Basic Numpy array value assignment

arrays, numpy, operation, python, variable-assignment

Solution

The following may show what's going on:

>>> A = np.array([[2,-1,0],[-1,2,-1],[0,-1,2]])
>>> A.dtype
dtype('int32')
>>> A[0, 1]
-1
>>> A[0, 1] * 0.5
-0.5
>>> A[0, 1] *= 0.5
>>> A[0, 1]
0
>>> int(-0.5)
0

Your array can only hold 32-bit integers, so any floating point value you try to assign to it will be cast, i.e. truncated, to an int32.

For the same price, here's a more numpythonic way of doing what you were after: for loops are generally to be avoided, as they defeat the whole purpose of numpy:

def ldlt_np(arr) :
    rows, cols = arr.shape
    tmp = 1 / np.diag(arr) # this is a float array
    mask = np.tril_indices(cols)
    ret = arr * tmp[:, None] # this will also be a float array
    ret[mask] = arr[mask]

    return ret

>>> A = np.array([[2,-1,0],[-1,2,-1],[0,-1,2]])
>>> ldlt_np(A)
array([[ 2. , -0.5,  0. ],
       [-1. ,  2. , -0.5],
       [ 0. , -1. ,  2. ]])

Problem

As a small exercise before i start playing with numeric code in python I am trying to make an LDLT algorithm. Just to "get the feet wet". However I seem to be lacking a fundamental understanding of the numpy array. See the following example: ``` def ldlt(Matrix): import numpy (NRow, NCol) = Matrix.shape for col in range(NCol): Tmp = 1/Matrix[col,col] for D in range(col+1, NCol): Matrix[col,D] = Matrix[D,col]*Tmp if __name__ == '__main__': import numpy A = numpy.array([[2,-1,0],[-1,2,-1],[0,-1,2]]) ldlt(A) ``` The example is not the full code I am working on. However, try and run it, and set a break-point at Matrix[col,D] = ... What I expect for the first evaluation is that row 0 column 1 (starting value of -1) to be set equal to = -1*(1/2) = -0.5. However when running the code it seems to be set equal to 0. Why ? There must be something fundamental which I have not really understood? Thanks in advance for all of you guys helping me out. EDIT 1: Python Ver.: 3.3 Tmp.: become 0.5 (As reported by my debugger).

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