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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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@ -124,7 +124,7 @@ namespace euf {
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return;
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if (!enable_cc(a, b))
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return;
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TRACE("ack", tout << "conflict eh: " << mk_pp(a, m) << " == " << mk_pp(b, m) << "\n";);
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TRACE(ack, tout << "conflict eh: " << mk_pp(a, m) << " == " << mk_pp(b, m) << "\n";);
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insert(a, b);
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gc();
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}
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@ -136,7 +136,7 @@ namespace euf {
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return;
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if (!enable_eq(a, b, c))
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return;
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TRACE("ack", tout << mk_pp(a, m) << " " << mk_pp(b, m) << " " << mk_pp(c, m) << "\n";);
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TRACE(ack, tout << mk_pp(a, m) << " " << mk_pp(b, m) << " " << mk_pp(c, m) << "\n";);
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insert(a, b, c);
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gc();
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}
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@ -144,7 +144,7 @@ namespace euf {
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void ackerman::used_cc_eh(app* a, app* b) {
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if (ctx.m_drating)
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return;
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TRACE("ack", tout << "used cc: " << mk_pp(a, m) << " == " << mk_pp(b, m) << "\n";);
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TRACE(ack, tout << "used cc: " << mk_pp(a, m) << " == " << mk_pp(b, m) << "\n";);
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SASSERT(a->get_decl() == b->get_decl());
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SASSERT(a->get_num_args() == b->get_num_args());
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if (!enable_cc(a, b))
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@ -191,7 +191,7 @@ namespace euf {
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void ackerman::add_cc(expr* _a, expr* _b) {
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app* a = to_app(_a);
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app* b = to_app(_b);
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TRACE("ack", tout << mk_pp(a, m) << " " << mk_pp(b, m) << "\n";);
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TRACE(ack, tout << mk_pp(a, m) << " " << mk_pp(b, m) << "\n";);
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sat::literal_vector lits;
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unsigned sz = a->get_num_args();
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@ -216,7 +216,7 @@ namespace euf {
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expr_ref eq1(ctx.mk_eq(a, c), m);
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expr_ref eq2(ctx.mk_eq(b, c), m);
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expr_ref eq3(ctx.mk_eq(a, b), m);
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TRACE("ack", tout << mk_pp(a, m) << " " << mk_pp(b, m) << " " << mk_pp(c, m) << "\n";);
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TRACE(ack, tout << mk_pp(a, m) << " " << mk_pp(b, m) << " " << mk_pp(c, m) << "\n";);
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lits[0] = ~ctx.mk_literal(eq1);
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lits[1] = ~ctx.mk_literal(eq2);
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lits[2] = ctx.mk_literal(eq3);
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