forked from lix-project/lix
c273c15cb1
‘scopedImport’ works like ‘import’, except that it takes a set of attributes to be added to the lexical scope of the expression, essentially extending or overriding the builtin variables. For instance, the expression scopedImport { x = 1; } ./foo.nix where foo.nix contains ‘x’, will evaluate to 1. This has a few applications: * It allows getting rid of function argument specifications in package expressions. For instance, a package expression like: { stdenv, fetchurl, libfoo }: stdenv.mkDerivation { ... buildInputs = [ libfoo ]; } can now we written as just stdenv.mkDerivation { ... buildInputs = [ libfoo ]; } and imported in all-packages.nix as: bar = scopedImport pkgs ./bar.nix; So whereas we once had dependencies listed in three places (buildInputs, the function, and the call site), they now only need to appear in one place. * It allows overriding builtin functions. For instance, to trace all calls to ‘map’: let overrides = { map = f: xs: builtins.trace "map called!" (map f xs); # Ensure that our override gets propagated by calls to # import/scopedImport. import = fn: scopedImport overrides fn; scopedImport = attrs: fn: scopedImport (overrides // attrs) fn; # Also update ‘builtins’. builtins = builtins // overrides; }; in scopedImport overrides ./bla.nix * Similarly, it allows extending the set of builtin functions. For instance, during Nixpkgs/NixOS evaluation, the Nixpkgs library functions could be added to the default scope. There is a downside: calls to scopedImport are not memoized, unlike import. So importing a file multiple times leads to multiple parsings / evaluations. It would be possible to construct the AST only once, but that would require careful handling of variables/environments.
297 lines
8.2 KiB
C++
297 lines
8.2 KiB
C++
#pragma once
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#include "value.hh"
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#include "nixexpr.hh"
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#include "symbol-table.hh"
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#include "hash.hh"
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#include <map>
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#if HAVE_BOEHMGC
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#include <gc/gc_allocator.h>
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#endif
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namespace nix {
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class EvalState;
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struct Attr;
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/* Sets are represented as a vector of attributes, sorted by symbol
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(i.e. pointer to the attribute name in the symbol table). */
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#if HAVE_BOEHMGC
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typedef std::vector<Attr, gc_allocator<Attr> > BindingsBase;
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#else
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typedef std::vector<Attr> BindingsBase;
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#endif
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class Bindings : public BindingsBase
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{
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public:
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iterator find(const Symbol & name);
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void sort();
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};
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typedef void (* PrimOpFun) (EvalState & state, const Pos & pos, Value * * args, Value & v);
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struct PrimOp
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{
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PrimOpFun fun;
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unsigned int arity;
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Symbol name;
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PrimOp(PrimOpFun fun, unsigned int arity, Symbol name)
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: fun(fun), arity(arity), name(name) { }
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};
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struct Env
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{
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Env * up;
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unsigned short prevWith; // nr of levels up to next `with' environment
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bool haveWithAttrs;
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Value * values[0];
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};
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struct Attr
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{
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Symbol name;
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Value * value;
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Pos * pos;
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Attr(Symbol name, Value * value, Pos * pos = &noPos)
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: name(name), value(value), pos(pos) { };
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Attr() : pos(&noPos) { };
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bool operator < (const Attr & a) const
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{
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return name < a.name;
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}
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};
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void mkString(Value & v, const string & s, const PathSet & context = PathSet());
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void copyContext(const Value & v, PathSet & context);
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/* Cache for calls to addToStore(); maps source paths to the store
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paths. */
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typedef std::map<Path, Path> SrcToStore;
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std::ostream & operator << (std::ostream & str, const Value & v);
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class EvalState
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{
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public:
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SymbolTable symbols;
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const Symbol sWith, sOutPath, sDrvPath, sType, sMeta, sName, sValue,
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sSystem, sOverrides, sOutputs, sOutputName, sIgnoreNulls,
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sFile, sLine, sColumn;
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Symbol sDerivationNix;
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/* If set, force copying files to the Nix store even if they
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already exist there. */
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bool repair;
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private:
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SrcToStore srcToStore;
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/* A cache from path names to values. */
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#if HAVE_BOEHMGC
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typedef std::map<Path, Value, std::less<Path>, gc_allocator<std::pair<const Path, Value> > > FileEvalCache;
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#else
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typedef std::map<Path, Value> FileEvalCache;
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#endif
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FileEvalCache fileEvalCache;
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typedef list<std::pair<string, Path> > SearchPath;
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SearchPath searchPath;
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SearchPath::iterator searchPathInsertionPoint;
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public:
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EvalState();
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~EvalState();
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void addToSearchPath(const string & s, bool warn = false);
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/* Parse a Nix expression from the specified file. */
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Expr * parseExprFromFile(const Path & path);
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Expr * parseExprFromFile(const Path & path, StaticEnv & staticEnv);
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/* Parse a Nix expression from the specified string. */
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Expr * parseExprFromString(const string & s, const Path & basePath, StaticEnv & staticEnv);
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Expr * parseExprFromString(const string & s, const Path & basePath);
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/* Evaluate an expression read from the given file to normal
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form. */
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void evalFile(const Path & path, Value & v);
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void resetFileCache();
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/* Look up a file in the search path. */
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Path findFile(const string & path);
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/* Evaluate an expression to normal form, storing the result in
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value `v'. */
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void eval(Expr * e, Value & v);
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/* Evaluation the expression, then verify that it has the expected
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type. */
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inline bool evalBool(Env & env, Expr * e);
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inline bool evalBool(Env & env, Expr * e, const Pos & pos);
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inline void evalAttrs(Env & env, Expr * e, Value & v);
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/* If `v' is a thunk, enter it and overwrite `v' with the result
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of the evaluation of the thunk. If `v' is a delayed function
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application, call the function and overwrite `v' with the
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result. Otherwise, this is a no-op. */
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inline void forceValue(Value & v);
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/* Force a value, then recursively force list elements and
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attributes. */
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void strictForceValue(Value & v);
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/* Force `v', and then verify that it has the expected type. */
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NixInt forceInt(Value & v, const Pos & pos);
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bool forceBool(Value & v);
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inline void forceAttrs(Value & v);
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inline void forceAttrs(Value & v, const Pos & pos);
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inline void forceList(Value & v);
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inline void forceList(Value & v, const Pos & pos);
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void forceFunction(Value & v, const Pos & pos); // either lambda or primop
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string forceString(Value & v, const Pos & pos = noPos);
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string forceString(Value & v, PathSet & context);
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string forceStringNoCtx(Value & v, const Pos & pos = noPos);
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/* Return true iff the value `v' denotes a derivation (i.e. a
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set with attribute `type = "derivation"'). */
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bool isDerivation(Value & v);
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/* String coercion. Converts strings, paths and derivations to a
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string. If `coerceMore' is set, also converts nulls, integers,
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booleans and lists to a string. If `copyToStore' is set,
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referenced paths are copied to the Nix store as a side effect. */
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string coerceToString(const Pos & pos, Value & v, PathSet & context,
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bool coerceMore = false, bool copyToStore = true);
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string copyPathToStore(PathSet & context, const Path & path);
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/* Path coercion. Converts strings, paths and derivations to a
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path. The result is guaranteed to be a canonicalised, absolute
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path. Nothing is copied to the store. */
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Path coerceToPath(const Pos & pos, Value & v, PathSet & context);
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public:
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/* The base environment, containing the builtin functions and
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values. */
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Env & baseEnv;
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/* The same, but used during parsing to resolve variables. */
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StaticEnv staticBaseEnv; // !!! should be private
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private:
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unsigned int baseEnvDispl;
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void createBaseEnv();
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void addConstant(const string & name, Value & v);
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void addPrimOp(const string & name,
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unsigned int arity, PrimOpFun primOp);
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public:
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void getBuiltin(const string & name, Value & v);
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private:
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inline Value * lookupVar(Env * env, const ExprVar & var, bool noEval);
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friend struct ExprVar;
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friend struct ExprAttrs;
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friend struct ExprLet;
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Expr * parse(const char * text, const Path & path,
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const Path & basePath, StaticEnv & staticEnv);
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public:
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/* Do a deep equality test between two values. That is, list
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elements and attributes are compared recursively. */
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bool eqValues(Value & v1, Value & v2);
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void callFunction(Value & fun, Value & arg, Value & v, const Pos & pos);
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void callPrimOp(Value & fun, Value & arg, Value & v, const Pos & pos);
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/* Automatically call a function for which each argument has a
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default value or has a binding in the `args' map. */
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void autoCallFunction(Bindings & args, Value & fun, Value & res);
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/* Allocation primitives. */
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Value * allocValue();
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Env & allocEnv(unsigned int size);
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Value * allocAttr(Value & vAttrs, const Symbol & name);
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void mkList(Value & v, unsigned int length);
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void mkAttrs(Value & v, unsigned int expected);
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void mkThunk_(Value & v, Expr * expr);
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void mkPos(Value & v, Pos * pos);
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void concatLists(Value & v, unsigned int nrLists, Value * * lists, const Pos & pos);
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/* Print statistics. */
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void printStats();
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private:
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unsigned long nrEnvs;
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unsigned long nrValuesInEnvs;
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unsigned long nrValues;
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unsigned long nrListElems;
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unsigned long nrAttrsets;
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unsigned long nrOpUpdates;
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unsigned long nrOpUpdateValuesCopied;
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unsigned long nrListConcats;
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unsigned long nrPrimOpCalls;
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unsigned long nrFunctionCalls;
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bool countCalls;
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typedef std::map<Symbol, unsigned int> PrimOpCalls;
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PrimOpCalls primOpCalls;
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typedef std::map<ExprLambda *, unsigned int> FunctionCalls;
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FunctionCalls functionCalls;
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void incrFunctionCall(ExprLambda * fun);
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typedef std::map<Pos, unsigned int> AttrSelects;
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AttrSelects attrSelects;
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friend struct ExprOpUpdate;
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friend struct ExprOpConcatLists;
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friend struct ExprSelect;
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friend void prim_getAttr(EvalState & state, const Pos & pos, Value * * args, Value & v);
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};
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/* Return a string representing the type of the value `v'. */
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string showType(const Value & v);
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/* If `path' refers to a directory, then append "/default.nix". */
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Path resolveExprPath(Path path);
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}
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