forked from lix-project/lix
Add ValueType checking functions for types that have the same NormalType
This commit is contained in:
parent
22ead43a0b
commit
bf98903967
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@ -32,7 +32,7 @@ LocalNoInlineNoReturn(void throwTypeError(const Pos & pos, const char * s, const
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void EvalState::forceValue(Value & v, const Pos & pos)
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void EvalState::forceValue(Value & v, const Pos & pos)
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{
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{
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if (v.type == tThunk) {
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if (v.isThunk()) {
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Env * env = v.thunk.env;
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Env * env = v.thunk.env;
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Expr * expr = v.thunk.expr;
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Expr * expr = v.thunk.expr;
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try {
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try {
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@ -46,9 +46,9 @@ void EvalState::forceValue(Value & v, const Pos & pos)
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throw;
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throw;
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}
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}
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}
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}
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else if (v.type == tApp)
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else if (v.isApp())
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callFunction(*v.app.left, *v.app.right, v, noPos);
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callFunction(*v.app.left, *v.app.right, v, noPos);
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else if (v.type == tBlackhole)
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else if (v.isBlackhole())
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throwEvalError(pos, "infinite recursion encountered");
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throwEvalError(pos, "infinite recursion encountered");
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}
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}
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@ -158,10 +158,10 @@ std::ostream & operator << (std::ostream & str, const Value & v)
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const Value *getPrimOp(const Value &v) {
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const Value *getPrimOp(const Value &v) {
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const Value * primOp = &v;
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const Value * primOp = &v;
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while (primOp->type == tPrimOpApp) {
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while (primOp->isPrimOpApp()) {
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primOp = primOp->primOpApp.left;
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primOp = primOp->primOpApp.left;
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}
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}
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assert(primOp->type == tPrimOp);
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assert(primOp->isPrimOp());
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return primOp;
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return primOp;
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}
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}
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@ -601,9 +601,9 @@ Value & EvalState::getBuiltin(const string & name)
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std::optional<EvalState::Doc> EvalState::getDoc(Value & v)
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std::optional<EvalState::Doc> EvalState::getDoc(Value & v)
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{
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{
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if (v.type == tPrimOp || v.type == tPrimOpApp) {
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if (v.isPrimOp() || v.isPrimOpApp()) {
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auto v2 = &v;
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auto v2 = &v;
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while (v2->type == tPrimOpApp)
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while (v2->isPrimOpApp())
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v2 = v2->primOpApp.left;
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v2 = v2->primOpApp.left;
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if (v2->primOp->doc)
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if (v2->primOp->doc)
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return Doc {
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return Doc {
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@ -1227,11 +1227,11 @@ void EvalState::callPrimOp(Value & fun, Value & arg, Value & v, const Pos & pos)
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/* Figure out the number of arguments still needed. */
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/* Figure out the number of arguments still needed. */
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size_t argsDone = 0;
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size_t argsDone = 0;
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Value * primOp = &fun;
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Value * primOp = &fun;
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while (primOp->type == tPrimOpApp) {
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while (primOp->isPrimOpApp()) {
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argsDone++;
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argsDone++;
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primOp = primOp->primOpApp.left;
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primOp = primOp->primOpApp.left;
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}
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}
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assert(primOp->type == tPrimOp);
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assert(primOp->isPrimOp());
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auto arity = primOp->primOp->arity;
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auto arity = primOp->primOp->arity;
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auto argsLeft = arity - argsDone;
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auto argsLeft = arity - argsDone;
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@ -1242,7 +1242,7 @@ void EvalState::callPrimOp(Value & fun, Value & arg, Value & v, const Pos & pos)
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Value * vArgs[arity];
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Value * vArgs[arity];
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auto n = arity - 1;
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auto n = arity - 1;
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vArgs[n--] = &arg;
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vArgs[n--] = &arg;
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for (Value * arg = &fun; arg->type == tPrimOpApp; arg = arg->primOpApp.left)
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for (Value * arg = &fun; arg->isPrimOpApp(); arg = arg->primOpApp.left)
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vArgs[n--] = arg->primOpApp.right;
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vArgs[n--] = arg->primOpApp.right;
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/* And call the primop. */
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/* And call the primop. */
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@ -1264,7 +1264,7 @@ void EvalState::callFunction(Value & fun, Value & arg, Value & v, const Pos & po
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forceValue(fun, pos);
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forceValue(fun, pos);
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if (fun.type == tPrimOp || fun.type == tPrimOpApp) {
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if (fun.isPrimOp() || fun.isPrimOpApp()) {
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callPrimOp(fun, arg, v, pos);
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callPrimOp(fun, arg, v, pos);
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return;
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return;
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}
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}
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@ -1285,7 +1285,7 @@ void EvalState::callFunction(Value & fun, Value & arg, Value & v, const Pos & po
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}
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}
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}
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}
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if (fun.type != tLambda)
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if (!fun.isLambda())
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throwTypeError(pos, "attempt to call something which is not a function but %1%", fun);
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throwTypeError(pos, "attempt to call something which is not a function but %1%", fun);
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ExprLambda & lambda(*fun.lambda.fun);
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ExprLambda & lambda(*fun.lambda.fun);
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@ -1378,7 +1378,7 @@ void EvalState::autoCallFunction(Bindings & args, Value & fun, Value & res)
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}
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}
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}
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}
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if (fun.type != tLambda || !fun.lambda.fun->matchAttrs) {
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if (!fun.isLambda() || !fun.lambda.fun->matchAttrs) {
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res = fun;
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res = fun;
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return;
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return;
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}
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}
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@ -73,7 +73,7 @@ static std::tuple<fetchers::Tree, FlakeRef, FlakeRef> fetchOrSubstituteTree(
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static void forceTrivialValue(EvalState & state, Value & value, const Pos & pos)
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static void forceTrivialValue(EvalState & state, Value & value, const Pos & pos)
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{
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{
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if (value.type == tThunk && value.isTrivial())
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if (value.isThunk() && value.isTrivial())
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state.forceValue(value, pos);
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state.forceValue(value, pos);
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}
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}
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@ -216,7 +216,7 @@ static Flake getFlake(
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if (auto outputs = vInfo.attrs->get(sOutputs)) {
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if (auto outputs = vInfo.attrs->get(sOutputs)) {
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expectType(state, nFunction, *outputs->value, *outputs->pos);
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expectType(state, nFunction, *outputs->value, *outputs->pos);
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if (outputs->value->type == tLambda && outputs->value->lambda.fun->matchAttrs) {
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if (outputs->value->isLambda() && outputs->value->lambda.fun->matchAttrs) {
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for (auto & formal : outputs->value->lambda.fun->formals->formals) {
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for (auto & formal : outputs->value->lambda.fun->formals->formals) {
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if (formal.name != state.sSelf)
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if (formal.name != state.sSelf)
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flake.inputs.emplace(formal.name, FlakeInput {
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flake.inputs.emplace(formal.name, FlakeInput {
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@ -2239,11 +2239,11 @@ static RegisterPrimOp primop_catAttrs({
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static void prim_functionArgs(EvalState & state, const Pos & pos, Value * * args, Value & v)
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static void prim_functionArgs(EvalState & state, const Pos & pos, Value * * args, Value & v)
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{
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{
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state.forceValue(*args[0], pos);
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state.forceValue(*args[0], pos);
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if (args[0]->type == tPrimOpApp || args[0]->type == tPrimOp) {
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if (args[0]->isPrimOpApp() || args[0]->isPrimOp()) {
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state.mkAttrs(v, 0);
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state.mkAttrs(v, 0);
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return;
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return;
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}
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}
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if (args[0]->type != tLambda)
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if (!args[0]->isLambda())
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throw TypeError({
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throw TypeError({
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.hint = hintfmt("'functionArgs' requires a function"),
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.hint = hintfmt("'functionArgs' requires a function"),
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.errPos = pos
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.errPos = pos
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@ -2674,7 +2674,7 @@ static void prim_sort(EvalState & state, const Pos & pos, Value * * args, Value
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auto comparator = [&](Value * a, Value * b) {
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auto comparator = [&](Value * a, Value * b) {
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/* Optimization: if the comparator is lessThan, bypass
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/* Optimization: if the comparator is lessThan, bypass
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callFunction. */
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callFunction. */
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if (args[0]->type == tPrimOp && args[0]->primOp->fun == prim_lessThan)
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if (args[0]->isPrimOp() && args[0]->primOp->fun == prim_lessThan)
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return CompareValues()(a, b);
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return CompareValues()(a, b);
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Value vTmp1, vTmp2;
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Value vTmp1, vTmp2;
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@ -126,6 +126,20 @@ struct Value
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inline void setExternal() { type = tExternal; };
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inline void setExternal() { type = tExternal; };
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inline void setFloat() { type = tFloat; };
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inline void setFloat() { type = tFloat; };
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// Functions needed to distinguish the type
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// These should be removed eventually, by putting the functionality that's
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// needed by callers into methods of this type
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// normalType() == nThunk
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inline bool isThunk() const { return type == tThunk; };
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inline bool isApp() const { return type == tApp; };
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inline bool isBlackhole() const { return type == tBlackhole; };
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// normalType() == nFunction
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inline bool isLambda() const { return type == tLambda; };
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inline bool isPrimOp() const { return type == tPrimOp; };
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inline bool isPrimOpApp() const { return type == tPrimOpApp; };
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union
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union
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{
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{
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NixInt integer;
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NixInt integer;
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@ -260,7 +260,7 @@ struct CmdFlakeCheck : FlakeCommand
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auto checkOverlay = [&](const std::string & attrPath, Value & v, const Pos & pos) {
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auto checkOverlay = [&](const std::string & attrPath, Value & v, const Pos & pos) {
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try {
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try {
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state->forceValue(v, pos);
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state->forceValue(v, pos);
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if (v.type != tLambda || v.lambda.fun->matchAttrs || std::string(v.lambda.fun->arg) != "final")
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if (!v.isLambda() || v.lambda.fun->matchAttrs || std::string(v.lambda.fun->arg) != "final")
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throw Error("overlay does not take an argument named 'final'");
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throw Error("overlay does not take an argument named 'final'");
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auto body = dynamic_cast<ExprLambda *>(v.lambda.fun->body);
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auto body = dynamic_cast<ExprLambda *>(v.lambda.fun->body);
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if (!body || body->matchAttrs || std::string(body->arg) != "prev")
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if (!body || body->matchAttrs || std::string(body->arg) != "prev")
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@ -276,7 +276,7 @@ struct CmdFlakeCheck : FlakeCommand
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auto checkModule = [&](const std::string & attrPath, Value & v, const Pos & pos) {
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auto checkModule = [&](const std::string & attrPath, Value & v, const Pos & pos) {
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try {
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try {
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state->forceValue(v, pos);
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state->forceValue(v, pos);
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if (v.type == tLambda) {
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if (v.isLambda()) {
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if (!v.lambda.fun->matchAttrs || !v.lambda.fun->formals->ellipsis)
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if (!v.lambda.fun->matchAttrs || !v.lambda.fun->formals->ellipsis)
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throw Error("module must match an open attribute set ('{ config, ... }')");
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throw Error("module must match an open attribute set ('{ config, ... }')");
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} else if (v.normalType() == nAttrs) {
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} else if (v.normalType() == nAttrs) {
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@ -371,7 +371,7 @@ struct CmdFlakeCheck : FlakeCommand
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auto checkBundler = [&](const std::string & attrPath, Value & v, const Pos & pos) {
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auto checkBundler = [&](const std::string & attrPath, Value & v, const Pos & pos) {
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try {
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try {
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state->forceValue(v, pos);
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state->forceValue(v, pos);
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if (v.type != tLambda)
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if (!v.isLambda())
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throw Error("bundler must be a function");
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throw Error("bundler must be a function");
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if (!v.lambda.fun->formals ||
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if (!v.lambda.fun->formals ||
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v.lambda.fun->formals->argNames.find(state->symbols.create("program")) == v.lambda.fun->formals->argNames.end() ||
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v.lambda.fun->formals->argNames.find(state->symbols.create("program")) == v.lambda.fun->formals->argNames.end() ||
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@ -272,7 +272,7 @@ void mainWrapped(int argc, char * * argv)
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auto builtins = state.baseEnv.values[0]->attrs;
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auto builtins = state.baseEnv.values[0]->attrs;
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for (auto & builtin : *builtins) {
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for (auto & builtin : *builtins) {
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auto b = nlohmann::json::object();
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auto b = nlohmann::json::object();
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if (builtin.value->type != tPrimOp) continue;
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if (!builtin.value->isPrimOp()) continue;
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auto primOp = builtin.value->primOp;
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auto primOp = builtin.value->primOp;
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if (!primOp->doc) continue;
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if (!primOp->doc) continue;
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b["arity"] = primOp->arity;
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b["arity"] = primOp->arity;
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@ -450,7 +450,7 @@ bool NixRepl::processLine(string line)
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PathSet context;
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PathSet context;
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auto filename = state->coerceToString(noPos, v, context);
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auto filename = state->coerceToString(noPos, v, context);
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pos.file = state->symbols.create(filename);
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pos.file = state->symbols.create(filename);
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} else if (v.type == tLambda) {
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} else if (v.isLambda()) {
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pos = v.lambda.fun->pos;
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pos = v.lambda.fun->pos;
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} else {
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} else {
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// assume it's a derivation
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// assume it's a derivation
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@ -760,13 +760,13 @@ std::ostream & NixRepl::printValue(std::ostream & str, Value & v, unsigned int m
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break;
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break;
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case nFunction:
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case nFunction:
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if (v.type == tLambda) {
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if (v.isLambda()) {
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std::ostringstream s;
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std::ostringstream s;
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s << v.lambda.fun->pos;
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s << v.lambda.fun->pos;
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str << ANSI_BLUE "«lambda @ " << filterANSIEscapes(s.str()) << "»" ANSI_NORMAL;
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str << ANSI_BLUE "«lambda @ " << filterANSIEscapes(s.str()) << "»" ANSI_NORMAL;
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} else if (v.type == tPrimOp) {
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} else if (v.isPrimOp()) {
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str << ANSI_MAGENTA "«primop»" ANSI_NORMAL;
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str << ANSI_MAGENTA "«primop»" ANSI_NORMAL;
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} else if (v.type == tPrimOpApp) {
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} else if (v.isPrimOpApp()) {
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str << ANSI_BLUE "«primop-app»" ANSI_NORMAL;
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str << ANSI_BLUE "«primop-app»" ANSI_NORMAL;
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} else {
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} else {
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abort();
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abort();
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