forked from lix-project/lix
* Turned the msg() and debug() functions into macros, since they
turned out to be a huge performance bottleneck (the text to printed would always be evaluated, even when it was above the verbosity level). This reduces fix-ng execution time by over 50%. gprof(1) is very useful. :-)
This commit is contained in:
parent
d2e3a132fe
commit
15801c88fa
10 changed files with 60 additions and 45 deletions
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@ -23,7 +23,6 @@ static Expr substArgs(Expr body, ATermList formals, Expr arg)
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while (!ATisEmpty(formals)) {
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ATerm t = ATgetFirst(formals);
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Expr name, def;
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debug(printTerm(t));
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if (ATmatch(t, "NoDefFormal(<term>)", &name))
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subs.set(name, undefined);
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else if (ATmatch(t, "DefFormal(<term>, <term>)", &name, &def))
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@ -234,7 +233,8 @@ Expr evalExpr2(EvalState & state, Expr e)
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Expr evalExpr(EvalState & state, Expr e)
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{
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Nest nest(lvlVomit, format("evaluating expression: %1%") % printTerm(e));
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startNest(nest, lvlVomit,
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format("evaluating expression: %1%") % printTerm(e));
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state.nrEvaluated++;
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@ -258,7 +258,7 @@ Expr evalExpr(EvalState & state, Expr e)
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Expr evalFile(EvalState & state, const Path & path)
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{
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Nest nest(lvlTalkative, format("evaluating file `%1%'") % path);
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startNest(nest, lvlTalkative, format("evaluating file `%1%'") % path);
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Expr e = parseExprFromFile(path);
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return evalExpr(state, e);
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}
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@ -60,7 +60,7 @@ static Expr evalExpr2(EvalState & state, Expr e)
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static Expr evalStdin(EvalState & state)
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{
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Nest nest(lvlTalkative, format("evaluating standard input"));
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startNest(nest, lvlTalkative, format("evaluating standard input"));
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Expr e = ATreadFromFile(stdin);
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if (!e)
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throw Error(format("unable to read a term from stdin"));
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@ -58,7 +58,7 @@ static Path copyAtom(EvalState & state, const Path & srcPath)
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Path drvPath = writeTerm(unparseNixExpr(ne), "");
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state.drvHashes[drvPath] = drvHash;
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msg(lvlChatty, format("copied `%1%' -> closure `%2%'")
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printMsg(lvlChatty, format("copied `%1%' -> closure `%2%'")
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% srcPath % drvPath);
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return drvPath;
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}
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@ -107,7 +107,7 @@ static string processBinding(EvalState & state, Expr e, NixExpr & ne)
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string s;
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bool first = true;
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while (!ATisEmpty(es)) {
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Nest nest(lvlVomit, format("processing list element"));
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startNest(nest, lvlVomit, format("processing list element"));
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if (!first) s = s + " "; else first = false;
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s += processBinding(state, evalExpr(state, ATgetFirst(es)), ne);
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es = ATgetNext(es);
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@ -123,7 +123,7 @@ static string processBinding(EvalState & state, Expr e, NixExpr & ne)
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Expr primDerivation(EvalState & state, Expr args)
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{
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Nest nest(lvlVomit, "evaluating derivation");
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startNest(nest, lvlVomit, "evaluating derivation");
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ATermMap attrs;
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args = evalExpr(state, args);
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@ -143,7 +143,7 @@ Expr primDerivation(EvalState & state, Expr args)
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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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startNest(nest, lvlVomit, format("processing attribute `%1%'") % key);
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/* The `args' attribute is special: it supplies the
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command-line arguments to the builder. */
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@ -199,7 +199,7 @@ Expr primDerivation(EvalState & state, Expr args)
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Path drvPath = writeTerm(unparseNixExpr(ne), "-d-" + drvName);
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state.drvHashes[drvPath] = drvHash;
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msg(lvlChatty, format("instantiated `%1%' -> `%2%'")
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printMsg(lvlChatty, format("instantiated `%1%' -> `%2%'")
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% drvName % drvPath);
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attrs.set("outPath", ATmake("Path(<str>)", outPath.c_str()));
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@ -273,7 +273,7 @@ static Expr evalExpr2(EvalState & state, Expr e)
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Path pkgPath = writeTerm(unparseNixExpr(ne), "");
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state.pkgHashes[pkgPath] = pkgHash;
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msg(lvlChatty, format("copied `%1%' -> closure `%2%'")
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printMsg(lvlChatty, format("copied `%1%' -> closure `%2%'")
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% srcPath % pkgPath);
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return ATmake("NixExpr(<str>)", pkgPath.c_str());
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@ -362,7 +362,7 @@ static Expr evalExpr2(EvalState & state, Expr e)
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Path pkgPath = writeTerm(unparseNixExpr(ne), "-d-" + name);
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state.pkgHashes[pkgPath] = pkgHash;
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msg(lvlChatty, format("instantiated `%1%' -> `%2%'")
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printMsg(lvlChatty, format("instantiated `%1%' -> `%2%'")
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% name % pkgPath);
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return ATmake("NixExpr(<str>)", pkgPath.c_str());
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@ -383,7 +383,8 @@ static Expr evalExpr2(EvalState & state, Expr e)
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static Expr evalExpr(EvalState & state, Expr e)
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{
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Nest nest(lvlVomit, format("evaluating expression: %1%") % printTerm(e));
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startNest(nest, lvlVomit,
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format("evaluating expression: %1%") % printTerm(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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@ -405,7 +406,7 @@ static Expr evalExpr(EvalState & state, Expr e)
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static Expr evalFile(EvalState & state, const Path & relPath)
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{
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Path path = searchPath(state.searchDirs, relPath);
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Nest nest(lvlTalkative, format("evaluating file `%1%'") % path);
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startNest(nest, lvlTalkative, format("evaluating file `%1%'") % path);
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Expr e = ATreadFromNamedFile(path.c_str());
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if (!e)
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throw Error(format("unable to read a term from `%1%'") % path);
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@ -415,7 +416,7 @@ static Expr evalFile(EvalState & state, const Path & relPath)
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static Expr evalStdin(EvalState & state)
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{
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Nest nest(lvlTalkative, format("evaluating standard input"));
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startNest(nest, lvlTalkative, format("evaluating standard input"));
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Expr e = ATreadFromFile(stdin);
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if (!e)
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throw Error(format("unable to read a term from stdin"));
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@ -64,17 +64,17 @@ int main(int argc, char * * argv)
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try {
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initAndRun(argc, argv);
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} catch (UsageError & e) {
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msg(lvlError,
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printMsg(lvlError,
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format(
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"error: %1%\n"
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"Try `%2% --help' for more information.")
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% e.what() % programId);
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return 1;
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} catch (Error & e) {
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msg(lvlError, format("error: %1%") % e.msg());
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printMsg(lvlError, format("error: %1%") % e.msg());
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return 1;
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} catch (exception & e) {
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msg(lvlError, format("error: %1%") % e.what());
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printMsg(lvlError, format("error: %1%") % e.what());
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return 1;
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}
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@ -202,7 +202,8 @@ void Database::open(const string & path)
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setAccessorCount(fdAccessors, 1);
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if (n != 0) {
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msg(lvlTalkative, format("accessor count is %1%, running recovery") % n);
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printMsg(lvlTalkative,
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format("accessor count is %1%, running recovery") % n);
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/* Open the environment after running recovery. */
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openEnv(env, path, DB_RECOVER);
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@ -110,7 +110,7 @@ void runProgram(const string & program,
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if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) {
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if (keepFailed) {
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msg(lvlTalkative,
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printMsg(lvlTalkative,
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format("program `%1%' failed; keeping build directory `%2%'")
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% program % tmpDir);
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delTmpDir.cancel();
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@ -20,7 +20,7 @@ static Path useSuccessor(const Path & path)
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Path normaliseNixExpr(const Path & _nePath, PathSet pending)
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{
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Nest nest(lvlTalkative,
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startNest(nest, lvlTalkative,
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format("normalising expression in `%1%'") % (string) _nePath);
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/* Try to substitute the expression by any known successors in
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@ -156,13 +156,13 @@ Path normaliseNixExpr(const Path & _nePath, PathSet pending)
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}
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/* Run the builder. */
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msg(lvlChatty, format("building..."));
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printMsg(lvlChatty, format("building..."));
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runProgram(ne.derivation.builder, ne.derivation.args, env,
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nixLogDir + "/" + baseNameOf(nePath));
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msg(lvlChatty, format("build completed"));
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printMsg(lvlChatty, format("build completed"));
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} else
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msg(lvlChatty, format("fast build succesful"));
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printMsg(lvlChatty, format("fast build succesful"));
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/* Check whether the output paths were created, and grep each
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output path to determine what other paths it references. Also make all
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@ -239,7 +239,7 @@ Path normaliseNixExpr(const Path & _nePath, PathSet pending)
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/* Write the normal form. This does not have to occur in the
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transaction below because writing terms is idem-potent. */
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ATerm nfTerm = unparseNixExpr(nf);
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msg(lvlVomit, format("normal form: %1%") % printTerm(nfTerm));
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printMsg(lvlVomit, format("normal form: %1%") % printTerm(nfTerm));
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Path nfPath = writeTerm(nfTerm, "-s");
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/* Register each outpat path, and register the normal form. This
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@ -262,7 +262,7 @@ Path normaliseNixExpr(const Path & _nePath, PathSet pending)
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void realiseClosure(const Path & nePath, PathSet pending)
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{
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Nest nest(lvlDebug, format("realising closure `%1%'") % nePath);
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startNest(nest, lvlDebug, format("realising closure `%1%'") % nePath);
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NixExpr ne = exprFromPath(nePath, pending);
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if (ne.type != NixExpr::neClosure)
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@ -290,7 +290,7 @@ void ensurePath(const Path & path, PathSet pending)
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if (isValidPath(path)) return;
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throw Error(format("substitute failed to produce expected output path"));
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} catch (Error & e) {
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msg(lvlTalkative,
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printMsg(lvlTalkative,
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format("building of substitute `%1%' for `%2%' failed: %3%")
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% *i % path % e.what());
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}
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@ -110,7 +110,7 @@ bool pathExists(const Path & path)
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void deletePath(const Path & path)
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{
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msg(lvlVomit, format("deleting path `%1%'") % path);
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printMsg(lvlVomit, format("deleting path `%1%'") % path);
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struct stat st;
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if (lstat(path.c_str(), &st))
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@ -194,15 +194,9 @@ Verbosity verbosity = lvlError;
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static int nestingLevel = 0;
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Nest::Nest(Verbosity level, const format & f)
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Nest::Nest()
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{
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if (level > verbosity)
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nest = false;
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else {
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msg(level, f);
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nest = true;
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nestingLevel++;
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}
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nest = false;
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}
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@ -212,7 +206,17 @@ Nest::~Nest()
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}
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void msg(Verbosity level, const format & f)
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void Nest::open(Verbosity level, const format & f)
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{
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if (level <= verbosity) {
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printMsg_(level, f);
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nest = true;
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nestingLevel++;
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}
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}
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void printMsg_(Verbosity level, const format & f)
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{
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if (level > verbosity) return;
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string spaces;
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@ -222,12 +226,6 @@ void msg(Verbosity level, const format & f)
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}
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void debug(const format & f)
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{
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msg(lvlDebug, f);
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}
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void readFull(int fd, unsigned char * buf, size_t count)
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{
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while (count) {
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@ -101,12 +101,27 @@ class Nest
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private:
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bool nest;
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public:
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Nest(Verbosity level, const format & f);
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Nest();
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~Nest();
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void open(Verbosity level, const format & f);
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};
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void msg(Verbosity level, const format & f);
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void debug(const format & f); /* short-hand for msg(lvlDebug, ...) */
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void printMsg_(Verbosity level, const format & f);
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#define startNest(varName, level, f) \
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Nest varName; \
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if (level <= verbosity) { \
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varName.open(level, (f)); \
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}
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#define printMsg(level, f) \
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do { \
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if (level <= verbosity) { \
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printMsg_(level, (f)); \
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} \
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} while (0)
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#define debug(f) printMsg(lvlDebug, f)
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/* Wrappers arount read()/write() that read/write exactly the
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