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clay.h
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#pragma once
// VERSION: 0.10
#ifndef CLAY_IMPLEMENTATION
#define CLAY_IMPLEMENTATION
#ifdef CLAY_WASM
#define CLAY_WASM_EXPORT(name) __attribute__((export_name(name)))
#else
#define CLAY_WASM_EXPORT(null)
#endif
#include "stdint.h"
#include "stdbool.h"
#include "stddef.h"
#ifdef CLAY_OVERFLOW_TRAP
#include "signal.h"
#endif
#ifndef CLAY_MAX_ELEMENT_COUNT
#define CLAY_MAX_ELEMENT_COUNT 8192
#endif
#ifndef CLAY__NULL
#define CLAY__NULL 0
#endif
#ifndef CLAY__MAXFLOAT
#define CLAY__MAXFLOAT 3.40282346638528859812e+38F
#endif
#define CLAY__MAX(x, y) (((x) > (y)) ? (x) : (y))
#define CLAY__MIN(x, y) (((x) < (y)) ? (x) : (y))
#define CLAY__ALIGNMENT(type) (offsetof(struct { char c; type x; }, x))
// Publicly visible config macros -----------------------------------------------------
#define CLAY_LAYOUT(...) Clay__LayoutConfigArray_Add(&Clay__layoutConfigs, (Clay_LayoutConfig) {__VA_ARGS__ })
#define CLAY_RECTANGLE_CONFIG(...) Clay__RectangleElementConfigArray_Add(&Clay__rectangleElementConfigs, (Clay_RectangleElementConfig) {__VA_ARGS__ })
#define CLAY_TEXT_CONFIG(...) Clay__TextElementConfigArray_Add(&Clay__textElementConfigs, (Clay_TextElementConfig) {__VA_ARGS__ })
#define CLAY_IMAGE_CONFIG(...) Clay__ImageElementConfigArray_Add(&Clay__imageElementConfigs, (Clay_ImageElementConfig) {__VA_ARGS__ })
#define CLAY_FLOATING_CONFIG(...) Clay__FloatingElementConfigArray_Add(&Clay__floatingElementConfigs, (Clay_FloatingElementConfig) {__VA_ARGS__ })
#define CLAY_CUSTOM_ELEMENT_CONFIG(...) Clay__CustomElementConfigArray_Add(&Clay__customElementConfigs, (Clay_CustomElementConfig) {__VA_ARGS__ })
#define CLAY_SCROLL_CONFIG(...) Clay__ScrollElementConfigArray_Add(&Clay__scrollElementConfigs, (Clay_ScrollElementConfig) {__VA_ARGS__ })
#define CLAY_BORDER_CONFIG(...) Clay__BorderElementConfigArray_Add(&Clay__borderElementConfigs, (Clay_BorderElementConfig ) { __VA_ARGS__ })
#define CLAY_BORDER_CONFIG_OUTSIDE(...) Clay__BorderElementConfigArray_Add(&Clay__borderElementConfigs, (Clay_BorderElementConfig ) { .left = { __VA_ARGS__ }, .right = { __VA_ARGS__ }, .top = { __VA_ARGS__ }, .bottom = { __VA_ARGS__ } })
#define CLAY_BORDER_CONFIG_OUTSIDE_RADIUS(width, color, radius) Clay__BorderElementConfigArray_Add(&Clay__borderElementConfigs, (Clay_BorderElementConfig ) { .left = { width, color }, .right = { width, color }, .top = { width, color }, .bottom = { width, color }, .cornerRadius = { radius, radius, radius, radius } })
#define CLAY_BORDER_CONFIG_ALL(...) Clay__BorderElementConfigArray_Add(&Clay__borderElementConfigs, (Clay_BorderElementConfig ) { .left = { __VA_ARGS__ }, .right = { __VA_ARGS__ }, .top = { __VA_ARGS__ }, .bottom = { __VA_ARGS__ }, .betweenChildren = { __VA_ARGS__ } })
#define CLAY_BORDER_CONFIG_ALL_RADIUS(width, color, radius) Clay__BorderElementConfigArray_Add(&Clay__borderElementConfigs, (Clay_BorderElementConfig ) { .left = { __VA_ARGS__ }, .right = { __VA_ARGS__ }, .top = { __VA_ARGS__ }, .bottom = { __VA_ARGS__ }, .betweenChildren = { __VA_ARGS__ }, .cornerRadius = { radius, radius, radius, radius }})
#define CLAY_CORNER_RADIUS(radius) (Clay_CornerRadius) { radius, radius, radius, radius }
#define CLAY_SIZING_FIT(...) (Clay_SizingAxis) { .type = CLAY__SIZING_TYPE_FIT, .sizeMinMax = (Clay_SizingMinMax) {__VA_ARGS__} }
#define CLAY_SIZING_GROW(...) (Clay_SizingAxis) { .type = CLAY__SIZING_TYPE_GROW, .sizeMinMax = (Clay_SizingMinMax) {__VA_ARGS__} }
#define CLAY_SIZING_FIXED(fixedSize) (Clay_SizingAxis) { .type = CLAY__SIZING_TYPE_GROW, .sizeMinMax = { fixedSize, fixedSize } }
#define CLAY_SIZING_PERCENT(percentOfParent) (Clay_SizingAxis) { .type = CLAY__SIZING_TYPE_PERCENT, .sizePercent = percentOfParent }
#define CLAY_ID(label) Clay__HashString(CLAY_STRING(label), 0)
#define CLAY_IDI(label, index) Clay__HashString(CLAY_STRING(label), index)
#define CLAY__STRING_LENGTH(s) ((sizeof(s) / sizeof(s[0])) - sizeof(s[0]))
#define CLAY_STRING(string) (Clay_String) { .length = CLAY__STRING_LENGTH(string), .chars = string }
// Publicly visible layout element macros -----------------------------------------------------
#define CLAY_CONTAINER(id, layoutConfig, children) \
Clay__OpenContainerElement(id, layoutConfig); \
children \
Clay__CloseElementWithChildren()
#define CLAY_RECTANGLE(id, layoutConfig, rectangleConfig, children) \
Clay__OpenRectangleElement(id, layoutConfig, rectangleConfig); \
children \
Clay__CloseElementWithChildren()
#define CLAY_TEXT(id, text, textConfig) Clay__OpenTextElement(id, text, textConfig)
#define CLAY_IMAGE(id, layoutConfig, imageConfig, children) \
Clay__OpenImageElement(id, layoutConfig, imageConfig); \
children \
Clay__CloseElementWithChildren()
#define CLAY_SCROLL_CONTAINER(id, layoutConfig, scrollConfig, children) \
Clay__OpenScrollElement(id, layoutConfig, scrollConfig); \
children \
Clay__CloseScrollElement()
#define CLAY_FLOATING_CONTAINER(id, layoutConfig, floatingConfig, children) \
Clay__OpenFloatingElement(id, layoutConfig, floatingConfig); \
children \
Clay__CloseFloatingElement()
#define CLAY_BORDER_CONTAINER(id, layoutConfig, borderConfig, children) \
Clay__OpenBorderElement(id, layoutConfig, borderConfig); \
children \
Clay__CloseElementWithChildren()
#define CLAY_CUSTOM_ELEMENT(id, layoutConfig, customElementConfig, children) \
Clay__OpenCustomElement(id, layoutConfig, customElementConfig); \
children \
Clay__CloseElementWithChildren()
// Note: Clay_String is not guaranteed to be null terminated. It may be if created from a literal C string,
// but it is also used to represent slices.
typedef struct {
int length;
const char *chars;
} Clay_String;
Clay_String CLAY__SPACECHAR = (Clay_String) { .length = 1, .chars = " " };
Clay_String CLAY__STRING_DEFAULT = (Clay_String) { .length = 0, .chars = "" };
typedef struct {
Clay_String label;
uint64_t nextAllocation;
uint64_t capacity;
char *memory;
} Clay_Arena;
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_String *internalArray;
} Clay_StringArray;
Clay_StringArray Clay_warnings = (Clay_StringArray) {};
Clay_String *Clay__StringArray_Add(Clay_StringArray *array, Clay_String item)
{
if (array->length < array->capacity) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
else {
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
}
return &CLAY__STRING_DEFAULT;
}
Clay_StringArray Clay__StringArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena)
{
uint64_t totalSizeBytes = capacity * sizeof(Clay_String);
Clay_StringArray array = (Clay_StringArray){.capacity = capacity, .length = 0};
uint64_t nextAllocAddress = (uint64_t)(arena->nextAllocation + arena->memory);
uint64_t arenaOffsetAligned = nextAllocAddress + (CLAY__ALIGNMENT(Clay_String) - (nextAllocAddress % CLAY__ALIGNMENT(Clay_String)));
arenaOffsetAligned -= (uint64_t)arena->memory;
if (arenaOffsetAligned + totalSizeBytes <= arena->capacity) {
array.internalArray = (Clay_String*)(arena->memory + arenaOffsetAligned);
arena->nextAllocation = arenaOffsetAligned + totalSizeBytes;
}
else {
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Attempting to allocate array in arena, but arena is already at capacity and would overflow."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
}
return array;
}
void* Clay__Array_Allocate_Arena(uint32_t capacity, uint32_t itemSize, uint32_t alignment, Clay_Arena *arena)
{
uint64_t totalSizeBytes = capacity * itemSize;
uint64_t nextAllocAddress = (uint64_t)(arena->nextAllocation + arena->memory);
uint64_t arenaOffsetAligned = nextAllocAddress + (alignment - (nextAllocAddress % alignment));
arenaOffsetAligned -= (uint64_t)arena->memory;
if (arenaOffsetAligned + totalSizeBytes <= arena->capacity) {
arena->nextAllocation = arenaOffsetAligned + totalSizeBytes;
return (void*)(arena->memory + arenaOffsetAligned);
}
else {
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Attempting to allocate array in arena, but arena is already at capacity and would overflow."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
}
return CLAY__NULL;
}
bool Clay__Array_RangeCheck(int index, uint32_t length)
{
if (index < length && index >= 0) {
return true;
}
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Array access out of bounds."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
return false;
}
bool Clay__Array_IncrementCapacityCheck(uint32_t length, uint32_t capacity)
{
if (length < capacity) {
return true;
}
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Attempting to add to array that is already at capacity."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
return false;
}
bool CLAY__BOOL_DEFAULT = false;
// __GENERATED__ template array_define TYPE=bool NAME=Clay__BoolArray
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
bool *internalArray;
} Clay__BoolArray;
Clay__BoolArray Clay__BoolArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__BoolArray){.capacity = capacity, .length = 0, .internalArray = (bool *)Clay__Array_Allocate_Arena(capacity, sizeof(bool), CLAY__ALIGNMENT(bool), arena)};
}
#pragma endregion
// __GENERATED__ template
typedef struct {
float r, g, b, a;
} Clay_Color;
typedef struct {
float x, y, width, height;
} Clay_BoundingBox;
typedef struct {
float width, height;
} Clay_Dimensions;
typedef struct {
float x, y;
} Clay_Vector2;
typedef enum __attribute__((__packed__)) {
CLAY_LEFT_TO_RIGHT,
CLAY_TOP_TO_BOTTOM,
} Clay_LayoutDirection;
typedef enum __attribute__((__packed__)) {
CLAY_ALIGN_X_LEFT,
CLAY_ALIGN_X_RIGHT,
CLAY_ALIGN_X_CENTER,
} Clay_LayoutAlignmentX;
typedef enum __attribute__((__packed__)) {
CLAY_ALIGN_Y_TOP,
CLAY_ALIGN_Y_BOTTOM,
CLAY_ALIGN_Y_CENTER,
} Clay_LayoutAlignmentY;
typedef enum __attribute__((__packed__)) {
CLAY__SIZING_TYPE_FIT,
CLAY__SIZING_TYPE_GROW,
CLAY__SIZING_TYPE_PERCENT,
} Clay__SizingType;
typedef enum {
CLAY_RENDER_COMMAND_TYPE_NONE,
CLAY_RENDER_COMMAND_TYPE_RECTANGLE,
CLAY_RENDER_COMMAND_TYPE_BORDER,
CLAY_RENDER_COMMAND_TYPE_TEXT,
CLAY_RENDER_COMMAND_TYPE_IMAGE,
CLAY_RENDER_COMMAND_TYPE_SCISSOR_START,
CLAY_RENDER_COMMAND_TYPE_SCISSOR_END,
CLAY_RENDER_COMMAND_TYPE_CUSTOM,
} Clay_RenderCommandType;
typedef enum __attribute__((__packed__)) {
CLAY__LAYOUT_ELEMENT_TYPE_CONTAINER,
CLAY__LAYOUT_ELEMENT_TYPE_RECTANGLE,
CLAY__LAYOUT_ELEMENT_TYPE_BORDER_CONTAINER,
CLAY__LAYOUT_ELEMENT_TYPE_FLOATING_CONTAINER,
CLAY__LAYOUT_ELEMENT_TYPE_SCROLL_CONTAINER,
CLAY__LAYOUT_ELEMENT_TYPE_IMAGE,
CLAY__LAYOUT_ELEMENT_TYPE_TEXT,
CLAY__LAYOUT_ELEMENT_TYPE_CUSTOM,
} Clay__LayoutElementType;
Clay_RenderCommandType Clay__LayoutElementTypeToRenderCommandType[] = {
[CLAY__LAYOUT_ELEMENT_TYPE_CONTAINER] = CLAY_RENDER_COMMAND_TYPE_NONE,
[CLAY__LAYOUT_ELEMENT_TYPE_RECTANGLE] = CLAY_RENDER_COMMAND_TYPE_RECTANGLE,
[CLAY__LAYOUT_ELEMENT_TYPE_FLOATING_CONTAINER] = CLAY_RENDER_COMMAND_TYPE_NONE,
[CLAY__LAYOUT_ELEMENT_TYPE_SCROLL_CONTAINER] = CLAY_RENDER_COMMAND_TYPE_NONE,
[CLAY__LAYOUT_ELEMENT_TYPE_BORDER_CONTAINER] = CLAY_RENDER_COMMAND_TYPE_BORDER,
[CLAY__LAYOUT_ELEMENT_TYPE_IMAGE] = CLAY_RENDER_COMMAND_TYPE_IMAGE,
[CLAY__LAYOUT_ELEMENT_TYPE_TEXT] = CLAY_RENDER_COMMAND_TYPE_TEXT,
[CLAY__LAYOUT_ELEMENT_TYPE_CUSTOM] = CLAY_RENDER_COMMAND_TYPE_CUSTOM,
};
typedef enum __attribute__((__packed__)) {
CLAY_ATTACH_POINT_LEFT_TOP,
CLAY_ATTACH_POINT_LEFT_CENTER,
CLAY_ATTACH_POINT_LEFT_BOTTOM,
CLAY_ATTACH_POINT_CENTER_TOP,
CLAY_ATTACH_POINT_CENTER_CENTER,
CLAY_ATTACH_POINT_CENTER_BOTTOM,
CLAY_ATTACH_POINT_RIGHT_TOP,
CLAY_ATTACH_POINT_RIGHT_CENTER,
CLAY_ATTACH_POINT_RIGHT_BOTTOM,
} Clay_FloatingAttachPointType;
typedef struct
{
Clay_FloatingAttachPointType element;
Clay_FloatingAttachPointType parent;
} Clay_FloatingAttachPoints;
typedef struct {
Clay_LayoutAlignmentX x;
Clay_LayoutAlignmentY y;
} Clay_ChildAlignment;
typedef struct {
float min;
float max;
} Clay_SizingMinMax;
typedef struct {
union {
Clay_SizingMinMax sizeMinMax;
float sizePercent;
};
Clay__SizingType type;
} Clay_SizingAxis;
typedef struct {
Clay_SizingAxis width;
Clay_SizingAxis height;
} Clay_Sizing;
typedef struct {
uint16_t x;
uint16_t y;
} Clay_Padding;
typedef struct {
float topLeft;
float topRight;
float bottomLeft;
float bottomRight;
} Clay_CornerRadius;
typedef struct {
Clay_Sizing sizing;
Clay_Padding padding;
uint16_t childGap;
Clay_LayoutDirection layoutDirection;
Clay_ChildAlignment childAlignment;
} Clay_LayoutConfig;
Clay_LayoutConfig CLAY_LAYOUT_DEFAULT = (Clay_LayoutConfig){};
// __GENERATED__ template array_define,array_add TYPE=Clay_LayoutConfig NAME=Clay__LayoutConfigArray DEFAULT_VALUE=&CLAY_LAYOUT_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_LayoutConfig *internalArray;
} Clay__LayoutConfigArray;
Clay__LayoutConfigArray Clay__LayoutConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__LayoutConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_LayoutConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_LayoutConfig), CLAY__ALIGNMENT(Clay_LayoutConfig), arena)};
}
Clay_LayoutConfig *Clay__LayoutConfigArray_Add(Clay__LayoutConfigArray *array, Clay_LayoutConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY_LAYOUT_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct {
Clay_Color color;
Clay_CornerRadius cornerRadius;
#ifdef CLAY_EXTEND_CONFIG_RECTANGLE
CLAY_EXTEND_CONFIG_RECTANGLE
#endif
} Clay_RectangleElementConfig;
Clay_RectangleElementConfig CLAY__RECTANGLE_ELEMENT_CONFIG_DEFAULT = (Clay_RectangleElementConfig){0};
// __GENERATED__ template array_define,array_add TYPE=Clay_RectangleElementConfig NAME=Clay__RectangleElementConfigArray DEFAULT_VALUE=&CLAY__RECTANGLE_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_RectangleElementConfig *internalArray;
} Clay__RectangleElementConfigArray;
Clay__RectangleElementConfigArray Clay__RectangleElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__RectangleElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_RectangleElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_RectangleElementConfig), CLAY__ALIGNMENT(Clay_RectangleElementConfig), arena)};
}
Clay_RectangleElementConfig *Clay__RectangleElementConfigArray_Add(Clay__RectangleElementConfigArray *array, Clay_RectangleElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__RECTANGLE_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_Color textColor;
uint16_t fontId;
uint16_t fontSize;
uint16_t letterSpacing;
uint16_t lineSpacing;
#ifdef CLAY_EXTEND_CONFIG_TEXT
CLAY_EXTEND_CONFIG_TEXT
#endif
} Clay_TextElementConfig;
Clay_TextElementConfig CLAY__TEXT_ELEMENT_CONFIG_DEFAULT = (Clay_TextElementConfig) {};
// __GENERATED__ template array_define,array_add TYPE=Clay_TextElementConfig NAME=Clay__TextElementConfigArray DEFAULT_VALUE=&CLAY__TEXT_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_TextElementConfig *internalArray;
} Clay__TextElementConfigArray;
Clay__TextElementConfigArray Clay__TextElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__TextElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_TextElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_TextElementConfig), CLAY__ALIGNMENT(Clay_TextElementConfig), arena)};
}
Clay_TextElementConfig *Clay__TextElementConfigArray_Add(Clay__TextElementConfigArray *array, Clay_TextElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__TEXT_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
void * imageData;
Clay_Dimensions sourceDimensions;
#ifdef CLAY_EXTEND_CONFIG_IMAGE
CLAY_EXTEND_CONFIG_IMAGE
#endif
} Clay_ImageElementConfig;
Clay_ImageElementConfig CLAY__IMAGE_ELEMENT_CONFIG_DEFAULT = (Clay_ImageElementConfig) {};
// __GENERATED__ template array_define,array_add TYPE=Clay_ImageElementConfig NAME=Clay__ImageElementConfigArray DEFAULT_VALUE=&CLAY__IMAGE_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_ImageElementConfig *internalArray;
} Clay__ImageElementConfigArray;
Clay__ImageElementConfigArray Clay__ImageElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__ImageElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_ImageElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_ImageElementConfig), CLAY__ALIGNMENT(Clay_ImageElementConfig), arena)};
}
Clay_ImageElementConfig *Clay__ImageElementConfigArray_Add(Clay__ImageElementConfigArray *array, Clay_ImageElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__IMAGE_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_Vector2 offset;
Clay_Dimensions expand;
uint16_t zIndex;
uint32_t parentId;
Clay_FloatingAttachPoints attachment;
} Clay_FloatingElementConfig;
Clay_FloatingElementConfig CLAY__FLOATING_ELEMENT_CONFIG_DEFAULT = (Clay_FloatingElementConfig) {};
// __GENERATED__ template array_define,array_add TYPE=Clay_FloatingElementConfig NAME=Clay__FloatingElementConfigArray DEFAULT_VALUE=&CLAY__FLOATING_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_FloatingElementConfig *internalArray;
} Clay__FloatingElementConfigArray;
Clay__FloatingElementConfigArray Clay__FloatingElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__FloatingElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_FloatingElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_FloatingElementConfig), CLAY__ALIGNMENT(Clay_FloatingElementConfig), arena)};
}
Clay_FloatingElementConfig *Clay__FloatingElementConfigArray_Add(Clay__FloatingElementConfigArray *array, Clay_FloatingElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__FLOATING_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
#ifndef CLAY_EXTEND_CONFIG_CUSTOM
void* customData;
#else
CLAY_EXTEND_CONFIG_CUSTOM
#endif
} Clay_CustomElementConfig;
Clay_CustomElementConfig CLAY__CUSTOM_ELEMENT_CONFIG_DEFAULT = (Clay_CustomElementConfig) {};
// __GENERATED__ template array_define,array_add TYPE=Clay_CustomElementConfig NAME=Clay__CustomElementConfigArray DEFAULT_VALUE=&CLAY__CUSTOM_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_CustomElementConfig *internalArray;
} Clay__CustomElementConfigArray;
Clay__CustomElementConfigArray Clay__CustomElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__CustomElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_CustomElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_CustomElementConfig), CLAY__ALIGNMENT(Clay_CustomElementConfig), arena)};
}
Clay_CustomElementConfig *Clay__CustomElementConfigArray_Add(Clay__CustomElementConfigArray *array, Clay_CustomElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__CUSTOM_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
bool horizontal;
bool vertical;
} Clay_ScrollElementConfig;
Clay_ScrollElementConfig CLAY__SCROLL_CONTAINER_ELEMENT_CONFIG_DEFAULT = (Clay_ScrollElementConfig ) {};
// __GENERATED__ template array_define,array_add TYPE=Clay_ScrollElementConfig NAME=Clay__ScrollElementConfigArray DEFAULT_VALUE=&CLAY__SCROLL_CONTAINER_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_ScrollElementConfig *internalArray;
} Clay__ScrollElementConfigArray;
Clay__ScrollElementConfigArray Clay__ScrollElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__ScrollElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_ScrollElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_ScrollElementConfig), CLAY__ALIGNMENT(Clay_ScrollElementConfig), arena)};
}
Clay_ScrollElementConfig *Clay__ScrollElementConfigArray_Add(Clay__ScrollElementConfigArray *array, Clay_ScrollElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__SCROLL_CONTAINER_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
uint32_t width;
Clay_Color color;
} Clay_Border;
typedef struct
{
Clay_Border left;
Clay_Border right;
Clay_Border top;
Clay_Border bottom;
Clay_Border betweenChildren;
Clay_CornerRadius cornerRadius;
} Clay_BorderElementConfig;
Clay_BorderElementConfig CLAY__BORDER_CONTAINER_ELEMENT_CONFIG_DEFAULT = (Clay_BorderElementConfig ) {};
// __GENERATED__ template array_define,array_add TYPE=Clay_BorderElementConfig NAME=Clay__BorderElementConfigArray DEFAULT_VALUE=&CLAY__BORDER_CONTAINER_ELEMENT_CONFIG_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_BorderElementConfig *internalArray;
} Clay__BorderElementConfigArray;
Clay__BorderElementConfigArray Clay__BorderElementConfigArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__BorderElementConfigArray){.capacity = capacity, .length = 0, .internalArray = (Clay_BorderElementConfig *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_BorderElementConfig), CLAY__ALIGNMENT(Clay_BorderElementConfig), arena)};
}
Clay_BorderElementConfig *Clay__BorderElementConfigArray_Add(Clay__BorderElementConfigArray *array, Clay_BorderElementConfig item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__BORDER_CONTAINER_ELEMENT_CONFIG_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
struct t_Clay_LayoutElement **elements;
uint16_t length;
} Clay__LayoutElementChildren;
typedef union
{
Clay_RectangleElementConfig *rectangleElementConfig;
Clay_TextElementConfig *textElementConfig;
Clay_ImageElementConfig *imageElementConfig;
Clay_FloatingElementConfig *floatingElementConfig;
Clay_CustomElementConfig *customElementConfig;
Clay_ScrollElementConfig *scrollElementConfig;
Clay_BorderElementConfig *borderElementConfig;
} Clay_ElementConfigUnion;
typedef struct t_Clay_LayoutElement
{
#ifdef CLAY_DEBUG
Clay_String name;
#endif
union {
Clay__LayoutElementChildren children;
Clay_String text;
};
Clay_Dimensions dimensions;
Clay_Dimensions minDimensions;
Clay_LayoutConfig *layoutConfig;
Clay_ElementConfigUnion elementConfig;
uint32_t id;
Clay__LayoutElementType elementType;
} Clay_LayoutElement;
Clay_LayoutElement CLAY__LAYOUT_ELEMENT_DEFAULT = (Clay_LayoutElement) {};
// __GENERATED__ template array_define,array_add,array_get TYPE=Clay_LayoutElement NAME=Clay_LayoutElementArray DEFAULT_VALUE=&CLAY__LAYOUT_ELEMENT_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_LayoutElement *internalArray;
} Clay_LayoutElementArray;
Clay_LayoutElementArray Clay_LayoutElementArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay_LayoutElementArray){.capacity = capacity, .length = 0, .internalArray = (Clay_LayoutElement *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_LayoutElement), CLAY__ALIGNMENT(Clay_LayoutElement), arena)};
}
Clay_LayoutElement *Clay_LayoutElementArray_Add(Clay_LayoutElementArray *array, Clay_LayoutElement item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__LAYOUT_ELEMENT_DEFAULT;
}
Clay_LayoutElement *Clay_LayoutElementArray_Get(Clay_LayoutElementArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__LAYOUT_ELEMENT_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
// __GENERATED__ template array_define,array_add,array_get,array_remove_swapback TYPE=Clay_LayoutElement* NAME=Clay__LayoutElementPointerArray DEFAULT_VALUE=CLAY__NULL
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_LayoutElement* *internalArray;
} Clay__LayoutElementPointerArray;
Clay__LayoutElementPointerArray Clay__LayoutElementPointerArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__LayoutElementPointerArray){.capacity = capacity, .length = 0, .internalArray = (Clay_LayoutElement* *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_LayoutElement*), CLAY__ALIGNMENT(Clay_LayoutElement*), arena)};
}
Clay_LayoutElement* *Clay__LayoutElementPointerArray_Add(Clay__LayoutElementPointerArray *array, Clay_LayoutElement* item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return CLAY__NULL;
}
Clay_LayoutElement* *Clay__LayoutElementPointerArray_Get(Clay__LayoutElementPointerArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : CLAY__NULL;
}
Clay_LayoutElement* Clay__LayoutElementPointerArray_RemoveSwapback(Clay__LayoutElementPointerArray *array, int index) {
if (Clay__Array_RangeCheck(index, array->length)) {
array->length--;
Clay_LayoutElement* removed = array->internalArray[index];
array->internalArray[index] = array->internalArray[array->length];
return removed;
}
return CLAY__NULL;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_BoundingBox boundingBox;
Clay_ElementConfigUnion config;
Clay_String text; // TODO I wish there was a way to avoid having to have this on every render command
uint32_t id;
Clay_RenderCommandType commandType;
} Clay_RenderCommand;
Clay_RenderCommand CLAY__RENDER_COMMAND_DEFAULT = (Clay_RenderCommand) {};
// __GENERATED__ template array_define TYPE=Clay_RenderCommand NAME=Clay_RenderCommandArray
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_RenderCommand *internalArray;
} Clay_RenderCommandArray;
Clay_RenderCommandArray Clay_RenderCommandArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay_RenderCommandArray){.capacity = capacity, .length = 0, .internalArray = (Clay_RenderCommand *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_RenderCommand), CLAY__ALIGNMENT(Clay_RenderCommand), arena)};
}
#pragma endregion
// __GENERATED__ template
// __GENERATED__ template array_add TYPE=Clay_RenderCommand NAME=Clay_RenderCommandArray DEFAULT_VALUE=&CLAY__RENDER_COMMAND_DEFAULT
#pragma region generated
Clay_RenderCommand *Clay_RenderCommandArray_Add(Clay_RenderCommandArray *array, Clay_RenderCommand item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__RENDER_COMMAND_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
// __GENERATED__ template array_get TYPE=Clay_RenderCommand NAME=Clay_RenderCommandArray DEFAULT_VALUE=&CLAY__RENDER_COMMAND_DEFAULT
#pragma region generated
Clay_RenderCommand *Clay_RenderCommandArray_Get(Clay_RenderCommandArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__RENDER_COMMAND_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_LayoutElement *layoutElement;
Clay_BoundingBox boundingBox;
Clay_Dimensions contentSize;
Clay_Vector2 scrollOrigin;
Clay_Vector2 pointerOrigin;
Clay_Vector2 scrollMomentum;
Clay_Vector2 scrollPosition;
Clay_Vector2 previousDelta;
float momentumTime;
uint32_t elementId;
bool openThisFrame;
bool pointerScrollActive;
} Clay__ScrollContainerDataInternal;
Clay__ScrollContainerDataInternal CLAY__SCROLL_CONTAINER_DEFAULT = (Clay__ScrollContainerDataInternal) {};
// __GENERATED__ template define,array_add,array_get TYPE=Clay__ScrollContainerDataInternal NAME=Clay__ScrollContainerDataInternalArray DEFAULT_VALUE=&CLAY__SCROLL_CONTAINER_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay__ScrollContainerDataInternal *internalArray;
} Clay__ScrollContainerDataInternalArray;
Clay__ScrollContainerDataInternalArray Clay__ScrollContainerDataInternalArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__ScrollContainerDataInternalArray){.capacity = capacity, .length = 0, .internalArray = (Clay__ScrollContainerDataInternal *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay__ScrollContainerDataInternal), CLAY__ALIGNMENT(Clay__ScrollContainerDataInternal), arena)};
}
Clay__ScrollContainerDataInternal *Clay__ScrollContainerDataInternalArray_Add(Clay__ScrollContainerDataInternalArray *array, Clay__ScrollContainerDataInternal item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__SCROLL_CONTAINER_DEFAULT;
}
Clay__ScrollContainerDataInternal *Clay__ScrollContainerDataInternalArray_Get(Clay__ScrollContainerDataInternalArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__SCROLL_CONTAINER_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
// __GENERATED__ template array_remove_swapback TYPE=Clay__ScrollContainerDataInternal NAME=Clay__ScrollContainerDataInternalArray DEFAULT_VALUE=CLAY__SCROLL_CONTAINER_DEFAULT
#pragma region generated
Clay__ScrollContainerDataInternal Clay__ScrollContainerDataInternalArray_RemoveSwapback(Clay__ScrollContainerDataInternalArray *array, int index) {
if (Clay__Array_RangeCheck(index, array->length)) {
array->length--;
Clay__ScrollContainerDataInternal removed = array->internalArray[index];
array->internalArray[index] = array->internalArray[array->length];
return removed;
}
return CLAY__SCROLL_CONTAINER_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_BoundingBox boundingBox;
uint32_t id;
Clay_LayoutElement* layoutElement;
int32_t nextIndex;
} Clay_LayoutElementHashMapItem;
Clay_LayoutElementHashMapItem CLAY__LAYOUT_ELEMENT_HASH_MAP_ITEM_DEFAULT = (Clay_LayoutElementHashMapItem) { .layoutElement = &CLAY__LAYOUT_ELEMENT_DEFAULT };
// __GENERATED__ template array_define,array_get,array_add,array_set TYPE=Clay_LayoutElementHashMapItem NAME=Clay__LayoutElementHashMapItemArray DEFAULT_VALUE=&CLAY__LAYOUT_ELEMENT_HASH_MAP_ITEM_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay_LayoutElementHashMapItem *internalArray;
} Clay__LayoutElementHashMapItemArray;
Clay__LayoutElementHashMapItemArray Clay__LayoutElementHashMapItemArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__LayoutElementHashMapItemArray){.capacity = capacity, .length = 0, .internalArray = (Clay_LayoutElementHashMapItem *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay_LayoutElementHashMapItem), CLAY__ALIGNMENT(Clay_LayoutElementHashMapItem), arena)};
}
Clay_LayoutElementHashMapItem *Clay__LayoutElementHashMapItemArray_Get(Clay__LayoutElementHashMapItemArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__LAYOUT_ELEMENT_HASH_MAP_ITEM_DEFAULT;
}
Clay_LayoutElementHashMapItem *Clay__LayoutElementHashMapItemArray_Add(Clay__LayoutElementHashMapItemArray *array, Clay_LayoutElementHashMapItem item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__LAYOUT_ELEMENT_HASH_MAP_ITEM_DEFAULT;
}
void Clay__LayoutElementHashMapItemArray_Set(Clay__LayoutElementHashMapItemArray *array, int index, Clay_LayoutElementHashMapItem value) {
if (index < array->capacity && index >= 0) {
array->internalArray[index] = value;
array->length = index < array->length ? array->length : index + 1;
} else {
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Attempting to allocate array in arena, but arena is already at capacity and would overflow."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
}
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_Dimensions dimensions;
uint32_t id;
int32_t nextIndex;
} Clay__MeasureTextCacheItem;
Clay__MeasureTextCacheItem CLAY__MEASURE_TEXT_CACHE_ITEM_DEFAULT = (Clay__MeasureTextCacheItem) { };
// __GENERATED__ template array_define,array_get,array_add,array_set TYPE=Clay__MeasureTextCacheItem NAME=Clay__MeasureTextCacheItemArray DEFAULT_VALUE=&CLAY__MEASURE_TEXT_CACHE_ITEM_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay__MeasureTextCacheItem *internalArray;
} Clay__MeasureTextCacheItemArray;
Clay__MeasureTextCacheItemArray Clay__MeasureTextCacheItemArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__MeasureTextCacheItemArray){.capacity = capacity, .length = 0, .internalArray = (Clay__MeasureTextCacheItem *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay__MeasureTextCacheItem), CLAY__ALIGNMENT(Clay__MeasureTextCacheItem), arena)};
}
Clay__MeasureTextCacheItem *Clay__MeasureTextCacheItemArray_Get(Clay__MeasureTextCacheItemArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__MEASURE_TEXT_CACHE_ITEM_DEFAULT;
}
Clay__MeasureTextCacheItem *Clay__MeasureTextCacheItemArray_Add(Clay__MeasureTextCacheItemArray *array, Clay__MeasureTextCacheItem item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__MEASURE_TEXT_CACHE_ITEM_DEFAULT;
}
void Clay__MeasureTextCacheItemArray_Set(Clay__MeasureTextCacheItemArray *array, int index, Clay__MeasureTextCacheItem value) {
if (index < array->capacity && index >= 0) {
array->internalArray[index] = value;
array->length = index < array->length ? array->length : index + 1;
} else {
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Attempting to allocate array in arena, but arena is already at capacity and would overflow."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
}
}
#pragma endregion
// __GENERATED__ template
int32_t CLAY__INDEX_ARRAY_DEFAULT_VALUE = -1;
// __GENERATED__ template array_define,array_get,array_add,array_set TYPE=int32_t NAME=Clay__int32_tArray DEFAULT_VALUE=&CLAY__INDEX_ARRAY_DEFAULT_VALUE
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
int32_t *internalArray;
} Clay__int32_tArray;
Clay__int32_tArray Clay__int32_tArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__int32_tArray){.capacity = capacity, .length = 0, .internalArray = (int32_t *)Clay__Array_Allocate_Arena(capacity, sizeof(int32_t), CLAY__ALIGNMENT(int32_t), arena)};
}
int32_t *Clay__int32_tArray_Get(Clay__int32_tArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__INDEX_ARRAY_DEFAULT_VALUE;
}
int32_t *Clay__int32_tArray_Add(Clay__int32_tArray *array, int32_t item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__INDEX_ARRAY_DEFAULT_VALUE;
}
void Clay__int32_tArray_Set(Clay__int32_tArray *array, int index, int32_t value) {
if (index < array->capacity && index >= 0) {
array->internalArray[index] = value;
array->length = index < array->length ? array->length : index + 1;
} else {
Clay__StringArray_Add(&Clay_warnings, CLAY_STRING("Attempting to allocate array in arena, but arena is already at capacity and would overflow."));
#ifdef CLAY_OVERFLOW_TRAP
raise(SIGTRAP);
#endif
}
}
#pragma endregion
// __GENERATED__ template
Clay_LayoutElement *Clay__openLayoutElement = CLAY__NULL;
typedef struct
{
Clay_LayoutElement *layoutElement;
Clay_Vector2 position;
Clay_Vector2 nextChildOffset;
} Clay__LayoutElementTreeNode;
Clay__LayoutElementTreeNode CLAY__LAYOUT_ELEMENT_TREE_NODE_DEFAULT = (Clay__LayoutElementTreeNode) {};
// __GENERATED__ template array_define,array_add,array_get TYPE=Clay__LayoutElementTreeNode NAME=Clay__LayoutElementTreeNodeArray DEFAULT_VALUE=&CLAY__LAYOUT_ELEMENT_TREE_NODE_DEFAULT
#pragma region generated
typedef struct
{
uint32_t capacity;
uint32_t length;
Clay__LayoutElementTreeNode *internalArray;
} Clay__LayoutElementTreeNodeArray;
Clay__LayoutElementTreeNodeArray Clay__LayoutElementTreeNodeArray_Allocate_Arena(uint32_t capacity, Clay_Arena *arena) {
return (Clay__LayoutElementTreeNodeArray){.capacity = capacity, .length = 0, .internalArray = (Clay__LayoutElementTreeNode *)Clay__Array_Allocate_Arena(capacity, sizeof(Clay__LayoutElementTreeNode), CLAY__ALIGNMENT(Clay__LayoutElementTreeNode), arena)};
}
Clay__LayoutElementTreeNode *Clay__LayoutElementTreeNodeArray_Add(Clay__LayoutElementTreeNodeArray *array, Clay__LayoutElementTreeNode item) {
if (Clay__Array_IncrementCapacityCheck(array->length, array->capacity)) {
array->internalArray[array->length++] = item;
return &array->internalArray[array->length - 1];
}
return &CLAY__LAYOUT_ELEMENT_TREE_NODE_DEFAULT;
}
Clay__LayoutElementTreeNode *Clay__LayoutElementTreeNodeArray_Get(Clay__LayoutElementTreeNodeArray *array, int index) {
return Clay__Array_RangeCheck(index, array->length) ? &array->internalArray[index] : &CLAY__LAYOUT_ELEMENT_TREE_NODE_DEFAULT;
}
#pragma endregion
// __GENERATED__ template
typedef struct
{
Clay_LayoutElement *layoutElement;
uint32_t parentId; // This can be zero in the case of the root layout tree
uint32_t clipElementId; // This can be zero if there is no clip element