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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).
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583 changed files with 8698 additions and 7299 deletions
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@ -125,7 +125,7 @@ namespace bv {
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if (sign && !b.negate(b))
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return false;
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TRACE("bv", tout << (sign?"(not ":"") << mk_pp(t, m) << (sign ? ")" : "") << ": " << mk_pp(t1, m) << " in " << b << "\n";);
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TRACE(bv, tout << (sign?"(not ":"") << mk_pp(t, m) << (sign ? ")" : "") << ": " << mk_pp(t1, m) << " in " << b << "\n";);
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map::obj_map_entry* e = m_bound.find_core(t1);
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if (e) {
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interval& old = e->get_data().m_value;
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@ -202,7 +202,7 @@ namespace bv {
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if (simplified) {
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result = m.mk_app(to_app(t)->get_decl(), m_args);
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TRACE("bv", tout << mk_pp(t, m) << " -> " << result << "\n");
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TRACE(bv, tout << mk_pp(t, m) << " -> " << result << "\n");
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return true;
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}
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@ -255,10 +255,10 @@ namespace bv {
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else if (false && intr != b)
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result = mk_bound(t1, intr.lo(), intr.hi());
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else {
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TRACE("bv", tout << mk_pp(t, m) << " b: " << b << " ctx: " << ctx << " intr " << intr << "\n");
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TRACE(bv, tout << mk_pp(t, m) << " b: " << b << " ctx: " << ctx << " intr " << intr << "\n");
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}
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CTRACE("bv", result, tout << mk_pp(t, m) << " " << b << " (ctx: " << ctx << ") (intr: " << intr << "): " << result << "\n";);
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CTRACE(bv, result, tout << mk_pp(t, m) << " " << b << " (ctx: " << ctx << ") (intr: " << intr << "): " << result << "\n";);
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if (sign && result)
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result = m.mk_not(result);
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return result != nullptr;
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@ -325,7 +325,7 @@ namespace bv {
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}
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void pop_core(unsigned num_scopes) {
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TRACE("bv", tout << "pop: " << num_scopes << "\n";);
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TRACE(bv, tout << "pop: " << num_scopes << "\n";);
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if (m_scopes.empty())
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return;
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unsigned target = m_scopes.size() - num_scopes;
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