package androidx.constraintlayout.core.widgets.analyzer;

import androidx.constraintlayout.core.LinearSystem;
import androidx.constraintlayout.core.widgets.ConstraintAnchor;
import androidx.constraintlayout.core.widgets.ConstraintWidget;
import androidx.constraintlayout.core.widgets.ConstraintWidgetContainer;
import androidx.constraintlayout.core.widgets.Guideline;
import androidx.constraintlayout.core.widgets.Helper;
import androidx.constraintlayout.core.widgets.Optimizer;
import androidx.constraintlayout.core.widgets.VirtualLayout;
import java.util.ArrayList;

/* JADX INFO: loaded from: classes.dex */
public class BasicMeasure {
    public static final int AT_MOST = Integer.MIN_VALUE;
    private static final boolean DEBUG = false;
    public static final int EXACTLY = 1073741824;
    public static final int FIXED = -3;
    public static final int MATCH_PARENT = -1;
    private static final int MODE_SHIFT = 30;
    public static final int UNSPECIFIED = 0;
    public static final int WRAP_CONTENT = -2;
    private ConstraintWidgetContainer constraintWidgetContainer;
    private final ArrayList<ConstraintWidget> mVariableDimensionsWidgets = new ArrayList<>();
    private Measure mMeasure = new Measure();

    public static class Measure {
        public static int SELF_DIMENSIONS = 0;
        public static int TRY_GIVEN_DIMENSIONS = 1;
        public static int USE_GIVEN_DIMENSIONS = 2;
        public ConstraintWidget.DimensionBehaviour horizontalBehavior;
        public int horizontalDimension;
        public int measureStrategy;
        public int measuredBaseline;
        public boolean measuredHasBaseline;
        public int measuredHeight;
        public boolean measuredNeedsSolverPass;
        public int measuredWidth;
        public ConstraintWidget.DimensionBehaviour verticalBehavior;
        public int verticalDimension;
    }

    public interface Measurer {
        void didMeasures();

        void measure(ConstraintWidget constraintWidget, Measure measure);
    }

    public void updateHierarchy(ConstraintWidgetContainer constraintWidgetContainer) {
        this.mVariableDimensionsWidgets.clear();
        int size = constraintWidgetContainer.mChildren.size();
        for (int i = 0; i < size; i++) {
            ConstraintWidget constraintWidget = constraintWidgetContainer.mChildren.get(i);
            if (constraintWidget.getHorizontalDimensionBehaviour() == ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT || constraintWidget.getVerticalDimensionBehaviour() == ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT) {
                this.mVariableDimensionsWidgets.add(constraintWidget);
            }
        }
        constraintWidgetContainer.invalidateGraph();
    }

    public BasicMeasure(ConstraintWidgetContainer constraintWidgetContainer) {
        this.constraintWidgetContainer = constraintWidgetContainer;
    }

    /* JADX WARN: Removed duplicated region for block: B:63:0x00aa A[PHI: r9
      0x00aa: PHI (r9v3 boolean) = (r9v2 boolean), (r9v2 boolean), (r9v2 boolean), (r9v5 boolean), (r9v5 boolean) binds: [B:33:0x0068, B:35:0x006e, B:37:0x0072, B:61:0x00a7, B:59:0x00a0] A[DONT_GENERATE, DONT_INLINE]] */
    /* JADX WARN: Removed duplicated region for block: B:66:0x00ae  */
    /* JADX WARN: Removed duplicated region for block: B:79:0x00c0 A[SYNTHETIC] */
    /*
        Code decompiled incorrectly, please refer to instructions dump.
        To view partially-correct add '--show-bad-code' argument
    */
    private void measureChildren(androidx.constraintlayout.core.widgets.ConstraintWidgetContainer r12) {
        /*
            r11 = this;
            java.util.ArrayList<androidx.constraintlayout.core.widgets.ConstraintWidget> r0 = r12.mChildren
            int r0 = r0.size()
            r1 = 64
            boolean r1 = r12.optimizeFor(r1)
            androidx.constraintlayout.core.widgets.analyzer.BasicMeasure$Measurer r2 = r12.getMeasurer()
            r3 = 0
            r4 = r3
        L12:
            if (r4 >= r0) goto Lc4
            java.util.ArrayList<androidx.constraintlayout.core.widgets.ConstraintWidget> r5 = r12.mChildren
            java.lang.Object r5 = r5.get(r4)
            androidx.constraintlayout.core.widgets.ConstraintWidget r5 = (androidx.constraintlayout.core.widgets.ConstraintWidget) r5
            boolean r6 = r5 instanceof androidx.constraintlayout.core.widgets.Guideline
            if (r6 == 0) goto L22
            goto Lc0
        L22:
            boolean r6 = r5 instanceof androidx.constraintlayout.core.widgets.Barrier
            if (r6 == 0) goto L28
            goto Lc0
        L28:
            boolean r6 = r5.isInVirtualLayout()
            if (r6 == 0) goto L30
            goto Lc0
        L30:
            if (r1 == 0) goto L4c
            androidx.constraintlayout.core.widgets.analyzer.HorizontalWidgetRun r6 = r5.horizontalRun
            if (r6 == 0) goto L4c
            androidx.constraintlayout.core.widgets.analyzer.VerticalWidgetRun r6 = r5.verticalRun
            if (r6 == 0) goto L4c
            androidx.constraintlayout.core.widgets.analyzer.HorizontalWidgetRun r6 = r5.horizontalRun
            androidx.constraintlayout.core.widgets.analyzer.DimensionDependency r6 = r6.dimension
            boolean r6 = r6.resolved
            if (r6 == 0) goto L4c
            androidx.constraintlayout.core.widgets.analyzer.VerticalWidgetRun r6 = r5.verticalRun
            androidx.constraintlayout.core.widgets.analyzer.DimensionDependency r6 = r6.dimension
            boolean r6 = r6.resolved
            if (r6 == 0) goto L4c
            goto Lc0
        L4c:
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r6 = r5.getDimensionBehaviour(r3)
            r7 = 1
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r8 = r5.getDimensionBehaviour(r7)
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r9 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r6 != r9) goto L67
            int r9 = r5.mMatchConstraintDefaultWidth
            if (r9 == r7) goto L67
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r9 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r8 != r9) goto L67
            int r9 = r5.mMatchConstraintDefaultHeight
            if (r9 == r7) goto L67
            r9 = r7
            goto L68
        L67:
            r9 = r3
        L68:
            if (r9 != 0) goto Laa
            boolean r10 = r12.optimizeFor(r7)
            if (r10 == 0) goto Laa
            boolean r10 = r5 instanceof androidx.constraintlayout.core.widgets.VirtualLayout
            if (r10 != 0) goto Laa
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r10 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r6 != r10) goto L87
            int r10 = r5.mMatchConstraintDefaultWidth
            if (r10 != 0) goto L87
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r10 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r8 == r10) goto L87
            boolean r10 = r5.isInHorizontalChain()
            if (r10 != 0) goto L87
            r9 = r7
        L87:
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r10 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r8 != r10) goto L9a
            int r10 = r5.mMatchConstraintDefaultHeight
            if (r10 != 0) goto L9a
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r10 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r6 == r10) goto L9a
            boolean r10 = r5.isInHorizontalChain()
            if (r10 != 0) goto L9a
            r9 = r7
        L9a:
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r10 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r6 == r10) goto La2
            androidx.constraintlayout.core.widgets.ConstraintWidget$DimensionBehaviour r6 = androidx.constraintlayout.core.widgets.ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT
            if (r8 != r6) goto Laa
        La2:
            float r6 = r5.mDimensionRatio
            r8 = 0
            int r6 = (r6 > r8 ? 1 : (r6 == r8 ? 0 : -1))
            if (r6 <= 0) goto Laa
            goto Lab
        Laa:
            r7 = r9
        Lab:
            if (r7 == 0) goto Lae
            goto Lc0
        Lae:
            int r6 = androidx.constraintlayout.core.widgets.analyzer.BasicMeasure.Measure.SELF_DIMENSIONS
            r11.measure(r2, r5, r6)
            androidx.constraintlayout.core.Metrics r5 = r12.mMetrics
            if (r5 == 0) goto Lc0
            androidx.constraintlayout.core.Metrics r5 = r12.mMetrics
            long r6 = r5.measuredWidgets
            r8 = 1
            long r6 = r6 + r8
            r5.measuredWidgets = r6
        Lc0:
            int r4 = r4 + 1
            goto L12
        Lc4:
            r2.didMeasures()
            return
        */
        throw new UnsupportedOperationException("Method not decompiled: androidx.constraintlayout.core.widgets.analyzer.BasicMeasure.measureChildren(androidx.constraintlayout.core.widgets.ConstraintWidgetContainer):void");
    }

    private void solveLinearSystem(ConstraintWidgetContainer constraintWidgetContainer, String str, int i, int i2, int i3) {
        int minWidth = constraintWidgetContainer.getMinWidth();
        int minHeight = constraintWidgetContainer.getMinHeight();
        constraintWidgetContainer.setMinWidth(0);
        constraintWidgetContainer.setMinHeight(0);
        constraintWidgetContainer.setWidth(i2);
        constraintWidgetContainer.setHeight(i3);
        constraintWidgetContainer.setMinWidth(minWidth);
        constraintWidgetContainer.setMinHeight(minHeight);
        this.constraintWidgetContainer.setPass(i);
        this.constraintWidgetContainer.layout();
    }

    public long solverMeasure(ConstraintWidgetContainer constraintWidgetContainer, int i, int i2, int i3, int i4, int i5, int i6, int i7, int i8, int i9) {
        boolean zDirectMeasureWithOrientation;
        int i10;
        int i11;
        boolean z;
        int i12;
        Measurer measurer;
        int i13;
        int i14;
        int i15;
        boolean z2;
        boolean z3;
        Measurer measurer2 = constraintWidgetContainer.getMeasurer();
        int size = constraintWidgetContainer.mChildren.size();
        int width = constraintWidgetContainer.getWidth();
        int height = constraintWidgetContainer.getHeight();
        boolean zEnabled = Optimizer.enabled(i, 128);
        boolean z4 = zEnabled || Optimizer.enabled(i, 64);
        if (z4) {
            for (int i16 = 0; i16 < size; i16++) {
                ConstraintWidget constraintWidget = constraintWidgetContainer.mChildren.get(i16);
                boolean z5 = (constraintWidget.getHorizontalDimensionBehaviour() == ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT) && (constraintWidget.getVerticalDimensionBehaviour() == ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT) && constraintWidget.getDimensionRatio() > 0.0f;
                if ((constraintWidget.isInHorizontalChain() && z5) || ((constraintWidget.isInVerticalChain() && z5) || (constraintWidget instanceof VirtualLayout) || constraintWidget.isInHorizontalChain() || constraintWidget.isInVerticalChain())) {
                    z4 = false;
                    break;
                }
            }
        }
        if (z4 && LinearSystem.sMetrics != null) {
            LinearSystem.sMetrics.measures++;
        }
        boolean z6 = z4 & ((i4 == 1073741824 && i6 == 1073741824) || zEnabled);
        int i17 = 2;
        if (z6) {
            int iMin = Math.min(constraintWidgetContainer.getMaxWidth(), i5);
            int iMin2 = Math.min(constraintWidgetContainer.getMaxHeight(), i7);
            if (i4 == 1073741824 && constraintWidgetContainer.getWidth() != iMin) {
                constraintWidgetContainer.setWidth(iMin);
                constraintWidgetContainer.invalidateGraph();
            }
            if (i6 == 1073741824 && constraintWidgetContainer.getHeight() != iMin2) {
                constraintWidgetContainer.setHeight(iMin2);
                constraintWidgetContainer.invalidateGraph();
            }
            if (i4 == 1073741824 && i6 == 1073741824) {
                zDirectMeasureWithOrientation = constraintWidgetContainer.directMeasure(zEnabled);
                i10 = 2;
            } else {
                boolean zDirectMeasureSetup = constraintWidgetContainer.directMeasureSetup(zEnabled);
                if (i4 == 1073741824) {
                    zDirectMeasureSetup &= constraintWidgetContainer.directMeasureWithOrientation(zEnabled, 0);
                    i10 = 1;
                } else {
                    i10 = 0;
                }
                if (i6 == 1073741824) {
                    zDirectMeasureWithOrientation = constraintWidgetContainer.directMeasureWithOrientation(zEnabled, 1) & zDirectMeasureSetup;
                    i10++;
                } else {
                    zDirectMeasureWithOrientation = zDirectMeasureSetup;
                }
            }
            if (zDirectMeasureWithOrientation) {
                constraintWidgetContainer.updateFromRuns(i4 == 1073741824, i6 == 1073741824);
            }
        } else {
            zDirectMeasureWithOrientation = false;
            i10 = 0;
        }
        if (zDirectMeasureWithOrientation && i10 == 2) {
            return 0L;
        }
        int optimizationLevel = constraintWidgetContainer.getOptimizationLevel();
        if (size > 0) {
            measureChildren(constraintWidgetContainer);
        }
        updateHierarchy(constraintWidgetContainer);
        int size2 = this.mVariableDimensionsWidgets.size();
        if (size > 0) {
            solveLinearSystem(constraintWidgetContainer, "First pass", 0, width, height);
        }
        if (size2 > 0) {
            boolean z7 = constraintWidgetContainer.getHorizontalDimensionBehaviour() == ConstraintWidget.DimensionBehaviour.WRAP_CONTENT;
            boolean z8 = constraintWidgetContainer.getVerticalDimensionBehaviour() == ConstraintWidget.DimensionBehaviour.WRAP_CONTENT;
            int iMax = Math.max(constraintWidgetContainer.getWidth(), this.constraintWidgetContainer.getMinWidth());
            int iMax2 = Math.max(constraintWidgetContainer.getHeight(), this.constraintWidgetContainer.getMinHeight());
            int i18 = 0;
            boolean zNeedSolverPass = false;
            while (i18 < size2) {
                ConstraintWidget constraintWidget2 = this.mVariableDimensionsWidgets.get(i18);
                if (constraintWidget2 instanceof VirtualLayout) {
                    int width2 = constraintWidget2.getWidth();
                    i13 = optimizationLevel;
                    int height2 = constraintWidget2.getHeight();
                    i14 = height;
                    boolean zMeasure = measure(measurer2, constraintWidget2, Measure.TRY_GIVEN_DIMENSIONS) | zNeedSolverPass;
                    if (constraintWidgetContainer.mMetrics != null) {
                        i15 = width;
                        z2 = zMeasure;
                        constraintWidgetContainer.mMetrics.measuredMatchWidgets++;
                    } else {
                        i15 = width;
                        z2 = zMeasure;
                    }
                    int width3 = constraintWidget2.getWidth();
                    int height3 = constraintWidget2.getHeight();
                    if (width3 != width2) {
                        constraintWidget2.setWidth(width3);
                        if (z7 && constraintWidget2.getRight() > iMax) {
                            iMax = Math.max(iMax, constraintWidget2.getRight() + constraintWidget2.getAnchor(ConstraintAnchor.Type.RIGHT).getMargin());
                        }
                        z3 = true;
                    } else {
                        z3 = z2;
                    }
                    if (height3 != height2) {
                        constraintWidget2.setHeight(height3);
                        if (z8 && constraintWidget2.getBottom() > iMax2) {
                            iMax2 = Math.max(iMax2, constraintWidget2.getBottom() + constraintWidget2.getAnchor(ConstraintAnchor.Type.BOTTOM).getMargin());
                        }
                        z3 = true;
                    }
                    zNeedSolverPass = z3 | ((VirtualLayout) constraintWidget2).needSolverPass();
                } else {
                    i13 = optimizationLevel;
                    i15 = width;
                    i14 = height;
                }
                i18++;
                optimizationLevel = i13;
                height = i14;
                width = i15;
                i17 = 2;
            }
            int i19 = optimizationLevel;
            int i20 = width;
            int i21 = height;
            int i22 = i17;
            int i23 = 0;
            while (i23 < i22) {
                int i24 = 0;
                while (i24 < size2) {
                    ConstraintWidget constraintWidget3 = this.mVariableDimensionsWidgets.get(i24);
                    if (((constraintWidget3 instanceof Helper) && !(constraintWidget3 instanceof VirtualLayout)) || (constraintWidget3 instanceof Guideline) || constraintWidget3.getVisibility() == 8 || ((z6 && constraintWidget3.horizontalRun.dimension.resolved && constraintWidget3.verticalRun.dimension.resolved) || (constraintWidget3 instanceof VirtualLayout))) {
                        z = z6;
                        i12 = size2;
                        measurer = measurer2;
                    } else {
                        int width4 = constraintWidget3.getWidth();
                        int height4 = constraintWidget3.getHeight();
                        int baselineDistance = constraintWidget3.getBaselineDistance();
                        int i25 = Measure.TRY_GIVEN_DIMENSIONS;
                        z = z6;
                        if (i23 == 1) {
                            i25 = Measure.USE_GIVEN_DIMENSIONS;
                        }
                        boolean zMeasure2 = measure(measurer2, constraintWidget3, i25) | zNeedSolverPass;
                        if (constraintWidgetContainer.mMetrics != null) {
                            i12 = size2;
                            measurer = measurer2;
                            constraintWidgetContainer.mMetrics.measuredMatchWidgets++;
                        } else {
                            i12 = size2;
                            measurer = measurer2;
                        }
                        int width5 = constraintWidget3.getWidth();
                        int height5 = constraintWidget3.getHeight();
                        if (width5 != width4) {
                            constraintWidget3.setWidth(width5);
                            if (z7 && constraintWidget3.getRight() > iMax) {
                                iMax = Math.max(iMax, constraintWidget3.getRight() + constraintWidget3.getAnchor(ConstraintAnchor.Type.RIGHT).getMargin());
                            }
                            zMeasure2 = true;
                        }
                        if (height5 != height4) {
                            constraintWidget3.setHeight(height5);
                            if (z8 && constraintWidget3.getBottom() > iMax2) {
                                iMax2 = Math.max(iMax2, constraintWidget3.getBottom() + constraintWidget3.getAnchor(ConstraintAnchor.Type.BOTTOM).getMargin());
                            }
                            zMeasure2 = true;
                        }
                        zNeedSolverPass = (!constraintWidget3.hasBaseline() || baselineDistance == constraintWidget3.getBaselineDistance()) ? zMeasure2 : true;
                    }
                    i24++;
                    measurer2 = measurer;
                    z6 = z;
                    size2 = i12;
                }
                boolean z9 = z6;
                int i26 = size2;
                Measurer measurer3 = measurer2;
                if (!zNeedSolverPass) {
                    break;
                }
                i23++;
                solveLinearSystem(constraintWidgetContainer, "intermediate pass", i23, i20, i21);
                measurer2 = measurer3;
                z6 = z9;
                size2 = i26;
                i22 = 2;
                zNeedSolverPass = false;
            }
            i11 = i19;
        } else {
            i11 = optimizationLevel;
        }
        constraintWidgetContainer.setOptimizationLevel(i11);
        return 0L;
    }

    private boolean measure(Measurer measurer, ConstraintWidget constraintWidget, int i) {
        this.mMeasure.horizontalBehavior = constraintWidget.getHorizontalDimensionBehaviour();
        this.mMeasure.verticalBehavior = constraintWidget.getVerticalDimensionBehaviour();
        this.mMeasure.horizontalDimension = constraintWidget.getWidth();
        this.mMeasure.verticalDimension = constraintWidget.getHeight();
        this.mMeasure.measuredNeedsSolverPass = false;
        this.mMeasure.measureStrategy = i;
        boolean z = this.mMeasure.horizontalBehavior == ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT;
        boolean z2 = this.mMeasure.verticalBehavior == ConstraintWidget.DimensionBehaviour.MATCH_CONSTRAINT;
        boolean z3 = z && constraintWidget.mDimensionRatio > 0.0f;
        boolean z4 = z2 && constraintWidget.mDimensionRatio > 0.0f;
        if (z3 && constraintWidget.mResolvedMatchConstraintDefault[0] == 4) {
            this.mMeasure.horizontalBehavior = ConstraintWidget.DimensionBehaviour.FIXED;
        }
        if (z4 && constraintWidget.mResolvedMatchConstraintDefault[1] == 4) {
            this.mMeasure.verticalBehavior = ConstraintWidget.DimensionBehaviour.FIXED;
        }
        measurer.measure(constraintWidget, this.mMeasure);
        constraintWidget.setWidth(this.mMeasure.measuredWidth);
        constraintWidget.setHeight(this.mMeasure.measuredHeight);
        constraintWidget.setHasBaseline(this.mMeasure.measuredHasBaseline);
        constraintWidget.setBaselineDistance(this.mMeasure.measuredBaseline);
        this.mMeasure.measureStrategy = Measure.SELF_DIMENSIONS;
        return this.mMeasure.measuredNeedsSolverPass;
    }
}
