index 9687947547bfc7c74dcb941296570e7809c9543f..45d50b7a226d1f6beae99caaa2f0ca254a43eb32 100644 (file)
-#define __SP_CLONE_TILER_C__
-
-/*
+/** @file
* Clone tiling dialog
- *
- * Authors:
- * bulia byak <buliabyak@users.sf.net>
+ */
+/* Authors:
+ * bulia byak <buliabyak@users.sf.net>
* Johan Engelen <goejendaagh@zonnet.nl>
*
* Copyright (C) 2004-2006 Authors
- * Released under GNU GPL
+ * Released under GNU GPL, read the file 'COPYING' for more information
*/
#ifdef HAVE_CONFIG_H
#include "application/application.h"
#include "application/editor.h"
-#include "helper/window.h"
+#include "../desktop.h"
+#include "../desktop-handles.h"
+#include "dialog-events.h"
+#include "display/nr-arena.h"
+#include "display/nr-arena-item.h"
+#include "../document.h"
+#include "../filter-chemistry.h"
#include "helper/unit-menu.h"
#include "helper/units.h"
-#include "widgets/icon.h"
+#include "helper/window.h"
#include "../inkscape.h"
-#include "../prefs-utils.h"
-#include "dialog-events.h"
-#include "../macros.h"
-#include "../verbs.h"
#include "../interface.h"
+#include "../macros.h"
+#include "../message-stack.h"
+#include "preferences.h"
#include "../selection.h"
-#include "../style.h"
-#include "../desktop.h"
-#include "../desktop-handles.h"
+#include "../sp-filter.h"
#include "../sp-namedview.h"
-#include "../document.h"
-#include "../message-stack.h"
#include "../sp-use.h"
-#include "unclump.h"
-
-#include "xml/repr.h"
-
-#include "svg/svg.h"
+#include "../style.h"
#include "svg/svg-color.h"
-
-#include "libnr/nr-matrix-fns.h"
-#include "libnr/nr-matrix-ops.h"
-
-#include "libnr/nr-matrix-translate-ops.h"
-#include "libnr/nr-translate-ops.h"
-#include "libnr/nr-translate-rotate-ops.h"
-#include "libnr/nr-translate-scale-ops.h"
-
-#include "display/nr-arena.h"
-#include "display/nr-arena-item.h"
-
+#include "svg/svg.h"
+#include "ui/icon-names.h"
#include "ui/widget/color-picker.h"
-
-#include "../sp-filter.h"
-#include "../filter-chemistry.h"
+#include "unclump.h"
+#include "../verbs.h"
+#include "widgets/icon.h"
+#include "xml/repr.h"
#define MIN_ONSCREEN_DISTANCE 50
// impossible original values to make sure they are read from prefs
static gint x = -1000, y = -1000, w = 0, h = 0;
-static gchar *prefs_path = "dialogs.clonetiler";
+static Glib::ustring const prefs_path = "/dialogs/clonetiler/";
#define SB_MARGIN 1
#define VB_MARGIN 4
static Inkscape::UI::Widget::ColorPicker *color_picker;
static void
-clonetiler_dialog_destroy (GtkObject *object, gpointer data)
+clonetiler_dialog_destroy( GtkObject */*object*/, gpointer /*data*/ )
{
if (Inkscape::NSApplication::Application::getNewGui())
{
_color_changed_connection.disconnect();
delete color_picker;
-
+
wd.win = dlg = NULL;
wd.stop = 0;
}
static gboolean
-clonetiler_dialog_delete (GtkObject *object, GdkEvent * /*event*/, gpointer data)
+clonetiler_dialog_delete (GtkObject */*object*/, GdkEvent * /*event*/, gpointer /*data*/)
{
gtk_window_get_position ((GtkWindow *) dlg, &x, &y);
gtk_window_get_size ((GtkWindow *) dlg, &w, &h);
@@ -124,10 +110,11 @@ clonetiler_dialog_delete (GtkObject *object, GdkEvent * /*event*/, gpointer data
if (x<0) x=0;
if (y<0) y=0;
- prefs_set_int_attribute (prefs_path, "x", x);
- prefs_set_int_attribute (prefs_path, "y", y);
- prefs_set_int_attribute (prefs_path, "w", w);
- prefs_set_int_attribute (prefs_path, "h", h);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setInt(prefs_path + "x", x);
+ prefs->setInt(prefs_path + "y", y);
+ prefs->setInt(prefs_path + "w", w);
+ prefs->setInt(prefs_path + "h", h);
return FALSE; // which means, go ahead and destroy it
is_updating = true;
- Inkscape::XML::Node *repr = inkscape_get_repr(INKSCAPE, prefs_path);
gchar c[32];
- sp_svg_write_color(c, 32, rgba);
- repr->setAttribute("initial_color", c);
+ sp_svg_write_color(c, sizeof(c), rgba);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setString(prefs_path + "initial_color", c);
is_updating = false;
}
};
-static NR::Matrix
-clonetiler_get_transform (
+static Geom::Matrix
+clonetiler_get_transform (
+
// symmetry group
int type,
+
// row, column
- int x, int y,
+ int i, int j,
+
// center, width, height of the tile
double cx, double cy,
- double w, double h,
+ double w, double h,
// values from the dialog:
- double d_x_per_x, double d_y_per_x, double d_x_per_y, double d_y_per_y,
- int alternate_x, int alternate_y, double rand_x, double rand_y,
- double d_per_x_exp, double d_per_y_exp,
- double d_rot_per_x, double d_rot_per_y, int alternate_rotx, int alternate_roty, double rand_rot,
- double d_scalex_per_x, double d_scaley_per_x, double d_scalex_per_y, double d_scaley_per_y,
- int alternate_scalex, int alternate_scaley, double rand_scalex, double rand_scaley
+ // Shift
+ double shiftx_per_i, double shifty_per_i,
+ double shiftx_per_j, double shifty_per_j,
+ double shiftx_rand, double shifty_rand,
+ double shiftx_exp, double shifty_exp,
+ int shiftx_alternate, int shifty_alternate,
+ int shiftx_cumulate, int shifty_cumulate,
+ int shiftx_excludew, int shifty_excludeh,
+
+ // Scale
+ double scalex_per_i, double scaley_per_i,
+ double scalex_per_j, double scaley_per_j,
+ double scalex_rand, double scaley_rand,
+ double scalex_exp, double scaley_exp,
+ double scalex_log, double scaley_log,
+ int scalex_alternate, int scaley_alternate,
+ int scalex_cumulate, int scaley_cumulate,
+
+ // Rotation
+ double rotate_per_i, double rotate_per_j,
+ double rotate_rand,
+ int rotate_alternatei, int rotate_alternatej,
+ int rotate_cumulatei, int rotate_cumulatej
)
{
- // in abs units
- double eff_x = (alternate_x? (x%2) : pow ((double) x, d_per_x_exp));
- double eff_y = (alternate_y? (y%2) : pow ((double) y, d_per_y_exp));
- double dx = d_x_per_x * w * eff_x + d_x_per_y * w * eff_y + rand_x * w * g_random_double_range (-1, 1);
- double dy = d_y_per_x * h * eff_x + d_y_per_y * h * eff_y + rand_y * h * g_random_double_range (-1, 1);
-
- NR::Matrix rect_translate (NR::translate (w * pow ((double) x, d_per_x_exp) + dx, h * pow ((double) y, d_per_y_exp) + dy));
-
- // in deg
- double eff_x_rot = (alternate_rotx? (x%2) : (x));
- double eff_y_rot = (alternate_roty? (y%2) : (y));
- double drot = d_rot_per_x * eff_x_rot + d_rot_per_y * eff_y_rot + rand_rot * 180 * g_random_double_range (-1, 1);
-
- // times the original
- double eff_x_s = (alternate_scalex? (x%2) : (x));
- double eff_y_s = (alternate_scaley? (y%2) : (y));
- double rand_scale_x, rand_scale_y;
- if (rand_scaley == rand_scalex) {
- // if rands are equal, scale proportionally
- rand_scale_x = rand_scale_y = rand_scalex * 1 * g_random_double_range (-1, 1);
+
+ // Shift (in units of tile width or height) -------------
+ double delta_shifti = 0.0;
+ double delta_shiftj = 0.0;
+
+ if( shiftx_alternate ) {
+ delta_shifti = (double)(i%2);
+ } else {
+ if( shiftx_cumulate ) { // Should the delta shifts be cumulative (i.e. 1, 1+2, 1+2+3, ...)
+ delta_shifti = (double)(i*i);
+ } else {
+ delta_shifti = (double)i;
+ }
+ }
+
+ if( shifty_alternate ) {
+ delta_shiftj = (double)(j%2);
} else {
- rand_scale_x = rand_scalex * 1 * g_random_double_range (-1, 1);
- rand_scale_y = rand_scaley * 1 * g_random_double_range (-1, 1);
+ if( shifty_cumulate ) {
+ delta_shiftj = (double)(j*j);
+ } else {
+ delta_shiftj = (double)j;
+ }
}
- double dscalex = 1 + d_scalex_per_x * eff_x_s + d_scalex_per_y * eff_y_s + rand_scale_x;
- if (dscalex < 0) dscalex = 0;
- double dscaley = 1 + d_scaley_per_x * eff_x_s + d_scaley_per_y * eff_y_s + rand_scale_y;
- if (dscaley < 0) dscaley = 0;
- NR::Matrix drot_c = NR::translate(-cx, -cy) * NR::rotate (M_PI*drot/180) * NR::translate(cx, cy);
+ // Random shift, only calculate if non-zero.
+ double delta_shiftx_rand = 0.0;
+ double delta_shifty_rand = 0.0;
+ if( shiftx_rand != 0.0 ) delta_shiftx_rand = shiftx_rand * g_random_double_range (-1, 1);
+ if( shifty_rand != 0.0 ) delta_shifty_rand = shifty_rand * g_random_double_range (-1, 1);
+
+
+ // Delta shift (units of tile width/height)
+ double di = shiftx_per_i * delta_shifti + shiftx_per_j * delta_shiftj + delta_shiftx_rand;
+ double dj = shifty_per_i * delta_shifti + shifty_per_j * delta_shiftj + delta_shifty_rand;
+
+ // Shift in actual x and y, used below
+ double dx = w * di;
+ double dy = h * dj;
+
+ double shifti = di;
+ double shiftj = dj;
+
+ // Include tile width and height in shift if required
+ if( !shiftx_excludew ) shifti += i;
+ if( !shifty_excludeh ) shiftj += j;
+
+ // Add exponential shift if necessary
+ if ( shiftx_exp != 1.0 ) shifti = pow( shifti, shiftx_exp );
+ if ( shifty_exp != 1.0 ) shiftj = pow( shiftj, shifty_exp );
+
+ // Final shift
+ Geom::Matrix rect_translate (Geom::Translate (w * shifti, h * shiftj));
+
+ // Rotation (in degrees) ------------
+ double delta_rotationi = 0.0;
+ double delta_rotationj = 0.0;
+
+ if( rotate_alternatei ) {
+ delta_rotationi = (double)(i%2);
+ } else {
+ if( rotate_cumulatei ) {
+ delta_rotationi = (double)(i*i + i)/2.0;
+ } else {
+ delta_rotationi = (double)i;
+ }
+ }
- NR::Matrix dscale_c = NR::translate(-cx, -cy) * NR::scale (dscalex, dscaley) * NR::translate(cx, cy);
+ if( rotate_alternatej ) {
+ delta_rotationj = (double)(j%2);
+ } else {
+ if( rotate_cumulatej ) {
+ delta_rotationj = (double)(j*j + j)/2.0;
+ } else {
+ delta_rotationj = (double)j;
+ }
+ }
- NR::Matrix d_s_r = dscale_c * drot_c;
+ double delta_rotate_rand = 0.0;
+ if( rotate_rand != 0.0 ) delta_rotate_rand = rotate_rand * 180.0 * g_random_double_range (-1, 1);
- NR::Matrix rotate_180_c = NR::translate(-cx, -cy) * NR::rotate (M_PI) * NR::translate(cx, cy);
+ double dr = rotate_per_i * delta_rotationi + rotate_per_j * delta_rotationj + delta_rotate_rand;
- NR::Matrix rotate_90_c = NR::translate(-cx, -cy) * NR::rotate (-M_PI/2) * NR::translate(cx, cy);
- NR::Matrix rotate_m90_c = NR::translate(-cx, -cy) * NR::rotate (M_PI/2) * NR::translate(cx, cy);
+ // Scale (times the original) -----------
+ double delta_scalei = 0.0;
+ double delta_scalej = 0.0;
- NR::Matrix rotate_120_c = NR::translate(-cx, -cy) * NR::rotate (-2*M_PI/3) * NR::translate(cx, cy);
- NR::Matrix rotate_m120_c = NR::translate(-cx, -cy) * NR::rotate (2*M_PI/3) * NR::translate(cx, cy);
+ if( scalex_alternate ) {
+ delta_scalei = (double)(i%2);
+ } else {
+ if( scalex_cumulate ) { // Should the delta scales be cumulative (i.e. 1, 1+2, 1+2+3, ...)
+ delta_scalei = (double)(i*i + i)/2.0;
+ } else {
+ delta_scalei = (double)i;
+ }
+ }
- NR::Matrix rotate_60_c = NR::translate(-cx, -cy) * NR::rotate (-M_PI/3) * NR::translate(cx, cy);
- NR::Matrix rotate_m60_c = NR::translate(-cx, -cy) * NR::rotate (M_PI/3) * NR::translate(cx, cy);
+ if( scaley_alternate ) {
+ delta_scalej = (double)(j%2);
+ } else {
+ if( scaley_cumulate ) {
+ delta_scalej = (double)(j*j + j)/2.0;
+ } else {
+ delta_scalej = (double)j;
+ }
+ }
- double cos60 = cos(M_PI/3);
- double sin60 = sin(M_PI/3);
- double cos30 = cos(M_PI/6);
- double sin30 = sin(M_PI/6);
+ // Random scale, only calculate if non-zero.
+ double delta_scalex_rand = 0.0;
+ double delta_scaley_rand = 0.0;
+ if( scalex_rand != 0.0 ) delta_scalex_rand = scalex_rand * g_random_double_range (-1, 1);
+ if( scaley_rand != 0.0 ) delta_scaley_rand = scaley_rand * g_random_double_range (-1, 1);
+ // But if random factors are same, scale x and y proportionally
+ if( scalex_rand == scaley_rand ) delta_scalex_rand = delta_scaley_rand;
- NR::Matrix flip_x = NR::translate(-cx, -cy) * NR::scale (-1, 1) * NR::translate(cx, cy);
- NR::Matrix flip_y = NR::translate(-cx, -cy) * NR::scale (1, -1) * NR::translate(cx, cy);
+ // Total delta scale
+ double scalex = 1.0 + scalex_per_i * delta_scalei + scalex_per_j * delta_scalej + delta_scalex_rand;
+ double scaley = 1.0 + scaley_per_i * delta_scalei + scaley_per_j * delta_scalej + delta_scaley_rand;
- x = (int) pow ((double) x, d_per_x_exp);
- y = (int) pow ((double) y, d_per_y_exp);
+ if( scalex < 0.0 ) scalex = 0.0;
+ if( scaley < 0.0 ) scaley = 0.0;
+
+ // Add exponential scale if necessary
+ if ( scalex_exp != 1.0 ) scalex = pow( scalex, scalex_exp );
+ if ( scaley_exp != 1.0 ) scaley = pow( scaley, scaley_exp );
+
+ // Add logarithmic factor if necessary
+ if ( scalex_log > 0.0 ) scalex = pow( scalex_log, scalex - 1.0 );
+ if ( scaley_log > 0.0 ) scaley = pow( scaley_log, scaley - 1.0 );
+ // Alternative using rotation angle
+ //if ( scalex_log != 1.0 ) scalex *= pow( scalex_log, M_PI*dr/180 );
+ //if ( scaley_log != 1.0 ) scaley *= pow( scaley_log, M_PI*dr/180 );
+
+
+ // Calculate transformation matrices, translating back to "center of tile" (rotation center) before transforming
+ Geom::Matrix drot_c = Geom::Translate(-cx, -cy) * Geom::Rotate (M_PI*dr/180) * Geom::Translate(cx, cy);
+
+ Geom::Matrix dscale_c = Geom::Translate(-cx, -cy) * Geom::Scale (scalex, scaley) * Geom::Translate(cx, cy);
+
+ Geom::Matrix d_s_r = dscale_c * drot_c;
+
+ Geom::Matrix rotate_180_c = Geom::Translate(-cx, -cy) * Geom::Rotate (M_PI) * Geom::Translate(cx, cy);
+
+ Geom::Matrix rotate_90_c = Geom::Translate(-cx, -cy) * Geom::Rotate (-M_PI/2) * Geom::Translate(cx, cy);
+ Geom::Matrix rotate_m90_c = Geom::Translate(-cx, -cy) * Geom::Rotate ( M_PI/2) * Geom::Translate(cx, cy);
+
+ Geom::Matrix rotate_120_c = Geom::Translate(-cx, -cy) * Geom::Rotate (-2*M_PI/3) * Geom::Translate(cx, cy);
+ Geom::Matrix rotate_m120_c = Geom::Translate(-cx, -cy) * Geom::Rotate ( 2*M_PI/3) * Geom::Translate(cx, cy);
+
+ Geom::Matrix rotate_60_c = Geom::Translate(-cx, -cy) * Geom::Rotate (-M_PI/3) * Geom::Translate(cx, cy);
+ Geom::Matrix rotate_m60_c = Geom::Translate(-cx, -cy) * Geom::Rotate ( M_PI/3) * Geom::Translate(cx, cy);
+
+ Geom::Matrix flip_x = Geom::Translate(-cx, -cy) * Geom::Scale (-1, 1) * Geom::Translate(cx, cy);
+ Geom::Matrix flip_y = Geom::Translate(-cx, -cy) * Geom::Scale (1, -1) * Geom::Translate(cx, cy);
+
+
+ // Create tile with required symmetry
+ const double cos60 = cos(M_PI/3);
+ const double sin60 = sin(M_PI/3);
+ const double cos30 = cos(M_PI/6);
+ const double sin30 = sin(M_PI/6);
switch (type) {
break;
case TILE_P2:
- if (x % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * rotate_180_c * rect_translate;
break;
case TILE_PM:
- if (x % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_x * rect_translate;
break;
case TILE_PG:
- if (y % 2 == 0) {
+ if (j % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_x * rect_translate;
break;
case TILE_CM:
- if ((x + y) % 2 == 0) {
+ if ((i + j) % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_x * rect_translate;
break;
case TILE_PMM:
- if (y % 2 == 0) {
- if (x % 2 == 0) {
+ if (j % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_x * rect_translate;
}
} else {
- if (x % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * flip_y * rect_translate;
} else {
return d_s_r * flip_x * flip_y * rect_translate;
break;
case TILE_PMG:
- if (y % 4 == 0) {
- return d_s_r * rect_translate;
- } else if (y % 4 == 1) {
- return d_s_r * flip_y * rect_translate;
- } else if (y % 4 == 2) {
- return d_s_r * flip_x * rect_translate;
- } else if (y % 4 == 3) {
- return d_s_r * flip_x * flip_y * rect_translate;
+ if (j % 2 == 0) {
+ if (i % 2 == 0) {
+ return d_s_r * rect_translate;
+ } else {
+ return d_s_r * rotate_180_c * rect_translate;
+ }
+ } else {
+ if (i % 2 == 0) {
+ return d_s_r * flip_y * rect_translate;
+ } else {
+ return d_s_r * rotate_180_c * flip_y * rect_translate;
+ }
}
break;
case TILE_PGG:
- if (y % 2 == 0) {
- if (x % 2 == 0) {
+ if (j % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_y * rect_translate;
}
} else {
- if (x % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rotate_180_c * rect_translate;
} else {
return d_s_r * rotate_180_c * flip_y * rect_translate;
break;
case TILE_CMM:
- if (y % 4 == 0) {
- if (x % 2 == 0) {
+ if (j % 4 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_x * rect_translate;
}
- } else if (y % 4 == 1) {
- if (x % 2 == 0) {
+ } else if (j % 4 == 1) {
+ if (i % 2 == 0) {
return d_s_r * flip_y * rect_translate;
} else {
return d_s_r * flip_x * flip_y * rect_translate;
}
- } else if (y % 4 == 2) {
- if (x % 2 == 1) {
+ } else if (j % 4 == 2) {
+ if (i % 2 == 1) {
return d_s_r * rect_translate;
} else {
return d_s_r * flip_x * rect_translate;
}
} else {
- if (x % 2 == 1) {
+ if (i % 2 == 1) {
return d_s_r * flip_y * rect_translate;
} else {
return d_s_r * flip_x * flip_y * rect_translate;
case TILE_P4:
{
- NR::Matrix ori (NR::translate ((w + h) * (x/2) + dx, (h + w) * (y/2) + dy));
- NR::Matrix dia1 (NR::translate (w/2 + h/2, -h/2 + w/2));
- NR::Matrix dia2 (NR::translate (-w/2 + h/2, h/2 + w/2));
- if (y % 2 == 0) {
- if (x % 2 == 0) {
+ Geom::Matrix ori (Geom::Translate ((w + h) * pow((i/2), shiftx_exp) + dx, (h + w) * pow((j/2), shifty_exp) + dy));
+ Geom::Matrix dia1 (Geom::Translate (w/2 + h/2, -h/2 + w/2));
+ Geom::Matrix dia2 (Geom::Translate (-w/2 + h/2, h/2 + w/2));
+ if (j % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * ori;
} else {
return d_s_r * rotate_m90_c * dia1 * ori;
}
} else {
- if (x % 2 == 0) {
+ if (i % 2 == 0) {
return d_s_r * rotate_90_c * dia2 * ori;
} else {
return d_s_r * rotate_180_c * dia1 * dia2 * ori;
case TILE_P4M:
{
double max = MAX(w, h);
- NR::Matrix ori (NR::translate ((max + max) * (x/4) + dx, (max + max) * (y/2) + dy));
- NR::Matrix dia1 (NR::translate (w/2 - h/2, h/2 - w/2));
- NR::Matrix dia2 (NR::translate (-h/2 + w/2, w/2 - h/2));
- if (y % 2 == 0) {
- if (x % 4 == 0) {
+ Geom::Matrix ori (Geom::Translate ((max + max) * pow((i/4), shiftx_exp) + dx, (max + max) * pow((j/2), shifty_exp) + dy));
+ Geom::Matrix dia1 (Geom::Translate ( w/2 - h/2, h/2 - w/2));
+ Geom::Matrix dia2 (Geom::Translate (-h/2 + w/2, w/2 - h/2));
+ if (j % 2 == 0) {
+ if (i % 4 == 0) {
return d_s_r * ori;
- } else if (x % 4 == 1) {
+ } else if (i % 4 == 1) {
return d_s_r * flip_y * rotate_m90_c * dia1 * ori;
- } else if (x % 4 == 2) {
- return d_s_r * rotate_m90_c * dia1 * NR::translate (h, 0) * ori;
- } else if (x % 4 == 3) {
- return d_s_r * flip_x * NR::translate (w, 0) * ori;
+ } else if (i % 4 == 2) {
+ return d_s_r * rotate_m90_c * dia1 * Geom::Translate (h, 0) * ori;
+ } else if (i % 4 == 3) {
+ return d_s_r * flip_x * Geom::Translate (w, 0) * ori;
}
} else {
- if (x % 4 == 0) {
- return d_s_r * flip_y * NR::translate(0, h) * ori;
- } else if (x % 4 == 1) {
- return d_s_r * rotate_90_c * dia2 * NR::translate(0, h) * ori;
- } else if (x % 4 == 2) {
- return d_s_r * flip_y * rotate_90_c * dia2 * NR::translate(h, 0) * NR::translate(0, h) * ori;
- } else if (x % 4 == 3) {
- return d_s_r * flip_y * flip_x * NR::translate(w, 0) * NR::translate(0, h) * ori;
+ if (i % 4 == 0) {
+ return d_s_r * flip_y * Geom::Translate(0, h) * ori;
+ } else if (i % 4 == 1) {
+ return d_s_r * rotate_90_c * dia2 * Geom::Translate(0, h) * ori;
+ } else if (i % 4 == 2) {
+ return d_s_r * flip_y * rotate_90_c * dia2 * Geom::Translate(h, 0) * Geom::Translate(0, h) * ori;
+ } else if (i % 4 == 3) {
+ return d_s_r * flip_y * flip_x * Geom::Translate(w, 0) * Geom::Translate(0, h) * ori;
}
}
}
case TILE_P4G:
{
double max = MAX(w, h);
- NR::Matrix ori (NR::translate ((max + max) * (x/4) + dx, (max + max) * y + dy));
- NR::Matrix dia1 (NR::translate (w/2 + h/2, h/2 - w/2));
- NR::Matrix dia2 (NR::translate (-h/2 + w/2, w/2 + h/2));
- if (((x/4) + y) % 2 == 0) {
- if (x % 4 == 0) {
+ Geom::Matrix ori (Geom::Translate ((max + max) * pow((i/4), shiftx_exp) + dx, (max + max) * pow(j, shifty_exp) + dy));
+ Geom::Matrix dia1 (Geom::Translate ( w/2 + h/2, h/2 - w/2));
+ Geom::Matrix dia2 (Geom::Translate (-h/2 + w/2, w/2 + h/2));
+ if (((i/4) + j) % 2 == 0) {
+ if (i % 4 == 0) {
return d_s_r * ori;
- } else if (x % 4 == 1) {
+ } else if (i % 4 == 1) {
return d_s_r * rotate_m90_c * dia1 * ori;
- } else if (x % 4 == 2) {
+ } else if (i % 4 == 2) {
return d_s_r * rotate_90_c * dia2 * ori;
- } else if (x % 4 == 3) {
+ } else if (i % 4 == 3) {
return d_s_r * rotate_180_c * dia1 * dia2 * ori;
}
} else {
- if (x % 4 == 0) {
- return d_s_r * flip_y * NR::translate (0, h) * ori;
- } else if (x % 4 == 1) {
- return d_s_r * flip_y * rotate_m90_c * dia1 * NR::translate (-h, 0) * ori;
- } else if (x % 4 == 2) {
- return d_s_r * flip_y * rotate_90_c * dia2 * NR::translate (h, 0) * ori;
- } else if (x % 4 == 3) {
- return d_s_r * flip_x * NR::translate (w, 0) * ori;
+ if (i % 4 == 0) {
+ return d_s_r * flip_y * Geom::Translate (0, h) * ori;
+ } else if (i % 4 == 1) {
+ return d_s_r * flip_y * rotate_m90_c * dia1 * Geom::Translate (-h, 0) * ori;
+ } else if (i % 4 == 2) {
+ return d_s_r * flip_y * rotate_90_c * dia2 * Geom::Translate (h, 0) * ori;
+ } else if (i % 4 == 3) {
+ return d_s_r * flip_x * Geom::Translate (w, 0) * ori;
}
}
}
{
double width;
double height;
- NR::Matrix dia1;
- NR::Matrix dia2;
+ Geom::Matrix dia1;
+ Geom::Matrix dia2;
if (w > h) {
- width = w + w * cos60;
+ width = w + w * cos60;
height = 2 * w * sin60;
- dia1 = NR::Matrix (NR::translate (w/2 + w/2 * cos60, -(w/2 * sin60)));
- dia2 = dia1 * NR::Matrix (NR::translate (0, 2 * (w/2 * sin60)));
+ dia1 = Geom::Matrix (Geom::Translate (w/2 + w/2 * cos60, -(w/2 * sin60)));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (0, 2 * (w/2 * sin60)));
} else {
width = h * cos (M_PI/6);
height = h;
- dia1 = NR::Matrix (NR::translate (h/2 * cos30, -(h/2 * sin30)));
- dia2 = dia1 * NR::Matrix (NR::translate (0, h/2));
+ dia1 = Geom::Matrix (Geom::Translate (h/2 * cos30, -(h/2 * sin30)));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (0, h/2));
}
- NR::Matrix ori (NR::translate (width * (2*(x/3) + y%2) + dx, (height/2) * y + dy));
- if (x % 3 == 0) {
+ Geom::Matrix ori (Geom::Translate (width * pow((2*(i/3) + j%2), shiftx_exp) + dx, (height/2) * pow(j, shifty_exp) + dy));
+ if (i % 3 == 0) {
return d_s_r * ori;
- } else if (x % 3 == 1) {
+ } else if (i % 3 == 1) {
return d_s_r * rotate_m120_c * dia1 * ori;
- } else if (x % 3 == 2) {
+ } else if (i % 3 == 2) {
return d_s_r * rotate_120_c * dia2 * ori;
}
}
case TILE_P31M:
{
- NR::Matrix ori;
- NR::Matrix dia1;
- NR::Matrix dia2;
- NR::Matrix dia3;
- NR::Matrix dia4;
+ Geom::Matrix ori;
+ Geom::Matrix dia1;
+ Geom::Matrix dia2;
+ Geom::Matrix dia3;
+ Geom::Matrix dia4;
if (w > h) {
- ori = NR::Matrix(NR::translate (w * (x/6) + w/2 * (y%2) + dx, (w * cos30) * y + dy));
- dia1 = NR::Matrix (NR::translate (0, h/2) * NR::translate (w/2, 0) * NR::translate (w/2 * cos60, -w/2 * sin60) * NR::translate (-h/2 * cos30, -h/2 * sin30) );
- dia2 = dia1 * NR::Matrix (NR::translate (h * cos30, h * sin30));
- dia3 = dia2 * NR::Matrix (NR::translate (0, 2 * (w/2 * sin60 - h/2 * sin30)));
- dia4 = dia3 * NR::Matrix (NR::translate (-h * cos30, h * sin30));
+ ori = Geom::Matrix(Geom::Translate (w * pow((i/6) + 0.5*(j%2), shiftx_exp) + dx, (w * cos30) * pow(j, shifty_exp) + dy));
+ dia1 = Geom::Matrix (Geom::Translate (0, h/2) * Geom::Translate (w/2, 0) * Geom::Translate (w/2 * cos60, -w/2 * sin60) * Geom::Translate (-h/2 * cos30, -h/2 * sin30) );
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (h * cos30, h * sin30));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (0, 2 * (w/2 * sin60 - h/2 * sin30)));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (-h * cos30, h * sin30));
} else {
- ori = NR::Matrix (NR::translate (2*h * cos30 * (x/6 + 0.5*(y%2)) + dx, (2*h - h * sin30) * y + dy));
- dia1 = NR::Matrix (NR::translate (0, -h/2) * NR::translate (h/2 * cos30, h/2 * sin30));
- dia2 = dia1 * NR::Matrix (NR::translate (h * cos30, h * sin30));
- dia3 = dia2 * NR::Matrix (NR::translate (0, h/2));
- dia4 = dia3 * NR::Matrix (NR::translate (-h * cos30, h * sin30));
+ ori = Geom::Matrix (Geom::Translate (2*h * cos30 * pow((i/6 + 0.5*(j%2)), shiftx_exp) + dx, (2*h - h * sin30) * pow(j, shifty_exp) + dy));
+ dia1 = Geom::Matrix (Geom::Translate (0, -h/2) * Geom::Translate (h/2 * cos30, h/2 * sin30));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (h * cos30, h * sin30));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (0, h/2));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (-h * cos30, h * sin30));
}
- if (x % 6 == 0) {
+ if (i % 6 == 0) {
return d_s_r * ori;
- } else if (x % 6 == 1) {
+ } else if (i % 6 == 1) {
return d_s_r * flip_y * rotate_m120_c * dia1 * ori;
- } else if (x % 6 == 2) {
+ } else if (i % 6 == 2) {
return d_s_r * rotate_m120_c * dia2 * ori;
- } else if (x % 6 == 3) {
+ } else if (i % 6 == 3) {
return d_s_r * flip_y * rotate_120_c * dia3 * ori;
- } else if (x % 6 == 4) {
+ } else if (i % 6 == 4) {
return d_s_r * rotate_120_c * dia4 * ori;
- } else if (x % 6 == 5) {
- return d_s_r * flip_y * NR::translate(0, h) * ori;
+ } else if (i % 6 == 5) {
+ return d_s_r * flip_y * Geom::Translate(0, h) * ori;
}
}
break;
{
double width;
double height;
- NR::Matrix dia1;
- NR::Matrix dia2;
- NR::Matrix dia3;
- NR::Matrix dia4;
+ Geom::Matrix dia1;
+ Geom::Matrix dia2;
+ Geom::Matrix dia3;
+ Geom::Matrix dia4;
if (w > h) {
width = w + w * cos60;
height = 2 * w * sin60;
- dia1 = NR::Matrix (NR::translate (0, h/2) * NR::translate (w/2, 0) * NR::translate (w/2 * cos60, -w/2 * sin60) * NR::translate (-h/2 * cos30, -h/2 * sin30) );
- dia2 = dia1 * NR::Matrix (NR::translate (h * cos30, h * sin30));
- dia3 = dia2 * NR::Matrix (NR::translate (0, 2 * (w/2 * sin60 - h/2 * sin30)));
- dia4 = dia3 * NR::Matrix (NR::translate (-h * cos30, h * sin30));
+ dia1 = Geom::Matrix (Geom::Translate (0, h/2) * Geom::Translate (w/2, 0) * Geom::Translate (w/2 * cos60, -w/2 * sin60) * Geom::Translate (-h/2 * cos30, -h/2 * sin30) );
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (h * cos30, h * sin30));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (0, 2 * (w/2 * sin60 - h/2 * sin30)));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (-h * cos30, h * sin30));
} else {
width = 2 * h * cos (M_PI/6);
height = 2 * h;
- dia1 = NR::Matrix (NR::translate (0, -h/2) * NR::translate (h/2 * cos30, h/2 * sin30));
- dia2 = dia1 * NR::Matrix (NR::translate (h * cos30, h * sin30));
- dia3 = dia2 * NR::Matrix (NR::translate (0, h/2));
- dia4 = dia3 * NR::Matrix (NR::translate (-h * cos30, h * sin30));
+ dia1 = Geom::Matrix (Geom::Translate (0, -h/2) * Geom::Translate (h/2 * cos30, h/2 * sin30));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (h * cos30, h * sin30));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (0, h/2));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (-h * cos30, h * sin30));
}
- NR::Matrix ori (NR::translate (width * (2*(x/6) + y%2) + dx, (height/2) * y + dy));
- if (x % 6 == 0) {
+ Geom::Matrix ori (Geom::Translate (width * pow((2*(i/6) + j%2), shiftx_exp) + dx, (height/2) * pow(j, shifty_exp) + dy));
+ if (i % 6 == 0) {
return d_s_r * ori;
- } else if (x % 6 == 1) {
+ } else if (i % 6 == 1) {
return d_s_r * flip_y * rotate_m120_c * dia1 * ori;
- } else if (x % 6 == 2) {
+ } else if (i % 6 == 2) {
return d_s_r * rotate_m120_c * dia2 * ori;
- } else if (x % 6 == 3) {
+ } else if (i % 6 == 3) {
return d_s_r * flip_y * rotate_120_c * dia3 * ori;
- } else if (x % 6 == 4) {
+ } else if (i % 6 == 4) {
return d_s_r * rotate_120_c * dia4 * ori;
- } else if (x % 6 == 5) {
- return d_s_r * flip_y * NR::translate(0, h) * ori;
+ } else if (i % 6 == 5) {
+ return d_s_r * flip_y * Geom::Translate(0, h) * ori;
}
}
break;
case TILE_P6:
{
- NR::Matrix ori;
- NR::Matrix dia1;
- NR::Matrix dia2;
- NR::Matrix dia3;
- NR::Matrix dia4;
- NR::Matrix dia5;
+ Geom::Matrix ori;
+ Geom::Matrix dia1;
+ Geom::Matrix dia2;
+ Geom::Matrix dia3;
+ Geom::Matrix dia4;
+ Geom::Matrix dia5;
if (w > h) {
- ori = NR::Matrix(NR::translate (2*w * (x/6) + w * (y%2) + dx, (2*w * sin60) * y + dy));
- dia1 = NR::Matrix (NR::translate (w/2 * cos60, -w/2 * sin60));
- dia2 = dia1 * NR::Matrix (NR::translate (w/2, 0));
- dia3 = dia2 * NR::Matrix (NR::translate (w/2 * cos60, w/2 * sin60));
- dia4 = dia3 * NR::Matrix (NR::translate (-w/2 * cos60, w/2 * sin60));
- dia5 = dia4 * NR::Matrix (NR::translate (-w/2, 0));
+ ori = Geom::Matrix(Geom::Translate (w * pow((2*(i/6) + (j%2)), shiftx_exp) + dx, (2*w * sin60) * pow(j, shifty_exp) + dy));
+ dia1 = Geom::Matrix (Geom::Translate (w/2 * cos60, -w/2 * sin60));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (w/2, 0));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (w/2 * cos60, w/2 * sin60));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (-w/2 * cos60, w/2 * sin60));
+ dia5 = dia4 * Geom::Matrix (Geom::Translate (-w/2, 0));
} else {
- ori = NR::Matrix(NR::translate (2*h * cos30 * (x/6 + 0.5*(y%2)) + dx, (h + h * sin30) * y + dy));
- dia1 = NR::Matrix (NR::translate (-w/2, -h/2) * NR::translate (h/2 * cos30, -h/2 * sin30) * NR::translate (w/2 * cos60, w/2 * sin60));
- dia2 = dia1 * NR::Matrix (NR::translate (-w/2 * cos60, -w/2 * sin60) * NR::translate (h/2 * cos30, -h/2 * sin30) * NR::translate (h/2 * cos30, h/2 * sin30) * NR::translate (-w/2 * cos60, w/2 * sin60));
- dia3 = dia2 * NR::Matrix (NR::translate (w/2 * cos60, -w/2 * sin60) * NR::translate (h/2 * cos30, h/2 * sin30) * NR::translate (-w/2, h/2));
+ ori = Geom::Matrix(Geom::Translate (2*h * cos30 * pow((i/6 + 0.5*(j%2)), shiftx_exp) + dx, (h + h * sin30) * pow(j, shifty_exp) + dy));
+ dia1 = Geom::Matrix (Geom::Translate (-w/2, -h/2) * Geom::Translate (h/2 * cos30, -h/2 * sin30) * Geom::Translate (w/2 * cos60, w/2 * sin60));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (-w/2 * cos60, -w/2 * sin60) * Geom::Translate (h/2 * cos30, -h/2 * sin30) * Geom::Translate (h/2 * cos30, h/2 * sin30) * Geom::Translate (-w/2 * cos60, w/2 * sin60));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (w/2 * cos60, -w/2 * sin60) * Geom::Translate (h/2 * cos30, h/2 * sin30) * Geom::Translate (-w/2, h/2));
dia4 = dia3 * dia1.inverse();
dia5 = dia3 * dia2.inverse();
}
- if (x % 6 == 0) {
+ if (i % 6 == 0) {
return d_s_r * ori;
- } else if (x % 6 == 1) {
+ } else if (i % 6 == 1) {
return d_s_r * rotate_m60_c * dia1 * ori;
- } else if (x % 6 == 2) {
+ } else if (i % 6 == 2) {
return d_s_r * rotate_m120_c * dia2 * ori;
- } else if (x % 6 == 3) {
+ } else if (i % 6 == 3) {
return d_s_r * rotate_180_c * dia3 * ori;
- } else if (x % 6 == 4) {
+ } else if (i % 6 == 4) {
return d_s_r * rotate_120_c * dia4 * ori;
- } else if (x % 6 == 5) {
+ } else if (i % 6 == 5) {
return d_s_r * rotate_60_c * dia5 * ori;
}
}
case TILE_P6M:
{
- NR::Matrix ori;
- NR::Matrix dia1, dia2, dia3, dia4, dia5, dia6, dia7, dia8, dia9, dia10;
+ Geom::Matrix ori;
+ Geom::Matrix dia1, dia2, dia3, dia4, dia5, dia6, dia7, dia8, dia9, dia10;
if (w > h) {
- ori = NR::Matrix(NR::translate (2*w * (x/12) + w * (y%2) + dx, (2*w * sin60) * y + dy));
- dia1 = NR::Matrix (NR::translate (w/2, h/2) * NR::translate (-w/2 * cos60, -w/2 * sin60) * NR::translate (-h/2 * cos30, h/2 * sin30));
- dia2 = dia1 * NR::Matrix (NR::translate (h * cos30, -h * sin30));
- dia3 = dia2 * NR::Matrix (NR::translate (-h/2 * cos30, h/2 * sin30) * NR::translate (w * cos60, 0) * NR::translate (-h/2 * cos30, -h/2 * sin30));
- dia4 = dia3 * NR::Matrix (NR::translate (h * cos30, h * sin30));
- dia5 = dia4 * NR::Matrix (NR::translate (-h/2 * cos30, -h/2 * sin30) * NR::translate (-w/2 * cos60, w/2 * sin60) * NR::translate (w/2, -h/2));
- dia6 = dia5 * NR::Matrix (NR::translate (0, h));
+ ori = Geom::Matrix(Geom::Translate (w * pow((2*(i/12) + (j%2)), shiftx_exp) + dx, (2*w * sin60) * pow(j, shifty_exp) + dy));
+ dia1 = Geom::Matrix (Geom::Translate (w/2, h/2) * Geom::Translate (-w/2 * cos60, -w/2 * sin60) * Geom::Translate (-h/2 * cos30, h/2 * sin30));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (h * cos30, -h * sin30));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (-h/2 * cos30, h/2 * sin30) * Geom::Translate (w * cos60, 0) * Geom::Translate (-h/2 * cos30, -h/2 * sin30));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (h * cos30, h * sin30));
+ dia5 = dia4 * Geom::Matrix (Geom::Translate (-h/2 * cos30, -h/2 * sin30) * Geom::Translate (-w/2 * cos60, w/2 * sin60) * Geom::Translate (w/2, -h/2));
+ dia6 = dia5 * Geom::Matrix (Geom::Translate (0, h));
dia7 = dia6 * dia1.inverse();
dia8 = dia6 * dia2.inverse();
dia9 = dia6 * dia3.inverse();
dia10 = dia6 * dia4.inverse();
} else {
- ori = NR::Matrix(NR::translate (4*h * cos30 * (x/12 + 0.5*(y%2)) + dx, (2*h + 2*h * sin30) * y + dy));
- dia1 = NR::Matrix (NR::translate (-w/2, -h/2) * NR::translate (h/2 * cos30, -h/2 * sin30) * NR::translate (w/2 * cos60, w/2 * sin60));
- dia2 = dia1 * NR::Matrix (NR::translate (h * cos30, -h * sin30));
- dia3 = dia2 * NR::Matrix (NR::translate (-w/2 * cos60, -w/2 * sin60) * NR::translate (h * cos30, 0) * NR::translate (-w/2 * cos60, w/2 * sin60));
- dia4 = dia3 * NR::Matrix (NR::translate (h * cos30, h * sin30));
- dia5 = dia4 * NR::Matrix (NR::translate (w/2 * cos60, -w/2 * sin60) * NR::translate (h/2 * cos30, h/2 * sin30) * NR::translate (-w/2, h/2));
- dia6 = dia5 * NR::Matrix (NR::translate (0, h));
+ ori = Geom::Matrix(Geom::Translate (4*h * cos30 * pow((i/12 + 0.5*(j%2)), shiftx_exp) + dx, (2*h + 2*h * sin30) * pow(j, shifty_exp) + dy));
+ dia1 = Geom::Matrix (Geom::Translate (-w/2, -h/2) * Geom::Translate (h/2 * cos30, -h/2 * sin30) * Geom::Translate (w/2 * cos60, w/2 * sin60));
+ dia2 = dia1 * Geom::Matrix (Geom::Translate (h * cos30, -h * sin30));
+ dia3 = dia2 * Geom::Matrix (Geom::Translate (-w/2 * cos60, -w/2 * sin60) * Geom::Translate (h * cos30, 0) * Geom::Translate (-w/2 * cos60, w/2 * sin60));
+ dia4 = dia3 * Geom::Matrix (Geom::Translate (h * cos30, h * sin30));
+ dia5 = dia4 * Geom::Matrix (Geom::Translate (w/2 * cos60, -w/2 * sin60) * Geom::Translate (h/2 * cos30, h/2 * sin30) * Geom::Translate (-w/2, h/2));
+ dia6 = dia5 * Geom::Matrix (Geom::Translate (0, h));
dia7 = dia6 * dia1.inverse();
dia8 = dia6 * dia2.inverse();
dia9 = dia6 * dia3.inverse();
dia10 = dia6 * dia4.inverse();
}
- if (x % 12 == 0) {
+ if (i % 12 == 0) {
return d_s_r * ori;
- } else if (x % 12 == 1) {
+ } else if (i % 12 == 1) {
return d_s_r * flip_y * rotate_m60_c * dia1 * ori;
- } else if (x % 12 == 2) {
+ } else if (i % 12 == 2) {
return d_s_r * rotate_m60_c * dia2 * ori;
- } else if (x % 12 == 3) {
+ } else if (i % 12 == 3) {
return d_s_r * flip_y * rotate_m120_c * dia3 * ori;
- } else if (x % 12 == 4) {
+ } else if (i % 12 == 4) {
return d_s_r * rotate_m120_c * dia4 * ori;
- } else if (x % 12 == 5) {
+ } else if (i % 12 == 5) {
return d_s_r * flip_x * dia5 * ori;
- } else if (x % 12 == 6) {
+ } else if (i % 12 == 6) {
return d_s_r * flip_x * flip_y * dia6 * ori;
- } else if (x % 12 == 7) {
+ } else if (i % 12 == 7) {
return d_s_r * flip_y * rotate_120_c * dia7 * ori;
- } else if (x % 12 == 8) {
+ } else if (i % 12 == 8) {
return d_s_r * rotate_120_c * dia8 * ori;
- } else if (x % 12 == 9) {
+ } else if (i % 12 == 9) {
return d_s_r * flip_y * rotate_60_c * dia9 * ori;
- } else if (x % 12 == 10) {
+ } else if (i % 12 == 10) {
return d_s_r * rotate_60_c * dia10 * ori;
- } else if (x % 12 == 11) {
- return d_s_r * flip_y * NR::translate (0, h) * ori;
+ } else if (i % 12 == 11) {
+ return d_s_r * flip_y * Geom::Translate (0, h) * ori;
}
}
break;
break;
}
- return NR::identity();
+ return Geom::identity();
}
static bool
static unsigned trace_visionkey;
static NRArenaItem *trace_root;
static gdouble trace_zoom;
+static SPDocument *trace_doc;
static void
clonetiler_trace_hide_tiled_clones_recursively (SPObject *from)
trace_arena = NRArena::create();
/* Create ArenaItem and set transform */
trace_visionkey = sp_item_display_key_new(1);
- trace_root = sp_item_invoke_show( SP_ITEM(SP_DOCUMENT_ROOT (doc)),
+ trace_doc = doc;
+ trace_root = sp_item_invoke_show( SP_ITEM(SP_DOCUMENT_ROOT (trace_doc)),
(NRArena *) trace_arena, trace_visionkey, SP_ITEM_SHOW_DISPLAY);
// hide the (current) original and any tiled clones, we only want to pick the background
- sp_item_invoke_hide(original, trace_visionkey);
- clonetiler_trace_hide_tiled_clones_recursively (SP_OBJECT(SP_DOCUMENT_ROOT (doc)));
+ sp_item_invoke_hide(original, trace_visionkey);
+ clonetiler_trace_hide_tiled_clones_recursively (SP_OBJECT(SP_DOCUMENT_ROOT (trace_doc)));
- sp_document_root (doc)->requestDisplayUpdate(SP_OBJECT_MODIFIED_FLAG);
- sp_document_ensure_up_to_date(doc);
+ sp_document_root (trace_doc)->requestDisplayUpdate(SP_OBJECT_MODIFIED_FLAG);
+ sp_document_ensure_up_to_date(trace_doc);
trace_zoom = zoom;
}
static guint32
-clonetiler_trace_pick (NR::Rect box)
+clonetiler_trace_pick (Geom::Rect box)
{
if (!trace_arena)
return 0;
- NRMatrix t;
- nr_matrix_set_scale(&t, trace_zoom, trace_zoom);
+ Geom::Matrix t(Geom::Scale(trace_zoom, trace_zoom));
nr_arena_item_set_transform(trace_root, &t);
NRGC gc(NULL);
- nr_matrix_set_identity(&gc.transform);
+ gc.transform.setIdentity();
nr_arena_item_invoke_update( trace_root, NULL, &gc,
NR_ARENA_ITEM_STATE_ALL,
NR_ARENA_ITEM_STATE_NONE );
/* Item integer bbox in points */
NRRectL ibox;
- ibox.x0 = (int) floor(trace_zoom * box.min()[NR::X] + 0.5);
- ibox.y0 = (int) floor(trace_zoom * box.min()[NR::Y] + 0.5);
- ibox.x1 = (int) floor(trace_zoom * box.max()[NR::X] + 0.5);
- ibox.y1 = (int) floor(trace_zoom * box.max()[NR::Y] + 0.5);
+ ibox.x0 = (int) floor(trace_zoom * box[Geom::X].min() + 0.5);
+ ibox.y0 = (int) floor(trace_zoom * box[Geom::Y].min() + 0.5);
+ ibox.x1 = (int) floor(trace_zoom * box[Geom::X].max() + 0.5);
+ ibox.y1 = (int) floor(trace_zoom * box[Geom::Y].max() + 0.5);
/* Find visible area */
int width = ibox.x1 - ibox.x0;
/* Set up pixblock */
guchar *px = g_new(guchar, 4 * width * height);
+
+ if (px == NULL) {
+ return 0; // buffer is too big or too small, cannot pick, so return 0
+ }
+
memset(px, 0x00, 4 * width * height);
/* Render */
nr_pixblock_setup_extern( &pb, NR_PIXBLOCK_MODE_R8G8B8A8N,
ibox.x0, ibox.y0, ibox.x1, ibox.y1,
px, 4 * width, FALSE, FALSE );
- nr_arena_item_invoke_render( trace_root, &ibox, &pb,
+ nr_arena_item_invoke_render(NULL, trace_root, &ibox, &pb,
NR_ARENA_ITEM_RENDER_NO_CACHE );
double R = 0, G = 0, B = 0, A = 0;
static void
clonetiler_trace_finish ()
{
+ if (trace_doc) {
+ sp_item_invoke_hide(SP_ITEM(sp_document_root(trace_doc)), trace_visionkey);
+ }
if (trace_arena) {
((NRObject *) trace_arena)->unreference();
trace_arena = NULL;
}
static void
-clonetiler_unclump (GtkWidget *widget, void *)
+clonetiler_unclump( GtkWidget */*widget*/, void * )
{
SPDesktop *desktop = SP_ACTIVE_DESKTOP;
if (desktop == NULL)
g_slist_free (to_unclump);
- sp_document_done (sp_desktop_document (desktop), SP_VERB_DIALOG_CLONETILER,
+ sp_document_done (sp_desktop_document (desktop), SP_VERB_DIALOG_CLONETILER,
_("Unclump tiled clones"));
}
}
static void
-clonetiler_remove (GtkWidget *widget, void *, bool do_undo = true)
+clonetiler_remove( GtkWidget */*widget*/, void *, bool do_undo = true )
{
SPDesktop *desktop = SP_ACTIVE_DESKTOP;
if (desktop == NULL)
clonetiler_change_selection (NULL, selection, dlg);
if (do_undo)
- sp_document_done (sp_desktop_document (desktop), SP_VERB_DIALOG_CLONETILER,
+ sp_document_done (sp_desktop_document (desktop), SP_VERB_DIALOG_CLONETILER,
_("Delete tiled clones"));
}
-static NR::Rect
-transform_rect(NR::Rect const &r, NR::Matrix const &m)
+static Geom::Rect
+transform_rect( Geom::Rect const &r, Geom::Matrix const &m)
{
- using NR::X;
- using NR::Y;
- NR::Point const p1 = r.corner(1) * m;
- NR::Point const p2 = r.corner(2) * m;
- NR::Point const p3 = r.corner(3) * m;
- NR::Point const p4 = r.corner(4) * m;
- return NR::Rect(
- NR::Point(
- std::min(std::min(p1[X], p2[X]), std::min(p3[X], p4[X])),
- std::min(std::min(p1[Y], p2[Y]), std::min(p3[Y], p4[Y]))),
- NR::Point(
- std::max(std::max(p1[X], p2[X]), std::max(p3[X], p4[X])),
+ using Geom::X;
+ using Geom::Y;
+ Geom::Point const p1 = r.corner(1) * m;
+ Geom::Point const p2 = r.corner(2) * m;
+ Geom::Point const p3 = r.corner(3) * m;
+ Geom::Point const p4 = r.corner(4) * m;
+ return Geom::Rect(
+ Geom::Point(
+ std::min(std::min(p1[X], p2[X]), std::min(p3[X], p4[X])),
+ std::min(std::min(p1[Y], p2[Y]), std::min(p3[Y], p4[Y]))),
+ Geom::Point(
+ std::max(std::max(p1[X], p2[X]), std::max(p3[X], p4[X])),
std::max(std::max(p1[Y], p2[Y]), std::max(p3[Y], p4[Y]))));
}
static void
-clonetiler_apply (GtkWidget *widget, void *)
+clonetiler_apply( GtkWidget */*widget*/, void * )
{
SPDesktop *desktop = SP_ACTIVE_DESKTOP;
if (desktop == NULL)
return;
-
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
Inkscape::Selection *selection = sp_desktop_selection(desktop);
// check if something is selected
return;
}
+ // set "busy" cursor
+ desktop->setWaitingCursor();
+
+ // set statusbar text
+ GtkWidget *status = (GtkWidget *) g_object_get_data (G_OBJECT(dlg), "status");
+ gtk_label_set_markup (GTK_LABEL(status), _("<small>Creating tiled clones...</small>"));
+ gtk_widget_queue_draw(GTK_WIDGET(status));
+ gdk_window_process_all_updates();
+
SPObject *obj = SP_OBJECT(selection->singleItem());
Inkscape::XML::Node *obj_repr = SP_OBJECT_REPR(obj);
const char *id_href = g_strdup_printf("#%s", obj_repr->attribute("id"));
clonetiler_remove (NULL, NULL, false);
- double d_x_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_x_per_x", 0, -100, 1000);
- double d_y_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_y_per_x", 0, -100, 1000);
- double d_per_x_exp = prefs_get_double_attribute_limited (prefs_path, "d_per_x_exp", 1, 0, 10);
- double d_x_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_x_per_y", 0, -100, 1000);
- double d_y_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_y_per_y", 0, -100, 1000);
- double d_per_y_exp = prefs_get_double_attribute_limited (prefs_path, "d_per_y_exp", 1, 0, 10);
- int alternate_x = prefs_get_int_attribute (prefs_path, "alternate_x", 0);
- int alternate_y = prefs_get_int_attribute (prefs_path, "alternate_y", 0);
- double rand_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_x", 0, 0, 1000);
- double rand_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_y", 0, 0, 1000);
-
- double d_scalex_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_scalex_per_x", 0, -100, 1000);
- double d_scaley_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_scaley_per_x", 0, -100, 1000);
- double d_scalex_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_scalex_per_y", 0, -100, 1000);
- double d_scaley_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_scaley_per_y", 0, -100, 1000);
- int alternate_scalex = prefs_get_int_attribute (prefs_path, "alternate_scalex", 0);
- int alternate_scaley = prefs_get_int_attribute (prefs_path, "alternate_scaley", 0);
- double rand_scalex = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_scalex", 0, 0, 1000);
- double rand_scaley = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_scaley", 0, 0, 1000);
-
- double d_rot_per_x = prefs_get_double_attribute_limited (prefs_path, "d_rot_per_x", 0, -180, 180);
- double d_rot_per_y = prefs_get_double_attribute_limited (prefs_path, "d_rot_per_y", 0, -180, 180);
- int alternate_rotx = prefs_get_int_attribute (prefs_path, "alternate_rotx", 0);
- int alternate_roty = prefs_get_int_attribute (prefs_path, "alternate_roty", 0);
- double rand_rot = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_rot", 0, 0, 100);
-
- double d_blur_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_blur_per_y", 0, 0, 100);
- double d_blur_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_blur_per_x", 0, 0, 100);
- int alternate_blury = prefs_get_int_attribute (prefs_path, "alternate_blury", 0);
- int alternate_blurx = prefs_get_int_attribute (prefs_path, "alternate_blurx", 0);
- double rand_blur = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_blur", 0, 0, 100);
-
- double d_opacity_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_opacity_per_y", 0, 0, 100);
- double d_opacity_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_opacity_per_x", 0, 0, 100);
- int alternate_opacityy = prefs_get_int_attribute (prefs_path, "alternate_opacityy", 0);
- int alternate_opacityx = prefs_get_int_attribute (prefs_path, "alternate_opacityx", 0);
- double rand_opacity = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_opacity", 0, 0, 100);
-
- const gchar *initial_color = prefs_get_string_attribute (prefs_path, "initial_color");
- double d_hue_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_hue_per_y", 0, -100, 100);
- double d_hue_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_hue_per_x", 0, -100, 100);
- double rand_hue = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_hue", 0, 0, 100);
- double d_saturation_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_saturation_per_y", 0, -100, 100);
- double d_saturation_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_saturation_per_x", 0, -100, 100);
- double rand_saturation = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_saturation", 0, 0, 100);
- double d_lightness_per_y = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_lightness_per_y", 0, -100, 100);
- double d_lightness_per_x = 0.01 * prefs_get_double_attribute_limited (prefs_path, "d_lightness_per_x", 0, -100, 100);
- double rand_lightness = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_lightness", 0, 0, 100);
- int alternate_color_y = prefs_get_int_attribute (prefs_path, "alternate_color_y", 0);
- int alternate_color_x = prefs_get_int_attribute (prefs_path, "alternate_color_x", 0);
-
- int type = prefs_get_int_attribute (prefs_path, "symmetrygroup", 0);
-
- int keepbbox = prefs_get_int_attribute (prefs_path, "keepbbox", 1);
-
- int xmax = prefs_get_int_attribute (prefs_path, "xmax", 2);
- int ymax = prefs_get_int_attribute (prefs_path, "ymax", 2);
-
- int fillrect = prefs_get_int_attribute (prefs_path, "fillrect", 0);
- double fillwidth = prefs_get_double_attribute_limited (prefs_path, "fillwidth", 50, 0, 1e6);
- double fillheight = prefs_get_double_attribute_limited (prefs_path, "fillheight", 50, 0, 1e6);
-
- int dotrace = prefs_get_int_attribute (prefs_path, "dotrace", 0);
- int pick = prefs_get_int_attribute (prefs_path, "pick", 0);
- int pick_to_presence = prefs_get_int_attribute (prefs_path, "pick_to_presence", 0);
- int pick_to_size = prefs_get_int_attribute (prefs_path, "pick_to_size", 0);
- int pick_to_color = prefs_get_int_attribute (prefs_path, "pick_to_color", 0);
- int pick_to_opacity = prefs_get_int_attribute (prefs_path, "pick_to_opacity", 0);
- double rand_picked = 0.01 * prefs_get_double_attribute_limited (prefs_path, "rand_picked", 0, 0, 100);
- int invert_picked = prefs_get_int_attribute (prefs_path, "invert_picked", 0);
- double gamma_picked = prefs_get_double_attribute_limited (prefs_path, "gamma_picked", 0, -10, 10);
+ double shiftx_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "shiftx_per_i", 0, -10000, 10000);
+ double shifty_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "shifty_per_i", 0, -10000, 10000);
+ double shiftx_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "shiftx_per_j", 0, -10000, 10000);
+ double shifty_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "shifty_per_j", 0, -10000, 10000);
+ double shiftx_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "shiftx_rand", 0, 0, 1000);
+ double shifty_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "shifty_rand", 0, 0, 1000);
+ double shiftx_exp = prefs->getDoubleLimited(prefs_path + "shiftx_exp", 1, 0, 10);
+ double shifty_exp = prefs->getDoubleLimited(prefs_path + "shifty_exp", 1, 0, 10);
+ bool shiftx_alternate = prefs->getBool(prefs_path + "shiftx_alternate");
+ bool shifty_alternate = prefs->getBool(prefs_path + "shifty_alternate");
+ bool shiftx_cumulate = prefs->getBool(prefs_path + "shiftx_cumulate");
+ bool shifty_cumulate = prefs->getBool(prefs_path + "shifty_cumulate");
+ bool shiftx_excludew = prefs->getBool(prefs_path + "shiftx_excludew");
+ bool shifty_excludeh = prefs->getBool(prefs_path + "shifty_excludeh");
+
+ double scalex_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "scalex_per_i", 0, -100, 1000);
+ double scaley_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "scaley_per_i", 0, -100, 1000);
+ double scalex_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "scalex_per_j", 0, -100, 1000);
+ double scaley_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "scaley_per_j", 0, -100, 1000);
+ double scalex_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "scalex_rand", 0, 0, 1000);
+ double scaley_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "scaley_rand", 0, 0, 1000);
+ double scalex_exp = prefs->getDoubleLimited(prefs_path + "scalex_exp", 1, 0, 10);
+ double scaley_exp = prefs->getDoubleLimited(prefs_path + "scaley_exp", 1, 0, 10);
+ double scalex_log = prefs->getDoubleLimited(prefs_path + "scalex_log", 0, 0, 10);
+ double scaley_log = prefs->getDoubleLimited(prefs_path + "scaley_log", 0, 0, 10);
+ bool scalex_alternate = prefs->getBool(prefs_path + "scalex_alternate");
+ bool scaley_alternate = prefs->getBool(prefs_path + "scaley_alternate");
+ bool scalex_cumulate = prefs->getBool(prefs_path + "scalex_cumulate");
+ bool scaley_cumulate = prefs->getBool(prefs_path + "scaley_cumulate");
+
+ double rotate_per_i = prefs->getDoubleLimited(prefs_path + "rotate_per_i", 0, -180, 180);
+ double rotate_per_j = prefs->getDoubleLimited(prefs_path + "rotate_per_j", 0, -180, 180);
+ double rotate_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "rotate_rand", 0, 0, 100);
+ bool rotate_alternatei = prefs->getBool(prefs_path + "rotate_alternatei");
+ bool rotate_alternatej = prefs->getBool(prefs_path + "rotate_alternatej");
+ bool rotate_cumulatei = prefs->getBool(prefs_path + "rotate_cumulatei");
+ bool rotate_cumulatej = prefs->getBool(prefs_path + "rotate_cumulatej");
+
+ double blur_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "blur_per_i", 0, 0, 100);
+ double blur_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "blur_per_j", 0, 0, 100);
+ bool blur_alternatei = prefs->getBool(prefs_path + "blur_alternatei");
+ bool blur_alternatej = prefs->getBool(prefs_path + "blur_alternatej");
+ double blur_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "blur_rand", 0, 0, 100);
+
+ double opacity_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "opacity_per_i", 0, 0, 100);
+ double opacity_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "opacity_per_j", 0, 0, 100);
+ bool opacity_alternatei = prefs->getBool(prefs_path + "opacity_alternatei");
+ bool opacity_alternatej = prefs->getBool(prefs_path + "opacity_alternatej");
+ double opacity_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "opacity_rand", 0, 0, 100);
+
+ Glib::ustring initial_color = prefs->getString(prefs_path + "initial_color");
+ double hue_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "hue_per_j", 0, -100, 100);
+ double hue_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "hue_per_i", 0, -100, 100);
+ double hue_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "hue_rand", 0, 0, 100);
+ double saturation_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "saturation_per_j", 0, -100, 100);
+ double saturation_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "saturation_per_i", 0, -100, 100);
+ double saturation_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "saturation_rand", 0, 0, 100);
+ double lightness_per_j = 0.01 * prefs->getDoubleLimited(prefs_path + "lightness_per_j", 0, -100, 100);
+ double lightness_per_i = 0.01 * prefs->getDoubleLimited(prefs_path + "lightness_per_i", 0, -100, 100);
+ double lightness_rand = 0.01 * prefs->getDoubleLimited(prefs_path + "lightness_rand", 0, 0, 100);
+ bool color_alternatej = prefs->getBool(prefs_path + "color_alternatej");
+ bool color_alternatei = prefs->getBool(prefs_path + "color_alternatei");
+
+ int type = prefs->getInt(prefs_path + "symmetrygroup", 0);
+ bool keepbbox = prefs->getBool(prefs_path + "keepbbox", true);
+ int imax = prefs->getInt(prefs_path + "imax", 2);
+ int jmax = prefs->getInt(prefs_path + "jmax", 2);
+
+ bool fillrect = prefs->getBool(prefs_path + "fillrect");
+ double fillwidth = prefs->getDoubleLimited(prefs_path + "fillwidth", 50, 0, 1e6);
+ double fillheight = prefs->getDoubleLimited(prefs_path + "fillheight", 50, 0, 1e6);
+
+ bool dotrace = prefs->getBool(prefs_path + "dotrace");
+ int pick = prefs->getInt(prefs_path + "pick");
+ bool pick_to_presence = prefs->getBool(prefs_path + "pick_to_presence");
+ bool pick_to_size = prefs->getBool(prefs_path + "pick_to_size");
+ bool pick_to_color = prefs->getBool(prefs_path + "pick_to_color");
+ bool pick_to_opacity = prefs->getBool(prefs_path + "pick_to_opacity");
+ double rand_picked = 0.01 * prefs->getDoubleLimited(prefs_path + "rand_picked", 0, 0, 100);
+ bool invert_picked = prefs->getBool(prefs_path + "invert_picked");
+ double gamma_picked = prefs->getDoubleLimited(prefs_path + "gamma_picked", 0, -10, 10);
if (dotrace) {
clonetiler_trace_setup (sp_desktop_document(desktop), 1.0, SP_ITEM (obj));
}
- NR::Point c;
+ Geom::Point center;
double w;
double h;
+ double x0;
+ double y0;
if (keepbbox &&
obj_repr->attribute("inkscape:tile-w") &&
obj_repr->attribute("inkscape:tile-h") &&
+ obj_repr->attribute("inkscape:tile-x0") &&
+ obj_repr->attribute("inkscape:tile-y0") &&
obj_repr->attribute("inkscape:tile-cx") &&
obj_repr->attribute("inkscape:tile-cy")) {
double cx = sp_repr_get_double_attribute (obj_repr, "inkscape:tile-cx", 0);
double cy = sp_repr_get_double_attribute (obj_repr, "inkscape:tile-cy", 0);
-
- c = NR::Point (cx, cy);
+ center = Geom::Point (cx, cy);
w = sp_repr_get_double_attribute (obj_repr, "inkscape:tile-w", 0);
h = sp_repr_get_double_attribute (obj_repr, "inkscape:tile-h", 0);
+ x0 = sp_repr_get_double_attribute (obj_repr, "inkscape:tile-x0", 0);
+ y0 = sp_repr_get_double_attribute (obj_repr, "inkscape:tile-y0", 0);
} else {
- NR::Rect const r = SP_ITEM(obj)->invokeBbox(sp_item_i2doc_affine(SP_ITEM(obj)));
- c = r.midpoint();
- w = r.dimensions()[NR::X];
- h = r.dimensions()[NR::Y];
-
- sp_repr_set_svg_double(obj_repr, "inkscape:tile-w", w);
- sp_repr_set_svg_double(obj_repr, "inkscape:tile-h", h);
- sp_repr_set_svg_double(obj_repr, "inkscape:tile-cx", c[NR::X]);
- sp_repr_set_svg_double(obj_repr, "inkscape:tile-cy", c[NR::Y]);
+ bool prefs_bbox = prefs->getBool("/tools/bounding_box", false);
+ SPItem::BBoxType bbox_type = ( prefs_bbox ?
+ SPItem::APPROXIMATE_BBOX : SPItem::GEOMETRIC_BBOX );
+ Geom::OptRect r = SP_ITEM(obj)->getBounds(sp_item_i2doc_affine(SP_ITEM(obj)),
+ bbox_type);
+ if (r) {
+ w = r->dimensions()[Geom::X];
+ h = r->dimensions()[Geom::Y];
+ x0 = r->min()[Geom::X];
+ y0 = r->min()[Geom::Y];
+ center = desktop->dt2doc(SP_ITEM(obj)->getCenter());
+
+ sp_repr_set_svg_double(obj_repr, "inkscape:tile-cx", center[Geom::X]);
+ sp_repr_set_svg_double(obj_repr, "inkscape:tile-cy", center[Geom::Y]);
+ sp_repr_set_svg_double(obj_repr, "inkscape:tile-w", w);
+ sp_repr_set_svg_double(obj_repr, "inkscape:tile-h", h);
+ sp_repr_set_svg_double(obj_repr, "inkscape:tile-x0", x0);
+ sp_repr_set_svg_double(obj_repr, "inkscape:tile-y0", y0);
+ } else {
+ center = Geom::Point(0, 0);
+ w = h = 0;
+ x0 = y0 = 0;
+ }
}
- NR::Point cur = NR::Point (0, 0);
- NR::Rect bbox_original = NR::Rect (NR::Point (c[NR::X] - w/2, c[NR::Y] - h/2), NR::Point (c[NR::X] + w/2, c[NR::Y] + h/2));
+ Geom::Point cur(0, 0);
+ Geom::Rect bbox_original (Geom::Point (x0, y0), Geom::Point (x0 + w, y0 + h));
double perimeter_original = (w + h)/4;
- for (int x = 0;
+ // The integers i and j are reserved for tile column and row.
+ // The doubles x and y are used for coordinates
+ for (int i = 0;
fillrect?
- (fabs(cur[NR::X]) < fillwidth && x < 200) // prevent "freezing" with too large fillrect, arbitrarily limit rows
- : (x < xmax);
- x ++) {
- for (int y = 0;
+ (fabs(cur[Geom::X]) < fillwidth && i < 200) // prevent "freezing" with too large fillrect, arbitrarily limit rows
+ : (i < imax);
+ i ++) {
+ for (int j = 0;
fillrect?
- (fabs(cur[NR::Y]) < fillheight && y < 200) // prevent "freezing" with too large fillrect, arbitrarily limit cols
- : (y < ymax);
- y ++) {
+ (fabs(cur[Geom::Y]) < fillheight && j < 200) // prevent "freezing" with too large fillrect, arbitrarily limit cols
+ : (j < jmax);
+ j ++) {
// Note: We create a clone at 0,0 too, right over the original, in case our clones are colored
// Get transform from symmetry, shift, scale, rotation
- NR::Matrix t = clonetiler_get_transform (type, x, y, c[NR::X], c[NR::Y], w, h,
- d_x_per_x, d_y_per_x, d_x_per_y, d_y_per_y, alternate_x, alternate_y, rand_x, rand_y,
- d_per_x_exp, d_per_y_exp,
- d_rot_per_x, d_rot_per_y, alternate_rotx, alternate_roty, rand_rot,
- d_scalex_per_x, d_scaley_per_x, d_scalex_per_y, d_scaley_per_y,
- alternate_scalex, alternate_scaley, rand_scalex, rand_scaley);
-
- cur = c * t - c;
+ Geom::Matrix t = clonetiler_get_transform (type, i, j, center[Geom::X], center[Geom::Y], w, h,
+ shiftx_per_i, shifty_per_i,
+ shiftx_per_j, shifty_per_j,
+ shiftx_rand, shifty_rand,
+ shiftx_exp, shifty_exp,
+ shiftx_alternate, shifty_alternate,
+ shiftx_cumulate, shifty_cumulate,
+ shiftx_excludew, shifty_excludeh,
+ scalex_per_i, scaley_per_i,
+ scalex_per_j, scaley_per_j,
+ scalex_rand, scaley_rand,
+ scalex_exp, scaley_exp,
+ scalex_log, scaley_log,
+ scalex_alternate, scaley_alternate,
+ scalex_cumulate, scaley_cumulate,
+ rotate_per_i, rotate_per_j,
+ rotate_rand,
+ rotate_alternatei, rotate_alternatej,
+ rotate_cumulatei, rotate_cumulatej );
+
+ cur = center * t - center;
if (fillrect) {
- if ((cur[NR::X] > fillwidth) || (cur[NR::Y] > fillheight)) { // off limits
+ if ((cur[Geom::X] > fillwidth) || (cur[Geom::Y] > fillheight)) { // off limits
continue;
}
}
gchar color_string[32]; *color_string = 0;
// Color tab
- if (initial_color) {
- guint32 rgba = sp_svg_read_color (initial_color, 0x000000ff);
+ if (!initial_color.empty()) {
+ guint32 rgba = sp_svg_read_color (initial_color.data(), 0x000000ff);
float hsl[3];
sp_color_rgb_to_hsl_floatv (hsl, SP_RGBA32_R_F(rgba), SP_RGBA32_G_F(rgba), SP_RGBA32_B_F(rgba));
- double eff_x = (alternate_color_x? (x%2) : (x));
- double eff_y = (alternate_color_y? (y%2) : (y));
+ double eff_i = (color_alternatei? (i%2) : (i));
+ double eff_j = (color_alternatej? (j%2) : (j));
- hsl[0] += d_hue_per_x * eff_x + d_hue_per_y * eff_y + rand_hue * g_random_double_range (-1, 1);
- if (hsl[0] < 0) hsl[0] += 1;
- if (hsl[0] > 1) hsl[0] -= 1;
- hsl[1] += d_saturation_per_x * eff_x + d_saturation_per_y * eff_y + rand_saturation * g_random_double_range (-1, 1);
+ hsl[0] += hue_per_i * eff_i + hue_per_j * eff_j + hue_rand * g_random_double_range (-1, 1);
+ double notused;
+ hsl[0] = modf( hsl[0], ¬used ); // Restrict to 0-1
+ hsl[1] += saturation_per_i * eff_i + saturation_per_j * eff_j + saturation_rand * g_random_double_range (-1, 1);
hsl[1] = CLAMP (hsl[1], 0, 1);
- hsl[2] += d_lightness_per_x * eff_x + d_lightness_per_y * eff_y + rand_lightness * g_random_double_range (-1, 1);
+ hsl[2] += lightness_per_i * eff_i + lightness_per_j * eff_j + lightness_rand * g_random_double_range (-1, 1);
hsl[2] = CLAMP (hsl[2], 0, 1);
float rgb[3];
sp_color_hsl_to_rgb_floatv (rgb, hsl[0], hsl[1], hsl[2]);
- sp_svg_write_color(color_string, 32, SP_RGBA32_F_COMPOSE(rgb[0], rgb[1], rgb[2], 1.0));
+ sp_svg_write_color(color_string, sizeof(color_string), SP_RGBA32_F_COMPOSE(rgb[0], rgb[1], rgb[2], 1.0));
}
// Blur
double blur = 0.0;
{
- int eff_x = (alternate_blurx? (x%2) : (x));
- int eff_y = (alternate_blury? (y%2) : (y));
- blur = (d_blur_per_x * eff_x + d_blur_per_y * eff_y + rand_blur * g_random_double_range (-1, 1));
+ int eff_i = (blur_alternatei? (i%2) : (i));
+ int eff_j = (blur_alternatej? (j%2) : (j));
+ blur = (blur_per_i * eff_i + blur_per_j * eff_j + blur_rand * g_random_double_range (-1, 1));
blur = CLAMP (blur, 0, 1);
}
// Opacity
double opacity = 1.0;
{
- int eff_x = (alternate_opacityx? (x%2) : (x));
- int eff_y = (alternate_opacityy? (y%2) : (y));
- opacity = 1 - (d_opacity_per_x * eff_x + d_opacity_per_y * eff_y + rand_opacity * g_random_double_range (-1, 1));
+ int eff_i = (opacity_alternatei? (i%2) : (i));
+ int eff_j = (opacity_alternatej? (j%2) : (j));
+ opacity = 1 - (opacity_per_i * eff_i + opacity_per_j * eff_j + opacity_rand * g_random_double_range (-1, 1));
opacity = CLAMP (opacity, 0, 1);
}
// Trace tab
if (dotrace) {
- NR::Rect bbox_t = transform_rect (bbox_original, t);
+ Geom::Rect bbox_t = transform_rect (bbox_original, t);
guint32 rgba = clonetiler_trace_pick (bbox_t);
float r = SP_RGBA32_R_F(rgba);
if (gamma_picked != 0) {
double power;
- if (gamma_picked < 0)
+ if (gamma_picked > 0)
power = 1/(1 + fabs(gamma_picked));
else
- power = 1 + gamma_picked;
+ power = 1 + fabs(gamma_picked);
val = pow (val, power);
r = pow (r, power);
}
}
if (pick_to_size) {
- t = NR::translate(-c[NR::X], -c[NR::Y]) * NR::scale (val, val) * NR::translate(c[NR::X], c[NR::Y]) * t;
+ t = Geom::Translate(-center[Geom::X], -center[Geom::Y]) * Geom::Scale (val, val) * Geom::Translate(center[Geom::X], center[Geom::Y]) * t;
}
if (pick_to_opacity) {
opacity *= val;
}
if (pick_to_color) {
- sp_svg_write_color(color_string, 32, rgba);
+ sp_svg_write_color(color_string, sizeof(color_string), rgba);
}
}
clone->setAttribute("inkscape:tiled-clone-of", id_href);
clone->setAttribute("xlink:href", id_href);
- NR::Point new_center;
+ Geom::Point new_center;
bool center_set = false;
if (obj_repr->attribute("inkscape:transform-center-x") || obj_repr->attribute("inkscape:transform-center-y")) {
new_center = desktop->dt2doc(SP_ITEM(obj)->getCenter()) * t;
center_set = true;
}
- gchar affinestr[80];
- if (sp_svg_transform_write(affinestr, 79, t)) {
- clone->setAttribute("transform", affinestr);
- } else {
- clone->setAttribute("transform", NULL);
- }
+ gchar *affinestr=sp_svg_transform_write(t);
+ clone->setAttribute("transform", affinestr);
+ g_free(affinestr);
if (opacity < 1.0) {
sp_repr_set_css_double(clone, "opacity", opacity);
if (blur > 0.0) {
SPObject *clone_object = sp_desktop_document(desktop)->getObjectByRepr(clone);
- double perimeter = perimeter_original * t.expansion();
+ double perimeter = perimeter_original * t.descrim();
double radius = blur * perimeter;
+ // this is necessary for all newly added clones to have correct bboxes,
+ // otherwise filters won't work:
+ sp_document_ensure_up_to_date(sp_desktop_document(desktop));
// it's hard to figure out exact width/height of the tile without having an object
// that we can take bbox of; however here we only need a lower bound so that blur
// margins are not too small, and the perimeter should work
- SPFilter *constructed = new_filter_gaussian_blur(sp_desktop_document(desktop), radius, t.expansion(), t.expansionX(), t.expansionY(), perimeter, perimeter);
+ SPFilter *constructed = new_filter_gaussian_blur(sp_desktop_document(desktop), radius, t.descrim(), t.expansionX(), t.expansionY(), perimeter, perimeter);
sp_style_set_property_url (clone_object, "filter", SP_OBJECT(constructed), false);
}
Inkscape::GC::release(clone);
}
- cur[NR::Y] = 0;
+ cur[Geom::Y] = 0;
}
if (dotrace) {
clonetiler_change_selection (NULL, selection, dlg);
- sp_document_done(sp_desktop_document(desktop), SP_VERB_DIALOG_CLONETILER,
+ desktop->clearWaitingCursor();
+
+ sp_document_done(sp_desktop_document(desktop), SP_VERB_DIALOG_CLONETILER,
_("Create tiled clones"));
}
clonetiler_checkbox_toggled (GtkToggleButton *tb, gpointer *data)
{
const gchar *attr = (const gchar *) data;
- prefs_set_int_attribute (prefs_path, attr, gtk_toggle_button_get_active (tb));
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setBool(prefs_path + attr, gtk_toggle_button_get_active(tb));
}
static GtkWidget *
GtkWidget *b = gtk_check_button_new ();
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, tip, NULL);
- int value = prefs_get_int_attribute (prefs_path, attr, 0);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ bool value = prefs->getBool(prefs_path + attr);
gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON(b), value);
gtk_box_pack_end (GTK_BOX (hb), b, FALSE, TRUE, 0);
static void
clonetiler_value_changed (GtkAdjustment *adj, gpointer data)
{
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
const gchar *pref = (const gchar *) data;
- prefs_set_double_attribute (prefs_path, pref, adj->value);
+ prefs->setDouble(prefs_path + pref, adj->value);
}
static GtkWidget *
@@ -1402,7 +1585,8 @@ clonetiler_spinbox (GtkTooltips *tt, const char *tip, const char *attr, double l
gtk_entry_set_width_chars (GTK_ENTRY (sb), 4);
gtk_box_pack_start (GTK_BOX (hb), sb, FALSE, FALSE, SB_MARGIN);
- double value = prefs_get_double_attribute_limited (prefs_path, attr, exponent? 1 : 0, lower, upper);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ double value = prefs->getDoubleLimited(prefs_path + attr, exponent? 1.0 : 0.0, lower, upper);
gtk_adjustment_set_value (GTK_ADJUSTMENT (a), value);
gtk_signal_connect(GTK_OBJECT(a), "value_changed",
GTK_SIGNAL_FUNC(clonetiler_value_changed), (gpointer) attr);
@@ -1424,30 +1608,34 @@ clonetiler_spinbox (GtkTooltips *tt, const char *tip, const char *attr, double l
}
static void
-clonetiler_symgroup_changed (GtkMenuItem *item, gpointer data)
+clonetiler_symgroup_changed( GtkMenuItem */*item*/, gpointer data )
{
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
gint group_new = GPOINTER_TO_INT (data);
- prefs_set_int_attribute ( prefs_path, "symmetrygroup", group_new );
+ prefs->setInt(prefs_path + "symmetrygroup", group_new);
}
static void
clonetiler_xy_changed (GtkAdjustment *adj, gpointer data)
{
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
const gchar *pref = (const gchar *) data;
- prefs_set_int_attribute (prefs_path, pref, (int) floor(adj->value + 0.5));
+ prefs->setInt(prefs_path + pref, (int) floor(adj->value + 0.5));
}
static void
-clonetiler_keep_bbox_toggled (GtkToggleButton *tb, gpointer data)
+clonetiler_keep_bbox_toggled( GtkToggleButton *tb, gpointer /*data*/ )
{
- prefs_set_int_attribute (prefs_path, "keepbbox", gtk_toggle_button_get_active (tb));
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setBool(prefs_path + "keepbbox", gtk_toggle_button_get_active(tb));
}
static void
clonetiler_pick_to (GtkToggleButton *tb, gpointer data)
{
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
const gchar *pref = (const gchar *) data;
- prefs_set_int_attribute (prefs_path, pref, gtk_toggle_button_get_active (tb));
+ prefs->setBool(prefs_path + pref, gtk_toggle_button_get_active(tb));
}
}
static void
-clonetiler_reset (GtkWidget *widget, void *)
+clonetiler_reset( GtkWidget */*widget*/, void * )
{
clonetiler_reset_recursive (dlg);
}
{
GtkWidget *hb = gtk_hbox_new (FALSE, 0);
- GtkWidget *i = sp_icon_new (Inkscape::ICON_SIZE_DECORATION, "clonetiler_per_row");
+ GtkWidget *i = sp_icon_new (Inkscape::ICON_SIZE_DECORATION, INKSCAPE_ICON_OBJECT_ROWS);
gtk_box_pack_start (GTK_BOX (hb), i, FALSE, FALSE, 2);
GtkWidget *l = gtk_label_new ("");
{
GtkWidget *hb = gtk_hbox_new (FALSE, 0);
- GtkWidget *i = sp_icon_new (Inkscape::ICON_SIZE_DECORATION, "clonetiler_per_column");
+ GtkWidget *i = sp_icon_new (Inkscape::ICON_SIZE_DECORATION, INKSCAPE_ICON_OBJECT_COLUMNS);
gtk_box_pack_start (GTK_BOX (hb), i, FALSE, FALSE, 2);
GtkWidget *l = gtk_label_new ("");
}
static void
-clonetiler_pick_switched (GtkToggleButton *tb, gpointer data)
+clonetiler_pick_switched( GtkToggleButton */*tb*/, gpointer data )
{
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
guint v = GPOINTER_TO_INT (data);
- prefs_set_int_attribute (prefs_path, "pick", v);
+ prefs->setInt(prefs_path + "pick", v);
}
static void
-clonetiler_switch_to_create (GtkToggleButton *tb, GtkWidget *dlg)
+clonetiler_switch_to_create( GtkToggleButton */*tb*/, GtkWidget *dlg )
{
GtkWidget *rowscols = (GtkWidget *) g_object_get_data (G_OBJECT(dlg), "rowscols");
GtkWidget *widthheight = (GtkWidget *) g_object_get_data (G_OBJECT(dlg), "widthheight");
gtk_widget_set_sensitive (widthheight, FALSE);
}
- prefs_set_int_attribute (prefs_path, "fillrect", 0);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setBool(prefs_path + "fillrect", false);
}
static void
-clonetiler_switch_to_fill (GtkToggleButton *tb, GtkWidget *dlg)
+clonetiler_switch_to_fill( GtkToggleButton */*tb*/, GtkWidget *dlg )
{
GtkWidget *rowscols = (GtkWidget *) g_object_get_data (G_OBJECT(dlg), "rowscols");
GtkWidget *widthheight = (GtkWidget *) g_object_get_data (G_OBJECT(dlg), "widthheight");
gtk_widget_set_sensitive (widthheight, TRUE);
}
- prefs_set_int_attribute (prefs_path, "fillrect", 1);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setBool(prefs_path + "fillrect", true);
}
SPUnit const &unit = *sp_unit_selector_get_unit(SP_UNIT_SELECTOR(u));
gdouble const pixels = sp_units_get_pixels (raw_dist, unit);
- prefs_set_double_attribute (prefs_path, "fillwidth", pixels);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setDouble(prefs_path + "fillwidth", pixels);
}
static void
SPUnit const &unit = *sp_unit_selector_get_unit(SP_UNIT_SELECTOR(u));
gdouble const pixels = sp_units_get_pixels (raw_dist, unit);
- prefs_set_double_attribute (prefs_path, "fillheight", pixels);
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setDouble(prefs_path + "fillheight", pixels);
}
static void
-clonetiler_do_pick_toggled (GtkToggleButton *tb, gpointer data)
+clonetiler_do_pick_toggled( GtkToggleButton *tb, gpointer /*data*/ )
{
GtkWidget *vvb = (GtkWidget *) g_object_get_data (G_OBJECT(dlg), "dotrace");
- prefs_set_int_attribute (prefs_path, "dotrace", gtk_toggle_button_get_active (tb));
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
+ prefs->setBool(prefs_path + "dotrace", gtk_toggle_button_get_active (tb));
if (vvb)
gtk_widget_set_sensitive (vvb, gtk_toggle_button_get_active (tb));
void
clonetiler_dialog (void)
{
+ Inkscape::Preferences *prefs = Inkscape::Preferences::get();
if (!dlg)
{
gchar title[500];
dlg = sp_window_new (title, TRUE);
if (x == -1000 || y == -1000) {
- x = prefs_get_int_attribute (prefs_path, "x", -1000);
- y = prefs_get_int_attribute (prefs_path, "y", -1000);
+ x = prefs->getInt(prefs_path + "x", -1000);
+ y = prefs->getInt(prefs_path + "y", -1000);
}
-
+
if (w ==0 || h == 0) {
- w = prefs_get_int_attribute (prefs_path, "w", 0);
- h = prefs_get_int_attribute (prefs_path, "h", 0);
+ w = prefs->getInt(prefs_path + "w", 0);
+ h = prefs->getInt(prefs_path + "h", 0);
}
-
+
// if (x<0) x=0;
// if (y<0) y=0;
}
if (x >= 0 && y >= 0 && (x < (gdk_screen_width()-MIN_ONSCREEN_DISTANCE)) && (y < (gdk_screen_height()-MIN_ONSCREEN_DISTANCE))) {
gtk_window_move ((GtkWindow *) dlg, x, y);
-
+
} else {
gtk_window_set_position(GTK_WINDOW(dlg), GTK_WIN_POS_CENTER);
}
-
-
+
+
sp_transientize (dlg);
wd.win = dlg;
wd.stop = 0;
-
-
+
+
gtk_signal_connect ( GTK_OBJECT (dlg), "event", GTK_SIGNAL_FUNC (sp_dialog_event_handler), dlg);
-
+
gtk_signal_connect ( GTK_OBJECT (dlg), "destroy", G_CALLBACK (clonetiler_dialog_destroy), dlg);
gtk_signal_connect ( GTK_OBJECT (dlg), "delete_event", G_CALLBACK (clonetiler_dialog_delete), dlg);
_dialogs_hidden_connection = Inkscape::NSApplication::Editor::connectDialogsHidden (sigc::bind (&on_dialog_hide, dlg));
_dialogs_unhidden_connection = Inkscape::NSApplication::Editor::connectDialogsUnhidden (sigc::bind (&on_dialog_unhide, dlg));
_desktop_activated_connection = Inkscape::NSApplication::Editor::connectDesktopActivated (sigc::bind (&on_transientize, &wd));
- } else {
+ } else {
g_signal_connect ( G_OBJECT (INKSCAPE), "shut_down", G_CALLBACK (clonetiler_dialog_delete), dlg);
g_signal_connect ( G_OBJECT (INKSCAPE), "dialogs_hide", G_CALLBACK (sp_dialog_hide), dlg);
g_signal_connect ( G_OBJECT (INKSCAPE), "dialogs_unhide", G_CALLBACK (sp_dialog_unhide), dlg);
gtk_box_pack_start (GTK_BOX (vb), om, FALSE, FALSE, SB_MARGIN);
GtkWidget *m = gtk_menu_new ();
- int current = prefs_get_int_attribute (prefs_path, "symmetrygroup", 0);
+ int current = prefs->getInt(prefs_path + "symmetrygroup", 0);
struct SymGroups {
int group;
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Horizontal shift per row (in % of tile width)"), "d_x_per_y",
- -100, 1000, "%");
+ _("Horizontal shift per row (in % of tile width)"), "shiftx_per_j",
+ -10000, 10000, "%");
clonetiler_table_attach (table, l, 0, 2, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Horizontal shift per column (in % of tile width)"), "d_x_per_x",
- -100, 1000, "%");
+ _("Horizontal shift per column (in % of tile width)"), "shiftx_per_i",
+ -10000, 10000, "%");
clonetiler_table_attach (table, l, 0, 2, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the horizontal shift by this percentage"), "rand_x",
+ _("Randomize the horizontal shift by this percentage"), "shiftx_rand",
0, 1000, "%");
clonetiler_table_attach (table, l, 0, 2, 4);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Vertical shift per row (in % of tile height)"), "d_y_per_y",
- -100, 1000, "%");
+ _("Vertical shift per row (in % of tile height)"), "shifty_per_j",
+ -10000, 10000, "%");
clonetiler_table_attach (table, l, 0, 3, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Vertical shift per column (in % of tile height)"), "d_y_per_x",
- -100, 1000, "%");
+ _("Vertical shift per column (in % of tile height)"), "shifty_per_i",
+ -10000, 10000, "%");
clonetiler_table_attach (table, l, 0, 3, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the vertical shift by this percentage"), "rand_y",
+ _("Randomize the vertical shift by this percentage"), "shifty_rand",
0, 1000, "%");
clonetiler_table_attach (table, l, 0, 3, 4);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Whether rows are spaced evenly (1), converge (<1) or diverge (>1)"), "d_per_y_exp",
+ _("Whether rows are spaced evenly (1), converge (<1) or diverge (>1)"), "shifty_exp",
0, 10, "", true);
clonetiler_table_attach (table, l, 0, 4, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Whether columns are spaced evenly (1), converge (<1) or diverge (>1)"), "d_per_x_exp",
+ _("Whether columns are spaced evenly (1), converge (<1) or diverge (>1)"), "shiftx_exp",
0, 10, "", true);
clonetiler_table_attach (table, l, 0, 4, 3);
}
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of shifts for each row"), "alternate_y");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of shifts for each row"), "shifty_alternate");
clonetiler_table_attach (table, l, 0, 5, 2);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of shifts for each column"), "alternate_x");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of shifts for each column"), "shiftx_alternate");
clonetiler_table_attach (table, l, 0, 5, 3);
}
+ { // Cumulate
+ GtkWidget *l = gtk_label_new ("");
+ // TRANSLATORS: "Cumulate" is a verb here
+ gtk_label_set_markup (GTK_LABEL(l), _("<small>Cumulate:</small>"));
+ gtk_size_group_add_widget(table_row_labels, l);
+ clonetiler_table_attach (table, l, 1, 6, 1);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Cumulate the shifts for each row"), "shifty_cumulate");
+ clonetiler_table_attach (table, l, 0, 6, 2);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Cumulate the shifts for each column"), "shiftx_cumulate");
+ clonetiler_table_attach (table, l, 0, 6, 3);
+ }
+
+ { // Exclude tile width and height in shift
+ GtkWidget *l = gtk_label_new ("");
+ // TRANSLATORS: "Cumulate" is a verb here
+ gtk_label_set_markup (GTK_LABEL(l), _("<small>Exclude tile:</small>"));
+ gtk_size_group_add_widget(table_row_labels, l);
+ clonetiler_table_attach (table, l, 1, 7, 1);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Exclude tile height in shift"), "shifty_excludeh");
+ clonetiler_table_attach (table, l, 0, 7, 2);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Exclude tile width in shift"), "shiftx_excludew");
+ clonetiler_table_attach (table, l, 0, 7, 3);
+ }
+
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Horizontal scale per row (in % of tile width)"), "d_scalex_per_y",
+ _("Horizontal scale per row (in % of tile width)"), "scalex_per_j",
-100, 1000, "%");
clonetiler_table_attach (table, l, 0, 2, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Horizontal scale per column (in % of tile width)"), "d_scalex_per_x",
+ _("Horizontal scale per column (in % of tile width)"), "scalex_per_i",
-100, 1000, "%");
clonetiler_table_attach (table, l, 0, 2, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the horizontal scale by this percentage"), "rand_scalex",
+ _("Randomize the horizontal scale by this percentage"), "scalex_rand",
0, 1000, "%");
clonetiler_table_attach (table, l, 0, 2, 4);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Vertical scale per row (in % of tile height)"), "d_scaley_per_y",
+ _("Vertical scale per row (in % of tile height)"), "scaley_per_j",
-100, 1000, "%");
clonetiler_table_attach (table, l, 0, 3, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Vertical scale per column (in % of tile height)"), "d_scaley_per_x",
+ _("Vertical scale per column (in % of tile height)"), "scaley_per_i",
-100, 1000, "%");
clonetiler_table_attach (table, l, 0, 3, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the vertical scale by this percentage"), "rand_scaley",
+ _("Randomize the vertical scale by this percentage"), "scaley_rand",
0, 1000, "%");
clonetiler_table_attach (table, l, 0, 3, 4);
}
- { // alternates
+ // Exponent
+ {
GtkWidget *l = gtk_label_new ("");
- // TRANSLATORS: "Alternate" is a verb here
- gtk_label_set_markup (GTK_LABEL(l), _("<small>Alternate:</small>"));
+ gtk_label_set_markup (GTK_LABEL(l), _("<b>Exponent:</b>"));
gtk_size_group_add_widget(table_row_labels, l);
clonetiler_table_attach (table, l, 1, 4, 1);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of scales for each row"), "alternate_scaley");
+ GtkWidget *l = clonetiler_spinbox (tt,
+ _("Whether row scaling is uniform (1), converge (<1) or diverge (>1)"), "scaley_exp",
+ 0, 10, "", true);
clonetiler_table_attach (table, l, 0, 4, 2);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of scales for each column"), "alternate_scalex");
+ GtkWidget *l = clonetiler_spinbox (tt,
+ _("Whether column scaling is uniform (1), converge (<1) or diverge (>1)"), "scalex_exp",
+ 0, 10, "", true);
clonetiler_table_attach (table, l, 0, 4, 3);
}
+ // Logarithmic (as in logarithmic spiral)
+ {
+ GtkWidget *l = gtk_label_new ("");
+ gtk_label_set_markup (GTK_LABEL(l), _("<b>Base:</b>"));
+ gtk_size_group_add_widget(table_row_labels, l);
+ clonetiler_table_attach (table, l, 1, 5, 1);
+ }
+
+ {
+ GtkWidget *l = clonetiler_spinbox (tt,
+ _("Base for a logarithmic spiral: not used (0), converge (<1), or diverge (>1)"), "scaley_log",
+ 0, 10, "", false);
+ clonetiler_table_attach (table, l, 0, 5, 2);
+ }
+
+ {
+ GtkWidget *l = clonetiler_spinbox (tt,
+ _("Base for a logarithmic spiral: not used (0), converge (<1), or diverge (>1)"), "scalex_log",
+ 0, 10, "", false);
+ clonetiler_table_attach (table, l, 0, 5, 3);
+ }
+
+ { // alternates
+ GtkWidget *l = gtk_label_new ("");
+ // TRANSLATORS: "Alternate" is a verb here
+ gtk_label_set_markup (GTK_LABEL(l), _("<small>Alternate:</small>"));
+ gtk_size_group_add_widget(table_row_labels, l);
+ clonetiler_table_attach (table, l, 1, 6, 1);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of scales for each row"), "scaley_alternate");
+ clonetiler_table_attach (table, l, 0, 6, 2);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of scales for each column"), "scalex_alternate");
+ clonetiler_table_attach (table, l, 0, 6, 3);
+ }
+
+ { // Cumulate
+ GtkWidget *l = gtk_label_new ("");
+ // TRANSLATORS: "Cumulate" is a verb here
+ gtk_label_set_markup (GTK_LABEL(l), _("<small>Cumulate:</small>"));
+ gtk_size_group_add_widget(table_row_labels, l);
+ clonetiler_table_attach (table, l, 1, 7, 1);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Cumulate the scales for each row"), "scaley_cumulate");
+ clonetiler_table_attach (table, l, 0, 7, 2);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Cumulate the scales for each column"), "scalex_cumulate");
+ clonetiler_table_attach (table, l, 0, 7, 3);
+ }
+
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Rotate tiles by this angle for each row"), "d_rot_per_y",
+ _("Rotate tiles by this angle for each row"), "rotate_per_j",
-180, 180, "°");
clonetiler_table_attach (table, l, 0, 2, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
// xgettext:no-c-format
- _("Rotate tiles by this angle for each column"), "d_rot_per_x",
+ _("Rotate tiles by this angle for each column"), "rotate_per_i",
-180, 180, "°");
clonetiler_table_attach (table, l, 0, 2, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the rotation angle by this percentage"), "rand_rot",
+ _("Randomize the rotation angle by this percentage"), "rotate_rand",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 4);
}
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the rotation direction for each row"), "alternate_roty");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the rotation direction for each row"), "rotate_alternatej");
clonetiler_table_attach (table, l, 0, 3, 2);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the rotation direction for each column"), "alternate_rotx");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the rotation direction for each column"), "rotate_alternatei");
clonetiler_table_attach (table, l, 0, 3, 3);
}
+
+ { // Cumulate
+ GtkWidget *l = gtk_label_new ("");
+ // TRANSLATORS: "Cumulate" is a verb here
+ gtk_label_set_markup (GTK_LABEL(l), _("<small>Cumulate:</small>"));
+ gtk_size_group_add_widget(table_row_labels, l);
+ clonetiler_table_attach (table, l, 1, 4, 1);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Cumulate the rotation for each row"), "rotate_cumulatej");
+ clonetiler_table_attach (table, l, 0, 4, 2);
+ }
+
+ {
+ GtkWidget *l = clonetiler_checkbox (tt, _("Cumulate the rotation for each column"), "rotate_cumulatei");
+ clonetiler_table_attach (table, l, 0, 4, 3);
+ }
+
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Blur tiles by this percentage for each row"), "d_blur_per_y",
+ _("Blur tiles by this percentage for each row"), "blur_per_j",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Blur tiles by this percentage for each column"), "d_blur_per_x",
+ _("Blur tiles by this percentage for each column"), "blur_per_i",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the tile blur by this percentage"), "rand_blur",
+ _("Randomize the tile blur by this percentage"), "blur_rand",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 4);
}
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of blur change for each row"), "alternate_blury");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of blur change for each row"), "blur_alternatej");
clonetiler_table_attach (table, l, 0, 3, 2);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of blur change for each column"), "alternate_blurx");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of blur change for each column"), "blur_alternatei");
clonetiler_table_attach (table, l, 0, 3, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Decrease tile opacity by this percentage for each row"), "d_opacity_per_y",
+ _("Decrease tile opacity by this percentage for each row"), "opacity_per_j",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 4, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Decrease tile opacity by this percentage for each column"), "d_opacity_per_x",
+ _("Decrease tile opacity by this percentage for each column"), "opacity_per_i",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 4, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the tile opacity by this percentage"), "rand_opacity",
+ _("Randomize the tile opacity by this percentage"), "opacity_rand",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 4, 4);
}
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of opacity change for each row"), "alternate_opacityy");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of opacity change for each row"), "opacity_alternatej");
clonetiler_table_attach (table, l, 0, 5, 2);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of opacity change for each column"), "alternate_opacityx");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of opacity change for each column"), "opacity_alternatei");
clonetiler_table_attach (table, l, 0, 5, 3);
}
}
GtkWidget *l = gtk_label_new (_("Initial color: "));
gtk_box_pack_start (GTK_BOX (hb), l, FALSE, FALSE, 0);
- guint32 rgba = 0x000000ff | sp_svg_read_color (prefs_get_string_attribute(prefs_path, "initial_color"), 0x000000ff);
+ guint32 rgba = 0x000000ff | sp_svg_read_color (prefs->getString(prefs_path + "initial_color").data(), 0x000000ff);
color_picker = new Inkscape::UI::Widget::ColorPicker (*new Glib::ustring(_("Initial color of tiled clones")), *new Glib::ustring(_("Initial color for clones (works only if the original has unset fill or stroke)")), rgba, false);
_color_changed_connection = color_picker->connectChanged (sigc::ptr_fun(on_picker_color_changed));
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Change the tile hue by this percentage for each row"), "d_hue_per_y",
+ _("Change the tile hue by this percentage for each row"), "hue_per_j",
-100, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Change the tile hue by this percentage for each column"), "d_hue_per_x",
+ _("Change the tile hue by this percentage for each column"), "hue_per_i",
-100, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the tile hue by this percentage"), "rand_hue",
+ _("Randomize the tile hue by this percentage"), "hue_rand",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 2, 4);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Change the color saturation by this percentage for each row"), "d_saturation_per_y",
+ _("Change the color saturation by this percentage for each row"), "saturation_per_j",
-100, 100, "%");
clonetiler_table_attach (table, l, 0, 3, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Change the color saturation by this percentage for each column"), "d_saturation_per_x",
+ _("Change the color saturation by this percentage for each column"), "saturation_per_i",
-100, 100, "%");
clonetiler_table_attach (table, l, 0, 3, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the color saturation by this percentage"), "rand_saturation",
+ _("Randomize the color saturation by this percentage"), "saturation_rand",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 3, 4);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Change the color lightness by this percentage for each row"), "d_lightness_per_y",
+ _("Change the color lightness by this percentage for each row"), "lightness_per_j",
-100, 100, "%");
clonetiler_table_attach (table, l, 0, 4, 2);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Change the color lightness by this percentage for each column"), "d_lightness_per_x",
+ _("Change the color lightness by this percentage for each column"), "lightness_per_i",
-100, 100, "%");
clonetiler_table_attach (table, l, 0, 4, 3);
}
{
GtkWidget *l = clonetiler_spinbox (tt,
- _("Randomize the color lightness by this percentage"), "rand_lightness",
+ _("Randomize the color lightness by this percentage"), "lightness_rand",
0, 100, "%");
clonetiler_table_attach (table, l, 0, 4, 4);
}
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of color changes for each row"), "alternate_color_y");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of color changes for each row"), "color_alternatej");
clonetiler_table_attach (table, l, 0, 5, 2);
}
{
- GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of color changes for each column"), "alternate_color_x");
+ GtkWidget *l = clonetiler_checkbox (tt, _("Alternate the sign of color changes for each column"), "color_alternatei");
clonetiler_table_attach (table, l, 0, 5, 3);
}
GtkWidget *b = gtk_check_button_new_with_label (_("Trace the drawing under the tiles"));
g_object_set_data (G_OBJECT(b), "uncheckable", GINT_TO_POINTER(TRUE));
- gint old = prefs_get_int_attribute (prefs_path, "dotrace", 0);
- gtk_toggle_button_set_active ((GtkToggleButton *) b, old != 0);
+ bool old = prefs->getBool(prefs_path + "dotrace");
+ gtk_toggle_button_set_active ((GtkToggleButton *) b, old);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, _("For each clone, pick a value from the drawing in that clone's location and apply it to the clone"), NULL);
gtk_box_pack_start (GTK_BOX (hb), b, FALSE, FALSE, 0);
clonetiler_table_attach (table, radio, 0.0, 1, 1);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_COLOR));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_COLOR);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_COLOR);
}
{
radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), _("Opacity"));
clonetiler_table_attach (table, radio, 0.0, 2, 1);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_OPACITY));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_OPACITY);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_OPACITY);
}
{
radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), _("R"));
clonetiler_table_attach (table, radio, 0.0, 1, 2);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_R));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_R);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_R);
}
{
radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), _("G"));
clonetiler_table_attach (table, radio, 0.0, 2, 2);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_G));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_G);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_G);
}
{
radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), _("B"));
clonetiler_table_attach (table, radio, 0.0, 3, 2);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_B));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_B);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_B);
}
{
- //TRANSLATORS: only translate "string" in "context|string".
- // For more details, see http://developer.gnome.org/doc/API/2.0/glib/glib-I18N.html#Q-:CAPS
- radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), Q_("clonetiler|H"));
+ radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), C_("Clonetiler color hue", "H"));
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), radio, _("Pick the hue of the color"), NULL);
clonetiler_table_attach (table, radio, 0.0, 1, 3);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_H));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_H);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_H);
}
{
- //TRANSLATORS: only translate "string" in "context|string".
- // For more details, see http://developer.gnome.org/doc/API/2.0/glib/glib-I18N.html#Q-:CAPS
- radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), Q_("clonetiler|S"));
+ radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), C_("Clonetiler color saturation", "S"));
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), radio, _("Pick the saturation of the color"), NULL);
clonetiler_table_attach (table, radio, 0.0, 2, 3);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_S));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_S);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_S);
}
{
- //TRANSLATORS: only translate "string" in "context|string".
- // For more details, see http://developer.gnome.org/doc/API/2.0/glib/glib-I18N.html#Q-:CAPS
- radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), Q_("clonetiler|L"));
+ radio = gtk_radio_button_new_with_label (gtk_radio_button_group (GTK_RADIO_BUTTON (radio)), C_("Clonetiler color lightness", "L"));
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), radio, _("Pick the lightness of the color"), NULL);
clonetiler_table_attach (table, radio, 0.0, 3, 3);
gtk_signal_connect (GTK_OBJECT (radio), "toggled",
GTK_SIGNAL_FUNC (clonetiler_pick_switched), GINT_TO_POINTER(PICK_L));
- gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs_get_int_attribute(prefs_path, "pick", 0) == PICK_L);
+ gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), prefs->getInt(prefs_path + "pick", 0) == PICK_L);
}
}
{
GtkWidget *b = gtk_check_button_new_with_label (_("Presence"));
- gint old = prefs_get_int_attribute (prefs_path, "pick_to_presence", 1);
- gtk_toggle_button_set_active ((GtkToggleButton *) b, old != 0);
+ bool old = prefs->getBool(prefs_path + "pick_to_presence", true);
+ gtk_toggle_button_set_active ((GtkToggleButton *) b, old);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, _("Each clone is created with the probability determined by the picked value in that point"), NULL);
clonetiler_table_attach (table, b, 0.0, 1, 1);
gtk_signal_connect(GTK_OBJECT(b), "toggled",
{
GtkWidget *b = gtk_check_button_new_with_label (_("Size"));
- gint old = prefs_get_int_attribute (prefs_path, "pick_to_size", 0);
- gtk_toggle_button_set_active ((GtkToggleButton *) b, old != 0);
+ bool old = prefs->getBool(prefs_path + "pick_to_size");
+ gtk_toggle_button_set_active ((GtkToggleButton *) b, old);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, _("Each clone's size is determined by the picked value in that point"), NULL);
clonetiler_table_attach (table, b, 0.0, 2, 1);
gtk_signal_connect(GTK_OBJECT(b), "toggled",
{
GtkWidget *b = gtk_check_button_new_with_label (_("Color"));
- gint old = prefs_get_int_attribute (prefs_path, "pick_to_color", 0);
- gtk_toggle_button_set_active ((GtkToggleButton *) b, old != 0);
+ bool old = prefs->getBool(prefs_path + "pick_to_color", 0);
+ gtk_toggle_button_set_active ((GtkToggleButton *) b, old);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, _("Each clone is painted by the picked color (the original must have unset fill or stroke)"), NULL);
clonetiler_table_attach (table, b, 0.0, 1, 2);
gtk_signal_connect(GTK_OBJECT(b), "toggled",
{
GtkWidget *b = gtk_check_button_new_with_label (_("Opacity"));
- gint old = prefs_get_int_attribute (prefs_path, "pick_to_opacity", 0);
- gtk_toggle_button_set_active ((GtkToggleButton *) b, old != 0);
+ bool old = prefs->getBool(prefs_path + "pick_to_opacity", 0);
+ gtk_toggle_button_set_active ((GtkToggleButton *) b, old);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, _("Each clone's opacity is determined by the picked value in that point"), NULL);
clonetiler_table_attach (table, b, 0.0, 2, 2);
gtk_signal_connect(GTK_OBJECT(b), "toggled",
GTK_SIGNAL_FUNC(clonetiler_pick_to), (gpointer) "pick_to_opacity");
}
}
- gtk_widget_set_sensitive (vvb, prefs_get_int_attribute (prefs_path, "dotrace", 0));
+ gtk_widget_set_sensitive (vvb, prefs->getBool(prefs_path + "dotrace"));
}
}
{
GtkObject *a = gtk_adjustment_new(0.0, 1, 500, 1, 10, 10);
- int value = prefs_get_int_attribute (prefs_path, "ymax", 2);
+ int value = prefs->getInt(prefs_path + "jmax", 2);
gtk_adjustment_set_value (GTK_ADJUSTMENT (a), value);
GtkWidget *sb = gtk_spin_button_new (GTK_ADJUSTMENT (a), 1.0, 0);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), sb, _("How many rows in the tiling"), NULL);
gtk_box_pack_start (GTK_BOX (hb), sb, TRUE, TRUE, 0);
gtk_signal_connect(GTK_OBJECT(a), "value_changed",
- GTK_SIGNAL_FUNC(clonetiler_xy_changed), (gpointer) "ymax");
+ GTK_SIGNAL_FUNC(clonetiler_xy_changed), (gpointer) "jmax");
}
{
{
GtkObject *a = gtk_adjustment_new(0.0, 1, 500, 1, 10, 10);
- int value = prefs_get_int_attribute (prefs_path, "xmax", 2);
+ int value = prefs->getInt(prefs_path + "imax", 2);
gtk_adjustment_set_value (GTK_ADJUSTMENT (a), value);
GtkWidget *sb = gtk_spin_button_new (GTK_ADJUSTMENT (a), 1.0, 0);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), sb, _("How many columns in the tiling"), NULL);
gtk_box_pack_start (GTK_BOX (hb), sb, TRUE, TRUE, 0);
gtk_signal_connect(GTK_OBJECT(a), "value_changed",
- GTK_SIGNAL_FUNC(clonetiler_xy_changed), (gpointer) "xmax");
+ GTK_SIGNAL_FUNC(clonetiler_xy_changed), (gpointer) "imax");
}
clonetiler_table_attach (table, hb, 0.0, 1, 2);
// unitmenu
GtkWidget *u = sp_unit_selector_new (SP_UNIT_ABSOLUTE | SP_UNIT_DEVICE);
sp_unit_selector_set_unit (SP_UNIT_SELECTOR(u), sp_desktop_namedview(SP_ACTIVE_DESKTOP)->doc_units);
-
+
{
- // Width spinbutton
+ // Width spinbutton
GtkObject *a = gtk_adjustment_new (0.0, -1e6, 1e6, 1.0, 10.0, 10.0);
sp_unit_selector_add_adjustment (SP_UNIT_SELECTOR (u), GTK_ADJUSTMENT (a));
- double value = prefs_get_double_attribute (prefs_path, "fillwidth", 50);
+ double value = prefs->getDouble(prefs_path + "fillwidth", 50.0);
SPUnit const &unit = *sp_unit_selector_get_unit(SP_UNIT_SELECTOR(u));
gdouble const units = sp_pixels_get_units (value, unit);
gtk_adjustment_set_value (GTK_ADJUSTMENT (a), units);
GtkObject *a = gtk_adjustment_new (0.0, -1e6, 1e6, 1.0, 10.0, 10.0);
sp_unit_selector_add_adjustment (SP_UNIT_SELECTOR (u), GTK_ADJUSTMENT (a));
- double value = prefs_get_double_attribute (prefs_path, "fillheight", 50);
+ double value = prefs->getDouble(prefs_path + "fillheight", 50.0);
SPUnit const &unit = *sp_unit_selector_get_unit(SP_UNIT_SELECTOR(u));
gdouble const units = sp_pixels_get_units (value, unit);
gtk_adjustment_set_value (GTK_ADJUSTMENT (a), units);
clonetiler_table_attach (table, radio, 0.0, 1, 1);
gtk_signal_connect (GTK_OBJECT (radio), "toggled", GTK_SIGNAL_FUNC (clonetiler_switch_to_create), (gpointer) dlg);
}
- if (prefs_get_int_attribute(prefs_path, "fillrect", 0) == 0) {
+ if (!prefs->getBool(prefs_path + "fillrect")) {
gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), TRUE);
gtk_toggle_button_toggled (GTK_TOGGLE_BUTTON (radio));
}
clonetiler_table_attach (table, radio, 0.0, 2, 1);
gtk_signal_connect (GTK_OBJECT (radio), "toggled", GTK_SIGNAL_FUNC (clonetiler_switch_to_fill), (gpointer) dlg);
}
- if (prefs_get_int_attribute(prefs_path, "fillrect", 0) == 1) {
+ if (prefs->getBool(prefs_path + "fillrect")) {
gtk_toggle_button_set_active (GTK_TOGGLE_BUTTON (radio), TRUE);
gtk_toggle_button_toggled (GTK_TOGGLE_BUTTON (radio));
}
gtk_box_pack_start (GTK_BOX (mainbox), hb, FALSE, FALSE, 0);
GtkWidget *b = gtk_check_button_new_with_label (_("Use saved size and position of the tile"));
- gint keepbbox = prefs_get_int_attribute (prefs_path, "keepbbox", 1);
- gtk_toggle_button_set_active ((GtkToggleButton *) b, keepbbox != 0);
+ bool keepbbox = prefs->getBool(prefs_path + "keepbbox", true);
+ gtk_toggle_button_set_active ((GtkToggleButton *) b, keepbbox);
gtk_tooltips_set_tip (GTK_TOOLTIPS (tt), b, _("Pretend that the size and position of the tile are the same as the last time you tiled it (if any), instead of using the current size"), NULL);
gtk_box_pack_start (GTK_BOX (hb), b, FALSE, FALSE, 0);