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validationEGL.cpp
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6999 lines (6128 loc) · 236 KB
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//
// Copyright 2016 The ANGLE Project Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
//
// validationEGL.cpp: Validation functions for generic EGL entry point parameters
#include "libANGLE/validationEGL_autogen.h"
#include "common/utilities.h"
#include "libANGLE/Config.h"
#include "libANGLE/Context.h"
#include "libANGLE/Device.h"
#include "libANGLE/Display.h"
#include "libANGLE/EGLSync.h"
#include "libANGLE/Image.h"
#include "libANGLE/Stream.h"
#include "libANGLE/Surface.h"
#include "libANGLE/Texture.h"
#include "libANGLE/Thread.h"
#include "libANGLE/formatutils.h"
#include "libANGLE/renderer/DisplayImpl.h"
#include <EGL/eglext.h>
namespace egl
{
namespace
{
size_t GetMaximumMipLevel(const gl::Context *context, gl::TextureType type)
{
const gl::Caps &caps = context->getCaps();
int maxDimension = 0;
switch (type)
{
case gl::TextureType::_2D:
case gl::TextureType::_2DArray:
case gl::TextureType::_2DMultisample:
maxDimension = caps.max2DTextureSize;
break;
case gl::TextureType::Rectangle:
maxDimension = caps.maxRectangleTextureSize;
break;
case gl::TextureType::CubeMap:
maxDimension = caps.maxCubeMapTextureSize;
break;
case gl::TextureType::_3D:
maxDimension = caps.max3DTextureSize;
break;
default:
UNREACHABLE();
}
return gl::log2(maxDimension);
}
bool TextureHasNonZeroMipLevelsSpecified(const gl::Context *context, const gl::Texture *texture)
{
size_t maxMip = GetMaximumMipLevel(context, texture->getType());
for (size_t level = 1; level < maxMip; level++)
{
if (texture->getType() == gl::TextureType::CubeMap)
{
for (gl::TextureTarget face : gl::AllCubeFaceTextureTargets())
{
if (texture->getFormat(face, level).valid())
{
return true;
}
}
}
else
{
if (texture->getFormat(gl::NonCubeTextureTypeToTarget(texture->getType()), level)
.valid())
{
return true;
}
}
}
return false;
}
bool CubeTextureHasUnspecifiedLevel0Face(const gl::Texture *texture)
{
ASSERT(texture->getType() == gl::TextureType::CubeMap);
for (gl::TextureTarget face : gl::AllCubeFaceTextureTargets())
{
if (!texture->getFormat(face, 0).valid())
{
return true;
}
}
return false;
}
bool ValidateStreamAttribute(const ValidationContext *val,
const EGLAttrib attribute,
const EGLAttrib value,
const DisplayExtensions &extensions)
{
switch (attribute)
{
case EGL_STREAM_STATE_KHR:
case EGL_PRODUCER_FRAME_KHR:
case EGL_CONSUMER_FRAME_KHR:
val->setError(EGL_BAD_ACCESS, "Attempt to initialize readonly parameter");
return false;
case EGL_CONSUMER_LATENCY_USEC_KHR:
// Technically not in spec but a latency < 0 makes no sense so we check it
if (value < 0)
{
val->setError(EGL_BAD_PARAMETER, "Latency must be positive");
return false;
}
break;
case EGL_CONSUMER_ACQUIRE_TIMEOUT_USEC_KHR:
if (!extensions.streamConsumerGLTexture)
{
val->setError(EGL_BAD_ATTRIBUTE, "Consumer GL extension not enabled");
return false;
}
// Again not in spec but it should be positive anyways
if (value < 0)
{
val->setError(EGL_BAD_PARAMETER, "Timeout must be positive");
return false;
}
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "Invalid stream attribute");
return false;
}
return true;
}
bool ValidateCreateImageMipLevelCommon(const ValidationContext *val,
const gl::Context *context,
const gl::Texture *texture,
EGLAttrib level)
{
// Note that the spec EGL_create_image spec does not explicitly specify an error
// when the level is outside the base/max level range, but it does mention that the
// level "must be a part of the complete texture object <buffer>". It can be argued
// that out-of-range levels are not a part of the complete texture.
const GLuint effectiveBaseLevel = texture->getTextureState().getEffectiveBaseLevel();
if (level > 0 &&
(!texture->isMipmapComplete() || static_cast<GLuint>(level) < effectiveBaseLevel ||
static_cast<GLuint>(level) > texture->getTextureState().getMipmapMaxLevel()))
{
val->setError(EGL_BAD_PARAMETER, "texture must be complete if level is non-zero.");
return false;
}
if (level == 0 && !texture->isMipmapComplete() &&
TextureHasNonZeroMipLevelsSpecified(context, texture))
{
val->setError(EGL_BAD_PARAMETER,
"if level is zero and the texture is incomplete, it must "
"have no mip levels specified except zero.");
return false;
}
return true;
}
bool ValidateConfigAttribute(const ValidationContext *val,
const Display *display,
EGLAttrib attribute)
{
switch (attribute)
{
case EGL_BUFFER_SIZE:
case EGL_ALPHA_SIZE:
case EGL_BLUE_SIZE:
case EGL_GREEN_SIZE:
case EGL_RED_SIZE:
case EGL_DEPTH_SIZE:
case EGL_STENCIL_SIZE:
case EGL_CONFIG_CAVEAT:
case EGL_CONFIG_ID:
case EGL_LEVEL:
case EGL_NATIVE_RENDERABLE:
case EGL_NATIVE_VISUAL_ID:
case EGL_NATIVE_VISUAL_TYPE:
case EGL_SAMPLES:
case EGL_SAMPLE_BUFFERS:
case EGL_SURFACE_TYPE:
case EGL_TRANSPARENT_TYPE:
case EGL_TRANSPARENT_BLUE_VALUE:
case EGL_TRANSPARENT_GREEN_VALUE:
case EGL_TRANSPARENT_RED_VALUE:
case EGL_BIND_TO_TEXTURE_RGB:
case EGL_BIND_TO_TEXTURE_RGBA:
case EGL_MIN_SWAP_INTERVAL:
case EGL_MAX_SWAP_INTERVAL:
case EGL_LUMINANCE_SIZE:
case EGL_ALPHA_MASK_SIZE:
case EGL_COLOR_BUFFER_TYPE:
case EGL_RENDERABLE_TYPE:
case EGL_MATCH_NATIVE_PIXMAP:
case EGL_CONFORMANT:
case EGL_MAX_PBUFFER_WIDTH:
case EGL_MAX_PBUFFER_HEIGHT:
case EGL_MAX_PBUFFER_PIXELS:
break;
case EGL_OPTIMAL_SURFACE_ORIENTATION_ANGLE:
if (!display->getExtensions().surfaceOrientation)
{
val->setError(EGL_BAD_ATTRIBUTE, "EGL_ANGLE_surface_orientation is not enabled.");
return false;
}
break;
case EGL_COLOR_COMPONENT_TYPE_EXT:
if (!display->getExtensions().pixelFormatFloat)
{
val->setError(EGL_BAD_ATTRIBUTE, "EGL_EXT_pixel_format_float is not enabled.");
return false;
}
break;
case EGL_RECORDABLE_ANDROID:
if (!display->getExtensions().recordable)
{
val->setError(EGL_BAD_ATTRIBUTE, "EGL_ANDROID_recordable is not enabled.");
return false;
}
break;
case EGL_FRAMEBUFFER_TARGET_ANDROID:
if (!display->getExtensions().framebufferTargetANDROID)
{
val->setError(EGL_BAD_ATTRIBUTE, "EGL_ANDROID_framebuffer_target is not enabled.");
return false;
}
break;
case EGL_BIND_TO_TEXTURE_TARGET_ANGLE:
if (!display->getExtensions().iosurfaceClientBuffer)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_iosurface_client_buffer is not enabled.");
return false;
}
break;
case EGL_Y_INVERTED_NOK:
if (!display->getExtensions().textureFromPixmapNOK)
{
val->setError(EGL_BAD_ATTRIBUTE, "EGL_NOK_texture_from_pixmap is not enabled.");
return false;
}
break;
case EGL_MATCH_FORMAT_KHR:
if (!display->getExtensions().lockSurface3KHR)
{
val->setError(EGL_BAD_ATTRIBUTE, "EGL_KHR_lock_surface3 is not enabled.");
return false;
}
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "Unknown attribute: 0x%04" PRIxPTR "X", attribute);
return false;
}
return true;
}
bool ValidateConfigAttributeValue(const ValidationContext *val,
const Display *display,
EGLAttrib attribute,
EGLAttrib value)
{
switch (attribute)
{
case EGL_BIND_TO_TEXTURE_RGB:
case EGL_BIND_TO_TEXTURE_RGBA:
switch (value)
{
case EGL_DONT_CARE:
case EGL_TRUE:
case EGL_FALSE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "EGL_bind_to_texture invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
case EGL_COLOR_BUFFER_TYPE:
switch (value)
{
case EGL_RGB_BUFFER:
case EGL_LUMINANCE_BUFFER:
// EGL_DONT_CARE doesn't match the spec, but does match dEQP usage
case EGL_DONT_CARE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_color_buffer_type invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
case EGL_NATIVE_RENDERABLE:
switch (value)
{
case EGL_DONT_CARE:
case EGL_TRUE:
case EGL_FALSE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_native_renderable invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
case EGL_TRANSPARENT_TYPE:
switch (value)
{
case EGL_NONE:
case EGL_TRANSPARENT_RGB:
// EGL_DONT_CARE doesn't match the spec, but does match dEQP usage
case EGL_DONT_CARE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "EGL_transparent_type invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
case EGL_RECORDABLE_ANDROID:
switch (value)
{
case EGL_TRUE:
case EGL_FALSE:
case EGL_DONT_CARE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_RECORDABLE_ANDROID invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
case EGL_COLOR_COMPONENT_TYPE_EXT:
switch (value)
{
case EGL_COLOR_COMPONENT_TYPE_FIXED_EXT:
case EGL_COLOR_COMPONENT_TYPE_FLOAT_EXT:
case EGL_DONT_CARE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_COLOR_COMPONENT_TYPE_EXT invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
case EGL_MATCH_FORMAT_KHR:
switch (value)
{
case EGL_FORMAT_RGB_565_KHR:
case EGL_FORMAT_RGBA_8888_KHR:
case EGL_FORMAT_RGB_565_EXACT_KHR:
case EGL_FORMAT_RGBA_8888_EXACT_KHR:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_KHR_lock_surface3 invalid attribute: 0x%X",
static_cast<uint32_t>(value));
return false;
}
break;
default:
break;
}
return true;
}
bool ValidateConfigAttributes(const ValidationContext *val,
const Display *display,
const AttributeMap &attributes)
{
ANGLE_VALIDATION_TRY(attributes.validate(val, display, ValidateConfigAttribute));
for (const auto &attrib : attributes)
{
EGLAttrib pname = attrib.first;
EGLAttrib value = attrib.second;
ANGLE_VALIDATION_TRY(ValidateConfigAttributeValue(val, display, pname, value));
}
return true;
}
bool ValidateColorspaceAttribute(const ValidationContext *val,
const DisplayExtensions &displayExtensions,
EGLAttrib colorSpace)
{
switch (colorSpace)
{
case EGL_GL_COLORSPACE_SRGB:
break;
case EGL_GL_COLORSPACE_LINEAR:
break;
case EGL_GL_COLORSPACE_DISPLAY_P3_LINEAR_EXT:
if (!displayExtensions.glColorspaceDisplayP3Linear &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EXT_gl_colorspace_display_p3_linear is not available.");
return false;
}
break;
case EGL_GL_COLORSPACE_DISPLAY_P3_EXT:
if (!displayExtensions.glColorspaceDisplayP3 &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE, "EXT_gl_colorspace_display_p3 is not available.");
return false;
}
break;
case EGL_GL_COLORSPACE_DISPLAY_P3_PASSTHROUGH_EXT:
if (!displayExtensions.glColorspaceDisplayP3Passthrough &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_EXT_gl_colorspace_display_p3_passthrough is not available.");
return false;
}
break;
case EGL_GL_COLORSPACE_SCRGB_EXT:
if (!displayExtensions.glColorspaceScrgb &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE, "EXT_gl_colorspace_scrgb is not available.");
return false;
}
break;
case EGL_GL_COLORSPACE_SCRGB_LINEAR_EXT:
if (!displayExtensions.glColorspaceScrgbLinear &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EXT_gl_colorspace_scrgb_linear is not available.");
return false;
}
break;
case EGL_GL_COLORSPACE_BT2020_LINEAR_EXT:
if (!displayExtensions.glColorspaceBt2020Linear &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EXT_gl_colorspace_bt2020_linear is not available");
return false;
}
break;
case EGL_GL_COLORSPACE_BT2020_PQ_EXT:
if (!displayExtensions.glColorspaceBt2020Pq &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE, "EXT_gl_colorspace_bt2020_pq is not available");
return false;
}
break;
case EGL_GL_COLORSPACE_BT2020_HLG_EXT:
if (!displayExtensions.glColorspaceBt2020Hlg &&
!displayExtensions.eglColorspaceAttributePassthroughANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE, "EXT_gl_colorspace_bt2020_hlg is not available");
return false;
}
break;
default:
val->setError(EGL_BAD_ATTRIBUTE);
return false;
}
return true;
}
bool ValidatePlatformType(const ValidationContext *val,
const ClientExtensions &clientExtensions,
EGLAttrib platformType)
{
switch (platformType)
{
case EGL_PLATFORM_ANGLE_TYPE_DEFAULT_ANGLE:
break;
case EGL_PLATFORM_ANGLE_TYPE_D3D9_ANGLE:
case EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE:
if (!clientExtensions.platformANGLED3D)
{
val->setError(EGL_BAD_ATTRIBUTE, "Direct3D platform is unsupported.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_TYPE_OPENGL_ANGLE:
case EGL_PLATFORM_ANGLE_TYPE_OPENGLES_ANGLE:
if (!clientExtensions.platformANGLEOpenGL)
{
val->setError(EGL_BAD_ATTRIBUTE, "OpenGL platform is unsupported.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_TYPE_NULL_ANGLE:
if (!clientExtensions.platformANGLENULL)
{
val->setError(EGL_BAD_ATTRIBUTE,
"Display type EGL_PLATFORM_ANGLE_TYPE_NULL_ANGLE "
"requires EGL_ANGLE_platform_angle_null.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_TYPE_WEBGPU_ANGLE:
if (!clientExtensions.platformANGLEWebgpu)
{
val->setError(EGL_BAD_ATTRIBUTE, "WebGPU platform is unsupported.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_TYPE_VULKAN_ANGLE:
if (!clientExtensions.platformANGLEVulkan)
{
val->setError(EGL_BAD_ATTRIBUTE, "Vulkan platform is unsupported.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_TYPE_METAL_ANGLE:
if (!clientExtensions.platformANGLEMetal)
{
val->setError(EGL_BAD_ATTRIBUTE, "Metal platform is unsupported.");
return false;
}
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "Unknown platform type.");
return false;
}
return true;
}
bool ValidateGetPlatformDisplayCommon(const ValidationContext *val,
EGLenum platform,
const void *native_display,
const AttributeMap &attribMap)
{
const ClientExtensions &clientExtensions = Display::GetClientExtensions();
switch (platform)
{
case EGL_PLATFORM_ANGLE_ANGLE:
if (!clientExtensions.platformANGLE)
{
val->setError(EGL_BAD_PARAMETER, "Platform ANGLE extension is not active");
return false;
}
break;
case EGL_PLATFORM_DEVICE_EXT:
if (!clientExtensions.platformDevice)
{
val->setError(EGL_BAD_PARAMETER, "Platform Device extension is not active");
return false;
}
break;
case EGL_PLATFORM_GBM_KHR:
if (!clientExtensions.platformGbmKHR)
{
val->setError(EGL_BAD_PARAMETER, "Platform GBM extension is not active");
return false;
}
break;
case EGL_PLATFORM_WAYLAND_EXT:
if (!clientExtensions.platformWaylandEXT)
{
val->setError(EGL_BAD_PARAMETER, "Platform Wayland extension is not active");
return false;
}
break;
case EGL_PLATFORM_SURFACELESS_MESA:
if (!clientExtensions.platformSurfacelessMESA)
{
val->setError(EGL_BAD_PARAMETER, "Platform Surfaceless extension is not active");
return false;
}
break;
default:
val->setError(EGL_BAD_CONFIG, "Bad platform type.");
return false;
}
attribMap.initializeWithoutValidation();
if (platform != EGL_PLATFORM_DEVICE_EXT)
{
EGLAttrib platformType = EGL_PLATFORM_ANGLE_TYPE_DEFAULT_ANGLE;
bool enableAutoTrimSpecified = false;
bool enableD3D11on12 = false;
bool presentPathSpecified = false;
bool luidSpecified = false;
bool deviceIdSpecified = false;
Optional<EGLAttrib> majorVersion;
Optional<EGLAttrib> minorVersion;
Optional<EGLAttrib> deviceType;
Optional<EGLAttrib> eglHandle;
for (const auto &curAttrib : attribMap)
{
const EGLAttrib value = curAttrib.second;
switch (curAttrib.first)
{
case EGL_PLATFORM_ANGLE_TYPE_ANGLE:
{
ANGLE_VALIDATION_TRY(ValidatePlatformType(val, clientExtensions, value));
platformType = value;
break;
}
case EGL_PLATFORM_ANGLE_MAX_VERSION_MAJOR_ANGLE:
if (value != EGL_DONT_CARE)
{
majorVersion = value;
}
break;
case EGL_PLATFORM_ANGLE_MAX_VERSION_MINOR_ANGLE:
if (value != EGL_DONT_CARE)
{
minorVersion = value;
}
break;
case EGL_PLATFORM_ANGLE_ENABLE_AUTOMATIC_TRIM_ANGLE:
switch (value)
{
case EGL_TRUE:
case EGL_FALSE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "Invalid automatic trim attribute");
return false;
}
enableAutoTrimSpecified = true;
break;
case EGL_PLATFORM_ANGLE_D3D11ON12_ANGLE:
if (!clientExtensions.platformANGLED3D ||
!clientExtensions.platformANGLED3D11ON12)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_D3D11ON12_ANGLE extension not active.");
return false;
}
switch (value)
{
case EGL_TRUE:
case EGL_FALSE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE, "Invalid D3D11on12 attribute");
return false;
}
enableD3D11on12 = true;
break;
case EGL_EXPERIMENTAL_PRESENT_PATH_ANGLE:
if (!clientExtensions.experimentalPresentPath)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_experimental_present_path extension not active");
return false;
}
switch (value)
{
case EGL_EXPERIMENTAL_PRESENT_PATH_FAST_ANGLE:
case EGL_EXPERIMENTAL_PRESENT_PATH_COPY_ANGLE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"Invalid value for EGL_EXPERIMENTAL_PRESENT_PATH_ANGLE");
return false;
}
presentPathSpecified = true;
break;
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_ANGLE:
switch (value)
{
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_HARDWARE_ANGLE:
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_NULL_ANGLE:
break;
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_WARP_ANGLE:
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_REFERENCE_ANGLE:
if (!clientExtensions.platformANGLED3D)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_platform_angle_d3d is not supported");
return false;
}
break;
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_EGL_ANGLE:
if (!clientExtensions.platformANGLEDeviceTypeEGLANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_platform_angle_device_type_"
"egl_angle is not supported");
return false;
}
break;
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_SWIFTSHADER_ANGLE:
if (!clientExtensions.platformANGLEDeviceTypeSwiftShader)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_platform_angle_device_type_"
"swiftshader is not supported");
return false;
}
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"Invalid value for "
"EGL_PLATFORM_ANGLE_DEVICE_TYPE_ANGLE "
"attrib");
return false;
}
deviceType = value;
break;
case EGL_PLATFORM_ANGLE_DEBUG_LAYERS_ENABLED_ANGLE:
if (!clientExtensions.platformANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_platform_angle extension not active");
return false;
}
if (value != EGL_TRUE && value != EGL_FALSE && value != EGL_DONT_CARE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_DEBUG_LAYERS_ENABLED_ANGLE "
"must be EGL_TRUE, EGL_FALSE, or "
"EGL_DONT_CARE.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_EGL_HANDLE_ANGLE:
if (value != EGL_DONT_CARE)
{
eglHandle = value;
}
break;
case EGL_PLATFORM_ANGLE_D3D_LUID_HIGH_ANGLE:
case EGL_PLATFORM_ANGLE_D3D_LUID_LOW_ANGLE:
luidSpecified = true;
break;
case EGL_PLATFORM_ANGLE_DEVICE_CONTEXT_VOLATILE_EAGL_ANGLE:
// The property does not have an effect if it's not active, so do not check
// for non-support.
switch (value)
{
case EGL_FALSE:
case EGL_TRUE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"Invalid value for "
"EGL_PLATFORM_ANGLE_DEVICE_CONTEXT_VOLATILE_"
"EAGL_ANGLE attrib");
return false;
}
break;
case EGL_PLATFORM_ANGLE_DEVICE_CONTEXT_VOLATILE_CGL_ANGLE:
// The property does not have an effect if it's not active, so do not check
// for non-support.
switch (value)
{
case EGL_FALSE:
case EGL_TRUE:
break;
default:
val->setError(EGL_BAD_ATTRIBUTE,
"Invalid value for "
"EGL_PLATFORM_ANGLE_DEVICE_CONTEXT_VOLATILE_"
"CGL_ANGLE attrib");
return false;
}
break;
case EGL_PLATFORM_ANGLE_DEVICE_ID_HIGH_ANGLE:
case EGL_PLATFORM_ANGLE_DEVICE_ID_LOW_ANGLE:
case EGL_PLATFORM_ANGLE_DISPLAY_KEY_ANGLE:
if (!clientExtensions.platformANGLEDeviceId)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_ANGLE_platform_angle_device_id is not supported");
return false;
}
deviceIdSpecified = true;
break;
default:
break;
}
}
if (!majorVersion.valid() && minorVersion.valid())
{
val->setError(EGL_BAD_ATTRIBUTE,
"Must specify major version if you specify a minor version.");
return false;
}
if (deviceType == EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_WARP_ANGLE &&
platformType != EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_DEVICE_TYPE_WARP_ANGLE requires a "
"device type of EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE.");
return false;
}
if (enableAutoTrimSpecified && platformType != EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_ENABLE_AUTOMATIC_TRIM_ANGLE "
"requires a device type of "
"EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE.");
return false;
}
if (enableD3D11on12)
{
if (platformType != EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_D3D11ON12_ANGLE "
"requires a platform type of "
"EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE.");
return false;
}
if (deviceType.valid() && deviceType != EGL_PLATFORM_ANGLE_DEVICE_TYPE_HARDWARE_ANGLE &&
deviceType != EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_WARP_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_D3D11ON12_ANGLE requires a device "
"type of EGL_PLATFORM_ANGLE_DEVICE_TYPE_HARDWARE_ANGLE "
"or EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_WARP_ANGLE");
return false;
}
}
if (presentPathSpecified && platformType != EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_EXPERIMENTAL_PRESENT_PATH_ANGLE requires a "
"device type of EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE.");
return false;
}
if (luidSpecified)
{
if (platformType != EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_D3D_LUID_HIGH_ANGLE and "
"EGL_PLATFORM_ANGLE_D3D_LUID_LOW_ANGLE "
"require a platform type of "
"EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE.");
return false;
}
if (attribMap.get(EGL_PLATFORM_ANGLE_D3D_LUID_HIGH_ANGLE, 0) == 0 &&
attribMap.get(EGL_PLATFORM_ANGLE_D3D_LUID_LOW_ANGLE, 0) == 0)
{
val->setError(EGL_BAD_ATTRIBUTE,
"If either EGL_PLATFORM_ANGLE_D3D_LUID_HIGH_ANGLE "
"and/or EGL_PLATFORM_ANGLE_D3D_LUID_LOW_ANGLE are "
"specified, at least one must non-zero.");
return false;
}
}
if (deviceIdSpecified)
{
if (attribMap.get(EGL_PLATFORM_ANGLE_DEVICE_ID_HIGH_ANGLE, 0) == 0 &&
attribMap.get(EGL_PLATFORM_ANGLE_DEVICE_ID_LOW_ANGLE, 0) == 0)
{
val->setError(EGL_BAD_ATTRIBUTE,
"If either EGL_PLATFORM_ANGLE_DEVICE_ID_HIGH_ANGLE "
"and/or EGL_PLATFORM_ANGLE_DEVICE_ID_LOW_ANGLE are "
"specified, at least one must non-zero.");
return false;
}
}
if (deviceType.valid())
{
switch (deviceType.value())
{
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_REFERENCE_ANGLE:
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_D3D_WARP_ANGLE:
if (platformType != EGL_PLATFORM_ANGLE_TYPE_D3D9_ANGLE &&
platformType != EGL_PLATFORM_ANGLE_TYPE_D3D11_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"This device type requires a "
"platform type of EGL_PLATFORM_ANGLE_TYPE_D3D9_ANGLE or "
"EGL_PLATFORM_ANGLE_TYPE_D3D9_ANGLE.");
return false;
}
break;
case EGL_PLATFORM_ANGLE_DEVICE_TYPE_SWIFTSHADER_ANGLE:
if (platformType != EGL_PLATFORM_ANGLE_TYPE_VULKAN_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"This device type requires a "
"platform type of EGL_PLATFORM_ANGLE_TYPE_VULKAN_ANGLE.");
return false;
}
break;
default:
break;
}
}
if (platformType == EGL_PLATFORM_ANGLE_TYPE_VULKAN_ANGLE)
{
if ((majorVersion.valid() && majorVersion.value() != 1) ||
(minorVersion.valid() && minorVersion.value() != 0))
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_TYPE_VULKAN_ANGLE currently "
"only supports Vulkan 1.0.");
return false;
}
}
if (eglHandle.valid() && platformType != EGL_PLATFORM_ANGLE_TYPE_OPENGLES_ANGLE &&
platformType != EGL_PLATFORM_ANGLE_TYPE_DEFAULT_ANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"EGL_PLATFORM_ANGLE_EGL_HANDLE_ANGLE requires a "
"device type of EGL_PLATFORM_ANGLE_TYPE_OPENGLES_ANGLE.");
return false;
}
}
else
{
const Device *eglDevice = static_cast<const Device *>(native_display);
if (eglDevice == nullptr || !Device::IsValidDevice(eglDevice))
{
val->setError(EGL_BAD_ATTRIBUTE,
"native_display should be a valid EGL device if "
"platform equals EGL_PLATFORM_DEVICE_EXT");
return false;
}
}
if (attribMap.contains(EGL_POWER_PREFERENCE_ANGLE))
{
if (!clientExtensions.displayPowerPreferenceANGLE)
{
val->setError(EGL_BAD_ATTRIBUTE,
"Attribute EGL_POWER_PREFERENCE_ANGLE "