mirror of
https://github.com/NixOS/nix.git
synced 2024-11-23 07:12:27 +00:00
* Don't create thunks for simple constants (integers, strings, paths)
and allocate them only once. * Move Value and related functions into value.hh.
This commit is contained in:
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@ -8,7 +8,7 @@ libexpr_la_SOURCES = \
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pkginclude_HEADERS = \
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nixexpr.hh eval.hh lexer-tab.hh parser-tab.hh \
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get-drvs.hh attr-path.hh value-to-xml.hh common-opts.hh \
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names.hh symbol-table.hh
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names.hh symbol-table.hh value.hh
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libexpr_la_LIBADD = ../libutil/libutil.la ../libstore/libstore.la \
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../boost/format/libformat.la @BDW_GC_LIBS@
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@ -283,9 +283,7 @@ LocalNoInline(void addErrorPrefix(Error & e, const char * s, const string & s2,
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void mkString(Value & v, const char * s)
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{
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v.type = tString;
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v.string.s = GC_STRDUP(s);
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v.string.context = 0;
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mkStringNoCopy(v, GC_STRDUP(s));
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}
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@ -303,19 +301,9 @@ void mkString(Value & v, const string & s, const PathSet & context)
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}
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void mkString(Value & v, const Symbol & s)
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{
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v.type = tString;
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v.string.s = ((string) s).c_str();
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v.string.context = 0;
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}
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void mkPath(Value & v, const char * s)
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{
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clearValue(v);
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v.type = tPath;
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v.path = GC_STRDUP(s);
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mkPathNoCopy(v, GC_STRDUP(s));
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}
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@ -426,6 +414,26 @@ Value * ExprVar::maybeThunk(EvalState & state, Env & env)
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}
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Value * ExprString::maybeThunk(EvalState & state, Env & env)
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{
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nrAvoided++;
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return &v;
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}
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Value * ExprInt::maybeThunk(EvalState & state, Env & env)
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{
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nrAvoided++;
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return &v;
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}
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Value * ExprPath::maybeThunk(EvalState & state, Env & env)
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{
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nrAvoided++;
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return &v;
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}
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void EvalState::evalFile(const Path & path, Value & v)
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{
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FileEvalCache::iterator i = fileEvalCache.find(path);
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@ -454,7 +462,7 @@ struct RecursionCounter
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state.maxRecursionDepth = state.recursionDepth;
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}
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~RecursionCounter()
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{
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{
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state.recursionDepth--;
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}
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};
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@ -512,19 +520,19 @@ void Expr::eval(EvalState & state, Env & env, Value & v)
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void ExprInt::eval(EvalState & state, Env & env, Value & v)
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{
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mkInt(v, n);
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v = this->v;
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}
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void ExprString::eval(EvalState & state, Env & env, Value & v)
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{
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mkString(v, s);
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v = this->v;
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}
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void ExprPath::eval(EvalState & state, Env & env, Value & v)
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{
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mkPath(v, s.c_str());
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v = this->v;
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}
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@ -1,6 +1,7 @@
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#ifndef __EVAL_H
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#define __EVAL_H
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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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@ -16,8 +17,6 @@ namespace nix {
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class EvalState;
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struct Env;
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struct Value;
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struct Attr;
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@ -38,23 +37,6 @@ public:
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};
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typedef enum {
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tInt = 1,
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tBool,
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tString,
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tPath,
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tNull,
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tAttrs,
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tList,
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tThunk,
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tApp,
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tLambda,
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tBlackhole,
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tPrimOp,
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tPrimOpApp,
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} ValueType;
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typedef void (* PrimOpFun) (EvalState & state, Value * * args, Value & v);
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@ -68,64 +50,6 @@ struct PrimOp
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};
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struct Value
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{
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ValueType type;
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union
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{
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int integer;
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bool boolean;
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/* Strings in the evaluator carry a so-called `context' (the
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ATermList) which is a list of strings representing store
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paths. This is to allow users to write things like
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"--with-freetype2-library=" + freetype + "/lib"
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where `freetype' is a derivation (or a source to be copied
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to the store). If we just concatenated the strings without
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keeping track of the referenced store paths, then if the
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string is used as a derivation attribute, the derivation
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will not have the correct dependencies in its inputDrvs and
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inputSrcs.
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The semantics of the context is as follows: when a string
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with context C is used as a derivation attribute, then the
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derivations in C will be added to the inputDrvs of the
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derivation, and the other store paths in C will be added to
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the inputSrcs of the derivations.
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For canonicity, the store paths should be in sorted order. */
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struct {
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const char * s;
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const char * * context; // must be in sorted order
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} string;
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const char * path;
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Bindings * attrs;
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struct {
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unsigned int length;
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Value * * elems;
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} list;
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struct {
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Env * env;
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Expr * expr;
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} thunk;
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struct {
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Value * left, * right;
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} app;
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struct {
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Env * env;
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ExprLambda * fun;
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} lambda;
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PrimOp * primOp;
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struct {
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Value * left, * right;
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} primOpApp;
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};
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};
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struct Env
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{
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Env * up;
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@ -149,41 +73,7 @@ struct Attr
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};
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/* After overwriting an app node, be sure to clear pointers in the
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Value to ensure that the target isn't kept alive unnecessarily. */
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static inline void clearValue(Value & v)
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{
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v.app.right = 0;
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}
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static inline void mkInt(Value & v, int n)
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{
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clearValue(v);
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v.type = tInt;
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v.integer = n;
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}
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static inline void mkBool(Value & v, bool b)
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{
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clearValue(v);
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v.type = tBool;
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v.boolean = b;
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}
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static inline void mkApp(Value & v, Value & left, Value & right)
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{
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v.type = tApp;
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v.app.left = &left;
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v.app.right = &right;
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}
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void mkString(Value & v, const char * s);
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void mkString(Value & v, const string & s, const PathSet & context = PathSet());
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void mkPath(Value & v, const char * s);
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void copyContext(const Value & v, PathSet & context);
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@ -1,6 +1,7 @@
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#ifndef __NIXEXPR_H
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#define __NIXEXPR_H
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#include "value.hh"
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#include "symbol-table.hh"
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#include <map>
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@ -66,15 +67,19 @@ std::ostream & operator << (std::ostream & str, Expr & e);
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struct ExprInt : Expr
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{
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int n;
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ExprInt(int n) : n(n) { };
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Value v;
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ExprInt(int n) : n(n) { mkInt(v, n); };
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COMMON_METHODS
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Value * maybeThunk(EvalState & state, Env & env);
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};
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struct ExprString : Expr
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{
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Symbol s;
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ExprString(const Symbol & s) : s(s) { };
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Value v;
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ExprString(const Symbol & s) : s(s) { mkString(v, s); };
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COMMON_METHODS
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Value * maybeThunk(EvalState & state, Env & env);
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};
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/* Temporary class used during parsing of indented strings. */
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@ -87,8 +92,10 @@ struct ExprIndStr : Expr
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struct ExprPath : Expr
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{
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string s;
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ExprPath(const string & s) : s(s) { };
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Value v;
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ExprPath(const string & s) : s(s) { mkPathNoCopy(v, this->s.c_str()); };
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COMMON_METHODS
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Value * maybeThunk(EvalState & state, Env & env);
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};
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struct VarRef
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155
src/libexpr/value.hh
Normal file
155
src/libexpr/value.hh
Normal file
@ -0,0 +1,155 @@
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#ifndef __VALUE_H
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#define __VALUE_H
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#include "symbol-table.hh"
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namespace nix {
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typedef enum {
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tInt = 1,
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tBool,
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tString,
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tPath,
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tNull,
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tAttrs,
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tList,
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tThunk,
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tApp,
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tLambda,
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tBlackhole,
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tPrimOp,
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tPrimOpApp,
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} ValueType;
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struct Bindings;
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struct Env;
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struct Expr;
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struct ExprLambda;
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struct PrimOp;
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struct PrimOp;
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struct Symbol;
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struct Value
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{
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ValueType type;
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union
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{
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int integer;
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bool boolean;
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/* Strings in the evaluator carry a so-called `context' (the
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ATermList) which is a list of strings representing store
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paths. This is to allow users to write things like
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"--with-freetype2-library=" + freetype + "/lib"
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where `freetype' is a derivation (or a source to be copied
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to the store). If we just concatenated the strings without
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keeping track of the referenced store paths, then if the
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string is used as a derivation attribute, the derivation
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will not have the correct dependencies in its inputDrvs and
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inputSrcs.
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The semantics of the context is as follows: when a string
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with context C is used as a derivation attribute, then the
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derivations in C will be added to the inputDrvs of the
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derivation, and the other store paths in C will be added to
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the inputSrcs of the derivations.
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For canonicity, the store paths should be in sorted order. */
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struct {
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const char * s;
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const char * * context; // must be in sorted order
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} string;
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const char * path;
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Bindings * attrs;
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struct {
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unsigned int length;
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Value * * elems;
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} list;
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struct {
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Env * env;
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Expr * expr;
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} thunk;
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struct {
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Value * left, * right;
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} app;
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struct {
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Env * env;
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ExprLambda * fun;
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} lambda;
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PrimOp * primOp;
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struct {
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Value * left, * right;
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} primOpApp;
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};
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};
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/* After overwriting an app node, be sure to clear pointers in the
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Value to ensure that the target isn't kept alive unnecessarily. */
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static inline void clearValue(Value & v)
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{
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v.app.right = 0;
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}
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static inline void mkInt(Value & v, int n)
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{
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clearValue(v);
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v.type = tInt;
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v.integer = n;
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}
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static inline void mkBool(Value & v, bool b)
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{
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clearValue(v);
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v.type = tBool;
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v.boolean = b;
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}
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static inline void mkApp(Value & v, Value & left, Value & right)
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{
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v.type = tApp;
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v.app.left = &left;
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v.app.right = &right;
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}
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static inline void mkStringNoCopy(Value & v, const char * s)
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{
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v.type = tString;
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v.string.s = s;
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v.string.context = 0;
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}
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static inline void mkString(Value & v, const Symbol & s)
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{
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mkStringNoCopy(v, ((string) s).c_str());
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}
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void mkString(Value & v, const char * s);
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static inline void mkPathNoCopy(Value & v, const char * s)
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{
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clearValue(v);
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v.type = tPath;
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v.path = s;
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}
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void mkPath(Value & v, const char * s);
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}
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#endif /* !__VALUE_H */
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