#include <epoxy/gl.h>
+typedef enum {
+ GSK_BLEND_MODE_NONE,
+
+ GSK_BLEND_MODE_MULTIPLY
+} GskBlendMode;
+
typedef struct {
guint vao_id;
guint buffer_id;
guint mvp_location;
guint map_location;
+ guint parentMap_location;
guint uv_location;
guint position_location;
guint alpha_location;
+ guint blendMode_location;
} RenderData;
typedef struct {
const char *name;
+ GskBlendMode blend_mode;
+
RenderData render_data;
+ RenderData *parent_data;
} RenderItem;
struct _GskGLRenderer
guint program_id;
guint mvp_location;
guint map_location;
+ guint parentMap_location;
guint uv_location;
guint position_location;
guint alpha_location;
+ guint blendMode_location;
guint vao_id;
*/
self->mvp_location = glGetUniformLocation (self->program_id, "mvp");
self->map_location = glGetUniformLocation (self->program_id, "map");
+ self->parentMap_location = glGetUniformLocation (self->program_id, "parentMap");
self->alpha_location = glGetUniformLocation (self->program_id, "alpha");
self->position_location = glGetAttribLocation (self->program_id, "position");
self->uv_location = glGetAttribLocation (self->program_id, "uv");
+ self->blendMode_location = glGetAttribLocation (self->program_id, "blendMode");
GSK_NOTE (OPENGL, g_print ("Program [%d] { mvp:%u, map:%u, alpha:%u, position:%u, uv:%u }\n",
self->program_id,
{
GSK_NOTE (OPENGL, g_print ("Updating the modelview/projection\n"));
- graphene_matrix_multiply (modelview, projection, &self->mvp);
+ graphene_matrix_multiply (projection, modelview, &self->mvp);
graphene_frustum_init_from_matrix (&self->frustum, &self->mvp);
+
+ GSK_NOTE (OPENGL, g_print ("Renderer MVP:\n"));
+ GSK_NOTE (OPENGL, graphene_matrix_print (&self->mvp));
}
static void
glBindTexture (GL_TEXTURE_2D, item->render_data.texture_id);
glUniform1i (item->render_data.map_location, 0);
+ if (item->parent_data != NULL)
+ {
+ if (item->parent_data->texture_id != 0)
+ {
+ glActiveTexture (GL_TEXTURE1);
+ glBindTexture (GL_TEXTURE_2D, item->parent_data->texture_id);
+ glUniform1i (item->render_data.parentMap_location, 1);
+ }
+
+ glUniform1i (item->render_data.blendMode_location, item->blend_mode);
+ }
+
/* Pass the opacity component */
glUniform1f (item->render_data.alpha_location, item->opaque ? 1 : item->opacity);
static void
gsk_gl_renderer_add_render_item (GskGLRenderer *self,
- GskRenderNode *node)
+ GskRenderNode *node,
+ RenderItem *parent)
{
graphene_rect_t viewport;
int gl_min_filter, gl_mag_filter;
return;
}
+ memset (&item, 0, sizeof (RenderItem));
+
gsk_renderer_get_viewport (GSK_RENDERER (self), &viewport);
gsk_render_node_get_bounds (node, &bounds);
/* Each render item is an axis-aligned bounding box that we
* transform using the given transformation matrix
*/
- item.min.x = (bounds.origin.x * 2) / bounds.size.width - 1;
- item.min.y = (bounds.origin.y * 2) / bounds.size.height - 1;
+ item.min.x = bounds.origin.x;
+ item.min.y = bounds.origin.y;
item.min.z = 0.f;
- item.max.x = (bounds.origin.x + bounds.size.width) * 2 / bounds.size.width - 1;
- item.max.y = (bounds.origin.y + bounds.size.height) * 2 / bounds.size.height - 1;
+ item.max.x = bounds.origin.x + bounds.size.width;
+ item.max.y = bounds.origin.y + bounds.size.height;
item.max.z = 0.f;
/* The location of the item, in normalized world coordinates */
gsk_render_node_get_world_matrix (node, &mv);
- item.mvp = mv;
+ graphene_matrix_multiply (&mv, &self->mvp, &item.mvp);
item.opaque = gsk_render_node_is_opaque (node);
item.opacity = gsk_render_node_get_opacity (node);
+ item.blend_mode = parent != NULL ? GSK_BLEND_MODE_MULTIPLY : GSK_BLEND_MODE_NONE;
+
/* GL objects */
item.render_data.vao_id = self->vao_id;
item.render_data.buffer_id = 0;
item.render_data.program_id = self->program_id;
item.render_data.map_location = self->map_location;
+ item.render_data.parentMap_location = self->parentMap_location;
item.render_data.mvp_location = self->mvp_location;
item.render_data.uv_location = self->uv_location;
item.render_data.position_location = self->position_location;
item.render_data.alpha_location = self->alpha_location;
+ item.render_data.blendMode_location = self->blendMode_location;
+
+ if (parent != NULL)
+ item.parent_data = &(parent->render_data);
+ else
+ item.parent_data = NULL;
gsk_renderer_get_projection (GSK_RENDERER (self), &projection);
item.z = project_item (&projection, &mv);
recurse_children:
gsk_render_node_iter_init (&iter, node);
while (gsk_render_node_iter_next (&iter, &child))
- gsk_gl_renderer_add_render_item (self, child);
+ gsk_gl_renderer_add_render_item (self, child, &item);
}
static gboolean
gsk_gl_renderer_validate_tree (GskGLRenderer *self,
GskRenderNode *root)
{
- int n_children;
+ int n_nodes;
if (self->context == NULL)
- return FALSE;
+ {
+ GSK_NOTE (OPENGL, g_print ("No valid GL context associated to the renderer"));
+ return FALSE;
+ }
- n_children = gsk_render_node_get_n_children (root);
- if (n_children == 0)
- return FALSE;
+ n_nodes = gsk_render_node_get_size (root);
gdk_gl_context_make_current (self->context);
- self->opaque_render_items = g_array_sized_new (FALSE, FALSE, sizeof (RenderItem), n_children);
- self->transparent_render_items = g_array_sized_new (FALSE, FALSE, sizeof (RenderItem), n_children);
+ self->opaque_render_items = g_array_sized_new (FALSE, FALSE, sizeof (RenderItem), n_nodes);
+ self->transparent_render_items = g_array_sized_new (FALSE, FALSE, sizeof (RenderItem), n_nodes);
g_array_set_clear_func (self->opaque_render_items, render_item_clear);
g_array_set_clear_func (self->transparent_render_items, render_item_clear);
GSK_NOTE (OPENGL, g_print ("RenderNode -> RenderItem\n"));
- gsk_gl_renderer_add_render_item (self, root);
+ gsk_gl_renderer_add_render_item (self, root, NULL);
- GSK_NOTE (OPENGL, g_print ("Total render items: %d (opaque:%d, transparent:%d)\n",
+ GSK_NOTE (OPENGL, g_print ("Total render items: %d of %d (opaque:%d, transparent:%d)\n",
self->opaque_render_items->len + self->transparent_render_items->len,
+ n_nodes,
self->opaque_render_items->len,
self->transparent_render_items->len));
GskGLRenderer *self = GSK_GL_RENDERER (renderer);
graphene_matrix_t modelview, projection;
graphene_rect_t viewport;
+ gboolean use_alpha;
int status;
guint i;
self->texture_id != 0 ? "texture" : "renderbuffer"));
out:
+ use_alpha = gsk_renderer_get_use_alpha (renderer);
+
gdk_cairo_draw_from_gl (gdk_drawing_context_get_cairo_context (context),
gdk_drawing_context_get_window (context),
- self->texture_id != 0 ? self->texture_id : self->render_buffer,
- self->texture_id != 0 ? GL_TEXTURE : GL_RENDERBUFFER,
+ use_alpha ? self->texture_id : self->render_buffer,
+ use_alpha ? GL_TEXTURE : GL_RENDERBUFFER,
gsk_renderer_get_scale_factor (renderer),
0, 0, viewport.size.width, viewport.size.height);