- 37개 파일 IP → zioinfo.co.kr 치환 (소스/매뉴얼/설정/하네스) - Manager DrConsole/NetworkConsole/CsapConsole 빌드 + /var/www/manager/ 배포 - 테스트: Manager HTTP 200, ITSM 신규 API 7개 전체 200 Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
831 lines
24 KiB
C++
831 lines
24 KiB
C++
/*
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* Copyright (c) Meta Platforms, Inc. and affiliates.
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*
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* This source code is licensed under the MIT license found in the
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* LICENSE file in the root directory of this source tree.
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*/
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#pragma once
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#include <folly/Conv.h>
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#include <folly/dynamic.h>
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#include <glog/logging.h>
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#include <react/debug/react_native_expect.h>
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#include <react/renderer/components/view/primitives.h>
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#include <react/renderer/core/LayoutMetrics.h>
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#include <react/renderer/core/PropsParserContext.h>
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#include <react/renderer/graphics/Transform.h>
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#include <react/renderer/graphics/ValueUnit.h>
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#include <stdlib.h>
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#include <yoga/YGEnums.h>
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#include <yoga/node/Node.h>
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#include <algorithm>
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#include <cmath>
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#include <optional>
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#include <unordered_map>
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namespace facebook::react {
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/*
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* Yoga's `float` <-> React Native's `Float` (can be `double` or `float`)
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*
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* Regular Yoga `float` values represent some onscreen-position-related values.
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* They can be real numbers or special value `YGUndefined` (which actually is
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* `NaN`). Conceptually, layout computation process inside Yoga should never
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* produce `NaN` values from non-`NaN` values. At the same time, ` YGUndefined`
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* values have special "no limit" meaning in Yoga, therefore ` YGUndefined`
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* usually corresponds to `Infinity` value.
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*/
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inline Float floatFromYogaFloat(float value) {
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static_assert(
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YGUndefined != YGUndefined,
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"The code of this function assumes that YGUndefined is NaN.");
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if (std::isnan(value) /* means: `value == YGUndefined` */) {
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return std::numeric_limits<Float>::infinity();
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}
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return (Float)value;
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}
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inline float yogaFloatFromFloat(Float value) {
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if (!std::isfinite(value)) {
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return YGUndefined;
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}
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return (float)value;
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}
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/*
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* `yoga::FloatOptional` <-> React Native's `Float`
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*
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* `yoga::FloatOptional` represents optional dimensionless float values in Yoga
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* Style object (e.g. `flex`). The most suitable analogy to empty
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* `yoga::FloatOptional` is `NaN` value.
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* `yoga::FloatOptional` values are usually parsed from some outside data source
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* which usually has some special corresponding representation for an empty
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* value.
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*/
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inline Float floatFromYogaOptionalFloat(yoga::FloatOptional value) {
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if (value.isUndefined()) {
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return std::numeric_limits<Float>::quiet_NaN();
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}
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return floatFromYogaFloat(value.unwrap());
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}
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inline yoga::FloatOptional yogaOptionalFloatFromFloat(Float value) {
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if (std::isnan(value)) {
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return yoga::FloatOptional();
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}
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return yoga::FloatOptional((float)value);
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}
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inline std::optional<Float> optionalFloatFromYogaValue(
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const yoga::Style::Length& length,
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std::optional<Float> base = {}) {
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switch (length.unit()) {
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case yoga::Unit::Undefined:
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return {};
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case yoga::Unit::Point:
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return floatFromYogaOptionalFloat(length.value());
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case yoga::Unit::Percent:
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return base.has_value()
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? std::optional<Float>(
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base.value() * floatFromYogaOptionalFloat(length.value()))
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: std::optional<Float>();
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case yoga::Unit::Auto:
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return {};
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}
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}
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static inline PositionType positionTypeFromYogaPositionType(
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yoga::PositionType positionType) {
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switch (positionType) {
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case yoga::PositionType::Static:
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return PositionType::Static;
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case yoga::PositionType::Relative:
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return PositionType::Relative;
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case yoga::PositionType::Absolute:
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return PositionType::Absolute;
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}
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}
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inline LayoutMetrics layoutMetricsFromYogaNode(yoga::Node& yogaNode) {
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auto layoutMetrics = LayoutMetrics{};
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layoutMetrics.frame = Rect{
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Point{
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floatFromYogaFloat(YGNodeLayoutGetLeft(&yogaNode)),
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floatFromYogaFloat(YGNodeLayoutGetTop(&yogaNode))},
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Size{
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floatFromYogaFloat(YGNodeLayoutGetWidth(&yogaNode)),
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floatFromYogaFloat(YGNodeLayoutGetHeight(&yogaNode))}};
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layoutMetrics.borderWidth = EdgeInsets{
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floatFromYogaFloat(YGNodeLayoutGetBorder(&yogaNode, YGEdgeLeft)),
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floatFromYogaFloat(YGNodeLayoutGetBorder(&yogaNode, YGEdgeTop)),
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floatFromYogaFloat(YGNodeLayoutGetBorder(&yogaNode, YGEdgeRight)),
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floatFromYogaFloat(YGNodeLayoutGetBorder(&yogaNode, YGEdgeBottom))};
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layoutMetrics.contentInsets = EdgeInsets{
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layoutMetrics.borderWidth.left +
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floatFromYogaFloat(YGNodeLayoutGetPadding(&yogaNode, YGEdgeLeft)),
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layoutMetrics.borderWidth.top +
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floatFromYogaFloat(YGNodeLayoutGetPadding(&yogaNode, YGEdgeTop)),
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layoutMetrics.borderWidth.right +
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floatFromYogaFloat(YGNodeLayoutGetPadding(&yogaNode, YGEdgeRight)),
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layoutMetrics.borderWidth.bottom +
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floatFromYogaFloat(YGNodeLayoutGetPadding(&yogaNode, YGEdgeBottom))};
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layoutMetrics.displayType = yogaNode.style().display() == yoga::Display::None
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? DisplayType::None
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: DisplayType::Flex;
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layoutMetrics.positionType =
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positionTypeFromYogaPositionType(yogaNode.style().positionType());
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layoutMetrics.layoutDirection =
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YGNodeLayoutGetDirection(&yogaNode) == YGDirectionRTL
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? LayoutDirection::RightToLeft
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: LayoutDirection::LeftToRight;
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return layoutMetrics;
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}
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inline YGDirection yogaDirectionFromLayoutDirection(LayoutDirection direction) {
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switch (direction) {
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case LayoutDirection::Undefined:
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return YGDirectionInherit;
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case LayoutDirection::LeftToRight:
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return YGDirectionLTR;
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case LayoutDirection::RightToLeft:
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return YGDirectionRTL;
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}
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Direction& result) {
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result = yoga::Direction::Inherit;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "inherit") {
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result = yoga::Direction::Inherit;
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return;
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}
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if (stringValue == "ltr") {
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result = yoga::Direction::LTR;
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return;
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}
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if (stringValue == "rtl") {
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result = yoga::Direction::RTL;
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return;
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}
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LOG(ERROR) << "Could not parse Direction:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::FlexDirection& result) {
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result = yoga::FlexDirection::Column;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "row") {
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result = yoga::FlexDirection::Row;
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return;
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}
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if (stringValue == "column") {
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result = yoga::FlexDirection::Column;
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return;
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}
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if (stringValue == "column-reverse") {
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result = yoga::FlexDirection::ColumnReverse;
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return;
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}
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if (stringValue == "row-reverse") {
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result = yoga::FlexDirection::RowReverse;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::FlexDirection:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Justify& result) {
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result = yoga::Justify::FlexStart;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "flex-start") {
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result = yoga::Justify::FlexStart;
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return;
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}
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if (stringValue == "center") {
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result = yoga::Justify::Center;
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return;
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}
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if (stringValue == "flex-end") {
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result = yoga::Justify::FlexEnd;
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return;
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}
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if (stringValue == "space-between") {
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result = yoga::Justify::SpaceBetween;
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return;
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}
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if (stringValue == "space-around") {
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result = yoga::Justify::SpaceAround;
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return;
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}
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if (stringValue == "space-evenly") {
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result = yoga::Justify::SpaceEvenly;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::Justify:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Align& result) {
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result = yoga::Align::Stretch;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "auto") {
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result = yoga::Align::Auto;
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return;
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}
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if (stringValue == "flex-start") {
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result = yoga::Align::FlexStart;
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return;
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}
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if (stringValue == "center") {
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result = yoga::Align::Center;
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return;
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}
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if (stringValue == "flex-end") {
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result = yoga::Align::FlexEnd;
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return;
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}
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if (stringValue == "stretch") {
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result = yoga::Align::Stretch;
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return;
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}
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if (stringValue == "baseline") {
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result = yoga::Align::Baseline;
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return;
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}
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if (stringValue == "space-between") {
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result = yoga::Align::SpaceBetween;
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return;
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}
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if (stringValue == "space-around") {
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result = yoga::Align::SpaceAround;
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return;
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}
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if (stringValue == "space-evenly") {
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result = yoga::Align::SpaceEvenly;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::Align:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::PositionType& result) {
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result = yoga::PositionType::Relative;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "static") {
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result = yoga::PositionType::Static;
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return;
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}
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if (stringValue == "relative") {
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result = yoga::PositionType::Relative;
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return;
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}
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if (stringValue == "absolute") {
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result = yoga::PositionType::Absolute;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::PositionType:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Wrap& result) {
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result = yoga::Wrap::NoWrap;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "nowrap") {
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result = yoga::Wrap::NoWrap;
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return;
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}
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if (stringValue == "wrap") {
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result = yoga::Wrap::Wrap;
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return;
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}
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if (stringValue == "wrap-reverse") {
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result = yoga::Wrap::WrapReverse;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::Wrap:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Overflow& result) {
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result = yoga::Overflow::Visible;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "visible") {
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result = yoga::Overflow::Visible;
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return;
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}
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if (stringValue == "hidden") {
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result = yoga::Overflow::Hidden;
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return;
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}
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if (stringValue == "scroll") {
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result = yoga::Overflow::Scroll;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::Overflow:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Display& result) {
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result = yoga::Display::Flex;
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>()) {
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return;
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}
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auto stringValue = (std::string)value;
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if (stringValue == "flex") {
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result = yoga::Display::Flex;
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return;
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}
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if (stringValue == "none") {
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result = yoga::Display::None;
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return;
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}
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LOG(ERROR) << "Could not parse yoga::Display:" << stringValue;
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react_native_expect(false);
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::Style::Length& result) {
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if (value.hasType<Float>()) {
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result = yoga::value::points((float)value);
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return;
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} else if (value.hasType<std::string>()) {
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const auto stringValue = (std::string)value;
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if (stringValue == "auto") {
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result = yoga::value::ofAuto();
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return;
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} else {
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if (stringValue.back() == '%') {
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auto tryValue = folly::tryTo<float>(
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std::string_view(stringValue).substr(0, stringValue.length() - 1));
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if (tryValue.hasValue()) {
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result = yoga::value::percent(tryValue.value());
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return;
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}
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} else {
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auto tryValue = folly::tryTo<float>(stringValue);
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if (tryValue.hasValue()) {
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result = yoga::value::points(tryValue.value());
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return;
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}
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}
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}
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}
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result = yoga::value::undefined();
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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YGValue& result) {
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yoga::Style::Length length{};
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fromRawValue(context, value, length);
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result = (YGValue)length;
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}
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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yoga::FloatOptional& result) {
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result = value.hasType<float>() ? yoga::FloatOptional((float)value)
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: yoga::FloatOptional();
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}
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inline Float toRadians(
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const RawValue& value,
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std::optional<Float> defaultValue) {
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if (value.hasType<Float>()) {
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return (Float)value;
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}
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react_native_expect(value.hasType<std::string>());
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if (!value.hasType<std::string>() && defaultValue.has_value()) {
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return *defaultValue;
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}
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auto stringValue = (std::string)value;
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char* suffixStart;
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double num = strtod(
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stringValue.c_str(), &suffixStart); // can't use std::stod, probably
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// because of old Android NDKs
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if (0 == strncmp(suffixStart, "deg", 3)) {
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return static_cast<Float>(num * M_PI / 180.0f);
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}
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return static_cast<Float>(num); // assume suffix is "rad"
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}
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|
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inline void fromRawValue(
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const PropsParserContext& context,
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const RawValue& value,
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Transform& result) {
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auto transformMatrix = Transform{};
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react_native_expect(value.hasType<std::vector<RawValue>>());
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if (!value.hasType<std::vector<RawValue>>()) {
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result = transformMatrix;
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return;
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}
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auto configurations = static_cast<std::vector<RawValue>>(value);
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for (const auto& configuration : configurations) {
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if (!configuration.hasType<std::unordered_map<std::string, RawValue>>()) {
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// TODO: The following checks have to be removed after codegen is shipped.
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// See T45151459.
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continue;
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}
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|
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auto configurationPair =
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static_cast<std::unordered_map<std::string, RawValue>>(configuration);
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auto pair = configurationPair.begin();
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auto operation = pair->first;
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auto& parameters = pair->second;
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|
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if (operation == "matrix") {
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react_native_expect(parameters.hasType<std::vector<Float>>());
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auto numbers = (std::vector<Float>)parameters;
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react_native_expect(numbers.size() == transformMatrix.matrix.size());
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auto i = 0;
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for (auto number : numbers) {
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transformMatrix.matrix[i++] = number;
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}
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transformMatrix.operations.push_back(
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TransformOperation{TransformOperationType::Arbitrary, 0, 0, 0});
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} else if (operation == "perspective") {
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transformMatrix =
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transformMatrix * Transform::Perspective((Float)parameters);
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} else if (operation == "rotateX") {
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transformMatrix = transformMatrix *
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Transform::Rotate(toRadians(parameters, 0.0f), 0, 0);
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} else if (operation == "rotateY") {
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transformMatrix = transformMatrix *
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Transform::Rotate(0, toRadians(parameters, 0.0f), 0);
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} else if (operation == "rotateZ" || operation == "rotate") {
|
|
transformMatrix = transformMatrix *
|
|
Transform::Rotate(0, 0, toRadians(parameters, 0.0f));
|
|
} else if (operation == "scale") {
|
|
auto number = (Float)parameters;
|
|
transformMatrix =
|
|
transformMatrix * Transform::Scale(number, number, number);
|
|
} else if (operation == "scaleX") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Scale((Float)parameters, 1, 1);
|
|
} else if (operation == "scaleY") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Scale(1, (Float)parameters, 1);
|
|
} else if (operation == "scaleZ") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Scale(1, 1, (Float)parameters);
|
|
} else if (operation == "translate") {
|
|
auto numbers = (std::vector<Float>)parameters;
|
|
transformMatrix = transformMatrix *
|
|
Transform::Translate(numbers.at(0), numbers.at(1), 0);
|
|
} else if (operation == "translateX") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Translate((Float)parameters, 0, 0);
|
|
} else if (operation == "translateY") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Translate(0, (Float)parameters, 0);
|
|
} else if (operation == "skewX") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Skew(toRadians(parameters, 0.0f), 0);
|
|
} else if (operation == "skewY") {
|
|
transformMatrix =
|
|
transformMatrix * Transform::Skew(0, toRadians(parameters, 0.0f));
|
|
}
|
|
}
|
|
|
|
result = transformMatrix;
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& /*context*/,
|
|
const RawValue& value,
|
|
TransformOrigin& result) {
|
|
react_native_expect(value.hasType<std::vector<RawValue>>());
|
|
auto origins = (std::vector<RawValue>)value;
|
|
|
|
TransformOrigin transformOrigin;
|
|
|
|
const size_t maxIndex = 2;
|
|
|
|
for (size_t i = 0; i < std::min(origins.size(), maxIndex); i++) {
|
|
const auto& origin = origins[i];
|
|
if (origin.hasType<Float>()) {
|
|
auto originFloat = (float)origin;
|
|
if (std::isfinite(originFloat)) {
|
|
transformOrigin.xy[i] = ValueUnit(originFloat, UnitType::Point);
|
|
} else {
|
|
transformOrigin.xy[i] = ValueUnit(0.0f, UnitType::Undefined);
|
|
}
|
|
} else if (origin.hasType<std::string>()) {
|
|
const auto stringValue = (std::string)origin;
|
|
|
|
if (stringValue.back() == '%') {
|
|
auto tryValue = folly::tryTo<float>(
|
|
std::string_view(stringValue).substr(0, stringValue.length() - 1));
|
|
if (tryValue.hasValue()) {
|
|
transformOrigin.xy[i] =
|
|
ValueUnit(tryValue.value(), UnitType::Percent);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (origins.size() >= 3 && origins[2].hasType<Float>()) {
|
|
transformOrigin.z = (Float)origins[2];
|
|
}
|
|
|
|
result = transformOrigin;
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& context,
|
|
const RawValue& value,
|
|
PointerEventsMode& result) {
|
|
result = PointerEventsMode::Auto;
|
|
react_native_expect(value.hasType<std::string>());
|
|
if (!value.hasType<std::string>()) {
|
|
return;
|
|
}
|
|
auto stringValue = (std::string)value;
|
|
if (stringValue == "auto") {
|
|
result = PointerEventsMode::Auto;
|
|
return;
|
|
}
|
|
if (stringValue == "none") {
|
|
result = PointerEventsMode::None;
|
|
return;
|
|
}
|
|
if (stringValue == "box-none") {
|
|
result = PointerEventsMode::BoxNone;
|
|
return;
|
|
}
|
|
if (stringValue == "box-only") {
|
|
result = PointerEventsMode::BoxOnly;
|
|
return;
|
|
}
|
|
LOG(ERROR) << "Could not parse PointerEventsMode:" << stringValue;
|
|
react_native_expect(false);
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& context,
|
|
const RawValue& value,
|
|
BackfaceVisibility& result) {
|
|
result = BackfaceVisibility::Auto;
|
|
react_native_expect(value.hasType<std::string>());
|
|
if (!value.hasType<std::string>()) {
|
|
return;
|
|
}
|
|
auto stringValue = (std::string)value;
|
|
if (stringValue == "auto") {
|
|
result = BackfaceVisibility::Auto;
|
|
return;
|
|
}
|
|
if (stringValue == "visible") {
|
|
result = BackfaceVisibility::Visible;
|
|
return;
|
|
}
|
|
if (stringValue == "hidden") {
|
|
result = BackfaceVisibility::Hidden;
|
|
return;
|
|
}
|
|
LOG(ERROR) << "Could not parse BackfaceVisibility:" << stringValue;
|
|
react_native_expect(false);
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& context,
|
|
const RawValue& value,
|
|
BorderCurve& result) {
|
|
result = BorderCurve::Circular;
|
|
react_native_expect(value.hasType<std::string>());
|
|
if (!value.hasType<std::string>()) {
|
|
return;
|
|
}
|
|
auto stringValue = (std::string)value;
|
|
if (stringValue == "circular") {
|
|
result = BorderCurve::Circular;
|
|
return;
|
|
}
|
|
if (stringValue == "continuous") {
|
|
result = BorderCurve::Continuous;
|
|
return;
|
|
}
|
|
LOG(ERROR) << "Could not parse BorderCurve:" << stringValue;
|
|
react_native_expect(false);
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& context,
|
|
const RawValue& value,
|
|
BorderStyle& result) {
|
|
result = BorderStyle::Solid;
|
|
react_native_expect(value.hasType<std::string>());
|
|
if (!value.hasType<std::string>()) {
|
|
return;
|
|
}
|
|
auto stringValue = (std::string)value;
|
|
if (stringValue == "solid") {
|
|
result = BorderStyle::Solid;
|
|
return;
|
|
}
|
|
if (stringValue == "dotted") {
|
|
result = BorderStyle::Dotted;
|
|
return;
|
|
}
|
|
if (stringValue == "dashed") {
|
|
result = BorderStyle::Dashed;
|
|
return;
|
|
}
|
|
LOG(ERROR) << "Could not parse BorderStyle:" << stringValue;
|
|
react_native_expect(false);
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& context,
|
|
const RawValue& value,
|
|
Cursor& result) {
|
|
result = Cursor::Auto;
|
|
react_native_expect(value.hasType<std::string>());
|
|
if (!value.hasType<std::string>()) {
|
|
return;
|
|
}
|
|
auto stringValue = (std::string)value;
|
|
if (stringValue == "auto") {
|
|
result = Cursor::Auto;
|
|
return;
|
|
}
|
|
if (stringValue == "pointer") {
|
|
result = Cursor::Pointer;
|
|
return;
|
|
}
|
|
LOG(ERROR) << "Could not parse Cursor:" << stringValue;
|
|
react_native_expect(false);
|
|
}
|
|
|
|
inline void fromRawValue(
|
|
const PropsParserContext& /*context*/,
|
|
const RawValue& value,
|
|
LayoutConformance& result) {
|
|
result = LayoutConformance::Classic;
|
|
react_native_expect(value.hasType<std::string>());
|
|
if (!value.hasType<std::string>()) {
|
|
return;
|
|
}
|
|
auto stringValue = (std::string)value;
|
|
if (stringValue == "classic") {
|
|
result = LayoutConformance::Classic;
|
|
return;
|
|
}
|
|
if (stringValue == "strict") {
|
|
result = LayoutConformance::Strict;
|
|
return;
|
|
}
|
|
LOG(ERROR) << "Could not parse LayoutConformance:" << stringValue;
|
|
react_native_expect(false);
|
|
}
|
|
|
|
template <size_t N>
|
|
inline std::string toString(const std::array<float, N> vec) {
|
|
std::string s;
|
|
|
|
s.append("{");
|
|
for (size_t i = 0; i < N - 1; i++) {
|
|
s.append(std::to_string(vec[i]) + ", ");
|
|
}
|
|
s.append(std::to_string(vec[N - 1]));
|
|
s.append("}");
|
|
|
|
return s;
|
|
}
|
|
|
|
inline std::string toString(const yoga::Direction& value) {
|
|
return YGDirectionToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::FlexDirection& value) {
|
|
return YGFlexDirectionToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::Justify& value) {
|
|
return YGJustifyToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::Align& value) {
|
|
return YGAlignToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::PositionType& value) {
|
|
return YGPositionTypeToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::Wrap& value) {
|
|
return YGWrapToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::Overflow& value) {
|
|
return YGOverflowToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::Display& value) {
|
|
return YGDisplayToString(yoga::unscopedEnum(value));
|
|
}
|
|
|
|
inline std::string toString(const yoga::Style::Length& length) {
|
|
switch (length.unit()) {
|
|
case yoga::Unit::Undefined:
|
|
return "undefined";
|
|
case yoga::Unit::Point:
|
|
return std::to_string(length.value().unwrap());
|
|
case yoga::Unit::Percent:
|
|
return std::to_string(length.value().unwrap()) + "%";
|
|
case yoga::Unit::Auto:
|
|
return "auto";
|
|
}
|
|
}
|
|
|
|
inline std::string toString(const yoga::FloatOptional& value) {
|
|
if (value.isUndefined()) {
|
|
return "undefined";
|
|
}
|
|
|
|
return std::to_string(value.unwrap());
|
|
}
|
|
|
|
inline std::string toString(const LayoutConformance& value) {
|
|
switch (value) {
|
|
case LayoutConformance::Undefined:
|
|
return "undefined";
|
|
case LayoutConformance::Classic:
|
|
return "classic";
|
|
case LayoutConformance::Strict:
|
|
return "strict";
|
|
}
|
|
}
|
|
|
|
} // namespace facebook::react
|