1 | /*! |
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2 | * Ext JS Library 3.4.0 |
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3 | * Copyright(c) 2006-2011 Sencha Inc. |
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4 | * licensing@sencha.com |
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5 | * http://www.sencha.com/license |
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6 | */ |
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7 | /** |
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8 | * @class Ext.layout.HBoxLayout |
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9 | * @extends Ext.layout.BoxLayout |
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10 | * <p>A layout that arranges items horizontally across a Container. This layout optionally divides available horizontal |
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11 | * space between child items containing a numeric <code>flex</code> configuration.</p> |
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12 | * This layout may also be used to set the heights of child items by configuring it with the {@link #align} option. |
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13 | */ |
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14 | Ext.layout.HBoxLayout = Ext.extend(Ext.layout.BoxLayout, { |
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15 | /** |
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16 | * @cfg {String} align |
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17 | * Controls how the child items of the container are aligned. Acceptable configuration values for this |
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18 | * property are: |
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19 | * <div class="mdetail-params"><ul> |
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20 | * <li><b><tt>top</tt></b> : <b>Default</b><div class="sub-desc">child items are aligned vertically |
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21 | * at the <b>top</b> of the container</div></li> |
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22 | * <li><b><tt>middle</tt></b> : <div class="sub-desc">child items are aligned vertically in the |
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23 | * <b>middle</b> of the container</div></li> |
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24 | * <li><b><tt>stretch</tt></b> : <div class="sub-desc">child items are stretched vertically to fill |
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25 | * the height of the container</div></li> |
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26 | * <li><b><tt>stretchmax</tt></b> : <div class="sub-desc">child items are stretched vertically to |
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27 | * the height of the largest item.</div></li> |
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28 | */ |
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29 | align: 'top', // top, middle, stretch, strechmax |
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30 | |
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31 | type : 'hbox', |
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32 | |
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33 | /** |
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34 | * @cfg {String} pack |
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35 | * Controls how the child items of the container are packed together. Acceptable configuration values |
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36 | * for this property are: |
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37 | * <div class="mdetail-params"><ul> |
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38 | * <li><b><tt>start</tt></b> : <b>Default</b><div class="sub-desc">child items are packed together at |
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39 | * <b>left</b> side of container</div></li> |
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40 | * <li><b><tt>center</tt></b> : <div class="sub-desc">child items are packed together at |
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41 | * <b>mid-width</b> of container</div></li> |
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42 | * <li><b><tt>end</tt></b> : <div class="sub-desc">child items are packed together at <b>right</b> |
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43 | * side of container</div></li> |
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44 | * </ul></div> |
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45 | */ |
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46 | /** |
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47 | * @cfg {Number} flex |
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48 | * This configuation option is to be applied to <b>child <tt>items</tt></b> of the container managed |
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49 | * by this layout. Each child item with a <tt>flex</tt> property will be flexed <b>horizontally</b> |
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50 | * according to each item's <b>relative</b> <tt>flex</tt> value compared to the sum of all items with |
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51 | * a <tt>flex</tt> value specified. Any child items that have either a <tt>flex = 0</tt> or |
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52 | * <tt>flex = undefined</tt> will not be 'flexed' (the initial size will not be changed). |
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53 | */ |
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54 | |
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55 | /** |
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56 | * @private |
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57 | * Calculates the size and positioning of each item in the HBox. This iterates over all of the rendered, |
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58 | * visible items and returns a height, width, top and left for each, as well as a reference to each. Also |
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59 | * returns meta data such as maxHeight which are useful when resizing layout wrappers such as this.innerCt. |
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60 | * @param {Array} visibleItems The array of all rendered, visible items to be calculated for |
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61 | * @param {Object} targetSize Object containing target size and height |
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62 | * @return {Object} Object containing box measurements for each child, plus meta data |
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63 | */ |
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64 | calculateChildBoxes: function(visibleItems, targetSize) { |
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65 | var visibleCount = visibleItems.length, |
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66 | |
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67 | padding = this.padding, |
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68 | topOffset = padding.top, |
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69 | leftOffset = padding.left, |
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70 | paddingVert = topOffset + padding.bottom, |
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71 | paddingHoriz = leftOffset + padding.right, |
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72 | |
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73 | width = targetSize.width - this.scrollOffset, |
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74 | height = targetSize.height, |
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75 | availHeight = Math.max(0, height - paddingVert), |
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76 | |
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77 | isStart = this.pack == 'start', |
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78 | isCenter = this.pack == 'center', |
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79 | isEnd = this.pack == 'end', |
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80 | |
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81 | nonFlexWidth = 0, |
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82 | maxHeight = 0, |
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83 | totalFlex = 0, |
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84 | desiredWidth = 0, |
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85 | minimumWidth = 0, |
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86 | |
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87 | //used to cache the calculated size and position values for each child item |
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88 | boxes = [], |
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89 | |
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90 | //used in the for loops below, just declared here for brevity |
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91 | child, childWidth, childHeight, childSize, childMargins, canLayout, i, calcs, flexedWidth, |
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92 | horizMargins, vertMargins, stretchHeight; |
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93 | |
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94 | //gather the total flex of all flexed items and the width taken up by fixed width items |
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95 | for (i = 0; i < visibleCount; i++) { |
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96 | child = visibleItems[i]; |
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97 | childHeight = child.height; |
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98 | childWidth = child.width; |
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99 | canLayout = !child.hasLayout && typeof child.doLayout == 'function'; |
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100 | |
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101 | // Static width (numeric) requires no calcs |
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102 | if (typeof childWidth != 'number') { |
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103 | |
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104 | // flex and not 'auto' width |
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105 | if (child.flex && !childWidth) { |
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106 | totalFlex += child.flex; |
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107 | |
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108 | // Not flexed or 'auto' width or undefined width |
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109 | } else { |
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110 | //Render and layout sub-containers without a flex or width defined, as otherwise we |
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111 | //don't know how wide the sub-container should be and cannot calculate flexed widths |
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112 | if (!childWidth && canLayout) { |
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113 | child.doLayout(); |
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114 | } |
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115 | |
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116 | childSize = child.getSize(); |
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117 | childWidth = childSize.width; |
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118 | childHeight = childSize.height; |
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119 | } |
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120 | } |
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121 | |
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122 | childMargins = child.margins; |
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123 | horizMargins = childMargins.left + childMargins.right; |
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124 | |
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125 | nonFlexWidth += horizMargins + (childWidth || 0); |
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126 | desiredWidth += horizMargins + (child.flex ? child.minWidth || 0 : childWidth); |
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127 | minimumWidth += horizMargins + (child.minWidth || childWidth || 0); |
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128 | |
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129 | // Max height for align - force layout of non-laid out subcontainers without a numeric height |
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130 | if (typeof childHeight != 'number') { |
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131 | if (canLayout) { |
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132 | child.doLayout(); |
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133 | } |
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134 | childHeight = child.getHeight(); |
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135 | } |
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136 | |
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137 | maxHeight = Math.max(maxHeight, childHeight + childMargins.top + childMargins.bottom); |
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138 | |
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139 | //cache the size of each child component. Don't set height or width to 0, keep undefined instead |
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140 | boxes.push({ |
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141 | component: child, |
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142 | height : childHeight || undefined, |
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143 | width : childWidth || undefined |
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144 | }); |
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145 | } |
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146 | |
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147 | var shortfall = desiredWidth - width, |
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148 | tooNarrow = minimumWidth > width; |
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149 | |
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150 | //the width available to the flexed items |
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151 | var availableWidth = Math.max(0, width - nonFlexWidth - paddingHoriz); |
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152 | |
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153 | if (tooNarrow) { |
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154 | for (i = 0; i < visibleCount; i++) { |
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155 | boxes[i].width = visibleItems[i].minWidth || visibleItems[i].width || boxes[i].width; |
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156 | } |
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157 | } else { |
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158 | //all flexed items should be sized to their minimum width, other items should be shrunk down until |
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159 | //the shortfall has been accounted for |
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160 | if (shortfall > 0) { |
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161 | var minWidths = []; |
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162 | |
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163 | /** |
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164 | * When we have a shortfall but are not tooNarrow, we need to shrink the width of each non-flexed item. |
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165 | * Flexed items are immediately reduced to their minWidth and anything already at minWidth is ignored. |
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166 | * The remaining items are collected into the minWidths array, which is later used to distribute the shortfall. |
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167 | */ |
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168 | for (var index = 0, length = visibleCount; index < length; index++) { |
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169 | var item = visibleItems[index], |
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170 | minWidth = item.minWidth || 0; |
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171 | |
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172 | //shrink each non-flex tab by an equal amount to make them all fit. Flexed items are all |
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173 | //shrunk to their minWidth because they're flexible and should be the first to lose width |
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174 | if (item.flex) { |
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175 | boxes[index].width = minWidth; |
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176 | } else { |
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177 | minWidths.push({ |
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178 | minWidth : minWidth, |
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179 | available: boxes[index].width - minWidth, |
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180 | index : index |
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181 | }); |
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182 | } |
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183 | } |
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184 | |
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185 | //sort by descending amount of width remaining before minWidth is reached |
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186 | minWidths.sort(function(a, b) { |
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187 | return a.available > b.available ? 1 : -1; |
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188 | }); |
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189 | |
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190 | /* |
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191 | * Distribute the shortfall (difference between total desired with of all items and actual width available) |
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192 | * between the non-flexed items. We try to distribute the shortfall evenly, but apply it to items with the |
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193 | * smallest difference between their width and minWidth first, so that if reducing the width by the average |
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194 | * amount would make that item less than its minWidth, we carry the remainder over to the next item. |
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195 | */ |
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196 | for (var i = 0, length = minWidths.length; i < length; i++) { |
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197 | var itemIndex = minWidths[i].index; |
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198 | |
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199 | if (itemIndex == undefined) { |
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200 | continue; |
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201 | } |
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202 | |
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203 | var item = visibleItems[itemIndex], |
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204 | box = boxes[itemIndex], |
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205 | oldWidth = box.width, |
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206 | minWidth = item.minWidth, |
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207 | newWidth = Math.max(minWidth, oldWidth - Math.ceil(shortfall / (length - i))), |
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208 | reduction = oldWidth - newWidth; |
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209 | |
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210 | boxes[itemIndex].width = newWidth; |
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211 | shortfall -= reduction; |
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212 | } |
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213 | } else { |
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214 | //temporary variables used in the flex width calculations below |
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215 | var remainingWidth = availableWidth, |
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216 | remainingFlex = totalFlex; |
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217 | |
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218 | //calculate the widths of each flexed item |
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219 | for (i = 0; i < visibleCount; i++) { |
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220 | child = visibleItems[i]; |
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221 | calcs = boxes[i]; |
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222 | |
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223 | childMargins = child.margins; |
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224 | vertMargins = childMargins.top + childMargins.bottom; |
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225 | |
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226 | if (isStart && child.flex && !child.width) { |
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227 | flexedWidth = Math.ceil((child.flex / remainingFlex) * remainingWidth); |
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228 | remainingWidth -= flexedWidth; |
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229 | remainingFlex -= child.flex; |
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230 | |
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231 | calcs.width = flexedWidth; |
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232 | calcs.dirtySize = true; |
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233 | } |
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234 | } |
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235 | } |
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236 | } |
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237 | |
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238 | if (isCenter) { |
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239 | leftOffset += availableWidth / 2; |
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240 | } else if (isEnd) { |
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241 | leftOffset += availableWidth; |
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242 | } |
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243 | |
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244 | //finally, calculate the left and top position of each item |
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245 | for (i = 0; i < visibleCount; i++) { |
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246 | child = visibleItems[i]; |
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247 | calcs = boxes[i]; |
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248 | |
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249 | childMargins = child.margins; |
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250 | leftOffset += childMargins.left; |
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251 | vertMargins = childMargins.top + childMargins.bottom; |
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252 | |
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253 | calcs.left = leftOffset; |
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254 | calcs.top = topOffset + childMargins.top; |
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255 | |
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256 | switch (this.align) { |
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257 | case 'stretch': |
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258 | stretchHeight = availHeight - vertMargins; |
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259 | calcs.height = stretchHeight.constrain(child.minHeight || 0, child.maxHeight || 1000000); |
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260 | calcs.dirtySize = true; |
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261 | break; |
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262 | case 'stretchmax': |
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263 | stretchHeight = maxHeight - vertMargins; |
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264 | calcs.height = stretchHeight.constrain(child.minHeight || 0, child.maxHeight || 1000000); |
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265 | calcs.dirtySize = true; |
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266 | break; |
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267 | case 'middle': |
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268 | var diff = availHeight - calcs.height - vertMargins; |
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269 | if (diff > 0) { |
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270 | calcs.top = topOffset + vertMargins + (diff / 2); |
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271 | } |
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272 | } |
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273 | |
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274 | leftOffset += calcs.width + childMargins.right; |
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275 | } |
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276 | |
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277 | return { |
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278 | boxes: boxes, |
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279 | meta : { |
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280 | maxHeight : maxHeight, |
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281 | nonFlexWidth: nonFlexWidth, |
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282 | desiredWidth: desiredWidth, |
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283 | minimumWidth: minimumWidth, |
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284 | shortfall : desiredWidth - width, |
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285 | tooNarrow : tooNarrow |
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286 | } |
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287 | }; |
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288 | } |
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289 | }); |
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290 | |
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291 | Ext.Container.LAYOUTS.hbox = Ext.layout.HBoxLayout; |
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