Refactored the flexbox step to determine available space in main and cross dim
Reviewed By: emilsjolander Differential Revision: D6693777 fbshipit-source-id: d6c87670e74bdc22b32916c2d77fe423d831b378
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@ -1557,6 +1557,39 @@ static void YGZeroOutLayoutRecursivly(const YGNodeRef node) {
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}
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}
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static float YGNodeCalculateAvailableInnerDim(
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const YGNodeRef node,
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YGFlexDirection axis,
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float availableDim,
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float parentDim) {
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YGFlexDirection direction =
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YGFlexDirectionIsRow(axis) ? YGFlexDirectionRow : YGFlexDirectionColumn;
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YGDimension dimension =
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YGFlexDirectionIsRow(axis) ? YGDimensionWidth : YGDimensionHeight;
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const float margin = YGNodeMarginForAxis(node, direction, parentDim);
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const float paddingAndBorder =
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YGNodePaddingAndBorderForAxis(node, direction, parentDim);
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float availableInnerDim = availableDim - margin - paddingAndBorder;
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// Max dimension overrides predefined dimension value; Min dimension in turn
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// overrides both of the above
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if (!YGFloatIsUndefined(availableInnerDim)) {
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// We want to make sure our available height does not violate min and max
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// constraints
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const float minInnerDim =
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YGResolveValue(node->getStyle().minDimensions[dimension], parentDim) -
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paddingAndBorder;
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const float maxInnerDim =
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YGResolveValue(node->getStyle().maxDimensions[dimension], parentDim) -
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paddingAndBorder;
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availableInnerDim =
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fmaxf(fminf(availableInnerDim, maxInnerDim), minInnerDim);
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}
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return availableInnerDim;
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}
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//
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// This is the main routine that implements a subset of the flexbox layout
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// algorithm
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@ -1775,7 +1808,6 @@ static void YGNodelayoutImpl(const YGNodeRef node,
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const float marginAxisRow = YGNodeMarginForAxis(node, YGFlexDirectionRow, parentWidth);
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const float marginAxisColumn = YGNodeMarginForAxis(node, YGFlexDirectionColumn, parentWidth);
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// STEP 2: DETERMINE AVAILABLE SIZE IN MAIN AND CROSS DIRECTIONS
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const float minInnerWidth =
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YGResolveValue(
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node->getStyle().minDimensions[YGDimensionWidth], parentWidth) -
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@ -1795,19 +1827,12 @@ static void YGNodelayoutImpl(const YGNodeRef node,
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const float minInnerMainDim = isMainAxisRow ? minInnerWidth : minInnerHeight;
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const float maxInnerMainDim = isMainAxisRow ? maxInnerWidth : maxInnerHeight;
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// Max dimension overrides predefined dimension value; Min dimension in turn overrides both of the
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// above
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float availableInnerWidth = availableWidth - marginAxisRow - paddingAndBorderAxisRow;
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if (!YGFloatIsUndefined(availableInnerWidth)) {
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// We want to make sure our available width does not violate min and max constraints
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availableInnerWidth = fmaxf(fminf(availableInnerWidth, maxInnerWidth), minInnerWidth);
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}
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// STEP 2: DETERMINE AVAILABLE SIZE IN MAIN AND CROSS DIRECTIONS
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float availableInnerHeight = availableHeight - marginAxisColumn - paddingAndBorderAxisColumn;
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if (!YGFloatIsUndefined(availableInnerHeight)) {
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// We want to make sure our available height does not violate min and max constraints
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availableInnerHeight = fmaxf(fminf(availableInnerHeight, maxInnerHeight), minInnerHeight);
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}
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float availableInnerWidth = YGNodeCalculateAvailableInnerDim(
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node, YGFlexDirectionRow, availableWidth, parentWidth);
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float availableInnerHeight = YGNodeCalculateAvailableInnerDim(
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node, YGFlexDirectionColumn, availableHeight, parentHeight);
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float availableInnerMainDim = isMainAxisRow ? availableInnerWidth : availableInnerHeight;
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const float availableInnerCrossDim = isMainAxisRow ? availableInnerHeight : availableInnerWidth;
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