@mui/x-data-grid
Version:
The community edition of the data grid component (MUI X).
481 lines (397 loc) • 16.9 kB
JavaScript
;
var _interopRequireDefault = require("@babel/runtime/helpers/interopRequireDefault");
Object.defineProperty(exports, "__esModule", {
value: true
});
exports.computeColumnTypes = exports.applyInitialState = exports.COLUMNS_DIMENSION_PROPERTIES = void 0;
exports.computeFlexColumnsWidth = computeFlexColumnsWidth;
exports.createColumnsState = void 0;
exports.getFirstColumnIndexToRender = getFirstColumnIndexToRender;
exports.getFirstNonSpannedColumnToRender = getFirstNonSpannedColumnToRender;
exports.mergeColumnsState = exports.hydrateColumnsWidth = exports.getGridColDef = void 0;
var _extends2 = _interopRequireDefault(require("@babel/runtime/helpers/extends"));
var _colDef = require("../../../colDef");
var _gridColumnsSelector = require("./gridColumnsSelector");
var _utils = require("../../../utils/utils");
const COLUMNS_DIMENSION_PROPERTIES = ['maxWidth', 'minWidth', 'width', 'flex'];
exports.COLUMNS_DIMENSION_PROPERTIES = COLUMNS_DIMENSION_PROPERTIES;
const computeColumnTypes = (customColumnTypes = {}) => {
const mergedColumnTypes = (0, _extends2.default)({}, (0, _colDef.getGridDefaultColumnTypes)());
Object.entries(customColumnTypes).forEach(([colType, colTypeDef]) => {
if (mergedColumnTypes[colType]) {
mergedColumnTypes[colType] = (0, _extends2.default)({}, mergedColumnTypes[colType], colTypeDef);
} else {
mergedColumnTypes[colType] = (0, _extends2.default)({}, mergedColumnTypes[colTypeDef.extendType || _colDef.DEFAULT_GRID_COL_TYPE_KEY], colTypeDef);
}
});
return mergedColumnTypes;
};
/**
* Computes width for flex columns.
* Based on CSS Flexbox specification:
* https://drafts.csswg.org/css-flexbox-1/#resolve-flexible-lengths
*/
exports.computeColumnTypes = computeColumnTypes;
function computeFlexColumnsWidth({
initialFreeSpace,
totalFlexUnits,
flexColumns
}) {
const flexColumnsLookup = {
all: {},
frozenFields: [],
freeze: field => {
const value = flexColumnsLookup.all[field];
if (value && value.frozen !== true) {
flexColumnsLookup.all[field].frozen = true;
flexColumnsLookup.frozenFields.push(field);
}
}
}; // Step 5 of https://drafts.csswg.org/css-flexbox-1/#resolve-flexible-lengths
function loopOverFlexItems() {
// 5a: If all the flex items on the line are frozen, free space has been distributed.
if (flexColumnsLookup.frozenFields.length === flexColumns.length) {
return;
}
const violationsLookup = {
min: {},
max: {}
};
let remainingFreeSpace = initialFreeSpace;
let flexUnits = totalFlexUnits;
let totalViolation = 0; // 5b: Calculate the remaining free space
flexColumnsLookup.frozenFields.forEach(field => {
remainingFreeSpace -= flexColumnsLookup.all[field].computedWidth;
flexUnits -= flexColumnsLookup.all[field].flex;
});
for (let i = 0; i < flexColumns.length; i += 1) {
const column = flexColumns[i];
if (flexColumnsLookup.all[column.field] && flexColumnsLookup.all[column.field].frozen === true) {
// eslint-disable-next-line no-continue
continue;
} // 5c: Distribute remaining free space proportional to the flex factors
const widthPerFlexUnit = remainingFreeSpace / flexUnits;
let computedWidth = widthPerFlexUnit * column.flex; // 5d: Fix min/max violations
if (computedWidth < column.minWidth) {
totalViolation += column.minWidth - computedWidth;
computedWidth = column.minWidth;
violationsLookup.min[column.field] = true;
} else if (computedWidth > column.maxWidth) {
totalViolation += column.maxWidth - computedWidth;
computedWidth = column.maxWidth;
violationsLookup.max[column.field] = true;
}
flexColumnsLookup.all[column.field] = {
frozen: false,
computedWidth,
flex: column.flex
};
} // 5e: Freeze over-flexed items
if (totalViolation < 0) {
// Freeze all the items with max violations
Object.keys(violationsLookup.max).forEach(field => {
flexColumnsLookup.freeze(field);
});
} else if (totalViolation > 0) {
// Freeze all the items with min violations
Object.keys(violationsLookup.min).forEach(field => {
flexColumnsLookup.freeze(field);
});
} else {
// Freeze all items
flexColumns.forEach(({
field
}) => {
flexColumnsLookup.freeze(field);
});
} // 5f: Return to the start of this loop
loopOverFlexItems();
}
loopOverFlexItems();
return flexColumnsLookup.all;
}
/**
* Compute the `computedWidth` (ie: the width the column should have during rendering) based on the `width` / `flex` / `minWidth` / `maxWidth` properties of `GridColDef`.
* The columns already have been merged with there `type` default values for `minWidth`, `maxWidth` and `width`, thus the `!` for those properties below.
* TODO: Unit test this function in depth and only keep basic cases for the whole grid testing.
* TODO: Improve the `GridColDef` typing to reflect the fact that `minWidth` / `maxWidth` and `width` can't be null after the merge with the `type` default values.
*/
const hydrateColumnsWidth = (rawState, viewportInnerWidth) => {
const columnsLookup = {};
let totalFlexUnits = 0;
let widthAllocatedBeforeFlex = 0;
const flexColumns = []; // For the non-flex columns, compute their width
// For the flex columns, compute there minimum width and how much width must be allocated during the flex allocation
rawState.all.forEach(columnField => {
const newColumn = (0, _extends2.default)({}, rawState.lookup[columnField]);
if (rawState.columnVisibilityModel[columnField] === false) {
newColumn.computedWidth = 0;
} else {
let computedWidth;
if (newColumn.flex && newColumn.flex > 0) {
totalFlexUnits += newColumn.flex;
computedWidth = 0;
flexColumns.push(newColumn);
} else {
computedWidth = (0, _utils.clamp)(newColumn.width, newColumn.minWidth, newColumn.maxWidth);
}
widthAllocatedBeforeFlex += computedWidth;
newColumn.computedWidth = computedWidth;
}
columnsLookup[columnField] = newColumn;
});
const initialFreeSpace = Math.max(viewportInnerWidth - widthAllocatedBeforeFlex, 0); // Allocate the remaining space to the flex columns
if (totalFlexUnits > 0 && viewportInnerWidth > 0) {
const computedColumnWidths = computeFlexColumnsWidth({
initialFreeSpace,
totalFlexUnits,
flexColumns
});
Object.keys(computedColumnWidths).forEach(field => {
columnsLookup[field].computedWidth = computedColumnWidths[field].computedWidth;
});
}
return (0, _extends2.default)({}, rawState, {
lookup: columnsLookup
});
};
exports.hydrateColumnsWidth = hydrateColumnsWidth;
let columnTypeWarnedOnce = false;
/**
* Apply the order and the dimensions of the initial state.
* The columns not registered in `orderedFields` will be placed after the imported columns.
*/
const applyInitialState = (columnsState, initialState) => {
if (!initialState) {
return columnsState;
}
const {
orderedFields = [],
dimensions = {}
} = initialState;
const columnsWithUpdatedDimensions = Object.keys(dimensions);
if (columnsWithUpdatedDimensions.length === 0 && orderedFields.length === 0) {
return columnsState;
}
const orderedFieldsLookup = {};
const cleanOrderedFields = [];
for (let i = 0; i < orderedFields.length; i += 1) {
const field = orderedFields[i]; // Ignores the fields in the initialState that matches no field on the current column state
if (columnsState.lookup[field]) {
orderedFieldsLookup[field] = true;
cleanOrderedFields.push(field);
}
}
const newOrderedFields = cleanOrderedFields.length === 0 ? columnsState.all : [...cleanOrderedFields, ...columnsState.all.filter(field => !orderedFieldsLookup[field])];
const newColumnLookup = (0, _extends2.default)({}, columnsState.lookup);
for (let i = 0; i < columnsWithUpdatedDimensions.length; i += 1) {
const field = columnsWithUpdatedDimensions[i];
const newColDef = (0, _extends2.default)({}, newColumnLookup[field], {
hasBeenResized: true
});
Object.entries(dimensions[field]).forEach(([key, value]) => {
newColDef[key] = value === -1 ? Infinity : value;
});
newColumnLookup[field] = newColDef;
}
const newColumnsState = {
all: newOrderedFields,
lookup: newColumnLookup
};
return newColumnsState;
};
/**
* @deprecated Should have been internal only, you can inline the logic.
*/
exports.applyInitialState = applyInitialState;
const getGridColDef = (columnTypes, type) => {
if (!type) {
return columnTypes[_colDef.DEFAULT_GRID_COL_TYPE_KEY];
}
if (process.env.NODE_ENV !== 'production') {
if (!columnTypeWarnedOnce && !columnTypes[type]) {
console.warn([`MUI: The column type "${type}" you are using is not supported.`, `Column type "string" is being used instead.`].join('\n'));
columnTypeWarnedOnce = true;
}
}
if (!columnTypes[type]) {
return columnTypes[_colDef.DEFAULT_GRID_COL_TYPE_KEY];
}
return columnTypes[type];
};
exports.getGridColDef = getGridColDef;
const createColumnsState = ({
apiRef,
columnsToUpsert,
initialState,
columnTypes,
currentColumnVisibilityModel = (0, _gridColumnsSelector.gridColumnVisibilityModelSelector)(apiRef),
shouldRegenColumnVisibilityModelFromColumns,
keepOnlyColumnsToUpsert = false
}) => {
var _apiRef$current$getRo, _apiRef$current$getRo2, _apiRef$current, _apiRef$current$getRo3;
const isInsideStateInitializer = !apiRef.current.state.columns;
let columnsStateWithoutColumnVisibilityModel;
if (isInsideStateInitializer) {
columnsStateWithoutColumnVisibilityModel = {
all: [],
lookup: {}
};
} else {
const currentState = (0, _gridColumnsSelector.gridColumnsSelector)(apiRef.current.state);
columnsStateWithoutColumnVisibilityModel = {
all: keepOnlyColumnsToUpsert ? [] : [...currentState.all],
lookup: (0, _extends2.default)({}, currentState.lookup) // Will be cleaned later if keepOnlyColumnsToUpsert=true
};
}
let columnsToKeep = {};
if (keepOnlyColumnsToUpsert && !isInsideStateInitializer) {
columnsToKeep = Object.keys(columnsStateWithoutColumnVisibilityModel.lookup).reduce((acc, key) => (0, _extends2.default)({}, acc, {
[key]: false
}), {});
}
const columnsToUpsertLookup = {};
columnsToUpsert.forEach(newColumn => {
const {
field
} = newColumn;
columnsToUpsertLookup[field] = true;
columnsToKeep[field] = true;
let existingState = columnsStateWithoutColumnVisibilityModel.lookup[field];
if (existingState == null) {
// New Column
existingState = (0, _extends2.default)({}, getGridColDef(columnTypes, newColumn.type), {
// TODO v6: Inline `getGridColDef`
field,
hasBeenResized: false
});
columnsStateWithoutColumnVisibilityModel.all.push(field);
} else if (keepOnlyColumnsToUpsert) {
columnsStateWithoutColumnVisibilityModel.all.push(field);
}
let hasBeenResized = existingState.hasBeenResized;
COLUMNS_DIMENSION_PROPERTIES.forEach(key => {
if (newColumn[key] !== undefined) {
hasBeenResized = true;
if (newColumn[key] === -1) {
newColumn[key] = Infinity;
}
}
});
columnsStateWithoutColumnVisibilityModel.lookup[field] = (0, _extends2.default)({}, existingState, {
hide: newColumn.hide == null ? false : newColumn.hide
}, newColumn, {
hasBeenResized
});
});
if (keepOnlyColumnsToUpsert && !isInsideStateInitializer) {
Object.keys(columnsStateWithoutColumnVisibilityModel.lookup).forEach(field => {
if (!columnsToKeep[field]) {
delete columnsStateWithoutColumnVisibilityModel.lookup[field];
}
});
}
const columnsLookupBeforePreProcessing = (0, _extends2.default)({}, columnsStateWithoutColumnVisibilityModel.lookup);
const columnsStateWithPreProcessing = apiRef.current.unstable_applyPipeProcessors('hydrateColumns', columnsStateWithoutColumnVisibilityModel); // TODO v6: remove the sync between the columns `hide` option and the model.
let columnVisibilityModel = {};
if (shouldRegenColumnVisibilityModelFromColumns) {
let hasModelChanged = false;
const newColumnVisibilityModel = (0, _extends2.default)({}, currentColumnVisibilityModel);
if (isInsideStateInitializer) {
columnsStateWithPreProcessing.all.forEach(field => {
newColumnVisibilityModel[field] = !columnsStateWithoutColumnVisibilityModel.lookup[field].hide;
});
} else if (keepOnlyColumnsToUpsert) {
// At this point, `keepOnlyColumnsToUpsert` has a new meaning: keep the columns
// passed via `columnToUpsert` + columns added by the pre-processors. We do the following
// cleanup because a given column may have been removed from the `columns` prop but it still
// exists in the state.
Object.keys(newColumnVisibilityModel).forEach(field => {
if (!columnsStateWithPreProcessing.lookup[field]) {
delete newColumnVisibilityModel[field];
hasModelChanged = true;
}
});
}
columnsStateWithPreProcessing.all.forEach(field => {
// If neither the `columnsToUpsert` nor the pre-processors updated the column,
// Then we don't want to update the visibility status of the column in the model.
if (!columnsToUpsertLookup[field] && columnsLookupBeforePreProcessing[field] === columnsStateWithPreProcessing.lookup[field]) {
return;
} // We always assume that a column not in the model is visible by default. However, there's an
// edge case where the column is not in the model but it also doesn't exist in the `columns`
// prop, meaning that the column is being added. In that case, we assume that the column was
// not visible before for it be added to the model.
let isVisibleBefore = currentColumnVisibilityModel[field];
if (isVisibleBefore === undefined) {
if (isInsideStateInitializer) {
isVisibleBefore = true;
} else {
const currentState = (0, _gridColumnsSelector.gridColumnsSelector)(apiRef.current.state);
isVisibleBefore = !!currentState.lookup[field];
}
}
const isVisibleAfter = !columnsStateWithPreProcessing.lookup[field].hide;
if (isVisibleAfter !== isVisibleBefore) {
hasModelChanged = true;
newColumnVisibilityModel[field] = isVisibleAfter;
}
});
if (hasModelChanged || isInsideStateInitializer) {
columnVisibilityModel = newColumnVisibilityModel;
} else {
columnVisibilityModel = currentColumnVisibilityModel;
}
} else {
columnVisibilityModel = currentColumnVisibilityModel;
}
const columnsStateWithPortableColumns = applyInitialState(columnsStateWithPreProcessing, initialState);
const columnsState = (0, _extends2.default)({}, columnsStateWithPortableColumns, {
columnVisibilityModel
});
return hydrateColumnsWidth(columnsState, (_apiRef$current$getRo = (_apiRef$current$getRo2 = (_apiRef$current = apiRef.current).getRootDimensions) == null ? void 0 : (_apiRef$current$getRo3 = _apiRef$current$getRo2.call(_apiRef$current)) == null ? void 0 : _apiRef$current$getRo3.viewportInnerSize.width) != null ? _apiRef$current$getRo : 0);
};
exports.createColumnsState = createColumnsState;
const mergeColumnsState = columnsState => state => (0, _extends2.default)({}, state, {
columns: columnsState
});
exports.mergeColumnsState = mergeColumnsState;
function getFirstNonSpannedColumnToRender({
firstColumnToRender,
apiRef,
firstRowToRender,
lastRowToRender,
visibleRows
}) {
let firstNonSpannedColumnToRender = firstColumnToRender;
for (let i = firstRowToRender; i < lastRowToRender; i += 1) {
const row = visibleRows[i];
if (row) {
const rowId = visibleRows[i].id;
const cellColSpanInfo = apiRef.current.unstable_getCellColSpanInfo(rowId, firstColumnToRender);
if (cellColSpanInfo && cellColSpanInfo.spannedByColSpan) {
firstNonSpannedColumnToRender = cellColSpanInfo.leftVisibleCellIndex;
}
}
}
return firstNonSpannedColumnToRender;
}
function getFirstColumnIndexToRender({
firstColumnIndex,
minColumnIndex,
columnBuffer,
firstRowToRender,
lastRowToRender,
apiRef,
visibleRows
}) {
const initialFirstColumnToRender = Math.max(firstColumnIndex - columnBuffer, minColumnIndex);
const firstColumnToRender = getFirstNonSpannedColumnToRender({
firstColumnToRender: initialFirstColumnToRender,
apiRef,
firstRowToRender,
lastRowToRender,
visibleRows
});
return firstColumnToRender;
}