1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style license that can be 3 // found in the LICENSE file. 4 5 #include "chrome/browser/ui/gtk/nine_box.h" 6 7 #include "base/basictypes.h" 8 #include "base/i18n/rtl.h" 9 #include "base/logging.h" 10 #include "ui/base/resource/resource_bundle.h" 11 #include "ui/gfx/gtk_util.h" 12 #include "ui/gfx/image/cairo_cached_surface.h" 13 #include "ui/gfx/image/image.h" 14 #include "ui/gfx/point.h" 15 16 namespace { 17 18 // Draw pixbuf |src| into |dst| at position (x, y). 19 void DrawImage(cairo_t* cr, GtkWidget* widget, gfx::Image* src, 20 int x, int y, double alpha) { 21 if (!src) 22 return; 23 24 src->ToCairo()->SetSource(cr, widget, x, y); 25 cairo_paint_with_alpha(cr, alpha); 26 } 27 28 // Tile pixbuf |src| across |cr| at |x|, |y| for |width| and |height|. 29 void TileImage(cairo_t* cr, GtkWidget* widget, gfx::Image* src, 30 int x, int y, int width, int height, double alpha) { 31 if (!src) 32 return; 33 34 if (alpha == 1.0) { 35 src->ToCairo()->SetSource(cr, widget, x, y); 36 cairo_pattern_set_extend(cairo_get_source(cr), CAIRO_EXTEND_REPEAT); 37 cairo_rectangle(cr, x, y, width, height); 38 cairo_fill(cr); 39 } else { 40 // Since there is no easy way to apply a mask to a fill operation, we create 41 // a secondary surface and tile into that, then paint it with |alpha|. 42 cairo_surface_t* target = cairo_get_target(cr); 43 cairo_surface_t* surface = cairo_surface_create_similar( 44 target, CAIRO_CONTENT_COLOR_ALPHA, width, height); 45 cairo_t* tiled = cairo_create(surface); 46 src->ToCairo()->SetSource(tiled, widget, 0, 0); 47 cairo_pattern_set_extend(cairo_get_source(tiled), CAIRO_EXTEND_REPEAT); 48 cairo_rectangle(tiled, 0, 0, width, height); 49 cairo_fill(tiled); 50 51 cairo_set_source_surface(cr, surface, x, y); 52 cairo_paint_with_alpha(cr, alpha); 53 54 cairo_destroy(tiled); 55 cairo_surface_destroy(surface); 56 } 57 } 58 59 } // namespace 60 61 NineBox::NineBox(int top_left, int top, int top_right, int left, int center, 62 int right, int bottom_left, int bottom, int bottom_right) 63 : unref_images_on_destroy_(false) { 64 ui::ResourceBundle& rb = ui::ResourceBundle::GetSharedInstance(); 65 66 images_[0] = top_left ? &rb.GetNativeImageNamed(top_left) : NULL; 67 images_[1] = top ? &rb.GetNativeImageNamed(top) : NULL; 68 images_[2] = top_right ? &rb.GetNativeImageNamed(top_right) : NULL; 69 images_[3] = left ? &rb.GetNativeImageNamed(left) : NULL; 70 images_[4] = center ? &rb.GetNativeImageNamed(center) : NULL; 71 images_[5] = right ? &rb.GetNativeImageNamed(right) : NULL; 72 images_[6] = bottom_left ? &rb.GetNativeImageNamed(bottom_left) : NULL; 73 images_[7] = bottom ? &rb.GetNativeImageNamed(bottom) : NULL; 74 images_[8] = bottom_right ? &rb.GetNativeImageNamed(bottom_right) : NULL; 75 } 76 77 NineBox::NineBox(int image, int top_margin, int bottom_margin, int left_margin, 78 int right_margin) 79 : unref_images_on_destroy_(true) { 80 ui::ResourceBundle& rb = ui::ResourceBundle::GetSharedInstance(); 81 GdkPixbuf* pixbuf = rb.GetNativeImageNamed(image).ToGdkPixbuf(); 82 int width = gdk_pixbuf_get_width(pixbuf); 83 int height = gdk_pixbuf_get_height(pixbuf); 84 int inset_width = left_margin + right_margin; 85 int inset_height = top_margin + bottom_margin; 86 87 images_[0] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 88 pixbuf, 0, 0, left_margin, top_margin)); 89 images_[1] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 90 pixbuf, left_margin, 0, width - inset_width, top_margin)); 91 images_[2] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 92 pixbuf, width - right_margin, 0, right_margin, top_margin)); 93 images_[3] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 94 pixbuf, 0, top_margin, left_margin, height - inset_height)); 95 images_[4] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 96 pixbuf, left_margin, top_margin, width - inset_width, 97 height - inset_height)); 98 images_[5] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 99 pixbuf, width - right_margin, top_margin, right_margin, 100 height - inset_height)); 101 images_[6] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 102 pixbuf, 0, height - bottom_margin, left_margin, bottom_margin)); 103 images_[7] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 104 pixbuf, left_margin, height - bottom_margin, 105 width - inset_width, bottom_margin)); 106 images_[8] = new gfx::Image(gdk_pixbuf_new_subpixbuf( 107 pixbuf, width - right_margin, height - bottom_margin, 108 right_margin, bottom_margin)); 109 } 110 111 NineBox::~NineBox() { 112 if (unref_images_on_destroy_) { 113 for (int i = 0; i < 9; i++) { 114 delete images_[i]; 115 } 116 } 117 } 118 119 void NineBox::RenderToWidget(GtkWidget* dst) const { 120 RenderToWidgetWithOpacity(dst, 1.0); 121 } 122 123 void NineBox::RenderToWidgetWithOpacity(GtkWidget* dst, double opacity) const { 124 GtkAllocation allocation; 125 gtk_widget_get_allocation(dst, &allocation); 126 int w = allocation.width; 127 int h = allocation.height; 128 129 // In case the corners and edges don't all have the same width/height, we draw 130 // the center first, and extend it out in all directions to the edges of the 131 // images with the smallest widths/heights. This way there will be no 132 // unpainted areas, though some corners or edges might overlap the center. 133 int i0w = images_[0] ? images_[0]->Width() : 0; 134 int i2w = images_[2] ? images_[2]->Width() : 0; 135 int i3w = images_[3] ? images_[3]->Width() : 0; 136 int i5w = images_[5] ? images_[5]->Width() : 0; 137 int i6w = images_[6] ? images_[6]->Width() : 0; 138 int i8w = images_[8] ? images_[8]->Width() : 0; 139 int i4x = std::min(std::min(i0w, i3w), i6w); 140 int i4w = w - i4x - std::min(std::min(i2w, i5w), i8w); 141 int i0h = images_[0] ? images_[0]->Height() : 0; 142 int i1h = images_[1] ? images_[1]->Height() : 0; 143 int i2h = images_[2] ? images_[2]->Height() : 0; 144 int i6h = images_[6] ? images_[6]->Height() : 0; 145 int i7h = images_[7] ? images_[7]->Height() : 0; 146 int i8h = images_[8] ? images_[8]->Height() : 0; 147 int i4y = std::min(std::min(i0h, i1h), i2h); 148 int i4h = h - i4y - std::min(std::min(i6h, i7h), i8h); 149 150 cairo_t* cr = gdk_cairo_create(GDK_DRAWABLE(gtk_widget_get_window(dst))); 151 // For widgets that have their own window, the allocation (x,y) coordinates 152 // are GdkWindow relative. For other widgets, the coordinates are relative 153 // to their container. 154 if (!gtk_widget_get_has_window(dst)) { 155 // Transform our cairo from window to widget coordinates. 156 cairo_translate(cr, allocation.x, allocation.y); 157 } 158 159 if (base::i18n::IsRTL()) { 160 cairo_translate(cr, w, 0.0f); 161 cairo_scale(cr, -1.0f, 1.0f); 162 } 163 164 // Top row, center image is horizontally tiled. 165 DrawImage(cr, dst, images_[0], 0, 0, opacity); 166 TileImage(cr, dst, images_[1], i0w, 0, w - i0w - i2w, i1h, opacity); 167 DrawImage(cr, dst, images_[2], w - i2w, 0, opacity); 168 169 // Center row, all images are vertically tiled, center is horizontally tiled. 170 TileImage(cr, dst, images_[3], 0, i0h, i3w, h - i0h - i6h, opacity); 171 TileImage(cr, dst, images_[4], i4x, i4y, i4w, i4h, opacity); 172 TileImage(cr, dst, images_[5], w - i5w, i2h, i5w, h - i2h - i8h, opacity); 173 174 // Bottom row, center image is horizontally tiled. 175 DrawImage(cr, dst, images_[6], 0, h - i6h, opacity); 176 TileImage(cr, dst, images_[7], i6w, h - i7h, w - i6w - i8w, i7h, opacity); 177 DrawImage(cr, dst, images_[8], w - i8w, h - i8h, opacity); 178 179 cairo_destroy(cr); 180 } 181 182 void NineBox::ContourWidget(GtkWidget* widget) const { 183 GtkAllocation allocation; 184 gtk_widget_get_allocation(widget, &allocation); 185 int width = allocation.width; 186 int height = allocation.height; 187 int x1 = gdk_pixbuf_get_width(images_[0]->ToGdkPixbuf()); 188 int x2 = width - gdk_pixbuf_get_width(images_[2]->ToGdkPixbuf()); 189 190 // TODO(erg): Far in the future, when we're doing the real gtk3 porting, this 191 // all needs to be switchted to pure cairo operations. 192 193 // Paint the left and right sides. 194 GdkBitmap* mask = gdk_pixmap_new(NULL, width, height, 1); 195 gdk_pixbuf_render_threshold_alpha(images_[0]->ToGdkPixbuf(), mask, 196 0, 0, 197 0, 0, -1, -1, 198 1); 199 gdk_pixbuf_render_threshold_alpha(images_[2]->ToGdkPixbuf(), mask, 200 0, 0, 201 x2, 0, -1, -1, 202 1); 203 204 // Assume no transparency in the middle rectangle. 205 cairo_t* cr = gdk_cairo_create(mask); 206 cairo_rectangle(cr, x1, 0, x2 - x1, height); 207 cairo_fill(cr); 208 cairo_destroy(cr); 209 210 // Mask the widget's window's shape. 211 if (!base::i18n::IsRTL()) { 212 gtk_widget_shape_combine_mask(widget, mask, 0, 0); 213 } else { 214 GdkBitmap* flipped_mask = gdk_pixmap_new(NULL, width, height, 1); 215 cairo_t* flipped_cr = gdk_cairo_create(flipped_mask); 216 217 // Clear the target bitmap. 218 cairo_set_operator(flipped_cr, CAIRO_OPERATOR_CLEAR); 219 cairo_paint(flipped_cr); 220 221 // Apply flipping transformation. 222 cairo_translate(flipped_cr, width, 0.0f); 223 cairo_scale(flipped_cr, -1.0f, 1.0f); 224 225 // Paint the source bitmap onto the target. 226 cairo_set_operator(flipped_cr, CAIRO_OPERATOR_SOURCE); 227 gdk_cairo_set_source_pixmap(flipped_cr, mask, 0, 0); 228 cairo_paint(flipped_cr); 229 cairo_destroy(flipped_cr); 230 231 // Mask the widget. 232 gtk_widget_shape_combine_mask(widget, flipped_mask, 0, 0); 233 g_object_unref(flipped_mask); 234 } 235 236 g_object_unref(mask); 237 } 238