forked from lix-project/lix
First hit at providing support for floats in the language.
This commit is contained in:
parent
b8258a4475
commit
14ebde5289
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@ -128,6 +128,8 @@ static void printValue(std::ostream & str, std::set<const Value *> & active, con
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case tExternal:
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str << *v.external;
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break;
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case tFloat:
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str << v.fpoint;
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default:
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throw Error("invalid value");
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}
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@ -161,6 +163,7 @@ string showType(const Value & v)
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case tPrimOp: return "a built-in function";
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case tPrimOpApp: return "a partially applied built-in function";
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case tExternal: return v.external->showType();
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case tFloat: return "a float";
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}
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abort();
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}
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@ -577,6 +580,12 @@ Value * ExprInt::maybeThunk(EvalState & state, Env & env)
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return &v;
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}
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Value * ExprFloat::maybeThunk(EvalState & state, Env & env)
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{
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nrAvoided++;
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return &v;
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}
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Value * ExprPath::maybeThunk(EvalState & state, Env & env)
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{
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nrAvoided++;
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@ -664,6 +673,11 @@ void ExprInt::eval(EvalState & state, Env & env, Value & v)
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}
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void ExprFloat::eval(EvalState & state, Env & env, Value & v)
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{
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v = this->v;
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}
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void ExprString::eval(EvalState & state, Env & env, Value & v)
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{
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v = this->v;
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@ -1209,6 +1223,7 @@ void ExprConcatStrings::eval(EvalState & state, Env & env, Value & v)
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PathSet context;
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std::ostringstream s;
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NixInt n = 0;
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NixFloat nf = 0;
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bool first = !forceString;
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ValueType firstType = tString;
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@ -1227,15 +1242,30 @@ void ExprConcatStrings::eval(EvalState & state, Env & env, Value & v)
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}
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if (firstType == tInt) {
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if (vTmp.type != tInt)
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if (vTmp.type == tInt) {
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n += vTmp.integer;
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} else if (vTmp.type == tFloat) {
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// Upgrade the type from int to float;
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firstType = tFloat;
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nf = n;
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nf += vTmp.fpoint;
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} else
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throwEvalError("cannot add %1% to an integer, at %2%", showType(vTmp), pos);
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n += vTmp.integer;
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} else if (firstType == tFloat) {
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if (vTmp.type == tInt) {
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nf += vTmp.integer;
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} else if (vTmp.type == tFloat) {
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nf += vTmp.fpoint;
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} else
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throwEvalError("cannot add %1% to a float, at %2%", showType(vTmp), pos);
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} else
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s << state.coerceToString(pos, vTmp, context, false, firstType == tString);
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}
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if (firstType == tInt)
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mkInt(v, n);
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else if (firstType == tFloat)
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mkFloat(v, nf);
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else if (firstType == tPath) {
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if (!context.empty())
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throwEvalError("a string that refers to a store path cannot be appended to a path, at %1%", pos);
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@ -1293,6 +1323,17 @@ NixInt EvalState::forceInt(Value & v, const Pos & pos)
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}
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NixFloat EvalState::forceFloat(Value & v, const Pos & pos)
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{
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forceValue(v, pos);
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if (v.type == tInt)
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return v.integer;
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else if (v.type != tFloat)
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throwTypeError("value is %1% while a float was expected, at %2%", v, pos);
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return v.fpoint;
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}
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bool EvalState::forceBool(Value & v)
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{
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forceValue(v);
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@ -1404,6 +1445,7 @@ string EvalState::coerceToString(const Pos & pos, Value & v, PathSet & context,
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if (v.type == tBool && v.boolean) return "1";
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if (v.type == tBool && !v.boolean) return "";
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if (v.type == tInt) return std::to_string(v.integer);
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if (v.type == tFloat) return std::to_string(v.fpoint);
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if (v.type == tNull) return "";
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if (v.isList()) {
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@ -1465,6 +1507,13 @@ bool EvalState::eqValues(Value & v1, Value & v2)
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uniqList on a list of sets.) Will remove this eventually. */
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if (&v1 == &v2) return true;
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// Special case type-compatibility between float and int
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if (v1.type == tInt && v2.type == tFloat)
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return v1.integer == v2.fpoint;
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if (v1.type == tFloat && v2.type == tInt)
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return v1.fpoint == v2.integer;
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// All other types are not compatible with each other.
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if (v1.type != v2.type) return false;
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switch (v1.type) {
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@ -1522,6 +1571,9 @@ bool EvalState::eqValues(Value & v1, Value & v2)
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case tExternal:
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return *v1.external == *v2.external;
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case tFloat:
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return v1.fpoint == v2.fpoint;
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default:
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throwEvalError("cannot compare %1% with %2%", showType(v1), showType(v2));
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}
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@ -144,6 +144,7 @@ public:
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/* Force `v', and then verify that it has the expected type. */
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NixInt forceInt(Value & v, const Pos & pos);
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NixFloat forceFloat(Value & v, const Pos & pos);
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bool forceBool(Value & v);
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inline void forceAttrs(Value & v);
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inline void forceAttrs(Value & v, const Pos & pos);
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@ -106,7 +106,8 @@ bool DrvInfo::checkMeta(Value & v)
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if (!checkMeta(*i.value)) return false;
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return true;
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}
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else return v.type == tInt || v.type == tBool || v.type == tString;
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else return v.type == tInt || v.type == tBool || v.type == tString ||
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v.type == tFloat;
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}
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@ -127,7 +128,7 @@ string DrvInfo::queryMetaString(const string & name)
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}
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int DrvInfo::queryMetaInt(const string & name, int def)
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NixInt DrvInfo::queryMetaInt(const string & name, NixInt def)
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{
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Value * v = queryMeta(name);
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if (!v) return def;
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@ -135,12 +136,26 @@ int DrvInfo::queryMetaInt(const string & name, int def)
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if (v->type == tString) {
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/* Backwards compatibility with before we had support for
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integer meta fields. */
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int n;
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NixInt n;
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if (string2Int(v->string.s, n)) return n;
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}
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return def;
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}
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NixFloat DrvInfo::queryMetaFloat(const string & name, NixFloat def)
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{
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Value * v = queryMeta(name);
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if (!v) return def;
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if (v->type == tFloat) return v->fpoint;
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if (v->type == tString) {
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/* Backwards compatibility with before we had support for
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float meta fields. */
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NixFloat n;
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if (string2Float(v->string.s, n)) return n;
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}
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return def;
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}
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bool DrvInfo::queryMetaBool(const string & name, bool def)
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{
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@ -47,7 +47,8 @@ public:
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StringSet queryMetaNames();
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Value * queryMeta(const string & name);
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string queryMetaString(const string & name);
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int queryMetaInt(const string & name, int def);
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NixInt queryMetaInt(const string & name, NixInt def);
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NixFloat queryMetaFloat(const string & name, NixFloat def);
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bool queryMetaBool(const string & name, bool def);
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void setMeta(const string & name, Value * v);
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@ -105,17 +105,22 @@ static void parseJSON(EvalState & state, const char * & s, Value & v)
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mkString(v, parseJSONString(s));
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}
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else if (isdigit(*s) || *s == '-') {
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bool neg = false;
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if (*s == '-') {
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neg = true;
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if (!*++s) throw JSONParseError("unexpected end of JSON number");
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else if (isdigit(*s) || *s == '-' || *s == '.' ) {
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// Buffer into a string first, then use built-in C++ conversions
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std::string tmp_number;
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ValueType number_type = tInt;
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while (isdigit(*s) || *s == '-' || *s == '.' || *s == 'e' || *s == 'E') {
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if (*s == '.' || *s == 'e' || *s == 'E')
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number_type = tFloat;
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tmp_number.append(*s++, 1);
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}
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if (number_type == tFloat) {
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mkFloat(v, stod(tmp_number));
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} else {
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mkInt(v, stoi(tmp_number));
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}
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NixInt n = 0;
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// FIXME: detect overflow
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while (isdigit(*s)) n = n * 10 + (*s++ - '0');
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if (*s == '.' || *s == 'e') throw JSONParseError("floating point JSON numbers are not supported");
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mkInt(v, neg ? -n : n);
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}
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else if (strncmp(s, "true", 4) == 0) {
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@ -85,6 +85,7 @@ static Expr * unescapeStr(SymbolTable & symbols, const char * s)
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ID [a-zA-Z\_][a-zA-Z0-9\_\'\-]*
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INT [0-9]+
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FLOAT {INT}[0-9]+\.[0-9]+[eE]-?{INT}
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PATH [a-zA-Z0-9\.\_\-\+]*(\/[a-zA-Z0-9\.\_\-\+]+)+
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HPATH \~(\/[a-zA-Z0-9\.\_\-\+]+)+
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SPATH \<[a-zA-Z0-9\.\_\-\+]+(\/[a-zA-Z0-9\.\_\-\+]+)*\>
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@ -123,6 +124,12 @@ or { return OR_KW; }
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throw ParseError(format("invalid integer ‘%1%’") % yytext);
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return INT;
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}
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{FLOAT} { errno = 0;
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yylval->n = strtod(yytext, 0);
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if (errno != 0)
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throw ParseError(format("invalid float ‘%1%’") % yytext);
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return FLOAT;
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}
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\$\{ { PUSH_STATE(INITIAL); return DOLLAR_CURLY; }
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\{ { PUSH_STATE(INITIAL); return '{'; }
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@ -68,6 +68,11 @@ void ExprInt::show(std::ostream & str)
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str << n;
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}
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void ExprFloat::show(std::ostream & str)
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{
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str << nf;
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}
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void ExprString::show(std::ostream & str)
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{
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showString(str, s);
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@ -226,6 +231,10 @@ void ExprInt::bindVars(const StaticEnv & env)
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{
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}
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void ExprFloat::bindVars(const StaticEnv & env)
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{
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}
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void ExprString::bindVars(const StaticEnv & env)
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{
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}
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@ -98,6 +98,15 @@ struct ExprInt : Expr
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Value * maybeThunk(EvalState & state, Env & env);
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};
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struct ExprFloat : Expr
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{
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NixFloat nf;
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Value v;
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ExprFloat(NixFloat nf) : nf(nf) { mkFloat(v, nf); };
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COMMON_METHODS
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Value * maybeThunk(EvalState & state, Env & env);
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};
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struct ExprString : Expr
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{
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Symbol s;
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@ -244,6 +244,7 @@ void yyerror(YYLTYPE * loc, yyscan_t scanner, ParseData * data, const char * err
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nix::Formals * formals;
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nix::Formal * formal;
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nix::NixInt n;
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nix::NixFloat nf;
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const char * id; // !!! -> Symbol
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char * path;
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char * uri;
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@ -264,6 +265,7 @@ void yyerror(YYLTYPE * loc, yyscan_t scanner, ParseData * data, const char * err
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%token <id> ID ATTRPATH
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%token <e> STR IND_STR
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%token <n> INT
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%token <nf> FLOAT
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%token <path> PATH HPATH SPATH
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%token <uri> URI
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%token IF THEN ELSE ASSERT WITH LET IN REC INHERIT EQ NEQ AND OR IMPL OR_KW
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@ -366,6 +368,7 @@ expr_simple
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$$ = new ExprVar(CUR_POS, data->symbols.create($1));
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}
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| INT { $$ = new ExprInt($1); }
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| FLOAT { $$ = new ExprFloat($1); }
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| '"' string_parts '"' { $$ = $2; }
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| IND_STRING_OPEN ind_string_parts IND_STRING_CLOSE {
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$$ = stripIndentation(CUR_POS, data->symbols, *$2);
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@ -197,6 +197,7 @@ static void prim_typeOf(EvalState & state, const Pos & pos, Value * * args, Valu
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case tExternal:
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t = args[0]->external->typeOf();
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break;
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case tFloat: t = "float"; break;
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default: abort();
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}
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mkString(v, state.symbols.create(t));
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@ -226,6 +227,12 @@ static void prim_isInt(EvalState & state, const Pos & pos, Value * * args, Value
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mkBool(v, args[0]->type == tInt);
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}
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/* Determine whether the argument is a float. */
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static void prim_isFloat(EvalState & state, const Pos & pos, Value * * args, Value & v)
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{
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state.forceValue(*args[0]);
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mkBool(v, args[0]->type == tFloat);
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}
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/* Determine whether the argument is a string. */
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static void prim_isString(EvalState & state, const Pos & pos, Value * * args, Value & v)
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@ -247,11 +254,17 @@ struct CompareValues
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{
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bool operator () (const Value * v1, const Value * v2) const
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{
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if (v1->type == tFloat && v2->type == tInt)
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return v1->fpoint < v2->integer;
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if (v1->type == tInt && v2->type == tFloat)
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return v1->integer < v2->fpoint;
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if (v1->type != v2->type)
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throw EvalError("cannot compare values of different types");
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switch (v1->type) {
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case tInt:
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return v1->integer < v2->integer;
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case tFloat:
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return v1->fpoint < v2->fpoint;
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case tString:
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return strcmp(v1->string.s, v2->string.s) < 0;
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case tPath:
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@ -1424,27 +1437,40 @@ static void prim_sort(EvalState & state, const Pos & pos, Value * * args, Value
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static void prim_add(EvalState & state, const Pos & pos, Value * * args, Value & v)
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{
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mkInt(v, state.forceInt(*args[0], pos) + state.forceInt(*args[1], pos));
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if (args[0]->type == tFloat || args[1]->type == tFloat)
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mkFloat(v, state.forceFloat(*args[0], pos) + state.forceFloat(*args[1], pos));
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else
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mkInt(v, state.forceInt(*args[0], pos) + state.forceInt(*args[1], pos));
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}
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static void prim_sub(EvalState & state, const Pos & pos, Value * * args, Value & v)
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{
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mkInt(v, state.forceInt(*args[0], pos) - state.forceInt(*args[1], pos));
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if (args[0]->type == tFloat || args[1]->type == tFloat)
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mkFloat(v, state.forceFloat(*args[0], pos) - state.forceFloat(*args[1], pos));
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else
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mkInt(v, state.forceInt(*args[0], pos) - state.forceInt(*args[1], pos));
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}
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static void prim_mul(EvalState & state, const Pos & pos, Value * * args, Value & v)
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{
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mkInt(v, state.forceInt(*args[0], pos) * state.forceInt(*args[1], pos));
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if (args[0]->type == tFloat || args[1]->type == tFloat)
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mkFloat(v, state.forceFloat(*args[0], pos) * state.forceFloat(*args[1], pos));
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else
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mkInt(v, state.forceInt(*args[0], pos) * state.forceInt(*args[1], pos));
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}
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static void prim_div(EvalState & state, const Pos & pos, Value * * args, Value & v)
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{
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NixInt i2 = state.forceInt(*args[1], pos);
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if (i2 == 0) throw EvalError(format("division by zero, at %1%") % pos);
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mkInt(v, state.forceInt(*args[0], pos) / i2);
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NixFloat f2 = state.forceFloat(*args[1], pos);
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if (f2 == 0) throw EvalError(format("division by zero, at %1%") % pos);
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if (args[0]->type == tFloat || args[1]->type == tFloat)
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mkFloat(v, state.forceFloat(*args[0], pos) / state.forceFloat(*args[1], pos));
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else
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mkInt(v, state.forceInt(*args[0], pos) / state.forceInt(*args[1], pos));
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}
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@ -1736,7 +1762,7 @@ void EvalState::createBaseEnv()
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language feature gets added. It's not necessary to increase it
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when primops get added, because you can just use `builtins ?
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primOp' to check. */
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mkInt(v, 3);
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mkInt(v, 4);
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addConstant("__langVersion", v);
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// Miscellaneous
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@ -1753,6 +1779,7 @@ void EvalState::createBaseEnv()
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addPrimOp("__isFunction", 1, prim_isFunction);
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addPrimOp("__isString", 1, prim_isString);
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addPrimOp("__isInt", 1, prim_isInt);
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addPrimOp("__isFloat", 1, prim_isFloat);
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addPrimOp("__isBool", 1, prim_isBool);
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addPrimOp("__genericClosure", 1, prim_genericClosure);
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addPrimOp("abort", 1, prim_abort);
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@ -84,6 +84,10 @@ void printValueAsJSON(EvalState & state, bool strict,
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v.external->printValueAsJSON(state, strict, str, context);
|
||||
break;
|
||||
|
||||
case tFloat:
|
||||
str << v.fpoint;
|
||||
break;
|
||||
|
||||
default:
|
||||
throw TypeError(format("cannot convert %1% to JSON") % showType(v));
|
||||
}
|
||||
|
|
|
@ -148,6 +148,10 @@ static void printValueAsXML(EvalState & state, bool strict, bool location,
|
|||
v.external->printValueAsXML(state, strict, location, doc, context, drvsSeen);
|
||||
break;
|
||||
|
||||
case tFloat:
|
||||
doc.writeEmptyElement("float", singletonAttrs("value", (format("%1%") % v.fpoint).str()));
|
||||
break;
|
||||
|
||||
default:
|
||||
doc.writeEmptyElement("unevaluated");
|
||||
}
|
||||
|
|
|
@ -22,6 +22,7 @@ typedef enum {
|
|||
tPrimOp,
|
||||
tPrimOpApp,
|
||||
tExternal,
|
||||
tFloat
|
||||
} ValueType;
|
||||
|
||||
|
||||
|
@ -38,6 +39,7 @@ class XMLWriter;
|
|||
|
||||
|
||||
typedef long NixInt;
|
||||
typedef double NixFloat;
|
||||
|
||||
/* External values must descend from ExternalValueBase, so that
|
||||
* type-agnostic nix functions (e.g. showType) can be implemented
|
||||
|
@ -141,6 +143,7 @@ struct Value
|
|||
Value * left, * right;
|
||||
} primOpApp;
|
||||
ExternalValueBase * external;
|
||||
NixFloat fpoint;
|
||||
};
|
||||
|
||||
bool isList() const
|
||||
|
@ -181,6 +184,14 @@ static inline void mkInt(Value & v, NixInt n)
|
|||
}
|
||||
|
||||
|
||||
static inline void mkFloat(Value & v, NixFloat n)
|
||||
{
|
||||
clearValue(v);
|
||||
v.type = tFloat;
|
||||
v.fpoint = n;
|
||||
}
|
||||
|
||||
|
||||
static inline void mkBool(Value & v, bool b)
|
||||
{
|
||||
clearValue(v);
|
||||
|
|
|
@ -66,6 +66,30 @@ template<class N> N getIntArg(const string & opt,
|
|||
return n * multiplier;
|
||||
}
|
||||
|
||||
template<class N> N getFloatArg(const string & opt,
|
||||
Strings::iterator & i, const Strings::iterator & end, bool allowUnit)
|
||||
{
|
||||
++i;
|
||||
if (i == end) throw UsageError(format("‘%1%’ requires an argument") % opt);
|
||||
string s = *i;
|
||||
N multiplier = 1;
|
||||
if (allowUnit && !s.empty()) {
|
||||
char u = std::toupper(*s.rbegin());
|
||||
if (std::isalpha(u)) {
|
||||
if (u == 'K') multiplier = 1ULL << 10;
|
||||
else if (u == 'M') multiplier = 1ULL << 20;
|
||||
else if (u == 'G') multiplier = 1ULL << 30;
|
||||
else if (u == 'T') multiplier = 1ULL << 40;
|
||||
else throw UsageError(format("invalid unit specifier ‘%1%’") % u);
|
||||
s.resize(s.size() - 1);
|
||||
}
|
||||
}
|
||||
N n;
|
||||
if (!string2Float(s, n))
|
||||
throw UsageError(format("‘%1%’ requires a float argument") % opt);
|
||||
return n * multiplier;
|
||||
}
|
||||
|
||||
/* Show the manual page for the specified program. */
|
||||
void showManPage(const string & name);
|
||||
|
||||
|
|
|
@ -358,6 +358,14 @@ template<class N> bool string2Int(const string & s, N & n)
|
|||
return str && str.get() == EOF;
|
||||
}
|
||||
|
||||
/* Parse a string into a float. */
|
||||
template<class N> bool string2Float(const string & s, N & n)
|
||||
{
|
||||
std::istringstream str(s);
|
||||
str >> n;
|
||||
return str && str.get() == EOF;
|
||||
}
|
||||
|
||||
|
||||
/* Return true iff `s' ends in `suffix'. */
|
||||
bool hasSuffix(const string & s, const string & suffix);
|
||||
|
|
|
@ -1127,6 +1127,10 @@ static void opQuery(Globals & globals, Strings opFlags, Strings opArgs)
|
|||
attrs2["type"] = "int";
|
||||
attrs2["value"] = (format("%1%") % v->integer).str();
|
||||
xml.writeEmptyElement("meta", attrs2);
|
||||
} else if (v->type == tFloat) {
|
||||
attrs2["type"] = "float";
|
||||
attrs2["value"] = (format("%1%") % v->fpoint).str();
|
||||
xml.writeEmptyElement("meta", attrs2);
|
||||
} else if (v->type == tBool) {
|
||||
attrs2["type"] = "bool";
|
||||
attrs2["value"] = v->boolean ? "true" : "false";
|
||||
|
|
Loading…
Reference in a new issue