |
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| 362 | ' ' |
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| 363 | ! end KLUDGE |
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| 364 | CALL domain_clock_get ( grid, current_timestr=message2 ) |
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| 365 | WRITE ( message , FMT = '("main: time ",A," on domain ",I3)' ) TRIM(message2), grid%id |
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| 366 | CALL end_timing ( TRIM(message) ) |
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| 367 | END IF |
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| 368 | CALL med_endup_step ( grid , config_flags ) |
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| 369 | END DO |
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| 370 | ! Avoid double writes on nests if this is not really the last time; |
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| 371 | ! Do check for write if the parent domain is ending. |
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| 372 | IF ( grid%id .EQ. 1 ) THEN ! head_grid |
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| 373 | CALL med_last_solve_io ( grid , config_flags ) |
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| 374 | ELSE |
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| 375 | |
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| 376 | ! zip up the tree and see if any ancestor is at its stop time |
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| 377 | |
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| 378 | should_do_last_io = domain_clockisstoptime( head_grid ) |
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| 379 | grid_ptr => grid |
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| 380 | DO WHILE ( grid_ptr%id .NE. 1 ) |
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| 381 | IF ( domain_clockisstoptime( grid_ptr ) ) should_do_last_io = .TRUE. |
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| 382 | grid_ptr => grid_ptr%parents(1)%ptr |
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| 383 | ENDDO |
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| 384 | IF ( should_do_last_io ) THEN |
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| 385 | CALL med_last_solve_io ( grid , config_flags ) |
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| 386 | ENDIF |
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| 387 | ENDIF |
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| 388 | END IF |
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| 389 | |
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| 390 | END SUBROUTINE integrate |
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| 391 | |
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| 392 | END MODULE module_integrate |
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| 393 | |
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