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Centralize and document TRACE tags using X-macros (#7657)

* Introduce X-macro-based trace tag definition
- Created trace_tags.def to centralize TRACE tag definitions
- Each tag includes a symbolic name and description
- Set up enum class TraceTag for type-safe usage in TRACE macros

* Add script to generate Markdown documentation from trace_tags.def
- Python script parses trace_tags.def and outputs trace_tags.md

* Refactor TRACE_NEW to prepend TraceTag and pass enum to is_trace_enabled

* trace: improve trace tag handling system with hierarchical tagging

- Introduce hierarchical tag-class structure: enabling a tag class activates all child tags
- Unify TRACE, STRACE, SCTRACE, and CTRACE under enum TraceTag
- Implement initial version of trace_tag.def using X(tag, tag_class, description)
  (class names and descriptions to be refined in a future update)

* trace: replace all string-based TRACE tags with enum TraceTag
- Migrated all TRACE, STRACE, SCTRACE, and CTRACE macros to use enum TraceTag values instead of raw string literals

* trace : add cstring header

* trace : Add Markdown documentation generation from trace_tags.def via mk_api_doc.py

* trace : rename macro parameter 'class' to 'tag_class' and remove Unicode comment in trace_tags.h.

* trace : Add TODO comment for future implementation of tag_class activation

* trace : Disable code related to tag_class until implementation is ready (#7663).
This commit is contained in:
LeeYoungJoon 2025-05-28 22:31:25 +09:00 committed by GitHub
parent d766292dab
commit 0a93ff515d
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GPG key ID: B5690EEEBB952194
583 changed files with 8698 additions and 7299 deletions

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@ -96,7 +96,7 @@ namespace smt {
else {
result = m_th.u().mk_numeral(0, s);
}
TRACE("theory_dl", tout << mk_pp(result, m_th.m()) << "\n";);
TRACE(theory_dl, tout << mk_pp(result, m_th.m()) << "\n";);
return result;
}
};
@ -114,7 +114,7 @@ namespace smt {
char const * get_name() const override { return "datalog"; }
bool internalize_atom(app * atom, bool gate_ctx) override {
TRACE("theory_dl", tout << mk_pp(atom, m()) << "\n";);
TRACE(theory_dl, tout << mk_pp(atom, m()) << "\n";);
if (ctx.b_internalized(atom)) {
return true;
}
@ -136,7 +136,7 @@ namespace smt {
}
bool internalize_term(app * term) override {
TRACE("theory_dl", tout << mk_pp(term, m()) << "\n";);
TRACE(theory_dl, tout << mk_pp(term, m()) << "\n";);
if (u().is_finite_sort(term)) {
return mk_rep(term);
}
@ -229,7 +229,7 @@ namespace smt {
if (is_attached_to_var(e)) {
return false;
}
TRACE("theory_dl", tout << mk_pp(n, m()) << "\n";);
TRACE(theory_dl, tout << mk_pp(n, m()) << "\n";);
theory_var var = mk_var(e);
ctx.attach_th_var(e, this, var);
return true;
@ -272,7 +272,7 @@ namespace smt {
}
void assert_cnstr(expr* e) {
TRACE("theory_dl", tout << mk_pp(e, m()) << "\n";);
TRACE(theory_dl, tout << mk_pp(e, m()) << "\n";);
if (m().has_trace_stream()) log_axiom_instantiation(e);
ctx.internalize(e, false);
if (m().has_trace_stream()) m().trace_stream() << "[end-of-instance]\n";