gtk/tests/testcairo.c
Owen Taylor 09d7eafb15 Switch set_cairo_target() virtual function to ref_cairo_surface()
2005-03-15  Owen Taylor  <otaylor@redhat.com>

	* gdk/gdkdrawable.h gdk/gdkdraw.c gdk/gdkpixmap.c gdk/gdkwindow.c
	gdk/x11/gdkdrawable-x11.c gdk/x11/gdkpixmap-x11.c gdk/x11/gdkwindow-x11.c
	gdk/gdkinternals.h: Switch set_cairo_target() virtual function to
	ref_cairo_surface()

	* gdk/gdkdrawable.h gdk/gdkdraw.h: Switch set_cairo_target() virtual
	function to create_cairo_context()

	* gdk/gdkwindow.c: Clear double buffer pixmaps with Cairo.

	* gdk/x11/gdkwindow-x11.c: Keep all components in GdkWindowObject.bg_color,
	not just the pixel.

	* tests/testcairo.c: Update for create_cairo_context()

	* gdk/gdkdraw.c (gdk_draw_trapezoids, gdk_draw_glyphs[_transformed]):
	Reimplement in terms of Cairo, bypass the vtable entries.

	* gdk/x11/gdkdrawable-x11.[ch] gdk/x11/gdkdisplay-x11.[ch]
	gdk/x11/gdkgc-x11.c gdk/x11/gdkpango-x11.c
	gdk/x11/gdkprivate-x11.h gdk/x11/Makefile.am: Remove
	implementation of draw_trapezoids / draw_glyphs[_transformed].

	* gdk/gdkpango.c: Switch GdkPangoRenderer to use Cairo

	* gdk/gdkpango.c gdk/x11/gdkpango-x11.c: Move
	gdk_pango_context_get_for_screen() into the backend independent code.

	* gdk/x11/gdkdrawable-x11.[ch]: Remove Xft use, use RENDER directly
	for drawing images.

	* gdk/gdkdrawable.h gdk/x11/gdkdrawable-x11.c: Remove
	gdk_draw_rectangle_alpha_libgtk_only.

	* gdk/gdkpixbuf.h gdk/gdkpixbuf-render.c: Add
	gdk_pixbuf_set_as_cairo_source()

	* gdk/gdk.symbols: Update

	* gtk/gtkcolorsel.c gtk/gtkhsv.c gtk/gtkiconview.c gtk/gtkruler.[ch]
	gtk/gtk[hv]ruler.c: Convert to Cairo rendering.

	* gtk/gtkstyle.c (gtk_default_draw_check, gtk_default_draw_focus,
	gtk_default_draw_option): Switch to Cairo. Simplify the checkbutton,
	radio button style for now to get something more scalable.

	*  gtk/gtksettings.c: #if 0 out the code to use PangoXft for hinting/
	antialiasing/dpi settings.
2005-03-17 01:54:40 +00:00

243 lines
6.0 KiB
C

/* testimage.c
* Copyright (C) 2005 Red Hat, Inc.
* Based on cairo-demo/X11/cairo-knockout.c
*
* Author: Owen Taylor
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public
* License along with this library; if not, write to the
* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
* Boston, MA 02111-1307, USA.
*/
#include <math.h>
#include <gtk/gtk.h>
static void
oval_path (cairo_t *cr,
double xc, double yc,
double xr, double yr)
{
cairo_matrix_t *matrix;
matrix = cairo_matrix_create ();
cairo_current_matrix (cr, matrix);
cairo_translate (cr, xc, yc);
cairo_scale (cr, 1.0, yr / xr);
cairo_move_to (cr, xr, 0.0);
cairo_arc (cr,
0, 0,
xr,
0, 2 * G_PI);
cairo_close_path (cr);
cairo_set_matrix (cr, matrix);
cairo_matrix_destroy (matrix);
}
/* Create a path that is a circular oval with radii xr, yr at xc,
* yc.
*/
/* Fill the given area with checks in the standard style
* for showing compositing effects.
*
* It would make sense to do this as a repeating surface,
* but most implementations of RENDER currently have broken
* implementations of repeat + transform, even when the
* transform is a translation.
*/
static void
fill_checks (cairo_t *cr,
int x, int y,
int width, int height)
{
int i, j;
#define CHECK_SIZE 32
cairo_rectangle (cr, x, y, width, height);
cairo_set_rgb_color (cr, 0.4, 0.4, 0.4);
cairo_fill (cr);
/* Only works for CHECK_SIZE a power of 2 */
j = x & (-CHECK_SIZE);
for (; j < height; j += CHECK_SIZE)
{
i = y & (-CHECK_SIZE);
for (; i < width; i += CHECK_SIZE)
if ((i / CHECK_SIZE + j / CHECK_SIZE) % 2 == 0)
cairo_rectangle (cr, i, j, CHECK_SIZE, CHECK_SIZE);
}
cairo_set_rgb_color (cr, 0.7, 0.7, 0.7);
cairo_fill (cr);
}
/* Draw a red, green, and blue circle equally spaced inside
* the larger circle of radius r at (xc, yc)
*/
static void
draw_3circles (cairo_t *cr,
double xc, double yc,
double radius)
{
double subradius = radius * (2 / 3. - 0.1);
cairo_set_rgb_color (cr, 1., 0., 0.);
oval_path (cr,
xc + radius / 3. * cos (G_PI * (0.5)),
yc - radius / 3. * sin (G_PI * (0.5)),
subradius, subradius);
cairo_fill (cr);
cairo_set_rgb_color (cr, 0., 1., 0.);
oval_path (cr,
xc + radius / 3. * cos (G_PI * (0.5 + 2/.3)),
yc - radius / 3. * sin (G_PI * (0.5 + 2/.3)),
subradius, subradius);
cairo_fill (cr);
cairo_set_rgb_color (cr, 0., 0., 1.);
oval_path (cr,
xc + radius / 3. * cos (G_PI * (0.5 + 4/.3)),
yc - radius / 3. * sin (G_PI * (0.5 + 4/.3)),
subradius, subradius);
cairo_fill (cr);
}
static void
draw (cairo_t *cr,
int width,
int height)
{
cairo_surface_t *overlay, *punch, *circles;
/* Fill the background */
double radius = 0.5 * (width < height ? width : height) - 10;
double xc = width / 2.;
double yc = height / 2.;
overlay = cairo_surface_create_similar (cairo_current_target_surface (cr),
CAIRO_FORMAT_ARGB32,
width, height);
if (overlay == NULL)
return;
punch = cairo_surface_create_similar (cairo_current_target_surface (cr),
CAIRO_FORMAT_A8,
width, height);
if (punch == NULL)
return;
circles = cairo_surface_create_similar (cairo_current_target_surface (cr),
CAIRO_FORMAT_ARGB32,
width, height);
if (circles == NULL)
return;
fill_checks (cr, 0, 0, width, height);
cairo_save (cr);
cairo_set_target_surface (cr, overlay);
cairo_identity_matrix (cr);
/* Draw a black circle on the overlay
*/
cairo_set_rgb_color (cr, 0., 0., 0.);
oval_path (cr, xc, yc, radius, radius);
cairo_fill (cr);
cairo_save (cr);
cairo_set_target_surface (cr, punch);
/* Draw 3 circles to the punch surface, then cut
* that out of the main circle in the overlay
*/
draw_3circles (cr, xc, yc, radius);
cairo_restore (cr);
cairo_set_operator (cr, CAIRO_OPERATOR_OUT_REVERSE);
cairo_show_surface (cr, punch, width, height);
/* Now draw the 3 circles in a subgroup again
* at half intensity, and use OperatorAdd to join up
* without seams.
*/
cairo_save (cr);
cairo_set_target_surface (cr, circles);
cairo_set_alpha (cr, 0.5);
cairo_set_operator (cr, CAIRO_OPERATOR_OVER);
draw_3circles (cr, xc, yc, radius);
cairo_restore (cr);
cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
cairo_show_surface (cr, circles, width, height);
cairo_restore (cr);
cairo_show_surface (cr, overlay, width, height);
cairo_surface_destroy (overlay);
cairo_surface_destroy (punch);
cairo_surface_destroy (circles);
}
static gboolean
on_expose_event (GtkWidget *widget,
GdkEventExpose *event,
gpointer data)
{
cairo_t *cr;
cr = gdk_drawable_create_cairo_context (widget->window);
draw (cr, widget->allocation.width, widget->allocation.height);
cairo_destroy (cr);
return FALSE;
}
int
main (int argc, char **argv)
{
GtkWidget *window, *darea;
gtk_init (&argc, &argv);
window = gtk_window_new (GTK_WINDOW_TOPLEVEL);
gtk_window_set_default_size (GTK_WINDOW (window), 400, 400);
gtk_window_set_title (GTK_WINDOW (window), "cairo: Knockout Groups");
darea = gtk_drawing_area_new ();
gtk_container_add (GTK_CONTAINER (window), darea);
g_signal_connect (darea, "expose-event",
G_CALLBACK (on_expose_event), NULL);
g_signal_connect (window, "destroy-event",
G_CALLBACK (gtk_main_quit), NULL);
gtk_widget_show_all (window);
gtk_main ();
return 0;
}