forked from lix-project/lix
187 lines
4.8 KiB
C++
187 lines
4.8 KiB
C++
#include "nixexpr.hh"
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#include "derivations.hh"
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#include "util.hh"
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#include "aterm.hh"
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#include "nixexpr-ast.hh"
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#include "nixexpr-ast.cc"
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#include <cstdlib>
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namespace nix {
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string showPos(ATerm pos)
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{
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ATerm path;
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int line, column;
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if (matchNoPos(pos)) return "undefined position";
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if (!matchPos(pos, path, line, column))
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throw badTerm("position expected", pos);
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return (format("`%1%:%2%:%3%'") % aterm2String(path) % line % column).str();
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}
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ATerm bottomupRewrite(TermFun & f, ATerm e)
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{
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checkInterrupt();
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if (ATgetType(e) == AT_APPL) {
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AFun fun = ATgetAFun(e);
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int arity = ATgetArity(fun);
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ATerm args[arity];
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for (int i = 0; i < arity; ++i)
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args[i] = bottomupRewrite(f, ATgetArgument(e, i));
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e = (ATerm) ATmakeApplArray(fun, args);
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}
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else if (ATgetType(e) == AT_LIST) {
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ATermList in = (ATermList) e;
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ATermList out = ATempty;
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for (ATermIterator i(in); i; ++i)
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out = ATinsert(out, bottomupRewrite(f, *i));
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e = (ATerm) ATreverse(out);
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}
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return f(e);
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}
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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 (ATermMap::const_iterator i = attrs.begin(); i != attrs.end(); ++i) {
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Expr e;
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ATerm pos;
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if (!matchAttrRHS(i->value, e, pos))
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abort(); /* can't happen */
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bnds = ATinsert(bnds, makeBind(i->key, e, pos));
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}
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return makeAttrs(bnds);
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}
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static void varsBoundByPattern(ATermMap & map, Pattern pat)
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{
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ATerm name;
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ATermList formals;
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ATermBool ellipsis;
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/* Use makeRemoved() so that it can be used directly in
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substitute(). */
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if (matchVarPat(pat, name))
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map.set(name, makeRemoved());
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else if (matchAttrsPat(pat, formals, ellipsis, name)) {
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if (name != sNoAlias) map.set(name, makeRemoved());
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for (ATermIterator i(formals); i; ++i) {
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ATerm d1;
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if (!matchFormal(*i, name, d1)) abort();
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map.set(name, makeRemoved());
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}
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}
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else abort();
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}
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/* We use memoisation to prevent exponential complexity on heavily
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shared ATerms (remember, an ATerm is a graph, not a tree!). Note
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that using an STL set is fine here wrt to ATerm garbage collection
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since all the ATerms in the set are already reachable from
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somewhere else. */
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static void checkVarDefs2(set<Expr> & done, const ATermMap & defs, Expr e)
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{
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if (done.find(e) != done.end()) return;
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done.insert(e);
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ATerm name, pos, value;
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ATerm with, body;
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ATermList rbnds, nrbnds;
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Pattern pat;
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/* Closed terms don't have free variables, so we don't have to
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check by definition. */
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if (matchClosed(e, value)) return;
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else if (matchVar(e, name)) {
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if (!defs.get(name))
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throw EvalError(format("undefined variable `%1%'")
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% aterm2String(name));
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}
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else if (matchFunction(e, pat, body, pos)) {
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ATermMap defs2(defs);
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varsBoundByPattern(defs2, pat);
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set<Expr> done2;
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checkVarDefs2(done2, defs2, pat);
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checkVarDefs2(done2, defs2, body);
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}
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else if (matchRec(e, rbnds, nrbnds)) {
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checkVarDefs2(done, defs, (ATerm) nrbnds);
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ATermMap defs2(defs);
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for (ATermIterator i(rbnds); i; ++i) {
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if (!matchBind(*i, name, value, pos)) abort(); /* can't happen */
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defs2.set(name, (ATerm) ATempty);
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}
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for (ATermIterator i(nrbnds); i; ++i) {
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if (!matchBind(*i, name, value, pos)) abort(); /* can't happen */
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defs2.set(name, (ATerm) ATempty);
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}
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set<Expr> done2;
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checkVarDefs2(done2, defs2, (ATerm) rbnds);
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}
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else if (matchWith(e, with, body, pos)) {
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/* We can't check the body without evaluating the definitions
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(which is an arbitrary expression), so we don't do that
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here but only when actually evaluating the `with'. */
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checkVarDefs2(done, defs, with);
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}
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else if (ATgetType(e) == AT_APPL) {
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int arity = ATgetArity(ATgetAFun(e));
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for (int i = 0; i < arity; ++i)
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checkVarDefs2(done, defs, ATgetArgument(e, i));
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}
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else if (ATgetType(e) == AT_LIST)
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for (ATermIterator i((ATermList) e); i; ++i)
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checkVarDefs2(done, defs, *i);
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}
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void checkVarDefs(const ATermMap & defs, Expr e)
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{
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set<Expr> done;
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checkVarDefs2(done, defs, e);
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}
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bool matchStr(Expr e, string & s, PathSet & context)
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{
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ATermList l;
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ATerm s_;
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if (!matchStr(e, s_, l)) return false;
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s = aterm2String(s_);
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for (ATermIterator i(l); i; ++i)
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context.insert(aterm2String(*i));
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return true;
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}
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Expr makeStr(const string & s, const PathSet & context)
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{
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return makeStr(toATerm(s), toATermList(context));
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}
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}
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