mirror of https://github.com/GNOME/gimp.git
317 lines
9.5 KiB
C
317 lines
9.5 KiB
C
/* The GIMP -- an image manipulation program
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* Copyright (C) 1995 Spencer Kimball and Peter Mattis
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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#include "config.h"
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#include <stdlib.h>
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#include <gtk/gtk.h>
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#include "libgimpmath/gimpmath.h"
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#include "libgimpwidgets/gimpwidgets.h"
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#include "tools-types.h"
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#include "core/gimp-transform-utils.h"
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#include "core/gimpimage.h"
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#include "core/gimpdrawable-transform.h"
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#include "core/gimptoolinfo.h"
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#include "widgets/gimphelp-ids.h"
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#include "display/gimpdisplay.h"
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#ifdef __GNUC__
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#warning FIXME #include "dialogs/dialogs-types.h"
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#endif
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#include "dialogs/dialogs-types.h"
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#include "dialogs/info-dialog.h"
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#include "gimpsheartool.h"
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#include "gimptoolcontrol.h"
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#include "gimptransformoptions.h"
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#include "gimp-intl.h"
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/* index into trans_info array */
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#define HORZ_OR_VERT 0
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#define XSHEAR 1
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#define YSHEAR 2
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/* the minimum movement before direction of shear can be determined (pixels) */
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#define MIN_MOVE 5
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/* local function prototypes */
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static void gimp_shear_tool_dialog (GimpTransformTool *tr_tool);
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static void gimp_shear_tool_dialog_update (GimpTransformTool *tr_tool);
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static void gimp_shear_tool_prepare (GimpTransformTool *tr_tool,
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GimpDisplay *gdisp);
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static void gimp_shear_tool_motion (GimpTransformTool *tr_tool,
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GimpDisplay *gdisp);
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static void gimp_shear_tool_recalc (GimpTransformTool *tr_tool,
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GimpDisplay *gdisp);
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static void shear_x_mag_changed (GtkWidget *widget,
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GimpTransformTool *tr_tool);
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static void shear_y_mag_changed (GtkWidget *widget,
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GimpTransformTool *tr_tool);
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G_DEFINE_TYPE (GimpShearTool, gimp_shear_tool, GIMP_TYPE_TRANSFORM_TOOL);
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void
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gimp_shear_tool_register (GimpToolRegisterCallback callback,
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gpointer data)
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{
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(* callback) (GIMP_TYPE_SHEAR_TOOL,
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GIMP_TYPE_TRANSFORM_OPTIONS,
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gimp_transform_options_gui,
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0,
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"gimp-shear-tool",
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_("Shear"),
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_("Shear the layer or selection"),
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N_("S_hear"), "<shift>S",
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NULL, GIMP_HELP_TOOL_SHEAR,
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GIMP_STOCK_TOOL_SHEAR,
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data);
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}
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static void
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gimp_shear_tool_class_init (GimpShearToolClass *klass)
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{
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GimpTransformToolClass *trans_class = GIMP_TRANSFORM_TOOL_CLASS (klass);
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trans_class->dialog = gimp_shear_tool_dialog;
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trans_class->dialog_update = gimp_shear_tool_dialog_update;
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trans_class->prepare = gimp_shear_tool_prepare;
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trans_class->motion = gimp_shear_tool_motion;
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trans_class->recalc = gimp_shear_tool_recalc;
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}
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static void
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gimp_shear_tool_init (GimpShearTool *shear_tool)
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{
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GimpTool *tool = GIMP_TOOL (shear_tool);
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GimpTransformTool *tr_tool = GIMP_TRANSFORM_TOOL (shear_tool);
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gimp_tool_control_set_tool_cursor (tool->control, GIMP_TOOL_CURSOR_SHEAR);
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tr_tool->use_center = FALSE;
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tr_tool->shell_desc = _("Shearing Information");
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tr_tool->progress_text = _("Shearing");
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}
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static void
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gimp_shear_tool_dialog (GimpTransformTool *tr_tool)
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{
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GimpShearTool *shear = GIMP_SHEAR_TOOL (tr_tool);
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info_dialog_add_spinbutton (tr_tool->info_dialog,
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_("Shear magnitude X:"),
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&shear->xshear_val,
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-65536, 65536, 1, 15, 1, 1, 0,
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G_CALLBACK (shear_x_mag_changed),
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tr_tool);
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info_dialog_add_spinbutton (tr_tool->info_dialog,
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_("Shear magnitude Y:"),
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&shear->yshear_val,
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-65536, 65536, 1, 15, 1, 1, 0,
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G_CALLBACK (shear_y_mag_changed),
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tr_tool);
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}
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static void
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gimp_shear_tool_dialog_update (GimpTransformTool *tr_tool)
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{
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GimpShearTool *shear = GIMP_SHEAR_TOOL (tr_tool);
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shear->xshear_val = tr_tool->trans_info[XSHEAR];
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shear->yshear_val = tr_tool->trans_info[YSHEAR];
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info_dialog_update (tr_tool->info_dialog);
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info_dialog_show (tr_tool->info_dialog);
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}
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static void
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gimp_shear_tool_prepare (GimpTransformTool *tr_tool,
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GimpDisplay *gdisp)
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{
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tr_tool->trans_info[HORZ_OR_VERT] = GIMP_ORIENTATION_UNKNOWN;
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tr_tool->trans_info[XSHEAR] = 0.0;
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tr_tool->trans_info[YSHEAR] = 0.0;
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}
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static void
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gimp_shear_tool_motion (GimpTransformTool *tr_tool,
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GimpDisplay *gdisp)
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{
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gdouble diffx, diffy;
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gint dir;
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diffx = tr_tool->curx - tr_tool->lastx;
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diffy = tr_tool->cury - tr_tool->lasty;
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/* If we haven't yet decided on which way to control shearing
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* decide using the maximum differential
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*/
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if (tr_tool->trans_info[HORZ_OR_VERT] == GIMP_ORIENTATION_UNKNOWN)
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{
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if (abs (diffx) > MIN_MOVE || abs (diffy) > MIN_MOVE)
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{
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if (abs (diffx) > abs (diffy))
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{
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tr_tool->trans_info[HORZ_OR_VERT] = GIMP_ORIENTATION_HORIZONTAL;
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tr_tool->trans_info[XSHEAR] = 0.0;
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}
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else
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{
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tr_tool->trans_info[HORZ_OR_VERT] = GIMP_ORIENTATION_VERTICAL;
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tr_tool->trans_info[XSHEAR] = 0.0;
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}
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}
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/* set the current coords to the last ones */
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else
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{
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tr_tool->curx = tr_tool->lastx;
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tr_tool->cury = tr_tool->lasty;
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}
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}
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/* if the direction is known, keep track of the magnitude */
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if (tr_tool->trans_info[HORZ_OR_VERT] != GIMP_ORIENTATION_UNKNOWN)
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{
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dir = tr_tool->trans_info[HORZ_OR_VERT];
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switch (tr_tool->function)
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{
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case TRANSFORM_HANDLE_1:
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if (dir == GIMP_ORIENTATION_HORIZONTAL)
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tr_tool->trans_info[XSHEAR] -= diffx;
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else
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tr_tool->trans_info[YSHEAR] -= diffy;
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break;
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case TRANSFORM_HANDLE_2:
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if (dir == GIMP_ORIENTATION_HORIZONTAL)
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tr_tool->trans_info[XSHEAR] -= diffx;
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else
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tr_tool->trans_info[YSHEAR] += diffy;
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break;
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case TRANSFORM_HANDLE_3:
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if (dir == GIMP_ORIENTATION_HORIZONTAL)
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tr_tool->trans_info[XSHEAR] += diffx;
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else
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tr_tool->trans_info[YSHEAR] -= diffy;
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break;
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case TRANSFORM_HANDLE_4:
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if (dir == GIMP_ORIENTATION_HORIZONTAL)
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tr_tool->trans_info[XSHEAR] += diffx;
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else
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tr_tool->trans_info[YSHEAR] += diffy;
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break;
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default:
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break;
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}
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}
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}
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static void
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gimp_shear_tool_recalc (GimpTransformTool *tr_tool,
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GimpDisplay *gdisp)
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{
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gdouble amount;
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if (tr_tool->trans_info[XSHEAR] == 0.0 &&
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tr_tool->trans_info[YSHEAR] == 0.0)
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tr_tool->trans_info[HORZ_OR_VERT] = GIMP_ORIENTATION_UNKNOWN;
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if (tr_tool->trans_info[HORZ_OR_VERT] == GIMP_ORIENTATION_HORIZONTAL)
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amount = tr_tool->trans_info[XSHEAR];
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else
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amount = tr_tool->trans_info[YSHEAR];
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gimp_matrix3_identity (&tr_tool->transform);
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gimp_transform_matrix_shear (&tr_tool->transform,
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tr_tool->x1,
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tr_tool->y1,
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tr_tool->x2 - tr_tool->x1,
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tr_tool->y2 - tr_tool->y1,
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tr_tool->trans_info[HORZ_OR_VERT],
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amount);
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}
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static void
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shear_x_mag_changed (GtkWidget *widget,
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GimpTransformTool *tr_tool)
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{
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gdouble value;
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value = GTK_ADJUSTMENT (widget)->value;
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if (value != tr_tool->trans_info[XSHEAR])
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{
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gimp_draw_tool_pause (GIMP_DRAW_TOOL (tr_tool));
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if (tr_tool->trans_info[HORZ_OR_VERT] == GIMP_ORIENTATION_UNKNOWN)
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tr_tool->trans_info[HORZ_OR_VERT] = GIMP_ORIENTATION_HORIZONTAL;
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tr_tool->trans_info[XSHEAR] = value;
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gimp_transform_tool_recalc (tr_tool, GIMP_TOOL (tr_tool)->gdisp);
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gimp_transform_tool_expose_preview (tr_tool);
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gimp_draw_tool_resume (GIMP_DRAW_TOOL (tr_tool));
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}
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}
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static void
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shear_y_mag_changed (GtkWidget *widget,
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GimpTransformTool *tr_tool)
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{
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gdouble value;
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value = GTK_ADJUSTMENT (widget)->value;
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if (value != tr_tool->trans_info[YSHEAR])
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{
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gimp_draw_tool_pause (GIMP_DRAW_TOOL (tr_tool));
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if (tr_tool->trans_info[HORZ_OR_VERT] == GIMP_ORIENTATION_UNKNOWN)
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tr_tool->trans_info[HORZ_OR_VERT] = GIMP_ORIENTATION_VERTICAL;
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tr_tool->trans_info[YSHEAR] = value;
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gimp_transform_tool_recalc (tr_tool, GIMP_TOOL (tr_tool)->gdisp);
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gimp_transform_tool_expose_preview (tr_tool);
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gimp_draw_tool_resume (GIMP_DRAW_TOOL (tr_tool));
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}
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}
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