forked from lix-project/lix
Pretty-print values in the REPL
Pretty-print values in the REPL by printing each item in a list or
attrset on a separate line. When possible, single-item lists and
attrsets are printed on one line, as long as they don't contain a nested
list, attrset, or thunk.
Before:
```
{ attrs = { a = { b = { c = { }; }; }; }; list = [ 1 ]; list' = [ 1 2 3 ]; }
```
After:
```
{
attrs = {
a = {
b = {
c = { };
};
};
};
list = [ 1 ];
list' = [
1
2
3
];
}
```
(cherry picked from commit c0a15fb7d03dfb8f53bc6726c414bc88aa362592)
Change-Id: Ia2b41849165a5ddb63f7a8c272a2476b3e4292df
This commit is contained in:
parent
b221a14f0a
commit
1958152d14
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@ -98,7 +98,8 @@ struct NixRepl
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.ansiColors = true,
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.ansiColors = true,
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.force = true,
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.force = true,
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.derivationPaths = true,
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.derivationPaths = true,
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.maxDepth = maxDepth
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.maxDepth = maxDepth,
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.prettyIndent = 2
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});
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});
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}
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}
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};
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};
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@ -17,24 +17,29 @@ struct PrintOptions
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* If true, output ANSI color sequences.
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* If true, output ANSI color sequences.
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*/
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*/
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bool ansiColors = false;
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bool ansiColors = false;
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/**
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/**
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* If true, force values.
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* If true, force values.
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*/
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*/
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bool force = false;
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bool force = false;
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/**
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/**
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* If true and `force` is set, print derivations as
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* If true and `force` is set, print derivations as
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* `«derivation /nix/store/...»` instead of as attribute sets.
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* `«derivation /nix/store/...»` instead of as attribute sets.
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*/
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*/
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bool derivationPaths = false;
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bool derivationPaths = false;
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/**
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/**
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* If true, track which values have been printed and skip them on
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* If true, track which values have been printed and skip them on
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* subsequent encounters. Useful for self-referential values.
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* subsequent encounters. Useful for self-referential values.
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*/
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*/
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bool trackRepeated = true;
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bool trackRepeated = true;
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/**
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/**
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* Maximum depth to evaluate to.
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* Maximum depth to evaluate to.
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*/
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*/
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size_t maxDepth = std::numeric_limits<size_t>::max();
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size_t maxDepth = std::numeric_limits<size_t>::max();
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/**
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/**
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* Maximum number of attributes in attribute sets to print.
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* Maximum number of attributes in attribute sets to print.
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*
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*
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@ -42,6 +47,7 @@ struct PrintOptions
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* attribute set encountered.
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* attribute set encountered.
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*/
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*/
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size_t maxAttrs = std::numeric_limits<size_t>::max();
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size_t maxAttrs = std::numeric_limits<size_t>::max();
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/**
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/**
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* Maximum number of list items to print.
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* Maximum number of list items to print.
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*
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*
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@ -49,10 +55,26 @@ struct PrintOptions
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* list encountered.
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* list encountered.
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*/
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*/
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size_t maxListItems = std::numeric_limits<size_t>::max();
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size_t maxListItems = std::numeric_limits<size_t>::max();
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/**
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/**
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* Maximum string length to print.
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* Maximum string length to print.
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*/
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*/
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size_t maxStringLength = std::numeric_limits<size_t>::max();
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size_t maxStringLength = std::numeric_limits<size_t>::max();
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/**
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* Indentation width for pretty-printing.
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*
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* If set to 0 (the default), values are not pretty-printed.
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*/
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size_t prettyIndent = 0;
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/**
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* True if pretty-printing is enabled.
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*/
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inline bool prettyPrint()
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{
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return prettyIndent > 0;
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}
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};
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};
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/**
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/**
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@ -151,6 +151,7 @@ struct ImportantFirstAttrNameCmp
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};
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};
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typedef std::set<const void *> ValuesSeen;
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typedef std::set<const void *> ValuesSeen;
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typedef std::vector<std::pair<std::string, Value *>> AttrVec;
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class Printer
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class Printer
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{
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{
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std::optional<ValuesSeen> seen;
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std::optional<ValuesSeen> seen;
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size_t attrsPrinted = 0;
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size_t attrsPrinted = 0;
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size_t listItemsPrinted = 0;
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size_t listItemsPrinted = 0;
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std::string indent;
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void increaseIndent()
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{
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if (options.prettyPrint()) {
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indent.append(options.prettyIndent, ' ');
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}
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}
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void decreaseIndent()
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{
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if (options.prettyPrint()) {
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indent.resize(indent.size() - options.prettyIndent);
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}
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}
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void printRepeated()
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void printRepeated()
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{
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{
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}
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}
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}
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}
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bool shouldPrettyPrintAttrs(AttrVec & v)
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{
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if (!options.prettyPrint() || v.empty()) {
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return false;
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}
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// Pretty-print attrsets with more than one item.
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if (v.size() > 1) {
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return true;
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}
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auto item = v[0].second;
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if (!item) {
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return true;
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}
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// Pretty-print single-item attrsets only if they contain nested
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// structures.
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auto itemType = item->type();
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return itemType == nList || itemType == nAttrs || itemType == nThunk;
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}
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void printAttrs(Value & v, size_t depth)
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void printAttrs(Value & v, size_t depth)
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{
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{
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if (seen && !seen->insert(v.attrs).second) {
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if (seen && !seen->insert(v.attrs).second) {
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@ -268,9 +306,10 @@ private:
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if (options.force && options.derivationPaths && state.isDerivation(v)) {
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if (options.force && options.derivationPaths && state.isDerivation(v)) {
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printDerivation(v);
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printDerivation(v);
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} else if (depth < options.maxDepth) {
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} else if (depth < options.maxDepth) {
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increaseIndent();
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output << "{";
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output << "{";
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std::vector<std::pair<std::string, Value *>> sorted;
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AttrVec sorted;
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for (auto & i : *v.attrs)
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for (auto & i : *v.attrs)
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sorted.emplace_back(std::pair(state.symbols[i.name], i.value));
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sorted.emplace_back(std::pair(state.symbols[i.name], i.value));
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else
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else
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std::sort(sorted.begin(), sorted.end(), ImportantFirstAttrNameCmp());
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std::sort(sorted.begin(), sorted.end(), ImportantFirstAttrNameCmp());
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auto prettyPrint = shouldPrettyPrintAttrs(sorted);
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for (auto & i : sorted) {
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for (auto & i : sorted) {
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if (prettyPrint) {
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output << "\n" << indent;
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} else {
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output << " ";
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}
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if (attrsPrinted >= options.maxAttrs) {
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if (attrsPrinted >= options.maxAttrs) {
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printElided(sorted.size() - attrsPrinted, "attribute", "attributes");
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printElided(sorted.size() - attrsPrinted, "attribute", "attributes");
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break;
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break;
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@ -292,10 +339,39 @@ private:
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attrsPrinted++;
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attrsPrinted++;
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}
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}
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decreaseIndent();
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if (prettyPrint) {
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output << "\n" << indent;
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} else {
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output << " ";
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}
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output << "}";
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output << "}";
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} else
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} else {
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output << "{ ... }";
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output << "{ ... }";
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}
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}
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}
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bool shouldPrettyPrintList(std::span<Value * const> list)
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{
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if (!options.prettyPrint() || list.empty()) {
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return false;
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}
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// Pretty-print lists with more than one item.
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if (list.size() > 1) {
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return true;
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}
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auto item = list[0];
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if (!item) {
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return true;
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}
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// Pretty-print single-item lists only if they contain nested
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// structures.
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auto itemType = item->type();
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return itemType == nList || itemType == nAttrs || itemType == nThunk;
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}
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void printList(Value & v, size_t depth)
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void printList(Value & v, size_t depth)
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{
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{
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return;
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return;
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}
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}
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output << "[ ";
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if (depth < options.maxDepth) {
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if (depth < options.maxDepth) {
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for (auto elem : v.listItems()) {
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increaseIndent();
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output << "[";
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auto listItems = v.listItems();
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auto prettyPrint = shouldPrettyPrintList(listItems);
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for (auto elem : listItems) {
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if (prettyPrint) {
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output << "\n" << indent;
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} else {
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output << " ";
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}
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if (listItemsPrinted >= options.maxListItems) {
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if (listItemsPrinted >= options.maxListItems) {
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printElided(v.listSize() - listItemsPrinted, "item", "items");
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printElided(v.listSize() - listItemsPrinted, "item", "items");
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break;
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break;
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@ -317,13 +402,19 @@ private:
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} else {
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} else {
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printNullptr();
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printNullptr();
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}
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}
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output << " ";
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listItemsPrinted++;
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listItemsPrinted++;
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}
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}
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decreaseIndent();
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if (prettyPrint) {
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output << "\n" << indent;
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} else {
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output << " ";
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}
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}
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else
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output << "... ";
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output << "]";
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output << "]";
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} else {
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output << "[ ... ]";
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}
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}
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}
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void printFunction(Value & v)
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void printFunction(Value & v)
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@ -486,6 +577,7 @@ public:
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{
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{
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attrsPrinted = 0;
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attrsPrinted = 0;
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listItemsPrinted = 0;
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listItemsPrinted = 0;
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indent.clear();
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if (options.trackRepeated) {
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if (options.trackRepeated) {
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seen.emplace();
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seen.emplace();
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@ -151,29 +151,86 @@ echo "$replResult" | grepQuiet -s afterChange
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# Normal output should print attributes in lexicographical order non-recursively
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# Normal output should print attributes in lexicographical order non-recursively
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testReplResponseNoRegex '
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testReplResponseNoRegex '
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{ a = { b = 2; }; l = [ 1 2 3 ]; s = "string"; n = 1234; x = rec { y = { z = { inherit y; }; }; }; }
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{ a = { b = 2; }; l = [ 1 2 3 ]; s = "string"; n = 1234; x = rec { y = { z = { inherit y; }; }; }; }
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' '{ a = { ... }; l = [ ... ]; n = 1234; s = "string"; x = { ... }; }'
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' \
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'{
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a = { ... };
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l = [ ... ];
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n = 1234;
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s = "string";
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x = { ... };
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}
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'
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# Same for lists, but order is preserved
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# Same for lists, but order is preserved
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testReplResponseNoRegex '
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testReplResponseNoRegex '
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[ 42 1 "thingy" ({ a = 1; }) ([ 1 2 3 ]) ]
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[ 42 1 "thingy" ({ a = 1; }) ([ 1 2 3 ]) ]
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' '[ 42 1 "thingy" { ... } [ ... ] ]'
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' \
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'[
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42
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1
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"thingy"
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{ ... }
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[ ... ]
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]
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'
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# Same for let expressions
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# Same for let expressions
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testReplResponseNoRegex '
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testReplResponseNoRegex '
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let x = { y = { a = 1; }; inherit x; }; in x
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let x = { y = { a = 1; }; inherit x; }; in x
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' '{ x = «repeated»; y = { ... }; }'
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' \
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'{
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x = { ... };
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y = { ... };
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}
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'
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# The :p command should recursively print sets, but prevent infinite recursion
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# The :p command should recursively print sets, but prevent infinite recursion
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testReplResponseNoRegex '
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testReplResponseNoRegex '
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:p { a = { b = 2; }; s = "string"; n = 1234; x = rec { y = { z = { inherit y; }; }; }; }
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:p { a = { b = 2; }; s = "string"; n = 1234; x = rec { y = { z = { inherit y; }; }; }; }
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' '{ a = { b = 2; }; n = 1234; s = "string"; x = { y = { z = { y = «repeated»; }; }; }; }'
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' \
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'{
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a = { b = 2; };
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n = 1234;
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s = "string";
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x = {
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y = {
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z = {
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y = «repeated»;
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};
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};
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};
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}
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'
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# Same for lists
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# Same for lists
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testReplResponseNoRegex '
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testReplResponseNoRegex '
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:p [ 42 1 "thingy" (rec { a = 1; b = { inherit a; inherit b; }; }) ([ 1 2 3 ]) ]
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:p [ 42 1 "thingy" (rec { a = 1; b = { inherit a; inherit b; }; }) ([ 1 2 3 ]) ]
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' '[ 42 1 "thingy" { a = 1; b = { a = 1; b = «repeated»; }; } [ 1 2 3 ] ]'
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' \
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'[
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42
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1
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"thingy"
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{
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a = 1;
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b = {
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a = 1;
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b = «repeated»;
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};
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}
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[
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1
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2
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3
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]
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]
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'
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# Same for let expressions
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# Same for let expressions
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testReplResponseNoRegex '
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testReplResponseNoRegex '
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:p let x = { y = { a = 1; }; inherit x; }; in x
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:p let x = { y = { a = 1; }; inherit x; }; in x
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' '{ x = «repeated»; y = { a = 1; }; }'
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' \
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'{
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x = «repeated»;
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y = { a = 1 };
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}
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'
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