mirror of
https://github.com/italicsjenga/winit-sonoma-fix.git
synced 2025-01-11 13:31:29 +11:00
Switch WGL to ChoosePixelFormat
This commit is contained in:
parent
0b6418fabb
commit
95a60ee329
2
build.rs
2
build.rs
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@ -28,10 +28,12 @@ fn main() {
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"WGL_ARB_create_context".to_string(),
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"WGL_ARB_create_context_profile".to_string(),
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"WGL_ARB_create_context_robustness".to_string(),
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"WGL_ARB_context_flush_control".to_string(),
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"WGL_ARB_extensions_string".to_string(),
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"WGL_ARB_framebuffer_sRGB".to_string(),
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"WGL_ARB_multisample".to_string(),
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"WGL_ARB_pixel_format".to_string(),
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"WGL_ARB_pixel_format_float".to_string(),
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"WGL_EXT_create_context_es2_profile".to_string(),
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"WGL_EXT_extensions_string".to_string(),
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"WGL_EXT_framebuffer_sRGB".to_string(),
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@ -8,6 +8,7 @@ use GlRequest;
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use GlProfile;
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use PixelFormat;
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use PixelFormatRequirements;
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use ReleaseBehavior;
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use Robustness;
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use Api;
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@ -107,20 +108,16 @@ impl Context {
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// calling SetPixelFormat
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let pixel_format = {
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let formats = if extensions.split(' ').find(|&i| i == "WGL_ARB_pixel_format")
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let (id, f) = if extensions.split(' ').find(|&i| i == "WGL_ARB_pixel_format")
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.is_some()
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{
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let f = enumerate_arb_pixel_formats(&extra_functions, &extensions, hdc);
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if f.is_empty() {
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enumerate_native_pixel_formats(hdc)
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} else {
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f
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}
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try!(choose_arb_pixel_format(&extra_functions, &extensions, hdc, pf_reqs)
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.map_err(|_| CreationError::NoAvailablePixelFormat))
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} else {
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enumerate_native_pixel_formats(hdc)
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try!(choose_native_pixel_format(hdc, pf_reqs)
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.map_err(|_| CreationError::NoAvailablePixelFormat))
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};
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let (id, f) = try!(pf_reqs.choose_pixel_format(formats));
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try!(set_pixel_format(hdc, id));
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f
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};
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@ -349,117 +346,297 @@ unsafe fn create_context(extra: Option<(&gl::wgl_extra::Wgl, &PixelFormatRequire
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Ok(ContextWrapper(ctxt as winapi::HGLRC))
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}
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/// Enumerates the list of pixel formats without using WGL.
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/// Chooses a pixel formats without using WGL.
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///
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/// Gives less precise results than `enumerate_arb_pixel_formats`.
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unsafe fn enumerate_native_pixel_formats(hdc: winapi::HDC) -> Vec<(c_int, PixelFormat)> {
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let size_of_pxfmtdescr = mem::size_of::<winapi::PIXELFORMATDESCRIPTOR>() as u32;
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let num = gdi32::DescribePixelFormat(hdc, 1, size_of_pxfmtdescr, ptr::null_mut());
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unsafe fn choose_native_pixel_format(hdc: winapi::HDC, reqs: &PixelFormatRequirements)
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-> Result<(c_int, PixelFormat), ()>
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{
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// TODO: hardware acceleration is not handled
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let mut result = Vec::new();
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for index in (0 .. num) {
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let mut output: winapi::PIXELFORMATDESCRIPTOR = mem::zeroed();
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if gdi32::DescribePixelFormat(hdc, index, size_of_pxfmtdescr, &mut output) == 0 {
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continue;
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}
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if (output.dwFlags & winapi::PFD_DRAW_TO_WINDOW) == 0 {
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continue;
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}
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if (output.dwFlags & winapi::PFD_SUPPORT_OPENGL) == 0 {
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continue;
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}
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if output.iPixelType != winapi::PFD_TYPE_RGBA {
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continue;
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}
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result.push((index, PixelFormat {
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hardware_accelerated: (output.dwFlags & winapi::PFD_GENERIC_FORMAT) == 0,
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color_bits: output.cRedBits + output.cGreenBits + output.cBlueBits,
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alpha_bits: output.cAlphaBits,
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depth_bits: output.cDepthBits,
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stencil_bits: output.cStencilBits,
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stereoscopy: (output.dwFlags & winapi::PFD_STEREO) != 0,
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double_buffer: (output.dwFlags & winapi::PFD_DOUBLEBUFFER) != 0,
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multisampling: None,
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srgb: false,
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}));
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// handling non-supported stuff
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if reqs.float_color_buffer {
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return Err(());
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}
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result
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match reqs.multisampling {
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Some(0) => (),
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None => (),
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Some(_) => return Err(())
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};
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if reqs.stereoscopy {
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return Err(());
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}
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if reqs.srgb {
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return Err(());
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}
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if reqs.release_behavior != ReleaseBehavior::Flush {
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return Err(());
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}
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// building the descriptor to pass to ChoosePixelFormat
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let descriptor = winapi::PIXELFORMATDESCRIPTOR {
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nSize: mem::size_of::<winapi::PIXELFORMATDESCRIPTOR>() as u16,
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nVersion: 1,
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dwFlags: {
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let f1 = match reqs.double_buffer {
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None => winapi::PFD_DOUBLEBUFFER_DONTCARE,
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Some(true) => winapi::PFD_DOUBLEBUFFER,
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Some(false) => 0,
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};
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let f2 = if reqs.stereoscopy {
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winapi::PFD_STEREO
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} else {
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0
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};
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winapi::PFD_DRAW_TO_WINDOW | winapi::PFD_SUPPORT_OPENGL | f1 | f2
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},
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iPixelType: winapi::PFD_TYPE_RGBA,
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cColorBits: reqs.color_bits.unwrap_or(0),
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cRedBits: 0,
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cRedShift: 0,
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cGreenBits: 0,
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cGreenShift: 0,
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cBlueBits: 0,
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cBlueShift: 0,
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cAlphaBits: reqs.alpha_bits.unwrap_or(0),
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cAlphaShift: 0,
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cAccumBits: 0,
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cAccumRedBits: 0,
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cAccumGreenBits: 0,
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cAccumBlueBits: 0,
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cAccumAlphaBits: 0,
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cDepthBits: reqs.depth_bits.unwrap_or(0),
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cStencilBits: reqs.stencil_bits.unwrap_or(0),
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cAuxBuffers: 0,
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iLayerType: winapi::PFD_MAIN_PLANE,
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bReserved: 0,
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dwLayerMask: 0,
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dwVisibleMask: 0,
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dwDamageMask: 0,
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};
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// now querying
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let pf_id = gdi32::ChoosePixelFormat(hdc, &descriptor);
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if pf_id == 0 {
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return Err(());
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}
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// querying back the capabilities of what windows told us
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let mut output: winapi::PIXELFORMATDESCRIPTOR = mem::zeroed();
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if gdi32::DescribePixelFormat(hdc, pf_id, mem::size_of::<winapi::PIXELFORMATDESCRIPTOR>() as u32,
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&mut output) == 0
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{
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return Err(());
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}
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// windows may return us a non-conforming pixel format if none are supported, so we have to
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// check this
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if (output.dwFlags & winapi::PFD_DRAW_TO_WINDOW) == 0 {
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return Err(());
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}
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if (output.dwFlags & winapi::PFD_SUPPORT_OPENGL) == 0 {
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return Err(());
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}
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if output.iPixelType != winapi::PFD_TYPE_RGBA {
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return Err(());
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}
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let pf_desc = PixelFormat {
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hardware_accelerated: (output.dwFlags & winapi::PFD_GENERIC_FORMAT) == 0,
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color_bits: output.cRedBits + output.cGreenBits + output.cBlueBits,
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alpha_bits: output.cAlphaBits,
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depth_bits: output.cDepthBits,
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stencil_bits: output.cStencilBits,
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stereoscopy: (output.dwFlags & winapi::PFD_STEREO) != 0,
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double_buffer: (output.dwFlags & winapi::PFD_DOUBLEBUFFER) != 0,
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multisampling: None,
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srgb: false,
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};
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if pf_desc.alpha_bits < reqs.alpha_bits.unwrap_or(0) {
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return Err(());
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}
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if pf_desc.depth_bits < reqs.depth_bits.unwrap_or(0) {
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return Err(());
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}
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if pf_desc.stencil_bits < reqs.stencil_bits.unwrap_or(0) {
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return Err(());
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}
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if pf_desc.color_bits < reqs.color_bits.unwrap_or(0) {
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return Err(());
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}
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if let Some(req) = reqs.hardware_accelerated {
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if pf_desc.hardware_accelerated != req {
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return Err(());
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}
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}
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if let Some(req) = reqs.double_buffer {
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if pf_desc.double_buffer != req {
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return Err(());
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}
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}
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Ok((pf_id, pf_desc))
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}
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/// Enumerates the list of pixel formats by using extra WGL functions.
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///
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/// Gives more precise results than `enumerate_native_pixel_formats`.
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unsafe fn enumerate_arb_pixel_formats(extra: &gl::wgl_extra::Wgl, extensions: &str,
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hdc: winapi::HDC) -> Vec<(c_int, PixelFormat)>
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unsafe fn choose_arb_pixel_format(extra: &gl::wgl_extra::Wgl, extensions: &str,
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hdc: winapi::HDC, reqs: &PixelFormatRequirements)
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-> Result<(c_int, PixelFormat), ()>
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{
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let get_info = |index: u32, attrib: u32| {
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let descriptor = {
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let mut out: Vec<c_int> = Vec::with_capacity(37);
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out.push(gl::wgl_extra::DRAW_TO_WINDOW_ARB as c_int);
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out.push(1);
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out.push(gl::wgl_extra::SUPPORT_OPENGL_ARB as c_int);
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out.push(1);
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out.push(gl::wgl_extra::PIXEL_TYPE_ARB as c_int);
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if reqs.float_color_buffer {
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if extensions.split(' ').find(|&i| i == "WGL_ARB_pixel_format_float").is_some() {
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out.push(gl::wgl_extra::TYPE_RGBA_FLOAT_ARB as c_int);
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} else {
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return Err(());
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}
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} else {
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out.push(gl::wgl_extra::TYPE_RGBA_ARB as c_int);
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}
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if let Some(hardware_accelerated) = reqs.hardware_accelerated {
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out.push(gl::wgl_extra::ACCELERATION_ARB as c_int);
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out.push(if hardware_accelerated {
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gl::wgl_extra::FULL_ACCELERATION_ARB as c_int
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} else {
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gl::wgl_extra::NO_ACCELERATION_ARB as c_int
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});
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}
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if let Some(color) = reqs.color_bits {
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out.push(gl::wgl_extra::COLOR_BITS_ARB as c_int);
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out.push(color as c_int);
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}
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if let Some(alpha) = reqs.alpha_bits {
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out.push(gl::wgl_extra::ALPHA_BITS_ARB as c_int);
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out.push(alpha as c_int);
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}
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if let Some(depth) = reqs.depth_bits {
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out.push(gl::wgl_extra::DEPTH_BITS_ARB as c_int);
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out.push(depth as c_int);
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}
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if let Some(stencil) = reqs.stencil_bits {
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out.push(gl::wgl_extra::STENCIL_BITS_ARB as c_int);
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out.push(stencil as c_int);
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}
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if let Some(double_buffer) = reqs.double_buffer {
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out.push(gl::wgl_extra::DOUBLE_BUFFER_ARB as c_int);
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out.push(if double_buffer { 1 } else { 0 });
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}
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if let Some(multisampling) = reqs.multisampling {
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if extensions.split(' ').find(|&i| i == "WGL_ARB_multisample").is_some() {
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out.push(gl::wgl_extra::SAMPLE_BUFFERS_ARB as c_int);
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out.push(if multisampling == 0 { 0 } else { 1 });
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out.push(gl::wgl_extra::SAMPLES_ARB as c_int);
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out.push(multisampling as c_int);
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} else {
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return Err(());
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}
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}
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out.push(gl::wgl_extra::STEREO_ARB as c_int);
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out.push(if reqs.stereoscopy { 1 } else { 0 });
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if reqs.srgb {
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if extensions.split(' ').find(|&i| i == "WGL_ARB_framebuffer_sRGB").is_some() {
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out.push(gl::wgl_extra::FRAMEBUFFER_SRGB_CAPABLE_ARB as c_int);
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out.push(1);
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} else if extensions.split(' ').find(|&i| i == "WGL_EXT_framebuffer_sRGB").is_some() {
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out.push(gl::wgl_extra::FRAMEBUFFER_SRGB_CAPABLE_EXT as c_int);
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out.push(1);
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} else {
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return Err(());
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}
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}
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match reqs.release_behavior {
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ReleaseBehavior::Flush => (),
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ReleaseBehavior::None => {
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if extensions.split(' ').find(|&i| i == "WGL_ARB_context_flush_control").is_some() {
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out.push(gl::wgl_extra::CONTEXT_RELEASE_BEHAVIOR_ARB as c_int);
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out.push(gl::wgl_extra::CONTEXT_RELEASE_BEHAVIOR_NONE_ARB as c_int);
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}
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},
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}
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out.push(0);
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out
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};
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let mut format_id = mem::uninitialized();
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let mut num_formats = mem::uninitialized();
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if extra.ChoosePixelFormatARB(hdc as *const _, descriptor.as_ptr(), ptr::null(), 1,
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&mut format_id, &mut num_formats) == 0
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{
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return Err(());
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}
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if num_formats == 0 {
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return Err(());
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}
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let get_info = |attrib: u32| {
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let mut value = mem::uninitialized();
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extra.GetPixelFormatAttribivARB(hdc as *const _, index as c_int,
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extra.GetPixelFormatAttribivARB(hdc as *const _, format_id as c_int,
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0, 1, [attrib as c_int].as_ptr(),
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&mut value);
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value as u32
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};
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// getting the number of formats
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// the `1` is ignored
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let num = get_info(1, gl::wgl_extra::NUMBER_PIXEL_FORMATS_ARB);
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let mut result = Vec::new();
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for index in (0 .. num) {
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if get_info(index, gl::wgl_extra::DRAW_TO_WINDOW_ARB) == 0 {
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continue;
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}
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if get_info(index, gl::wgl_extra::SUPPORT_OPENGL_ARB) == 0 {
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continue;
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}
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if get_info(index, gl::wgl_extra::ACCELERATION_ARB) == gl::wgl_extra::NO_ACCELERATION_ARB {
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continue;
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}
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if get_info(index, gl::wgl_extra::PIXEL_TYPE_ARB) != gl::wgl_extra::TYPE_RGBA_ARB {
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continue;
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}
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result.push((index as c_int, PixelFormat {
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hardware_accelerated: true,
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color_bits: get_info(index, gl::wgl_extra::RED_BITS_ARB) as u8 +
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get_info(index, gl::wgl_extra::GREEN_BITS_ARB) as u8 +
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get_info(index, gl::wgl_extra::BLUE_BITS_ARB) as u8,
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alpha_bits: get_info(index, gl::wgl_extra::ALPHA_BITS_ARB) as u8,
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depth_bits: get_info(index, gl::wgl_extra::DEPTH_BITS_ARB) as u8,
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stencil_bits: get_info(index, gl::wgl_extra::STENCIL_BITS_ARB) as u8,
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stereoscopy: get_info(index, gl::wgl_extra::STEREO_ARB) != 0,
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double_buffer: get_info(index, gl::wgl_extra::DOUBLE_BUFFER_ARB) != 0,
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multisampling: {
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if extensions.split(' ').find(|&i| i == "WGL_ARB_multisample").is_some() {
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match get_info(index, gl::wgl_extra::SAMPLES_ARB) {
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0 => None,
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a => Some(a as u16),
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}
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} else {
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None
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let pf_desc = PixelFormat {
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hardware_accelerated: get_info(gl::wgl_extra::ACCELERATION_ARB) !=
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gl::wgl_extra::NO_ACCELERATION_ARB,
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color_bits: get_info(gl::wgl_extra::RED_BITS_ARB) as u8 +
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get_info(gl::wgl_extra::GREEN_BITS_ARB) as u8 +
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get_info(gl::wgl_extra::BLUE_BITS_ARB) as u8,
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alpha_bits: get_info(gl::wgl_extra::ALPHA_BITS_ARB) as u8,
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depth_bits: get_info(gl::wgl_extra::DEPTH_BITS_ARB) as u8,
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stencil_bits: get_info(gl::wgl_extra::STENCIL_BITS_ARB) as u8,
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stereoscopy: get_info(gl::wgl_extra::STEREO_ARB) != 0,
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double_buffer: get_info(gl::wgl_extra::DOUBLE_BUFFER_ARB) != 0,
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multisampling: {
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if extensions.split(' ').find(|&i| i == "WGL_ARB_multisample").is_some() {
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match get_info(gl::wgl_extra::SAMPLES_ARB) {
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0 => None,
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a => Some(a as u16),
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}
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},
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srgb: if extensions.split(' ').find(|&i| i == "WGL_ARB_framebuffer_sRGB").is_some() {
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get_info(index, gl::wgl_extra::FRAMEBUFFER_SRGB_CAPABLE_ARB) != 0
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} else if extensions.split(' ').find(|&i| i == "WGL_EXT_framebuffer_sRGB").is_some() {
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get_info(index, gl::wgl_extra::FRAMEBUFFER_SRGB_CAPABLE_EXT) != 0
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} else {
|
||||
false
|
||||
},
|
||||
}));
|
||||
}
|
||||
None
|
||||
}
|
||||
},
|
||||
srgb: if extensions.split(' ').find(|&i| i == "WGL_ARB_framebuffer_sRGB").is_some() {
|
||||
get_info(gl::wgl_extra::FRAMEBUFFER_SRGB_CAPABLE_ARB) != 0
|
||||
} else if extensions.split(' ').find(|&i| i == "WGL_EXT_framebuffer_sRGB").is_some() {
|
||||
get_info(gl::wgl_extra::FRAMEBUFFER_SRGB_CAPABLE_EXT) != 0
|
||||
} else {
|
||||
false
|
||||
},
|
||||
};
|
||||
|
||||
result
|
||||
Ok((format_id, pf_desc))
|
||||
}
|
||||
|
||||
/// Calls `SetPixelFormat` on a window.
|
||||
|
@ -550,8 +727,7 @@ unsafe fn load_extra_functions(window: winapi::HWND) -> Result<gl::wgl_extra::Wg
|
|||
|
||||
// getting the pixel format that we will use and setting it
|
||||
{
|
||||
let formats = enumerate_native_pixel_formats(dummy_window.1);
|
||||
let id = try!(choose_dummy_pixel_format(formats.into_iter()));
|
||||
let id = try!(choose_dummy_pixel_format(dummy_window.1));
|
||||
try!(set_pixel_format(dummy_window.1, id));
|
||||
}
|
||||
|
||||
|
@ -568,22 +744,44 @@ unsafe fn load_extra_functions(window: winapi::HWND) -> Result<gl::wgl_extra::Wg
|
|||
}))
|
||||
}
|
||||
|
||||
/// Given a list of pixel formats, this function chooses one that is likely to be provided by
|
||||
/// This function chooses a pixel format that is likely to be provided by
|
||||
/// the main video driver of the system.
|
||||
fn choose_dummy_pixel_format<I>(iter: I) -> Result<c_int, CreationError>
|
||||
where I: Iterator<Item=(c_int, PixelFormat)>
|
||||
{
|
||||
let mut backup_id = None;
|
||||
fn choose_dummy_pixel_format(hdc: winapi::HDC) -> Result<c_int, CreationError> {
|
||||
// building the descriptor to pass to ChoosePixelFormat
|
||||
let descriptor = winapi::PIXELFORMATDESCRIPTOR {
|
||||
nSize: mem::size_of::<winapi::PIXELFORMATDESCRIPTOR>() as u16,
|
||||
nVersion: 1,
|
||||
dwFlags: winapi::PFD_DRAW_TO_WINDOW | winapi::PFD_SUPPORT_OPENGL | winapi::PFD_DOUBLEBUFFER,
|
||||
iPixelType: winapi::PFD_TYPE_RGBA,
|
||||
cColorBits: 24,
|
||||
cRedBits: 0,
|
||||
cRedShift: 0,
|
||||
cGreenBits: 0,
|
||||
cGreenShift: 0,
|
||||
cBlueBits: 0,
|
||||
cBlueShift: 0,
|
||||
cAlphaBits: 8,
|
||||
cAlphaShift: 0,
|
||||
cAccumBits: 0,
|
||||
cAccumRedBits: 0,
|
||||
cAccumGreenBits: 0,
|
||||
cAccumBlueBits: 0,
|
||||
cAccumAlphaBits: 0,
|
||||
cDepthBits: 24,
|
||||
cStencilBits: 8,
|
||||
cAuxBuffers: 0,
|
||||
iLayerType: winapi::PFD_MAIN_PLANE,
|
||||
bReserved: 0,
|
||||
dwLayerMask: 0,
|
||||
dwVisibleMask: 0,
|
||||
dwDamageMask: 0,
|
||||
};
|
||||
|
||||
for (id, format) in iter {
|
||||
if backup_id.is_none() {
|
||||
backup_id = Some(id);
|
||||
}
|
||||
|
||||
if format.hardware_accelerated {
|
||||
return Ok(id);
|
||||
}
|
||||
// now querying
|
||||
let pf_id = unsafe { gdi32::ChoosePixelFormat(hdc, &descriptor) };
|
||||
if pf_id == 0 {
|
||||
return Err(CreationError::OsError("No available pixel format".to_owned()));
|
||||
}
|
||||
|
||||
backup_id.ok_or(CreationError::OsError("No available pixel format".to_string()))
|
||||
Ok(pf_id)
|
||||
}
|
||||
|
|
|
@ -399,6 +399,7 @@ pub struct PixelFormat {
|
|||
}
|
||||
|
||||
/// Describes how the backend should choose a pixel format.
|
||||
// TODO: swap method? (swap, copy)
|
||||
#[derive(Clone, Debug)]
|
||||
pub struct PixelFormatRequirements {
|
||||
/// If true, only hardware-accelerated formats will be conisdered. If false, only software
|
||||
|
|
Loading…
Reference in a new issue