Files
klammertext/mac/argv.h
Andy Kopra 59c1599bc9 Target coverage: a klammer states the targets it serves
kdesc gains --coverage, which reports for every klammer the set of targets it
can render to, and — the point of it — which klammers' coverage cannot be
derived and must therefore be declared.  Three rules: coverage is DERIVED
where the definitions determine it (a general body of klammer calls covers
the intersection of what those klammers cover, by a greatest fixpoint after
loading), DECLARED where the engine cannot interpret what decides it (an
@eval body, whose targets are undecidable), and UNKNOWN where nothing is
written — which never means "deliberately unavailable".

Two new spellings in a definition's name.  A comma-separated target list,
"@@table.html,tex :: ...", gives one body several targets; it is surface
syntax, expanded at registration, and each member goes through the
redefinition rules on its own.  And "@@date.* :: ..." writes the general
target out, asserting that the klammer works for EVERY target including ones
not yet defined — a stronger claim than a list of the targets defined today,
and the one target declaration that could be mechanically falsified.

The Standard Klammer Set was swept accordingly: it now has no general
definitions at all, every klammer names the targets it serves, six use ".*",
and tex and pdf are at zero undecided.

kdesc's flags are reorganised on two rules: a flag reached for often gets a
single letter (-k klammers, -t targets, -c characters, -i input), a more
specialised topic a multi-letter name (--argtypes, --katoms, --rewrite,
--optionsets, --coverage, --klammerset, --font); and -v says how much to show
about PROCESSING, never what the RESULT contains — so the katom regex column
is "--katoms full" and the coverage detail "--coverage all".  NOTE: "-k" now
lists klammers (optionally filtered by a name/description search); the katom
table moved to "--katoms".

Fixes carried along: an option written with no value crashed the command with
SIGSEGV instead of reporting the mistake; two required positional arguments
never parsed; kdesc and kdiag printed an error and exited 0; and definition
diagnostics counted registrations rather than what was written, so one line
could be reported as two definitions and then printed twice.

Four new test suites: target_list, coverage, command_option, kdesc.

(from dev 46f54080bd9a)
2026-08-12 17:20:23 +02:00

129 lines
5.3 KiB
C++

#pragma once
// Delusions of generality, but it's really just for Klammertext commands.
#include <map>
#include <set>
#include <ranges>
#include <algorithm>
#include <regex>
inline std::map<std::string, std::string> regex_symbols {
{"'text'", R"((^[^-](?:\s|.)*))" },
{"'word'", R"((([^\s]+)))" },
{"'list'", R"((^[^-]?(?:\s|.)*))" },
// {"int", R"((\d))" },
// {"ints", R"((\d[ \d]*))" },
{"'verbosity'", R"(([01234]))" },
// {"targets", R"((html|tex|pdf|txt))" },
//{"'katom_display'", R"((none ?|all ?|type ?|index ?|ignored ?|replaced ?)*)" },
{"'katom_display'", R"(( *|none|all|type|index|ignored|replaced)*)" },
};
inline std::map<std::string, std::string> regex_desc {
{"'verbosity'", "Verbosity during processing (0,1,2,3,4); default is 0." }
};
std::regex make_regex(const std::string& key);
class Arg
{
public:
std::string symbol();
void make_regex(const std::string& key);
std::string m_type {};
std::string m_name {};
std::string m_pattern {};
std::string m_rgx_symbol {};
std::regex m_rgx {};
std::string m_default_value {};
std::string m_parameter {};
std::string m_syntax {};
std::string m_desc {};
std::string m_value {};
};
std::ostream& operator<<(std::ostream& os, const Arg& arg);
class Argv
{
public:
static std::string delimiter;
void flag(const std::string& name, const std::string& desc);
void req(const std::string& name, const std::string& desc, const std::string& regex_pattern="'text'");
void opt(const std::string& name, const std::string& desc="", const std::string& parameter="", const std::string& default_value="", const std::string& regex_pattern="text");
// A variadic option: --name collects every following word up to the
// next -/-- token (zero or more). get(name) returns the words
// space-joined; given(name) distinguishes "--name with no words"
// from an absent --name. Used for subcommand-style interfaces
// (kdesc --font install <dir>).
// A variadic option: the words after the flag, up to the next one.
// `parameter` is shown in the usage line as "[<parameter>]" -- an option
// whose words are a free argument (a search phrase) should name it, so
// the usage says what may follow; a subcommand-style option (--font,
// --coverage) leaves it empty and documents its words in its own help.
void var(const std::string& name, const std::string& desc,
const std::string& parameter = "");
void update_width(Arg arg);
void check_flags_and_options(const std::string& command, std::vector<std::string>& words);
void parse_flags(std::vector<std::string>& words, std::map<std::string, std::string>& named_args);
void parse_optional(std::vector<std::string>& words, std::map<std::string, std::string>& named_args);
void parse_vars(std::vector<std::string>& words, std::map<std::string, std::string>& named_args);
// True when the named variadic option appeared on the command line
// (even with no following words).
bool given(const std::string& name) { return m_given.contains(name); };
void parse_positional(
const std::string& command, // std::vector<std::string> words,
std::string pos_args, std::map<std::string, std::string>& named_args);
std::map<std::string, std::string> classify_arguments(int argc, char* argv[], bool full_parse=true);
void check_required(
const std::vector<std::string>& req_args, const std::string& command_name);
void check_flags(const std::map<std::string, std::string>& arg_map, const std::string& command_name);
void parse(int argc, char* argv[], bool full_parse=true);
std::string get(const std::string& name, bool missing_is_error=true);
bool as_bool(const std::string& name);
int as_int(const std::string& name);
int as_integer_range(const std::string& name, int low, int high);
int as_verbosity(const std::string& name);
std::string as_string(const std::string& name);
std::vector<std::string> as_vector(const std::string& name);
std::pair<std::string, std::vector<std::string>> as_input(const std::string& name, bool allow_empty=false);
void usage_line(Arg arg);
void usage(const std::string& command_name);
void describe();
// void describe(Argv original);
bool is_flag(const std::string& name) const {
return std::ranges::count(m_flag_names, name) > 0;
}
bool is_opt(const std::string& name) const {
return std::ranges::count(m_opt_names, name) > 0;
}
std::string m_command {};
std::map<std::string, Arg> m_args {};
std::vector<std::string> m_names {};
std::vector<std::string> m_req_names {};
std::vector<std::string> m_flag_names {};
std::vector<std::string> m_opt_names {};
std::vector<std::string> m_var_names {};
std::set<std::string> m_given {};
std::vector<std::string> m_hyphen_markers {};
// Original argv word boundaries for multi-word arguments (the single
// positional list and variadic --name options). as_vector() returns
// these, so a shell-quoted filename containing spaces stays one
// element; the space-joined m_value remains only for get()/describe().
std::map<std::string, std::vector<std::string>> m_vectors {};
long unsigned int m_syntax_size = 0;
};