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func.c revision 1.129
      1 /*	$NetBSD: func.c,v 1.129 2022/04/02 14:28:30 rillig Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1994, 1995 Jochen Pohl
      5  * All Rights Reserved.
      6  *
      7  * Redistribution and use in source and binary forms, with or without
      8  * modification, are permitted provided that the following conditions
      9  * are met:
     10  * 1. Redistributions of source code must retain the above copyright
     11  *    notice, this list of conditions and the following disclaimer.
     12  * 2. Redistributions in binary form must reproduce the above copyright
     13  *    notice, this list of conditions and the following disclaimer in the
     14  *    documentation and/or other materials provided with the distribution.
     15  * 3. All advertising materials mentioning features or use of this software
     16  *    must display the following acknowledgement:
     17  *      This product includes software developed by Jochen Pohl for
     18  *	The NetBSD Project.
     19  * 4. The name of the author may not be used to endorse or promote products
     20  *    derived from this software without specific prior written permission.
     21  *
     22  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     23  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     24  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     25  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     26  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     27  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     28  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     29  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     30  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     31  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     32  */
     33 
     34 #if HAVE_NBTOOL_CONFIG_H
     35 #include "nbtool_config.h"
     36 #endif
     37 
     38 #include <sys/cdefs.h>
     39 #if defined(__RCSID) && !defined(lint)
     40 __RCSID("$NetBSD: func.c,v 1.129 2022/04/02 14:28:30 rillig Exp $");
     41 #endif
     42 
     43 #include <stdlib.h>
     44 #include <string.h>
     45 
     46 #include "lint1.h"
     47 #include "cgram.h"
     48 
     49 /*
     50  * Contains a pointer to the symbol table entry of the current function
     51  * definition.
     52  */
     53 sym_t	*funcsym;
     54 
     55 /* Is set as long as a statement can be reached. Must be set at level 0. */
     56 bool	reached = true;
     57 
     58 /*
     59  * Is true by default, can be cleared by NOTREACHED.
     60  * Is reset to true whenever 'reached' changes.
     61  */
     62 bool	warn_about_unreachable;
     63 
     64 /*
     65  * In conjunction with 'reached', controls printing of "fallthrough on ..."
     66  * warnings.
     67  * Reset by each statement and set by FALLTHROUGH, switch (switch1())
     68  * and case (label()).
     69  *
     70  * Control statements if, for, while and switch do not reset seen_fallthrough
     71  * because this must be done by the controlled statement. At least for if this
     72  * is important because ** FALLTHROUGH ** after "if (expr) statement" is
     73  * evaluated before the following token, which causes reduction of above.
     74  * This means that ** FALLTHROUGH ** after "if ..." would always be ignored.
     75  */
     76 bool	seen_fallthrough;
     77 
     78 /* The innermost control statement */
     79 control_statement *cstmt;
     80 
     81 /*
     82  * Number of arguments which will be checked for usage in following
     83  * function definition. -1 stands for all arguments.
     84  *
     85  * The position of the last ARGSUSED comment is stored in argsused_pos.
     86  */
     87 int	nargusg = -1;
     88 pos_t	argsused_pos;
     89 
     90 /*
     91  * Number of arguments of the following function definition whose types
     92  * shall be checked by lint2. -1 stands for all arguments.
     93  *
     94  * The position of the last VARARGS comment is stored in vapos.
     95  */
     96 int	nvararg = -1;
     97 pos_t	vapos;
     98 
     99 /*
    100  * Both printflike_argnum and scanflike_argnum contain the 1-based number
    101  * of the string argument which shall be used to check the types of remaining
    102  * arguments (for PRINTFLIKE and SCANFLIKE).
    103  *
    104  * printflike_pos and scanflike_pos are the positions of the last PRINTFLIKE
    105  * or SCANFLIKE comment.
    106  */
    107 int	printflike_argnum = -1;
    108 int	scanflike_argnum = -1;
    109 pos_t	printflike_pos;
    110 pos_t	scanflike_pos;
    111 
    112 /*
    113  * If both plibflg and llibflg are set, prototypes are written as function
    114  * definitions to the output file.
    115  */
    116 bool	plibflg;
    117 
    118 /*
    119  * True means that no warnings about constants in conditional
    120  * context are printed.
    121  */
    122 bool	constcond_flag;
    123 
    124 /*
    125  * llibflg is set if a lint library shall be created. The effect of
    126  * llibflg is that all defined symbols are treated as used.
    127  * (The LINTLIBRARY comment also resets vflag.)
    128  */
    129 bool	llibflg;
    130 
    131 /*
    132  * Nonzero if warnings are suppressed by a LINTED directive
    133  * LWARN_BAD:	error
    134  * LWARN_ALL:	warnings on
    135  * LWARN_NONE:	all warnings ignored
    136  * 0..n: warning n ignored
    137  */
    138 int	lwarn = LWARN_ALL;
    139 
    140 /*
    141  * Whether bitfield type errors are suppressed by a BITFIELDTYPE
    142  * directive.
    143  */
    144 bool	bitfieldtype_ok;
    145 
    146 /*
    147  * Whether complaints about use of "long long" are suppressed in
    148  * the next statement or declaration.
    149  */
    150 bool	quadflg;
    151 
    152 /*
    153  * Puts a new element at the top of the stack used for control statements.
    154  */
    155 void
    156 begin_control_statement(control_statement_kind kind)
    157 {
    158 	control_statement *cs;
    159 
    160 	cs = xcalloc(1, sizeof(*cs));
    161 	cs->c_kind = kind;
    162 	cs->c_surrounding = cstmt;
    163 	cstmt = cs;
    164 }
    165 
    166 /*
    167  * Removes the top element of the stack used for control statements.
    168  */
    169 void
    170 end_control_statement(control_statement_kind kind)
    171 {
    172 	control_statement *cs;
    173 	case_label_t *cl, *next;
    174 
    175 	lint_assert(cstmt != NULL);
    176 
    177 	while (cstmt->c_kind != kind)
    178 		cstmt = cstmt->c_surrounding;
    179 
    180 	cs = cstmt;
    181 	cstmt = cs->c_surrounding;
    182 
    183 	for (cl = cs->c_case_labels; cl != NULL; cl = next) {
    184 		next = cl->cl_next;
    185 		free(cl);
    186 	}
    187 
    188 	free(cs->c_switch_type);
    189 	free(cs);
    190 }
    191 
    192 static void
    193 set_reached(bool new_reached)
    194 {
    195 	debug_step("%s -> %s",
    196 	    reached ? "reachable" : "unreachable",
    197 	    new_reached ? "reachable" : "unreachable");
    198 	reached = new_reached;
    199 	warn_about_unreachable = true;
    200 }
    201 
    202 /*
    203  * Prints a warning if a statement cannot be reached.
    204  */
    205 void
    206 check_statement_reachable(void)
    207 {
    208 	if (!reached && warn_about_unreachable) {
    209 		/* statement not reached */
    210 		warning(193);
    211 		warn_about_unreachable = false;
    212 	}
    213 }
    214 
    215 /*
    216  * Called after a function declaration which introduces a function definition
    217  * and before an (optional) old style argument declaration list.
    218  *
    219  * Puts all symbols declared in the prototype or in an old style argument
    220  * list back to the symbol table.
    221  *
    222  * Does the usual checking of storage class, type (return value),
    223  * redeclaration, etc.
    224  */
    225 void
    226 funcdef(sym_t *fsym)
    227 {
    228 	int	n;
    229 	bool	dowarn;
    230 	sym_t	*arg, *sym, *rdsym;
    231 
    232 	funcsym = fsym;
    233 
    234 	/*
    235 	 * Put all symbols declared in the argument list back to the
    236 	 * symbol table.
    237 	 */
    238 	for (sym = dcs->d_func_proto_syms; sym != NULL;
    239 	    sym = sym->s_level_next) {
    240 		if (sym->s_block_level != -1) {
    241 			lint_assert(sym->s_block_level == 1);
    242 			inssym(1, sym);
    243 		}
    244 	}
    245 
    246 	/*
    247 	 * In old_style_function() we did not know whether it is an old
    248 	 * style function definition or only an old style declaration,
    249 	 * if there are no arguments inside the argument list ("f()").
    250 	 */
    251 	if (!fsym->s_type->t_proto && fsym->s_args == NULL)
    252 		fsym->s_osdef = true;
    253 
    254 	check_type(fsym);
    255 
    256 	/*
    257 	 * check_type() checks for almost all possible errors, but not for
    258 	 * incomplete return values (these are allowed in declarations)
    259 	 */
    260 	if (fsym->s_type->t_subt->t_tspec != VOID &&
    261 	    is_incomplete(fsym->s_type->t_subt)) {
    262 		/* cannot return incomplete type */
    263 		error(67);
    264 	}
    265 
    266 	fsym->s_def = DEF;
    267 
    268 	if (fsym->s_scl == TYPEDEF) {
    269 		fsym->s_scl = EXTERN;
    270 		/* illegal storage class */
    271 		error(8);
    272 	}
    273 
    274 	if (dcs->d_inline)
    275 		fsym->s_inline = true;
    276 
    277 	/*
    278 	 * Arguments in new style function declarations need a name.
    279 	 * (void is already removed from the list of arguments)
    280 	 */
    281 	n = 1;
    282 	for (arg = fsym->s_type->t_args; arg != NULL; arg = arg->s_next) {
    283 		if (arg->s_scl == ABSTRACT) {
    284 			lint_assert(arg->s_name == unnamed);
    285 			/* formal parameter lacks name: param #%d */
    286 			error(59, n);
    287 		} else {
    288 			lint_assert(arg->s_name != unnamed);
    289 		}
    290 		n++;
    291 	}
    292 
    293 	/*
    294 	 * We must also remember the position. s_def_pos is overwritten
    295 	 * if this is an old style definition and we had already a
    296 	 * prototype.
    297 	 */
    298 	dcs->d_func_def_pos = fsym->s_def_pos;
    299 
    300 	if ((rdsym = dcs->d_redeclared_symbol) != NULL) {
    301 
    302 		if (!check_redeclaration(fsym, (dowarn = false, &dowarn))) {
    303 
    304 			/*
    305 			 * Print nothing if the newly defined function
    306 			 * is defined in old style. A better warning will
    307 			 * be printed in check_func_lint_directives().
    308 			 */
    309 			if (dowarn && !fsym->s_osdef) {
    310 				if (sflag)
    311 					/* redeclaration of %s */
    312 					error(27, fsym->s_name);
    313 				else
    314 					/* redeclaration of %s */
    315 					warning(27, fsym->s_name);
    316 				print_previous_declaration(-1, rdsym);
    317 			}
    318 
    319 			copy_usage_info(fsym, rdsym);
    320 
    321 			/*
    322 			 * If the old symbol was a prototype and the new
    323 			 * one is none, overtake the position of the
    324 			 * declaration of the prototype.
    325 			 */
    326 			if (fsym->s_osdef && rdsym->s_type->t_proto)
    327 				fsym->s_def_pos = rdsym->s_def_pos;
    328 
    329 			complete_type(fsym, rdsym);
    330 
    331 			if (rdsym->s_inline)
    332 				fsym->s_inline = true;
    333 
    334 		}
    335 
    336 		/* remove the old symbol from the symbol table */
    337 		rmsym(rdsym);
    338 
    339 	}
    340 
    341 	if (fsym->s_osdef && !fsym->s_type->t_proto) {
    342 		if (sflag && hflag && strcmp(fsym->s_name, "main") != 0)
    343 			/* function definition is not a prototype */
    344 			warning(286);
    345 	}
    346 
    347 	if (dcs->d_notyp)
    348 		fsym->s_return_type_implicit_int = true;
    349 
    350 	set_reached(true);
    351 }
    352 
    353 static void
    354 check_missing_return_value(void)
    355 {
    356 	if (funcsym->s_type->t_subt->t_tspec == VOID)
    357 		return;
    358 	if (funcsym->s_return_type_implicit_int)
    359 		return;
    360 
    361 	/* C99 5.1.2.2.3 "Program termination" p1 */
    362 	if (Sflag && strcmp(funcsym->s_name, "main") == 0)
    363 		return;
    364 
    365 	/* function %s falls off bottom without returning value */
    366 	warning(217, funcsym->s_name);
    367 }
    368 
    369 /*
    370  * Called at the end of a function definition.
    371  */
    372 void
    373 funcend(void)
    374 {
    375 	sym_t	*arg;
    376 	int	n;
    377 
    378 	if (reached) {
    379 		cstmt->c_had_return_noval = true;
    380 		check_missing_return_value();
    381 	}
    382 
    383 	/*
    384 	 * This warning is printed only if the return value was implicitly
    385 	 * declared to be int. Otherwise the wrong return statement
    386 	 * has already printed a warning.
    387 	 */
    388 	if (cstmt->c_had_return_noval && cstmt->c_had_return_value &&
    389 	    funcsym->s_return_type_implicit_int)
    390 		/* function %s has return (e); and return; */
    391 		warning(216, funcsym->s_name);
    392 
    393 	/* Print warnings for unused arguments */
    394 	arg = dcs->d_func_args;
    395 	n = 0;
    396 	while (arg != NULL && (nargusg == -1 || n < nargusg)) {
    397 		check_usage_sym(dcs->d_asm, arg);
    398 		arg = arg->s_next;
    399 		n++;
    400 	}
    401 	nargusg = -1;
    402 
    403 	/*
    404 	 * write the information about the function definition to the
    405 	 * output file
    406 	 * inline functions explicitly declared extern are written as
    407 	 * declarations only.
    408 	 */
    409 	if (dcs->d_scl == EXTERN && funcsym->s_inline) {
    410 		outsym(funcsym, funcsym->s_scl, DECL);
    411 	} else {
    412 		outfdef(funcsym, &dcs->d_func_def_pos,
    413 		    cstmt->c_had_return_value, funcsym->s_osdef,
    414 		    dcs->d_func_args);
    415 	}
    416 
    417 	/* clean up after syntax errors, see test stmt_for.c. */
    418 	while (dcs->d_enclosing != NULL)
    419 		dcs = dcs->d_enclosing;
    420 
    421 	/*
    422 	 * remove all symbols declared during argument declaration from
    423 	 * the symbol table
    424 	 */
    425 	lint_assert(dcs->d_enclosing == NULL);
    426 	lint_assert(dcs->d_ctx == EXTERN);
    427 	rmsyms(dcs->d_func_proto_syms);
    428 
    429 	/* must be set on level 0 */
    430 	set_reached(true);
    431 }
    432 
    433 void
    434 named_label(sym_t *sym)
    435 {
    436 
    437 	if (sym->s_set) {
    438 		/* label %s redefined */
    439 		error(194, sym->s_name);
    440 	} else {
    441 		mark_as_set(sym);
    442 	}
    443 
    444 	set_reached(true);
    445 }
    446 
    447 static void
    448 check_case_label_bitand(const tnode_t *case_expr, const tnode_t *switch_expr)
    449 {
    450 	uint64_t case_value, mask;
    451 
    452 	if (switch_expr->tn_op != BITAND ||
    453 	    switch_expr->tn_right->tn_op != CON)
    454 		return;
    455 
    456 	lint_assert(case_expr->tn_op == CON);
    457 	case_value = case_expr->tn_val->v_quad;
    458 	mask = switch_expr->tn_right->tn_val->v_quad;
    459 
    460 	if ((case_value & ~mask) != 0) {
    461 		/* statement not reached */
    462 		warning(193);
    463 	}
    464 }
    465 
    466 static void
    467 check_case_label_enum(const tnode_t *tn, const control_statement *cs)
    468 {
    469 	/* similar to typeok_enum in tree.c */
    470 
    471 	if (!(tn->tn_type->t_is_enum || cs->c_switch_type->t_is_enum))
    472 		return;
    473 	if (tn->tn_type->t_is_enum && cs->c_switch_type->t_is_enum &&
    474 	    tn->tn_type->t_enum == cs->c_switch_type->t_enum)
    475 		return;
    476 
    477 #if 0 /* not yet ready, see msg_130.c */
    478 	/* enum type mismatch: '%s' '%s' '%s' */
    479 	warning(130, type_name(cs->c_switch_type), op_name(EQ),
    480 	    type_name(tn->tn_type));
    481 #endif
    482 }
    483 
    484 static void
    485 check_case_label(tnode_t *tn, control_statement *cs)
    486 {
    487 	case_label_t *cl;
    488 	val_t	*v;
    489 	val_t	nv;
    490 	tspec_t	t;
    491 
    492 	if (cs == NULL) {
    493 		/* case not in switch */
    494 		error(195);
    495 		return;
    496 	}
    497 
    498 	if (tn != NULL && tn->tn_op != CON) {
    499 		/* non-constant case expression */
    500 		error(197);
    501 		return;
    502 	}
    503 
    504 	if (tn != NULL && !is_integer(tn->tn_type->t_tspec)) {
    505 		/* non-integral case expression */
    506 		error(198);
    507 		return;
    508 	}
    509 
    510 	check_case_label_bitand(tn, cs->c_switch_expr);
    511 	check_case_label_enum(tn, cs);
    512 
    513 	lint_assert(cs->c_switch_type != NULL);
    514 
    515 	if (reached && !seen_fallthrough) {
    516 		if (hflag)
    517 			/* fallthrough on case statement */
    518 			warning(220);
    519 	}
    520 
    521 	t = tn->tn_type->t_tspec;
    522 	if (t == LONG || t == ULONG ||
    523 	    t == QUAD || t == UQUAD) {
    524 		if (tflag)
    525 			/* case label must be of type 'int' in traditional C */
    526 			warning(203);
    527 	}
    528 
    529 	/*
    530 	 * get the value of the expression and convert it
    531 	 * to the type of the switch expression
    532 	 */
    533 	v = constant(tn, true);
    534 	(void)memset(&nv, 0, sizeof(nv));
    535 	convert_constant(CASE, 0, cs->c_switch_type, &nv, v);
    536 	free(v);
    537 
    538 	/* look if we had this value already */
    539 	for (cl = cs->c_case_labels; cl != NULL; cl = cl->cl_next) {
    540 		if (cl->cl_val.v_quad == nv.v_quad)
    541 			break;
    542 	}
    543 	if (cl != NULL && is_uinteger(nv.v_tspec)) {
    544 		/* duplicate case in switch: %lu */
    545 		error(200, (unsigned long)nv.v_quad);
    546 	} else if (cl != NULL) {
    547 		/* duplicate case in switch: %ld */
    548 		error(199, (long)nv.v_quad);
    549 	} else {
    550 		check_getopt_case_label(nv.v_quad);
    551 
    552 		/* append the value to the list of case values */
    553 		cl = xcalloc(1, sizeof(*cl));
    554 		cl->cl_val = nv;
    555 		cl->cl_next = cs->c_case_labels;
    556 		cs->c_case_labels = cl;
    557 	}
    558 }
    559 
    560 void
    561 case_label(tnode_t *tn)
    562 {
    563 	control_statement *cs;
    564 
    565 	/* find the innermost switch statement */
    566 	for (cs = cstmt; cs != NULL && !cs->c_switch; cs = cs->c_surrounding)
    567 		continue;
    568 
    569 	check_case_label(tn, cs);
    570 
    571 	expr_free_all();
    572 
    573 	set_reached(true);
    574 }
    575 
    576 void
    577 default_label(void)
    578 {
    579 	control_statement *cs;
    580 
    581 	/* find the innermost switch statement */
    582 	for (cs = cstmt; cs != NULL && !cs->c_switch; cs = cs->c_surrounding)
    583 		continue;
    584 
    585 	if (cs == NULL) {
    586 		/* default outside switch */
    587 		error(201);
    588 	} else if (cs->c_default) {
    589 		/* duplicate default in switch */
    590 		error(202);
    591 	} else {
    592 		if (reached && !seen_fallthrough) {
    593 			if (hflag)
    594 				/* fallthrough on default statement */
    595 				warning(284);
    596 		}
    597 		cs->c_default = true;
    598 	}
    599 
    600 	set_reached(true);
    601 }
    602 
    603 static tnode_t *
    604 check_controlling_expression(tnode_t *tn)
    605 {
    606 
    607 	tn = cconv(tn);
    608 	if (tn != NULL)
    609 		tn = promote(NOOP, false, tn);
    610 
    611 	if (tn != NULL && !is_scalar(tn->tn_type->t_tspec)) {
    612 		/* C99 6.5.15p4 for the ?: operator; see typeok:QUEST */
    613 		/* C99 6.8.4.1p1 for if statements */
    614 		/* C99 6.8.5p2 for while, do and for loops */
    615 		/* controlling expressions must have scalar type */
    616 		error(204);
    617 		return NULL;
    618 	}
    619 
    620 	if (tn != NULL && Tflag && !is_typeok_bool_operand(tn)) {
    621 		/* controlling expression must be bool, not '%s' */
    622 		error(333, tspec_name(tn->tn_type->t_tspec));
    623 	}
    624 
    625 	return tn;
    626 }
    627 
    628 /*
    629  * T_IF T_LPAREN expr T_RPAREN
    630  */
    631 void
    632 if1(tnode_t *tn)
    633 {
    634 
    635 	if (tn != NULL)
    636 		tn = check_controlling_expression(tn);
    637 	if (tn != NULL)
    638 		expr(tn, false, true, false, false);
    639 	begin_control_statement(CS_IF);
    640 
    641 	if (tn != NULL && tn->tn_op == CON && !tn->tn_system_dependent) {
    642 		/* XXX: what if inside 'if (0)'? */
    643 		set_reached(constant_is_nonzero(tn));
    644 		/* XXX: what about always_else? */
    645 		cstmt->c_always_then = reached;
    646 	}
    647 }
    648 
    649 /*
    650  * if_without_else
    651  * if_without_else T_ELSE
    652  */
    653 void
    654 if2(void)
    655 {
    656 
    657 	cstmt->c_reached_end_of_then = reached;
    658 	/* XXX: what if inside 'if (0)'? */
    659 	set_reached(!cstmt->c_always_then);
    660 }
    661 
    662 /*
    663  * if_without_else
    664  * if_without_else T_ELSE statement
    665  */
    666 void
    667 if3(bool els)
    668 {
    669 	if (cstmt->c_reached_end_of_then)
    670 		set_reached(true);
    671 	else if (cstmt->c_always_then)
    672 		set_reached(false);
    673 	else if (!els)
    674 		set_reached(true);
    675 
    676 	end_control_statement(CS_IF);
    677 }
    678 
    679 /*
    680  * T_SWITCH T_LPAREN expr T_RPAREN
    681  */
    682 void
    683 switch1(tnode_t *tn)
    684 {
    685 	tspec_t	t;
    686 	type_t	*tp;
    687 
    688 	if (tn != NULL)
    689 		tn = cconv(tn);
    690 	if (tn != NULL)
    691 		tn = promote(NOOP, false, tn);
    692 	if (tn != NULL && !is_integer(tn->tn_type->t_tspec)) {
    693 		/* switch expression must have integral type */
    694 		error(205);
    695 		tn = NULL;
    696 	}
    697 	if (tn != NULL && tflag) {
    698 		t = tn->tn_type->t_tspec;
    699 		if (t == LONG || t == ULONG || t == QUAD || t == UQUAD) {
    700 			/* switch expression must be of type 'int' in ... */
    701 			warning(271);
    702 		}
    703 	}
    704 
    705 	/*
    706 	 * Remember the type of the expression. Because it's possible
    707 	 * that (*tp) is allocated on tree memory, the type must be
    708 	 * duplicated. This is not too complicated because it is
    709 	 * only an integer type.
    710 	 */
    711 	tp = xcalloc(1, sizeof(*tp));
    712 	if (tn != NULL) {
    713 		tp->t_tspec = tn->tn_type->t_tspec;
    714 		if ((tp->t_is_enum = tn->tn_type->t_is_enum) != false)
    715 			tp->t_enum = tn->tn_type->t_enum;
    716 	} else {
    717 		tp->t_tspec = INT;
    718 	}
    719 
    720 	/* leak the memory, for check_case_label_bitand */
    721 	(void)expr_save_memory();
    722 
    723 	check_getopt_begin_switch();
    724 	expr(tn, true, false, false, false);
    725 
    726 	begin_control_statement(CS_SWITCH);
    727 	cstmt->c_switch = true;
    728 	cstmt->c_switch_type = tp;
    729 	cstmt->c_switch_expr = tn;
    730 
    731 	set_reached(false);
    732 	seen_fallthrough = true;
    733 }
    734 
    735 /*
    736  * switch_expr statement
    737  */
    738 void
    739 switch2(void)
    740 {
    741 	int	nenum = 0, nclab = 0;
    742 	sym_t	*esym;
    743 	case_label_t *cl;
    744 
    745 	lint_assert(cstmt->c_switch_type != NULL);
    746 
    747 	if (cstmt->c_switch_type->t_is_enum) {
    748 		/*
    749 		 * Warn if the number of case labels is different from the
    750 		 * number of enumerators.
    751 		 */
    752 		nenum = nclab = 0;
    753 		lint_assert(cstmt->c_switch_type->t_enum != NULL);
    754 		for (esym = cstmt->c_switch_type->t_enum->en_first_enumerator;
    755 		     esym != NULL; esym = esym->s_next) {
    756 			nenum++;
    757 		}
    758 		for (cl = cstmt->c_case_labels; cl != NULL; cl = cl->cl_next)
    759 			nclab++;
    760 		if (hflag && eflag && nenum != nclab && !cstmt->c_default) {
    761 			/* enumeration value(s) not handled in switch */
    762 			warning(206);
    763 		}
    764 	}
    765 
    766 	check_getopt_end_switch();
    767 
    768 	if (cstmt->c_break) {
    769 		/*
    770 		 * The end of the switch statement is always reached since
    771 		 * c_break is only set if a break statement can actually
    772 		 * be reached.
    773 		 */
    774 		set_reached(true);
    775 	} else if (cstmt->c_default ||
    776 		   (hflag && cstmt->c_switch_type->t_is_enum &&
    777 		    nenum == nclab)) {
    778 		/*
    779 		 * The end of the switch statement is reached if the end
    780 		 * of the last statement inside it is reached.
    781 		 */
    782 	} else {
    783 		/*
    784 		 * There are possible values that are not handled in the
    785 		 * switch statement.
    786 		 */
    787 		set_reached(true);
    788 	}
    789 
    790 	end_control_statement(CS_SWITCH);
    791 }
    792 
    793 /*
    794  * T_WHILE T_LPAREN expr T_RPAREN
    795  */
    796 void
    797 while1(tnode_t *tn)
    798 {
    799 	bool body_reached;
    800 
    801 	if (!reached) {
    802 		/* loop not entered at top */
    803 		warning(207);
    804 		/* FIXME: that's plain wrong. */
    805 		set_reached(true);
    806 	}
    807 
    808 	if (tn != NULL)
    809 		tn = check_controlling_expression(tn);
    810 
    811 	begin_control_statement(CS_WHILE);
    812 	cstmt->c_loop = true;
    813 	cstmt->c_maybe_endless = is_nonzero(tn);
    814 	body_reached = !is_zero(tn);
    815 
    816 	check_getopt_begin_while(tn);
    817 	expr(tn, false, true, true, false);
    818 
    819 	set_reached(body_reached);
    820 }
    821 
    822 /*
    823  * while_expr statement
    824  * while_expr error
    825  */
    826 void
    827 while2(void)
    828 {
    829 
    830 	/*
    831 	 * The end of the loop can be reached if it is no endless loop
    832 	 * or there was a break statement which was reached.
    833 	 */
    834 	set_reached(!cstmt->c_maybe_endless || cstmt->c_break);
    835 
    836 	check_getopt_end_while();
    837 	end_control_statement(CS_WHILE);
    838 }
    839 
    840 /*
    841  * T_DO
    842  */
    843 void
    844 do1(void)
    845 {
    846 
    847 	if (!reached) {
    848 		/* loop not entered at top */
    849 		warning(207);
    850 		set_reached(true);
    851 	}
    852 
    853 	begin_control_statement(CS_DO_WHILE);
    854 	cstmt->c_loop = true;
    855 }
    856 
    857 /*
    858  * do statement do_while_expr
    859  * do error
    860  */
    861 void
    862 do2(tnode_t *tn)
    863 {
    864 
    865 	/*
    866 	 * If there was a continue statement, the expression controlling the
    867 	 * loop is reached.
    868 	 */
    869 	if (cstmt->c_continue)
    870 		set_reached(true);
    871 
    872 	if (tn != NULL)
    873 		tn = check_controlling_expression(tn);
    874 
    875 	if (tn != NULL && tn->tn_op == CON) {
    876 		cstmt->c_maybe_endless = constant_is_nonzero(tn);
    877 		if (!cstmt->c_maybe_endless && cstmt->c_continue)
    878 			/* continue in 'do ... while (0)' loop */
    879 			error(323);
    880 	}
    881 
    882 	expr(tn, false, true, true, true);
    883 
    884 	if (cstmt->c_maybe_endless)
    885 		set_reached(false);
    886 	if (cstmt->c_break)
    887 		set_reached(true);
    888 
    889 	end_control_statement(CS_DO_WHILE);
    890 }
    891 
    892 /*
    893  * T_FOR T_LPAREN opt_expr T_SEMI opt_expr T_SEMI opt_expr T_RPAREN
    894  */
    895 void
    896 for1(tnode_t *tn1, tnode_t *tn2, tnode_t *tn3)
    897 {
    898 
    899 	/*
    900 	 * If there is no initialization expression it is possible that
    901 	 * it is intended not to enter the loop at top.
    902 	 */
    903 	if (tn1 != NULL && !reached) {
    904 		/* loop not entered at top */
    905 		warning(207);
    906 		set_reached(true);
    907 	}
    908 
    909 	begin_control_statement(CS_FOR);
    910 	cstmt->c_loop = true;
    911 
    912 	/*
    913 	 * Store the tree memory for the reinitialization expression.
    914 	 * Also remember this expression itself. We must check it at
    915 	 * the end of the loop to get "used but not set" warnings correct.
    916 	 */
    917 	cstmt->c_for_expr3_mem = expr_save_memory();
    918 	cstmt->c_for_expr3 = tn3;
    919 	cstmt->c_for_expr3_pos = curr_pos;
    920 	cstmt->c_for_expr3_csrc_pos = csrc_pos;
    921 
    922 	if (tn1 != NULL)
    923 		expr(tn1, false, false, true, false);
    924 
    925 	if (tn2 != NULL)
    926 		tn2 = check_controlling_expression(tn2);
    927 	if (tn2 != NULL)
    928 		expr(tn2, false, true, true, false);
    929 
    930 	cstmt->c_maybe_endless = tn2 == NULL || is_nonzero(tn2);
    931 
    932 	/* Checking the reinitialization expression is done in for2() */
    933 
    934 	set_reached(!is_zero(tn2));
    935 }
    936 
    937 /*
    938  * for_exprs statement
    939  * for_exprs error
    940  */
    941 void
    942 for2(void)
    943 {
    944 	pos_t	cpos, cspos;
    945 	tnode_t	*tn3;
    946 
    947 	if (cstmt->c_continue)
    948 		set_reached(true);
    949 
    950 	cpos = curr_pos;
    951 	cspos = csrc_pos;
    952 
    953 	/* Restore the tree memory for the reinitialization expression */
    954 	expr_restore_memory(cstmt->c_for_expr3_mem);
    955 	tn3 = cstmt->c_for_expr3;
    956 	curr_pos = cstmt->c_for_expr3_pos;
    957 	csrc_pos = cstmt->c_for_expr3_csrc_pos;
    958 
    959 	/* simply "statement not reached" would be confusing */
    960 	if (!reached && warn_about_unreachable) {
    961 		/* end-of-loop code not reached */
    962 		warning(223);
    963 		set_reached(true);
    964 	}
    965 
    966 	if (tn3 != NULL) {
    967 		expr(tn3, false, false, true, false);
    968 	} else {
    969 		expr_free_all();
    970 	}
    971 
    972 	curr_pos = cpos;
    973 	csrc_pos = cspos;
    974 
    975 	/* An endless loop without break will never terminate */
    976 	/* TODO: What if the loop contains a 'return'? */
    977 	set_reached(cstmt->c_break || !cstmt->c_maybe_endless);
    978 
    979 	end_control_statement(CS_FOR);
    980 }
    981 
    982 /*
    983  * T_GOTO identifier T_SEMI
    984  */
    985 void
    986 do_goto(sym_t *lab)
    987 {
    988 
    989 	mark_as_used(lab, false, false);
    990 
    991 	check_statement_reachable();
    992 
    993 	set_reached(false);
    994 }
    995 
    996 /*
    997  * T_BREAK T_SEMI
    998  */
    999 void
   1000 do_break(void)
   1001 {
   1002 	control_statement *cs;
   1003 
   1004 	cs = cstmt;
   1005 	while (cs != NULL && !cs->c_loop && !cs->c_switch)
   1006 		cs = cs->c_surrounding;
   1007 
   1008 	if (cs == NULL) {
   1009 		/* break outside loop or switch */
   1010 		error(208);
   1011 	} else {
   1012 		if (reached)
   1013 			cs->c_break = true;
   1014 	}
   1015 
   1016 	if (bflag)
   1017 		check_statement_reachable();
   1018 
   1019 	set_reached(false);
   1020 }
   1021 
   1022 /*
   1023  * T_CONTINUE T_SEMI
   1024  */
   1025 void
   1026 do_continue(void)
   1027 {
   1028 	control_statement *cs;
   1029 
   1030 	for (cs = cstmt; cs != NULL && !cs->c_loop; cs = cs->c_surrounding)
   1031 		continue;
   1032 
   1033 	if (cs == NULL) {
   1034 		/* continue outside loop */
   1035 		error(209);
   1036 	} else {
   1037 		/* TODO: only if reachable, for symmetry with c_break */
   1038 		cs->c_continue = true;
   1039 	}
   1040 
   1041 	check_statement_reachable();
   1042 
   1043 	set_reached(false);
   1044 }
   1045 
   1046 /*
   1047  * T_RETURN T_SEMI
   1048  * T_RETURN expr T_SEMI
   1049  */
   1050 void
   1051 do_return(bool sys, tnode_t *tn)
   1052 {
   1053 	tnode_t	*ln, *rn;
   1054 	control_statement *cs;
   1055 	op_t	op;
   1056 
   1057 	cs = cstmt;
   1058 	if (cs == NULL) {
   1059 		/* syntax error '%s' */
   1060 		error(249, "return outside function");
   1061 		return;
   1062 	}
   1063 
   1064 	for (; cs->c_surrounding != NULL; cs = cs->c_surrounding)
   1065 		continue;
   1066 
   1067 	if (tn != NULL)
   1068 		cs->c_had_return_value = true;
   1069 	else
   1070 		cs->c_had_return_noval = true;
   1071 
   1072 	if (tn != NULL && funcsym->s_type->t_subt->t_tspec == VOID) {
   1073 		/* void function %s cannot return value */
   1074 		error(213, funcsym->s_name);
   1075 		expr_free_all();
   1076 		tn = NULL;
   1077 	} else if (tn == NULL && funcsym->s_type->t_subt->t_tspec != VOID) {
   1078 		/*
   1079 		 * Assume that the function has a return value only if it
   1080 		 * is explicitly declared.
   1081 		 */
   1082 		if (!funcsym->s_return_type_implicit_int)
   1083 			/* function '%s' expects to return value */
   1084 			warning(214, funcsym->s_name);
   1085 	}
   1086 
   1087 	if (tn != NULL) {
   1088 
   1089 		/* Create a temporary node for the left side */
   1090 		ln = expr_zero_alloc(sizeof(*ln));
   1091 		ln->tn_op = NAME;
   1092 		ln->tn_type = expr_unqualified_type(funcsym->s_type->t_subt);
   1093 		ln->tn_lvalue = true;
   1094 		ln->tn_sym = funcsym;		/* better than nothing */
   1095 
   1096 		tn = build_binary(ln, RETURN, sys, tn);
   1097 
   1098 		if (tn != NULL) {
   1099 			rn = tn->tn_right;
   1100 			while ((op = rn->tn_op) == CVT || op == PLUS)
   1101 				rn = rn->tn_left;
   1102 			if (rn->tn_op == ADDR && rn->tn_left->tn_op == NAME &&
   1103 			    rn->tn_left->tn_sym->s_scl == AUTO) {
   1104 				/* %s returns pointer to automatic object */
   1105 				warning(302, funcsym->s_name);
   1106 			}
   1107 		}
   1108 
   1109 		expr(tn, true, false, true, false);
   1110 
   1111 	} else {
   1112 
   1113 		check_statement_reachable();
   1114 
   1115 	}
   1116 
   1117 	set_reached(false);
   1118 }
   1119 
   1120 /*
   1121  * Do some cleanup after a global declaration or definition.
   1122  * Especially remove information about unused lint comments.
   1123  */
   1124 void
   1125 global_clean_up_decl(bool silent)
   1126 {
   1127 
   1128 	if (nargusg != -1) {
   1129 		if (!silent) {
   1130 			/* must precede function definition: ** %s ** */
   1131 			warning_at(282, &argsused_pos, "ARGSUSED");
   1132 		}
   1133 		nargusg = -1;
   1134 	}
   1135 	if (nvararg != -1) {
   1136 		if (!silent) {
   1137 			/* must precede function definition: ** %s ** */
   1138 			warning_at(282, &vapos, "VARARGS");
   1139 		}
   1140 		nvararg = -1;
   1141 	}
   1142 	if (printflike_argnum != -1) {
   1143 		if (!silent) {
   1144 			/* must precede function definition: ** %s ** */
   1145 			warning_at(282, &printflike_pos, "PRINTFLIKE");
   1146 		}
   1147 		printflike_argnum = -1;
   1148 	}
   1149 	if (scanflike_argnum != -1) {
   1150 		if (!silent) {
   1151 			/* must precede function definition: ** %s ** */
   1152 			warning_at(282, &scanflike_pos, "SCANFLIKE");
   1153 		}
   1154 		scanflike_argnum = -1;
   1155 	}
   1156 
   1157 	dcs->d_asm = false;
   1158 
   1159 	/*
   1160 	 * Needed for BSD yacc in case of parse errors; GNU Bison 3.0.4 is
   1161 	 * fine.  See test gcc_attribute.c, function_with_unknown_attribute.
   1162 	 */
   1163 	in_gcc_attribute = false;
   1164 }
   1165 
   1166 /*
   1167  * ARGSUSED comment
   1168  *
   1169  * Only the first n arguments of the following function are checked
   1170  * for usage. A missing argument is taken to be 0.
   1171  */
   1172 void
   1173 argsused(int n)
   1174 {
   1175 
   1176 	if (n == -1)
   1177 		n = 0;
   1178 
   1179 	if (dcs->d_ctx != EXTERN) {
   1180 		/* must be outside function: ** %s ** */
   1181 		warning(280, "ARGSUSED");
   1182 		return;
   1183 	}
   1184 	if (nargusg != -1) {
   1185 		/* duplicate use of ** %s ** */
   1186 		warning(281, "ARGSUSED");
   1187 	}
   1188 	nargusg = n;
   1189 	argsused_pos = curr_pos;
   1190 }
   1191 
   1192 /*
   1193  * VARARGS comment
   1194  *
   1195  * Causes lint2 to check only the first n arguments for compatibility
   1196  * with the function definition. A missing argument is taken to be 0.
   1197  */
   1198 void
   1199 varargs(int n)
   1200 {
   1201 
   1202 	if (n == -1)
   1203 		n = 0;
   1204 
   1205 	if (dcs->d_ctx != EXTERN) {
   1206 		/* must be outside function: ** %s ** */
   1207 		warning(280, "VARARGS");
   1208 		return;
   1209 	}
   1210 	if (nvararg != -1) {
   1211 		/* duplicate use of ** %s ** */
   1212 		warning(281, "VARARGS");
   1213 	}
   1214 	nvararg = n;
   1215 	vapos = curr_pos;
   1216 }
   1217 
   1218 /*
   1219  * PRINTFLIKE comment
   1220  *
   1221  * Check all arguments until the (n-1)-th as usual. The n-th argument is
   1222  * used the check the types of remaining arguments.
   1223  */
   1224 void
   1225 printflike(int n)
   1226 {
   1227 
   1228 	if (n == -1)
   1229 		n = 0;
   1230 
   1231 	if (dcs->d_ctx != EXTERN) {
   1232 		/* must be outside function: ** %s ** */
   1233 		warning(280, "PRINTFLIKE");
   1234 		return;
   1235 	}
   1236 	if (printflike_argnum != -1) {
   1237 		/* duplicate use of ** %s ** */
   1238 		warning(281, "PRINTFLIKE");
   1239 	}
   1240 	printflike_argnum = n;
   1241 	printflike_pos = curr_pos;
   1242 }
   1243 
   1244 /*
   1245  * SCANFLIKE comment
   1246  *
   1247  * Check all arguments until the (n-1)-th as usual. The n-th argument is
   1248  * used the check the types of remaining arguments.
   1249  */
   1250 void
   1251 scanflike(int n)
   1252 {
   1253 
   1254 	if (n == -1)
   1255 		n = 0;
   1256 
   1257 	if (dcs->d_ctx != EXTERN) {
   1258 		/* must be outside function: ** %s ** */
   1259 		warning(280, "SCANFLIKE");
   1260 		return;
   1261 	}
   1262 	if (scanflike_argnum != -1) {
   1263 		/* duplicate use of ** %s ** */
   1264 		warning(281, "SCANFLIKE");
   1265 	}
   1266 	scanflike_argnum = n;
   1267 	scanflike_pos = curr_pos;
   1268 }
   1269 
   1270 /*
   1271  * Set the line number for a CONSTCOND comment. At this and the following
   1272  * line no warnings about constants in conditional contexts are printed.
   1273  */
   1274 /* ARGSUSED */
   1275 void
   1276 constcond(int n)
   1277 {
   1278 
   1279 	constcond_flag = true;
   1280 }
   1281 
   1282 /*
   1283  * Suppress printing of "fallthrough on ..." warnings until next
   1284  * statement.
   1285  */
   1286 /* ARGSUSED */
   1287 void
   1288 fallthru(int n)
   1289 {
   1290 
   1291 	seen_fallthrough = true;
   1292 }
   1293 
   1294 /*
   1295  * Stop warnings about statements which cannot be reached. Also tells lint
   1296  * that the following statements cannot be reached (e.g. after exit()).
   1297  */
   1298 /* ARGSUSED */
   1299 void
   1300 not_reached(int n)
   1301 {
   1302 
   1303 	set_reached(false);
   1304 	warn_about_unreachable = false;
   1305 }
   1306 
   1307 /* ARGSUSED */
   1308 void
   1309 lintlib(int n)
   1310 {
   1311 
   1312 	if (dcs->d_ctx != EXTERN) {
   1313 		/* must be outside function: ** %s ** */
   1314 		warning(280, "LINTLIBRARY");
   1315 		return;
   1316 	}
   1317 	llibflg = true;
   1318 	vflag = false;
   1319 }
   1320 
   1321 /*
   1322  * Suppress most warnings at the current and the following line.
   1323  */
   1324 /* ARGSUSED */
   1325 void
   1326 linted(int n)
   1327 {
   1328 
   1329 	debug_step("set lwarn %d", n);
   1330 	lwarn = n;
   1331 }
   1332 
   1333 /*
   1334  * Suppress bitfield type errors on the current line.
   1335  */
   1336 /* ARGSUSED */
   1337 void
   1338 bitfieldtype(int n)
   1339 {
   1340 
   1341 	debug_step("%s, %d: bitfieldtype_ok = true",
   1342 	    curr_pos.p_file, curr_pos.p_line);
   1343 	bitfieldtype_ok = true;
   1344 }
   1345 
   1346 /*
   1347  * PROTOLIB in conjunction with LINTLIBRARY can be used to handle
   1348  * prototypes like function definitions. This is done if the argument
   1349  * to PROTOLIB is nonzero. Otherwise prototypes are handled normally.
   1350  */
   1351 void
   1352 protolib(int n)
   1353 {
   1354 
   1355 	if (dcs->d_ctx != EXTERN) {
   1356 		/* must be outside function: ** %s ** */
   1357 		warning(280, "PROTOLIB");
   1358 		return;
   1359 	}
   1360 	plibflg = n != 0;
   1361 }
   1362 
   1363 /* The next statement/declaration may use "long long" without a diagnostic. */
   1364 /* ARGSUSED */
   1365 void
   1366 longlong(int n)
   1367 {
   1368 
   1369 	quadflg = true;
   1370 }
   1371