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Sound JavaScript Analysis for Securing Browser Addons

A pointer analysis relates every pointer expression in a whole program to the set of memory locations to which it might point. This information can be used to construct a call graph of the program that precisely represents the destinations of dynamic function and method calls. It can also be ben hardekopf to determine, for example, which pairs of channel operations operate on the same channel. The package allows the client to request a set of expressions of interest for which the points-to information will be returned once the analysis is complete.

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In addition, the client ben hardekopf request that a callgraph is constructed. Clients should not request more information than they need since it may increase the cost of the analysis significantly. Only some smaller functions are analyzed with consideration of their calling context.

ben hardekopf

The analysis is fully sound when invoked on pure Go programs that do not ben hardekopf reflection or unsafe. Pointer conversions. In other words, if there is any possible execution of the program in which pointer P may point to object O, the analysis will report that fact.

ben hardekopf

By default, the "reflect" library is ignored by the analysis, as if all its functions were no-ops, ben hardekopf if the client enables the Reflection flag, the analysis will make a reasonable attempt to model the effects hardekof calls into this library. However, this comes at a significant performance cost, and not all features of that library are yet implemented.

In addition, some ben hardekopf approximations must be made to ensure that the analysis terminates; for example, reflection can be used to construct an infinite source of types and values of those types, but the analysis arbitrarily bounds the depth of such types.

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Most but not all reflection operations are supported. In particular, addressable reflect. Values are not yet implemented, so operations such as reflect. Set have no analytic effect. The pointer analysis makes ben hardekopf attempt to understand aliasing between the operand x and result y of an unsafe. Pointer conversion:.

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The analysis cannot model the aliasing effects of functions written in languages other than Go, such as runtime intrinsics in C or assembly, or code accessed via cgo. The result is as if such functions are no-ops. However, various important intrinsics are understood ben hardekopf the analysis, along with built-ins such as append.

ben hardekopf

The analysis currently provides no way for users to specify the aliasing effects of native code.]

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