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A new generation graphics and compute API that provides high-efficiency, cross-platform access to modern GPUs used in a wide variety of devices from PCs and consoles to mobile phones and embedded platforms.
/*
* Copyright LWJGL. All rights reserved.
* License terms: https://www.lwjgl.org/license
* MACHINE GENERATED FILE, DO NOT EDIT
*/
package org.lwjgl.vulkan;
import javax.annotation.*;
import java.nio.*;
import org.lwjgl.*;
import org.lwjgl.system.*;
import static org.lwjgl.system.MemoryUtil.*;
import static org.lwjgl.system.MemoryStack.*;
/**
* Structure describing the out-of-bounds behavior for an implementation.
*
* Description
*
* If the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT} structure is included in the {@code pNext} chain of the {@link VkPhysicalDeviceFeatures2} structure passed to {@link VK11#vkGetPhysicalDeviceFeatures2 GetPhysicalDeviceFeatures2}, it is filled in to indicate whether each corresponding feature is supported. {@link VkPhysicalDeviceImageRobustnessFeaturesEXT} can also be used in the {@code pNext} chain of {@link VkDeviceCreateInfo} to selectively enable these features.
*
* Valid Usage (Implicit)
*
*
* - {@code sType} must be {@link EXTImageRobustness#VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT}
*
*
* Layout
*
*
* struct VkPhysicalDeviceImageRobustnessFeaturesEXT {
* VkStructureType {@link #sType};
* void * {@link #pNext};
* VkBool32 {@link #robustImageAccess};
* }
*/
public class VkPhysicalDeviceImageRobustnessFeaturesEXT extends Struct implements NativeResource {
/** The struct size in bytes. */
public static final int SIZEOF;
/** The struct alignment in bytes. */
public static final int ALIGNOF;
/** The struct member offsets. */
public static final int
STYPE,
PNEXT,
ROBUSTIMAGEACCESS;
static {
Layout layout = __struct(
__member(4),
__member(POINTER_SIZE),
__member(4)
);
SIZEOF = layout.getSize();
ALIGNOF = layout.getAlignment();
STYPE = layout.offsetof(0);
PNEXT = layout.offsetof(1);
ROBUSTIMAGEACCESS = layout.offsetof(2);
}
/**
* Creates a {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance at the current position of the specified {@link ByteBuffer} container. Changes to the buffer's content will be
* visible to the struct instance and vice versa.
*
* The created instance holds a strong reference to the container object.
*/
public VkPhysicalDeviceImageRobustnessFeaturesEXT(ByteBuffer container) {
super(memAddress(container), __checkContainer(container, SIZEOF));
}
@Override
public int sizeof() { return SIZEOF; }
/** the type of this structure. */
@NativeType("VkStructureType")
public int sType() { return nsType(address()); }
/** {@code NULL} or a pointer to a structure extending this structure. */
@NativeType("void *")
public long pNext() { return npNext(address()); }
/** indicates whether image accesses are tightly bounds-checked against the dimensions of the image view. Invalid texels resulting from out of bounds image loads will be replaced as described in Texel Replacement, with either (0,0,1)
or (0,0,0)
values inserted for missing G, B, or A components based on the format. */
@NativeType("VkBool32")
public boolean robustImageAccess() { return nrobustImageAccess(address()) != 0; }
/** Sets the specified value to the {@link #sType} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT sType(@NativeType("VkStructureType") int value) { nsType(address(), value); return this; }
/** Sets the {@link EXTImageRobustness#VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT} value to the {@link #sType} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT sType$Default() { return sType(EXTImageRobustness.VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT); }
/** Sets the specified value to the {@link #pNext} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT pNext(@NativeType("void *") long value) { npNext(address(), value); return this; }
/** Sets the specified value to the {@link #robustImageAccess} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT robustImageAccess(@NativeType("VkBool32") boolean value) { nrobustImageAccess(address(), value ? 1 : 0); return this; }
/** Initializes this struct with the specified values. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT set(
int sType,
long pNext,
boolean robustImageAccess
) {
sType(sType);
pNext(pNext);
robustImageAccess(robustImageAccess);
return this;
}
/**
* Copies the specified struct data to this struct.
*
* @param src the source struct
*
* @return this struct
*/
public VkPhysicalDeviceImageRobustnessFeaturesEXT set(VkPhysicalDeviceImageRobustnessFeaturesEXT src) {
memCopy(src.address(), address(), SIZEOF);
return this;
}
// -----------------------------------
/** Returns a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance allocated with {@link MemoryUtil#memAlloc memAlloc}. The instance must be explicitly freed. */
public static VkPhysicalDeviceImageRobustnessFeaturesEXT malloc() {
return wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, nmemAllocChecked(SIZEOF));
}
/** Returns a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance allocated with {@link MemoryUtil#memCalloc memCalloc}. The instance must be explicitly freed. */
public static VkPhysicalDeviceImageRobustnessFeaturesEXT calloc() {
return wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, nmemCallocChecked(1, SIZEOF));
}
/** Returns a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance allocated with {@link BufferUtils}. */
public static VkPhysicalDeviceImageRobustnessFeaturesEXT create() {
ByteBuffer container = BufferUtils.createByteBuffer(SIZEOF);
return wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, memAddress(container), container);
}
/** Returns a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance for the specified memory address. */
public static VkPhysicalDeviceImageRobustnessFeaturesEXT create(long address) {
return wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, address);
}
/** Like {@link #create(long) create}, but returns {@code null} if {@code address} is {@code NULL}. */
@Nullable
public static VkPhysicalDeviceImageRobustnessFeaturesEXT createSafe(long address) {
return address == NULL ? null : wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, address);
}
/**
* Returns a new {@link VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance allocated with {@link MemoryUtil#memAlloc memAlloc}. The instance must be explicitly freed.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer malloc(int capacity) {
return wrap(Buffer.class, nmemAllocChecked(__checkMalloc(capacity, SIZEOF)), capacity);
}
/**
* Returns a new {@link VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance allocated with {@link MemoryUtil#memCalloc memCalloc}. The instance must be explicitly freed.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer calloc(int capacity) {
return wrap(Buffer.class, nmemCallocChecked(capacity, SIZEOF), capacity);
}
/**
* Returns a new {@link VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance allocated with {@link BufferUtils}.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer create(int capacity) {
ByteBuffer container = __create(capacity, SIZEOF);
return wrap(Buffer.class, memAddress(container), capacity, container);
}
/**
* Create a {@link VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance at the specified memory.
*
* @param address the memory address
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer create(long address, int capacity) {
return wrap(Buffer.class, address, capacity);
}
/** Like {@link #create(long, int) create}, but returns {@code null} if {@code address} is {@code NULL}. */
@Nullable
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer createSafe(long address, int capacity) {
return address == NULL ? null : wrap(Buffer.class, address, capacity);
}
/**
* Returns a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance allocated on the specified {@link MemoryStack}.
*
* @param stack the stack from which to allocate
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT malloc(MemoryStack stack) {
return wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, stack.nmalloc(ALIGNOF, SIZEOF));
}
/**
* Returns a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT} instance allocated on the specified {@link MemoryStack} and initializes all its bits to zero.
*
* @param stack the stack from which to allocate
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT calloc(MemoryStack stack) {
return wrap(VkPhysicalDeviceImageRobustnessFeaturesEXT.class, stack.ncalloc(ALIGNOF, 1, SIZEOF));
}
/**
* Returns a new {@link VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance allocated on the specified {@link MemoryStack}.
*
* @param stack the stack from which to allocate
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer malloc(int capacity, MemoryStack stack) {
return wrap(Buffer.class, stack.nmalloc(ALIGNOF, capacity * SIZEOF), capacity);
}
/**
* Returns a new {@link VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance allocated on the specified {@link MemoryStack} and initializes all its bits to zero.
*
* @param stack the stack from which to allocate
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer calloc(int capacity, MemoryStack stack) {
return wrap(Buffer.class, stack.ncalloc(ALIGNOF, capacity, SIZEOF), capacity);
}
// -----------------------------------
/** Unsafe version of {@link #sType}. */
public static int nsType(long struct) { return UNSAFE.getInt(null, struct + VkPhysicalDeviceImageRobustnessFeaturesEXT.STYPE); }
/** Unsafe version of {@link #pNext}. */
public static long npNext(long struct) { return memGetAddress(struct + VkPhysicalDeviceImageRobustnessFeaturesEXT.PNEXT); }
/** Unsafe version of {@link #robustImageAccess}. */
public static int nrobustImageAccess(long struct) { return UNSAFE.getInt(null, struct + VkPhysicalDeviceImageRobustnessFeaturesEXT.ROBUSTIMAGEACCESS); }
/** Unsafe version of {@link #sType(int) sType}. */
public static void nsType(long struct, int value) { UNSAFE.putInt(null, struct + VkPhysicalDeviceImageRobustnessFeaturesEXT.STYPE, value); }
/** Unsafe version of {@link #pNext(long) pNext}. */
public static void npNext(long struct, long value) { memPutAddress(struct + VkPhysicalDeviceImageRobustnessFeaturesEXT.PNEXT, value); }
/** Unsafe version of {@link #robustImageAccess(boolean) robustImageAccess}. */
public static void nrobustImageAccess(long struct, int value) { UNSAFE.putInt(null, struct + VkPhysicalDeviceImageRobustnessFeaturesEXT.ROBUSTIMAGEACCESS, value); }
// -----------------------------------
/** An array of {@link VkPhysicalDeviceImageRobustnessFeaturesEXT} structs. */
public static class Buffer extends StructBuffer implements NativeResource {
private static final VkPhysicalDeviceImageRobustnessFeaturesEXT ELEMENT_FACTORY = VkPhysicalDeviceImageRobustnessFeaturesEXT.create(-1L);
/**
* Creates a new {@code VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer} instance backed by the specified container.
*
* Changes to the container's content will be visible to the struct buffer instance and vice versa. The two buffers' position, limit, and mark values
* will be independent. The new buffer's position will be zero, its capacity and its limit will be the number of bytes remaining in this buffer divided
* by {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#SIZEOF}, and its mark will be undefined.
*
* The created buffer instance holds a strong reference to the container object.
*/
public Buffer(ByteBuffer container) {
super(container, container.remaining() / SIZEOF);
}
public Buffer(long address, int cap) {
super(address, null, -1, 0, cap, cap);
}
Buffer(long address, @Nullable ByteBuffer container, int mark, int pos, int lim, int cap) {
super(address, container, mark, pos, lim, cap);
}
@Override
protected Buffer self() {
return this;
}
@Override
protected VkPhysicalDeviceImageRobustnessFeaturesEXT getElementFactory() {
return ELEMENT_FACTORY;
}
/** @return the value of the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#sType} field. */
@NativeType("VkStructureType")
public int sType() { return VkPhysicalDeviceImageRobustnessFeaturesEXT.nsType(address()); }
/** @return the value of the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#pNext} field. */
@NativeType("void *")
public long pNext() { return VkPhysicalDeviceImageRobustnessFeaturesEXT.npNext(address()); }
/** @return the value of the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#robustImageAccess} field. */
@NativeType("VkBool32")
public boolean robustImageAccess() { return VkPhysicalDeviceImageRobustnessFeaturesEXT.nrobustImageAccess(address()) != 0; }
/** Sets the specified value to the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#sType} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer sType(@NativeType("VkStructureType") int value) { VkPhysicalDeviceImageRobustnessFeaturesEXT.nsType(address(), value); return this; }
/** Sets the {@link EXTImageRobustness#VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT} value to the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#sType} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer sType$Default() { return sType(EXTImageRobustness.VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_ROBUSTNESS_FEATURES_EXT); }
/** Sets the specified value to the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#pNext} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer pNext(@NativeType("void *") long value) { VkPhysicalDeviceImageRobustnessFeaturesEXT.npNext(address(), value); return this; }
/** Sets the specified value to the {@link VkPhysicalDeviceImageRobustnessFeaturesEXT#robustImageAccess} field. */
public VkPhysicalDeviceImageRobustnessFeaturesEXT.Buffer robustImageAccess(@NativeType("VkBool32") boolean value) { VkPhysicalDeviceImageRobustnessFeaturesEXT.nrobustImageAccess(address(), value ? 1 : 0); return this; }
}
}