# Created by Octave 3.6.1, Wed Mar 14 20:28:02 2012 UTC # name: cache # type: cell # rows: 3 # columns: 7 # name: # type: sq_string # elements: 1 # length: 8 dxfwrite # name: # type: sq_string # elements: 1 # length: 245 -- Function File: NB = dxfwrite (FILENAME, PL, ...) Write FILENAME as a DXF file. Polyline PL must be defined as matrix of 1, 2 or 3 columns respectively for x, y and z coordinates. The number of polyline (NB) or 0 is returned. # name: # type: sq_string # elements: 1 # length: 29 Write FILENAME as a DXF file. # name: # type: sq_string # elements: 1 # length: 6 gplot3 # name: # type: sq_string # elements: 1 # length: 628 -- Function File: gplot3 (A, XYZ) -- Function File: gplot3 (A, XYZ, LINE_STYLE) -- Function File: [X, Y, Z] = gplot3 (A, XYZ) Plot a 3-dimensional graph defined by A and XYZ in the graph theory sense. A is the adjacency matrix of the array to be plotted and XY is an N-by-3 matrix containing the coordinates of the nodes of the graph. The optional parameter LINE_STYLE defines the output style for the plot. Called with no output arguments the graph is plotted directly. Otherwise, return the coordinates of the plot in X and Y. See also: gplot, treeplot, etreeplot, spy # name: # type: sq_string # elements: 1 # length: 74 Plot a 3-dimensional graph defined by A and XYZ in the graph theory sense. # name: # type: sq_string # elements: 1 # length: 6 hist2d # name: # type: sq_string # elements: 1 # length: 304 -- Function File: [COUNTS, XBINS, YBINS] = hist2d ([X, Y], XBINS, YBINS, NORM) Produce a 2D histogram. Points xi,yi are stored in a 2-column array. If ybins is missing, use xbins. If bins is a scalar, use that many bins. If bins is a vector, it represents bin edges. # name: # type: sq_string # elements: 1 # length: 23 Produce a 2D histogram. # name: # type: sq_string # elements: 1 # length: 12 plotdecimate # name: # type: sq_string # elements: 1 # length: 871 -- Function File: plotdecimate (P) -- Function File: plotdecimate (P, SO) -- Function File: plotdecimate (P, SO, RES) Optimise plot data by removing redundant points and segments The first parameter P is a two-column matrix to be plotted as X and Y coordinates. The second optional argument SO disables segment optimisation when set to FALSE (default is TRUE). The third optional argument RES is the size of the largest error on the plot: if it is a scalar, it is meant relative to the range of X and Y values (default 1e-3); if it is a 2x1 array, it contains the absolute errors for X and Y. Returns a two-column matrix containing a subset of the rows of P. A line plot of P has the same appearance as a line plot of the output, with errors smaller than RES. When creating point plots, set SO to FALSE. # name: # type: sq_string # elements: 1 # length: 61 Optimise plot data by removing redundant points and segments # name: # type: sq_string # elements: 1 # length: 4 tics # name: # type: sq_string # elements: 1 # length: 452 -- Function File: tics (AXIS, [POS1, POS2, ...], [LAB1, LAB2, ...],) Explicitly set the tic positions and labels for the given axis. AXIS must be 'x', 'y' or 'z'. If no positions or labels are given, then restore the default. If positions are given but no labels, use those positions with the normal labels. If positions and labels are given, each position labeled with the corresponding row from the label matrix. # name: # type: sq_string # elements: 1 # length: 63 Explicitly set the tic positions and labels for the given axis. # name: # type: sq_string # elements: 1 # length: 10 tricontour # name: # type: sq_string # elements: 1 # length: 741 -- Function File: tricontour (TRI, X, Y, Z, LEVELS) -- Function File: tricontour (TRI, X, Y, Z, LEVELS, LINESPEC) Plot level curves for the values of `Z' on a triangular mesh in 2D. The variable TRI is the triangular meshing of the points `(X, Y)' which is returned from `delaunay'. The variable LEVELS is a vector with the values of the countour levels. If LEVELS is a scalar, then it corresponds to the number of level curves to be drawn. If exactly one level curve is desired, list the level twice in the vector LEVELS. If given, LINESPEC determines the properties to use for the lines. The output argument H is the graphic handle to the plot. See also: plot, trimesh, delaunay # name: # type: sq_string # elements: 1 # length: 67 Plot level curves for the values of `Z' on a triangular mesh in 2D. # name: # type: sq_string # elements: 1 # length: 4 zoom # name: # type: sq_string # elements: 1 # length: 69 -- Function File: zoom Compatibility function; does nothing. # name: # type: sq_string # elements: 1 # length: 37 Compatibility function; does nothing.