Algebraic Geometry: Proceedings. Tromso Symposium - download pdf or read online

By L. D. Olson

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Supplied by the system), because it is impossible to restructure physically the value of an object after its creation. 2. In the second technique, the derivation of a new version of a class, leads to the creation of a new version of each object of the class that has been versioned [4,7]. This technique resolves the problem of information loss, by supporting many object versions. However, its main limitation is the proliferation of the number of versions, due to the dynamic nature of object oriented applications.

For all node N of Level_N do 12. Flag = False) then 13. Range Then /* Modified node */ 14. domain ∪ {x*} ; 15. Flag := true ; /* This modification is propaged on list of fathers of node N of the level Level_N */ 16. Propagation_modification (Level_N, list_father(N)) 16. Exit ; 17. range */ 18. range 19. If Int = f(x*) Then Exit End If; 20. range ) Then /*modified node*/ 21. domain ∪{x*}; 22. flag := true ; /* This modification is propagated on list of fathers (parents) of node N of the level Level_N */ 23.

It is stored if its class is pertinent, otherwise it is calculated. The use of the parameter status is very important in some cases, especially when the generated version must be stored whatever the pertinence level of cid. These cases are described in the section 4. The primitive ObjectVersionGen() triggers a sequence of derivation primitives on oid’s versions. e, (oid,rnum) if the value of rnum is fixed, OriginVersion(oid,cid) otherwise). The last primitive of the sequence generates the version of oid under cid.

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