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/*
 * Copyright LWJGL. All rights reserved.
 * License terms: https://www.lwjgl.org/license
 * MACHINE GENERATED FILE, DO NOT EDIT
 */
package org.lwjgl.nuklear;

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.*;

/**
 * Basic string buffer which is only used in context with the text editor to manage and manipulate dynamic or
 * fixed size string content. This is NOT the default string handling method. The only instance you
 * should have any contact with this API is if you interact with an {@link NkTextEdit} object inside one of the copy and
 * paste functions and even there only for more advanced cases.
 * 
 * 

Layout

* *

 * struct nk_str {
 *     {@link NkBuffer struct nk_buffer} buffer;
 *     int {@link #len};
 * }
*/ @NativeType("struct nk_str") public class NkStr 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 BUFFER, LEN; static { Layout layout = __struct( __member(NkBuffer.SIZEOF, NkBuffer.ALIGNOF), __member(4) ); SIZEOF = layout.getSize(); ALIGNOF = layout.getAlignment(); BUFFER = layout.offsetof(0); LEN = layout.offsetof(1); } /** * Creates a {@code NkStr} 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 NkStr(ByteBuffer container) { super(memAddress(container), __checkContainer(container, SIZEOF)); } @Override public int sizeof() { return SIZEOF; } /** @return a {@link NkBuffer} view of the {@code buffer} field. */ @NativeType("struct nk_buffer") public NkBuffer buffer() { return nbuffer(address()); } /** in codepoints/runes/glyphs */ public int len() { return nlen(address()); } // ----------------------------------- /** Returns a new {@code NkStr} instance allocated with {@link MemoryUtil#memAlloc memAlloc}. The instance must be explicitly freed. */ public static NkStr malloc() { return wrap(NkStr.class, nmemAllocChecked(SIZEOF)); } /** Returns a new {@code NkStr} instance allocated with {@link MemoryUtil#memCalloc memCalloc}. The instance must be explicitly freed. */ public static NkStr calloc() { return wrap(NkStr.class, nmemCallocChecked(1, SIZEOF)); } /** Returns a new {@code NkStr} instance allocated with {@link BufferUtils}. */ public static NkStr create() { ByteBuffer container = BufferUtils.createByteBuffer(SIZEOF); return wrap(NkStr.class, memAddress(container), container); } /** Returns a new {@code NkStr} instance for the specified memory address. */ public static NkStr create(long address) { return wrap(NkStr.class, address); } /** Like {@link #create(long) create}, but returns {@code null} if {@code address} is {@code NULL}. */ @Nullable public static NkStr createSafe(long address) { return address == NULL ? null : wrap(NkStr.class, address); } /** * Returns a new {@link NkStr.Buffer} instance allocated with {@link MemoryUtil#memAlloc memAlloc}. The instance must be explicitly freed. * * @param capacity the buffer capacity */ public static NkStr.Buffer malloc(int capacity) { return wrap(Buffer.class, nmemAllocChecked(__checkMalloc(capacity, SIZEOF)), capacity); } /** * Returns a new {@link NkStr.Buffer} instance allocated with {@link MemoryUtil#memCalloc memCalloc}. The instance must be explicitly freed. * * @param capacity the buffer capacity */ public static NkStr.Buffer calloc(int capacity) { return wrap(Buffer.class, nmemCallocChecked(capacity, SIZEOF), capacity); } /** * Returns a new {@link NkStr.Buffer} instance allocated with {@link BufferUtils}. * * @param capacity the buffer capacity */ public static NkStr.Buffer create(int capacity) { ByteBuffer container = __create(capacity, SIZEOF); return wrap(Buffer.class, memAddress(container), capacity, container); } /** * Create a {@link NkStr.Buffer} instance at the specified memory. * * @param address the memory address * @param capacity the buffer capacity */ public static NkStr.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 NkStr.Buffer createSafe(long address, int capacity) { return address == NULL ? null : wrap(Buffer.class, address, capacity); } // ----------------------------------- /** Deprecated for removal in 3.4.0. Use {@link #malloc(MemoryStack)} instead. */ @Deprecated public static NkStr mallocStack() { return malloc(stackGet()); } /** Deprecated for removal in 3.4.0. Use {@link #calloc(MemoryStack)} instead. */ @Deprecated public static NkStr callocStack() { return calloc(stackGet()); } /** Deprecated for removal in 3.4.0. Use {@link #malloc(MemoryStack)} instead. */ @Deprecated public static NkStr mallocStack(MemoryStack stack) { return malloc(stack); } /** Deprecated for removal in 3.4.0. Use {@link #calloc(MemoryStack)} instead. */ @Deprecated public static NkStr callocStack(MemoryStack stack) { return calloc(stack); } /** Deprecated for removal in 3.4.0. Use {@link #malloc(int, MemoryStack)} instead. */ @Deprecated public static NkStr.Buffer mallocStack(int capacity) { return malloc(capacity, stackGet()); } /** Deprecated for removal in 3.4.0. Use {@link #calloc(int, MemoryStack)} instead. */ @Deprecated public static NkStr.Buffer callocStack(int capacity) { return calloc(capacity, stackGet()); } /** Deprecated for removal in 3.4.0. Use {@link #malloc(int, MemoryStack)} instead. */ @Deprecated public static NkStr.Buffer mallocStack(int capacity, MemoryStack stack) { return malloc(capacity, stack); } /** Deprecated for removal in 3.4.0. Use {@link #calloc(int, MemoryStack)} instead. */ @Deprecated public static NkStr.Buffer callocStack(int capacity, MemoryStack stack) { return calloc(capacity, stack); } /** * Returns a new {@code NkStr} instance allocated on the specified {@link MemoryStack}. * * @param stack the stack from which to allocate */ public static NkStr malloc(MemoryStack stack) { return wrap(NkStr.class, stack.nmalloc(ALIGNOF, SIZEOF)); } /** * Returns a new {@code NkStr} instance allocated on the specified {@link MemoryStack} and initializes all its bits to zero. * * @param stack the stack from which to allocate */ public static NkStr calloc(MemoryStack stack) { return wrap(NkStr.class, stack.ncalloc(ALIGNOF, 1, SIZEOF)); } /** * Returns a new {@link NkStr.Buffer} instance allocated on the specified {@link MemoryStack}. * * @param stack the stack from which to allocate * @param capacity the buffer capacity */ public static NkStr.Buffer malloc(int capacity, MemoryStack stack) { return wrap(Buffer.class, stack.nmalloc(ALIGNOF, capacity * SIZEOF), capacity); } /** * Returns a new {@link NkStr.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 NkStr.Buffer calloc(int capacity, MemoryStack stack) { return wrap(Buffer.class, stack.ncalloc(ALIGNOF, capacity, SIZEOF), capacity); } // ----------------------------------- /** Unsafe version of {@link #buffer}. */ public static NkBuffer nbuffer(long struct) { return NkBuffer.create(struct + NkStr.BUFFER); } /** Unsafe version of {@link #len}. */ public static int nlen(long struct) { return UNSAFE.getInt(null, struct + NkStr.LEN); } // ----------------------------------- /** An array of {@link NkStr} structs. */ public static class Buffer extends StructBuffer implements NativeResource { private static final NkStr ELEMENT_FACTORY = NkStr.create(-1L); /** * Creates a new {@code NkStr.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 NkStr#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 NkStr getElementFactory() { return ELEMENT_FACTORY; } /** @return a {@link NkBuffer} view of the {@code buffer} field. */ @NativeType("struct nk_buffer") public NkBuffer buffer() { return NkStr.nbuffer(address()); } /** @return the value of the {@link NkStr#len} field. */ public int len() { return NkStr.nlen(address()); } } }




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