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lib/debug: document module & functions, prune imports
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lib/debug.nix
120
lib/debug.nix
@ -1,28 +1,67 @@
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/* Collection of functions useful for debugging
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broken nix expressions.
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* `trace`-like functions take two values, print
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the first to stderr and return the second.
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* `traceVal`-like functions take one argument
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which both printed and returned.
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* `traceSeq`-like functions fully evaluate their
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traced value before printing (not just to “weak
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head normal form” like trace does by default).
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* Functions that end in `-Fn` take an additional
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function as their first argument, which is applied
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to the traced value before it is printed.
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*/
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{ lib }:
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let
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inherit (builtins) trace attrNamesToStr isAttrs isList isInt
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isString isBool head substring attrNames;
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inherit (lib) all id mapAttrsFlatten elem isFunction;
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inherit (builtins) trace isAttrs isList isInt
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head substring attrNames;
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inherit (lib) id elem isFunction;
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in
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rec {
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traceIf = p: msg: x: if p then trace msg x else x;
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# -- TRACING --
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/* Trace msg, but only if pred is true.
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Example:
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traceIf true "hello" 3
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trace: hello
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=> 3
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*/
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traceIf = pred: msg: x: if pred then trace msg x else x;
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/* Trace the value and also return it.
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Example:
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traceValFn (v: "mystring ${v}") "foo"
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trace: mystring foo
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=> "foo"
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*/
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traceValFn = f: x: trace (f x) x;
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traceVal = traceValFn id;
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# strict trace functions (traced structure is fully evaluated and printed)
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/* `builtins.trace`, but the value is `builtins.deepSeq`ed first. */
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/* `builtins.trace`, but the value is `builtins.deepSeq`ed first.
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Example:
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trace { a.b.c = 3; } null
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trace: { a = <CODE>; }
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=> null
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traceSeq { a.b.c = 3; } null
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trace: { a = { b = { c = 3; }; }; }
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=> null
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*/
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traceSeq = x: y: trace (builtins.deepSeq x x) y;
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/* Like `traceSeq`, but only down to depth n.
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* This is very useful because lots of `traceSeq` usages
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* lead to an infinite recursion.
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/* Like `traceSeq`, but only evaluate down to depth n.
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This is very useful because lots of `traceSeq` usages
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lead to an infinite recursion.
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Example:
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traceSeqN 2 { a.b.c = 3; } null
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trace: { a = { b = {…}; }; }
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=> null
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*/
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traceSeqN = depth: x: y: with lib;
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let snip = v: if isList v then noQuotes "[…]" v
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@ -37,15 +76,42 @@ rec {
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in trace (generators.toPretty { allowPrettyValues = true; }
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(modify depth snip x)) y;
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/* `traceSeq`, but the same value is traced and returned */
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/* A combination of `traceVal` and `traceSeq` */
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traceValSeqFn = f: v: traceVal f (builtins.deepSeq v v);
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traceValSeq = traceValSeqFn id;
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/* `traceValSeq` but with fixed depth */
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/* A combination of `traceVal` and `traceSeqN`. */
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traceValSeqNFn = f: depth: v: traceSeqN depth (f v) v;
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traceValSeqN = traceValSeqNFn id;
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# this can help debug your code as well - designed to not produce thousands of lines
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# -- TESTING --
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/* Evaluate a set of tests. A test is an attribute set {expr,
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expected}, denoting an expression and its expected result. The
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result is a list of failed tests, each represented as {name,
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expected, actual}, denoting the attribute name of the failing
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test and its expected and actual results. Used for regression
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testing of the functions in lib; see tests.nix for an example.
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Only tests having names starting with "test" are run.
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Add attr { tests = ["testName"]; } to run these test only
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*/
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runTests = tests: lib.concatLists (lib.attrValues (lib.mapAttrs (name: test:
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let testsToRun = if tests ? tests then tests.tests else [];
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in if (substring 0 4 name == "test" || elem name testsToRun)
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&& ((testsToRun == []) || elem name tests.tests)
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&& (test.expr != test.expected)
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then [ { inherit name; expected = test.expected; result = test.expr; } ]
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else [] ) tests));
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# create a test assuming that list elements are true
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# usage: { testX = allTrue [ true ]; }
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testAllTrue = expr: { inherit expr; expected = map (x: true) expr; };
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# -- DEPRECATED --
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traceShowVal = x: trace (showVal x) x;
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traceShowValMarked = str: x: trace (str + showVal x) x;
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@ -100,28 +166,6 @@ rec {
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+ "and will be removed in the next release." )
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(lib.mapAttrs (a: v: lib.addErrorContext "while evaluating ${a}" v) attrs);
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/* Evaluate a set of tests. A test is an attribute set {expr,
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expected}, denoting an expression and its expected result. The
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result is a list of failed tests, each represented as {name,
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expected, actual}, denoting the attribute name of the failing
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test and its expected and actual results. Used for regression
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testing of the functions in lib; see tests.nix for an example.
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Only tests having names starting with "test" are run.
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Add attr { tests = ["testName"]; } to run these test only
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*/
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runTests = tests: lib.concatLists (lib.attrValues (lib.mapAttrs (name: test:
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let testsToRun = if tests ? tests then tests.tests else [];
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in if (substring 0 4 name == "test" || elem name testsToRun)
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&& ((testsToRun == []) || elem name tests.tests)
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&& (test.expr != test.expected)
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then [ { inherit name; expected = test.expected; result = test.expr; } ]
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else [] ) tests));
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# create a test assuming that list elements are true
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# usage: { testX = allTrue [ true ]; }
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testAllTrue = expr: { inherit expr; expected = map (x: true) expr; };
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# example: (traceCallXml "myfun" id 3) will output something like
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# calling myfun arg 1: 3 result: 3
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# this forces deep evaluation of all arguments and the result!
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