mirror of
https://gitcode.com/JianFeeeee/LuaCangjia_api.git
synced 2026-09-21 17:38:12 +00:00
feat: 适配 Lua 5.1.5 (lua_5.1.5 分支)
- lib/lua 替换为 Lua 5.1.5 官方源码; CMakeLists 删除 5.1 不存在的 lcorolib.c/lctype.c/lutf8lib.c/lbitlib.c - 补充 lua.hpp C++ 包装头(5.1 官方不提供, 保持桥接 include 路径不变) - LUA_OK 兼容宏: 5.1 无此定义(成功返回值为 0) - luaL_tolstring 兼容: 5.1 无此 API, l_print 改用 lua_tostring + lua_typename 兜底(#if LUA_VERSION_NUM >= 502 条件编译, 弹栈逻辑同步分支) - luaL_setfuncs 兼容: 5.1 无此 API, push_tty_file 改手动循环注册 - I/O 重定向沿用 Registry 方案(自 5.2.4 分支同步), typed interop 版本自适应断言同步 - 验证: GTest 44/44 通过
This commit is contained in:
534
lib/lua/llex.c
Executable file → Normal file
534
lib/lua/llex.c
Executable file → Normal file
@ -1,24 +1,20 @@
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||||
/*
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||||
** $Id: llex.c $
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** $Id: llex.c,v 2.20.1.2 2009/11/23 14:58:22 roberto Exp $
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** Lexical Analyzer
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** See Copyright Notice in lua.h
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*/
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#define llex_c
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#define LUA_CORE
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#include "lprefix.h"
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#include <ctype.h>
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#include <locale.h>
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#include <string.h>
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#define llex_c
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#define LUA_CORE
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#include "lua.h"
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#include "lctype.h"
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#include "ldebug.h"
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#include "ldo.h"
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#include "lgc.h"
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#include "llex.h"
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#include "lobject.h"
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#include "lparser.h"
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@ -29,7 +25,8 @@
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#define next(ls) (ls->current = zgetc(ls->z))
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#define next(ls) (ls->current = zgetc(ls->z))
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@ -37,146 +34,120 @@
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/* ORDER RESERVED */
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static const char *const luaX_tokens [] = {
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const char *const luaX_tokens [] = {
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"and", "break", "do", "else", "elseif",
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"end", "false", "for", "function", "goto", "if",
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"end", "false", "for", "function", "if",
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"in", "local", "nil", "not", "or", "repeat",
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"return", "then", "true", "until", "while",
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"//", "..", "...", "==", ">=", "<=", "~=",
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"<<", ">>", "::", "<eof>",
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"<number>", "<integer>", "<name>", "<string>"
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"..", "...", "==", ">=", "<=", "~=",
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"<number>", "<name>", "<string>", "<eof>",
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NULL
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};
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#define save_and_next(ls) (save(ls, ls->current), next(ls))
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static l_noret lexerror (LexState *ls, const char *msg, int token);
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static void save (LexState *ls, int c) {
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Mbuffer *b = ls->buff;
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if (luaZ_bufflen(b) + 1 > luaZ_sizebuffer(b)) {
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if (b->n + 1 > b->buffsize) {
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size_t newsize;
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if (luaZ_sizebuffer(b) >= MAX_SIZE/2)
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lexerror(ls, "lexical element too long", 0);
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newsize = luaZ_sizebuffer(b) * 2;
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if (b->buffsize >= MAX_SIZET/2)
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luaX_lexerror(ls, "lexical element too long", 0);
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newsize = b->buffsize * 2;
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luaZ_resizebuffer(ls->L, b, newsize);
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}
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b->buffer[luaZ_bufflen(b)++] = cast_char(c);
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b->buffer[b->n++] = cast(char, c);
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}
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void luaX_init (lua_State *L) {
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int i;
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TString *e = luaS_newliteral(L, LUA_ENV); /* create env name */
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luaC_fix(L, obj2gco(e)); /* never collect this name */
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for (i=0; i<NUM_RESERVED; i++) {
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TString *ts = luaS_new(L, luaX_tokens[i]);
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luaC_fix(L, obj2gco(ts)); /* reserved words are never collected */
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ts->extra = cast_byte(i+1); /* reserved word */
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luaS_fix(ts); /* reserved words are never collected */
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lua_assert(strlen(luaX_tokens[i])+1 <= TOKEN_LEN);
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ts->tsv.reserved = cast_byte(i+1); /* reserved word */
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}
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}
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#define MAXSRC 80
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const char *luaX_token2str (LexState *ls, int token) {
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if (token < FIRST_RESERVED) { /* single-byte symbols? */
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if (lisprint(token))
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return luaO_pushfstring(ls->L, "'%c'", token);
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else /* control character */
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return luaO_pushfstring(ls->L, "'<\\%d>'", token);
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}
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else {
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const char *s = luaX_tokens[token - FIRST_RESERVED];
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if (token < TK_EOS) /* fixed format (symbols and reserved words)? */
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return luaO_pushfstring(ls->L, "'%s'", s);
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else /* names, strings, and numerals */
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return s;
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if (token < FIRST_RESERVED) {
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lua_assert(token == cast(unsigned char, token));
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return (iscntrl(token)) ? luaO_pushfstring(ls->L, "char(%d)", token) :
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luaO_pushfstring(ls->L, "%c", token);
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}
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else
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return luaX_tokens[token-FIRST_RESERVED];
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}
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static const char *txtToken (LexState *ls, int token) {
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switch (token) {
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case TK_NAME: case TK_STRING:
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case TK_FLT: case TK_INT:
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case TK_NAME:
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case TK_STRING:
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case TK_NUMBER:
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save(ls, '\0');
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return luaO_pushfstring(ls->L, "'%s'", luaZ_buffer(ls->buff));
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return luaZ_buffer(ls->buff);
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default:
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return luaX_token2str(ls, token);
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}
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}
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static l_noret lexerror (LexState *ls, const char *msg, int token) {
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msg = luaG_addinfo(ls->L, msg, ls->source, ls->linenumber);
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void luaX_lexerror (LexState *ls, const char *msg, int token) {
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char buff[MAXSRC];
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luaO_chunkid(buff, getstr(ls->source), MAXSRC);
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msg = luaO_pushfstring(ls->L, "%s:%d: %s", buff, ls->linenumber, msg);
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if (token)
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luaO_pushfstring(ls->L, "%s near %s", msg, txtToken(ls, token));
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luaO_pushfstring(ls->L, "%s near " LUA_QS, msg, txtToken(ls, token));
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luaD_throw(ls->L, LUA_ERRSYNTAX);
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}
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l_noret luaX_syntaxerror (LexState *ls, const char *msg) {
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lexerror(ls, msg, ls->t.token);
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void luaX_syntaxerror (LexState *ls, const char *msg) {
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luaX_lexerror(ls, msg, ls->t.token);
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}
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||||
/*
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** Creates a new string and anchors it in scanner's table so that it
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** will not be collected until the end of the compilation; by that time
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** it should be anchored somewhere. It also internalizes long strings,
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** ensuring there is only one copy of each unique string. The table
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** here is used as a set: the string enters as the key, while its value
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** is irrelevant. We use the string itself as the value only because it
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** is a TValue readily available. Later, the code generation can change
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** this value.
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*/
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TString *luaX_newstring (LexState *ls, const char *str, size_t l) {
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lua_State *L = ls->L;
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TString *ts = luaS_newlstr(L, str, l); /* create new string */
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const TValue *o = luaH_getstr(ls->h, ts);
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if (!ttisnil(o)) /* string already present? */
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ts = keystrval(nodefromval(o)); /* get saved copy */
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else { /* not in use yet */
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TValue *stv = s2v(L->top.p++); /* reserve stack space for string */
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setsvalue(L, stv, ts); /* temporarily anchor the string */
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luaH_finishset(L, ls->h, stv, o, stv); /* t[string] = string */
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/* table is not a metatable, so it does not need to invalidate cache */
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TString *ts = luaS_newlstr(L, str, l);
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TValue *o = luaH_setstr(L, ls->fs->h, ts); /* entry for `str' */
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if (ttisnil(o)) {
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setbvalue(o, 1); /* make sure `str' will not be collected */
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luaC_checkGC(L);
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L->top.p--; /* remove string from stack */
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}
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return ts;
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}
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||||
/*
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** increment line number and skips newline sequence (any of
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** \n, \r, \n\r, or \r\n)
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*/
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static void inclinenumber (LexState *ls) {
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int old = ls->current;
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lua_assert(currIsNewline(ls));
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next(ls); /* skip '\n' or '\r' */
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next(ls); /* skip `\n' or `\r' */
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if (currIsNewline(ls) && ls->current != old)
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next(ls); /* skip '\n\r' or '\r\n' */
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next(ls); /* skip `\n\r' or `\r\n' */
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if (++ls->linenumber >= MAX_INT)
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lexerror(ls, "chunk has too many lines", 0);
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luaX_syntaxerror(ls, "chunk has too many lines");
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}
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void luaX_setinput (lua_State *L, LexState *ls, ZIO *z, TString *source,
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int firstchar) {
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ls->t.token = 0;
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void luaX_setinput (lua_State *L, LexState *ls, ZIO *z, TString *source) {
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ls->decpoint = '.';
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ls->L = L;
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ls->current = firstchar;
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ls->lookahead.token = TK_EOS; /* no look-ahead token */
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ls->z = z;
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ls->fs = NULL;
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ls->linenumber = 1;
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ls->lastline = 1;
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ls->source = source;
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ls->envn = luaS_newliteral(L, LUA_ENV); /* get env name */
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luaZ_resizebuffer(ls->L, ls->buff, LUA_MINBUFFER); /* initialize buffer */
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next(ls); /* read first char */
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}
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@ -188,82 +159,56 @@ void luaX_setinput (lua_State *L, LexState *ls, ZIO *z, TString *source,
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*/
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static int check_next1 (LexState *ls, int c) {
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if (ls->current == c) {
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next(ls);
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return 1;
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}
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else return 0;
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static int check_next (LexState *ls, const char *set) {
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if (!strchr(set, ls->current))
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return 0;
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save_and_next(ls);
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return 1;
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}
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/*
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||||
** Check whether current char is in set 'set' (with two chars) and
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||||
** saves it
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*/
|
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static int check_next2 (LexState *ls, const char *set) {
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lua_assert(set[2] == '\0');
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if (ls->current == set[0] || ls->current == set[1]) {
|
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save_and_next(ls);
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return 1;
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static void buffreplace (LexState *ls, char from, char to) {
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size_t n = luaZ_bufflen(ls->buff);
|
||||
char *p = luaZ_buffer(ls->buff);
|
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while (n--)
|
||||
if (p[n] == from) p[n] = to;
|
||||
}
|
||||
|
||||
|
||||
static void trydecpoint (LexState *ls, SemInfo *seminfo) {
|
||||
/* format error: try to update decimal point separator */
|
||||
struct lconv *cv = localeconv();
|
||||
char old = ls->decpoint;
|
||||
ls->decpoint = (cv ? cv->decimal_point[0] : '.');
|
||||
buffreplace(ls, old, ls->decpoint); /* try updated decimal separator */
|
||||
if (!luaO_str2d(luaZ_buffer(ls->buff), &seminfo->r)) {
|
||||
/* format error with correct decimal point: no more options */
|
||||
buffreplace(ls, ls->decpoint, '.'); /* undo change (for error message) */
|
||||
luaX_lexerror(ls, "malformed number", TK_NUMBER);
|
||||
}
|
||||
else return 0;
|
||||
}
|
||||
|
||||
|
||||
/* LUA_NUMBER */
|
||||
/*
|
||||
** This function is quite liberal in what it accepts, as 'luaO_str2num'
|
||||
** will reject ill-formed numerals. Roughly, it accepts the following
|
||||
** pattern:
|
||||
**
|
||||
** %d(%x|%.|([Ee][+-]?))* | 0[Xx](%x|%.|([Pp][+-]?))*
|
||||
**
|
||||
** The only tricky part is to accept [+-] only after a valid exponent
|
||||
** mark, to avoid reading '3-4' or '0xe+1' as a single number.
|
||||
**
|
||||
** The caller might have already read an initial dot.
|
||||
*/
|
||||
static int read_numeral (LexState *ls, SemInfo *seminfo) {
|
||||
TValue obj;
|
||||
const char *expo = "Ee";
|
||||
int first = ls->current;
|
||||
lua_assert(lisdigit(ls->current));
|
||||
save_and_next(ls);
|
||||
if (first == '0' && check_next2(ls, "xX")) /* hexadecimal? */
|
||||
expo = "Pp";
|
||||
for (;;) {
|
||||
if (check_next2(ls, expo)) /* exponent mark? */
|
||||
check_next2(ls, "-+"); /* optional exponent sign */
|
||||
else if (lisxdigit(ls->current) || ls->current == '.') /* '%x|%.' */
|
||||
save_and_next(ls);
|
||||
else break;
|
||||
}
|
||||
if (lislalpha(ls->current)) /* is numeral touching a letter? */
|
||||
save_and_next(ls); /* force an error */
|
||||
static void read_numeral (LexState *ls, SemInfo *seminfo) {
|
||||
lua_assert(isdigit(ls->current));
|
||||
do {
|
||||
save_and_next(ls);
|
||||
} while (isdigit(ls->current) || ls->current == '.');
|
||||
if (check_next(ls, "Ee")) /* `E'? */
|
||||
check_next(ls, "+-"); /* optional exponent sign */
|
||||
while (isalnum(ls->current) || ls->current == '_')
|
||||
save_and_next(ls);
|
||||
save(ls, '\0');
|
||||
if (luaO_str2num(luaZ_buffer(ls->buff), &obj) == 0) /* format error? */
|
||||
lexerror(ls, "malformed number", TK_FLT);
|
||||
if (ttisinteger(&obj)) {
|
||||
seminfo->i = ivalue(&obj);
|
||||
return TK_INT;
|
||||
}
|
||||
else {
|
||||
lua_assert(ttisfloat(&obj));
|
||||
seminfo->r = fltvalue(&obj);
|
||||
return TK_FLT;
|
||||
}
|
||||
buffreplace(ls, '.', ls->decpoint); /* follow locale for decimal point */
|
||||
if (!luaO_str2d(luaZ_buffer(ls->buff), &seminfo->r)) /* format error? */
|
||||
trydecpoint(ls, seminfo); /* try to update decimal point separator */
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
** read a sequence '[=*[' or ']=*]', leaving the last bracket. If
|
||||
** sequence is well formed, return its number of '='s + 2; otherwise,
|
||||
** return 1 if it is a single bracket (no '='s and no 2nd bracket);
|
||||
** otherwise (an unfinished '[==...') return 0.
|
||||
*/
|
||||
static size_t skip_sep (LexState *ls) {
|
||||
size_t count = 0;
|
||||
static int skip_sep (LexState *ls) {
|
||||
int count = 0;
|
||||
int s = ls->current;
|
||||
lua_assert(s == '[' || s == ']');
|
||||
save_and_next(ls);
|
||||
@ -271,34 +216,48 @@ static size_t skip_sep (LexState *ls) {
|
||||
save_and_next(ls);
|
||||
count++;
|
||||
}
|
||||
return (ls->current == s) ? count + 2
|
||||
: (count == 0) ? 1
|
||||
: 0;
|
||||
return (ls->current == s) ? count : (-count) - 1;
|
||||
}
|
||||
|
||||
|
||||
static void read_long_string (LexState *ls, SemInfo *seminfo, size_t sep) {
|
||||
int line = ls->linenumber; /* initial line (for error message) */
|
||||
save_and_next(ls); /* skip 2nd '[' */
|
||||
static void read_long_string (LexState *ls, SemInfo *seminfo, int sep) {
|
||||
int cont = 0;
|
||||
(void)(cont); /* avoid warnings when `cont' is not used */
|
||||
save_and_next(ls); /* skip 2nd `[' */
|
||||
if (currIsNewline(ls)) /* string starts with a newline? */
|
||||
inclinenumber(ls); /* skip it */
|
||||
for (;;) {
|
||||
switch (ls->current) {
|
||||
case EOZ: { /* error */
|
||||
const char *what = (seminfo ? "string" : "comment");
|
||||
const char *msg = luaO_pushfstring(ls->L,
|
||||
"unfinished long %s (starting at line %d)", what, line);
|
||||
lexerror(ls, msg, TK_EOS);
|
||||
case EOZ:
|
||||
luaX_lexerror(ls, (seminfo) ? "unfinished long string" :
|
||||
"unfinished long comment", TK_EOS);
|
||||
break; /* to avoid warnings */
|
||||
#if defined(LUA_COMPAT_LSTR)
|
||||
case '[': {
|
||||
if (skip_sep(ls) == sep) {
|
||||
save_and_next(ls); /* skip 2nd `[' */
|
||||
cont++;
|
||||
#if LUA_COMPAT_LSTR == 1
|
||||
if (sep == 0)
|
||||
luaX_lexerror(ls, "nesting of [[...]] is deprecated", '[');
|
||||
#endif
|
||||
}
|
||||
break;
|
||||
}
|
||||
#endif
|
||||
case ']': {
|
||||
if (skip_sep(ls) == sep) {
|
||||
save_and_next(ls); /* skip 2nd ']' */
|
||||
save_and_next(ls); /* skip 2nd `]' */
|
||||
#if defined(LUA_COMPAT_LSTR) && LUA_COMPAT_LSTR == 2
|
||||
cont--;
|
||||
if (sep == 0 && cont >= 0) break;
|
||||
#endif
|
||||
goto endloop;
|
||||
}
|
||||
break;
|
||||
}
|
||||
case '\n': case '\r': {
|
||||
case '\n':
|
||||
case '\r': {
|
||||
save(ls, '\n');
|
||||
inclinenumber(ls);
|
||||
if (!seminfo) luaZ_resetbuffer(ls->buff); /* avoid wasting space */
|
||||
@ -311,126 +270,56 @@ static void read_long_string (LexState *ls, SemInfo *seminfo, size_t sep) {
|
||||
}
|
||||
} endloop:
|
||||
if (seminfo)
|
||||
seminfo->ts = luaX_newstring(ls, luaZ_buffer(ls->buff) + sep,
|
||||
luaZ_bufflen(ls->buff) - 2 * sep);
|
||||
}
|
||||
|
||||
|
||||
static void esccheck (LexState *ls, int c, const char *msg) {
|
||||
if (!c) {
|
||||
if (ls->current != EOZ)
|
||||
save_and_next(ls); /* add current to buffer for error message */
|
||||
lexerror(ls, msg, TK_STRING);
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
static int gethexa (LexState *ls) {
|
||||
save_and_next(ls);
|
||||
esccheck (ls, lisxdigit(ls->current), "hexadecimal digit expected");
|
||||
return luaO_hexavalue(ls->current);
|
||||
}
|
||||
|
||||
|
||||
static int readhexaesc (LexState *ls) {
|
||||
int r = gethexa(ls);
|
||||
r = (r << 4) + gethexa(ls);
|
||||
luaZ_buffremove(ls->buff, 2); /* remove saved chars from buffer */
|
||||
return r;
|
||||
}
|
||||
|
||||
|
||||
static unsigned long readutf8esc (LexState *ls) {
|
||||
unsigned long r;
|
||||
int i = 4; /* chars to be removed: '\', 'u', '{', and first digit */
|
||||
save_and_next(ls); /* skip 'u' */
|
||||
esccheck(ls, ls->current == '{', "missing '{'");
|
||||
r = gethexa(ls); /* must have at least one digit */
|
||||
while (cast_void(save_and_next(ls)), lisxdigit(ls->current)) {
|
||||
i++;
|
||||
esccheck(ls, r <= (0x7FFFFFFFu >> 4), "UTF-8 value too large");
|
||||
r = (r << 4) + luaO_hexavalue(ls->current);
|
||||
}
|
||||
esccheck(ls, ls->current == '}', "missing '}'");
|
||||
next(ls); /* skip '}' */
|
||||
luaZ_buffremove(ls->buff, i); /* remove saved chars from buffer */
|
||||
return r;
|
||||
}
|
||||
|
||||
|
||||
static void utf8esc (LexState *ls) {
|
||||
char buff[UTF8BUFFSZ];
|
||||
int n = luaO_utf8esc(buff, readutf8esc(ls));
|
||||
for (; n > 0; n--) /* add 'buff' to string */
|
||||
save(ls, buff[UTF8BUFFSZ - n]);
|
||||
}
|
||||
|
||||
|
||||
static int readdecesc (LexState *ls) {
|
||||
int i;
|
||||
int r = 0; /* result accumulator */
|
||||
for (i = 0; i < 3 && lisdigit(ls->current); i++) { /* read up to 3 digits */
|
||||
r = 10*r + ls->current - '0';
|
||||
save_and_next(ls);
|
||||
}
|
||||
esccheck(ls, r <= UCHAR_MAX, "decimal escape too large");
|
||||
luaZ_buffremove(ls->buff, i); /* remove read digits from buffer */
|
||||
return r;
|
||||
seminfo->ts = luaX_newstring(ls, luaZ_buffer(ls->buff) + (2 + sep),
|
||||
luaZ_bufflen(ls->buff) - 2*(2 + sep));
|
||||
}
|
||||
|
||||
|
||||
static void read_string (LexState *ls, int del, SemInfo *seminfo) {
|
||||
save_and_next(ls); /* keep delimiter (for error messages) */
|
||||
save_and_next(ls);
|
||||
while (ls->current != del) {
|
||||
switch (ls->current) {
|
||||
case EOZ:
|
||||
lexerror(ls, "unfinished string", TK_EOS);
|
||||
break; /* to avoid warnings */
|
||||
luaX_lexerror(ls, "unfinished string", TK_EOS);
|
||||
continue; /* to avoid warnings */
|
||||
case '\n':
|
||||
case '\r':
|
||||
lexerror(ls, "unfinished string", TK_STRING);
|
||||
break; /* to avoid warnings */
|
||||
case '\\': { /* escape sequences */
|
||||
int c; /* final character to be saved */
|
||||
save_and_next(ls); /* keep '\\' for error messages */
|
||||
luaX_lexerror(ls, "unfinished string", TK_STRING);
|
||||
continue; /* to avoid warnings */
|
||||
case '\\': {
|
||||
int c;
|
||||
next(ls); /* do not save the `\' */
|
||||
switch (ls->current) {
|
||||
case 'a': c = '\a'; goto read_save;
|
||||
case 'b': c = '\b'; goto read_save;
|
||||
case 'f': c = '\f'; goto read_save;
|
||||
case 'n': c = '\n'; goto read_save;
|
||||
case 'r': c = '\r'; goto read_save;
|
||||
case 't': c = '\t'; goto read_save;
|
||||
case 'v': c = '\v'; goto read_save;
|
||||
case 'x': c = readhexaesc(ls); goto read_save;
|
||||
case 'u': utf8esc(ls); goto no_save;
|
||||
case '\n': case '\r':
|
||||
inclinenumber(ls); c = '\n'; goto only_save;
|
||||
case '\\': case '\"': case '\'':
|
||||
c = ls->current; goto read_save;
|
||||
case EOZ: goto no_save; /* will raise an error next loop */
|
||||
case 'z': { /* zap following span of spaces */
|
||||
luaZ_buffremove(ls->buff, 1); /* remove '\\' */
|
||||
next(ls); /* skip the 'z' */
|
||||
while (lisspace(ls->current)) {
|
||||
if (currIsNewline(ls)) inclinenumber(ls);
|
||||
else next(ls);
|
||||
}
|
||||
goto no_save;
|
||||
}
|
||||
case 'a': c = '\a'; break;
|
||||
case 'b': c = '\b'; break;
|
||||
case 'f': c = '\f'; break;
|
||||
case 'n': c = '\n'; break;
|
||||
case 'r': c = '\r'; break;
|
||||
case 't': c = '\t'; break;
|
||||
case 'v': c = '\v'; break;
|
||||
case '\n': /* go through */
|
||||
case '\r': save(ls, '\n'); inclinenumber(ls); continue;
|
||||
case EOZ: continue; /* will raise an error next loop */
|
||||
default: {
|
||||
esccheck(ls, lisdigit(ls->current), "invalid escape sequence");
|
||||
c = readdecesc(ls); /* digital escape '\ddd' */
|
||||
goto only_save;
|
||||
if (!isdigit(ls->current))
|
||||
save_and_next(ls); /* handles \\, \", \', and \? */
|
||||
else { /* \xxx */
|
||||
int i = 0;
|
||||
c = 0;
|
||||
do {
|
||||
c = 10*c + (ls->current-'0');
|
||||
next(ls);
|
||||
} while (++i<3 && isdigit(ls->current));
|
||||
if (c > UCHAR_MAX)
|
||||
luaX_lexerror(ls, "escape sequence too large", TK_STRING);
|
||||
save(ls, c);
|
||||
}
|
||||
continue;
|
||||
}
|
||||
}
|
||||
read_save:
|
||||
next(ls);
|
||||
/* go through */
|
||||
only_save:
|
||||
luaZ_buffremove(ls->buff, 1); /* remove '\\' */
|
||||
save(ls, c);
|
||||
/* go through */
|
||||
no_save: break;
|
||||
save(ls, c);
|
||||
next(ls);
|
||||
continue;
|
||||
}
|
||||
default:
|
||||
save_and_next(ls);
|
||||
@ -446,115 +335,109 @@ static int llex (LexState *ls, SemInfo *seminfo) {
|
||||
luaZ_resetbuffer(ls->buff);
|
||||
for (;;) {
|
||||
switch (ls->current) {
|
||||
case '\n': case '\r': { /* line breaks */
|
||||
case '\n':
|
||||
case '\r': {
|
||||
inclinenumber(ls);
|
||||
break;
|
||||
continue;
|
||||
}
|
||||
case ' ': case '\f': case '\t': case '\v': { /* spaces */
|
||||
next(ls);
|
||||
break;
|
||||
}
|
||||
case '-': { /* '-' or '--' (comment) */
|
||||
case '-': {
|
||||
next(ls);
|
||||
if (ls->current != '-') return '-';
|
||||
/* else is a comment */
|
||||
next(ls);
|
||||
if (ls->current == '[') { /* long comment? */
|
||||
size_t sep = skip_sep(ls);
|
||||
luaZ_resetbuffer(ls->buff); /* 'skip_sep' may dirty the buffer */
|
||||
if (sep >= 2) {
|
||||
read_long_string(ls, NULL, sep); /* skip long comment */
|
||||
luaZ_resetbuffer(ls->buff); /* previous call may dirty the buff. */
|
||||
break;
|
||||
if (ls->current == '[') {
|
||||
int sep = skip_sep(ls);
|
||||
luaZ_resetbuffer(ls->buff); /* `skip_sep' may dirty the buffer */
|
||||
if (sep >= 0) {
|
||||
read_long_string(ls, NULL, sep); /* long comment */
|
||||
luaZ_resetbuffer(ls->buff);
|
||||
continue;
|
||||
}
|
||||
}
|
||||
/* else short comment */
|
||||
while (!currIsNewline(ls) && ls->current != EOZ)
|
||||
next(ls); /* skip until end of line (or end of file) */
|
||||
break;
|
||||
next(ls);
|
||||
continue;
|
||||
}
|
||||
case '[': { /* long string or simply '[' */
|
||||
size_t sep = skip_sep(ls);
|
||||
if (sep >= 2) {
|
||||
case '[': {
|
||||
int sep = skip_sep(ls);
|
||||
if (sep >= 0) {
|
||||
read_long_string(ls, seminfo, sep);
|
||||
return TK_STRING;
|
||||
}
|
||||
else if (sep == 0) /* '[=...' missing second bracket? */
|
||||
lexerror(ls, "invalid long string delimiter", TK_STRING);
|
||||
return '[';
|
||||
else if (sep == -1) return '[';
|
||||
else luaX_lexerror(ls, "invalid long string delimiter", TK_STRING);
|
||||
}
|
||||
case '=': {
|
||||
next(ls);
|
||||
if (check_next1(ls, '=')) return TK_EQ; /* '==' */
|
||||
else return '=';
|
||||
if (ls->current != '=') return '=';
|
||||
else { next(ls); return TK_EQ; }
|
||||
}
|
||||
case '<': {
|
||||
next(ls);
|
||||
if (check_next1(ls, '=')) return TK_LE; /* '<=' */
|
||||
else if (check_next1(ls, '<')) return TK_SHL; /* '<<' */
|
||||
else return '<';
|
||||
if (ls->current != '=') return '<';
|
||||
else { next(ls); return TK_LE; }
|
||||
}
|
||||
case '>': {
|
||||
next(ls);
|
||||
if (check_next1(ls, '=')) return TK_GE; /* '>=' */
|
||||
else if (check_next1(ls, '>')) return TK_SHR; /* '>>' */
|
||||
else return '>';
|
||||
}
|
||||
case '/': {
|
||||
next(ls);
|
||||
if (check_next1(ls, '/')) return TK_IDIV; /* '//' */
|
||||
else return '/';
|
||||
if (ls->current != '=') return '>';
|
||||
else { next(ls); return TK_GE; }
|
||||
}
|
||||
case '~': {
|
||||
next(ls);
|
||||
if (check_next1(ls, '=')) return TK_NE; /* '~=' */
|
||||
else return '~';
|
||||
if (ls->current != '=') return '~';
|
||||
else { next(ls); return TK_NE; }
|
||||
}
|
||||
case ':': {
|
||||
next(ls);
|
||||
if (check_next1(ls, ':')) return TK_DBCOLON; /* '::' */
|
||||
else return ':';
|
||||
}
|
||||
case '"': case '\'': { /* short literal strings */
|
||||
case '"':
|
||||
case '\'': {
|
||||
read_string(ls, ls->current, seminfo);
|
||||
return TK_STRING;
|
||||
}
|
||||
case '.': { /* '.', '..', '...', or number */
|
||||
case '.': {
|
||||
save_and_next(ls);
|
||||
if (check_next1(ls, '.')) {
|
||||
if (check_next1(ls, '.'))
|
||||
return TK_DOTS; /* '...' */
|
||||
else return TK_CONCAT; /* '..' */
|
||||
if (check_next(ls, ".")) {
|
||||
if (check_next(ls, "."))
|
||||
return TK_DOTS; /* ... */
|
||||
else return TK_CONCAT; /* .. */
|
||||
}
|
||||
else if (!isdigit(ls->current)) return '.';
|
||||
else {
|
||||
read_numeral(ls, seminfo);
|
||||
return TK_NUMBER;
|
||||
}
|
||||
else if (!lisdigit(ls->current)) return '.';
|
||||
else return read_numeral(ls, seminfo);
|
||||
}
|
||||
case '0': case '1': case '2': case '3': case '4':
|
||||
case '5': case '6': case '7': case '8': case '9': {
|
||||
return read_numeral(ls, seminfo);
|
||||
}
|
||||
case EOZ: {
|
||||
return TK_EOS;
|
||||
}
|
||||
default: {
|
||||
if (lislalpha(ls->current)) { /* identifier or reserved word? */
|
||||
if (isspace(ls->current)) {
|
||||
lua_assert(!currIsNewline(ls));
|
||||
next(ls);
|
||||
continue;
|
||||
}
|
||||
else if (isdigit(ls->current)) {
|
||||
read_numeral(ls, seminfo);
|
||||
return TK_NUMBER;
|
||||
}
|
||||
else if (isalpha(ls->current) || ls->current == '_') {
|
||||
/* identifier or reserved word */
|
||||
TString *ts;
|
||||
do {
|
||||
save_and_next(ls);
|
||||
} while (lislalnum(ls->current));
|
||||
} while (isalnum(ls->current) || ls->current == '_');
|
||||
ts = luaX_newstring(ls, luaZ_buffer(ls->buff),
|
||||
luaZ_bufflen(ls->buff));
|
||||
seminfo->ts = ts;
|
||||
if (isreserved(ts)) /* reserved word? */
|
||||
return ts->extra - 1 + FIRST_RESERVED;
|
||||
if (ts->tsv.reserved > 0) /* reserved word? */
|
||||
return ts->tsv.reserved - 1 + FIRST_RESERVED;
|
||||
else {
|
||||
seminfo->ts = ts;
|
||||
return TK_NAME;
|
||||
}
|
||||
}
|
||||
else { /* single-char tokens ('+', '*', '%', '{', '}', ...) */
|
||||
else {
|
||||
int c = ls->current;
|
||||
next(ls);
|
||||
return c;
|
||||
return c; /* single-char tokens (+ - / ...) */
|
||||
}
|
||||
}
|
||||
}
|
||||
@ -573,9 +456,8 @@ void luaX_next (LexState *ls) {
|
||||
}
|
||||
|
||||
|
||||
int luaX_lookahead (LexState *ls) {
|
||||
void luaX_lookahead (LexState *ls) {
|
||||
lua_assert(ls->lookahead.token == TK_EOS);
|
||||
ls->lookahead.token = llex(ls, &ls->lookahead.seminfo);
|
||||
return ls->lookahead.token;
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user