avoid line length limit (maximum line length 182 > 132
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@ -183,6 +183,9 @@ class TestGridFilters:
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assert np.allclose(grad,grid_filters.gradient(size,field))
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assert np.allclose(grad,grid_filters.gradient(size,field))
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curl_test_data =[
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curl_test_data =[
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(['np.sin(np.pi*2*nodes[...,2]/size[2])', '0.0', '0.0',
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(['np.sin(np.pi*2*nodes[...,2]/size[2])', '0.0', '0.0',
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'0.0', '0.0', '0.0',
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'0.0', '0.0', '0.0',
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@ -208,7 +211,9 @@ class TestGridFilters:
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['0.0', '0.0', '-2*np.pi*2/size[1]*np.sin(np.pi*2*nodes[...,1]/size[1])',
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['0.0', '0.0', '-2*np.pi*2/size[1]*np.sin(np.pi*2*nodes[...,1]/size[1])',
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'0.0', '0.0', '0.0',
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'0.0', '0.0', '0.0',
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'0.0', '0.0', '0.0']),
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'0.0', '0.0', '0.0']),
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(['4*np.sin(np.pi*2*nodes[...,2]/size[2])', '8*np.sin(np.pi*2*nodes[...,0]/size[0])', '16*np.sin(np.pi*2*nodes[...,1]/size[1])'],
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(['4*np.sin(np.pi*2*nodes[...,2]/size[2])', \
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'8*np.sin(np.pi*2*nodes[...,0]/size[0])', \
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'16*np.sin(np.pi*2*nodes[...,1]/size[1])'],
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['16*np.pi*2/size[1]*np.cos(np.pi*2*nodes[...,1]/size[1])', \
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['16*np.pi*2/size[1]*np.cos(np.pi*2*nodes[...,1]/size[1])', \
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'4*np.pi*2/size[2]*np.cos(np.pi*2*nodes[...,2]/size[2])', \
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'4*np.pi*2/size[2]*np.cos(np.pi*2*nodes[...,2]/size[2])', \
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'8*np.pi*2/size[0]*np.cos(np.pi*2*nodes[...,0]/size[0])']),
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'8*np.pi*2/size[0]*np.cos(np.pi*2*nodes[...,0]/size[0])']),
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@ -251,11 +256,17 @@ class TestGridFilters:
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([ '23.0', '0.0', 'np.sin(np.pi*2*nodes[...,2]/size[2])',
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([ '23.0', '0.0', 'np.sin(np.pi*2*nodes[...,2]/size[2])',
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'0.0', '100.0', 'np.sin(np.pi*2*nodes[...,2]/size[2])',
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'0.0', '100.0', 'np.sin(np.pi*2*nodes[...,2]/size[2])',
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'0.0', '0.0', 'np.sin(np.pi*2*nodes[...,2]/size[2])'],
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'0.0', '0.0', 'np.sin(np.pi*2*nodes[...,2]/size[2])'],
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['np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]','np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]', 'np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]']),
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['np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]',\
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'np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]', \
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'np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]']),
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(['400.0', '0.0', '0.0',
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(['400.0', '0.0', '0.0',
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'np.sin(np.pi*2*nodes[...,0]/size[0])', 'np.sin(np.pi*2*nodes[...,1]/size[1])', 'np.sin(np.pi*2*nodes[...,2]/size[2])',
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'np.sin(np.pi*2*nodes[...,0]/size[0])', \
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'np.sin(np.pi*2*nodes[...,1]/size[1])', \
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'np.sin(np.pi*2*nodes[...,2]/size[2])',
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'0.0', '10.0', '6.0' ],
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'0.0', '10.0', '6.0' ],
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['0.0','np.cos(np.pi*2*nodes[...,0]/size[0])*np.pi*2/size[0]+np.cos(np.pi*2*nodes[...,1]/size[1])*np.pi*2/size[1]+np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]','0.0' ]),
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['0.0','np.cos(np.pi*2*nodes[...,0]/size[0])*np.pi*2/size[0]'\
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'+np.cos(np.pi*2*nodes[...,1]/size[1])*np.pi*2/size[1]'\
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'+np.cos(np.pi*2*nodes[...,2]/size[2])*np.pi*2/size[2]','0.0' ]),
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(['np.sin(np.pi*2*nodes[...,0]/size[0])', '0.0', '0.0'],
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(['np.sin(np.pi*2*nodes[...,0]/size[0])', '0.0', '0.0'],
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['np.cos(np.pi*2*nodes[...,0]/size[0])*np.pi*2/size[0]',]),
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['np.cos(np.pi*2*nodes[...,0]/size[0])*np.pi*2/size[0]',]),
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(['0.0', 'np.cos(np.pi*2*nodes[...,1]/size[1])', '0.0' ],
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(['0.0', 'np.cos(np.pi*2*nodes[...,1]/size[1])', '0.0' ],
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