Added LinePlot used by Affy importer.
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c95c18eb14
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@ -9,6 +9,7 @@ from matplotlib.axes import Subplot
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from matplotlib.figure import Figure
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from matplotlib.figure import Figure
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from matplotlib.numerix import arange, sin, pi
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from matplotlib.numerix import arange, sin, pi
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from matplotlib.widgets import RectangleSelector
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from matplotlib.widgets import RectangleSelector
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from matplotlib import cm
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from system import logger
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from system import logger
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@ -59,6 +60,7 @@ class Plot (gtk.Frame):
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self.sel_obj = None
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self.sel_obj = None
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self.active = False
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self.active = False
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self.title = title
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self.title = title
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self.project = None
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def get_title(self):
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def get_title(self):
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return self.title
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return self.title
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@ -344,6 +346,58 @@ class SinePlot(Plot):
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return self._toolbar
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return self._toolbar
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class LinePlot(Plot):
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def __init__(self, dataset, name="Line plot"):
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Plot.__init__(self, name)
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fig = Figure(figsize=(5,4), dpi=72)
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self.canvas = FigureCanvas(fig)
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self.ax = ax = fig.add_subplot(111)
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self._dataset = dataset
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import rpy
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silent_eval = rpy.with_mode(rpy.NO_CONVERSION, rpy.r)
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rpy.with_mode(rpy.NO_CONVERSION, rpy.r.assign)("m", dataset.get_matrix())
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ymin, ymax = rpy.r("range(m)*1.1")
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self._ymin, self._ymax = ymin, ymax
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silent_eval("res <- apply(m, 2, density, from=%s, to=%s)" % (ymin, ymax))
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silent_eval("k <- sapply(1:length(res), function(id) rev(res[[id]]$y))")
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self._bg_matrix = bg_matrix = rpy.r("k")
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rpy.r.rm(["k", "res", "m"])
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self.update(None)
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self.add(self.canvas)
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self.canvas.show()
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# We use a regular toolbar as we don't need selections
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self._toolbar = NavigationToolbar2(self.canvas, None)
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self._toolbar.set_property('show-arrow', False)
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def get_toolbar(self):
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self.canvas.draw()
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return self._toolbar
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def update(self, key):
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self.ax.clear()
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rows, cols = self._bg_matrix.shape
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self.ax.imshow(self._bg_matrix, cmap=cm.gray, extent=(0.5, cols+0.5, self._ymin, self._ymax))
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if self.project:
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curr_sel = self.project.get_selection() # get selection object
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ids = curr_sel['ids'] # current identifiers
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index = [ind for id,ind in self._dataset['ids'].items() if id in ids] #conversion to index
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for i in index:
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line = self._dataset.get_matrix()[i]
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self.ax.plot(range(1, len(line)+1), line)
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self.ax.set_xlim((0.5, cols+0.5))
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self.ax.set_ylim((self._ymin, self._ymax))
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self.canvas.draw()
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class ScatterPlot(Plot):
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class ScatterPlot(Plot):
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def __init__(self, dataset,id_dim, sel_dim,id_1,id_2):
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def __init__(self, dataset,id_dim, sel_dim,id_1,id_2):
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Plot.__init__(self, 'Scatter plot')
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Plot.__init__(self, 'Scatter plot')
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@ -216,7 +216,9 @@ class CelFileImportFunction(workflow.Function):
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rpy.r.rm(["E", "m"])
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rpy.r.rm(["E", "m"])
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if m:
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if m:
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return [dataset.Dataset(m, (('ids', rownames), ('filename', colnames)), name="AffyMatrix Data")]
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data = dataset.Dataset(m, (('ids', rownames), ('filename', colnames)), name="AffyMatrix Data")
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plot = plots.LinePlot(data, "Gene profiles")
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return [data, plot]
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else:
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else:
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logger.log("notice", "No data loaded from importer.")
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logger.log("notice", "No data loaded from importer.")
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finally:
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finally:
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@ -250,6 +252,6 @@ class PCAFunction(workflow.Function):
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loading_plot1 = plots.ScatterPlot(P,'ids','component','1','2')
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loading_plot1 = plots.ScatterPlot(P,'ids','component','1','2')
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loading_plot2 = plots.ScatterPlot(P,'ids','component','3','4')
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loading_plot2 = plots.ScatterPlot(P,'ids','component','3','4')
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score_plot = plots.ScatterPlot(T,'filename','component','1','2')
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score_plot = plots.ScatterPlot(T,'filename','component','1','2')
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return [T, P, loading_plot1, loading_plot2, score_plot]
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return [T, P, loading_plot1, loading_plot2, score_plot]
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