mirror of
https://github.com/rn10950/RetroZilla.git
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551 lines
17 KiB
C
551 lines
17 KiB
C
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/*
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* This file essentially replicates NSPR's source for the functions that
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* map system-specific error codes to NSPR error codes. We would use
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* NSPR's functions, instead of duplicating them, but they're private.
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* As long as SSL's server session cache code must do platform native I/O
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* to accomplish its job, and NSPR's error mapping functions remain private,
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* this code will continue to need to be replicated.
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*
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* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is the Netscape security libraries.
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*
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* The Initial Developer of the Original Code is
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* Netscape Communications Corporation.
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* Portions created by the Initial Developer are Copyright (C) 1994-2000
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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/* $Id: unix_err.c,v 1.8 2004/04/27 23:04:39 gerv%gerv.net Exp $ */
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#if 0
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#include "primpl.h"
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#else
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#define _PR_POLL_AVAILABLE 1
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#include "prerror.h"
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#endif
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#if defined (__bsdi__) || defined(NTO) || defined(DARWIN) || defined(BEOS)
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#undef _PR_POLL_AVAILABLE
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#endif
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#if defined(_PR_POLL_AVAILABLE)
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#include <poll.h>
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#endif
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#include <errno.h>
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/* forward declarations. */
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void nss_MD_unix_map_default_error(int err);
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void nss_MD_unix_map_opendir_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_closedir_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_BAD_DESCRIPTOR_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_readdir_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ENOENT: prError = PR_NO_MORE_FILES_ERROR; break;
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#ifdef EOVERFLOW
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case EOVERFLOW: prError = PR_IO_ERROR; break;
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#endif
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case EINVAL: prError = PR_IO_ERROR; break;
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case ENXIO: prError = PR_IO_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_unlink_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EPERM: prError = PR_IS_DIRECTORY_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_stat_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_fstat_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_rename_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EEXIST: prError = PR_DIRECTORY_NOT_EMPTY_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_access_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_mkdir_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_rmdir_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EEXIST: prError = PR_DIRECTORY_NOT_EMPTY_ERROR; break;
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case EINVAL: prError = PR_DIRECTORY_NOT_EMPTY_ERROR; break;
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_read_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_INVALID_METHOD_ERROR; break;
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case ENXIO: prError = PR_INVALID_ARGUMENT_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_write_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_INVALID_METHOD_ERROR; break;
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case ENXIO: prError = PR_INVALID_METHOD_ERROR; break;
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_lseek_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_fsync_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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case EINVAL: prError = PR_INVALID_METHOD_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_close_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_socket_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_socketavailable_error(int err)
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{
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PR_SetError(PR_BAD_DESCRIPTOR_ERROR, err);
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}
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void nss_MD_unix_map_recv_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_recvfrom_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_send_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_sendto_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_writev_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_accept_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ENODEV: prError = PR_NOT_TCP_SOCKET_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_connect_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EACCES: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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#if defined(UNIXWARE) || defined(SNI) || defined(NEC)
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/*
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* On some platforms, if we connect to a port on the local host
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* (the loopback address) that no process is listening on, we get
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* EIO instead of ECONNREFUSED.
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*/
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case EIO: prError = PR_CONNECT_REFUSED_ERROR; break;
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#endif
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case ELOOP: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case ENOENT: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case ENXIO: prError = PR_IO_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_bind_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_SOCKET_ADDRESS_IS_BOUND_ERROR; break;
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/*
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* UNIX domain sockets are not supported in NSPR
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*/
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case EIO: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case EISDIR: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case ELOOP: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case ENOENT: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case ENOTDIR: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case EROFS: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_listen_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_shutdown_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_socketpair_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_getsockname_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_getpeername_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_getsockopt_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_BUFFER_OVERFLOW_ERROR; break;
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_setsockopt_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_BUFFER_OVERFLOW_ERROR; break;
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_open_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EAGAIN: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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case EBUSY: prError = PR_IO_ERROR; break;
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case ENODEV: prError = PR_FILE_NOT_FOUND_ERROR; break;
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case ENOMEM: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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case ETIMEDOUT: prError = PR_REMOTE_FILE_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_mmap_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EAGAIN: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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case EMFILE: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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case ENODEV: prError = PR_OPERATION_NOT_SUPPORTED_ERROR; break;
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case ENXIO: prError = PR_INVALID_ARGUMENT_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_gethostname_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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void nss_MD_unix_map_select_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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#ifdef _PR_POLL_AVAILABLE
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void nss_MD_unix_map_poll_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EAGAIN: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_poll_revents_error(int err)
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{
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if (err & POLLNVAL)
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PR_SetError(PR_BAD_DESCRIPTOR_ERROR, EBADF);
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else if (err & POLLHUP)
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PR_SetError(PR_CONNECT_RESET_ERROR, EPIPE);
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else if (err & POLLERR)
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PR_SetError(PR_IO_ERROR, EIO);
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else
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PR_SetError(PR_UNKNOWN_ERROR, err);
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}
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#endif /* _PR_POLL_AVAILABLE */
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void nss_MD_unix_map_flock_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EINVAL: prError = PR_BAD_DESCRIPTOR_ERROR; break;
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case EWOULDBLOCK: prError = PR_FILE_IS_LOCKED_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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void nss_MD_unix_map_lockf_error(int err)
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{
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PRErrorCode prError;
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switch (err) {
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case EACCES: prError = PR_FILE_IS_LOCKED_ERROR; break;
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case EDEADLK: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
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default: nss_MD_unix_map_default_error(err); return;
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}
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PR_SetError(prError, err);
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}
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#ifdef HPUX11
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void nss_MD_hpux_map_sendfile_error(int err)
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{
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nss_MD_unix_map_default_error(err);
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}
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#endif /* HPUX11 */
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void nss_MD_unix_map_default_error(int err)
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{
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PRErrorCode prError;
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switch (err ) {
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case EACCES: prError = PR_NO_ACCESS_RIGHTS_ERROR; break;
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case EADDRINUSE: prError = PR_ADDRESS_IN_USE_ERROR; break;
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case EADDRNOTAVAIL: prError = PR_ADDRESS_NOT_AVAILABLE_ERROR; break;
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case EAFNOSUPPORT: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
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case EAGAIN: prError = PR_WOULD_BLOCK_ERROR; break;
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/*
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* On QNX and Neutrino, EALREADY is defined as EBUSY.
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*/
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#if EALREADY != EBUSY
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case EALREADY: prError = PR_ALREADY_INITIATED_ERROR; break;
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#endif
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case EBADF: prError = PR_BAD_DESCRIPTOR_ERROR; break;
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#ifdef EBADMSG
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case EBADMSG: prError = PR_IO_ERROR; break;
|
|
#endif
|
|
case EBUSY: prError = PR_FILESYSTEM_MOUNTED_ERROR; break;
|
|
case ECONNREFUSED: prError = PR_CONNECT_REFUSED_ERROR; break;
|
|
case ECONNRESET: prError = PR_CONNECT_RESET_ERROR; break;
|
|
case EDEADLK: prError = PR_DEADLOCK_ERROR; break;
|
|
#ifdef EDIRCORRUPTED
|
|
case EDIRCORRUPTED: prError = PR_DIRECTORY_CORRUPTED_ERROR; break;
|
|
#endif
|
|
#ifdef EDQUOT
|
|
case EDQUOT: prError = PR_NO_DEVICE_SPACE_ERROR; break;
|
|
#endif
|
|
case EEXIST: prError = PR_FILE_EXISTS_ERROR; break;
|
|
case EFAULT: prError = PR_ACCESS_FAULT_ERROR; break;
|
|
case EFBIG: prError = PR_FILE_TOO_BIG_ERROR; break;
|
|
case EINPROGRESS: prError = PR_IN_PROGRESS_ERROR; break;
|
|
case EINTR: prError = PR_PENDING_INTERRUPT_ERROR; break;
|
|
case EINVAL: prError = PR_INVALID_ARGUMENT_ERROR; break;
|
|
case EIO: prError = PR_IO_ERROR; break;
|
|
case EISCONN: prError = PR_IS_CONNECTED_ERROR; break;
|
|
case EISDIR: prError = PR_IS_DIRECTORY_ERROR; break;
|
|
case ELOOP: prError = PR_LOOP_ERROR; break;
|
|
case EMFILE: prError = PR_PROC_DESC_TABLE_FULL_ERROR; break;
|
|
case EMLINK: prError = PR_MAX_DIRECTORY_ENTRIES_ERROR; break;
|
|
case EMSGSIZE: prError = PR_INVALID_ARGUMENT_ERROR; break;
|
|
#ifdef EMULTIHOP
|
|
case EMULTIHOP: prError = PR_REMOTE_FILE_ERROR; break;
|
|
#endif
|
|
case ENAMETOOLONG: prError = PR_NAME_TOO_LONG_ERROR; break;
|
|
case ENETUNREACH: prError = PR_NETWORK_UNREACHABLE_ERROR; break;
|
|
case ENFILE: prError = PR_SYS_DESC_TABLE_FULL_ERROR; break;
|
|
#if !defined(SCO)
|
|
case ENOBUFS: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
|
|
#endif
|
|
case ENODEV: prError = PR_FILE_NOT_FOUND_ERROR; break;
|
|
case ENOENT: prError = PR_FILE_NOT_FOUND_ERROR; break;
|
|
case ENOLCK: prError = PR_FILE_IS_LOCKED_ERROR; break;
|
|
#ifdef ENOLINK
|
|
case ENOLINK: prError = PR_REMOTE_FILE_ERROR; break;
|
|
#endif
|
|
case ENOMEM: prError = PR_OUT_OF_MEMORY_ERROR; break;
|
|
case ENOPROTOOPT: prError = PR_INVALID_ARGUMENT_ERROR; break;
|
|
case ENOSPC: prError = PR_NO_DEVICE_SPACE_ERROR; break;
|
|
#ifdef ENOSR
|
|
case ENOSR: prError = PR_INSUFFICIENT_RESOURCES_ERROR; break;
|
|
#endif
|
|
case ENOTCONN: prError = PR_NOT_CONNECTED_ERROR; break;
|
|
case ENOTDIR: prError = PR_NOT_DIRECTORY_ERROR; break;
|
|
case ENOTSOCK: prError = PR_NOT_SOCKET_ERROR; break;
|
|
case ENXIO: prError = PR_FILE_NOT_FOUND_ERROR; break;
|
|
case EOPNOTSUPP: prError = PR_NOT_TCP_SOCKET_ERROR; break;
|
|
#ifdef EOVERFLOW
|
|
case EOVERFLOW: prError = PR_BUFFER_OVERFLOW_ERROR; break;
|
|
#endif
|
|
case EPERM: prError = PR_NO_ACCESS_RIGHTS_ERROR; break;
|
|
case EPIPE: prError = PR_CONNECT_RESET_ERROR; break;
|
|
#ifdef EPROTO
|
|
case EPROTO: prError = PR_IO_ERROR; break;
|
|
#endif
|
|
case EPROTONOSUPPORT: prError = PR_PROTOCOL_NOT_SUPPORTED_ERROR; break;
|
|
case EPROTOTYPE: prError = PR_ADDRESS_NOT_SUPPORTED_ERROR; break;
|
|
case ERANGE: prError = PR_INVALID_METHOD_ERROR; break;
|
|
case EROFS: prError = PR_READ_ONLY_FILESYSTEM_ERROR; break;
|
|
case ESPIPE: prError = PR_INVALID_METHOD_ERROR; break;
|
|
case ETIMEDOUT: prError = PR_IO_TIMEOUT_ERROR; break;
|
|
#if EWOULDBLOCK != EAGAIN
|
|
case EWOULDBLOCK: prError = PR_WOULD_BLOCK_ERROR; break;
|
|
#endif
|
|
case EXDEV: prError = PR_NOT_SAME_DEVICE_ERROR; break;
|
|
|
|
default: prError = PR_UNKNOWN_ERROR; break;
|
|
}
|
|
PR_SetError(prError, err);
|
|
}
|