parser.c 53.3 KB
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/*
 * Copyright (C) 2000, 2001  Internet Software Consortium.
 *
 * Permission to use, copy, modify, and distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND INTERNET SOFTWARE CONSORTIUM
 * DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL
 * INTERNET SOFTWARE CONSORTIUM BE LIABLE FOR ANY SPECIAL, DIRECT,
 * INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING
 * FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT,
 * NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION
 * WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 */

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/* $Id: parser.c,v 1.97 2002/01/04 05:42:12 marka Exp $ */
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#include <config.h>

#include <isc/buffer.h>
#include <isc/dir.h>
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#include <isc/formatcheck.h>
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#include <isc/lex.h>
#include <isc/log.h>
#include <isc/mem.h>
#include <isc/net.h>
#include <isc/netaddr.h>
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#include <isc/print.h>
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#include <isc/string.h>
#include <isc/sockaddr.h>
#include <isc/util.h>
#include <isc/symtab.h>

#include <isccfg/cfg.h>
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#include <isccfg/grammar.h>
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#include <isccfg/log.h>
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/* Shorthand */
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#define CAT CFG_LOGCATEGORY_CONFIG
#define MOD CFG_LOGMODULE_PARSER
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#define MAP_SYM 1 	/* Unique type for isc_symtab */

/* Check a return value. */
#define CHECK(op) 						\
     	do { result = (op); 					\
		if (result != ISC_R_SUCCESS) goto cleanup; 	\
	} while (0)

/* Clean up a configuration object if non-NULL. */
#define CLEANUP_OBJ(obj) \
	do { if ((obj) != NULL) cfg_obj_destroy(pctx, &(obj)); } while (0)


/*
 * Forward declarations of static functions.
 */

static void
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free_tuple(cfg_parser_t *pctx, cfg_obj_t *obj);
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static isc_result_t
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parse_list(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret);
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static void
print_list(cfg_printer_t *pctx, cfg_obj_t *obj);

static void
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free_list(cfg_parser_t *pctx, cfg_obj_t *obj);
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static isc_result_t
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create_listelt(cfg_parser_t *pctx, cfg_listelt_t **eltp);
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static isc_result_t
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create_string(cfg_parser_t *pctx, const char *contents, const cfg_type_t *type,
	      cfg_obj_t **ret);
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static void
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free_string(cfg_parser_t *pctx, cfg_obj_t *obj);
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static isc_result_t
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create_map(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **objp);
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static void
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free_map(cfg_parser_t *pctx, cfg_obj_t *obj);
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static isc_result_t
parse_symtab_elt(cfg_parser_t *pctx, const char *name,
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		 cfg_type_t *elttype, isc_symtab_t *symtab,
		 isc_boolean_t callback);
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static void
free_noop(cfg_parser_t *pctx, cfg_obj_t *obj);

static isc_result_t
cfg_getstringtoken(cfg_parser_t *pctx);

static void
parser_complain(cfg_parser_t *pctx, isc_boolean_t is_warning,
		unsigned int flags, const char *format, va_list args);

/*
 * Data representations.  These correspond to members of the
 * "value" union in struct cfg_obj (except "void", which does
 * not need a union member).
 */
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cfg_rep_t cfg_rep_uint32 = { "uint32", free_noop };
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cfg_rep_t cfg_rep_uint64 = { "uint64", free_noop };
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cfg_rep_t cfg_rep_string = { "string", free_string };
cfg_rep_t cfg_rep_boolean = { "boolean", free_noop };
cfg_rep_t cfg_rep_map = { "map", free_map };
cfg_rep_t cfg_rep_list = { "list", free_list };
cfg_rep_t cfg_rep_tuple = { "tuple", free_tuple };
cfg_rep_t cfg_rep_sockaddr = { "sockaddr", free_noop };
cfg_rep_t cfg_rep_netprefix = { "netprefix", free_noop };
cfg_rep_t cfg_rep_void = { "void", free_noop };

/*
 * Configuration type definitions.
 */

/*
 * An implicit list.  These are formed by clauses that occur multiple times.
 */
static cfg_type_t cfg_type_implicitlist = {
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	"implicitlist", NULL, print_list, NULL, &cfg_rep_list, NULL };
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/* Functions. */

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void
cfg_print_obj(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	obj->type->print(pctx, obj);
}

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void
cfg_print_chars(cfg_printer_t *pctx, const char *text, int len) {
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	pctx->f(pctx->closure, text, len);
}

static void
print_open(cfg_printer_t *pctx) {
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	cfg_print_chars(pctx, "{\n", 2);
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	pctx->indent++;
}

static void
print_indent(cfg_printer_t *pctx) {
	int indent = pctx->indent;
	while (indent > 0) {
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		cfg_print_chars(pctx, "\t", 1);
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		indent--;
	}
}

static void
print_close(cfg_printer_t *pctx) {
	pctx->indent--;
	print_indent(pctx);
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	cfg_print_chars(pctx, "}", 1);
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}

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isc_result_t
cfg_parse_obj(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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Andreas Gustafsson committed
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	isc_result_t result;
	INSIST(ret != NULL && *ret == NULL);
	result = type->parse(pctx, type, ret);
	if (result != ISC_R_SUCCESS)
		return (result);
	INSIST(*ret != NULL);
	return (ISC_R_SUCCESS);
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}

void
cfg_print(cfg_obj_t *obj,
	  void (*f)(void *closure, const char *text, int textlen),
	  void *closure)
{
	cfg_printer_t pctx;
	pctx.f = f;
	pctx.closure = closure;
	pctx.indent = 0;
	obj->type->print(&pctx, obj);
}

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/* Tuples. */
  
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isc_result_t
cfg_create_tuple(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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	isc_result_t result;
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	const cfg_tuplefielddef_t *fields = type->of;
	const cfg_tuplefielddef_t *f;
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	cfg_obj_t *obj = NULL;
	unsigned int nfields = 0;
	int i;
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	for (f = fields; f->name != NULL; f++)
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		nfields++;

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	CHECK(cfg_create_obj(pctx, type, &obj));
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	obj->value.tuple = isc_mem_get(pctx->mctx,
				       nfields * sizeof(cfg_obj_t *));
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	if (obj->value.tuple == NULL) {
		result = ISC_R_NOMEMORY;
		goto cleanup;
	}
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	for (f = fields, i = 0; f->name != NULL; f++, i++)
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		obj->value.tuple[i] = NULL;
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	*ret = obj;
	return (ISC_R_SUCCESS);

 cleanup:
	CLEANUP_OBJ(obj);
	return (result);
}

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isc_result_t
cfg_parse_tuple(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret)
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{
	isc_result_t result;
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	const cfg_tuplefielddef_t *fields = type->of;
	const cfg_tuplefielddef_t *f;
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	cfg_obj_t *obj = NULL;
	unsigned int i;
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	CHECK(cfg_create_tuple(pctx, type, &obj));
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	for (f = fields, i = 0; f->name != NULL; f++, i++)
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		CHECK(cfg_parse_obj(pctx, f->type, &obj->value.tuple[i]));
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	*ret = obj;
	return (ISC_R_SUCCESS);

 cleanup:
	CLEANUP_OBJ(obj);
	return (result);
}

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void
cfg_print_tuple(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	unsigned int i;
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	const cfg_tuplefielddef_t *fields = obj->type->of;
	const cfg_tuplefielddef_t *f;
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	isc_boolean_t need_space = ISC_FALSE;
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	for (f = fields, i = 0; f->name != NULL; f++, i++) {
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		cfg_obj_t *fieldobj = obj->value.tuple[i];
		if (need_space)
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			cfg_print_chars(pctx, " ", 1);
		cfg_print_obj(pctx, fieldobj);
		need_space = ISC_TF(fieldobj->type->print != cfg_print_void);
	}
}

void
cfg_doc_tuple(cfg_printer_t *pctx, const cfg_type_t *type) {
	const cfg_tuplefielddef_t *fields = type->of;
	const cfg_tuplefielddef_t *f;
	isc_boolean_t need_space = ISC_FALSE;

	for (f = fields; f->name != NULL; f++) {
		if (need_space)
			cfg_print_chars(pctx, " ", 1);
		cfg_doc_obj(pctx, f->type);
		need_space = ISC_TF(f->type->print != cfg_print_void);
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	}
}

static void
free_tuple(cfg_parser_t *pctx, cfg_obj_t *obj) {
	unsigned int i;
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	const cfg_tuplefielddef_t *fields = obj->type->of;
	const cfg_tuplefielddef_t *f;
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	unsigned int nfields = 0;

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	if (obj->value.tuple == NULL)
		return;

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	for (f = fields, i = 0; f->name != NULL; f++, i++) {
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		CLEANUP_OBJ(obj->value.tuple[i]);
		nfields++;
	}
	isc_mem_put(pctx->mctx, obj->value.tuple,
		    nfields * sizeof(cfg_obj_t *));
}

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isc_boolean_t
cfg_obj_istuple(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_tuple));
}

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cfg_obj_t *
cfg_tuple_get(cfg_obj_t *tupleobj, const char* name) {
	unsigned int i;
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	const cfg_tuplefielddef_t *fields;
	const cfg_tuplefielddef_t *f;
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	REQUIRE(tupleobj != NULL && tupleobj->type->rep == &cfg_rep_tuple);

	fields = tupleobj->type->of;
	for (f = fields, i = 0; f->name != NULL; f++, i++) {
		if (strcmp(f->name, name) == 0)
			return (tupleobj->value.tuple[i]);
	}
	INSIST(0);
	return (NULL);
}

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isc_result_t
cfg_parse_special(cfg_parser_t *pctx, int special) {
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        isc_result_t result;
	CHECK(cfg_gettoken(pctx, 0));
	if (pctx->token.type == isc_tokentype_special &&
	    pctx->token.value.as_char == special)
		return (ISC_R_SUCCESS);

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	cfg_parser_error(pctx, CFG_LOG_NEAR, "'%c' expected", special);
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	return (ISC_R_UNEXPECTEDTOKEN);
 cleanup:
	return (result);
}

/*
 * Parse a required semicolon.  If it is not there, log
 * an error and increment the error count but continue
 * parsing.  Since the next token is pushed back,
 * care must be taken to make sure it is eventually
 * consumed or an infinite loop may result.
 */
static isc_result_t
parse_semicolon(cfg_parser_t *pctx) {
        isc_result_t result;
	CHECK(cfg_gettoken(pctx, 0));
	if (pctx->token.type == isc_tokentype_special &&
	    pctx->token.value.as_char == ';')
		return (ISC_R_SUCCESS);

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	cfg_parser_error(pctx, CFG_LOG_BEFORE, "missing ';'");
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	cfg_ungettoken(pctx);
 cleanup:
	return (result);
}

/*
 * Parse EOF, logging and returning an error if not there.
 */
static isc_result_t
parse_eof(cfg_parser_t *pctx) {
        isc_result_t result;
	CHECK(cfg_gettoken(pctx, 0));

	if (pctx->token.type == isc_tokentype_eof)
		return (ISC_R_SUCCESS);

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	cfg_parser_error(pctx, CFG_LOG_NEAR, "syntax error");
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	return (ISC_R_UNEXPECTEDTOKEN);
 cleanup:
	return(result);
}

/* A list of files, used internally for pctx->files. */
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static cfg_type_t cfg_type_filelist = {
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	"filelist", NULL, print_list, NULL, &cfg_rep_list,
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	&cfg_type_qstring
};

isc_result_t
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cfg_parser_create(isc_mem_t *mctx, isc_log_t *lctx, cfg_parser_t **ret) {
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	isc_result_t result;
	cfg_parser_t *pctx;
	isc_lexspecials_t specials;

	REQUIRE(mctx != NULL);
	REQUIRE(ret != NULL && *ret == NULL);

	pctx = isc_mem_get(mctx, sizeof(*pctx));
	if (pctx == NULL)
		return (ISC_R_NOMEMORY);

	pctx->mctx = mctx;
	pctx->lctx = lctx;
	pctx->lexer = NULL;
	pctx->seen_eof = ISC_FALSE;
	pctx->ungotten = ISC_FALSE;
	pctx->errors = 0;
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	pctx->open_files = NULL;
	pctx->closed_files = NULL;
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	pctx->line = 0;
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	pctx->callback = NULL;
	pctx->callbackarg = NULL;
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	memset(specials, 0, sizeof(specials));
	specials['{'] = 1;
	specials['}'] = 1;
	specials[';'] = 1;
	specials['/'] = 1;
	specials['"'] = 1;
	specials['!'] = 1;

	CHECK(isc_lex_create(pctx->mctx, 1024, &pctx->lexer));

	isc_lex_setspecials(pctx->lexer, specials);
	isc_lex_setcomments(pctx->lexer, (ISC_LEXCOMMENT_C |
					 ISC_LEXCOMMENT_CPLUSPLUS |
					 ISC_LEXCOMMENT_SHELL));

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	CHECK(cfg_create_list(pctx, &cfg_type_filelist, &pctx->open_files));
	CHECK(cfg_create_list(pctx, &cfg_type_filelist, &pctx->closed_files));
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	*ret = pctx;
	return (ISC_R_SUCCESS);

 cleanup:
	if (pctx->lexer != NULL)
		isc_lex_destroy(&pctx->lexer);
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	CLEANUP_OBJ(pctx->open_files);
	CLEANUP_OBJ(pctx->closed_files);
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	isc_mem_put(mctx, pctx, sizeof(*pctx));
	return (result);
}

static isc_result_t
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parser_openfile(cfg_parser_t *pctx, const char *filename) {
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	isc_result_t result;
	cfg_listelt_t *elt = NULL;
	cfg_obj_t *stringobj = NULL;

	result = isc_lex_openfile(pctx->lexer, filename);
	if (result != ISC_R_SUCCESS) {
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		cfg_parser_error(pctx, 0, "open: %s: %s",
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			     filename, isc_result_totext(result));
		goto cleanup;
	}

	CHECK(create_string(pctx, filename, &cfg_type_qstring, &stringobj));
	CHECK(create_listelt(pctx, &elt));
	elt->obj = stringobj;
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	ISC_LIST_APPEND(pctx->open_files->value.list, elt, link);
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	return (ISC_R_SUCCESS);
 cleanup:
	CLEANUP_OBJ(stringobj);
	return (result);
}

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void
cfg_parser_setcallback(cfg_parser_t *pctx,
		       cfg_parsecallback_t callback,
		       void *arg)
{
	pctx->callback = callback;
	pctx->callbackarg = arg;
}

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/*
 * Parse a configuration using a pctx where a lexer has already
 * been set up with a source.
 */
static isc_result_t
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parse2(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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	isc_result_t result;
	cfg_obj_t *obj = NULL;

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	result = cfg_parse_obj(pctx, type, &obj);
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	if (pctx->errors != 0) {
		/* Errors have been logged. */
		if (result == ISC_R_SUCCESS)
			result = ISC_R_FAILURE;
		goto cleanup;
	}

	if (result != ISC_R_SUCCESS) {
		/* Parsing failed but no errors have been logged. */
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		cfg_parser_error(pctx, 0, "parsing failed");
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		goto cleanup;
	}

	CHECK(parse_eof(pctx));

	*ret = obj;
	return (ISC_R_SUCCESS);

 cleanup:
	CLEANUP_OBJ(obj);
	return (result);
}

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isc_result_t
cfg_parse_file(cfg_parser_t *pctx, const char *filename,
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	       const cfg_type_t *type, cfg_obj_t **ret)
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{
	isc_result_t result;

	REQUIRE(filename != NULL);

	CHECK(parser_openfile(pctx, filename));
	CHECK(parse2(pctx, type, ret));
 cleanup:
	return (result);
}


isc_result_t
cfg_parse_buffer(cfg_parser_t *pctx, isc_buffer_t *buffer,
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	const cfg_type_t *type, cfg_obj_t **ret)
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{
	isc_result_t result;
	REQUIRE(buffer != NULL);
	CHECK(isc_lex_openbuffer(pctx->lexer, buffer));	
	CHECK(parse2(pctx, type, ret));
 cleanup:
	return (result);
}

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void
cfg_parser_destroy(cfg_parser_t **pctxp) {
	cfg_parser_t *pctx = *pctxp;
	isc_lex_destroy(&pctx->lexer);
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	/*
	 * Cleaning up open_files does not
	 * close the files; that was already done
	 * by closing the lexer.
	 */
	CLEANUP_OBJ(pctx->open_files);
	CLEANUP_OBJ(pctx->closed_files);
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	isc_mem_put(pctx->mctx, pctx, sizeof(*pctx));
	*pctxp = NULL;
}

/*
 * void
 */
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isc_result_t
cfg_parse_void(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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	UNUSED(type);
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	return (cfg_create_obj(pctx, &cfg_type_void, ret));
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}

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void
cfg_print_void(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	UNUSED(pctx);
	UNUSED(obj);
}
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void
cfg_doc_void(cfg_printer_t *pctx, const cfg_type_t *type) {
	UNUSED(pctx);
	UNUSED(type);
}

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isc_boolean_t
cfg_obj_isvoid(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_void));
}

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cfg_type_t cfg_type_void = {
	"void", cfg_parse_void, cfg_print_void, cfg_doc_void, &cfg_rep_void,
	NULL };
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/*
 * uint32
 */
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isc_result_t
cfg_parse_uint32(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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        isc_result_t result;
	cfg_obj_t *obj = NULL;
	UNUSED(type);

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	CHECK(cfg_gettoken(pctx, ISC_LEXOPT_NUMBER | ISC_LEXOPT_CNUMBER));
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	if (pctx->token.type != isc_tokentype_number) {
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		cfg_parser_error(pctx, CFG_LOG_NEAR, "expected number");
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		return (ISC_R_UNEXPECTEDTOKEN);
	}

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	CHECK(cfg_create_obj(pctx, &cfg_type_uint32, &obj));
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	obj->value.uint32 = pctx->token.value.as_ulong;
	*ret = obj;
 cleanup:
	return (result);
}

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void
cfg_print_cstr(cfg_printer_t *pctx, const char *s) {
	cfg_print_chars(pctx, s, strlen(s));
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}

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void
cfg_print_rawuint(cfg_printer_t *pctx, unsigned int u) {
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	char buf[32];
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	snprintf(buf, sizeof(buf), "%u", u);
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	cfg_print_cstr(pctx, buf);
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}

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void
cfg_print_uint32(cfg_printer_t *pctx, cfg_obj_t *obj) {
	cfg_print_rawuint(pctx, obj->value.uint32);
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}

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isc_boolean_t
cfg_obj_isuint32(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_uint32));
}

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isc_uint32_t
cfg_obj_asuint32(cfg_obj_t *obj) {
	REQUIRE(obj != NULL && obj->type->rep == &cfg_rep_uint32);
	return (obj->value.uint32);
}

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cfg_type_t cfg_type_uint32 = {
	"integer", cfg_parse_uint32, cfg_print_uint32, cfg_doc_terminal,
	&cfg_rep_uint32, NULL
};
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/*
 * uint64
 */
isc_boolean_t
cfg_obj_isuint64(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_uint64));
}

isc_uint64_t
cfg_obj_asuint64(cfg_obj_t *obj) {
	REQUIRE(obj != NULL && obj->type->rep == &cfg_rep_uint64);
	return (obj->value.uint64);
}

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void
cfg_print_uint64(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	char buf[32];
	sprintf(buf, "%" ISC_PRINT_QUADFORMAT "u", obj->value.uint64);
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	cfg_print_cstr(pctx, buf);
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}

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cfg_type_t cfg_type_uint64 = {
	"64_bit_integer", NULL, cfg_print_uint64, cfg_doc_terminal,
	&cfg_rep_uint64, NULL
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};

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/*
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 * qstring (quoted string), ustring (unquoted string), astring
 * (any string)
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 */

/* Create a string object from a null-terminated C string. */
static isc_result_t
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create_string(cfg_parser_t *pctx, const char *contents, const cfg_type_t *type,
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	      cfg_obj_t **ret)
{
	isc_result_t result;
	cfg_obj_t *obj = NULL;
	int len;

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	CHECK(cfg_create_obj(pctx, type, &obj));
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	len = strlen(contents);
	obj->value.string.length = len;
	obj->value.string.base = isc_mem_get(pctx->mctx, len + 1);
	if (obj->value.string.base == 0) {
		CLEANUP_OBJ(obj);
		return (ISC_R_NOMEMORY);
	}
	memcpy(obj->value.string.base, contents, len);
	obj->value.string.base[len] = '\0';

	*ret = obj;
 cleanup:
	return (result);
}

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isc_result_t
cfg_parse_qstring(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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        isc_result_t result;
	UNUSED(type);

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	CHECK(cfg_gettoken(pctx, CFG_LEXOPT_QSTRING));
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	if (pctx->token.type != isc_tokentype_qstring) {
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		cfg_parser_error(pctx, CFG_LOG_NEAR, "expected quoted string");
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		return (ISC_R_UNEXPECTEDTOKEN);
	}
	return (create_string(pctx,
			      pctx->token.value.as_pointer,
			      &cfg_type_qstring,
			      ret));
 cleanup:
	return (result);
}

static isc_result_t
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parse_ustring(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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        isc_result_t result;
	UNUSED(type);

	CHECK(cfg_gettoken(pctx, 0));
	if (pctx->token.type != isc_tokentype_string) {
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		cfg_parser_error(pctx, CFG_LOG_NEAR, "expected unquoted string");
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		return (ISC_R_UNEXPECTEDTOKEN);
	}
	return (create_string(pctx,
			      pctx->token.value.as_pointer,
			      &cfg_type_ustring,
			      ret));
 cleanup:
	return (result);
}

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isc_result_t
cfg_parse_astring(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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        isc_result_t result;
	UNUSED(type);

	CHECK(cfg_getstringtoken(pctx));
	return (create_string(pctx,
			      pctx->token.value.as_pointer,
			      &cfg_type_qstring,
			      ret));
 cleanup:
	return (result);
}

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isc_boolean_t
cfg_is_enum(const char *s, const char *const *enums) {
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	const char * const *p;
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	for (p = enums; *p != NULL; p++) {
		if (strcasecmp(*p, s) == 0)
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			return (ISC_TRUE);
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	}
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	return (ISC_FALSE);
}

static isc_result_t
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check_enum(cfg_parser_t *pctx, cfg_obj_t *obj, const char *const *enums) {
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	const char *s = obj->value.string.base;
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	if (cfg_is_enum(s, enums))
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		return (ISC_R_SUCCESS);
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	cfg_parser_error(pctx, 0, "'%s' unexpected", s);
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	return (ISC_R_UNEXPECTEDTOKEN);
}

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isc_result_t
cfg_parse_enum(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret) {
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        isc_result_t result;
	cfg_obj_t *obj = NULL;
	CHECK(parse_ustring(pctx, NULL, &obj));
	CHECK(check_enum(pctx, obj, type->of));
	*ret = obj;
	return (ISC_R_SUCCESS);
 cleanup:
	CLEANUP_OBJ(obj);	
	return (result);
}

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void
cfg_doc_enum(cfg_printer_t *pctx, const cfg_type_t *type) {
	const char * const *p;
	cfg_print_chars(pctx, "( ", 2);
	for (p = type->of; *p != NULL; p++) {
		cfg_print_cstr(pctx, *p);
		if (p[1] != NULL)
			cfg_print_chars(pctx, " | ", 3);
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	}
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	cfg_print_chars(pctx, " )", 2);
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}

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void
cfg_print_ustring(cfg_printer_t *pctx, cfg_obj_t *obj) {
	cfg_print_chars(pctx, obj->value.string.base, obj->value.string.length);
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}

static void
print_qstring(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	cfg_print_chars(pctx, "\"", 1);
	cfg_print_ustring(pctx, obj);
	cfg_print_chars(pctx, "\"", 1);
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}

static void
free_string(cfg_parser_t *pctx, cfg_obj_t *obj) {
	isc_mem_put(pctx->mctx, obj->value.string.base,
		    obj->value.string.length + 1);
}

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isc_boolean_t
cfg_obj_isstring(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_string));
}

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char *
cfg_obj_asstring(cfg_obj_t *obj) {
	REQUIRE(obj != NULL && obj->type->rep == &cfg_rep_string);
	return (obj->value.string.base);
}

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/* Quoted string only */
cfg_type_t cfg_type_qstring = {
	"quoted_string", cfg_parse_qstring, print_qstring, cfg_doc_terminal,
	&cfg_rep_string, NULL
};

/* Unquoted string only */
cfg_type_t cfg_type_ustring = {
	"string", parse_ustring, cfg_print_ustring, cfg_doc_terminal,
	&cfg_rep_string, NULL
};

/* Any string (quoted or unquoted); printed with quotes */
cfg_type_t cfg_type_astring = {
	"string", cfg_parse_astring, print_qstring, cfg_doc_terminal,
	&cfg_rep_string, NULL
};

/*
 * Booleans
 */

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isc_boolean_t
cfg_obj_isboolean(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_boolean));
}

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isc_boolean_t
cfg_obj_asboolean(cfg_obj_t *obj) {
	REQUIRE(obj != NULL && obj->type->rep == &cfg_rep_boolean);
	return (obj->value.boolean);
}

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static isc_result_t
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parse_boolean(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret)
842
{
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        isc_result_t result;
	isc_boolean_t value;
	cfg_obj_t *obj = NULL;
	UNUSED(type);

	result = cfg_gettoken(pctx, 0);
	if (result != ISC_R_SUCCESS)
		return (result);

	if (pctx->token.type != isc_tokentype_string)
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		goto bad_boolean;
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	if ((strcasecmp(pctx->token.value.as_pointer, "true") == 0) ||
	    (strcasecmp(pctx->token.value.as_pointer, "yes") == 0) ||
	    (strcmp(pctx->token.value.as_pointer, "1") == 0)) {
		value = ISC_TRUE;
	} else if ((strcasecmp(pctx->token.value.as_pointer, "false") == 0) ||
		   (strcasecmp(pctx->token.value.as_pointer, "no") == 0) ||
		   (strcmp(pctx->token.value.as_pointer, "0") == 0)) {
		value = ISC_FALSE;
	} else {
		goto bad_boolean;
	}

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	CHECK(cfg_create_obj(pctx, &cfg_type_boolean, &obj));
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	obj->value.boolean = value;
	*ret = obj;
	return (result);

 bad_boolean:
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	cfg_parser_error(pctx, CFG_LOG_NEAR, "boolean expected");
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	return (ISC_R_UNEXPECTEDTOKEN);

 cleanup:
	return (result);
}

static void
print_boolean(cfg_printer_t *pctx, cfg_obj_t *obj) {
	if (obj->value.boolean)
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		cfg_print_chars(pctx, "yes", 3);
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	else
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		cfg_print_chars(pctx, "no", 2);
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}
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cfg_type_t cfg_type_boolean = {
	"boolean", parse_boolean, print_boolean, cfg_doc_terminal,
	&cfg_rep_boolean, NULL
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};

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/*
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 * Lists.
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 */

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isc_result_t
cfg_create_list(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **obj) {
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	isc_result_t result;
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	CHECK(cfg_create_obj(pctx, type, obj));
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	ISC_LIST_INIT((*obj)->value.list);
 cleanup:
	return (result);
}

static isc_result_t
create_listelt(cfg_parser_t *pctx, cfg_listelt_t **eltp) {
	cfg_listelt_t *elt;
	elt = isc_mem_get(pctx->mctx, sizeof(*elt));
	if (elt == NULL)
		return (ISC_R_NOMEMORY);
	elt->obj = NULL;
	ISC_LINK_INIT(elt, link);
	*eltp = elt;
	return (ISC_R_SUCCESS);
}

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static void
free_list_elt(cfg_parser_t *pctx, cfg_listelt_t *elt) {
	cfg_obj_destroy(pctx, &elt->obj);
	isc_mem_put(pctx->mctx, elt, sizeof(*elt));
}

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static void
free_list(cfg_parser_t *pctx, cfg_obj_t *obj) {
	cfg_listelt_t *elt, *next;
	for (elt = ISC_LIST_HEAD(obj->value.list);
	     elt != NULL;
	     elt = next)
	{
		next = ISC_LIST_NEXT(elt, link);
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		free_list_elt(pctx, elt);
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	}
}

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isc_result_t
cfg_parse_listelt(cfg_parser_t *pctx, const cfg_type_t *elttype,
		  cfg_listelt_t **ret)
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{
	isc_result_t result;
	cfg_listelt_t *elt = NULL;
	cfg_obj_t *value = NULL;

	CHECK(create_listelt(pctx, &elt));

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	result = cfg_parse_obj(pctx, elttype, &value);
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	if (result != ISC_R_SUCCESS)
		goto cleanup;

	elt->obj = value;

	*ret = elt;
	return (ISC_R_SUCCESS);

 cleanup:
	isc_mem_put(pctx->mctx, elt, sizeof(*elt));
	return (result);
}

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/*
 * Parse a homogeneous list whose elements are of type 'elttype'
 * and where each element is terminated by a semicolon.
 */
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static isc_result_t
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parse_list(cfg_parser_t *pctx, const cfg_type_t *listtype, cfg_obj_t **ret)
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{
	cfg_obj_t *listobj = NULL;
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	const cfg_type_t *listof = listtype->of;
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	isc_result_t result;

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	CHECK(cfg_create_list(pctx, listtype, &listobj));
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	for (;;) {
		cfg_listelt_t *elt = NULL;

		CHECK(cfg_peektoken(pctx, 0));
		if (pctx->token.type == isc_tokentype_special &&
		    pctx->token.value.as_char == '}')
			break;
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		CHECK(cfg_parse_listelt(pctx, listof, &elt));
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		CHECK(parse_semicolon(pctx));
		ISC_LIST_APPEND(listobj->value.list, elt, link);
	}
	*ret = listobj;
	return (ISC_R_SUCCESS);

 cleanup:
	CLEANUP_OBJ(listobj);
	return (result);
}

static void
print_list(cfg_printer_t *pctx, cfg_obj_t *obj) {
	cfg_list_t *list = &obj->value.list;
	cfg_listelt_t *elt;

	for (elt = ISC_LIST_HEAD(*list);
	     elt != NULL;
	     elt = ISC_LIST_NEXT(elt, link)) {
		print_indent(pctx);
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		cfg_print_obj(pctx, elt->obj);
		cfg_print_chars(pctx, ";\n", 2);
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	}
}

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isc_result_t
cfg_parse_bracketed_list(cfg_parser_t *pctx, const cfg_type_t *type,
		     cfg_obj_t **ret)
1009 1010
{
	isc_result_t result;
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	CHECK(cfg_parse_special(pctx, '{'));
1012
	CHECK(parse_list(pctx, type, ret));
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	CHECK(cfg_parse_special(pctx, '}'));
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 cleanup:
	return (result);
}

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void
cfg_print_bracketed_list(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	print_open(pctx);
	print_list(pctx, obj);
	print_close(pctx);
}

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void
cfg_doc_bracketed_list(cfg_printer_t *pctx, const cfg_type_t *type) {
	cfg_print_chars(pctx, "{ ", 2);
	cfg_doc_obj(pctx, type->of);
	cfg_print_chars(pctx, "; ... }", 7);
}

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/*
 * Parse a homogeneous list whose elements are of type 'elttype'
 * and where elements are separated by space.  The list ends
 * before the first semicolon.
 */
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isc_result_t
cfg_parse_spacelist(cfg_parser_t *pctx, const cfg_type_t *listtype,
		    cfg_obj_t **ret)
1040 1041
{
	cfg_obj_t *listobj = NULL;
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	const cfg_type_t *listof = listtype->of;
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	isc_result_t result;

1045
	CHECK(cfg_create_list(pctx, listtype, &listobj));
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	for (;;) {
		cfg_listelt_t *elt = NULL;

		CHECK(cfg_peektoken(pctx, 0));
		if (pctx->token.type == isc_tokentype_special &&
		    pctx->token.value.as_char == ';')
			break;
1054
		CHECK(cfg_parse_listelt(pctx, listof, &elt));
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		ISC_LIST_APPEND(listobj->value.list, elt, link);
	}
	*ret = listobj;
	return (ISC_R_SUCCESS);

 cleanup:
	CLEANUP_OBJ(listobj);
	return (result);
}

1065 1066
void
cfg_print_spacelist(cfg_printer_t *pctx, cfg_obj_t *obj) {
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	cfg_list_t *list = &obj->value.list;
	cfg_listelt_t *elt;

	for (elt = ISC_LIST_HEAD(*list);
	     elt != NULL;
	     elt = ISC_LIST_NEXT(elt, link)) {
1073
		cfg_print_obj(pctx, elt->obj);
1074
		if (ISC_LIST_NEXT(elt, link) != NULL)
1075
			cfg_print_chars(pctx, " ", 1);
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	}
}

1079

1080 1081 1082 1083 1084 1085
isc_boolean_t
cfg_obj_islist(cfg_obj_t *obj) {
	REQUIRE(obj != NULL);
	return (ISC_TF(obj->type->rep == &cfg_rep_list));
}

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cfg_listelt_t *
cfg_list_first(cfg_obj_t *obj) {
1088 1089 1090
	REQUIRE(obj == NULL || obj->type->rep == &cfg_rep_list);
	if (obj == NULL)
		return (NULL);
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	return (ISC_LIST_HEAD(obj->value.list));
}

cfg_listelt_t *
cfg_list_next(cfg_listelt_t *elt) {
	REQUIRE(elt != NULL);
	return (ISC_LIST_NEXT(elt, link));
}

cfg_obj_t *
cfg_listelt_value(cfg_listelt_t *elt) {
	REQUIRE(elt != NULL);
	return (elt->obj);
}

/*
 * Maps.
 */

1110 1111 1112 1113 1114 1115 1116 1117 1118 1119
/*
 * Parse a map body.  That's something like
 *
 *   "foo 1; bar { glub; }; zap true; zap false;"
 *
 * i.e., a sequence of option names followed by values and
 * terminated by semicolons.  Used for the top level of
 * the named.conf syntax, as well as for the body of the
 * options, view, zone, and other statements.
 */
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isc_result_t
cfg_parse_mapbody(cfg_parser_t *pctx, const cfg_type_t *type, cfg_obj_t **ret)
1122
{
1123
	const cfg_clausedef_t * const *clausesets = type->of;
1124
	isc_result_t result;
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	const cfg_clausedef_t * const *clauseset;
	const cfg_clausedef_t *clause;
1127
	cfg_obj_t *value = NULL;
1128
	cfg_obj_t *obj = NULL;
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	cfg_obj_t *eltobj = NULL;
	cfg_obj_t *includename = NULL;
	isc_symvalue_t symval;
	cfg_list_t *list = NULL;
1133

1134
	CHECK(create_map(pctx, type, &obj));
1135

1136
	obj->value.map.clausesets = clausesets;
1137

1138 1139
	for (;;) {
		cfg_listelt_t *elt;
1140

1141 1142 1143 1144 1145
	redo:
		/*
		 * Parse the option name and see if it is known.
		 */
		CHECK(cfg_gettoken(pctx, 0));
1146

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		if (pctx->token.type != isc_tokentype_string) {
			cfg_ungettoken(pctx);
			break;
		}
1151

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		/*
		 * We accept "include" statements wherever a map body
		 * clause can occur.
		 */
		if (strcasecmp(pctx->token.value.as_pointer, "include") == 0) {
			/*
			 * Turn the file name into a temporary configuration
			 * object just so that it is not overwritten by the
			 * semicolon token.
			 */
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			CHECK(cfg_parse_obj(pctx, &cfg_type_qstring, &includename));
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			CHECK(parse_semicolon(pctx));
			CHECK(parser_openfile(pctx, includename->
					      value.string.base));
			 cfg_obj_destroy(pctx, &includename);
			 goto redo;
		}
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		clause = NULL;
		for (clauseset = clausesets; *clauseset != NULL; clauseset++) {
			for (clause = *clauseset;
			     clause->name != NULL;
			     clause++) {
				if (strcasecmp(pctx->token.value.as_pointer,
					   clause->name) == 0)
					goto done;
			}
		}
	done:
		if (clause == NULL || clause->name == NULL) {
1182
			cfg_parser_error(pctx, CFG_LOG_NOPREP, "unknown option");
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			/*
			 * Try to recover by parsing this option as an unknown
			 * option and discarding it.
			 */
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			CHECK(cfg_parse_obj(pctx, &cfg_type_unsupported, &eltobj));
			cfg_obj_destroy(pctx, &eltobj);
			CHECK(parse_semicolon(pctx));
			continue;
1191
		}
1192

1193
		/* Clause is known. */
1194

1195 1196
		/* Issue warnings if appropriate */
		if ((clause->flags & CFG_CLAUSEFLAG_OBSOLETE) != 0)
1197
			cfg_parser_warning(pctx, 0, "option '%s' is obsolete",
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				       clause->name);
		if ((clause->flags & CFG_CLAUSEFLAG_NOTIMP) != 0)
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			cfg_parser_warning(pctx, 0, "option '%s' is "
1201
				       "not implemented", clause->name);
1202
		if ((clause->flags & CFG_CLAUSEFLAG_NYI) != 0)