mirror of
https://github.com/privatevoid-net/nix-super.git
synced 2024-11-10 08:16:15 +02:00
* Work around problems with the ATerm library.
The ATerm library doesn't search the heap for pointers to ATerms when garbage collecting. As a result, C++ containers such as `map<ATerm, ATerm>' will cause pointer to be hidden from the garbage collector, causing crashes. Instead, we now use ATermTables.
This commit is contained in:
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ff31324278
commit
0690c1c9c0
5 changed files with 182 additions and 55 deletions
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@ -5,6 +5,7 @@
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EvalState::EvalState()
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: normalForms(32768, 75)
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{
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blackHole = ATmake("BlackHole()");
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if (!blackHole) throw Error("cannot build black hole");
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@ -20,32 +21,43 @@ Expr getAttr(EvalState & state, Expr e, const string & name)
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/* Substitute an argument set into the body of a function. */
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static Expr substArgs(Expr body, ATermList formals, Expr arg)
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{
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Subs subs;
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ATermMap subs;
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Expr undefined = ATmake("Undefined");
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/* Get the formal arguments. */
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while (!ATisEmpty(formals)) {
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ATerm t = ATgetFirst(formals);
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char * s;
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if (!ATmatch(ATgetFirst(formals), "<str>", &s))
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if (!ATmatch(t, "<str>", &s))
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abort(); /* can't happen */
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subs[s] = undefined;
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subs.set(t, undefined);
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formals = ATgetNext(formals);
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}
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/* Get the actual arguments, and check that they match with the
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formals. */
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Attrs args;
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ATermMap args;
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queryAllAttrs(arg, args);
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for (Attrs::iterator i = args.begin(); i != args.end(); i++) {
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if (subs.find(i->first) == subs.end())
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throw badTerm(format("argument `%1%' not declared") % i->first, arg);
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subs[i->first] = i->second;
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for (ATermList keys = args.keys(); !ATisEmpty(keys);
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keys = ATgetNext(keys))
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{
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Expr key = ATgetFirst(keys);
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Expr cur = subs.get(key);
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if (!cur)
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throw badTerm(format("argument `%1%' not declared")
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% aterm2String(key), arg);
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subs.set(key, args.get(key));
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}
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/* Check that all arguments are defined. */
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for (Subs::iterator i = subs.begin(); i != subs.end(); i++)
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if (i->second == undefined)
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throw badTerm(format("formal argument `%1%' missing") % i->first, arg);
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for (ATermList keys = subs.keys(); !ATisEmpty(keys);
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keys = ATgetNext(keys))
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{
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Expr key = ATgetFirst(keys);
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if (subs.get(key) == undefined)
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throw badTerm(format("formal argument `%1%' missing")
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% aterm2String(key), arg);
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}
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return substitute(subs, body);
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}
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@ -59,26 +71,26 @@ static Expr substArgs(Expr body, ATermList formals, Expr arg)
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ATerm expandRec(ATerm e, ATermList bnds)
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{
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/* Create the substitution list. */
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Subs subs;
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ATermMap subs;
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ATermList bs = bnds;
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while (!ATisEmpty(bs)) {
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char * s;
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Expr e2;
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if (!ATmatch(ATgetFirst(bs), "Bind(<str>, <term>)", &s, &e2))
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abort(); /* can't happen */
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subs[s] = ATmake("Select(<term>, <str>)", e, s);
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subs.set(s, ATmake("Select(<term>, <str>)", e, s));
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bs = ATgetNext(bs);
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}
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/* Create the non-recursive set. */
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Attrs as;
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ATermMap as;
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bs = bnds;
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while (!ATisEmpty(bs)) {
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char * s;
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Expr e2;
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if (!ATmatch(ATgetFirst(bs), "Bind(<str>, <term>)", &s, &e2))
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abort(); /* can't happen */
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as[s] = substitute(subs, e2);
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as.set(s, substitute(subs, e2));
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bs = ATgetNext(bs);
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}
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@ -205,18 +217,18 @@ Expr evalExpr(EvalState & state, Expr e)
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/* Consult the memo table to quickly get the normal form of
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previously evaluated expressions. */
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NormalForms::iterator i = state.normalForms.find(e);
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if (i != state.normalForms.end()) {
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if (i->second == state.blackHole)
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Expr nf = state.normalForms.get(e);
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if (nf) {
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if (nf == state.blackHole)
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throw badTerm("infinite recursion", e);
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state.nrCached++;
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return i->second;
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return nf;
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}
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/* Otherwise, evaluate and memoize. */
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state.normalForms[e] = state.blackHole;
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Expr nf = evalExpr2(state, e);
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state.normalForms[e] = nf;
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state.normalForms.set(e, state.blackHole);
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nf = evalExpr2(state, e);
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state.normalForms.set(e, nf);
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return nf;
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}
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@ -7,13 +7,12 @@
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#include "expr.hh"
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typedef map<Expr, Expr> NormalForms;
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typedef map<Path, PathSet> DrvPaths;
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typedef map<Path, Hash> DrvHashes;
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struct EvalState
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{
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NormalForms normalForms;
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ATermMap normalForms;
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DrvPaths drvPaths;
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DrvHashes drvHashes; /* normalised derivation hashes */
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Expr blackHole;
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@ -2,6 +2,91 @@
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#include "expr.hh"
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ATermMap::ATermMap(unsigned int initialSize, unsigned int maxLoadPct)
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{
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table = ATtableCreate(initialSize, maxLoadPct);
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if (!table) throw Error("cannot create ATerm table");
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}
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ATermMap::ATermMap(const ATermMap & map)
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: table(0)
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{
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ATermList keys = map.keys();
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/* !!! adjust allocation for load pct */
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table = ATtableCreate(ATgetLength(keys), map.maxLoadPct);
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if (!table) throw Error("cannot create ATerm table");
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for (; !ATisEmpty(keys); keys = ATgetNext(keys)) {
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ATerm key = ATgetFirst(keys);
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set(key, map.get(key));
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}
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}
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ATermMap::~ATermMap()
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{
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if (table) ATtableDestroy(table);
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}
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void ATermMap::set(ATerm key, ATerm value)
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{
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return ATtablePut(table, key, value);
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}
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void ATermMap::set(const string & key, ATerm value)
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{
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set(string2ATerm(key), value);
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}
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ATerm ATermMap::get(ATerm key) const
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{
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return ATtableGet(table, key);
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}
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ATerm ATermMap::get(const string & key) const
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{
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return get(string2ATerm(key));
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}
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void ATermMap::remove(ATerm key)
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{
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ATtableRemove(table, key);
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}
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void ATermMap::remove(const string & key)
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{
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remove(string2ATerm(key));
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}
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ATermList ATermMap::keys() const
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{
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ATermList keys = ATtableKeys(table);
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if (!keys) throw Error("cannot query aterm map keys");
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return keys;
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}
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ATerm string2ATerm(const string & s)
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{
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return (ATerm) ATmakeAppl0(ATmakeAFun((char *) s.c_str(), 0, ATtrue));
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}
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string aterm2String(ATerm t)
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{
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return ATgetName(ATgetAFun(t));
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}
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ATerm bottomupRewrite(TermFun & f, ATerm e)
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{
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if (ATgetType(e) == AT_APPL) {
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}
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void queryAllAttrs(Expr e, Attrs & attrs)
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void queryAllAttrs(Expr e, ATermMap & attrs)
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{
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ATermList bnds;
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if (!ATmatch(e, "Attrs([<list>])", &bnds))
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Expr e;
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if (!ATmatch(ATgetFirst(bnds), "Bind(<str>, <term>)", &s, &e))
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abort(); /* can't happen */
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attrs[s] = e;
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attrs.set(s, e);
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bnds = ATgetNext(bnds);
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}
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}
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Expr queryAttr(Expr e, const string & name)
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{
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Attrs attrs;
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ATermMap attrs;
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queryAllAttrs(e, attrs);
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Attrs::iterator i = attrs.find(name);
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return i == attrs.end() ? 0 : i->second;
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return attrs.get(name);
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}
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Expr makeAttrs(const Attrs & attrs)
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Expr makeAttrs(const ATermMap & attrs)
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{
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ATermList bnds = ATempty;
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for (Attrs::const_iterator i = attrs.begin(); i != attrs.end(); i++)
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ATermList bnds = ATempty, keys = attrs.keys();
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while (!ATisEmpty(keys)) {
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Expr key = ATgetFirst(keys);
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bnds = ATinsert(bnds,
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ATmake("Bind(<str>, <term>)", i->first.c_str(), i->second));
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ATmake("Bind(<term>, <term>)", key, attrs.get(key)));
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keys = ATgetNext(keys);
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}
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return ATmake("Attrs(<term>)", ATreverse(bnds));
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}
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ATerm substitute(Subs & subs, ATerm e)
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Expr substitute(const ATermMap & subs, Expr e)
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{
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char * s;
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if (ATmatch(e, "Var(<str>)", &s)) {
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Subs::iterator i = subs.find(s);
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if (i == subs.end())
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return e;
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else
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return i->second;
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Expr sub = subs.get(s);
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return sub ? sub : e;
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}
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/* In case of a function, filter out all variables bound by this
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ATermList formals;
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ATerm body;
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if (ATmatch(e, "Function([<list>], <term>)", &formals, &body)) {
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Subs subs2(subs);
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ATermMap subs2(subs);
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ATermList fs = formals;
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while (!ATisEmpty(fs)) {
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if (!ATmatch(ATgetFirst(fs), "<str>", &s)) abort();
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subs2.erase(s);
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subs2.remove(s);
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fs = ATgetNext(fs);
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}
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return ATmake("Function(<term>, <term>)", formals,
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/* Idem for a mutually recursive attribute set. */
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ATermList bindings;
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if (ATmatch(e, "Rec([<list>])", &bindings)) {
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Subs subs2(subs);
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ATermMap subs2(subs);
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ATermList bnds = bindings;
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while (!ATisEmpty(bnds)) {
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Expr e;
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if (!ATmatch(ATgetFirst(bnds), "Bind(<str>, <term>)", &s, &e))
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abort(); /* can't happen */
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subs2.erase(s);
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subs2.remove(s);
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bnds = ATgetNext(bnds);
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}
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return ATmake("Rec(<term>)", substitute(subs2, (ATerm) bindings));
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@ -14,6 +14,38 @@
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typedef ATerm Expr;
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/* Mappings from ATerms to ATerms. This is just a wrapper around
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ATerm tables. */
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class ATermMap
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{
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private:
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unsigned int maxLoadPct;
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ATermTable table;
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public:
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ATermMap(unsigned int initialSize = 16, unsigned int maxLoadPct = 75);
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ATermMap(const ATermMap & map);
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~ATermMap();
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void set(ATerm key, ATerm value);
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void set(const string & key, ATerm value);
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ATerm get(ATerm key) const;
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ATerm get(const string & key) const;
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void remove(ATerm key);
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void remove(const string & key);
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ATermList keys() const;
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};
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/* Convert a string to an ATerm (i.e., a quoted nullary function
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applicaton). */
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ATerm string2ATerm(const string & s);
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string aterm2String(ATerm t);
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/* Generic bottomup traversal over ATerms. The traversal first
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recursively descends into subterms, and then applies the given term
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function to the resulting term. */
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/* Query all attributes in an attribute set expression. The
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expression must be in normal form. */
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typedef map<string, Expr> Attrs;
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void queryAllAttrs(Expr e, Attrs & attrs);
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void queryAllAttrs(Expr e, ATermMap & attrs);
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/* Query a specific attribute from an attribute set expression. The
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expression must be in normal form. */
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Expr queryAttr(Expr e, const string & name);
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/* Create an attribute set expression from an Attrs value. */
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Expr makeAttrs(const Attrs & attrs);
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Expr makeAttrs(const ATermMap & attrs);
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/* Perform a set of substitutions on an expression. */
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typedef map<string, Expr> Subs;
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ATerm substitute(Subs & subs, ATerm e);
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Expr substitute(const ATermMap & subs, Expr e);
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#endif /* !__FIXEXPR_H */
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@ -123,7 +123,7 @@ Expr primDerivation(EvalState & state, Expr args)
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{
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Nest nest(lvlVomit, "evaluating derivation");
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Attrs attrs;
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ATermMap attrs;
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args = evalExpr(state, args);
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queryAllAttrs(args, attrs);
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@ -136,9 +136,11 @@ Expr primDerivation(EvalState & state, Expr args)
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Hash outHash;
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bool outHashGiven = false;
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for (Attrs::iterator i = attrs.begin(); i != attrs.end(); i++) {
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string key = i->first;
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Expr value = i->second;
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for (ATermList keys = attrs.keys(); !ATisEmpty(keys);
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keys = ATgetNext(keys))
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{
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string key = aterm2String(ATgetFirst(keys));
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Expr value = attrs.get(key);
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Nest nest(lvlVomit, format("processing attribute `%1%'") % key);
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/* The `args' attribute is special: it supplies the
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@ -198,9 +200,9 @@ Expr primDerivation(EvalState & state, Expr args)
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msg(lvlChatty, format("instantiated `%1%' -> `%2%'")
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% drvName % drvPath);
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attrs["outPath"] = ATmake("Path(<str>)", outPath.c_str());
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attrs["drvPath"] = ATmake("Path(<str>)", drvPath.c_str());
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attrs["type"] = ATmake("Str(\"derivation\")");
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attrs.set("outPath", ATmake("Path(<str>)", outPath.c_str()));
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attrs.set("drvPath", ATmake("Path(<str>)", drvPath.c_str()));
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attrs.set("type", ATmake("Str(\"derivation\")"));
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return makeAttrs(attrs);
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}
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