T_SFLU_DRFPMI¶
wield.control.SFLU.test.T_SFLU_DRFPMI
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- T_SFLU_DRFPMI_serialize()[source][github]¶
This is a pytest needing documentation
code
1def T_SFLU_DRFPMI_serialize(): 2 sflu = SFLU.SFLU( 3 DRFPMI_edges, 4 **in_out, 5 ) 6 sflu.reduce(*reduce_list) 7 comp = sflu.computer() 8 9 oplistE_yamlstr = comp.convert_oplistE2yamlstr() 10 print(oplistE_yamlstr) 11 12 assert(comp.convert_yamlstr2oplistE(oplistE_yamlstr) == comp.oplistE) 13 14 comp_yamlstr = comp.convert_self2yamlstr() 15 print(comp_yamlstr) 16 17 comp2 = SFLU.SFLUCompute.from_yaml(comp_yamlstr) 18 assert(comp2.oplistE == comp.oplistE) 19 assert(comp2.edges == comp.edges) 20 assert(comp2.row2col == comp.row2col) 21 assert(comp2.col2row == comp.col2row) 22 23 with open(tjoin('DRFPMI.yaml'), 'w') as F: 24 F.write(comp_yamlstr) 25 return
pytest information
This code is wrapped in a pytest function using conventions detailed in Pytest Conventions. The full name of this test, as known by the documentation, is:
wield.control.SFLU.test.T_SFLU_DRFPMI.T_SFLU_DRFPMI_serializeThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_SFLU_DRFPMI_serialize
output
- args: [X.etm.A.i] op: E_CLGd targ: (U.X.etm.A.i<L.X.etm.A.i) - args: [(X.etm.A.o<X.etm.A.i), (U.X.etm.A.i<L.X.etm.A.i), (X.etm.A.i<X.itm.B.o)] op: E_mul3 targ: (X.etm.A.o<X.itm.B.o) - args: [(U.X.etm.A.i<L.X.etm.A.i), (X.etm.A.i<X.itm.B.o)] op: E_mul2 targ: (U.X.etm.A.i<X.itm.B.o) - {op: E_del, targ: (X.etm.A.i<X.itm.B.o)} - args: [(X.etm.B.o<X.etm.A.i)] op: E_assign targ: (X.etm.B.o<U.X.etm.A.i) - {op: E_del, targ: (X.etm.B.o<X.etm.A.i)} - {op: E_del, targ: (U.X.etm.A.i<L.X.etm.A.i)} - args: [X.etm.A.o] op: E_CLGd targ: (U.X.etm.A.o<L.X.etm.A.o) - args: [(X.itm.B.i<X.etm.A.o), (U.X.etm.A.o<L.X.etm.A.o), (X.etm.A.o<X.itm.B.o)] op: E_mul3 targ: (X.itm.B.i<X.itm.B.o) - args: [(X.itm.B.i<X.etm.A.o), (U.X.etm.A.o<L.X.etm.A.o)] op: E_mul2 targ: (X.itm.B.i<L.X.etm.A.o) - {op: E_del, targ: (X.itm.B.i<X.etm.A.o)} - args: [(U.X.etm.A.o<L.X.etm.A.o), (X.etm.A.o<X.itm.B.o)] op: E_mul2 targ: (U.X.etm.A.o<X.itm.B.o) - {op: E_del, targ: (X.etm.A.o<X.itm.B.o)} - args: [(X.etm.A.o.tp<X.etm.A.o)] op: E_assign targ: (X.etm.A.o.tp<U.X.etm.A.o) - {op: E_del, targ: (X.etm.A.o.tp<X.etm.A.o)} - args: [(X.etm.A.o<X.etm.A.o.exc)] op: E_assign targ: (L.X.etm.A.o<X.etm.A.o.exc) - {op: E_del, targ: (X.etm.A.o<X.etm.A.o.exc)} - args: [(X.etm.A.o<X.etm.B.i)] op: E_assign targ: (L.X.etm.A.o<X.etm.B.i) - {op: E_del, targ: (X.etm.A.o<X.etm.B.i)} - args: [X.itm.B.i] op: E_CLGd targ: (U.X.itm.B.i<L.X.itm.B.i) - args: [(X.itm.A.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i), (X.itm.B.i<X.itm.B.o)] op: E_mul3 targ: (X.itm.A.o<X.itm.B.o) - args: [(X.itm.B.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i), (X.itm.B.i<X.itm.B.o)] op: E_mul3 targ: (X.itm.B.o<X.itm.B.o) - args: [(X.itm.A.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i)] op: E_mul2 targ: (X.itm.A.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.A.o<X.itm.B.i)} - args: [(X.itm.B.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i)] op: E_mul2 targ: (X.itm.B.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.B.o<X.itm.B.i)} - args: [(X.itm.B.i<L.X.etm.A.o)] op: E_assign targ: (L.X.itm.B.i<L.X.etm.A.o) - {op: E_del, targ: (X.itm.B.i<L.X.etm.A.o)} - {op: E_del, targ: (U.X.itm.B.i<L.X.itm.B.i)} - args: [(X.itm.B.o<X.itm.B.o)] op: E_CLG targ: (U.X.itm.B.o<L.X.itm.B.o) - args: [(X.itm.A.o<X.itm.B.o), (U.X.itm.B.o<L.X.itm.B.o), (X.itm.B.o<X.itm.A.i), (X.itm.A.o<X.itm.A.i)] op: E_mul3add targ: (X.itm.A.o<X.itm.A.i) - args: [(X.itm.A.o<X.itm.B.o), (U.X.itm.B.o<L.X.itm.B.o)] op: E_mul2 targ: (X.itm.A.o<L.X.itm.B.o) - {op: E_del, targ: (X.itm.A.o<X.itm.B.o)} - args: [(U.X.itm.B.o<L.X.itm.B.o), (X.itm.B.o<X.itm.A.i)] op: E_mul2 targ: (U.X.itm.B.o<X.itm.A.i) - {op: E_del, targ: (X.itm.B.o<X.itm.A.i)} - args: [(U.X.etm.A.o<X.itm.B.o)] op: E_assign targ: (U.X.etm.A.o<U.X.itm.B.o) - {op: E_del, targ: (U.X.etm.A.o<X.itm.B.o)} - args: [(U.X.etm.A.i<X.itm.B.o)] op: E_assign targ: (U.X.etm.A.i<U.X.itm.B.o) - {op: E_del, targ: (U.X.etm.A.i<X.itm.B.o)} - args: [(X.itm.B.o<L.X.itm.B.i)] op: E_assign targ: (L.X.itm.B.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.B.o<L.X.itm.B.i)} - args: [Y.etm.A.i] op: E_CLGd targ: (U.Y.etm.A.i<L.Y.etm.A.i) - args: [(Y.etm.A.o<Y.etm.A.i), (U.Y.etm.A.i<L.Y.etm.A.i), (Y.etm.A.i<Y.itm.B.o)] op: E_mul3 targ: (Y.etm.A.o<Y.itm.B.o) - args: [(U.Y.etm.A.i<L.Y.etm.A.i), (Y.etm.A.i<Y.itm.B.o)] op: E_mul2 targ: (U.Y.etm.A.i<Y.itm.B.o) - {op: E_del, targ: (Y.etm.A.i<Y.itm.B.o)} - args: [(Y.etm.B.o<Y.etm.A.i)] op: E_assign targ: (Y.etm.B.o<U.Y.etm.A.i) - {op: E_del, targ: (Y.etm.B.o<Y.etm.A.i)} - {op: E_del, targ: (U.Y.etm.A.i<L.Y.etm.A.i)} - args: [Y.etm.A.o] op: E_CLGd targ: (U.Y.etm.A.o<L.Y.etm.A.o) - args: [(Y.itm.B.i<Y.etm.A.o), (U.Y.etm.A.o<L.Y.etm.A.o), (Y.etm.A.o<Y.itm.B.o)] op: E_mul3 targ: (Y.itm.B.i<Y.itm.B.o) - args: [(Y.itm.B.i<Y.etm.A.o), (U.Y.etm.A.o<L.Y.etm.A.o)] op: E_mul2 targ: (Y.itm.B.i<L.Y.etm.A.o) - {op: E_del, targ: (Y.itm.B.i<Y.etm.A.o)} - args: [(U.Y.etm.A.o<L.Y.etm.A.o), (Y.etm.A.o<Y.itm.B.o)] op: E_mul2 targ: (U.Y.etm.A.o<Y.itm.B.o) - {op: E_del, targ: (Y.etm.A.o<Y.itm.B.o)} - args: [(Y.etm.A.o.tp<Y.etm.A.o)] op: E_assign targ: (Y.etm.A.o.tp<U.Y.etm.A.o) - {op: E_del, targ: (Y.etm.A.o.tp<Y.etm.A.o)} - args: [(Y.etm.A.o<Y.etm.A.o.exc)] op: E_assign targ: (L.Y.etm.A.o<Y.etm.A.o.exc) - {op: E_del, targ: (Y.etm.A.o<Y.etm.A.o.exc)} - args: [(Y.etm.A.o<Y.etm.B.i)] op: E_assign targ: (L.Y.etm.A.o<Y.etm.B.i) - {op: E_del, targ: (Y.etm.A.o<Y.etm.B.i)} - args: [Y.itm.B.i] op: E_CLGd targ: (U.Y.itm.B.i<L.Y.itm.B.i) - args: [(Y.itm.B.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i), (Y.itm.B.i<Y.itm.B.o)] op: E_mul3 targ: (Y.itm.B.o<Y.itm.B.o) - args: [(Y.itm.A.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i), (Y.itm.B.i<Y.itm.B.o)] op: E_mul3 targ: (Y.itm.A.o<Y.itm.B.o) - args: [(Y.itm.B.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i)] op: E_mul2 targ: (Y.itm.B.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.B.o<Y.itm.B.i)} - args: [(Y.itm.A.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i)] op: E_mul2 targ: (Y.itm.A.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.A.o<Y.itm.B.i)} - args: [(Y.itm.B.i<L.Y.etm.A.o)] op: E_assign targ: (L.Y.itm.B.i<L.Y.etm.A.o) - {op: E_del, targ: (Y.itm.B.i<L.Y.etm.A.o)} - {op: E_del, targ: (U.Y.itm.B.i<L.Y.itm.B.i)} - args: [(Y.itm.B.o<Y.itm.B.o)] op: E_CLG targ: (U.Y.itm.B.o<L.Y.itm.B.o) - args: [(Y.itm.A.o<Y.itm.B.o), (U.Y.itm.B.o<L.Y.itm.B.o), (Y.itm.B.o<Y.itm.A.i), (Y.itm.A.o<Y.itm.A.i)] op: E_mul3add targ: (Y.itm.A.o<Y.itm.A.i) - args: [(Y.itm.A.o<Y.itm.B.o), (U.Y.itm.B.o<L.Y.itm.B.o)] op: E_mul2 targ: (Y.itm.A.o<L.Y.itm.B.o) - {op: E_del, targ: (Y.itm.A.o<Y.itm.B.o)} - args: [(U.Y.itm.B.o<L.Y.itm.B.o), (Y.itm.B.o<Y.itm.A.i)] op: E_mul2 targ: (U.Y.itm.B.o<Y.itm.A.i) - {op: E_del, targ: (Y.itm.B.o<Y.itm.A.i)} - args: [(U.Y.etm.A.i<Y.itm.B.o)] op: E_assign targ: (U.Y.etm.A.i<U.Y.itm.B.o) - {op: E_del, targ: (U.Y.etm.A.i<Y.itm.B.o)} - args: [(U.Y.etm.A.o<Y.itm.B.o)] op: E_assign targ: (U.Y.etm.A.o<U.Y.itm.B.o) - {op: E_del, targ: (U.Y.etm.A.o<Y.itm.B.o)} - args: [(Y.itm.B.o<L.Y.itm.B.i)] op: E_assign targ: (L.Y.itm.B.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.B.o<L.Y.itm.B.i)} - args: [X.itm.A.i] op: E_CLGd targ: (U.X.itm.A.i<L.X.itm.A.i) - args: [(X.itm.A.o<X.itm.A.i), (U.X.itm.A.i<L.X.itm.A.i), (X.itm.A.i<BS.B1.o)] op: E_mul3 targ: (X.itm.A.o<BS.B1.o) - args: [(U.X.itm.A.i<L.X.itm.A.i), (X.itm.A.i<BS.B1.o)] op: E_mul2 targ: (U.X.itm.A.i<BS.B1.o) - {op: E_del, targ: (X.itm.A.i<BS.B1.o)} - args: [(U.X.itm.B.o<X.itm.A.i)] op: E_assign targ: (U.X.itm.B.o<U.X.itm.A.i) - {op: E_del, targ: (U.X.itm.B.o<X.itm.A.i)} - {op: E_del, targ: (U.X.itm.A.i<L.X.itm.A.i)} - args: [X.itm.A.o] op: E_CLGd targ: (U.X.itm.A.o<L.X.itm.A.o) - args: [(BS.B1.i<X.itm.A.o), (U.X.itm.A.o<L.X.itm.A.o), (X.itm.A.o<BS.B1.o)] op: E_mul3 targ: (BS.B1.i<BS.B1.o) - args: [(BS.B1.i<X.itm.A.o), (U.X.itm.A.o<L.X.itm.A.o)] op: E_mul2 targ: (BS.B1.i<L.X.itm.A.o) - {op: E_del, targ: (BS.B1.i<X.itm.A.o)} - args: [(X.itm.A.o<L.X.itm.B.i)] op: E_assign targ: (L.X.itm.A.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.A.o<L.X.itm.B.i)} - args: [(X.itm.A.o<L.X.itm.B.o)] op: E_assign targ: (L.X.itm.A.o<L.X.itm.B.o) - {op: E_del, targ: (X.itm.A.o<L.X.itm.B.o)} - {op: E_del, targ: (U.X.itm.A.o<L.X.itm.A.o)} - args: [Y.itm.A.i] op: E_CLGd targ: (U.Y.itm.A.i<L.Y.itm.A.i) - args: [(Y.itm.A.o<Y.itm.A.i), (U.Y.itm.A.i<L.Y.itm.A.i), (Y.itm.A.i<BS.A2.o)] op: E_mul3 targ: (Y.itm.A.o<BS.A2.o) - args: [(U.Y.itm.A.i<L.Y.itm.A.i), (Y.itm.A.i<BS.A2.o)] op: E_mul2 targ: (U.Y.itm.A.i<BS.A2.o) - {op: E_del, targ: (Y.itm.A.i<BS.A2.o)} - args: [(U.Y.itm.B.o<Y.itm.A.i)] op: E_assign targ: (U.Y.itm.B.o<U.Y.itm.A.i) - {op: E_del, targ: (U.Y.itm.B.o<Y.itm.A.i)} - {op: E_del, targ: (U.Y.itm.A.i<L.Y.itm.A.i)} - args: [Y.itm.A.o] op: E_CLGd targ: (U.Y.itm.A.o<L.Y.itm.A.o) - args: [(BS.A2.i<Y.itm.A.o), (U.Y.itm.A.o<L.Y.itm.A.o), (Y.itm.A.o<BS.A2.o)] op: E_mul3 targ: (BS.A2.i<BS.A2.o) - args: [(BS.A2.i<Y.itm.A.o), (U.Y.itm.A.o<L.Y.itm.A.o)] op: E_mul2 targ: (BS.A2.i<L.Y.itm.A.o) - {op: E_del, targ: (BS.A2.i<Y.itm.A.o)} - args: [(Y.itm.A.o<L.Y.itm.B.i)] op: E_assign targ: (L.Y.itm.A.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.A.o<L.Y.itm.B.i)} - args: [(Y.itm.A.o<L.Y.itm.B.o)] op: E_assign targ: (L.Y.itm.A.o<L.Y.itm.B.o) - {op: E_del, targ: (Y.itm.A.o<L.Y.itm.B.o)} - {op: E_del, targ: (U.Y.itm.A.o<L.Y.itm.A.o)} - args: [prm.A.i] op: E_CLGd targ: (U.prm.A.i<L.prm.A.i) - args: [(prm.B.o<prm.A.i), (U.prm.A.i<L.prm.A.i)] op: E_mul2 targ: (prm.B.o<L.prm.A.i) - {op: E_del, targ: (prm.B.o<prm.A.i)} - args: [(prm.A.o<prm.A.i), (U.prm.A.i<L.prm.A.i)] op: E_mul2 targ: (prm.A.o<L.prm.A.i) - {op: E_del, targ: (prm.A.o<prm.A.i)} - args: [(prm.A.i<prm.A.i.exc)] op: E_assign targ: (L.prm.A.i<prm.A.i.exc) - {op: E_del, targ: (prm.A.i<prm.A.i.exc)} - {op: E_del, targ: (U.prm.A.i<L.prm.A.i)} - args: [prm.A.o] op: E_CLGd targ: (U.prm.A.o<L.prm.A.o) - args: [(U.prm.A.o<L.prm.A.o), (prm.A.o<prm.B.i)] op: E_mul2 targ: (U.prm.A.o<prm.B.i) - {op: E_del, targ: (prm.A.o<prm.B.i)} - args: [(prm.A.o.tp<prm.A.o)] op: E_assign targ: (prm.A.o.tp<U.prm.A.o) - {op: E_del, targ: (prm.A.o.tp<prm.A.o)} - args: [(prm.A.o<L.prm.A.i)] op: E_assign targ: (L.prm.A.o<L.prm.A.i) - {op: E_del, targ: (prm.A.o<L.prm.A.i)} - args: [prm.B.i] op: E_CLGd targ: (U.prm.B.i<L.prm.B.i) - args: [(prm.B.o<prm.B.i), (U.prm.B.i<L.prm.B.i), (prm.B.i<BS.A1.o)] op: E_mul3 targ: (prm.B.o<BS.A1.o) - args: [(U.prm.B.i<L.prm.B.i), (prm.B.i<BS.A1.o)] op: E_mul2 targ: (U.prm.B.i<BS.A1.o) - {op: E_del, targ: (prm.B.i<BS.A1.o)} - args: [(U.prm.A.o<prm.B.i)] op: E_assign targ: (U.prm.A.o<U.prm.B.i) - {op: E_del, targ: (U.prm.A.o<prm.B.i)} - {op: E_del, targ: (U.prm.B.i<L.prm.B.i)} - args: [prm.B.o] op: E_CLGd targ: (U.prm.B.o<L.prm.B.o) - args: [(BS.A1.i<prm.B.o), (U.prm.B.o<L.prm.B.o), (prm.B.o<BS.A1.o)] op: E_mul3 targ: (BS.A1.i<BS.A1.o) - args: [(BS.A1.i<prm.B.o), (U.prm.B.o<L.prm.B.o)] op: E_mul2 targ: (BS.A1.i<L.prm.B.o) - {op: E_del, targ: (BS.A1.i<prm.B.o)} - args: [(prm.B.o<L.prm.A.i)] op: E_assign targ: (L.prm.B.o<L.prm.A.i) - {op: E_del, targ: (prm.B.o<L.prm.A.i)} - {op: E_del, targ: (U.prm.B.o<L.prm.B.o)} - args: [BS.A1.i] op: E_CLGd targ: (U.BS.A1.i<L.BS.A1.i) - args: [(BS.A2.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i), (BS.A1.i<BS.A1.o)] op: E_mul3 targ: (BS.A2.o<BS.A1.o) - args: [(BS.B1.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i), (BS.A1.i<BS.A1.o)] op: E_mul3 targ: (BS.B1.o<BS.A1.o) - args: [(BS.A2.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i)] op: E_mul2 targ: (BS.A2.o<L.BS.A1.i) - {op: E_del, targ: (BS.A2.o<BS.A1.i)} - args: [(BS.B1.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i)] op: E_mul2 targ: (BS.B1.o<L.BS.A1.i) - {op: E_del, targ: (BS.B1.o<BS.A1.i)} - args: [(BS.A1.i<L.prm.B.o)] op: E_assign targ: (L.BS.A1.i<L.prm.B.o) - {op: E_del, targ: (BS.A1.i<L.prm.B.o)} - {op: E_del, targ: (U.BS.A1.i<L.BS.A1.i)} - args: [BS.A1.o] op: E_CLGd targ: (U.BS.A1.o<L.BS.A1.o) - args: [(BS.A2.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.B1.i)] op: E_mul3 targ: (BS.A2.o<BS.B1.i) - args: [(BS.A2.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.A2.i)] op: E_mul3 targ: (BS.A2.o<BS.A2.i) - args: [(BS.B1.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.B1.i)] op: E_mul3 targ: (BS.B1.o<BS.B1.i) - args: [(BS.B1.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.A2.i)] op: E_mul3 targ: (BS.B1.o<BS.A2.i) - args: [(U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.B1.i)] op: E_mul2 targ: (U.BS.A1.o<BS.B1.i) - {op: E_del, targ: (BS.A1.o<BS.B1.i)} - args: [(U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.A2.i)] op: E_mul2 targ: (U.BS.A1.o<BS.A2.i) - {op: E_del, targ: (BS.A1.o<BS.A2.i)} - args: [(U.prm.B.i<BS.A1.o)] op: E_assign targ: (U.prm.B.i<U.BS.A1.o) - {op: E_del, targ: (U.prm.B.i<BS.A1.o)} - {op: E_del, targ: (U.BS.A1.o<L.BS.A1.o)} - args: [BS.A2.i] op: E_CLGd targ: (U.BS.A2.i<L.BS.A2.i) - args: [(BS.A2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul3 targ: (BS.A2.o<BS.A2.o) - args: [(BS.B2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul3 targ: (BS.B2.o<BS.A2.o) - args: [(BS.B1.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul3 targ: (BS.B1.o<BS.A2.o) - args: [(BS.A2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i)] op: E_mul2 targ: (BS.A2.o<L.BS.A2.i) - {op: E_del, targ: (BS.A2.o<BS.A2.i)} - args: [(BS.B2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i)] op: E_mul2 targ: (BS.B2.o<L.BS.A2.i) - {op: E_del, targ: (BS.B2.o<BS.A2.i)} - args: [(BS.B1.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i)] op: E_mul2 targ: (BS.B1.o<L.BS.A2.i) - {op: E_del, targ: (BS.B1.o<BS.A2.i)} - args: [(U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul2 targ: (U.BS.A2.i<BS.A2.o) - {op: E_del, targ: (BS.A2.i<BS.A2.o)} - args: [(U.BS.A1.o<BS.A2.i)] op: E_assign targ: (U.BS.A1.o<U.BS.A2.i) - {op: E_del, targ: (U.BS.A1.o<BS.A2.i)} - args: [(BS.A2.i<L.Y.itm.A.o)] op: E_assign targ: (L.BS.A2.i<L.Y.itm.A.o) - {op: E_del, targ: (BS.A2.i<L.Y.itm.A.o)} - args: [(BS.A2.o<BS.A2.o)] op: E_CLG targ: (U.BS.A2.o<L.BS.A2.o) - args: [(BS.B2.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B2.i)] op: E_mul3 targ: (BS.B2.o<BS.B2.i) - args: [(BS.B2.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B1.i), (BS.B2.o<BS.B1.i)] op: E_mul3add targ: (BS.B2.o<BS.B1.i) - args: [(BS.B1.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B2.i), (BS.B1.o<BS.B2.i)] op: E_mul3add targ: (BS.B1.o<BS.B2.i) - args: [(BS.B1.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B1.i), (BS.B1.o<BS.B1.i)] op: E_mul3add targ: (BS.B1.o<BS.B1.i) - args: [(BS.B2.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o)] op: E_mul2 targ: (BS.B2.o<L.BS.A2.o) - {op: E_del, targ: (BS.B2.o<BS.A2.o)} - args: [(BS.B1.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o)] op: E_mul2 targ: (BS.B1.o<L.BS.A2.o) - {op: E_del, targ: (BS.B1.o<BS.A2.o)} - args: [(U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B2.i)] op: E_mul2 targ: (U.BS.A2.o<BS.B2.i) - {op: E_del, targ: (BS.A2.o<BS.B2.i)} - args: [(U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B1.i)] op: E_mul2 targ: (U.BS.A2.o<BS.B1.i) - {op: E_del, targ: (BS.A2.o<BS.B1.i)} - args: [(U.BS.A2.i<BS.A2.o)] op: E_assign targ: (U.BS.A2.i<U.BS.A2.o) - {op: E_del, targ: (U.BS.A2.i<BS.A2.o)} - args: [(U.Y.itm.A.i<BS.A2.o)] op: E_assign targ: (U.Y.itm.A.i<U.BS.A2.o) - {op: E_del, targ: (U.Y.itm.A.i<BS.A2.o)} - args: [(BS.A2.o<L.BS.A2.i)] op: E_assign targ: (L.BS.A2.o<L.BS.A2.i) - {op: E_del, targ: (BS.A2.o<L.BS.A2.i)} - args: [(BS.A2.o<L.BS.A1.i)] op: E_assign targ: (L.BS.A2.o<L.BS.A1.i) - {op: E_del, targ: (BS.A2.o<L.BS.A1.i)} - args: [BS.B1.i] op: E_CLGd targ: (U.BS.B1.i<L.BS.B1.i) - args: [(BS.B2.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i), (BS.B1.i<BS.B1.o)] op: E_mul3 targ: (BS.B2.o<BS.B1.o) - args: [(BS.B1.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i), (BS.B1.i<BS.B1.o)] op: E_mul3 targ: (BS.B1.o<BS.B1.o) - args: [(BS.B2.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i)] op: E_mul2 targ: (BS.B2.o<L.BS.B1.i) - {op: E_del, targ: (BS.B2.o<BS.B1.i)} - args: [(BS.B1.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i)] op: E_mul2 targ: (BS.B1.o<L.BS.B1.i) - {op: E_del, targ: (BS.B1.o<BS.B1.i)} - args: [(U.BS.B1.i<L.BS.B1.i), (BS.B1.i<BS.B1.o)] op: E_mul2 targ: (U.BS.B1.i<BS.B1.o) - {op: E_del, targ: (BS.B1.i<BS.B1.o)} - args: [(U.BS.A1.o<BS.B1.i)] op: E_assign targ: (U.BS.A1.o<U.BS.B1.i) - {op: E_del, targ: (U.BS.A1.o<BS.B1.i)} - args: [(U.BS.A2.o<BS.B1.i)] op: E_assign targ: (U.BS.A2.o<U.BS.B1.i) - {op: E_del, targ: (U.BS.A2.o<BS.B1.i)} - args: [(BS.B1.i<L.X.itm.A.o)] op: E_assign targ: (L.BS.B1.i<L.X.itm.A.o) - {op: E_del, targ: (BS.B1.i<L.X.itm.A.o)} - args: [(BS.B1.o<BS.B1.o)] op: E_CLG targ: (U.BS.B1.o<L.BS.B1.o) - args: [(BS.B2.o<BS.B1.o), (U.BS.B1.o<L.BS.B1.o), (BS.B1.o<BS.B2.i), (BS.B2.o<BS.B2.i)] op: E_mul3add targ: (BS.B2.o<BS.B2.i) - args: [(BS.B2.o<BS.B1.o), (U.BS.B1.o<L.BS.B1.o)] op: E_mul2 targ: (BS.B2.o<L.BS.B1.o) - {op: E_del, targ: (BS.B2.o<BS.B1.o)} - args: [(U.BS.B1.o<L.BS.B1.o), (BS.B1.o<BS.B2.i)] op: E_mul2 targ: (U.BS.B1.o<BS.B2.i) - {op: E_del, targ: (BS.B1.o<BS.B2.i)} - args: [(U.BS.B1.i<BS.B1.o)] op: E_assign targ: (U.BS.B1.i<U.BS.B1.o) - {op: E_del, targ: (U.BS.B1.i<BS.B1.o)} - args: [(U.X.itm.A.i<BS.B1.o)] op: E_assign targ: (U.X.itm.A.i<U.BS.B1.o) - {op: E_del, targ: (U.X.itm.A.i<BS.B1.o)} - args: [(BS.B1.o<L.BS.A2.i)] op: E_assign targ: (L.BS.B1.o<L.BS.A2.i) - {op: E_del, targ: (BS.B1.o<L.BS.A2.i)} - args: [(BS.B1.o<L.BS.A2.o)] op: E_assign targ: (L.BS.B1.o<L.BS.A2.o) - {op: E_del, targ: (BS.B1.o<L.BS.A2.o)} - args: [(BS.B1.o<L.BS.B1.i)] op: E_assign targ: (L.BS.B1.o<L.BS.B1.i) - {op: E_del, targ: (BS.B1.o<L.BS.B1.i)} - args: [(BS.B1.o<L.BS.A1.i)] op: E_assign targ: (L.BS.B1.o<L.BS.A1.i) - {op: E_del, targ: (BS.B1.o<L.BS.A1.i)} - args: [BS.B2.i] op: E_CLGd targ: (U.BS.B2.i<L.BS.B2.i) - args: [(BS.B2.o<BS.B2.i), (U.BS.B2.i<L.BS.B2.i), (BS.B2.i<srm.A.o)] op: E_mul3 targ: (BS.B2.o<srm.A.o) - args: [(U.BS.B2.i<L.BS.B2.i), (BS.B2.i<srm.A.o)] op: E_mul2 targ: (U.BS.B2.i<srm.A.o) - {op: E_del, targ: (BS.B2.i<srm.A.o)} - args: [(U.BS.B1.o<BS.B2.i)] op: E_assign targ: (U.BS.B1.o<U.BS.B2.i) - {op: E_del, targ: (U.BS.B1.o<BS.B2.i)} - args: [(U.BS.A2.o<BS.B2.i)] op: E_assign targ: (U.BS.A2.o<U.BS.B2.i) - {op: E_del, targ: (U.BS.A2.o<BS.B2.i)} - {op: E_del, targ: (U.BS.B2.i<L.BS.B2.i)} - args: [BS.B2.o] op: E_CLGd targ: (U.BS.B2.o<L.BS.B2.o) - args: [(srm.A.i<BS.B2.o), (U.BS.B2.o<L.BS.B2.o), (BS.B2.o<srm.A.o)] op: E_mul3 targ: (srm.A.i<srm.A.o) - args: [(srm.A.i<BS.B2.o), (U.BS.B2.o<L.BS.B2.o)] op: E_mul2 targ: (srm.A.i<L.BS.B2.o) - {op: E_del, targ: (srm.A.i<BS.B2.o)} - args: [(BS.B2.o<L.BS.A2.i)] op: E_assign targ: (L.BS.B2.o<L.BS.A2.i) - {op: E_del, targ: (BS.B2.o<L.BS.A2.i)} - args: [(BS.B2.o<L.BS.B1.i)] op: E_assign targ: (L.BS.B2.o<L.BS.B1.i) - {op: E_del, targ: (BS.B2.o<L.BS.B1.i)} - args: [(BS.B2.o<L.BS.B1.o)] op: E_assign targ: (L.BS.B2.o<L.BS.B1.o) - {op: E_del, targ: (BS.B2.o<L.BS.B1.o)} - args: [(BS.B2.o<L.BS.A2.o)] op: E_assign targ: (L.BS.B2.o<L.BS.A2.o) - {op: E_del, targ: (BS.B2.o<L.BS.A2.o)} - {op: E_del, targ: (U.BS.B2.o<L.BS.B2.o)} - args: [srm.A.i] op: E_CLGd targ: (U.srm.A.i<L.srm.A.i) - args: [(srm.B.o<srm.A.i), (U.srm.A.i<L.srm.A.i), (srm.A.i<srm.A.o)] op: E_mul3 targ: (srm.B.o<srm.A.o) - args: [(srm.A.o<srm.A.i), (U.srm.A.i<L.srm.A.i), (srm.A.i<srm.A.o)] op: E_mul3 targ: (srm.A.o<srm.A.o) - args: [(srm.B.o<srm.A.i), (U.srm.A.i<L.srm.A.i)] op: E_mul2 targ: (srm.B.o<L.srm.A.i) - {op: E_del, targ: (srm.B.o<srm.A.i)} - args: [(srm.A.o<srm.A.i), (U.srm.A.i<L.srm.A.i)] op: E_mul2 targ: (srm.A.o<L.srm.A.i) - {op: E_del, targ: (srm.A.o<srm.A.i)} - args: [(srm.A.i<L.BS.B2.o)] op: E_assign targ: (L.srm.A.i<L.BS.B2.o) - {op: E_del, targ: (srm.A.i<L.BS.B2.o)} - {op: E_del, targ: (U.srm.A.i<L.srm.A.i)} - args: [(srm.A.o<srm.A.o)] op: E_CLG targ: (U.srm.A.o<L.srm.A.o) - args: [(srm.B.o<srm.A.o), (U.srm.A.o<L.srm.A.o), (srm.A.o<srm.B.i), (srm.B.o<srm.B.i)] op: E_mul3add targ: (srm.B.o<srm.B.i) - args: [(srm.B.o<srm.A.o), (U.srm.A.o<L.srm.A.o)] op: E_mul2 targ: (srm.B.o<L.srm.A.o) - {op: E_del, targ: (srm.B.o<srm.A.o)} - args: [(U.srm.A.o<L.srm.A.o), (srm.A.o<srm.B.i)] op: E_mul2 targ: (U.srm.A.o<srm.B.i) - {op: E_del, targ: (srm.A.o<srm.B.i)} - args: [(U.BS.B2.i<srm.A.o)] op: E_assign targ: (U.BS.B2.i<U.srm.A.o) - {op: E_del, targ: (U.BS.B2.i<srm.A.o)} - args: [(srm.A.o<L.srm.A.i)] op: E_assign targ: (L.srm.A.o<L.srm.A.i) - {op: E_del, targ: (srm.A.o<L.srm.A.i)} - args: [srm.B.i] op: E_CLGd targ: (U.srm.B.i<L.srm.B.i) - args: [(srm.B.o<srm.B.i), (U.srm.B.i<L.srm.B.i)] op: E_mul2 targ: (srm.B.o<L.srm.B.i) - {op: E_del, targ: (srm.B.o<srm.B.i)} - args: [(U.srm.A.o<srm.B.i)] op: E_assign targ: (U.srm.A.o<U.srm.B.i) - {op: E_del, targ: (U.srm.A.o<srm.B.i)} - args: [(srm.B.i<srm.B.i.exc)] op: E_assign targ: (L.srm.B.i<srm.B.i.exc) - {op: E_del, targ: (srm.B.i<srm.B.i.exc)} - args: [srm.B.o] op: E_CLGd targ: (U.srm.B.o<L.srm.B.o) - args: [(srm.B.o.tp<srm.B.o)] op: E_assign targ: (srm.B.o.tp<U.srm.B.o) - {op: E_del, targ: (srm.B.o.tp<srm.B.o)} - args: [(srm.B.o<L.srm.A.i)] op: E_assign targ: (L.srm.B.o<L.srm.A.i) - {op: E_del, targ: (srm.B.o<L.srm.A.i)} - args: [(srm.B.o<L.srm.B.i)] op: E_assign targ: (L.srm.B.o<L.srm.B.i) - {op: E_del, targ: (srm.B.o<L.srm.B.i)} - args: [(srm.B.o<L.srm.A.o)] op: E_assign targ: (L.srm.B.o<L.srm.A.o) - {op: E_del, targ: (srm.B.o<L.srm.A.o)} edges: (BS.A1.i<prm.B.o): prc.tau (BS.A1.o<BS.A2.i): BS.r (BS.A1.o<BS.B1.i): BS.t (BS.A2.i<Y.itm.A.o): &id002 ['*', BS_Y.tau] (BS.A2.o<BS.A1.i): BS.r (BS.A2.o<BS.B2.i): BS.t (BS.B1.i<X.itm.A.o): &id001 ['*', BS_X.tau] (BS.B1.o<BS.A1.i): BS.t (BS.B1.o<BS.B2.i): -BS.r (BS.B2.i<srm.A.o): src.tau (BS.B2.o<BS.A2.i): BS.t (BS.B2.o<BS.B1.i): -BS.r (X.etm.A.i<X.itm.B.o): XARM.tau (X.etm.A.o.tp<X.etm.A.o): '1' (X.etm.A.o<X.etm.A.i): X.etm.r (X.etm.A.o<X.etm.A.o.exc): '1' (X.etm.A.o<X.etm.B.i): X.etm.t (X.etm.B.o<X.etm.A.i): X.etm.t (X.etm.B.o<X.etm.B.i): -X.etm.r (X.itm.A.i<BS.B1.o): *id001 (X.itm.A.o<X.itm.A.i): X.itm.r (X.itm.A.o<X.itm.B.i): X.itm.t (X.itm.B.i<X.etm.A.o): XARM.tau (X.itm.B.o<X.itm.A.i): X.itm.t (X.itm.B.o<X.itm.B.i): -X.itm.r (Y.etm.A.i<Y.itm.B.o): YARM.tau (Y.etm.A.o.tp<Y.etm.A.o): '1' (Y.etm.A.o<Y.etm.A.i): Y.etm.r (Y.etm.A.o<Y.etm.A.o.exc): '1' (Y.etm.A.o<Y.etm.B.i): Y.etm.t (Y.etm.B.o<Y.etm.A.i): Y.etm.t (Y.etm.B.o<Y.etm.B.i): -Y.etm.r (Y.itm.A.i<BS.A2.o): *id002 (Y.itm.A.o<Y.itm.A.i): Y.itm.r (Y.itm.A.o<Y.itm.B.i): Y.itm.t (Y.itm.B.i<Y.etm.A.o): YARM.tau (Y.itm.B.o<Y.itm.A.i): Y.itm.t (Y.itm.B.o<Y.itm.B.i): -Y.itm.r (prm.A.i<prm.A.i.exc): '1' (prm.A.o.tp<prm.A.o): '1' (prm.A.o<prm.A.i): prm.r (prm.A.o<prm.B.i): prm.t (prm.B.i<BS.A1.o): prc.tau (prm.B.o<prm.A.i): prm.t (prm.B.o<prm.B.i): -prm.r (srm.A.i<BS.B2.o): src.tau (srm.A.o<srm.A.i): srm.r (srm.A.o<srm.B.i): srm.t (srm.B.i<srm.B.i.exc): '1' (srm.B.o.tp<srm.B.o): '1' (srm.B.o<srm.A.i): srm.t (srm.B.o<srm.B.i): -srm.r oplistE: - args: [X.etm.A.i] op: E_CLGd targ: (U.X.etm.A.i<L.X.etm.A.i) - args: [(X.etm.A.o<X.etm.A.i), (U.X.etm.A.i<L.X.etm.A.i), (X.etm.A.i<X.itm.B.o)] op: E_mul3 targ: (X.etm.A.o<X.itm.B.o) - args: [(U.X.etm.A.i<L.X.etm.A.i), (X.etm.A.i<X.itm.B.o)] op: E_mul2 targ: (U.X.etm.A.i<X.itm.B.o) - {op: E_del, targ: (X.etm.A.i<X.itm.B.o)} - args: [(X.etm.B.o<X.etm.A.i)] op: E_assign targ: (X.etm.B.o<U.X.etm.A.i) - {op: E_del, targ: (X.etm.B.o<X.etm.A.i)} - {op: E_del, targ: (U.X.etm.A.i<L.X.etm.A.i)} - args: [X.etm.A.o] op: E_CLGd targ: (U.X.etm.A.o<L.X.etm.A.o) - args: [(X.itm.B.i<X.etm.A.o), (U.X.etm.A.o<L.X.etm.A.o), (X.etm.A.o<X.itm.B.o)] op: E_mul3 targ: (X.itm.B.i<X.itm.B.o) - args: [(X.itm.B.i<X.etm.A.o), (U.X.etm.A.o<L.X.etm.A.o)] op: E_mul2 targ: (X.itm.B.i<L.X.etm.A.o) - {op: E_del, targ: (X.itm.B.i<X.etm.A.o)} - args: [(U.X.etm.A.o<L.X.etm.A.o), (X.etm.A.o<X.itm.B.o)] op: E_mul2 targ: (U.X.etm.A.o<X.itm.B.o) - {op: E_del, targ: (X.etm.A.o<X.itm.B.o)} - args: [(X.etm.A.o.tp<X.etm.A.o)] op: E_assign targ: (X.etm.A.o.tp<U.X.etm.A.o) - {op: E_del, targ: (X.etm.A.o.tp<X.etm.A.o)} - args: [(X.etm.A.o<X.etm.A.o.exc)] op: E_assign targ: (L.X.etm.A.o<X.etm.A.o.exc) - {op: E_del, targ: (X.etm.A.o<X.etm.A.o.exc)} - args: [(X.etm.A.o<X.etm.B.i)] op: E_assign targ: (L.X.etm.A.o<X.etm.B.i) - {op: E_del, targ: (X.etm.A.o<X.etm.B.i)} - args: [X.itm.B.i] op: E_CLGd targ: (U.X.itm.B.i<L.X.itm.B.i) - args: [(X.itm.A.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i), (X.itm.B.i<X.itm.B.o)] op: E_mul3 targ: (X.itm.A.o<X.itm.B.o) - args: [(X.itm.B.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i), (X.itm.B.i<X.itm.B.o)] op: E_mul3 targ: (X.itm.B.o<X.itm.B.o) - args: [(X.itm.A.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i)] op: E_mul2 targ: (X.itm.A.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.A.o<X.itm.B.i)} - args: [(X.itm.B.o<X.itm.B.i), (U.X.itm.B.i<L.X.itm.B.i)] op: E_mul2 targ: (X.itm.B.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.B.o<X.itm.B.i)} - args: [(X.itm.B.i<L.X.etm.A.o)] op: E_assign targ: (L.X.itm.B.i<L.X.etm.A.o) - {op: E_del, targ: (X.itm.B.i<L.X.etm.A.o)} - {op: E_del, targ: (U.X.itm.B.i<L.X.itm.B.i)} - args: [(X.itm.B.o<X.itm.B.o)] op: E_CLG targ: (U.X.itm.B.o<L.X.itm.B.o) - args: [(X.itm.A.o<X.itm.B.o), (U.X.itm.B.o<L.X.itm.B.o), (X.itm.B.o<X.itm.A.i), (X.itm.A.o<X.itm.A.i)] op: E_mul3add targ: (X.itm.A.o<X.itm.A.i) - args: [(X.itm.A.o<X.itm.B.o), (U.X.itm.B.o<L.X.itm.B.o)] op: E_mul2 targ: (X.itm.A.o<L.X.itm.B.o) - {op: E_del, targ: (X.itm.A.o<X.itm.B.o)} - args: [(U.X.itm.B.o<L.X.itm.B.o), (X.itm.B.o<X.itm.A.i)] op: E_mul2 targ: (U.X.itm.B.o<X.itm.A.i) - {op: E_del, targ: (X.itm.B.o<X.itm.A.i)} - args: [(U.X.etm.A.o<X.itm.B.o)] op: E_assign targ: (U.X.etm.A.o<U.X.itm.B.o) - {op: E_del, targ: (U.X.etm.A.o<X.itm.B.o)} - args: [(U.X.etm.A.i<X.itm.B.o)] op: E_assign targ: (U.X.etm.A.i<U.X.itm.B.o) - {op: E_del, targ: (U.X.etm.A.i<X.itm.B.o)} - args: [(X.itm.B.o<L.X.itm.B.i)] op: E_assign targ: (L.X.itm.B.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.B.o<L.X.itm.B.i)} - args: [Y.etm.A.i] op: E_CLGd targ: (U.Y.etm.A.i<L.Y.etm.A.i) - args: [(Y.etm.A.o<Y.etm.A.i), (U.Y.etm.A.i<L.Y.etm.A.i), (Y.etm.A.i<Y.itm.B.o)] op: E_mul3 targ: (Y.etm.A.o<Y.itm.B.o) - args: [(U.Y.etm.A.i<L.Y.etm.A.i), (Y.etm.A.i<Y.itm.B.o)] op: E_mul2 targ: (U.Y.etm.A.i<Y.itm.B.o) - {op: E_del, targ: (Y.etm.A.i<Y.itm.B.o)} - args: [(Y.etm.B.o<Y.etm.A.i)] op: E_assign targ: (Y.etm.B.o<U.Y.etm.A.i) - {op: E_del, targ: (Y.etm.B.o<Y.etm.A.i)} - {op: E_del, targ: (U.Y.etm.A.i<L.Y.etm.A.i)} - args: [Y.etm.A.o] op: E_CLGd targ: (U.Y.etm.A.o<L.Y.etm.A.o) - args: [(Y.itm.B.i<Y.etm.A.o), (U.Y.etm.A.o<L.Y.etm.A.o), (Y.etm.A.o<Y.itm.B.o)] op: E_mul3 targ: (Y.itm.B.i<Y.itm.B.o) - args: [(Y.itm.B.i<Y.etm.A.o), (U.Y.etm.A.o<L.Y.etm.A.o)] op: E_mul2 targ: (Y.itm.B.i<L.Y.etm.A.o) - {op: E_del, targ: (Y.itm.B.i<Y.etm.A.o)} - args: [(U.Y.etm.A.o<L.Y.etm.A.o), (Y.etm.A.o<Y.itm.B.o)] op: E_mul2 targ: (U.Y.etm.A.o<Y.itm.B.o) - {op: E_del, targ: (Y.etm.A.o<Y.itm.B.o)} - args: [(Y.etm.A.o.tp<Y.etm.A.o)] op: E_assign targ: (Y.etm.A.o.tp<U.Y.etm.A.o) - {op: E_del, targ: (Y.etm.A.o.tp<Y.etm.A.o)} - args: [(Y.etm.A.o<Y.etm.A.o.exc)] op: E_assign targ: (L.Y.etm.A.o<Y.etm.A.o.exc) - {op: E_del, targ: (Y.etm.A.o<Y.etm.A.o.exc)} - args: [(Y.etm.A.o<Y.etm.B.i)] op: E_assign targ: (L.Y.etm.A.o<Y.etm.B.i) - {op: E_del, targ: (Y.etm.A.o<Y.etm.B.i)} - args: [Y.itm.B.i] op: E_CLGd targ: (U.Y.itm.B.i<L.Y.itm.B.i) - args: [(Y.itm.B.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i), (Y.itm.B.i<Y.itm.B.o)] op: E_mul3 targ: (Y.itm.B.o<Y.itm.B.o) - args: [(Y.itm.A.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i), (Y.itm.B.i<Y.itm.B.o)] op: E_mul3 targ: (Y.itm.A.o<Y.itm.B.o) - args: [(Y.itm.B.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i)] op: E_mul2 targ: (Y.itm.B.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.B.o<Y.itm.B.i)} - args: [(Y.itm.A.o<Y.itm.B.i), (U.Y.itm.B.i<L.Y.itm.B.i)] op: E_mul2 targ: (Y.itm.A.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.A.o<Y.itm.B.i)} - args: [(Y.itm.B.i<L.Y.etm.A.o)] op: E_assign targ: (L.Y.itm.B.i<L.Y.etm.A.o) - {op: E_del, targ: (Y.itm.B.i<L.Y.etm.A.o)} - {op: E_del, targ: (U.Y.itm.B.i<L.Y.itm.B.i)} - args: [(Y.itm.B.o<Y.itm.B.o)] op: E_CLG targ: (U.Y.itm.B.o<L.Y.itm.B.o) - args: [(Y.itm.A.o<Y.itm.B.o), (U.Y.itm.B.o<L.Y.itm.B.o), (Y.itm.B.o<Y.itm.A.i), (Y.itm.A.o<Y.itm.A.i)] op: E_mul3add targ: (Y.itm.A.o<Y.itm.A.i) - args: [(Y.itm.A.o<Y.itm.B.o), (U.Y.itm.B.o<L.Y.itm.B.o)] op: E_mul2 targ: (Y.itm.A.o<L.Y.itm.B.o) - {op: E_del, targ: (Y.itm.A.o<Y.itm.B.o)} - args: [(U.Y.itm.B.o<L.Y.itm.B.o), (Y.itm.B.o<Y.itm.A.i)] op: E_mul2 targ: (U.Y.itm.B.o<Y.itm.A.i) - {op: E_del, targ: (Y.itm.B.o<Y.itm.A.i)} - args: [(U.Y.etm.A.i<Y.itm.B.o)] op: E_assign targ: (U.Y.etm.A.i<U.Y.itm.B.o) - {op: E_del, targ: (U.Y.etm.A.i<Y.itm.B.o)} - args: [(U.Y.etm.A.o<Y.itm.B.o)] op: E_assign targ: (U.Y.etm.A.o<U.Y.itm.B.o) - {op: E_del, targ: (U.Y.etm.A.o<Y.itm.B.o)} - args: [(Y.itm.B.o<L.Y.itm.B.i)] op: E_assign targ: (L.Y.itm.B.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.B.o<L.Y.itm.B.i)} - args: [X.itm.A.i] op: E_CLGd targ: (U.X.itm.A.i<L.X.itm.A.i) - args: [(X.itm.A.o<X.itm.A.i), (U.X.itm.A.i<L.X.itm.A.i), (X.itm.A.i<BS.B1.o)] op: E_mul3 targ: (X.itm.A.o<BS.B1.o) - args: [(U.X.itm.A.i<L.X.itm.A.i), (X.itm.A.i<BS.B1.o)] op: E_mul2 targ: (U.X.itm.A.i<BS.B1.o) - {op: E_del, targ: (X.itm.A.i<BS.B1.o)} - args: [(U.X.itm.B.o<X.itm.A.i)] op: E_assign targ: (U.X.itm.B.o<U.X.itm.A.i) - {op: E_del, targ: (U.X.itm.B.o<X.itm.A.i)} - {op: E_del, targ: (U.X.itm.A.i<L.X.itm.A.i)} - args: [X.itm.A.o] op: E_CLGd targ: (U.X.itm.A.o<L.X.itm.A.o) - args: [(BS.B1.i<X.itm.A.o), (U.X.itm.A.o<L.X.itm.A.o), (X.itm.A.o<BS.B1.o)] op: E_mul3 targ: (BS.B1.i<BS.B1.o) - args: [(BS.B1.i<X.itm.A.o), (U.X.itm.A.o<L.X.itm.A.o)] op: E_mul2 targ: (BS.B1.i<L.X.itm.A.o) - {op: E_del, targ: (BS.B1.i<X.itm.A.o)} - args: [(X.itm.A.o<L.X.itm.B.i)] op: E_assign targ: (L.X.itm.A.o<L.X.itm.B.i) - {op: E_del, targ: (X.itm.A.o<L.X.itm.B.i)} - args: [(X.itm.A.o<L.X.itm.B.o)] op: E_assign targ: (L.X.itm.A.o<L.X.itm.B.o) - {op: E_del, targ: (X.itm.A.o<L.X.itm.B.o)} - {op: E_del, targ: (U.X.itm.A.o<L.X.itm.A.o)} - args: [Y.itm.A.i] op: E_CLGd targ: (U.Y.itm.A.i<L.Y.itm.A.i) - args: [(Y.itm.A.o<Y.itm.A.i), (U.Y.itm.A.i<L.Y.itm.A.i), (Y.itm.A.i<BS.A2.o)] op: E_mul3 targ: (Y.itm.A.o<BS.A2.o) - args: [(U.Y.itm.A.i<L.Y.itm.A.i), (Y.itm.A.i<BS.A2.o)] op: E_mul2 targ: (U.Y.itm.A.i<BS.A2.o) - {op: E_del, targ: (Y.itm.A.i<BS.A2.o)} - args: [(U.Y.itm.B.o<Y.itm.A.i)] op: E_assign targ: (U.Y.itm.B.o<U.Y.itm.A.i) - {op: E_del, targ: (U.Y.itm.B.o<Y.itm.A.i)} - {op: E_del, targ: (U.Y.itm.A.i<L.Y.itm.A.i)} - args: [Y.itm.A.o] op: E_CLGd targ: (U.Y.itm.A.o<L.Y.itm.A.o) - args: [(BS.A2.i<Y.itm.A.o), (U.Y.itm.A.o<L.Y.itm.A.o), (Y.itm.A.o<BS.A2.o)] op: E_mul3 targ: (BS.A2.i<BS.A2.o) - args: [(BS.A2.i<Y.itm.A.o), (U.Y.itm.A.o<L.Y.itm.A.o)] op: E_mul2 targ: (BS.A2.i<L.Y.itm.A.o) - {op: E_del, targ: (BS.A2.i<Y.itm.A.o)} - args: [(Y.itm.A.o<L.Y.itm.B.i)] op: E_assign targ: (L.Y.itm.A.o<L.Y.itm.B.i) - {op: E_del, targ: (Y.itm.A.o<L.Y.itm.B.i)} - args: [(Y.itm.A.o<L.Y.itm.B.o)] op: E_assign targ: (L.Y.itm.A.o<L.Y.itm.B.o) - {op: E_del, targ: (Y.itm.A.o<L.Y.itm.B.o)} - {op: E_del, targ: (U.Y.itm.A.o<L.Y.itm.A.o)} - args: [prm.A.i] op: E_CLGd targ: (U.prm.A.i<L.prm.A.i) - args: [(prm.B.o<prm.A.i), (U.prm.A.i<L.prm.A.i)] op: E_mul2 targ: (prm.B.o<L.prm.A.i) - {op: E_del, targ: (prm.B.o<prm.A.i)} - args: [(prm.A.o<prm.A.i), (U.prm.A.i<L.prm.A.i)] op: E_mul2 targ: (prm.A.o<L.prm.A.i) - {op: E_del, targ: (prm.A.o<prm.A.i)} - args: [(prm.A.i<prm.A.i.exc)] op: E_assign targ: (L.prm.A.i<prm.A.i.exc) - {op: E_del, targ: (prm.A.i<prm.A.i.exc)} - {op: E_del, targ: (U.prm.A.i<L.prm.A.i)} - args: [prm.A.o] op: E_CLGd targ: (U.prm.A.o<L.prm.A.o) - args: [(U.prm.A.o<L.prm.A.o), (prm.A.o<prm.B.i)] op: E_mul2 targ: (U.prm.A.o<prm.B.i) - {op: E_del, targ: (prm.A.o<prm.B.i)} - args: [(prm.A.o.tp<prm.A.o)] op: E_assign targ: (prm.A.o.tp<U.prm.A.o) - {op: E_del, targ: (prm.A.o.tp<prm.A.o)} - args: [(prm.A.o<L.prm.A.i)] op: E_assign targ: (L.prm.A.o<L.prm.A.i) - {op: E_del, targ: (prm.A.o<L.prm.A.i)} - args: [prm.B.i] op: E_CLGd targ: (U.prm.B.i<L.prm.B.i) - args: [(prm.B.o<prm.B.i), (U.prm.B.i<L.prm.B.i), (prm.B.i<BS.A1.o)] op: E_mul3 targ: (prm.B.o<BS.A1.o) - args: [(U.prm.B.i<L.prm.B.i), (prm.B.i<BS.A1.o)] op: E_mul2 targ: (U.prm.B.i<BS.A1.o) - {op: E_del, targ: (prm.B.i<BS.A1.o)} - args: [(U.prm.A.o<prm.B.i)] op: E_assign targ: (U.prm.A.o<U.prm.B.i) - {op: E_del, targ: (U.prm.A.o<prm.B.i)} - {op: E_del, targ: (U.prm.B.i<L.prm.B.i)} - args: [prm.B.o] op: E_CLGd targ: (U.prm.B.o<L.prm.B.o) - args: [(BS.A1.i<prm.B.o), (U.prm.B.o<L.prm.B.o), (prm.B.o<BS.A1.o)] op: E_mul3 targ: (BS.A1.i<BS.A1.o) - args: [(BS.A1.i<prm.B.o), (U.prm.B.o<L.prm.B.o)] op: E_mul2 targ: (BS.A1.i<L.prm.B.o) - {op: E_del, targ: (BS.A1.i<prm.B.o)} - args: [(prm.B.o<L.prm.A.i)] op: E_assign targ: (L.prm.B.o<L.prm.A.i) - {op: E_del, targ: (prm.B.o<L.prm.A.i)} - {op: E_del, targ: (U.prm.B.o<L.prm.B.o)} - args: [BS.A1.i] op: E_CLGd targ: (U.BS.A1.i<L.BS.A1.i) - args: [(BS.A2.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i), (BS.A1.i<BS.A1.o)] op: E_mul3 targ: (BS.A2.o<BS.A1.o) - args: [(BS.B1.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i), (BS.A1.i<BS.A1.o)] op: E_mul3 targ: (BS.B1.o<BS.A1.o) - args: [(BS.A2.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i)] op: E_mul2 targ: (BS.A2.o<L.BS.A1.i) - {op: E_del, targ: (BS.A2.o<BS.A1.i)} - args: [(BS.B1.o<BS.A1.i), (U.BS.A1.i<L.BS.A1.i)] op: E_mul2 targ: (BS.B1.o<L.BS.A1.i) - {op: E_del, targ: (BS.B1.o<BS.A1.i)} - args: [(BS.A1.i<L.prm.B.o)] op: E_assign targ: (L.BS.A1.i<L.prm.B.o) - {op: E_del, targ: (BS.A1.i<L.prm.B.o)} - {op: E_del, targ: (U.BS.A1.i<L.BS.A1.i)} - args: [BS.A1.o] op: E_CLGd targ: (U.BS.A1.o<L.BS.A1.o) - args: [(BS.A2.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.B1.i)] op: E_mul3 targ: (BS.A2.o<BS.B1.i) - args: [(BS.A2.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.A2.i)] op: E_mul3 targ: (BS.A2.o<BS.A2.i) - args: [(BS.B1.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.B1.i)] op: E_mul3 targ: (BS.B1.o<BS.B1.i) - args: [(BS.B1.o<BS.A1.o), (U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.A2.i)] op: E_mul3 targ: (BS.B1.o<BS.A2.i) - args: [(U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.B1.i)] op: E_mul2 targ: (U.BS.A1.o<BS.B1.i) - {op: E_del, targ: (BS.A1.o<BS.B1.i)} - args: [(U.BS.A1.o<L.BS.A1.o), (BS.A1.o<BS.A2.i)] op: E_mul2 targ: (U.BS.A1.o<BS.A2.i) - {op: E_del, targ: (BS.A1.o<BS.A2.i)} - args: [(U.prm.B.i<BS.A1.o)] op: E_assign targ: (U.prm.B.i<U.BS.A1.o) - {op: E_del, targ: (U.prm.B.i<BS.A1.o)} - {op: E_del, targ: (U.BS.A1.o<L.BS.A1.o)} - args: [BS.A2.i] op: E_CLGd targ: (U.BS.A2.i<L.BS.A2.i) - args: [(BS.A2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul3 targ: (BS.A2.o<BS.A2.o) - args: [(BS.B2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul3 targ: (BS.B2.o<BS.A2.o) - args: [(BS.B1.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul3 targ: (BS.B1.o<BS.A2.o) - args: [(BS.A2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i)] op: E_mul2 targ: (BS.A2.o<L.BS.A2.i) - {op: E_del, targ: (BS.A2.o<BS.A2.i)} - args: [(BS.B2.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i)] op: E_mul2 targ: (BS.B2.o<L.BS.A2.i) - {op: E_del, targ: (BS.B2.o<BS.A2.i)} - args: [(BS.B1.o<BS.A2.i), (U.BS.A2.i<L.BS.A2.i)] op: E_mul2 targ: (BS.B1.o<L.BS.A2.i) - {op: E_del, targ: (BS.B1.o<BS.A2.i)} - args: [(U.BS.A2.i<L.BS.A2.i), (BS.A2.i<BS.A2.o)] op: E_mul2 targ: (U.BS.A2.i<BS.A2.o) - {op: E_del, targ: (BS.A2.i<BS.A2.o)} - args: [(U.BS.A1.o<BS.A2.i)] op: E_assign targ: (U.BS.A1.o<U.BS.A2.i) - {op: E_del, targ: (U.BS.A1.o<BS.A2.i)} - args: [(BS.A2.i<L.Y.itm.A.o)] op: E_assign targ: (L.BS.A2.i<L.Y.itm.A.o) - {op: E_del, targ: (BS.A2.i<L.Y.itm.A.o)} - args: [(BS.A2.o<BS.A2.o)] op: E_CLG targ: (U.BS.A2.o<L.BS.A2.o) - args: [(BS.B2.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B2.i)] op: E_mul3 targ: (BS.B2.o<BS.B2.i) - args: [(BS.B2.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B1.i), (BS.B2.o<BS.B1.i)] op: E_mul3add targ: (BS.B2.o<BS.B1.i) - args: [(BS.B1.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B2.i), (BS.B1.o<BS.B2.i)] op: E_mul3add targ: (BS.B1.o<BS.B2.i) - args: [(BS.B1.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B1.i), (BS.B1.o<BS.B1.i)] op: E_mul3add targ: (BS.B1.o<BS.B1.i) - args: [(BS.B2.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o)] op: E_mul2 targ: (BS.B2.o<L.BS.A2.o) - {op: E_del, targ: (BS.B2.o<BS.A2.o)} - args: [(BS.B1.o<BS.A2.o), (U.BS.A2.o<L.BS.A2.o)] op: E_mul2 targ: (BS.B1.o<L.BS.A2.o) - {op: E_del, targ: (BS.B1.o<BS.A2.o)} - args: [(U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B2.i)] op: E_mul2 targ: (U.BS.A2.o<BS.B2.i) - {op: E_del, targ: (BS.A2.o<BS.B2.i)} - args: [(U.BS.A2.o<L.BS.A2.o), (BS.A2.o<BS.B1.i)] op: E_mul2 targ: (U.BS.A2.o<BS.B1.i) - {op: E_del, targ: (BS.A2.o<BS.B1.i)} - args: [(U.BS.A2.i<BS.A2.o)] op: E_assign targ: (U.BS.A2.i<U.BS.A2.o) - {op: E_del, targ: (U.BS.A2.i<BS.A2.o)} - args: [(U.Y.itm.A.i<BS.A2.o)] op: E_assign targ: (U.Y.itm.A.i<U.BS.A2.o) - {op: E_del, targ: (U.Y.itm.A.i<BS.A2.o)} - args: [(BS.A2.o<L.BS.A2.i)] op: E_assign targ: (L.BS.A2.o<L.BS.A2.i) - {op: E_del, targ: (BS.A2.o<L.BS.A2.i)} - args: [(BS.A2.o<L.BS.A1.i)] op: E_assign targ: (L.BS.A2.o<L.BS.A1.i) - {op: E_del, targ: (BS.A2.o<L.BS.A1.i)} - args: [BS.B1.i] op: E_CLGd targ: (U.BS.B1.i<L.BS.B1.i) - args: [(BS.B2.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i), (BS.B1.i<BS.B1.o)] op: E_mul3 targ: (BS.B2.o<BS.B1.o) - args: [(BS.B1.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i), (BS.B1.i<BS.B1.o)] op: E_mul3 targ: (BS.B1.o<BS.B1.o) - args: [(BS.B2.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i)] op: E_mul2 targ: (BS.B2.o<L.BS.B1.i) - {op: E_del, targ: (BS.B2.o<BS.B1.i)} - args: [(BS.B1.o<BS.B1.i), (U.BS.B1.i<L.BS.B1.i)] op: E_mul2 targ: (BS.B1.o<L.BS.B1.i) - {op: E_del, targ: (BS.B1.o<BS.B1.i)} - args: [(U.BS.B1.i<L.BS.B1.i), (BS.B1.i<BS.B1.o)] op: E_mul2 targ: (U.BS.B1.i<BS.B1.o) - {op: E_del, targ: (BS.B1.i<BS.B1.o)} - args: [(U.BS.A1.o<BS.B1.i)] op: E_assign targ: (U.BS.A1.o<U.BS.B1.i) - {op: E_del, targ: (U.BS.A1.o<BS.B1.i)} - args: [(U.BS.A2.o<BS.B1.i)] op: E_assign targ: (U.BS.A2.o<U.BS.B1.i) - {op: E_del, targ: (U.BS.A2.o<BS.B1.i)} - args: [(BS.B1.i<L.X.itm.A.o)] op: E_assign targ: (L.BS.B1.i<L.X.itm.A.o) - {op: E_del, targ: (BS.B1.i<L.X.itm.A.o)} - args: [(BS.B1.o<BS.B1.o)] op: E_CLG targ: (U.BS.B1.o<L.BS.B1.o) - args: [(BS.B2.o<BS.B1.o), (U.BS.B1.o<L.BS.B1.o), (BS.B1.o<BS.B2.i), (BS.B2.o<BS.B2.i)] op: E_mul3add targ: (BS.B2.o<BS.B2.i) - args: [(BS.B2.o<BS.B1.o), (U.BS.B1.o<L.BS.B1.o)] op: E_mul2 targ: (BS.B2.o<L.BS.B1.o) - {op: E_del, targ: (BS.B2.o<BS.B1.o)} - args: [(U.BS.B1.o<L.BS.B1.o), (BS.B1.o<BS.B2.i)] op: E_mul2 targ: (U.BS.B1.o<BS.B2.i) - {op: E_del, targ: (BS.B1.o<BS.B2.i)} - args: [(U.BS.B1.i<BS.B1.o)] op: E_assign targ: (U.BS.B1.i<U.BS.B1.o) - {op: E_del, targ: (U.BS.B1.i<BS.B1.o)} - args: [(U.X.itm.A.i<BS.B1.o)] op: E_assign targ: (U.X.itm.A.i<U.BS.B1.o) - {op: E_del, targ: (U.X.itm.A.i<BS.B1.o)} - args: [(BS.B1.o<L.BS.A2.i)] op: E_assign targ: (L.BS.B1.o<L.BS.A2.i) - {op: E_del, targ: (BS.B1.o<L.BS.A2.i)} - args: [(BS.B1.o<L.BS.A2.o)] op: E_assign targ: (L.BS.B1.o<L.BS.A2.o) - {op: E_del, targ: (BS.B1.o<L.BS.A2.o)} - args: [(BS.B1.o<L.BS.B1.i)] op: E_assign targ: (L.BS.B1.o<L.BS.B1.i) - {op: E_del, targ: (BS.B1.o<L.BS.B1.i)} - args: [(BS.B1.o<L.BS.A1.i)] op: E_assign targ: (L.BS.B1.o<L.BS.A1.i) - {op: E_del, targ: (BS.B1.o<L.BS.A1.i)} - args: [BS.B2.i] op: E_CLGd targ: (U.BS.B2.i<L.BS.B2.i) - args: [(BS.B2.o<BS.B2.i), (U.BS.B2.i<L.BS.B2.i), (BS.B2.i<srm.A.o)] op: E_mul3 targ: (BS.B2.o<srm.A.o) - args: [(U.BS.B2.i<L.BS.B2.i), (BS.B2.i<srm.A.o)] op: E_mul2 targ: (U.BS.B2.i<srm.A.o) - {op: E_del, targ: (BS.B2.i<srm.A.o)} - args: [(U.BS.B1.o<BS.B2.i)] op: E_assign targ: (U.BS.B1.o<U.BS.B2.i) - {op: E_del, targ: (U.BS.B1.o<BS.B2.i)} - args: [(U.BS.A2.o<BS.B2.i)] op: E_assign targ: (U.BS.A2.o<U.BS.B2.i) - {op: E_del, targ: (U.BS.A2.o<BS.B2.i)} - {op: E_del, targ: (U.BS.B2.i<L.BS.B2.i)} - args: [BS.B2.o] op: E_CLGd targ: (U.BS.B2.o<L.BS.B2.o) - args: [(srm.A.i<BS.B2.o), (U.BS.B2.o<L.BS.B2.o), (BS.B2.o<srm.A.o)] op: E_mul3 targ: (srm.A.i<srm.A.o) - args: [(srm.A.i<BS.B2.o), (U.BS.B2.o<L.BS.B2.o)] op: E_mul2 targ: (srm.A.i<L.BS.B2.o) - {op: E_del, targ: (srm.A.i<BS.B2.o)} - args: [(BS.B2.o<L.BS.A2.i)] op: E_assign targ: (L.BS.B2.o<L.BS.A2.i) - {op: E_del, targ: (BS.B2.o<L.BS.A2.i)} - args: [(BS.B2.o<L.BS.B1.i)] op: E_assign targ: (L.BS.B2.o<L.BS.B1.i) - {op: E_del, targ: (BS.B2.o<L.BS.B1.i)} - args: [(BS.B2.o<L.BS.B1.o)] op: E_assign targ: (L.BS.B2.o<L.BS.B1.o) - {op: E_del, targ: (BS.B2.o<L.BS.B1.o)} - args: [(BS.B2.o<L.BS.A2.o)] op: E_assign targ: (L.BS.B2.o<L.BS.A2.o) - {op: E_del, targ: (BS.B2.o<L.BS.A2.o)} - {op: E_del, targ: (U.BS.B2.o<L.BS.B2.o)} - args: [srm.A.i] op: E_CLGd targ: (U.srm.A.i<L.srm.A.i) - args: [(srm.B.o<srm.A.i), (U.srm.A.i<L.srm.A.i), (srm.A.i<srm.A.o)] op: E_mul3 targ: (srm.B.o<srm.A.o) - args: [(srm.A.o<srm.A.i), (U.srm.A.i<L.srm.A.i), (srm.A.i<srm.A.o)] op: E_mul3 targ: (srm.A.o<srm.A.o) - args: [(srm.B.o<srm.A.i), (U.srm.A.i<L.srm.A.i)] op: E_mul2 targ: (srm.B.o<L.srm.A.i) - {op: E_del, targ: (srm.B.o<srm.A.i)} - args: [(srm.A.o<srm.A.i), (U.srm.A.i<L.srm.A.i)] op: E_mul2 targ: (srm.A.o<L.srm.A.i) - {op: E_del, targ: (srm.A.o<srm.A.i)} - args: [(srm.A.i<L.BS.B2.o)] op: E_assign targ: (L.srm.A.i<L.BS.B2.o) - {op: E_del, targ: (srm.A.i<L.BS.B2.o)} - {op: E_del, targ: (U.srm.A.i<L.srm.A.i)} - args: [(srm.A.o<srm.A.o)] op: E_CLG targ: (U.srm.A.o<L.srm.A.o) - args: [(srm.B.o<srm.A.o), (U.srm.A.o<L.srm.A.o), (srm.A.o<srm.B.i), (srm.B.o<srm.B.i)] op: E_mul3add targ: (srm.B.o<srm.B.i) - args: [(srm.B.o<srm.A.o), (U.srm.A.o<L.srm.A.o)] op: E_mul2 targ: (srm.B.o<L.srm.A.o) - {op: E_del, targ: (srm.B.o<srm.A.o)} - args: [(U.srm.A.o<L.srm.A.o), (srm.A.o<srm.B.i)] op: E_mul2 targ: (U.srm.A.o<srm.B.i) - {op: E_del, targ: (srm.A.o<srm.B.i)} - args: [(U.BS.B2.i<srm.A.o)] op: E_assign targ: (U.BS.B2.i<U.srm.A.o) - {op: E_del, targ: (U.BS.B2.i<srm.A.o)} - args: [(srm.A.o<L.srm.A.i)] op: E_assign targ: (L.srm.A.o<L.srm.A.i) - {op: E_del, targ: (srm.A.o<L.srm.A.i)} - args: [srm.B.i] op: E_CLGd targ: (U.srm.B.i<L.srm.B.i) - args: [(srm.B.o<srm.B.i), (U.srm.B.i<L.srm.B.i)] op: E_mul2 targ: (srm.B.o<L.srm.B.i) - {op: E_del, targ: (srm.B.o<srm.B.i)} - args: [(U.srm.A.o<srm.B.i)] op: E_assign targ: (U.srm.A.o<U.srm.B.i) - {op: E_del, targ: (U.srm.A.o<srm.B.i)} - args: [(srm.B.i<srm.B.i.exc)] op: E_assign targ: (L.srm.B.i<srm.B.i.exc) - {op: E_del, targ: (srm.B.i<srm.B.i.exc)} - args: [srm.B.o] op: E_CLGd targ: (U.srm.B.o<L.srm.B.o) - args: [(srm.B.o.tp<srm.B.o)] op: E_assign targ: (srm.B.o.tp<U.srm.B.o) - {op: E_del, targ: (srm.B.o.tp<srm.B.o)} - args: [(srm.B.o<L.srm.A.i)] op: E_assign targ: (L.srm.B.o<L.srm.A.i) - {op: E_del, targ: (srm.B.o<L.srm.A.i)} - args: [(srm.B.o<L.srm.B.i)] op: E_assign targ: (L.srm.B.o<L.srm.B.i) - {op: E_del, targ: (srm.B.o<L.srm.B.i)} - args: [(srm.B.o<L.srm.A.o)] op: E_assign targ: (L.srm.B.o<L.srm.A.o) - {op: E_del, targ: (srm.B.o<L.srm.A.o)} row2col: L.BS.A1.i: [L.prm.B.o] L.BS.A2.i: [L.Y.itm.A.o] L.BS.A2.o: [L.BS.A2.i, L.BS.A1.i] L.BS.B1.i: [L.X.itm.A.o] L.BS.B1.o: [L.BS.A2.i, L.BS.B1.i, L.BS.A2.o, L.BS.A1.i] L.BS.B2.o: [L.BS.A2.i, L.BS.B1.i, L.BS.B1.o, L.BS.A2.o] L.X.etm.A.o: [X.etm.A.o.exc, X.etm.B.i] L.X.itm.A.o: [L.X.itm.B.i, L.X.itm.B.o] L.X.itm.B.i: [L.X.etm.A.o] L.X.itm.B.o: [L.X.itm.B.i] L.Y.etm.A.o: [Y.etm.A.o.exc, Y.etm.B.i] L.Y.itm.A.o: [L.Y.itm.B.i, L.Y.itm.B.o] L.Y.itm.B.i: [L.Y.etm.A.o] L.Y.itm.B.o: [L.Y.itm.B.i] L.prm.A.i: [prm.A.i.exc] L.prm.A.o: [L.prm.A.i] L.prm.B.o: [L.prm.A.i] L.srm.A.i: [L.BS.B2.o] L.srm.A.o: [L.srm.A.i] L.srm.B.i: [srm.B.i.exc] L.srm.B.o: [L.srm.A.i, L.srm.B.i, L.srm.A.o] U.BS.A1.o: [U.BS.B1.i, U.BS.A2.i] U.BS.A2.i: [L.BS.A2.i, U.BS.A2.o] U.BS.A2.o: [U.BS.B2.i, L.BS.A2.o, U.BS.B1.i] U.BS.B1.i: [L.BS.B1.i, U.BS.B1.o] U.BS.B1.o: [U.BS.B2.i, L.BS.B1.o] U.BS.B2.i: [U.srm.A.o] U.X.etm.A.i: [U.X.itm.B.o] U.X.etm.A.o: [U.X.itm.B.o, L.X.etm.A.o] U.X.itm.A.i: [U.BS.B1.o] U.X.itm.B.o: [U.X.itm.A.i, L.X.itm.B.o] U.Y.etm.A.i: [U.Y.itm.B.o] U.Y.etm.A.o: [L.Y.etm.A.o, U.Y.itm.B.o] U.Y.itm.A.i: [U.BS.A2.o] U.Y.itm.B.o: [U.Y.itm.A.i, L.Y.itm.B.o] U.prm.A.o: [L.prm.A.o, U.prm.B.i] U.prm.B.i: [U.BS.A1.o] U.srm.A.o: [U.srm.B.i, L.srm.A.o] U.srm.B.i: [L.srm.B.i] U.srm.B.o: [L.srm.B.o] X.etm.A.o.tp: [U.X.etm.A.o] X.etm.B.o: [X.etm.B.i, U.X.etm.A.i] Y.etm.A.o.tp: [U.Y.etm.A.o] Y.etm.B.o: [U.Y.etm.A.i, Y.etm.B.i] prm.A.o.tp: [U.prm.A.o] srm.B.o.tp: [U.srm.B.o] captured errors: def T_SFLU_DRFPMI_serialize(): sflu = SFLU.SFLU( DRFPMI_edges, **in_out, ) sflu.reduce(*reduce_list) comp = sflu.computer() oplistE_yamlstr = comp.convert_oplistE2yamlstr() print(oplistE_yamlstr) assert(comp.convert_yamlstr2oplistE(oplistE_yamlstr) == comp.oplistE) comp_yamlstr = comp.convert_self2yamlstr() print(comp_yamlstr) > comp2 = SFLU.SFLUCompute.from_yaml(comp_yamlstr) E AttributeError: module 'wield.control.SFLU.SFLU' has no attribute 'SFLUCompute'. Did you mean: 'SFLUcompute'? ../../src/wield/control/SFLU/test/T_SFLU_DRFPMI.py:347: AttributeError
- T_SFLU_DRFPMI_show_full()[source][github]¶
Show a graph reduction using networkx+tikz
code
docstring
""" Show a graph reduction using networkx+tikz """
1def T_SFLU_DRFPMI_show_full(): 2 3 sflu = SFLU.SFLU( 4 DRFPMI_edges, 5 graph=True, 6 ) 7 # match=False allows a reduced input/output set 8 sflu.graph_nodes_pos(DRFPMI_locs, match=True) 9 #sflu.graph_nodes_pos(DRFPMI_locs, match=True) 10 print('inputs: ', sflu.inputs) 11 print('outputs: ', sflu.outputs) 12 print('nodes: ', sflu.nodes) 13 14 #print('nodes') 15 #print(sflu.graph_nodes_repr()) 16 G1 = sflu.G.copy() 17 sflu.graph_reduce_auto_pos(lX=-10, rX=+10, Y=0, dY=-2) 18 sflu.reduce(*reduce_list) 19 sflu.graph_reduce_auto_pos_io(lX=-30, rX=+30, Y=-5, dY=-5) 20 G2 = sflu.G.copy() 21 22 nx2tikz.dump_pdf( 23 [G1, G2], 24 fname = tjoin('testG.pdf'), 25 texname = tjoin('testG.tex'), 26 # preamble = preamble, 27 scale='10pt', 28 )
pytest information
This code is wrapped in a pytest function using conventions detailed in Pytest Conventions. The full name of this test, as known by the documentation, is:
wield.control.SFLU.test.T_SFLU_DRFPMI.T_SFLU_DRFPMI_show_fullThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_SFLU_DRFPMI_show_full
output
inputs: {'prm.A.i.exc', 'X.etm.A.o.exc', 'Y.etm.A.o.exc', 'Y.etm.B.i', 'srm.B.i.exc', 'X.etm.B.i'} outputs: {'Y.etm.A.o.tp', 'Y.etm.B.o', 'srm.B.o.tp', 'prm.A.o.tp', 'X.etm.B.o', 'X.etm.A.o.tp'} nodes: {'BS.B2.i', 'BS.A1.i', 'BS.A2.i', 'Y.etm.A.i', 'prm.A.o', 'Y.itm.B.o', 'X.itm.B.o', 'BS.B1.i', 'prm.B.i', 'X.etm.A.i', 'Y.itm.A.i', 'X.itm.A.i', 'prm.B.o', 'Y.itm.A.o', 'X.etm.A.o', 'X.itm.B.i', 'srm.B.i', 'BS.A2.o', 'BS.B1.o', 'srm.B.o', 'prm.A.i', 'Y.etm.A.o', 'srm.A.i', 'BS.A1.o', 'srm.A.o', 'X.itm.A.o', 'BS.B2.o', 'Y.itm.B.i'} captured errors: def T_SFLU_DRFPMI_show_full(): """ Show a graph reduction using networkx+tikz """ sflu = SFLU.SFLU( DRFPMI_edges, graph=True, ) # match=False allows a reduced input/output set sflu.graph_nodes_pos(DRFPMI_locs, match=True) #sflu.graph_nodes_pos(DRFPMI_locs, match=True) print('inputs: ', sflu.inputs) print('outputs: ', sflu.outputs) print('nodes: ', sflu.nodes) #print('nodes') #print(sflu.graph_nodes_repr()) G1 = sflu.G.copy() sflu.graph_reduce_auto_pos(lX=-10, rX=+10, Y=0, dY=-2) sflu.reduce(*reduce_list) sflu.graph_reduce_auto_pos_io(lX=-30, rX=+30, Y=-5, dY=-5) G2 = sflu.G.copy() > nx2tikz.dump_pdf( [G1, G2], fname = tjoin('testG.pdf'), texname = tjoin('testG.tex'), # preamble = preamble, scale='10pt', ) ../../src/wield/control/SFLU/test/T_SFLU_DRFPMI.py:232: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ ../../src/wield/control/SFLU/nx2tikz.py:230: in dump_pdf subprocess.run(opt, check=True, capture_output=True) /opt/conda/lib/python3.12/subprocess.py:548: in run with Popen(*popenargs, **kwargs) as process: /opt/conda/lib/python3.12/subprocess.py:1026: in __init__ self._execute_child(args, executable, preexec_fn, close_fds, _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ self = <Popen: returncode: 255 args: ['pdflatex', '-interaction=batchmode', '-outpu...> args = ['pdflatex', '-interaction=batchmode', '-output-directory=/builds/wield-control/docs/maketests/test_results/T_SFLU_DRF...l/tmp69zefvqq', '/builds/wield-control/docs/maketests/test_results/T_SFLU_DRFPMI.py/T_SFLU_DRFPMI_show_full/testG.tex'] executable = b'pdflatex', preexec_fn = None, close_fds = True, pass_fds = () cwd = None, env = None, startupinfo = None, creationflags = 0, shell = False p2cread = -1, p2cwrite = -1, c2pread = 5, c2pwrite = 6, errread = 7 errwrite = 8, restore_signals = True, gid = None, gids = None, uid = None umask = -1, start_new_session = False, process_group = -1 def _execute_child(self, args, executable, preexec_fn, close_fds, pass_fds, cwd, env, startupinfo, creationflags, shell, p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite, restore_signals, gid, gids, uid, umask, start_new_session, process_group): """Execute program (POSIX version)""" if isinstance(args, (str, bytes)): args = [args] elif isinstance(args, os.PathLike): if shell: raise TypeError('path-like args is not allowed when ' 'shell is true') args = [args] else: args = list(args) if shell: # On Android the default shell is at '/system/bin/sh'. unix_shell = ('/system/bin/sh' if hasattr(sys, 'getandroidapilevel') else '/bin/sh') args = [unix_shell, "-c"] + args if executable: args[0] = executable if executable is None: executable = args[0] sys.audit("subprocess.Popen", executable, args, cwd, env) if (_USE_POSIX_SPAWN and os.path.dirname(executable) and preexec_fn is None and not close_fds and not pass_fds and cwd is None and (p2cread == -1 or p2cread > 2) and (c2pwrite == -1 or c2pwrite > 2) and (errwrite == -1 or errwrite > 2) and not start_new_session and process_group == -1 and gid is None and gids is None and uid is None and umask < 0): self._posix_spawn(args, executable, env, restore_signals, p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite) return orig_executable = executable # For transferring possible exec failure from child to parent. # Data format: "exception name:hex errno:description" # Pickle is not used; it is complex and involves memory allocation. errpipe_read, errpipe_write = os.pipe() # errpipe_write must not be in the standard io 0, 1, or 2 fd range. low_fds_to_close = [] while errpipe_write < 3: low_fds_to_close.append(errpipe_write) errpipe_write = os.dup(errpipe_write) for low_fd in low_fds_to_close: os.close(low_fd) try: try: # We must avoid complex work that could involve # malloc or free in the child process to avoid # potential deadlocks, thus we do all this here. # and pass it to fork_exec() if env is not None: env_list = [] for k, v in env.items(): k = os.fsencode(k) if b'=' in k: raise ValueError("illegal environment variable name") env_list.append(k + b'=' + os.fsencode(v)) else: env_list = None # Use execv instead of execve. executable = os.fsencode(executable) if os.path.dirname(executable): executable_list = (executable,) else: # This matches the behavior of os._execvpe(). executable_list = tuple( os.path.join(os.fsencode(dir), executable) for dir in os.get_exec_path(env)) fds_to_keep = set(pass_fds) fds_to_keep.add(errpipe_write) self.pid = _fork_exec( args, executable_list, close_fds, tuple(sorted(map(int, fds_to_keep))), cwd, env_list, p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite, errpipe_read, errpipe_write, restore_signals, start_new_session, process_group, gid, gids, uid, umask, preexec_fn, _USE_VFORK) self._child_created = True finally: # be sure the FD is closed no matter what os.close(errpipe_write) self._close_pipe_fds(p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite) # Wait for exec to fail or succeed; possibly raising an # exception (limited in size) errpipe_data = bytearray() while True: part = os.read(errpipe_read, 50000) errpipe_data += part if not part or len(errpipe_data) > 50000: break finally: # be sure the FD is closed no matter what os.close(errpipe_read) if errpipe_data: try: pid, sts = os.waitpid(self.pid, 0) if pid == self.pid: self._handle_exitstatus(sts) else: self.returncode = sys.maxsize except ChildProcessError: pass try: exception_name, hex_errno, err_msg = ( errpipe_data.split(b':', 2)) # The encoding here should match the encoding # written in by the subprocess implementations # like _posixsubprocess err_msg = err_msg.decode() except ValueError: exception_name = b'SubprocessError' hex_errno = b'0' err_msg = 'Bad exception data from child: {!r}'.format( bytes(errpipe_data)) child_exception_type = getattr( builtins, exception_name.decode('ascii'), SubprocessError) if issubclass(child_exception_type, OSError) and hex_errno: errno_num = int(hex_errno, 16) if err_msg == "noexec:chdir": err_msg = "" # The error must be from chdir(cwd). err_filename = cwd elif err_msg == "noexec": err_msg = "" err_filename = None else: err_filename = orig_executable if errno_num != 0: err_msg = os.strerror(errno_num) if err_filename is not None: > raise child_exception_type(errno_num, err_msg, err_filename) E FileNotFoundError: [Errno 2] No such file or directory: 'pdflatex' /opt/conda/lib/python3.12/subprocess.py:1955: FileNotFoundError
- T_SFLU_DRFPMI_show_sub()[source][github]¶
Show a graph reduction using networkx+tikz
code
docstring
""" Show a graph reduction using networkx+tikz """
1def T_SFLU_DRFPMI_show_sub(): 2 3 sflu = SFLU.SFLU( 4 DRFPMI_edges, 5 graph=True, 6 **in_out, 7 ) 8 # match=False allows a reduced input/output set 9 sflu.graph_nodes_pos(DRFPMI_locs, match=True) 10 G0 = sflu.G.copy() 11 #sflu.graph_nodes_pos(DRFPMI_locs, match=True) 12 print('inputs: ', sflu.inputs) 13 print('outputs: ', sflu.outputs) 14 print('nodes: ', sflu.nodes) 15 16 #print('nodes') 17 #print(sflu.graph_nodes_repr()) 18 G1 = sflu.G.copy() 19 20 sflu.graph_reduce_auto_pos(lX=-10, rX=+10, Y=0, dY=-2) 21 sflu.reduce(*reduce_list) 22 print('nodes: ', sflu.nodes) 23 24 sflu.graph_reduce_auto_pos_io(lX=-30, rX=+30, Y=-5, dY=-5) 25 26 G2 = sflu.G.copy() 27 G3 = sflu.G.copy() 28 for rN, cS in sflu.row2col_cf.items(): 29 for cN in cS: 30 G2.edges[cN, rN]['color'] = 'blue' 31 for cN, rS in sflu.col2row_cf.items(): 32 for rN in rS: 33 G2.edges[cN, rN]['color'] = 'red' 34 35 if True: 36 # this is to colorize the edges of G3 based on the computation 37 comp = sflu.computer() 38 39 edge_map = {} 40 comp.edge_map(edge_map = edge_map, default = 1) 41 print(edge_map) 42 43 T_etm = 0 44 T_itm = 0.0148 45 T_prm = 0.03 46 T_srm = 0.35 47 emap = { 48 '1': 1, 49 'BS.r': 0.5**0.5, 50 'BS.t': 0.5**0.5, 51 'BS_X.tau': np.exp(np.pi*2j*0), 52 'BS_Y.tau': np.exp(np.pi*2j*0), 53 'X.etm.r': (1-T_etm)**0.5, 54 'X.etm.t': T_etm**0.5, 55 'X.itm.r': (1-T_itm)**0.5, 56 'X.itm.t': T_itm**0.5, 57 'XARM.tau': np.exp(np.pi*2j*0), 58 'Y.etm.r': (1-T_etm)**0.5, 59 'Y.etm.t': T_etm**0.5, 60 'Y.itm.r': (1-T_itm)**0.5, 61 'Y.itm.t': T_itm**0.5, 62 'YARM.tau': np.exp(np.pi*2j*0), 63 'prc.tau': np.exp(np.pi*2j*0), 64 'prm.r': (1-T_prm)**0.5, 65 'prm.t': T_prm**0.5, 66 'src.tau': np.exp(np.pi*2j*0), 67 'srm.r': (1-T_srm)**0.5, 68 'srm.t': T_srm**0.5, 69 } 70 assert(set(edge_map.keys()) == set(emap.keys())) 71 72 comp.compute(edge_map=emap) 73 for rN, cN in comp.Espace.keys(): 74 try: 75 G3.edges[cN, rN]['color'] = 'red' 76 except KeyError: 77 pass 78 else: 79 G3 = G2 80 81 nx2tikz.dump_pdf( 82 [G1, G2, G3], 83 fname = tjoin('testG.pdf'), 84 texname = tjoin('testG.tex'), 85 # preamble = preamble, 86 scale='10pt', 87 )
pytest information
This code is wrapped in a pytest function using conventions detailed in Pytest Conventions. The full name of this test, as known by the documentation, is:
wield.control.SFLU.test.T_SFLU_DRFPMI.T_SFLU_DRFPMI_show_subThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_SFLU_DRFPMI_show_sub
output
inputs: {'prm.A.i.exc', 'X.etm.A.o.exc', 'Y.etm.A.o.exc', 'Y.etm.B.i', 'srm.B.i.exc', 'X.etm.B.i'} outputs: {'Y.etm.A.o.tp', 'Y.etm.B.o', 'srm.B.o.tp', 'prm.A.o.tp', 'X.etm.B.o', 'X.etm.A.o.tp'} nodes: {'BS.B2.i', 'BS.A1.i', 'BS.A2.i', 'Y.etm.A.i', 'prm.A.o', 'Y.itm.B.o', 'X.itm.B.o', 'BS.B1.i', 'prm.B.i', 'X.etm.A.i', 'Y.itm.A.i', 'X.itm.A.i', 'prm.B.o', 'Y.itm.A.o', 'X.etm.A.o', 'X.itm.B.i', 'srm.B.i', 'BS.A2.o', 'BS.B1.o', 'srm.B.o', 'prm.A.i', 'Y.etm.A.o', 'srm.A.i', 'BS.A1.o', 'srm.A.o', 'X.itm.A.o', 'BS.B2.o', 'Y.itm.B.i'} nodes: set() {'BS.t': 1, 'BS.r': 1, 'prm.t': 1, 'prm.r': 1, 'srm.t': 1, 'srm.r': 1, 'Y.itm.r': 1, 'Y.itm.t': 1, 'Y.etm.r': 1, 'Y.etm.t': 1, 'X.itm.r': 1, 'X.itm.t': 1, 'X.etm.r': 1, 'X.etm.t': 1, 'prc.tau': 1, 'src.tau': 1, 'BS_Y.tau': 1, 'BS_X.tau': 1, 'XARM.tau': 1, 'YARM.tau': 1, '1': 1} captured errors: def T_SFLU_DRFPMI_show_sub(): """ Show a graph reduction using networkx+tikz """ sflu = SFLU.SFLU( DRFPMI_edges, graph=True, **in_out, ) # match=False allows a reduced input/output set sflu.graph_nodes_pos(DRFPMI_locs, match=True) G0 = sflu.G.copy() #sflu.graph_nodes_pos(DRFPMI_locs, match=True) print('inputs: ', sflu.inputs) print('outputs: ', sflu.outputs) print('nodes: ', sflu.nodes) #print('nodes') #print(sflu.graph_nodes_repr()) G1 = sflu.G.copy() sflu.graph_reduce_auto_pos(lX=-10, rX=+10, Y=0, dY=-2) sflu.reduce(*reduce_list) print('nodes: ', sflu.nodes) sflu.graph_reduce_auto_pos_io(lX=-30, rX=+30, Y=-5, dY=-5) G2 = sflu.G.copy() G3 = sflu.G.copy() for rN, cS in sflu.row2col_cf.items(): for cN in cS: G2.edges[cN, rN]['color'] = 'blue' for cN, rS in sflu.col2row_cf.items(): for rN in rS: G2.edges[cN, rN]['color'] = 'red' if True: # this is to colorize the edges of G3 based on the computation comp = sflu.computer() edge_map = {} comp.edge_map(edge_map = edge_map, default = 1) print(edge_map) T_etm = 0 T_itm = 0.0148 T_prm = 0.03 T_srm = 0.35 emap = { '1': 1, 'BS.r': 0.5**0.5, 'BS.t': 0.5**0.5, 'BS_X.tau': np.exp(np.pi*2j*0), 'BS_Y.tau': np.exp(np.pi*2j*0), 'X.etm.r': (1-T_etm)**0.5, 'X.etm.t': T_etm**0.5, 'X.itm.r': (1-T_itm)**0.5, 'X.itm.t': T_itm**0.5, 'XARM.tau': np.exp(np.pi*2j*0), 'Y.etm.r': (1-T_etm)**0.5, 'Y.etm.t': T_etm**0.5, 'Y.itm.r': (1-T_itm)**0.5, 'Y.itm.t': T_itm**0.5, 'YARM.tau': np.exp(np.pi*2j*0), 'prc.tau': np.exp(np.pi*2j*0), 'prm.r': (1-T_prm)**0.5, 'prm.t': T_prm**0.5, 'src.tau': np.exp(np.pi*2j*0), 'srm.r': (1-T_srm)**0.5, 'srm.t': T_srm**0.5, } assert(set(edge_map.keys()) == set(emap.keys())) comp.compute(edge_map=emap) for rN, cN in comp.Espace.keys(): try: G3.edges[cN, rN]['color'] = 'red' except KeyError: pass else: G3 = G2 > nx2tikz.dump_pdf( [G1, G2, G3], fname = tjoin('testG.pdf'), texname = tjoin('testG.tex'), # preamble = preamble, scale='10pt', ) ../../src/wield/control/SFLU/test/T_SFLU_DRFPMI.py:322: _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ ../../src/wield/control/SFLU/nx2tikz.py:230: in dump_pdf subprocess.run(opt, check=True, capture_output=True) /opt/conda/lib/python3.12/subprocess.py:548: in run with Popen(*popenargs, **kwargs) as process: /opt/conda/lib/python3.12/subprocess.py:1026: in __init__ self._execute_child(args, executable, preexec_fn, close_fds, _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ self = <Popen: returncode: 255 args: ['pdflatex', '-interaction=batchmode', '-outpu...> args = ['pdflatex', '-interaction=batchmode', '-output-directory=/builds/wield-control/docs/maketests/test_results/T_SFLU_DRF...ub/tmpahukqlap', '/builds/wield-control/docs/maketests/test_results/T_SFLU_DRFPMI.py/T_SFLU_DRFPMI_show_sub/testG.tex'] executable = b'pdflatex', preexec_fn = None, close_fds = True, pass_fds = () cwd = None, env = None, startupinfo = None, creationflags = 0, shell = False p2cread = -1, p2cwrite = -1, c2pread = 5, c2pwrite = 6, errread = 7 errwrite = 8, restore_signals = True, gid = None, gids = None, uid = None umask = -1, start_new_session = False, process_group = -1 def _execute_child(self, args, executable, preexec_fn, close_fds, pass_fds, cwd, env, startupinfo, creationflags, shell, p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite, restore_signals, gid, gids, uid, umask, start_new_session, process_group): """Execute program (POSIX version)""" if isinstance(args, (str, bytes)): args = [args] elif isinstance(args, os.PathLike): if shell: raise TypeError('path-like args is not allowed when ' 'shell is true') args = [args] else: args = list(args) if shell: # On Android the default shell is at '/system/bin/sh'. unix_shell = ('/system/bin/sh' if hasattr(sys, 'getandroidapilevel') else '/bin/sh') args = [unix_shell, "-c"] + args if executable: args[0] = executable if executable is None: executable = args[0] sys.audit("subprocess.Popen", executable, args, cwd, env) if (_USE_POSIX_SPAWN and os.path.dirname(executable) and preexec_fn is None and not close_fds and not pass_fds and cwd is None and (p2cread == -1 or p2cread > 2) and (c2pwrite == -1 or c2pwrite > 2) and (errwrite == -1 or errwrite > 2) and not start_new_session and process_group == -1 and gid is None and gids is None and uid is None and umask < 0): self._posix_spawn(args, executable, env, restore_signals, p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite) return orig_executable = executable # For transferring possible exec failure from child to parent. # Data format: "exception name:hex errno:description" # Pickle is not used; it is complex and involves memory allocation. errpipe_read, errpipe_write = os.pipe() # errpipe_write must not be in the standard io 0, 1, or 2 fd range. low_fds_to_close = [] while errpipe_write < 3: low_fds_to_close.append(errpipe_write) errpipe_write = os.dup(errpipe_write) for low_fd in low_fds_to_close: os.close(low_fd) try: try: # We must avoid complex work that could involve # malloc or free in the child process to avoid # potential deadlocks, thus we do all this here. # and pass it to fork_exec() if env is not None: env_list = [] for k, v in env.items(): k = os.fsencode(k) if b'=' in k: raise ValueError("illegal environment variable name") env_list.append(k + b'=' + os.fsencode(v)) else: env_list = None # Use execv instead of execve. executable = os.fsencode(executable) if os.path.dirname(executable): executable_list = (executable,) else: # This matches the behavior of os._execvpe(). executable_list = tuple( os.path.join(os.fsencode(dir), executable) for dir in os.get_exec_path(env)) fds_to_keep = set(pass_fds) fds_to_keep.add(errpipe_write) self.pid = _fork_exec( args, executable_list, close_fds, tuple(sorted(map(int, fds_to_keep))), cwd, env_list, p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite, errpipe_read, errpipe_write, restore_signals, start_new_session, process_group, gid, gids, uid, umask, preexec_fn, _USE_VFORK) self._child_created = True finally: # be sure the FD is closed no matter what os.close(errpipe_write) self._close_pipe_fds(p2cread, p2cwrite, c2pread, c2pwrite, errread, errwrite) # Wait for exec to fail or succeed; possibly raising an # exception (limited in size) errpipe_data = bytearray() while True: part = os.read(errpipe_read, 50000) errpipe_data += part if not part or len(errpipe_data) > 50000: break finally: # be sure the FD is closed no matter what os.close(errpipe_read) if errpipe_data: try: pid, sts = os.waitpid(self.pid, 0) if pid == self.pid: self._handle_exitstatus(sts) else: self.returncode = sys.maxsize except ChildProcessError: pass try: exception_name, hex_errno, err_msg = ( errpipe_data.split(b':', 2)) # The encoding here should match the encoding # written in by the subprocess implementations # like _posixsubprocess err_msg = err_msg.decode() except ValueError: exception_name = b'SubprocessError' hex_errno = b'0' err_msg = 'Bad exception data from child: {!r}'.format( bytes(errpipe_data)) child_exception_type = getattr( builtins, exception_name.decode('ascii'), SubprocessError) if issubclass(child_exception_type, OSError) and hex_errno: errno_num = int(hex_errno, 16) if err_msg == "noexec:chdir": err_msg = "" # The error must be from chdir(cwd). err_filename = cwd elif err_msg == "noexec": err_msg = "" err_filename = None else: err_filename = orig_executable if errno_num != 0: err_msg = os.strerror(errno_num) if err_filename is not None: > raise child_exception_type(errno_num, err_msg, err_filename) E FileNotFoundError: [Errno 2] No such file or directory: 'pdflatex' /opt/conda/lib/python3.12/subprocess.py:1955: FileNotFoundError
- T_SFLU_DRFPMI_working()[source][github]¶
This is a pytest needing documentation
code
1def T_SFLU_DRFPMI_working(): 2 sflu = SFLU.SFLU( 3 DRFPMI_edges, 4 **in_out, 5 ) 6 sflu.reduce(*reduce_list) 7 comp = sflu.computer() 8 print(comp.edges) 9 10 edge_map = {} 11 comp.edge_map(edge_map = edge_map, default = 1) 12 print(edge_map) 13 14 T_etm = 80e-6 15 T_itm = 0.0148 16 T_prm = 0.03 17 T_srm = 0.35 18 emap = { 19 '1': 1, 20 'BS.r': 0.5**0.5, 21 'BS.t': 0.5**0.5, 22 'BS_X.tau': np.exp(np.pi*0.5j), 23 'BS_Y.tau': np.exp(np.pi*2j*0), 24 'X.etm.r': (1-T_etm)**0.5, 25 'X.etm.t': T_etm**0.5, 26 'X.itm.r': (1-T_itm)**0.5, 27 'X.itm.t': T_itm**0.5, 28 'XARM.tau': np.exp(np.pi*2j*0), 29 'Y.etm.r': (1-T_etm)**0.5, 30 'Y.etm.t': T_etm**0.5, 31 'Y.itm.r': (1-T_itm)**0.5, 32 'Y.itm.t': T_itm**0.5, 33 'YARM.tau': np.exp(np.pi*2j*0), 34 'prc.tau': np.exp(np.pi*2j*0), 35 'prm.r': (1-T_prm)**0.5, 36 'prm.t': T_prm**0.5, 37 'src.tau': np.exp(np.pi*2j*0), 38 'srm.r': (1-T_srm)**0.5, 39 'srm.t': T_srm**0.5, 40 } 41 assert(set(edge_map.keys()) == set(emap.keys())) 42 43 comp.compute(edge_map=emap) 44 dprint(list(comp.Espace.keys())) 45 #results = comp.inverse_col(['srm.B.o.tp'], {'srm.B.i.exc':1})['srm.B.o.tp'] 46 results = comp.inverse_single('srm.B.o.tp', 'srm.B.i.exc') 47 print("CALC: ", abs(results)**2) 48 49 results = comp.inverse_row({'srm.B.o.tp': None}, { 50 'srm.B.i.exc', 51 'prm.A.i.exc', 52 'X.etm.B.i', 53 'Y.etm.B.i', 54 }) 55 print("CALC: ", {k : abs(r)**2 for k, r in results.items()}, sum(abs(r)**2 for k, r in results.items())) 56 pass
pytest information
This code is wrapped in a pytest function using conventions detailed in Pytest Conventions. The full name of this test, as known by the documentation, is:
wield.control.SFLU.test.T_SFLU_DRFPMI.T_SFLU_DRFPMI_workingThe full name is useful when building documentation, to link a reference to this page using
:func:`name`, or directly include it with an autofunction directive. The collapse nodes below show every instance of the test run. There may only be one, but if the test was run multiple times through pytest parametrizations, the list can be longer.T_SFLU_DRFPMI_working
output
{{BS.B1.o<BS.A1.i}: 'BS.t', {BS.A1.o<BS.B1.i}: 'BS.t', {BS.B2.o<BS.A2.i}: 'BS.t', {BS.A2.o<BS.B2.i}: 'BS.t', {BS.A2.o<BS.A1.i}: 'BS.r', {BS.A1.o<BS.A2.i}: 'BS.r', {BS.B1.o<BS.B2.i}: '-BS.r', {BS.B2.o<BS.B1.i}: '-BS.r', {prm.A.o<prm.B.i}: 'prm.t', {prm.B.o<prm.A.i}: 'prm.t', {prm.A.o<prm.A.i}: 'prm.r', {prm.B.o<prm.B.i}: '-prm.r', {srm.B.o<srm.A.i}: 'srm.t', {srm.A.o<srm.B.i}: 'srm.t', {srm.A.o<srm.A.i}: 'srm.r', {srm.B.o<srm.B.i}: '-srm.r', {Y.itm.A.o<Y.itm.A.i}: 'Y.itm.r', {Y.itm.B.o<Y.itm.B.i}: '-Y.itm.r', {Y.itm.B.o<Y.itm.A.i}: 'Y.itm.t', {Y.itm.A.o<Y.itm.B.i}: 'Y.itm.t', {Y.etm.A.o<Y.etm.A.i}: 'Y.etm.r', {Y.etm.B.o<Y.etm.B.i}: '-Y.etm.r', {Y.etm.B.o<Y.etm.A.i}: 'Y.etm.t', {Y.etm.A.o<Y.etm.B.i}: 'Y.etm.t', {X.itm.A.o<X.itm.A.i}: 'X.itm.r', {X.itm.B.o<X.itm.B.i}: '-X.itm.r', {X.itm.B.o<X.itm.A.i}: 'X.itm.t', {X.itm.A.o<X.itm.B.i}: 'X.itm.t', {X.etm.A.o<X.etm.A.i}: 'X.etm.r', {X.etm.B.o<X.etm.B.i}: '-X.etm.r', {X.etm.B.o<X.etm.A.i}: 'X.etm.t', {X.etm.A.o<X.etm.B.i}: 'X.etm.t', {prm.B.i<BS.A1.o}: 'prc.tau', {BS.A1.i<prm.B.o}: 'prc.tau', {srm.A.i<BS.B2.o}: 'src.tau', {BS.B2.i<srm.A.o}: 'src.tau', {Y.itm.A.i<BS.A2.o}: ('*', 'BS_Y.tau'), {BS.A2.i<Y.itm.A.o}: ('*', 'BS_Y.tau'), {X.itm.A.i<BS.B1.o}: ('*', 'BS_X.tau'), {BS.B1.i<X.itm.A.o}: ('*', 'BS_X.tau'), {X.etm.A.i<X.itm.B.o}: 'XARM.tau', {X.itm.B.i<X.etm.A.o}: 'XARM.tau', {Y.etm.A.i<Y.itm.B.o}: 'YARM.tau', {Y.itm.B.i<Y.etm.A.o}: 'YARM.tau', {X.etm.A.o<X.etm.A.o.exc}: '1', {Y.etm.A.o<Y.etm.A.o.exc}: '1', {X.etm.A.o.tp<X.etm.A.o}: '1', {Y.etm.A.o.tp<Y.etm.A.o}: '1', {srm.B.i<srm.B.i.exc}: '1', {srm.B.o.tp<srm.B.o}: '1', {prm.A.i<prm.A.i.exc}: '1', {prm.A.o.tp<prm.A.o}: '1'} {'BS.t': 1, 'BS.r': 1, 'prm.t': 1, 'prm.r': 1, 'srm.t': 1, 'srm.r': 1, 'Y.itm.r': 1, 'Y.itm.t': 1, 'Y.etm.r': 1, 'Y.etm.t': 1, 'X.itm.r': 1, 'X.itm.t': 1, 'X.etm.r': 1, 'X.etm.t': 1, 'prc.tau': 1, 'src.tau': 1, 'BS_Y.tau': 1, 'BS_X.tau': 1, 'XARM.tau': 1, 'YARM.tau': 1, '1': 1} CALC: [[0.99673763]] CALC: {'prm.A.i.exc': 0.003262307500516606, 'Y.etm.B.i': 3.704200314544889e-12, 'X.etm.B.i': 6.388303381961165e-08, 'srm.B.i.exc': 0.9967376286127455} 1.0000000000000002 Captured stderr call [{prm.B.o<prm.B.i}, {Y.itm.A.o<Y.itm.A.i}, {Y.etm.A.o<Y.etm.A.i}, {Y.etm.B.o<Y.etm.B.i}, {X.itm.A.o<X.itm.A.i}, {X.etm.A.o<X.etm.A.i}, {X.etm.B.o<X.etm.B.i}, {X.etm.B.o<U.X.etm.A.i}, {U.X.etm.A.o<L.X.etm.A.o}, {X.itm.B.i<X.itm.B.o}, {X.etm.A.o.tp<U.X.etm.A.o}, {L.X.etm.A.o<X.etm.A.o.exc}, {L.X.etm.A.o<X.etm.B.i}, {X.itm.B.o<X.itm.B.o}, {L.X.itm.B.i<L.X.etm.A.o}, {U.X.itm.B.o<L.X.itm.B.o}, {U.X.etm.A.o<U.X.itm.B.o}, {U.X.etm.A.i<U.X.itm.B.o}, {L.X.itm.B.o<L.X.itm.B.i}, {Y.etm.B.o<U.Y.etm.A.i}, {U.Y.etm.A.o<L.Y.etm.A.o}, {Y.itm.B.i<Y.itm.B.o}, {Y.etm.A.o.tp<U.Y.etm.A.o}, {L.Y.etm.A.o<Y.etm.A.o.exc}, {L.Y.etm.A.o<Y.etm.B.i}, {Y.itm.B.o<Y.itm.B.o}, {L.Y.itm.B.i<L.Y.etm.A.o}, {U.Y.itm.B.o<L.Y.itm.B.o}, {U.Y.etm.A.i<U.Y.itm.B.o}, {U.Y.etm.A.o<U.Y.itm.B.o}, {L.Y.itm.B.o<L.Y.itm.B.i}, {X.itm.A.o<BS.B1.o}, {U.X.itm.B.o<U.X.itm.A.i}, {L.X.itm.A.o<L.X.itm.B.i}, {L.X.itm.A.o<L.X.itm.B.o}, {Y.itm.A.o<BS.A2.o}, {U.Y.itm.B.o<U.Y.itm.A.i}, {L.Y.itm.A.o<L.Y.itm.B.i}, {L.Y.itm.A.o<L.Y.itm.B.o}, {L.prm.A.i<prm.A.i.exc}, {U.prm.A.o<L.prm.A.o}, {prm.A.o.tp<U.prm.A.o}, {L.prm.A.o<L.prm.A.i}, {prm.B.o<BS.A1.o}, {U.prm.A.o<U.prm.B.i}, {BS.A1.i<BS.A1.o}, {L.prm.B.o<L.prm.A.i}, {BS.A2.o<BS.A1.o}, {BS.B1.o<BS.A1.o}, {L.BS.A1.i<L.prm.B.o}, {U.prm.B.i<U.BS.A1.o}, {U.BS.A2.i<L.BS.A2.i}, {BS.A2.o<BS.A2.o}, {U.BS.A1.o<U.BS.A2.i}, {L.BS.A2.i<L.Y.itm.A.o}, {U.BS.A2.o<L.BS.A2.o}, {BS.B2.o<BS.B2.i}, {U.BS.A2.i<U.BS.A2.o}, {U.Y.itm.A.i<U.BS.A2.o}, {L.BS.A2.o<L.BS.A2.i}, {L.BS.A2.o<L.BS.A1.i}, {U.BS.B1.i<L.BS.B1.i}, {BS.B1.o<BS.B1.o}, {U.BS.A1.o<U.BS.B1.i}, {U.BS.A2.o<U.BS.B1.i}, {L.BS.B1.i<L.X.itm.A.o}, {U.BS.B1.o<L.BS.B1.o}, {U.BS.B1.i<U.BS.B1.o}, {U.X.itm.A.i<U.BS.B1.o}, {L.BS.B1.o<L.BS.A2.i}, {L.BS.B1.o<L.BS.A2.o}, {L.BS.B1.o<L.BS.B1.i}, {L.BS.B1.o<L.BS.A1.i}, {BS.B2.o<srm.A.o}, {U.BS.B1.o<U.BS.B2.i}, {U.BS.A2.o<U.BS.B2.i}, {srm.A.i<srm.A.o}, {L.BS.B2.o<L.BS.A2.i}, {L.BS.B2.o<L.BS.B1.i}, {L.BS.B2.o<L.BS.B1.o}, {L.BS.B2.o<L.BS.A2.o}, {srm.A.o<srm.A.o}, {L.srm.A.i<L.BS.B2.o}, {U.srm.A.o<L.srm.A.o}, {U.BS.B2.i<U.srm.A.o}, {L.srm.A.o<L.srm.A.i}, {U.srm.B.i<L.srm.B.i}, {U.srm.A.o<U.srm.B.i}, {L.srm.B.i<srm.B.i.exc}, {U.srm.B.o<L.srm.B.o}, {srm.B.o.tp<U.srm.B.o}, {L.srm.B.o<L.srm.A.i}, {L.srm.B.o<L.srm.B.i}, {L.srm.B.o<L.srm.A.o}]