#![allow(unused_imports)]
use crate::{vk::Result as VkResult, vk::*, *};
use core::ffi::{CStr, c_char, c_int, c_void};
use core::mem::transmute;
use core::ptr;
pub const EXTENSION_NAME: &CStr = c"VK_NV_ray_tracing_linear_swept_spheres";
pub(super) mod defs {
#![allow(non_camel_case_types, unused_imports)]
use crate::{vk::*, *};
use core::ffi::{CStr, c_char, c_int, c_void};
use core::fmt;
use core::marker::PhantomData;
use core::ptr;
#[repr(C)]
#[derive(Copy, Clone)]
#[must_use]
pub struct AccelerationStructureGeometryLinearSweptSpheresDataNV<'a> {
pub s_type: StructureType,
pub p_next: *const c_void,
pub vertex_format: Format,
pub vertex_data: DeviceOrHostAddressConstKHR<'a>,
pub vertex_stride: DeviceSize,
pub radius_format: Format,
pub radius_data: DeviceOrHostAddressConstKHR<'a>,
pub radius_stride: DeviceSize,
pub index_type: IndexType,
pub index_data: DeviceOrHostAddressConstKHR<'a>,
pub index_stride: DeviceSize,
pub indexing_mode: RayTracingLssIndexingModeNV,
pub end_caps_mode: RayTracingLssPrimitiveEndCapsModeNV,
pub _marker: PhantomData<&'a ()>,
}
#[cfg(feature = "debug")]
impl fmt::Debug for AccelerationStructureGeometryLinearSweptSpheresDataNV<'_> {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("AccelerationStructureGeometryLinearSweptSpheresDataNV")
.field("s_type", &self.s_type)
.field("p_next", &self.p_next)
.field("vertex_format", &self.vertex_format)
.field("vertex_data", &self.vertex_data)
.field("vertex_stride", &self.vertex_stride)
.field("radius_format", &self.radius_format)
.field("radius_data", &self.radius_data)
.field("radius_stride", &self.radius_stride)
.field("index_type", &self.index_type)
.field("index_data", &self.index_data)
.field("index_stride", &self.index_stride)
.field("indexing_mode", &self.indexing_mode)
.field("end_caps_mode", &self.end_caps_mode)
.finish()
}
}
unsafe impl<'a> TaggedStructure<'a> for AccelerationStructureGeometryLinearSweptSpheresDataNV<'a> {
const STRUCTURE_TYPE: StructureType =
StructureType::ACCELERATION_STRUCTURE_GEOMETRY_LINEAR_SWEPT_SPHERES_DATA_NV;
}
unsafe impl Extends<AccelerationStructureGeometryKHR<'_>>
for AccelerationStructureGeometryLinearSweptSpheresDataNV<'_>
{
}
impl Default for AccelerationStructureGeometryLinearSweptSpheresDataNV<'_> {
fn default() -> Self {
Self {
s_type: Self::STRUCTURE_TYPE,
p_next: ptr::null(),
vertex_format: Default::default(),
vertex_data: Default::default(),
vertex_stride: Default::default(),
radius_format: Default::default(),
radius_data: Default::default(),
radius_stride: Default::default(),
index_type: Default::default(),
index_data: Default::default(),
index_stride: Default::default(),
indexing_mode: Default::default(),
end_caps_mode: Default::default(),
_marker: PhantomData,
}
}
}
impl<'a> AccelerationStructureGeometryLinearSweptSpheresDataNV<'a> {
#[inline]
pub fn vertex_format(mut self, vertex_format: Format) -> Self {
self.vertex_format = vertex_format;
self
}
#[inline]
pub fn vertex_data(mut self, vertex_data: DeviceOrHostAddressConstKHR<'a>) -> Self {
self.vertex_data = vertex_data;
self
}
#[inline]
pub fn vertex_stride(mut self, vertex_stride: DeviceSize) -> Self {
self.vertex_stride = vertex_stride;
self
}
#[inline]
pub fn radius_format(mut self, radius_format: Format) -> Self {
self.radius_format = radius_format;
self
}
#[inline]
pub fn radius_data(mut self, radius_data: DeviceOrHostAddressConstKHR<'a>) -> Self {
self.radius_data = radius_data;
self
}
#[inline]
pub fn radius_stride(mut self, radius_stride: DeviceSize) -> Self {
self.radius_stride = radius_stride;
self
}
#[inline]
pub fn index_type(mut self, index_type: IndexType) -> Self {
self.index_type = index_type;
self
}
#[inline]
pub fn index_data(mut self, index_data: DeviceOrHostAddressConstKHR<'a>) -> Self {
self.index_data = index_data;
self
}
#[inline]
pub fn index_stride(mut self, index_stride: DeviceSize) -> Self {
self.index_stride = index_stride;
self
}
#[inline]
pub fn indexing_mode(mut self, indexing_mode: RayTracingLssIndexingModeNV) -> Self {
self.indexing_mode = indexing_mode;
self
}
#[inline]
pub fn end_caps_mode(mut self, end_caps_mode: RayTracingLssPrimitiveEndCapsModeNV) -> Self {
self.end_caps_mode = end_caps_mode;
self
}
}
#[repr(C)]
#[derive(Copy, Clone)]
#[must_use]
pub struct AccelerationStructureGeometrySpheresDataNV<'a> {
pub s_type: StructureType,
pub p_next: *const c_void,
pub vertex_format: Format,
pub vertex_data: DeviceOrHostAddressConstKHR<'a>,
pub vertex_stride: DeviceSize,
pub radius_format: Format,
pub radius_data: DeviceOrHostAddressConstKHR<'a>,
pub radius_stride: DeviceSize,
pub index_type: IndexType,
pub index_data: DeviceOrHostAddressConstKHR<'a>,
pub index_stride: DeviceSize,
pub _marker: PhantomData<&'a ()>,
}
#[cfg(feature = "debug")]
impl fmt::Debug for AccelerationStructureGeometrySpheresDataNV<'_> {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("AccelerationStructureGeometrySpheresDataNV")
.field("s_type", &self.s_type)
.field("p_next", &self.p_next)
.field("vertex_format", &self.vertex_format)
.field("vertex_data", &self.vertex_data)
.field("vertex_stride", &self.vertex_stride)
.field("radius_format", &self.radius_format)
.field("radius_data", &self.radius_data)
.field("radius_stride", &self.radius_stride)
.field("index_type", &self.index_type)
.field("index_data", &self.index_data)
.field("index_stride", &self.index_stride)
.finish()
}
}
unsafe impl<'a> TaggedStructure<'a> for AccelerationStructureGeometrySpheresDataNV<'a> {
const STRUCTURE_TYPE: StructureType =
StructureType::ACCELERATION_STRUCTURE_GEOMETRY_SPHERES_DATA_NV;
}
unsafe impl Extends<AccelerationStructureGeometryKHR<'_>>
for AccelerationStructureGeometrySpheresDataNV<'_>
{
}
impl Default for AccelerationStructureGeometrySpheresDataNV<'_> {
fn default() -> Self {
Self {
s_type: Self::STRUCTURE_TYPE,
p_next: ptr::null(),
vertex_format: Default::default(),
vertex_data: Default::default(),
vertex_stride: Default::default(),
radius_format: Default::default(),
radius_data: Default::default(),
radius_stride: Default::default(),
index_type: Default::default(),
index_data: Default::default(),
index_stride: Default::default(),
_marker: PhantomData,
}
}
}
impl<'a> AccelerationStructureGeometrySpheresDataNV<'a> {
#[inline]
pub fn vertex_format(mut self, vertex_format: Format) -> Self {
self.vertex_format = vertex_format;
self
}
#[inline]
pub fn vertex_data(mut self, vertex_data: DeviceOrHostAddressConstKHR<'a>) -> Self {
self.vertex_data = vertex_data;
self
}
#[inline]
pub fn vertex_stride(mut self, vertex_stride: DeviceSize) -> Self {
self.vertex_stride = vertex_stride;
self
}
#[inline]
pub fn radius_format(mut self, radius_format: Format) -> Self {
self.radius_format = radius_format;
self
}
#[inline]
pub fn radius_data(mut self, radius_data: DeviceOrHostAddressConstKHR<'a>) -> Self {
self.radius_data = radius_data;
self
}
#[inline]
pub fn radius_stride(mut self, radius_stride: DeviceSize) -> Self {
self.radius_stride = radius_stride;
self
}
#[inline]
pub fn index_type(mut self, index_type: IndexType) -> Self {
self.index_type = index_type;
self
}
#[inline]
pub fn index_data(mut self, index_data: DeviceOrHostAddressConstKHR<'a>) -> Self {
self.index_data = index_data;
self
}
#[inline]
pub fn index_stride(mut self, index_stride: DeviceSize) -> Self {
self.index_stride = index_stride;
self
}
}
#[repr(C)]
#[derive(Copy, Clone)]
#[must_use]
pub struct PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'a> {
pub s_type: StructureType,
pub p_next: *mut c_void,
pub spheres: Bool32,
pub linear_swept_spheres: Bool32,
pub _marker: PhantomData<&'a ()>,
}
#[cfg(feature = "debug")]
impl fmt::Debug for PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'_> {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
f.debug_struct("PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV")
.field("s_type", &self.s_type)
.field("p_next", &self.p_next)
.field("spheres", &self.spheres)
.field("linear_swept_spheres", &self.linear_swept_spheres)
.finish()
}
}
unsafe impl<'a> TaggedStructure<'a> for PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'a> {
const STRUCTURE_TYPE: StructureType =
StructureType::PHYSICAL_DEVICE_RAY_TRACING_LINEAR_SWEPT_SPHERES_FEATURES_NV;
}
unsafe impl Extends<PhysicalDeviceFeatures2<'_>>
for PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'_>
{
}
unsafe impl Extends<DeviceCreateInfo<'_>>
for PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'_>
{
}
impl Default for PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'_> {
fn default() -> Self {
Self {
s_type: Self::STRUCTURE_TYPE,
p_next: ptr::null_mut(),
spheres: Default::default(),
linear_swept_spheres: Default::default(),
_marker: PhantomData,
}
}
}
impl<'a> PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'a> {
#[inline]
pub fn spheres(mut self, spheres: bool) -> Self {
self.spheres = spheres.into();
self
}
#[inline]
pub fn linear_swept_spheres(mut self, linear_swept_spheres: bool) -> Self {
self.linear_swept_spheres = linear_swept_spheres.into();
self
}
}
#[repr(transparent)]
#[derive(Copy, Clone, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
pub struct RayTracingLssIndexingModeNV(i32);
impl RayTracingLssIndexingModeNV {
#[inline]
pub const fn from_raw(x: i32) -> Self {
Self(x)
}
#[inline]
pub const fn as_raw(self) -> i32 {
self.0
}
pub const LIST_NV: Self = Self(0);
pub const SUCCESSIVE_NV: Self = Self(1);
}
impl fmt::Debug for RayTracingLssIndexingModeNV {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
let name = match *self {
Self::LIST_NV => Some("LIST_NV"),
Self::SUCCESSIVE_NV => Some("SUCCESSIVE_NV"),
_ => None,
};
if let Some(name) = name {
f.write_str(name)
} else {
self.0.fmt(f)
}
}
}
#[repr(transparent)]
#[derive(Copy, Clone, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
pub struct RayTracingLssPrimitiveEndCapsModeNV(i32);
impl RayTracingLssPrimitiveEndCapsModeNV {
#[inline]
pub const fn from_raw(x: i32) -> Self {
Self(x)
}
#[inline]
pub const fn as_raw(self) -> i32 {
self.0
}
pub const NONE_NV: Self = Self(0);
pub const CHAINED_NV: Self = Self(1);
}
impl fmt::Debug for RayTracingLssPrimitiveEndCapsModeNV {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
let name = match *self {
Self::NONE_NV => Some("NONE_NV"),
Self::CHAINED_NV => Some("CHAINED_NV"),
_ => None,
};
if let Some(name) = name {
f.write_str(name)
} else {
self.0.fmt(f)
}
}
}
}
#[cfg(feature = "ffi")]
pub(super) mod ffi {
#![allow(non_camel_case_types)]
use super::defs::*;
pub type VkAccelerationStructureGeometryLinearSweptSpheresDataNV =
AccelerationStructureGeometryLinearSweptSpheresDataNV<'static>;
pub type VkAccelerationStructureGeometrySpheresDataNV =
AccelerationStructureGeometrySpheresDataNV<'static>;
pub type VkPhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV =
PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'static>;
pub type VkRayTracingLssIndexingModeNV = RayTracingLssIndexingModeNV;
pub type VkRayTracingLssPrimitiveEndCapsModeNV = RayTracingLssPrimitiveEndCapsModeNV;
impl AccelerationStructureGeometryLinearSweptSpheresDataNV<'_> {
#[inline]
pub unsafe fn drop_lifetime_for_ffi(
&self,
) -> &VkAccelerationStructureGeometryLinearSweptSpheresDataNV {
unsafe { core::mem::transmute(self) }
}
}
impl AccelerationStructureGeometrySpheresDataNV<'_> {
#[inline]
pub unsafe fn drop_lifetime_for_ffi(
&self,
) -> &VkAccelerationStructureGeometrySpheresDataNV {
unsafe { core::mem::transmute(self) }
}
}
impl PhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV<'_> {
#[inline]
pub unsafe fn drop_lifetime_for_ffi(
&self,
) -> &VkPhysicalDeviceRayTracingLinearSweptSpheresFeaturesNV {
unsafe { core::mem::transmute(self) }
}
}
}