blob: 8eff1c6425eb204366eaf144b72e691b3f59c805 [file] [log] [blame]
// Copyright (c) 2011 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "net/dns/dns_util.h"
#include <errno.h>
#include <limits.h>
#include <cstring>
#include "base/metrics/field_trial.h"
#include "base/metrics/histogram_macros.h"
#include "base/strings/string_number_conversions.h"
#include "base/strings/string_split.h"
#include "build/build_config.h"
#include "net/base/address_list.h"
#include "net/dns/dns_protocol.h"
namespace {
// RFC 1035, section 2.3.4: labels 63 octets or less.
// Section 3.1: Each label is represented as a one octet length field followed
// by that number of octets.
const int kMaxLabelLength = 63;
} // namespace
#if defined(OS_POSIX)
#include <netinet/in.h>
#if !defined(OS_NACL)
#include <net/if.h>
#if !defined(OS_ANDROID)
#include <ifaddrs.h>
#endif // !defined(OS_ANDROID)
#endif // !defined(OS_NACL)
#endif // defined(OS_POSIX)
#if defined(OS_ANDROID)
#include "net/android/network_library.h"
#endif
namespace net {
// Based on DJB's public domain code.
bool DNSDomainFromDot(const base::StringPiece& dotted, std::string* out) {
const char* buf = dotted.data();
size_t n = dotted.size();
char label[kMaxLabelLength];
size_t labellen = 0; /* <= sizeof label */
char name[dns_protocol::kMaxNameLength];
size_t namelen = 0; /* <= sizeof name */
char ch;
bool valid_name = true;
for (;;) {
if (!n)
break;
ch = *buf++;
--n;
if (ch == '.') {
// Don't allow empty labels per http://crbug.com/456391.
if (!labellen)
return false;
if (namelen + labellen + 1 > sizeof name)
return false;
name[namelen++] = static_cast<char>(labellen);
memcpy(name + namelen, label, labellen);
namelen += labellen;
labellen = 0;
continue;
}
if (labellen >= sizeof label)
return false;
if (!IsValidHostLabelCharacter(ch, labellen == 0)) {
// TODO(palmer): In the future, when we can remove support for invalid
// names, return false here instead (and remove the UMA counter).
valid_name = false;
}
label[labellen++] = ch;
}
UMA_HISTOGRAM_BOOLEAN("Net.ValidDNSName", valid_name);
// Allow empty label at end of name to disable suffix search.
if (labellen) {
if (namelen + labellen + 1 > sizeof name)
return false;
name[namelen++] = static_cast<char>(labellen);
memcpy(name + namelen, label, labellen);
namelen += labellen;
labellen = 0;
}
if (namelen + 1 > sizeof name)
return false;
if (namelen == 0) // Empty names e.g. "", "." are not valid.
return false;
name[namelen++] = 0; // This is the root label (of length 0).
*out = std::string(name, namelen);
return true;
}
bool IsValidDNSDomain(const base::StringPiece& dotted) {
std::string dns_formatted;
return DNSDomainFromDot(dotted, &dns_formatted);
}
bool IsValidHostLabelCharacter(char c, bool is_first_char) {
return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') ||
(c >= '0' && c <= '9') || (!is_first_char && c == '-') || c == '_';
}
std::string DNSDomainToString(const base::StringPiece& domain) {
std::string ret;
for (unsigned i = 0; i < domain.size() && domain[i]; i += domain[i] + 1) {
#if CHAR_MIN < 0
if (domain[i] < 0)
return std::string();
#endif
if (domain[i] > kMaxLabelLength)
return std::string();
if (i)
ret += ".";
if (static_cast<unsigned>(domain[i]) + i + 1 > domain.size())
return std::string();
domain.substr(i + 1, domain[i]).AppendToString(&ret);
}
return ret;
}
#if !defined(OS_NACL)
namespace {
bool GetTimeDeltaForConnectionTypeFromFieldTrial(
const char* field_trial,
NetworkChangeNotifier::ConnectionType type,
base::TimeDelta* out) {
std::string group = base::FieldTrialList::FindFullName(field_trial);
if (group.empty())
return false;
std::vector<base::StringPiece> group_parts = base::SplitStringPiece(
group, ":", base::TRIM_WHITESPACE, base::SPLIT_WANT_ALL);
if (type < 0)
return false;
size_t type_size = static_cast<size_t>(type);
if (type_size >= group_parts.size())
return false;
int64_t ms;
if (!base::StringToInt64(group_parts[type_size], &ms))
return false;
*out = base::TimeDelta::FromMilliseconds(ms);
return true;
}
} // namespace
base::TimeDelta GetTimeDeltaForConnectionTypeFromFieldTrialOrDefault(
const char* field_trial,
base::TimeDelta default_delta,
NetworkChangeNotifier::ConnectionType type) {
base::TimeDelta out;
if (!GetTimeDeltaForConnectionTypeFromFieldTrial(field_trial, type, &out))
out = default_delta;
return out;
}
#endif // !defined(OS_NACL)
AddressListDeltaType FindAddressListDeltaType(const AddressList& a,
const AddressList& b) {
bool pairwise_mismatch = false;
bool any_match = false;
bool any_missing = false;
bool same_size = a.size() == b.size();
for (size_t i = 0; i < a.size(); ++i) {
bool this_match = false;
for (size_t j = 0; j < b.size(); ++j) {
if (a[i] == b[j]) {
any_match = true;
this_match = true;
} else if (i == j) {
pairwise_mismatch = true;
}
}
if (!this_match)
any_missing = true;
}
if (same_size && !pairwise_mismatch)
return DELTA_IDENTICAL;
else if (same_size && !any_missing)
return DELTA_REORDERED;
else if (any_match)
return DELTA_OVERLAP;
else
return DELTA_DISJOINT;
}
} // namespace net