xy2 = g.toDomCoords(data[i + 1][0], data[i + 1][1][1]);
CanvasAssertions.assertLineDrawn(htx, xy1, xy2, attrs);
}
+ g.destroy(); // Restore balanced saves and restores.
CanvasAssertions.assertBalancedSaveRestore(htx);
};
strokeStyle: "#008080",
lineWidth: 1
});
+ g.destroy(); // to balance context saves and destroys.
CanvasAssertions.assertBalancedSaveRestore(htx);
};
lineWidth: 1
});
assertEquals(1, lines.length);
+ g.destroy(); // to balance context saves and destroys.
CanvasAssertions.assertBalancedSaveRestore(htx);
};
var g = new Dygraph(graph, ZERO_TO_FIFTY);
var htx = g.hidden_ctx_;
+ g.destroy(); // to balance context saves and destroys.
CanvasAssertions.assertBalancedSaveRestore(htx);
};
// TODO(danvk): figure out a good way to restore this test.
// assertEquals(29, CanvasAssertions.numLinesDrawn(htx, "#ff0000"));
+ g.destroy(); // to balance context saves and destroys.
CanvasAssertions.assertBalancedSaveRestore(htx);
};
// TODO(danvk): figure out a good way to restore this test.
// assertEquals(29, CanvasAssertions.numLinesDrawn(htx, "#ff0000"));
+ g.destroy(); // to balance context saves and destroys.
CanvasAssertions.assertBalancedSaveRestore(htx);
};