xo-reader2/utest/SchematikaParser.test.cpp

797 lines
28 KiB
C++

/** @file SchematikaParser.test.cpp
*
* @author Roland Conybeare, Jan 2026
**/
#include <xo/reader2/SchematikaParser.hpp>
#include <xo/reader2/DDefineSsm.hpp>
#include <xo/reader2/DExpectExprSsm.hpp>
#include <xo/reader2/ssm/ISyntaxStateMachine_DExpectExprSsm.hpp>
#include <xo/reader2/ssm/ISyntaxStateMachine_DDefineSsm.hpp>
#include <xo/reader2/init_reader2.hpp>
#include <xo/expression2/DefineExpr.hpp>
#include <xo/expression2/ApplyExpr.hpp>
#include <xo/expression2/Constant.hpp>
#include <xo/procedure2/Primitive_gco_2_gco_gco.hpp>
#include <xo/object2/Float.hpp>
#include <xo/object2/Integer.hpp>
#include <xo/object2/String.hpp>
#include <xo/alloc2/arena/IAllocator_DArena.hpp>
#include <xo/facet/TypeRegistry.hpp>
#include <catch2/catch.hpp>
namespace xo {
using xo::scm::ParserConfig;
using xo::scm::SchematikaParser;
using xo::scm::ASyntaxStateMachine;
using xo::scm::syntaxstatetype;
// using xo::scm::DDefineSsm;
using xo::scm::DExpectExprSsm;
using xo::scm::AExpression;
using xo::scm::DDefineExpr;
using xo::scm::DApplyExpr;
using xo::scm::DConstant;
//using xo::scm::ParserResult;
using xo::scm::Token;
using xo::mm::AGCObject;
using xo::scm::DPrimitive_gco_2_gco_gco;
using xo::scm::DString;
using xo::scm::DFloat;
using xo::scm::DInteger;
using xo::facet::FacetRegistry;
using xo::mm::ArenaConfig;
using xo::mm::AAllocator;
using xo::mm::DArena;
using xo::mm::MemorySizeInfo;
using xo::facet::with_facet;
static InitEvidence s_init = (InitSubsys<S_reader2_tag>::require());
namespace ut {
struct ParserFixture {
ParserFixture(const std::string & testname, bool debug_flag)
{
this->aux_arena_
= std::move(DArena(ArenaConfig()
.with_name(testname)
.with_size(4 * 1024)));
obj<AAllocator,DArena> aux_mm(&aux_arena_);
this->expr_arena_
= dp<DArena>::make(aux_mm,
(ArenaConfig()
.with_name("expr")
.with_size(16 * 1024)
.with_store_header_flag(true)));
obj<AAllocator,DArena> expr_mm(expr_arena_.data());
ParserConfig cfg;
cfg.parser_arena_config_.size_ = 16 * 1024;
/* editor bait: symbol table */
cfg.symtab_config_.hint_max_capacity_ = 128;
cfg.max_stringtable_capacity_ = 512;
cfg.debug_flag_ = false;
this->parser_
= dp<SchematikaParser>::make(aux_mm, cfg, expr_mm, aux_mm);
}
ParserFixture(const ParserFixture & other) = delete;
ParserFixture(const ParserFixture && other) = delete;
bool log_memory_layout(scope * p_log) {
using xo::facet::TypeRegistry;
using xo::mm::MemorySizeDetail;
auto visitor = [p_log](const MemorySizeInfo & info) {
*p_log && (*p_log)(xtag("name", info.resource_name_),
xtag("used", info.used_),
xtag("alloc", info.allocated_),
xtag("commit", info.committed_),
xtag("resv", info.reserved_));
if (*p_log && info.detail_) {
(*p_log)("detail",
xtag("n", (*info.detail_)[0].n_alloc_),
xtag("z", (*info.detail_)[0].z_alloc_));
for (size_t i = 1; i < info.detail_->size(); ++i) {
const MemorySizeDetail & d = (*info.detail_)[i];
if (d.tseq_.is_sentinel())
break;
(*p_log)("[",i,"]",
xtag("tseq",d.tseq_),
xtag("type", TypeRegistry::id2name(d.tseq_)),
xtag("n", d.n_alloc_),
xtag("z", d.z_alloc_));
}
}
};
aux_arena_.visit_pools(visitor);
FacetRegistry::instance().visit_pools(visitor);
expr_arena_->visit_pools(visitor);
parser_->visit_pools(visitor);
return true;
}
DArena aux_arena_;
dp<DArena> expr_arena_;
dp<SchematikaParser> parser_;
};
void
utest_tokenizer_loop(SchematikaParser * parser, std::vector<Token> & tk_v, bool debug_flag)
{
scope log(XO_DEBUG(debug_flag));
size_t i_tk = 0;
size_t n_tk = tk_v.size();
for (const auto & tk : tk_v) {
INFO(tostr(xtag("i_tk", i_tk), xtag("tk", tk)));
auto & result = parser->on_token(tk);
log && log("after token", xtag("i_tk", i_tk), xtag("tk", tk));
log && log(xtag("parser", parser));
log && log(xtag("result", result));
if (i_tk + 1 < n_tk) {
REQUIRE(parser->has_incomplete_expr() == true);
REQUIRE(!result.is_error());
REQUIRE(result.is_incomplete());
} else {
/* last token in tk_v[] */
REQUIRE(parser->has_incomplete_expr() == false);
REQUIRE(!result.is_error());
REQUIRE(result.is_expression());
REQUIRE(result.result_expr());
}
++i_tk;
}
}
TEST_CASE("SchematikaParser-ctor", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = true;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
REQUIRE(parser.debug_flag() == false);
REQUIRE(parser.is_at_toplevel() == true);
// baseline:
// SchematikaParser-ctor :used 1408
// facets-ctl :used 73 // facet hashtable
// facets-slots :used 1168 // facet hashtable
// expr :used 2056
// [1] :type xo::scm::DArray :n 1 :z 2056 // DArray of DUniqueString*
// [2] :type ? :n 1 : z 16
// strings :used 0
// stringkeys-ctl :used 0
// strinkeys-slots :used 0
// parser-arena :used 0
// global-symtab-ctl :used 0
// global-symtab-slots :used 0
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-begin-interactive",
"[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = true;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
// after begin_interactive_session, parser has toplevel exprseq
// but is still "at toplevel" in the sense of ready for input
REQUIRE(parser.has_incomplete_expr() == false);
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-begin-batch", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_batch_session();
// after begin_translation_unit, parser has toplevel exprseq
// but is still "at toplevel" in the sense of ready for input
REQUIRE(parser.has_incomplete_expr() == false);
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-batch-def", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_batch_session();
/** Walkthrough parsing input equivalent to:
*
* def foo : f64 = 3.141593 ;
*
**/
std::vector<Token> tk_v{
Token::def_token(),
Token::symbol_token("foo"),
Token::colon_token(),
Token::symbol_token("f64"),
Token::singleassign_token(),
Token::f64_token("3.141593"),
Token::semicolon_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
const auto & result = parser.result();
{
auto expr = obj<AExpression,DDefineExpr>::from(result.result_expr());
REQUIRE(expr);
}
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-integer", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* 1011 ;
*
**/
{
auto & result = parser.on_token(Token::i64_token("1011"));
log && log("after integer token:");
log && log(xtag("parser", &parser));
log && log(xtag("result", result));
REQUIRE(parser.has_incomplete_expr() == true);
REQUIRE(!result.is_error());
REQUIRE(result.is_incomplete());
}
{
auto & result = parser.on_token(Token::semicolon_token());
log && log("after semicolon token:");
log && log(xtag("parser", &parser));
log && log(xtag("result", result));
REQUIRE(parser.has_incomplete_expr() == false);
REQUIRE(!result.is_error());
REQUIRE(result.is_expression());
REQUIRE(result.result_expr());
auto expr = obj<AExpression,DConstant>::from(result.result_expr());
REQUIRE(expr);
REQUIRE(expr->value());
auto value_i64 = obj<AGCObject,DInteger>::from(expr->value());
REQUIRE(value_i64);
REQUIRE(value_i64->value() == 1011);
}
//REQUIRE(result.is_error());
//// illegal input on token
//REQUIRE(result.error_description());
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-float", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* 3.14159265 ;
*
**/
{
auto & result = parser.on_token(Token::f64_token("3.14159265"));
log && log("after float token:");
log && log(xtag("parser", &parser));
log && log(xtag("result", result));
REQUIRE(parser.has_incomplete_expr() == true);
REQUIRE(!result.is_error());
REQUIRE(result.is_incomplete());
}
{
auto & result = parser.on_token(Token::semicolon_token());
log && log("after semicolon token:");
log && log(xtag("parser", &parser));
log && log(xtag("result", result));
REQUIRE(parser.has_incomplete_expr() == false);
REQUIRE(!result.is_error());
REQUIRE(result.is_expression());
REQUIRE(result.result_expr());
auto expr = obj<AExpression,DConstant>::from(result.result_expr());
REQUIRE(expr);
REQUIRE(expr->value());
auto value_f64 = obj<AGCObject,DFloat>::from(expr->value());
REQUIRE(value_f64);
REQUIRE(value_f64->value() == 3.14159265);
}
//REQUIRE(result.is_error());
//// illegal input on token
//REQUIRE(result.error_description());
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-string", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* "hello world" ;
*
**/
{
auto & result = parser.on_token(Token::string_token("hello world"));
log && log("after string token:");
log && log(xtag("parser", &parser));
log && log(xtag("result", result));
REQUIRE(parser.has_incomplete_expr() == true);
REQUIRE(!result.is_error());
REQUIRE(result.is_incomplete());
}
{
auto & result = parser.on_token(Token::semicolon_token());
log && log("after semicolon token:");
log && log(xtag("parser", &parser));
log && log(xtag("result", result));
REQUIRE(parser.has_incomplete_expr() == false);
REQUIRE(!result.is_error());
REQUIRE(result.is_expression());
REQUIRE(result.result_expr());
auto expr = obj<AExpression,DConstant>::from(result.result_expr());
REQUIRE(expr);
REQUIRE(expr->value());
auto value_str = obj<AGCObject,DString>::from(expr->value());
REQUIRE(value_str);
REQUIRE(strcmp(value_str->chars(), "hello world") == 0);
}
//REQUIRE(result.is_error());
//// illegal input on token
//REQUIRE(result.error_description());
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-arith", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* 3.14159265 * 0.5 ;
*
**/
std::vector<Token> tk_v{
Token::f64_token("3.14159265"),
Token::star_token(),
Token::f64_token("0.5"),
Token::semicolon_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
const auto & result = parser.result();
{
auto expr = obj<AExpression,DApplyExpr>::from(result.result_expr());
REQUIRE(expr);
REQUIRE(expr->n_args() == 2);
auto fn = obj<AExpression,DConstant>::from(expr->fn());
REQUIRE(fn);
auto pm = obj<AGCObject,DPrimitive_gco_2_gco_gco>::from(fn->value());
REQUIRE(pm);
REQUIRE(pm->name() == "_mul");
auto lhs = obj<AExpression,DConstant>::from(expr->arg(0));
REQUIRE(lhs);
auto lhs_f64 = obj<AGCObject,DFloat>::from(lhs->value());
REQUIRE(lhs_f64);
REQUIRE(lhs_f64->value() == 3.14159265);
auto rhs = obj<AExpression,DConstant>::from(expr->arg(1));
REQUIRE(rhs);
auto rhs_f64 = obj<AGCObject,DFloat>::from(rhs->value());
REQUIRE(rhs_f64);
REQUIRE(rhs_f64->value() == 0.5);
}
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-cmp", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag),
xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* 312 == 312 ;
* ^ ^ ^ ^
* 0 1 2 3
**/
std::vector<Token> tk_v{
/* [0] */ Token::i64_token("312"),
/* [1] */ Token::cmpeq_token(),
/* [2] */ Token::i64_token("312"),
/* [3] */ Token::semicolon_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
const auto & result = parser.result();
{
auto expr = obj<AExpression,DApplyExpr>::from(result.result_expr());
REQUIRE(expr);
REQUIRE(expr->n_args() == 2);
auto fn = obj<AExpression,DConstant>::from(expr->fn());
REQUIRE(fn);
auto pm = obj<AGCObject,DPrimitive_gco_2_gco_gco>::from(fn->value());
REQUIRE(pm);
REQUIRE(pm->name() == "_equal");
auto lhs = obj<AExpression,DConstant>::from(expr->arg(0));
REQUIRE(lhs);
auto lhs_i64 = obj<AGCObject,DInteger>::from(lhs->value());
REQUIRE(lhs_i64);
REQUIRE(lhs_i64->value() == 312);
auto rhs = obj<AExpression,DConstant>::from(expr->arg(1));
REQUIRE(rhs);
auto rhs_i64 = obj<AGCObject,DInteger>::from(rhs->value());
REQUIRE(rhs_i64);
REQUIRE(rhs_i64->value() == 312);
}
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-lambda", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* lambda (n : i64, r : i64) -> i64 { 123 }
* ^ ^^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^
* 0 1| 3 4 5 6 7 8 9 a b c d e
* 2
**/
std::vector<Token> tk_v{
/* [ 0] */ Token::lambda_token(),
/* [ 1] */ Token::leftparen_token(),
/* [ 2] */ Token::symbol_token("n"),
/* [ 3] */ Token::colon_token(),
/* [ 4] */ Token::symbol_token("i64"),
/* [ 5] */ Token::comma_token(),
/* [ 6] */ Token::symbol_token("r"),
/* [ 7] */ Token::colon_token(),
/* [ 8] */ Token::symbol_token("i64"),
/* [ 9] */ Token::rightparen_token(),
/* [ a] */ Token::yields_token(),
/* [ b] */ Token::symbol_token("i64"),
/* [ c] */ Token::leftbrace_token(),
/* [ d] */ Token::i64_token("123"),
/* [ e] */ Token::rightbrace_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-if", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* if true then 777 else "fooey" ;
* ^ ^ ^ ^ ^ ^ ^
* 0 1 2 3 4 5 6
**/
std::vector<Token> tk_v{
/* [0] */ Token::if_token(),
/* [1] */ Token::bool_token("true"),
/* [2] */ Token::then_token(),
/* [3] */ Token::i64_token("777"),
/* [4] */ Token::else_token(),
/* [5] */ Token::string_token("fooey"),
/* [6] */ Token::semicolon_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-lambda2", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* lambda (x : i64) -> i64 { x * x }
* ^ ^^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^
* 0 1| 3 4 5 6 7 8 9 a b c
* 2
**/
std::vector<Token> tk_v{
/* [ 0] */ Token::lambda_token(),
/* [ 1] */ Token::leftparen_token(),
/* [ 2] */ Token::symbol_token("x"),
/* [ 3] */ Token::colon_token(),
/* [ 4] */ Token::symbol_token("i64"),
/* [ 5] */ Token::rightparen_token(),
/* [ 6] */ Token::yields_token(),
/* [ 7] */ Token::symbol_token("i64"),
/* [ 8] */ Token::leftbrace_token(),
/* [ 9] */ Token::symbol_token("x"),
/* [ a] */ Token::star_token(),
/* [ b] */ Token::symbol_token("x"),
/* [ c] */ Token::rightbrace_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-apply", "[reader2][SchematikaParser]")
{
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* (lambda (x : i64) { x * x })(13) ;
* ^^ ^^ ^ ^ ^ ^ ^ ^ ^ ^^^^ ^ ^
* 0| 2| 4 5 6 7 8 9 a b|d| f g
* 1 3 c e
**/
std::vector<Token> tk_v{
/* [ 0] */ Token::leftparen_token(),
/* [ 1] */ Token::lambda_token(),
/* [ 2] */ Token::leftparen_token(),
/* [ 3] */ Token::symbol_token("x"),
/* [ 4] */ Token::colon_token(),
/* [ 5] */ Token::symbol_token("i64"),
/* [ 6] */ Token::rightparen_token(),
/* [ 7] */ Token::leftbrace_token(),
/* [ 8] */ Token::symbol_token("x"),
/* [ 9] */ Token::star_token(),
/* [ a] */ Token::symbol_token("x"),
/* [ b] */ Token::rightbrace_token(),
/* [ c] */ Token::rightparen_token(),
/* [ d] */ Token::leftparen_token(),
/* [ e] */ Token::i64_token("13"),
/* [ f] */ Token::rightparen_token(),
/* [ g] */ Token::semicolon_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
log && fixture.log_memory_layout(&log);
}
TEST_CASE("SchematikaParser-interactive-apply2", "[reader2][SchematikaParser]")
{
// top-level apply, with multiple arguments
const auto & testname = Catch::getResultCapture().getCurrentTestName();
constexpr bool c_debug_flag = false;
scope log(XO_DEBUG(c_debug_flag), xtag("test", testname));
ParserFixture fixture(testname, c_debug_flag);
auto & parser = *(fixture.parser_);
parser.begin_interactive_session();
/** Walkthrough parsing input equivalent to:
*
* (lambda (x : i64, y : i64) { x * y })(13, 15) ;
* ^^ ^^ ^ ^ ^ ^^ ^ ^ ^ ^ ^ ^ ^^^^ ^ ^ ^ ^
* 0| 2| 4 5 6 7| 9 a b c d e f|h| j k l m
* 1 3 8 g i
**/
std::vector<Token> tk_v{
/* [ 0] */ Token::leftparen_token(),
/* [ 1] */ Token::lambda_token(),
/* [ 2] */ Token::leftparen_token(),
/* [ 3] */ Token::symbol_token("x"),
/* [ 4] */ Token::colon_token(),
/* [ 5] */ Token::symbol_token("i64"),
/* [ 6] */ Token::comma_token(),
/* [ 7] */ Token::symbol_token("y"),
/* [ 8] */ Token::colon_token(),
/* [ 9] */ Token::symbol_token("i64"),
/* [ a] */ Token::rightparen_token(),
/* [ b] */ Token::leftbrace_token(),
/* [ c] */ Token::symbol_token("x"),
/* [ d] */ Token::star_token(),
/* [ e] */ Token::symbol_token("y"),
/* [ f] */ Token::rightbrace_token(),
/* [ g] */ Token::rightparen_token(),
/* [ h] */ Token::leftparen_token(),
/* [ i] */ Token::i64_token("13"),
/* [ j] */ Token::comma_token(),
/* [ k] */ Token::i64_token("15"),
/* [ l] */ Token::rightparen_token(),
/* [ m] */ Token::semicolon_token(),
};
utest_tokenizer_loop(&parser, tk_v, c_debug_flag);
log && fixture.log_memory_layout(&log);
}
} /*namespace ut*/
} /*namespace xo*/
/* end SchematikaParser.test.cpp */