[GRASS-SVN] r43593 - in
grass/branches/releasebranch_6_4/raster/simwe: r.sim.sediment
r.sim.water
svn_grass at osgeo.org
svn_grass at osgeo.org
Tue Sep 21 09:51:32 EDT 2010
Author: neteler
Date: 2010-09-21 13:51:32 +0000 (Tue, 21 Sep 2010)
New Revision: 43593
Modified:
grass/branches/releasebranch_6_4/raster/simwe/r.sim.sediment/main.c
grass/branches/releasebranch_6_4/raster/simwe/r.sim.water/main.c
Log:
partial backport: guisections standardized
Modified: grass/branches/releasebranch_6_4/raster/simwe/r.sim.sediment/main.c
===================================================================
--- grass/branches/releasebranch_6_4/raster/simwe/r.sim.sediment/main.c 2010-09-21 13:44:57 UTC (rev 43592)
+++ grass/branches/releasebranch_6_4/raster/simwe/r.sim.sediment/main.c 2010-09-21 13:51:32 UTC (rev 43593)
@@ -116,46 +116,46 @@
parm.elevin = G_define_standard_option(G_OPT_R_INPUT);
parm.elevin->key = "elevin";
parm.elevin->description = _("Name of the elevation raster map [m]");
- parm.elevin->guisection = _("Input_options");
+ parm.elevin->guisection = _("Input");
parm.wdepth = G_define_standard_option(G_OPT_R_INPUT);
parm.wdepth->key = "wdepth";
parm.wdepth->description = _("Name of the water depth raster map [m]");
- parm.wdepth->guisection = _("Input_options");
+ parm.wdepth->guisection = _("Input");
parm.dxin = G_define_standard_option(G_OPT_R_INPUT);
parm.dxin->key = "dxin";
parm.dxin->description = _("Name of the x-derivatives raster map [m/m]");
- parm.dxin->guisection = _("Input_options");
+ parm.dxin->guisection = _("Input");
parm.dyin = G_define_standard_option(G_OPT_R_INPUT);
parm.dyin->key = "dyin";
parm.dyin->description = _("Name of the y-derivatives raster map [m/m]");
- parm.dyin->guisection = _("Input_options");
+ parm.dyin->guisection = _("Input");
parm.detin = G_define_standard_option(G_OPT_R_INPUT);
parm.detin->key = "detin";
parm.detin->description =
_("Name of the detachment capacity coefficient raster map [s/m]");
- parm.detin->guisection = _("Input_options");
+ parm.detin->guisection = _("Input");
parm.tranin = G_define_standard_option(G_OPT_R_INPUT);
parm.tranin->key = "tranin";
parm.tranin->description =
_("Name of the transport capacity coefficient raster map [s]");
- parm.tranin->guisection = _("Input_options");
+ parm.tranin->guisection = _("Input");
parm.tauin = G_define_standard_option(G_OPT_R_INPUT);
parm.tauin->key = "tauin";
parm.tauin->description =
_("Name of the critical shear stress raster map [Pa]");
- parm.tauin->guisection = _("Input_options");
+ parm.tauin->guisection = _("Input");
parm.manin = G_define_standard_option(G_OPT_R_INPUT);
parm.manin->key = "manin";
parm.manin->required = NO;
parm.manin->description = _("Name of the Mannings n raster map");
- parm.manin->guisection = _("Input_options");
+ parm.manin->guisection = _("Input");
parm.maninval = G_define_option();
parm.maninval->key = "maninval";
@@ -163,7 +163,7 @@
parm.maninval->answer = MANINVAL;
parm.maninval->required = NO;
parm.maninval->description = _("Name of the Mannings n value");
- parm.maninval->guisection = _("Input_options");
+ parm.maninval->guisection = _("Input");
/* needs to be updated to GRASS 6 vector format !!
parm.sfile = G_define_standard_option(G_OPT_V_INPUT);
@@ -171,41 +171,41 @@
parm.sfile->required = NO;
parm.sfile->description =
_("Name of the sampling locations vector points map");
- parm.sfile->guisection = _("Input_options");
+ parm.sfile->guisection = _("Input");
*/
parm.tc = G_define_standard_option(G_OPT_R_OUTPUT);
parm.tc->key = "tc";
parm.tc->required = NO;
parm.tc->description = _("Output transport capacity raster map [kg/ms]");
- parm.tc->guisection = _("Output_options");
+ parm.tc->guisection = _("Output");
parm.et = G_define_standard_option(G_OPT_R_OUTPUT);
parm.et->key = "et";
parm.et->required = NO;
parm.et->description =
_("Output transp.limited erosion-deposition raster map [kg/m2s]");
- parm.et->guisection = _("Output_options");
+ parm.et->guisection = _("Output");
parm.conc = G_define_standard_option(G_OPT_R_OUTPUT);
parm.conc->key = "conc";
parm.conc->required = NO;
parm.conc->description =
_("Output sediment concentration raster map [particle/m3]");
- parm.conc->guisection = _("Output_options");
+ parm.conc->guisection = _("Output");
parm.flux = G_define_standard_option(G_OPT_R_OUTPUT);
parm.flux->key = "flux";
parm.flux->required = NO;
parm.flux->description = _("Output sediment flux raster map [kg/ms]");
- parm.flux->guisection = _("Output_options");
+ parm.flux->guisection = _("Output");
parm.erdep = G_define_standard_option(G_OPT_R_OUTPUT);
parm.erdep->key = "erdep";
parm.erdep->required = NO;
parm.erdep->description =
_("Output erosion-deposition raster map [kg/m2s]");
- parm.erdep->guisection = _("Output_options");
+ parm.erdep->guisection = _("Output");
parm.nwalk = G_define_option();
parm.nwalk->key = "nwalk";
Modified: grass/branches/releasebranch_6_4/raster/simwe/r.sim.water/main.c
===================================================================
--- grass/branches/releasebranch_6_4/raster/simwe/r.sim.water/main.c 2010-09-21 13:44:57 UTC (rev 43592)
+++ grass/branches/releasebranch_6_4/raster/simwe/r.sim.water/main.c 2010-09-21 13:51:32 UTC (rev 43593)
@@ -123,24 +123,24 @@
parm.elevin = G_define_standard_option(G_OPT_R_INPUT);
parm.elevin->key = "elevin";
parm.elevin->description = _("Name of the elevation raster map [m]");
- parm.elevin->guisection = _("Input_options");
+ parm.elevin->guisection = _("Input");
parm.dxin = G_define_standard_option(G_OPT_R_INPUT);
parm.dxin->key = "dxin";
parm.dxin->description = _("Name of the x-derivatives raster map [m/m]");
- parm.dxin->guisection = _("Input_options");
+ parm.dxin->guisection = _("Input");
parm.dyin = G_define_standard_option(G_OPT_R_INPUT);
parm.dyin->key = "dyin";
parm.dyin->description = _("Name of the y-derivatives raster map [m/m]");
- parm.dyin->guisection = _("Input_options");
+ parm.dyin->guisection = _("Input");
parm.rain = G_define_standard_option(G_OPT_R_INPUT);
parm.rain->key = "rain";
parm.rain->required = NO;
parm.rain->description =
_("Name of the rainfall excess rate (rain-infilt) raster map [mm/hr]");
- parm.rain->guisection = _("Input_options");
+ parm.rain->guisection = _("Input");
parm.rainval = G_define_option();
parm.rainval->key = "rain_val";
@@ -149,14 +149,14 @@
parm.rainval->required = NO;
parm.rainval->description =
_("Rainfall excess rate unique value [mm/hr]");
- parm.rainval->guisection = _("Input_options");
+ parm.rainval->guisection = _("Input");
parm.infil = G_define_standard_option(G_OPT_R_INPUT);
parm.infil->key = "infil";
parm.infil->required = NO;
parm.infil->description =
_("Name of the runoff infiltration rate raster map [mm/hr]");
- parm.infil->guisection = _("Input_options");
+ parm.infil->guisection = _("Input");
parm.infilval = G_define_option();
parm.infilval->key = "infil_val";
@@ -165,13 +165,13 @@
parm.infilval->required = NO;
parm.infilval->description =
_("Runoff infiltration rate unique value [mm/hr]");
- parm.infilval->guisection = _("Input_options");
+ parm.infilval->guisection = _("Input");
parm.manin = G_define_standard_option(G_OPT_R_INPUT);
parm.manin->key = "manin";
parm.manin->required = NO;
parm.manin->description = _("Name of the Mannings n raster map");
- parm.manin->guisection = _("Input_options");
+ parm.manin->guisection = _("Input");
parm.maninval = G_define_option();
parm.maninval->key = "manin_val";
@@ -179,14 +179,14 @@
parm.maninval->answer = MANINVAL;
parm.maninval->required = NO;
parm.maninval->description = _("Mannings n unique value");
- parm.maninval->guisection = _("Input_options");
+ parm.maninval->guisection = _("Input");
parm.traps = G_define_standard_option(G_OPT_R_INPUT);
parm.traps->key = "traps";
parm.traps->required = NO;
parm.traps->description =
_("Name of the flow controls raster map (permeability ratio 0-1)");
- parm.traps->guisection = _("Input_options");
+ parm.traps->guisection = _("Input");
/*
parm.sfile = G_define_standard_option(G_OPT_V_INPUT);
@@ -194,26 +194,26 @@
parm.sfile->required = NO;
parm.sfile->description =
_("Name of the sampling locations vector points map");
- parm.sfile->guisection = _("Input_options");
+ parm.sfile->guisection = _("Input");
*/
parm.depth = G_define_standard_option(G_OPT_R_OUTPUT);
parm.depth->key = "depth";
parm.depth->required = NO;
parm.depth->description = _("Output water depth raster map [m]");
- parm.depth->guisection = _("Output_options");
+ parm.depth->guisection = _("Output");
parm.disch = G_define_standard_option(G_OPT_R_OUTPUT);
parm.disch->key = "disch";
parm.disch->required = NO;
parm.disch->description = _("Output water discharge raster map [m3/s]");
- parm.disch->guisection = _("Output_options");
+ parm.disch->guisection = _("Output");
parm.err = G_define_standard_option(G_OPT_R_OUTPUT);
parm.err->key = "err";
parm.err->required = NO;
parm.err->description = _("Output simulation error raster map [m]");
- parm.err->guisection = _("Output_options");
+ parm.err->guisection = _("Output");
/*
parm.outwalk = G_define_standard_option(G_OPT_V_OUTPUT);
@@ -221,7 +221,7 @@
parm.outwalk->required = NO;
parm.outwalk->description =
_("Name of the output walkers vector points map");
- parm.outwalk->guisection = _("Output_options");
+ parm.outwalk->guisection = _("Output");
*/
parm.nwalk = G_define_option();
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