C++ templates
SkillDev toolsUse when a C++ template error needs decoding, a template needs a concept or requires-clause instead of SFINAE, or template instantiation is slowing compilation. Not for C++20 modules: use cpp-modules.
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What this skill tells your AI
The instructions your AI receives, as published by outlinedriven/outline-driven-development in .devin/skills/cpp-templates/SKILL.md and read by ahel’s review.
Contract
| Field | Bound contract |
|---|---|
| Trigger | The user shows a long template error, asks how to constrain a template, asks SFINAE versus concepts, or reports that template-heavy translation units compile slowly. |
| Authority | Read-only. The skill emits readings, constraint rewrites, and profiling commands to chat; the user edits the code. Rollback is not needed. No remote mutation. |
| Side effect | Chat output. Profiling commands write trace files where the user runs them. |
| Done | The failing instantiation is named with the substitution that failed, the proposed constraint compiles on the user's standard, and any compile-time claim carries a measurement command. |
Inputs
- Compiler, version, and
-std=: required. Concepts need C++20; C++23 is the current standard and C++20 the floor. - The full diagnostic text: required for error reading.
- The template and one call site: required for constraint work.
- A build with
compile_commands.jsonor a single reproducing TU: required for profiling.
Procedure
-
Read the error from the bottom up. The first
error:line names the user's call; therequired from here(GCC) orin instantiation of(Clang) notes trace the chain; the last note names the type whose substitution failed. Shorten the chain with-ftemplate-backtrace-limit=N(GCC and Clang); with GCC add-fconcepts-diagnostics-depth=Nfor concept failures; with Clang add-fno-elide-typeto print full types and-fdiagnostics-show-template-treefor a tree diff of the mismatch. Done when: the failing substitution and the call site are named. -
Write the constraint with concepts when the standard is C++20 or later:
template <typename T> concept Arithmetic = std::is_arithmetic_v<T>; template <typename T> concept Container = requires(T c) { c.begin(); c.end(); c.size(); typename T::value_type; }; template <Arithmetic T> T square(T x) { return x * x; } auto square(Arithmetic auto x) { return x * x; } template <typename T> requires Arithmetic<T> && (sizeof(T) >= 4) T big_square(T x) { return x * x; }Requires-expression forms:
expr;checks validity,{ expr } -> std::same_as<U>;checks the result type,{ expr } -> std::convertible_to<U>;checks convertibility,requires Other<T>;nests a constraint. Done when: the constraint expresses the operations the body uses and nothing more. -
Recognize SFINAE in existing code and map it to a concept:
std::enable_if_t<cond, int> = 0on a parameter,-> std::enable_if_t<cond, R>on a return type, and thestd::void_t<decltype(...)>detection idiom. Replaceenable_ifwith a constraint andvoid_tdetectors with arequiresexpression. Keep SFINAE only when the standard is below C++20. Done when: each SFINAE site has its concept equivalent or a reason to keep it. -
Explain the trade-off when asked. Concepts give a named constraint failure at the call site, participate in overload ranking by subsumption, and read directly; SFINAE gives a wall of candidate notes and ranks by hand-built priority. Compile-time differences depend on the code; measure before claiming one. Done when: the comparison is stated without unmeasured speed claims.
-
Profile instantiation cost. Clang:
-ftime-tracewrites<object>.jsonper TU; aggregate a whole build withClangBuildAnalyzer --start <dir>, build,ClangBuildAnalyzer --stop <dir> capture.bin,ClangBuildAnalyzer --analyze capture.bin, which lists the templates and template sets that took longest to instantiate. Templight, a Clang-based drop-in, traces every instantiation:templight++ -Xtemplight -profiler -Xtemplight -memory -Xtemplight -ignore-system -c src.cppwritessrc.o.trace.pbf; it must be built from source with Clang. Done when: a measurement names the top instantiations. -
Reduce the measured cost with the pattern that fits: explicit instantiation (
extern template int f<int>(int);in the header,template int f<int>(int);in one TU);if constexprin place of specialization; a constraint that rejects early instead of a deep substitution failure; splitting heavy template implementations into a header included only where needed. Done when: each proposed change is tied to an instantiation the profile named. -
Confirm the rewrite compiles on the user's compiler and standard with a scratch TU before reporting. Done when: the scratch build passes.
Failure and recovery
| Failure class | Behavior |
|---|---|
| Standard below C++20 | Concepts unavailable; keep SFINAE and shorten diagnostics with the backtrace flags. |
| Diagnostic truncated by the user | Ask for the full output or reproduce it; do not guess the failing type. |
| ClangBuildAnalyzer or Templight absent | Fall back to per-TU -ftime-trace and read the JSON with a trace viewer. |
| Slowness is not instantiation | If the profile names headers or codegen, redirect: caching and PCH belong to build-acceleration. |
| Coroutine template question | C++20 coroutines: use cpp-coroutines. |
Output
A chat report naming the failing instantiation and its cause, the constraint rewrite that compiled on a scratch TU, and, when compile time was the complaint, the measurement command and the instantiations it named with the matching reduction.
Signals
- GitHub stars
- 52
- Forks
- 9
- Last commit
- Sep 2026
Advanced
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cpp-templates- Source
- github.com/outlinedriven/outline-driven-development