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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 specifying physical device memory properties.
*
* Valid Usage (Implicit)
*
*
* - {@code sType} must be {@link KHRGetPhysicalDeviceProperties2#VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_MEMORY_PROPERTIES_2_KHR STRUCTURE_TYPE_PHYSICAL_DEVICE_MEMORY_PROPERTIES_2_KHR}
* - {@code pNext} must be {@code NULL}
*
*
* See Also
*
* {@link VkPhysicalDeviceMemoryProperties}, {@link KHRGetPhysicalDeviceProperties2#vkGetPhysicalDeviceMemoryProperties2KHR GetPhysicalDeviceMemoryProperties2KHR}
*
* Member documentation
*
*
* - {@code sType} – the type of this structure.
* - {@code pNext} – {@code NULL} or a pointer to an extension-specific structure.
* - {@code memoryProperties} – a structure of type {@link VkPhysicalDeviceMemoryProperties} which is populated with the same values as in {@link VK10#vkGetPhysicalDeviceMemoryProperties GetPhysicalDeviceMemoryProperties}.
*
*
* Layout
*
*
* struct VkPhysicalDeviceMemoryProperties2KHR {
* VkStructureType sType;
* void * pNext;
* {@link VkPhysicalDeviceMemoryProperties VkPhysicalDeviceMemoryProperties} memoryProperties;
* }
*/
public class VkPhysicalDeviceMemoryProperties2KHR extends Struct implements NativeResource {
/** The struct size in bytes. */
public static final int SIZEOF;
public static final int ALIGNOF;
/** The struct member offsets. */
public static final int
STYPE,
PNEXT,
MEMORYPROPERTIES;
static {
Layout layout = __struct(
__member(4),
__member(POINTER_SIZE),
__member(VkPhysicalDeviceMemoryProperties.SIZEOF, VkPhysicalDeviceMemoryProperties.ALIGNOF)
);
SIZEOF = layout.getSize();
ALIGNOF = layout.getAlignment();
STYPE = layout.offsetof(0);
PNEXT = layout.offsetof(1);
MEMORYPROPERTIES = layout.offsetof(2);
}
VkPhysicalDeviceMemoryProperties2KHR(long address, @Nullable ByteBuffer container) {
super(address, container);
}
/**
* Creates a {@link VkPhysicalDeviceMemoryProperties2KHR} 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 VkPhysicalDeviceMemoryProperties2KHR(ByteBuffer container) {
this(memAddress(container), __checkContainer(container, SIZEOF));
}
@Override
public int sizeof() { return SIZEOF; }
/** Returns the value of the {@code sType} field. */
@NativeType("VkStructureType")
public int sType() { return nsType(address()); }
/** Returns the value of the {@code pNext} field. */
@NativeType("void *")
public long pNext() { return npNext(address()); }
/** Returns a {@link VkPhysicalDeviceMemoryProperties} view of the {@code memoryProperties} field. */
public VkPhysicalDeviceMemoryProperties memoryProperties() { return nmemoryProperties(address()); }
// -----------------------------------
/** Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated with {@link MemoryUtil#memAlloc memAlloc}. The instance must be explicitly freed. */
public static VkPhysicalDeviceMemoryProperties2KHR malloc() {
return create(nmemAllocChecked(SIZEOF));
}
/** Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated with {@link MemoryUtil#memCalloc memCalloc}. The instance must be explicitly freed. */
public static VkPhysicalDeviceMemoryProperties2KHR calloc() {
return create(nmemCallocChecked(1, SIZEOF));
}
/** Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated with {@link BufferUtils}. */
public static VkPhysicalDeviceMemoryProperties2KHR create() {
return new VkPhysicalDeviceMemoryProperties2KHR(BufferUtils.createByteBuffer(SIZEOF));
}
/** Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance for the specified memory address. */
public static VkPhysicalDeviceMemoryProperties2KHR create(long address) {
return new VkPhysicalDeviceMemoryProperties2KHR(address, null);
}
/** Like {@link #create(long) create}, but returns {@code null} if {@code address} is {@code NULL}. */
@Nullable
public static VkPhysicalDeviceMemoryProperties2KHR createSafe(long address) {
return address == NULL ? null : create(address);
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance allocated with {@link MemoryUtil#memAlloc memAlloc}. The instance must be explicitly freed.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer malloc(int capacity) {
return create(__malloc(capacity, SIZEOF), capacity);
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance allocated with {@link MemoryUtil#memCalloc memCalloc}. The instance must be explicitly freed.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer calloc(int capacity) {
return create(nmemCallocChecked(capacity, SIZEOF), capacity);
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance allocated with {@link BufferUtils}.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer create(int capacity) {
return new Buffer(__create(capacity, SIZEOF));
}
/**
* Create a {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance at the specified memory.
*
* @param address the memory address
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer create(long address, int capacity) {
return new Buffer(address, capacity);
}
/** Like {@link #create(long, int) create}, but returns {@code null} if {@code address} is {@code NULL}. */
@Nullable
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer createSafe(long address, int capacity) {
return address == NULL ? null : create(address, capacity);
}
// -----------------------------------
/** Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated on the thread-local {@link MemoryStack}. */
public static VkPhysicalDeviceMemoryProperties2KHR mallocStack() {
return mallocStack(stackGet());
}
/** Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated on the thread-local {@link MemoryStack} and initializes all its bits to zero. */
public static VkPhysicalDeviceMemoryProperties2KHR callocStack() {
return callocStack(stackGet());
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated on the specified {@link MemoryStack}.
*
* @param stack the stack from which to allocate
*/
public static VkPhysicalDeviceMemoryProperties2KHR mallocStack(MemoryStack stack) {
return create(stack.nmalloc(ALIGNOF, SIZEOF));
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR} instance allocated on the specified {@link MemoryStack} and initializes all its bits to zero.
*
* @param stack the stack from which to allocate
*/
public static VkPhysicalDeviceMemoryProperties2KHR callocStack(MemoryStack stack) {
return create(stack.ncalloc(ALIGNOF, 1, SIZEOF));
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance allocated on the thread-local {@link MemoryStack}.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer mallocStack(int capacity) {
return mallocStack(capacity, stackGet());
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance allocated on the thread-local {@link MemoryStack} and initializes all its bits to zero.
*
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer callocStack(int capacity) {
return callocStack(capacity, stackGet());
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.Buffer} instance allocated on the specified {@link MemoryStack}.
*
* @param stack the stack from which to allocate
* @param capacity the buffer capacity
*/
public static VkPhysicalDeviceMemoryProperties2KHR.Buffer mallocStack(int capacity, MemoryStack stack) {
return create(stack.nmalloc(ALIGNOF, capacity * SIZEOF), capacity);
}
/**
* Returns a new {@link VkPhysicalDeviceMemoryProperties2KHR.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 VkPhysicalDeviceMemoryProperties2KHR.Buffer callocStack(int capacity, MemoryStack stack) {
return create(stack.ncalloc(ALIGNOF, capacity, SIZEOF), capacity);
}
// -----------------------------------
/** Unsafe version of {@link #sType}. */
public static int nsType(long struct) { return memGetInt(struct + VkPhysicalDeviceMemoryProperties2KHR.STYPE); }
/** Unsafe version of {@link #pNext}. */
public static long npNext(long struct) { return memGetAddress(struct + VkPhysicalDeviceMemoryProperties2KHR.PNEXT); }
/** Unsafe version of {@link #memoryProperties}. */
public static VkPhysicalDeviceMemoryProperties nmemoryProperties(long struct) { return VkPhysicalDeviceMemoryProperties.create(struct + VkPhysicalDeviceMemoryProperties2KHR.MEMORYPROPERTIES); }
// -----------------------------------
/** An array of {@link VkPhysicalDeviceMemoryProperties2KHR} structs. */
public static class Buffer extends StructBuffer implements NativeResource {
/**
* Creates a new {@link VkPhysicalDeviceMemoryProperties2KHR.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 VkPhysicalDeviceMemoryProperties2KHR#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 Buffer newBufferInstance(long address, @Nullable ByteBuffer container, int mark, int pos, int lim, int cap) {
return new Buffer(address, container, mark, pos, lim, cap);
}
@Override
protected VkPhysicalDeviceMemoryProperties2KHR newInstance(long address) {
return new VkPhysicalDeviceMemoryProperties2KHR(address, container);
}
@Override
public int sizeof() {
return SIZEOF;
}
/** Returns the value of the {@code sType} field. */
@NativeType("VkStructureType")
public int sType() { return VkPhysicalDeviceMemoryProperties2KHR.nsType(address()); }
/** Returns the value of the {@code pNext} field. */
@NativeType("void *")
public long pNext() { return VkPhysicalDeviceMemoryProperties2KHR.npNext(address()); }
/** Returns a {@link VkPhysicalDeviceMemoryProperties} view of the {@code memoryProperties} field. */
public VkPhysicalDeviceMemoryProperties memoryProperties() { return VkPhysicalDeviceMemoryProperties2KHR.nmemoryProperties(address()); }
}
}