203 lines
7.3 KiB
Go
203 lines
7.3 KiB
Go
package imgui
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import (
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"unsafe"
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"github.com/FooSoft/imgui-go"
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"github.com/go-gl/gl/v2.1/gl"
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"github.com/veandco/go-sdl2/sdl"
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)
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var singleton struct {
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context *imgui.Context
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refCount int
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}
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func (c *Context) BeginFrame() error {
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// Setup display size (every frame to accommodate for window resizing)
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io := imgui.CurrentIO()
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io.SetDisplaySize(imgui.Vec2{
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X: float32(c.displaySize.X),
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Y: float32(c.displaySize.Y),
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})
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// Setup time step (we don't use SDL_GetTicks() because it is using millisecond resolution)
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frequency := sdl.GetPerformanceFrequency()
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currentTime := sdl.GetPerformanceCounter()
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if c.lastTime > 0 {
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io.SetDeltaTime(float32(currentTime-c.lastTime) / float32(frequency))
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} else {
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io.SetDeltaTime(1.0 / 60.0)
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}
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c.lastTime = currentTime
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// If a mouse press event came, always pass it as "mouse held this frame", so we don't miss click-release events that are shorter than 1 frame.
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x, y, state := sdl.GetMouseState()
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for i, button := range []uint32{sdl.BUTTON_LEFT, sdl.BUTTON_RIGHT, sdl.BUTTON_MIDDLE} {
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io.SetMouseButtonDown(i, c.buttonsDown[i] || (state&sdl.Button(button)) != 0)
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c.buttonsDown[i] = false
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}
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io.SetMousePosition(imgui.Vec2{X: float32(x), Y: float32(y)})
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imgui.NewFrame()
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return nil
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}
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// You can read the io.WantCaptureMouse, io.WantCaptureKeyboard flags to tell if dear imgui wants to use your inputs.
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// - When io.WantCaptureMouse is true, do not dispatch mouse input data to your main application.
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// - When io.WantCaptureKeyboard is true, do not dispatch keyboard input data to your main application.
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// Generally you may always pass all inputs to dear imgui, and hide them from your application based on those two flags.
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// If you have multiple SDL events and some of them are not meant to be used by dear imgui, you may need to filter events based on their windowID field.
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func (c *Context) ProcessEvent(event sdl.Event) (bool, error) {
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switch io := imgui.CurrentIO(); event.GetType() {
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case sdl.MOUSEWHEEL:
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wheelEvent := event.(*sdl.MouseWheelEvent)
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var deltaX, deltaY float32
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if wheelEvent.X > 0 {
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deltaX++
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} else if wheelEvent.X < 0 {
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deltaX--
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}
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if wheelEvent.Y > 0 {
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deltaY++
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} else if wheelEvent.Y < 0 {
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deltaY--
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}
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return true, nil
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case sdl.MOUSEBUTTONDOWN:
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buttonEvent := event.(*sdl.MouseButtonEvent)
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switch buttonEvent.Button {
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case sdl.BUTTON_LEFT:
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c.buttonsDown[0] = true
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break
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case sdl.BUTTON_RIGHT:
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c.buttonsDown[1] = true
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break
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case sdl.BUTTON_MIDDLE:
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c.buttonsDown[2] = true
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break
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}
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return true, nil
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case sdl.TEXTINPUT:
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inputEvent := event.(*sdl.TextInputEvent)
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io.AddInputCharacters(string(inputEvent.Text[:]))
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return true, nil
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case sdl.KEYDOWN:
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keyEvent := event.(*sdl.KeyboardEvent)
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io.KeyPress(int(keyEvent.Keysym.Scancode))
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modState := int(sdl.GetModState())
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io.KeyShift(modState&sdl.KMOD_LSHIFT, modState&sdl.KMOD_RSHIFT)
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io.KeyCtrl(modState&sdl.KMOD_LCTRL, modState&sdl.KMOD_RCTRL)
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io.KeyAlt(modState&sdl.KMOD_LALT, modState&sdl.KMOD_RALT)
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case sdl.KEYUP:
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keyEvent := event.(*sdl.KeyboardEvent)
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io.KeyRelease(int(keyEvent.Keysym.Scancode))
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modState := int(sdl.GetModState())
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io.KeyShift(modState&sdl.KMOD_LSHIFT, modState&sdl.KMOD_RSHIFT)
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io.KeyCtrl(modState&sdl.KMOD_LCTRL, modState&sdl.KMOD_RCTRL)
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io.KeyAlt(modState&sdl.KMOD_LALT, modState&sdl.KMOD_RALT)
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return true, nil
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}
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return false, nil
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}
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// OpenGL2 Render function.
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// Note that this implementation is little overcomplicated because we are saving/setting up/restoring every OpenGL singleton explicitly, in order to be able to run within any OpenGL engine that doesn't do so.
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func (c *Context) EndFrame() error {
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imgui.Render()
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drawData := imgui.RenderedDrawData()
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drawData.ScaleClipRects(imgui.Vec2{
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X: float32(c.bufferSize.X) / float32(c.displaySize.X),
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Y: float32(c.bufferSize.Y) / float32(c.displaySize.Y),
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})
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// We are using the OpenGL fixed pipeline to make the example code simpler to read!
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// Setup render singleton: alpha-blending enabled, no face culling, no depth testing, scissor enabled, vertex/texcoord/color pointers, polygon fill.
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var lastTexture int32
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gl.GetIntegerv(gl.TEXTURE_BINDING_2D, &lastTexture)
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var lastPolygonMode [2]int32
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gl.GetIntegerv(gl.POLYGON_MODE, &lastPolygonMode[0])
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var lastViewport [4]int32
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gl.GetIntegerv(gl.VIEWPORT, &lastViewport[0])
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var lastScissorBox [4]int32
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gl.GetIntegerv(gl.SCISSOR_BOX, &lastScissorBox[0])
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gl.PushAttrib(gl.ENABLE_BIT | gl.COLOR_BUFFER_BIT | gl.TRANSFORM_BIT)
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gl.Enable(gl.BLEND)
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gl.BlendFunc(gl.SRC_ALPHA, gl.ONE_MINUS_SRC_ALPHA)
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gl.Disable(gl.CULL_FACE)
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gl.Disable(gl.DEPTH_TEST)
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gl.Disable(gl.LIGHTING)
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gl.Disable(gl.COLOR_MATERIAL)
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gl.Enable(gl.SCISSOR_TEST)
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gl.EnableClientState(gl.VERTEX_ARRAY)
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gl.EnableClientState(gl.TEXTURE_COORD_ARRAY)
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gl.EnableClientState(gl.COLOR_ARRAY)
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gl.Enable(gl.TEXTURE_2D)
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gl.PolygonMode(gl.FRONT_AND_BACK, gl.FILL)
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// You may want this if using this code in an OpenGL 3+ context where shaders may be bound
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// gl.UseProgram(0)
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// Setup viewport, orthographic projection matrix
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// Our visible imgui space lies from draw_data->DisplayPos (top left) to draw_data->DisplayPos+data_data->DisplaySize (bottom right). DisplayMin is typically (0,0) for single viewport apps.
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gl.Viewport(0, 0, int32(c.bufferSize.X), int32(c.bufferSize.Y))
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gl.MatrixMode(gl.PROJECTION)
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gl.PushMatrix()
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gl.LoadIdentity()
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gl.Ortho(0, float64(c.displaySize.X), float64(c.displaySize.Y), 0, -1, 1)
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gl.MatrixMode(gl.MODELVIEW)
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gl.PushMatrix()
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gl.LoadIdentity()
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vertexSize, vertexOffsetPos, vertexOffsetUv, vertexOffsetCol := imgui.VertexBufferLayout()
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indexSize := imgui.IndexBufferLayout()
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drawType := gl.UNSIGNED_SHORT
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if indexSize == 4 {
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drawType = gl.UNSIGNED_INT
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}
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// Render command lists
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for _, commandList := range drawData.CommandLists() {
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vertexBuffer, _ := commandList.VertexBuffer()
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indexBuffer, _ := commandList.IndexBuffer()
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indexBufferOffset := uintptr(indexBuffer)
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gl.VertexPointer(2, gl.FLOAT, int32(vertexSize), unsafe.Pointer(uintptr(vertexBuffer)+uintptr(vertexOffsetPos)))
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gl.TexCoordPointer(2, gl.FLOAT, int32(vertexSize), unsafe.Pointer(uintptr(vertexBuffer)+uintptr(vertexOffsetUv)))
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gl.ColorPointer(4, gl.UNSIGNED_BYTE, int32(vertexSize), unsafe.Pointer(uintptr(vertexBuffer)+uintptr(vertexOffsetCol)))
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for _, command := range commandList.Commands() {
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if command.HasUserCallback() {
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command.CallUserCallback(commandList)
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} else {
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clipRect := command.ClipRect()
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gl.Scissor(int32(clipRect.X), int32(c.bufferSize.Y)-int32(clipRect.W), int32(clipRect.Z-clipRect.X), int32(clipRect.W-clipRect.Y))
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gl.BindTexture(gl.TEXTURE_2D, uint32(command.TextureID()))
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gl.DrawElements(gl.TRIANGLES, int32(command.ElementCount()), uint32(drawType), unsafe.Pointer(indexBufferOffset))
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}
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indexBufferOffset += uintptr(command.ElementCount() * indexSize)
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}
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}
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// Restore modified state
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gl.DisableClientState(gl.COLOR_ARRAY)
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gl.DisableClientState(gl.TEXTURE_COORD_ARRAY)
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gl.DisableClientState(gl.VERTEX_ARRAY)
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gl.BindTexture(gl.TEXTURE_2D, uint32(lastTexture))
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gl.MatrixMode(gl.MODELVIEW)
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gl.PopMatrix()
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gl.MatrixMode(gl.PROJECTION)
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gl.PopMatrix()
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gl.PopAttrib()
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gl.PolygonMode(gl.FRONT, uint32(lastPolygonMode[0]))
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gl.PolygonMode(gl.BACK, uint32(lastPolygonMode[1]))
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gl.Viewport(lastViewport[0], lastViewport[1], lastViewport[2], lastViewport[3])
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gl.Scissor(lastScissorBox[0], lastScissorBox[1], lastScissorBox[2], lastScissorBox[3])
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return nil
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}
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