workbench.desktop.main.js · part 99
Full reference60 text occurrences from desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, part 99. Every entry preserves the shipped literal and its saved verdict or selection reason.
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Shipped text
Defines how important it is to have a certain edge point into the direction of t
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802096–9802254, SHA-256 3e7a77f1373784bd.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Defines how important it is to have a certain edge point into the direction of the overall layout. This option is evaluated during the cycle breaking phase.
Defines how important it is to have a certain edge point into the direction of the overall layout. This option is evaluated during the cycle breaking phase.
Shortness Priority
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802334–9802354, SHA-256 82028c1732feab7c.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Shortness Priority
Shortness Priority
Defines how important it is to keep an edge as short as possible. This option is
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802356–9802475, SHA-256 0320ccf0bf91e57e.
Jev judged not model-facing (confidence 0.12; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Defines how important it is to keep an edge as short as possible. This option is evaluated during the layering phase.
Defines how important it is to keep an edge as short as possible. This option is evaluated during the layering phase.
Straightness Priority
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802555–9802578, SHA-256 50c658815e1188be.
Jev judged not model-facing (confidence 0.05; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Straightness Priority
Straightness Priority
Defines how important it is to keep an edge straight, i.e. aligned with one of t
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802580–9802722, SHA-256 939a758cad45083d.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Defines how important it is to keep an edge straight, i.e. aligned with one of the two axes. This option is evaluated during node placement.
Defines how important it is to keep an edge straight, i.e. aligned with one of the two axes. This option is evaluated during node placement.
Connected Components Compaction
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802802–9802835, SHA-256 6a2358b3997bc661.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Connected Components Compaction
Connected Components Compaction
Tries to further compact components (disconnected sub-graphs).
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802837–9802901, SHA-256 3d0cd8d8ae9a994a.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Tries to further compact components (disconnected sub-graphs).
Tries to further compact components (disconnected sub-graphs).
Post Compaction Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9802995–9803021, SHA-256 2978a0ebee79cdf1.
Jev judged not model-facing (confidence 0.05; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Post Compaction Strategy
Post Compaction Strategy
Post Compaction Constraint Calculation
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803105–9803145, SHA-256 51b7163b604fc008.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Post Compaction Constraint Calculation
Post Compaction Constraint Calculation
High Degree Node Treatment
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803229–9803257, SHA-256 6125cf8249d5df20.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: High Degree Node Treatment
High Degree Node Treatment
Makes room around high degree nodes to place leafs and trees.
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803259–9803322, SHA-256 d3beca146cbdf796.
Jev judged not model-facing (confidence 0.09; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Makes room around high degree nodes to place leafs and trees.
Makes room around high degree nodes to place leafs and trees.
High Degree Node Threshold
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803399–9803427, SHA-256 5634d6e1258de1ef.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: High Degree Node Threshold
High Degree Node Threshold
Whether a node is considered to have a high degree.
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803429–9803482, SHA-256 aeff9b7574dd751c.
Jev judged not model-facing (confidence 0.13; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Whether a node is considered to have a high degree.
Whether a node is considered to have a high degree.
High Degree Node Maximum Tree Height
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803580–9803618, SHA-256 b71126545ebf56fe.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: High Degree Node Maximum Tree Height
High Degree Node Maximum Tree Height
Maximum height of a subtree connected to a high degree node to be moved to separ
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803620–9803713, SHA-256 8d5436cb1aeb54a3.
Jev judged not model-facing (confidence 0.12; role parameter). This is a classifier judgment, not proof of delivery.
Readable text: Maximum height of a subtree connected to a high degree node to be moved to separate layers.
Maximum height of a subtree connected to a high degree node to be moved to separate layers.
Graph Wrapping Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803809–9803834, SHA-256 4972b9aa4b9dbd45.
Jev judged not model-facing (confidence 0.08; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Graph Wrapping Strategy
Graph Wrapping Strategy
For certain graphs and certain prescribed drawing areas it may be desirable to s
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9803836–9804160, SHA-256 938b05aa0f2da3f3.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: For certain graphs and certain prescribed drawing areas it may be desirable to split the laid out graph into chunks that are placed side by side. The edges that connect different chunks are 'wrapped' around from the end of one chunk to the …
For certain graphs and certain prescribed drawing areas it may be desirable to split the laid out graph into chunks that are placed side by side. The edges that connect different chunks are 'wrapped' around from the end of one chunk to the start of the other chunk. The points between the chunks are referred to as 'cuts'.
Additional Wrapped Edges Spacing
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9804239–9804273, SHA-256 980dd600fd79e1fa.
Jev judged not model-facing (confidence 0.08; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Additional Wrapped Edges Spacing
Additional Wrapped Edges Spacing
To visually separate edges that are wrapped from regularly routed edges an addit
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9804275–9804478, SHA-256 acce823d9c6997a6.
Jev judged not model-facing (confidence 0.14; role human). This is a classifier judgment, not proof of delivery.
Readable text: To visually separate edges that are wrapped from regularly routed edges an additional spacing value can be specified in form of this layout option. The spacing is added to the regular edgeNode spacing.
To visually separate edges that are wrapped from regularly routed edges an additional spacing value can be specified in form of this layout option. The spacing is added to the regular edgeNode spacing.
Correction Factor for Wrapping
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9804589–9804621, SHA-256 a3b526f81eecc5c2.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Correction Factor for Wrapping
Correction Factor for Wrapping
At times and for certain types of graphs the executed wrapping may produce resul
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9804623–9804916, SHA-256 87b7e9b57cc2e0a8.
Jev judged not model-facing (confidence 0.12; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: At times and for certain types of graphs the executed wrapping may produce results that are consistently biased in the same fashion: either wrapping to often or to rarely. This factor can be used to correct the bias. Internally, it is simpl…
At times and for certain types of graphs the executed wrapping may produce results that are consistently biased in the same fashion: either wrapping to often or to rarely. This factor can be used to correct the bias. Internally, it is simply multiplied with the 'aspect ratio' layout option.
Cutting Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805026–9805044, SHA-256 cadae7bdf90ff191.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Cutting Strategy
Cutting Strategy
The strategy by which the layer indexes are determined at which the layering cru
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805046–9805146, SHA-256 61cce9b5cb8ab1da.
Jev judged not model-facing (confidence 0.08; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: The strategy by which the layer indexes are determined at which the layering crumbles into chunks.
The strategy by which the layer indexes are determined at which the layering crumbles into chunks.
Manually Specified Cuts
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805256–9805281, SHA-256 ffbee56f4bfefba5.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Manually Specified Cuts
Manually Specified Cuts
Allows the user to specify her own cuts for a certain graph.
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805283–9805345, SHA-256 069ab8705eb12eca.
Jev judged not model-facing (confidence 0.1; role human). This is a classifier judgment, not proof of delivery.
Readable text: Allows the user to specify her own cuts for a certain graph.
Allows the user to specify her own cuts for a certain graph.
MSD Freedom
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805455–9805468, SHA-256 a4640a610b235fc9.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: MSD Freedom
MSD Freedom
The MSD cutting strategy starts with an initial guess on the number of chunks th
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805470–9805738, SHA-256 36b3d87787efef11.
Jev judged not model-facing (confidence 0.19; role parameter). This is a classifier judgment, not proof of delivery.
Readable text: The MSD cutting strategy starts with an initial guess on the number of chunks the graph should be split into. The freedom specifies how much the strategy may deviate from this guess. E.g. if an initial number of 3 is computed, a freedom of …
The MSD cutting strategy starts with an initial guess on the number of chunks the graph should be split into. The freedom specifies how much the strategy may deviate from this guess. E.g. if an initial number of 3 is computed, a freedom of 1 allows 2, 3, and 4 cuts.
Validification Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805834–9805859, SHA-256 5b66cc3c15db2c4d.
Jev judged not model-facing (confidence 0.1; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Validification Strategy
Validification Strategy
When wrapping graphs, one can specify indices that are not allowed as split poin
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9805861–9806024, SHA-256 43a859efcf0fc202.
Jev judged not model-facing (confidence 0.1; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: When wrapping graphs, one can specify indices that are not allowed as split points. The validification strategy makes sure every computed split point is allowed.
When wrapping graphs, one can specify indices that are not allowed as split points. The validification strategy makes sure every computed split point is allowed.
Valid Indices for Wrapping
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9806134–9806162, SHA-256 0a179ff2de598023.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Valid Indices for Wrapping
Valid Indices for Wrapping
Improve Cuts
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9806275–9806289, SHA-256 f27fed5951fc81d7.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Improve Cuts
Improve Cuts
For general graphs it is important that not too many edges wrap backwards. Thus
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9806291–9806462, SHA-256 4949440bb9199096.
Jev judged not model-facing (confidence 0.13; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: For general graphs it is important that not too many edges wrap backwards. Thus a compromise between evenly-distributed cuts and the total number of cut edges is sought.
For general graphs it is important that not too many edges wrap backwards. Thus a compromise between evenly-distributed cuts and the total number of cut edges is sought.
Distance Penalty When Improving Cuts
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9806556–9806594, SHA-256 93f9707634102ec4.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Distance Penalty When Improving Cuts
Distance Penalty When Improving Cuts
Improve Wrapped Edges
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9806710–9806733, SHA-256 5f93bfd5f8ca60ee.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Improve Wrapped Edges
Improve Wrapped Edges
The initial wrapping is performed in a very simple way. As a consequence, edges
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9806735–9806931, SHA-256 da975348f9a081de.
Jev judged not model-facing (confidence 0.1; role human). This is a classifier judgment, not proof of delivery.
Readable text: The initial wrapping is performed in a very simple way. As a consequence, edges that wrap from one chunk to another may be unnecessarily long. Activating this option tries to shorten such edges.
The initial wrapping is performed in a very simple way. As a consequence, edges that wrap from one chunk to another may be unnecessarily long. Activating this option tries to shorten such edges.
Layer Unzipping Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9807025–9807051, SHA-256 102bc5158c305a47.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Layer Unzipping Strategy
Layer Unzipping Strategy
The strategy to use for unzipping a layer into multiple sublayers while maintain
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9807053–9807237, SHA-256 c4c39931e1d86cd3.
Jev judged not model-facing (confidence 0.19; role parameter). This is a classifier judgment, not proof of delivery.
Readable text: The strategy to use for unzipping a layer into multiple sublayers while maintaining the existing ordering of nodes and edges after crossing minimization. The default value is 'NONE'.
The strategy to use for unzipping a layer into multiple sublayers while maintaining the existing ordering of nodes and edges after crossing minimization. The default value is 'NONE'.
Minimize Edge Length Heuristic
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9807316–9807348, SHA-256 5fb7e782523d45d6.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Minimize Edge Length Heuristic
Minimize Edge Length Heuristic
Use a heuristic to decide whether or not to actually perform the layer split wit
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9807350–9807715, SHA-256 0845495a4d9c7e35.
Jev judged not model-facing (confidence 0.17; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Use a heuristic to decide whether or not to actually perform the layer split with the goal of minimizing the total edge length. This option only works when layerSplit is set to 2. The property can be set to the nodes in a layer, which then …
Use a heuristic to decide whether or not to actually perform the layer split with the goal of minimizing the total edge length. This option only works when layerSplit is set to 2. The property can be set to the nodes in a layer, which then applies the property for the layer. If any node sets the value to true, then the value is set to true for the entire layer.
Unzipping Layer Split
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9807810–9807833, SHA-256 dc5f70708910a9c1.
Jev judged not model-facing (confidence 0.07; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Unzipping Layer Split
Unzipping Layer Split
Defines the number of sublayers to split a layer into. The property can be set t
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9807835–9808073, SHA-256 ac9291898216c491.
Jev judged not model-facing (confidence 0.17; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Defines the number of sublayers to split a layer into. The property can be set to the nodes in a layer, which then applies the property for the layer. If multiple nodes set the value to different values, then the lowest value is chosen.
Defines the number of sublayers to split a layer into. The property can be set to the nodes in a layer, which then applies the property for the layer. If multiple nodes set the value to different values, then the lowest value is chosen.
Reset Alternation on Long Edges
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9808151–9808184, SHA-256 4db4a567bb651b57.
Jev judged not model-facing (confidence 0.08; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Reset Alternation on Long Edges
Reset Alternation on Long Edges
If set to true, nodes will always be placed in the first sublayer after a long e
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9808186–9808588, SHA-256 347268693682de16.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: If set to true, nodes will always be placed in the first sublayer after a long edge when using the ALTERNATING strategy. Otherwise long edge dummies are treated the same as regular nodes. The default value is true. The property can be set t…
If set to true, nodes will always be placed in the first sublayer after a long edge when using the ALTERNATING strategy. Otherwise long edge dummies are treated the same as regular nodes. The default value is true. The property can be set to the nodes in a layer, which then applies the property for the layer. If any node sets the value to false, then the value is set to false for the entire layer.
Edge Label Side Selection
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9808684–9808711, SHA-256 5ce9f9448dfecfd5.
Jev judged not model-facing (confidence 0.12; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Edge Label Side Selection
Edge Label Side Selection
Method to decide on edge label sides.
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9808713–9808752, SHA-256 30542fa48a88aed0.
Jev judged not model-facing (confidence 0.14; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Method to decide on edge label sides.
Method to decide on edge label sides.
Edge Center Label Placement Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9808831–9808869, SHA-256 b10e7ff8440d847d.
Jev judged not model-facing (confidence 0.1; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Edge Center Label Placement Strategy
Edge Center Label Placement Strategy
Determines in which layer center labels of long edges should be placed.
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9808871–9808944, SHA-256 afa1e50ca7c9ad6a.
Jev judged not model-facing (confidence 0.15; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Determines in which layer center labels of long edges should be placed.
Determines in which layer center labels of long edges should be placed.
Consider Model Order
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809050–9809072, SHA-256 0e5699472e3938a6.
Jev judged not model-facing (confidence 0.13; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Consider Model Order
Consider Model Order
Preserves the order of nodes and edges in the model file if this does not lead t
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809074–9809290, SHA-256 7ada97932d57ea53.
Jev judged not model-facing (confidence 0.14; role human). This is a classifier judgment, not proof of delivery.
Readable text: Preserves the order of nodes and edges in the model file if this does not lead to additional edge crossings. Depending on the strategy this is not always possible since the node and edge order might be conflicting.
Preserves the order of nodes and edges in the model file if this does not lead to additional edge crossings. Depending on the strategy this is not always possible since the node and edge order might be conflicting.
Consider Port Order
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809369–9809390, SHA-256 27c869c1c618673d.
Jev judged not model-facing (confidence 0.1; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Consider Port Order
Consider Port Order
If disabled the port order of output ports is derived from the edge order and in
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809392–9809584, SHA-256 dae9a7c773f3a2f5.
Jev judged not model-facing (confidence 0.12; role human). This is a classifier judgment, not proof of delivery.
Readable text: If disabled the port order of output ports is derived from the edge order and input ports are ordered by their incoming connections. If enabled all ports are ordered by the port model order.
If disabled the port order of output ports is derived from the edge order and input ports are ordered by their incoming connections. If enabled all ports are ordered by the port model order.
No Model Order
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809661–9809677, SHA-256 1dba8da1ecad834b.
Jev judged not model-facing (confidence 0.06; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: No Model Order
No Model Order
Set on a node to not set a model order for this node even though it is a real no
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809679–9809764, SHA-256 489588527e2d25a2.
Jev judged not model-facing (confidence 0.08; role human). This is a classifier judgment, not proof of delivery.
Readable text: Set on a node to not set a model order for this node even though it is a real node.
Set on a node to not set a model order for this node even though it is a real node.
Consider Model Order for Components
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809841–9809878, SHA-256 373113a63078e14a.
Jev judged not model-facing (confidence 0.13; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Consider Model Order for Components
Consider Model Order for Components
If set to NONE the usual ordering strategy (by cumulative node priority and size
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9809880–9810274, SHA-256 960c94f2672e7619.
Jev judged not model-facing (confidence 0.11; role human). This is a classifier judgment, not proof of delivery.
Readable text: If set to NONE the usual ordering strategy (by cumulative node priority and size of nodes) is used. INSIDE_PORT_SIDES orders the components with external ports only inside the groups with the same port side. FORCE_MODEL_ORDER enforces the m…
If set to NONE the usual ordering strategy (by cumulative node priority and size of nodes) is used. INSIDE_PORT_SIDES orders the components with external ports only inside the groups with the same port side. FORCE_MODEL_ORDER enforces the mode order on components. This option might produce bad alignments and sub optimal drawings in terms of used area since the ordering should be respected.
Long Edge Ordering Strategy
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9810372–9810401, SHA-256 297db40b3cff7cf8.
Jev judged not model-facing (confidence 0.11; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Long Edge Ordering Strategy
Long Edge Ordering Strategy
Indicates whether long edges are sorted under, over, or equal to nodes that have
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9810403–9810626, SHA-256 2e0c32f9e875ce58.
Jev judged not model-facing (confidence 0.13; role parameter). This is a classifier judgment, not proof of delivery.
Readable text: Indicates whether long edges are sorted under, over, or equal to nodes that have no connection to a previous layer in a left-to-right or right-to-left layout. Under and over changes to right and left in a vertical layout.
Indicates whether long edges are sorted under, over, or equal to nodes that have no connection to a previous layer in a left-to-right or right-to-left layout. Under and over changes to right and left in a vertical layout.
Crossing Counter Node Order Influence
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9810705–9810744, SHA-256 e779e7c1312f6166.
Jev judged not model-facing (confidence 0.12; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Crossing Counter Node Order Influence
Crossing Counter Node Order Influence
Indicates with what percentage (1 for 100%) violations of the node model order a
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9810746–9811181, SHA-256 dbd814917ae50f5c.
Jev judged not model-facing (confidence 0.21; role parameter). This is a classifier judgment, not proof of delivery.
Readable text: Indicates with what percentage (1 for 100%) violations of the node model order are weighted against the crossings e.g. a value of 0.5 means two model order violations are as important as on edge crossing. This allows some edge crossings in …
Indicates with what percentage (1 for 100%) violations of the node model order are weighted against the crossings e.g. a value of 0.5 means two model order violations are as important as on edge crossing. This allows some edge crossings in favor of preserving the model order. It is advised to set this value to a very small positive value (e.g. 0.001) to have minimal crossing and a optimal node order. Defaults to no influence (0).
Crossing Counter Port Order Influence
Source: desktop/Cursor.app/Contents/Resources/app/out/vs/workbench/workbench.desktop.main.js, bytes 9811276–9811315, SHA-256 fa259d9409390b26.
Jev judged not model-facing (confidence 0.13; role code_data). This is a classifier judgment, not proof of delivery.
Readable text: Crossing Counter Port Order Influence
Crossing Counter Port Order Influence