forked from lix-project/lix
* Normalisation.
This commit is contained in:
parent
3ec5252582
commit
d4c3edfaba
142
src/eval.cc
142
src/eval.cc
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@ -5,6 +5,7 @@
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#include <sys/stat.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include "eval.hh"
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#include "eval.hh"
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#include "globals.hh"
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#include "globals.hh"
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@ -91,7 +92,7 @@ static Hash computeDerived(Hash sourceHash, string targetName,
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}
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}
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#endif
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#endif
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build:
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// build:
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/* Fill in the environment. We don't bother freeing
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/* Fill in the environment. We don't bother freeing
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the strings, since we'll exec or die soon
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the strings, since we'll exec or die soon
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@ -210,13 +211,14 @@ Hash hashExpr(Expr e)
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/* Evaluate an expression; the result must be a string. */
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/* Evaluate an expression; the result must be a string. */
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static string evalString(Expr e)
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static string evalString(Expr e)
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{
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{
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e = evalValue(e);
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e = whNormalise(e);
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char * s;
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char * s;
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if (ATmatch(e, "Str(<str>)", &s)) return s;
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if (ATmatch(e, "Str(<str>)", &s)) return s;
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else throw badTerm("string value expected", e);
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else throw badTerm("string value expected", e);
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}
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}
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#if 0
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/* Evaluate an expression; the result must be a value reference. */
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/* Evaluate an expression; the result must be a value reference. */
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static Hash evalHash(Expr e)
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static Hash evalHash(Expr e)
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{
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{
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@ -225,8 +227,10 @@ static Hash evalHash(Expr e)
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if (ATmatch(e, "Hash(<str>)", &s)) return parseHash(s);
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if (ATmatch(e, "Hash(<str>)", &s)) return parseHash(s);
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else throw badTerm("value reference expected", e);
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else throw badTerm("value reference expected", e);
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}
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}
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#endif
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#if 0
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/* Evaluate a list of arguments into normal form. */
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/* Evaluate a list of arguments into normal form. */
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void evalArgs(ATermList args, ATermList & argsNF, Environment & env)
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void evalArgs(ATermList args, ATermList & argsNF, Environment & env)
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{
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{
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@ -255,6 +259,7 @@ void evalArgs(ATermList args, ATermList & argsNF, Environment & env)
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argsNF = ATreverse(argsNF);
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argsNF = ATreverse(argsNF);
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}
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}
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#endif
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Expr substExpr(string x, Expr rep, Expr e)
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Expr substExpr(string x, Expr rep, Expr e)
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@ -302,19 +307,13 @@ Expr substExpr(string x, Expr rep, Expr e)
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}
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}
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#if 0
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Expr evalValue(Expr e)
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Expr evalValue(Expr e)
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{
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{
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char * s;
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char * s;
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Expr eBuildPlatform, eProg, e2, e3, e4;
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Expr eBuildPlatform, eProg, e2, e3, e4;
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ATermList args;
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ATermList args;
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/* Normal forms. */
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if (ATmatch(e, "Str(<str>)", &s) ||
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ATmatch(e, "Bool(True)") ||
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ATmatch(e, "Bool(False)") ||
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ATmatch(e, "Lam(<str>, <term>)", &s, &e2))
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return e;
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/* Value references. */
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/* Value references. */
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if (ATmatch(e, "Hash(<str>)", &s)) {
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if (ATmatch(e, "Hash(<str>)", &s)) {
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parseHash(s); /* i.e., throw exception if not valid */
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parseHash(s); /* i.e., throw exception if not valid */
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@ -329,14 +328,6 @@ Expr evalValue(Expr e)
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return evalValue(e3);
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return evalValue(e3);
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}
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}
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/* Application. */
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if (ATmatch(e, "App(<term>, <term>)", &e2, &e3)) {
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e2 = evalValue(e2);
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if (!ATmatch(e2, "Lam(<str>, <term>)", &s, &e4))
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throw badTerm("expecting lambda", e2);
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return evalValue(substExpr(s, e3, e4));
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}
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/* Execution primitive. */
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/* Execution primitive. */
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if (ATmatch(e, "Exec(<term>, <term>, [<list>])",
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if (ATmatch(e, "Exec(<term>, <term>, [<list>])",
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/* Barf. */
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/* Barf. */
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throw badTerm("invalid expression", e);
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throw badTerm("invalid expression", e);
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}
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}
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#endif
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Expr whNormalise(Expr e)
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{
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char * s;
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Expr e2, e3, e4, e5;
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/* Normal forms. */
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if (ATmatch(e, "Str(<str>)", &s) ||
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ATmatch(e, "Bool(True)") ||
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ATmatch(e, "Bool(False)") ||
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ATmatch(e, "Lam(<str>, <term>)", &s, &e2) ||
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ATmatch(e, "File(<str>, <term>, <term>)", &s, &e2, &e3) ||
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ATmatch(e, "Derive(<term>, <term>, <term>, <term>)", &e2, &e3, &e4, &e5))
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return e;
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/* Application. */
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if (ATmatch(e, "App(<term>, <term>)", &e2, &e3)) {
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e2 = whNormalise(e2);
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if (!ATmatch(e2, "Lam(<str>, <term>)", &s, &e4))
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throw badTerm("expecting lambda", e2);
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return whNormalise(substExpr(s, e3, e4));
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}
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throw badTerm("invalid expression", e);
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}
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Expr dNormalise(Expr e)
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{
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e = whNormalise(e);
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/* !!! todo */
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return e;
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}
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Expr fNormalise(Expr e)
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{
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e = dNormalise(e);
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char * s;
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Expr e2, e3;
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if (ATmatch(e, "File(<str>, <term>, [<list>])", &s, &e2, &e3)) {
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ATermList refs = (ATermList) e3, refs2 = ATempty;
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while (!ATisEmpty(refs)) {
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ATerm ref = ATgetFirst(refs);
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refs2 = ATinsert(refs2, fNormalise(ref));
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refs = ATgetNext(refs);
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}
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refs2 = ATreverse(refs2);
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return ATmake("File(<str>, <term>, <term>)", s, e2, refs2);
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}
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else return e;
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}
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void writeContent(string path, Content content)
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{
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char * s;
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if (ATmatch(content, "Regular(<str>)", &s)) {
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int fd; /* !!! close on exception */
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fd = open(path.c_str(), O_CREAT | O_EXCL | O_WRONLY, 0666);
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if (fd == -1)
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throw SysError("creating file " + path);
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int len = strlen(s);
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if (write(fd, s, len) != len)
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throw SysError("writing file " + path);
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close(fd);
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}
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else throw badTerm("ill-formed content", content);
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}
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struct RStatus
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{
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/* !!! the comparator of this hash should match the semantics of
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the file system */
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map<string, Hash> paths;
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};
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static void realise2(RStatus & status, Expr e)
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{
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char * s;
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Content content;
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ATermList refs;
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if (!ATmatch(e, "File(<str>, <term>, [<list>])", &s, &content, &refs))
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throw badTerm("not f-normalised", e);
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string path(s);
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while (!ATisEmpty(refs)) {
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realise2(status, ATgetFirst(refs));
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refs = ATgetNext(refs);
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}
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writeContent(path, content);
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}
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void realise(Expr e)
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{
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RStatus status;
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realise2(status, e);
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}
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71
src/eval.hh
71
src/eval.hh
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@ -10,14 +10,14 @@ extern "C" {
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using namespace std;
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using namespace std;
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/* Abstract syntax of Nix expressions.
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/* \section{Abstract syntax of Nix expressions}
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An expression describes a (partial) state of the file system in a
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An expression describes a (partial) state of the file system in a
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referentially transparent way. The operational effect of
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referentially transparent way. The operational effect of
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evaluating an expression is that the state described by the
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evaluating an expression is that the state described by the
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expression is realised.
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expression is realised.
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File : String * Content * [Expr] -> Expr
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File : Path * Content * [Expr] -> Expr
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File(path, content, refs) specifies a file object (its full path
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File(path, content, refs) specifies a file object (its full path
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and contents), along with all file objects referenced by it (that
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and contents), along with all file objects referenced by it (that
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self-referential. This prevents us from having to deal with
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self-referential. This prevents us from having to deal with
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cycles.
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cycles.
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Derive : String * Expr * [Expr] * [String] -> Expr
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Derive : String * Path * [Expr] * [Expr] * [Expr] -> Expr
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Derive(platform, builder, ins, outs) specifies the creation of new
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Derive(platform, builder, ins, outs, env) specifies the creation of
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file objects (in paths declared by `outs') by the execution of a
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new file objects (in paths declared by `outs') by the execution of
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program `builder' on a platform `platform'. This execution takes
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a program `builder' on a platform `platform'. This execution takes
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place in a file system state and in an environment given by `ins'.
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place in a file system state given by `ins'. `env' specifies a
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mapping of strings to strings.
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Str : String -> Expr
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Str : String -> Expr
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@ -40,39 +41,73 @@ using namespace std;
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Tuples of expressions.
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Tuples of expressions.
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Regular : String -> Content
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[ !!! NOT IMPLEMENTED
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Directory : [(String, Content)] -> Content
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Regular : String -> Content
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Hash : String -> Content
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Directory : [(String, Content)] -> Content
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(this complicates unambiguous normalisation)
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]
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CHash : Hash -> Content
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File content, given either explicitly or implicitly through a cryptographic hash.
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File content, given either in situ, or through an external reference
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to the file system or url-space decorated with a hash to preserve purity.
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The set of expressions in {\em $f$-normal form} is as follows:
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DISCUSSION: the idea is that a Regular/Directory is interchangeable
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with its CHash. This would appear to break referential
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transparency, e.g., Derive(..., ..., [...CHash(h)...], ...) can
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only be reduced in a context were the Regular/Directory equivalent
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of Hash(h) is known. However, CHash should be viewed strictly as a
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shorthand; that is, when we export an expression containing a
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CHash, we should also export the file object referenced by that
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CHash.
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File : String * Content * [FExpr] -> FExpr
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These are completely evaluated Nix expressions.
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\section{Reduction rules}
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The set of expressions in {\em $d$-normal form} is as follows:
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...
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\section{Normals forms}
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An expression is in {\em weak head normal form} if it is a lambda,
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a string or boolean value, or a File or Derive value.
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An expression is in {\em $d$-normal form} if it matches the
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signature FExpr:
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File : String * Content * [DExpr] -> DExpr
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File : String * Content * [DExpr] -> DExpr
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Derive : String * DExpr * [Tup] * [String] -> DExpr
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Derive : String * Path * [Tup] * [Tup2] -> DExpr
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Tup : Str * DExpr -> Tup
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Tup : Str * DExpr -> Tup
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Tup : Str * Str -> Tup
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Tup : Str * Str -> Tup
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Tup : Str * Str -> Tup2
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Str : String -> Str
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Str : String -> Str
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These are Nix expressions in which the file system result of Derive
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These are Nix expressions in which the file system result of Derive
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expressions has not yet been computed. This is useful for, e.g.,
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expressions has not yet been computed. This is useful for, e.g.,
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querying dependencies.
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querying dependencies.
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An expression is in {\em $f$-normal form} if it matches the
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signature FExpr:
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File : String * Content * [FExpr] -> FExpr
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These are completely evaluated Nix expressions.
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*/
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*/
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typedef ATerm Expr;
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typedef ATerm Expr;
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typedef ATerm Content;
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/* Evaluate an expression. */
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/* Expression normalisation. */
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Expr evalValue(Expr e);
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Expr whNormalise(Expr e);
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Expr dNormalise(Expr e);
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Expr fNormalise(Expr e);
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/* Realise a $f$-normalised expression in the file system. */
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void realise(Expr e);
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/* Return a canonical textual representation of an expression. */
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/* Return a canonical textual representation of an expression. */
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string printExpr(Expr e);
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string printExpr(Expr e);
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66
src/test.cc
66
src/test.cc
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@ -11,13 +11,27 @@
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#include "globals.hh"
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#include "globals.hh"
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void evalTest(Expr e)
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typedef Expr (* Normaliser) (Expr);
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void eval(Normaliser n, Expr e)
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{
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{
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e = evalValue(e);
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e = n(e);
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cout << (string) hashExpr(e) << ": " << printExpr(e) << endl;
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cout << (string) hashExpr(e) << ": " << printExpr(e) << endl;
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}
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}
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void evalFail(Normaliser n, Expr e)
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{
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try {
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e = n(e);
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abort();
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} catch (Error e) {
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cout << "error (expected): " << e.what() << endl;
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}
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}
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struct MySink : DumpSink
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struct MySink : DumpSink
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{
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{
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virtual void operator () (const unsigned char * data, unsigned int len)
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virtual void operator () (const unsigned char * data, unsigned int len)
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@ -90,19 +104,48 @@ void runTests()
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/* Expression evaluation. */
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/* Expression evaluation. */
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evalTest(ATmake("Str(\"Hello World\")"));
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eval(whNormalise,
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evalTest(ATmake("Bool(True)"));
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ATmake("Str(\"Hello World\")"));
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evalTest(ATmake("Bool(False)"));
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eval(whNormalise,
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evalTest(ATmake("App(Lam(\"x\", Var(\"x\")), Str(\"Hello World\"))"));
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ATmake("Bool(True)"));
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evalTest(ATmake("App(App(Lam(\"x\", Lam(\"y\", Var(\"x\"))), Str(\"Hello World\")), Str(\"Hallo Wereld\"))"));
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eval(whNormalise,
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evalTest(ATmake("App(Lam(\"sys\", Lam(\"x\", [Var(\"x\"), Var(\"sys\")])), Str(\"i686-suse-linux\"))"));
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ATmake("Bool(False)"));
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eval(whNormalise,
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ATmake("App(Lam(\"x\", Var(\"x\")), Str(\"Hello World\"))"));
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eval(whNormalise,
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||||||
|
ATmake("App(App(Lam(\"x\", Lam(\"y\", Var(\"x\"))), Str(\"Hello World\")), Str(\"Hallo Wereld\"))"));
|
||||||
|
eval(whNormalise,
|
||||||
|
ATmake("App(Lam(\"sys\", Lam(\"x\", [Var(\"x\"), Var(\"sys\")])), Str(\"i686-suse-linux\"))"));
|
||||||
|
|
||||||
|
evalFail(whNormalise,
|
||||||
|
ATmake("Foo(123)"));
|
||||||
|
|
||||||
|
string builder1fn = absPath("./test-builder-1.sh");
|
||||||
|
Hash builder1h = hashFile(builder1fn);
|
||||||
|
|
||||||
|
string fn1 = nixValues + "/builder-1.sh";
|
||||||
|
Expr e1 = ATmake("File(<str>, ExtFile(<str>, <str>), [])",
|
||||||
|
fn1.c_str(),
|
||||||
|
builder1h.c_str(),
|
||||||
|
builder1fn.c_str());
|
||||||
|
eval(fNormalise, e1);
|
||||||
|
|
||||||
|
string fn2 = nixValues + "/refer.txt";
|
||||||
|
Expr e2 = ATmake("File(<str>, Regular(<str>), [<term>])",
|
||||||
|
fn2.c_str(),
|
||||||
|
("I refer to " + fn1).c_str(),
|
||||||
|
e1);
|
||||||
|
eval(fNormalise, e2);
|
||||||
|
|
||||||
|
realise(e2);
|
||||||
|
|
||||||
|
#if 0
|
||||||
Hash builder1 = addValue("./test-builder-1.sh");
|
Hash builder1 = addValue("./test-builder-1.sh");
|
||||||
|
|
||||||
Expr e1 = ATmake("Exec(Str(<str>), Hash(<str>), [])",
|
Expr e1 = ATmake("Exec(Str(<str>), Hash(<str>), [])",
|
||||||
thisSystem.c_str(), ((string) builder1).c_str());
|
thisSystem.c_str(), ((string) builder1).c_str());
|
||||||
|
|
||||||
evalTest(e1);
|
eval(e1);
|
||||||
|
|
||||||
Hash builder2 = addValue("./test-builder-2.sh");
|
Hash builder2 = addValue("./test-builder-2.sh");
|
||||||
|
|
||||||
|
@ -110,14 +153,15 @@ void runTests()
|
||||||
"Exec(Str(<str>), Hash(<str>), [Tup(Str(\"src\"), <term>)])",
|
"Exec(Str(<str>), Hash(<str>), [Tup(Str(\"src\"), <term>)])",
|
||||||
thisSystem.c_str(), ((string) builder2).c_str(), e1);
|
thisSystem.c_str(), ((string) builder2).c_str(), e1);
|
||||||
|
|
||||||
evalTest(e2);
|
eval(e2);
|
||||||
|
|
||||||
Hash h3 = addValue("./test-expr-1.nix");
|
Hash h3 = addValue("./test-expr-1.nix");
|
||||||
Expr e3 = ATmake("Deref(Hash(<str>))", ((string) h3).c_str());
|
Expr e3 = ATmake("Deref(Hash(<str>))", ((string) h3).c_str());
|
||||||
|
|
||||||
evalTest(e3);
|
eval(e3);
|
||||||
|
|
||||||
deleteValue(h3);
|
deleteValue(h3);
|
||||||
|
#endif
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
|
|
Loading…
Reference in a new issue