mirror of
https://github.com/hajimehoshi/ebiten.git
synced 2024-12-25 03:08:54 +01:00
393 lines
10 KiB
Go
393 lines
10 KiB
Go
// Copyright 2014 Hajime Hoshi
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package ebiten
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import (
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"errors"
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"fmt"
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"image"
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"image/color"
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"image/draw"
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"runtime"
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"sync"
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"github.com/hajimehoshi/ebiten/internal/graphics"
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"github.com/hajimehoshi/ebiten/internal/graphics/opengl"
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)
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var (
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imageM sync.Mutex
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)
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type delayedImageTasks struct {
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tasks []func() error
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m sync.Mutex
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execCalled bool
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}
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var theDelayedImageTasks = &delayedImageTasks{
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tasks: []func() error{},
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}
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func (t *delayedImageTasks) add(f func() error) bool {
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t.m.Lock()
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defer t.m.Unlock()
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if t.execCalled {
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return false
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}
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t.tasks = append(t.tasks, f)
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return true
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}
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func (t *delayedImageTasks) exec() error {
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t.m.Lock()
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defer t.m.Unlock()
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t.execCalled = true
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for _, f := range t.tasks {
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if err := f(); err != nil {
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return err
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}
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}
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return nil
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}
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// Image represents an image.
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// The pixel format is alpha-premultiplied.
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// Image implements image.Image.
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type Image struct {
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framebuffer *graphics.Framebuffer
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texture *graphics.Texture
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disposed bool
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pixels []uint8
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width int
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height int
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}
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// Size returns the size of the image.
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//
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// This function is concurrent-safe.
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func (i *Image) Size() (width, height int) {
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return i.width, i.height
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}
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// Clear resets the pixels of the image into 0.
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//
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// This function is concurrent-safe.
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func (i *Image) Clear() (err error) {
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return i.clear()
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}
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func (i *Image) clear() (err error) {
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return i.fill(color.Transparent)
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}
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// Fill fills the image with a solid color.
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//
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// This function is concurrent-safe.
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func (i *Image) Fill(clr color.Color) (err error) {
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return i.fill(clr)
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}
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func (i *Image) fill(clr color.Color) (err error) {
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f := func() error {
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imageM.Lock()
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defer imageM.Unlock()
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if i.isDisposed() {
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return errors.New("ebiten: image is already disposed")
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}
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i.pixels = nil
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return i.framebuffer.Fill(glContext, clr)
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}
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if theDelayedImageTasks.add(f) {
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return nil
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}
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return f()
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}
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// DrawImage draws the given image on the receiver image.
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//
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// This method accepts the options.
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// The parts of the given image at the parts of the destination.
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// After determining parts to draw, this applies the geometry matrix and the color matrix.
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//
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// Here are the default values:
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// ImageParts: (0, 0) - (source width, source height) to (0, 0) - (source width, source height)
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// (i.e. the whole source image)
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// GeoM: Identity matrix
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// ColorM: Identity matrix (that changes no colors)
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// CompositeMode: CompositeModeSourceOver (regular alpha blending)
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//
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// Be careful that this method is potentially slow.
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// It would be better if you could call this method fewer times.
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//
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// This function is concurrent-safe.
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func (i *Image) DrawImage(image *Image, options *DrawImageOptions) (err error) {
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// Calculate vertices before locking because the user can do anything in
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// options.ImageParts interface without deadlock (e.g. Call Image functions).
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if options == nil {
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options = &DrawImageOptions{}
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}
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parts := options.ImageParts
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if parts == nil {
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// Check options.Parts for backward-compatibility.
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dparts := options.Parts
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if dparts != nil {
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parts = imageParts(dparts)
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} else {
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parts = &wholeImage{image.width, image.height}
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}
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}
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quads := &textureQuads{parts: parts, width: image.width, height: image.height}
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// TODO: Reuse one vertices instead of making here, but this would need locking.
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vertices := make([]int16, parts.Len()*16)
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n := quads.vertices(vertices)
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if n == 0 {
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return nil
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}
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if i == image {
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return errors.New("ebiten: Image.DrawImage: image should be different from the receiver")
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}
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f := func() error {
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imageM.Lock()
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defer imageM.Unlock()
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if i.isDisposed() {
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return errors.New("ebiten: image is already disposed")
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}
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i.pixels = nil
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m := opengl.CompositeMode(options.CompositeMode)
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return i.framebuffer.DrawTexture(glContext, image.texture, vertices[:16*n], &options.GeoM, &options.ColorM, m)
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}
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if theDelayedImageTasks.add(f) {
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return nil
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}
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return f()
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}
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// Bounds returns the bounds of the image.
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//
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// This function is concurrent-safe.
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func (i *Image) Bounds() image.Rectangle {
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return image.Rect(0, 0, i.width, i.height)
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}
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// ColorModel returns the color model of the image.
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//
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// This function is concurrent-safe.
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func (i *Image) ColorModel() color.Model {
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return color.RGBAModel
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}
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// At returns the color of the image at (x, y).
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//
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// This method loads pixels from VRAM to system memory if necessary.
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//
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// This method can't be called before the main loop (ebiten.Run) starts (as of version 1.4.0-alpha).
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//
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// This function is concurrent-safe.
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func (i *Image) At(x, y int) color.Color {
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if !currentRunContext.isRunning() {
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panic("ebiten: At can't be called when the GL context is not initialized (this panic happens as of version 1.4.0-alpha)")
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}
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imageM.Lock()
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defer imageM.Unlock()
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if i.isDisposed() {
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return color.Transparent
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}
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if i.pixels == nil {
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var err error
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i.pixels, err = i.framebuffer.Pixels(glContext)
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if err != nil {
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panic(err)
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}
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}
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w := int(graphics.NextPowerOf2Int32(int32(i.width)))
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idx := 4*x + 4*y*w
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r, g, b, a := i.pixels[idx], i.pixels[idx+1], i.pixels[idx+2], i.pixels[idx+3]
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return color.RGBA{r, g, b, a}
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}
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// Dispose disposes the image data. After disposing, the image becomes invalid.
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// This is useful to save memory.
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//
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// The behavior of any functions for a disposed image is undefined.
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//
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// This function is concurrent-safe.
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func (i *Image) Dispose() error {
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f := func() error {
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imageM.Lock()
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defer imageM.Unlock()
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if i.isDisposed() {
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return errors.New("ebiten: image is already disposed")
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}
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if i.framebuffer != nil {
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if err := i.framebuffer.Dispose(glContext); err != nil {
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return err
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}
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i.framebuffer = nil
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}
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if i.texture != nil {
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if err := i.texture.Dispose(glContext); err != nil {
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return err
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}
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i.texture = nil
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}
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i.disposed = true
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i.pixels = nil
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runtime.SetFinalizer(i, nil)
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return nil
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}
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if theDelayedImageTasks.add(f) {
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return nil
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}
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return f()
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}
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func (i *Image) isDisposed() bool {
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return i.disposed
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}
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// ReplacePixels replaces the pixels of the image with p.
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//
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// The given p must represent RGBA pre-multiplied alpha values. len(p) must equal to 4 * (image width) * (image height).
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//
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// This function may be slow (as for implementation, this calls glTexSubImage2D).
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//
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// This function is concurrent-safe.
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func (i *Image) ReplacePixels(p []uint8) error {
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if l := 4 * i.width * i.height; len(p) != l {
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return fmt.Errorf("ebiten: p's length must be %d", l)
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}
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f := func() error {
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imageM.Lock()
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defer imageM.Unlock()
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// Don't set i.pixels here because i.pixels is used not every time.
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i.pixels = nil
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if i.isDisposed() {
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return errors.New("ebiten: image is already disposed")
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}
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return i.framebuffer.ReplacePixels(glContext, i.texture, p)
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}
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if theDelayedImageTasks.add(f) {
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return nil
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}
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return f()
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}
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// A DrawImageOptions represents options to render an image on an image.
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type DrawImageOptions struct {
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ImageParts ImageParts
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GeoM GeoM
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ColorM ColorM
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CompositeMode CompositeMode
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// Deprecated (as of 1.1.0-alpha): Use ImageParts instead.
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Parts []ImagePart
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}
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// NewImage returns an empty image.
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//
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// NewImage generates a new texture and a new framebuffer.
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// Be careful that image objects will never be released
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// even though nothing refers the image object and GC works.
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// It is because there is no way to define finalizers for Go objects if you use GopherJS.
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//
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// This function is concurrent-safe.
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func NewImage(width, height int, filter Filter) (*Image, error) {
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image := &Image{
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width: width,
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height: height,
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}
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f := func() error {
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imageM.Lock()
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defer imageM.Unlock()
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texture, err := graphics.NewTexture(glContext, width, height, glFilter(glContext, filter))
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if err != nil {
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return err
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}
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framebuffer, err := graphics.NewFramebufferFromTexture(glContext, texture)
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if err != nil {
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// TODO: texture should be removed here?
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return err
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}
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image.framebuffer = framebuffer
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image.texture = texture
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runtime.SetFinalizer(image, (*Image).Dispose)
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if err := image.framebuffer.Fill(glContext, color.Transparent); err != nil {
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return err
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}
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return nil
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}
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if theDelayedImageTasks.add(f) {
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return image, nil
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}
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if err := f(); err != nil {
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return nil, err
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}
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return image, nil
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}
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// NewImageFromImage creates a new image with the given image (img).
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//
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// NewImageFromImage generates a new texture and a new framebuffer.
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// Be careful that image objects will never be released
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// even though nothing refers the image object and GC works.
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// It is because there is no way to define finalizers for Go objects if you use GopherJS.
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//
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// This function is concurrent-safe.
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func NewImageFromImage(img image.Image, filter Filter) (*Image, error) {
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size := img.Bounds().Size()
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w, h := size.X, size.Y
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// TODO: Return error when the image is too big!
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eimg := &Image{
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width: w,
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height: h,
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}
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f := func() error {
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// Don't lock while manipulating an image.Image interface.
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rgbaImg, ok := img.(*image.RGBA)
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if !ok {
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origImg := img
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newImg := image.NewRGBA(origImg.Bounds())
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draw.Draw(newImg, newImg.Bounds(), origImg, origImg.Bounds().Min, draw.Src)
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rgbaImg = newImg
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}
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imageM.Lock()
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defer imageM.Unlock()
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texture, err := graphics.NewTextureFromImage(glContext, rgbaImg, glFilter(glContext, filter))
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if err != nil {
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return err
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}
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framebuffer, err := graphics.NewFramebufferFromTexture(glContext, texture)
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if err != nil {
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// TODO: texture should be removed here?
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return err
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}
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eimg.framebuffer = framebuffer
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eimg.texture = texture
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runtime.SetFinalizer(eimg, (*Image).Dispose)
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return nil
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}
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if theDelayedImageTasks.add(f) {
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return eimg, nil
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}
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if err := f(); err != nil {
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return nil, err
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}
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return eimg, nil
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}
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