#include "url/url_util.h"
#include <stddef.h>
#include <string.h>
#include <atomic>
#include <ostream>
#include "base/check_op.h"
#include "base/compiler_specific.h"
#include "base/containers/contains.h"
#include "base/no_destructor.h"
#include "base/strings/string_util.h"
#include "url/url_canon_internal.h"
#include "url/url_constants.h"
#include "url/url_file.h"
#include "url/url_util_internal.h"
namespace url {
namespace {
struct SchemeWithType {
std::string scheme;
SchemeType type;
};
struct SchemeWithHandler {
std::string scheme;
std::string handler;
};
struct SchemeRegistry {
std::vector<SchemeWithType> standard_schemes = {
{kHttpsScheme, SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
{kHttpScheme, SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
{kFileScheme, SCHEME_WITH_HOST},
{kFtpScheme, SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
{kWssScheme,
SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
{kWsScheme, SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
{kFileSystemScheme, SCHEME_WITHOUT_AUTHORITY},
#ifdef OHOS_HAP_DECOMPRESSED
{kResourcesScheme, SCHEME_WITH_HOST},
#endif
};
std::vector<SchemeWithType> referrer_schemes = {
{kHttpsScheme, SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
{kHttpScheme, SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION},
};
std::vector<std::string> secure_schemes = {
kHttpsScheme,
kWssScheme,
kDataScheme,
kAboutScheme,
};
std::vector<std::string> local_schemes = {
kFileScheme,
#ifdef OHOS_HAP_DECOMPRESSED
kResourcesScheme,
#endif
};
std::vector<std::string> no_access_schemes = {
kAboutScheme,
kJavaScriptScheme,
kDataScheme,
};
std::vector<std::string> cors_enabled_schemes = {
kHttpsScheme,
kHttpScheme,
kDataScheme,
};
std::vector<std::string> web_storage_schemes = {
kHttpsScheme, kHttpScheme, kFileScheme,
kFtpScheme, kWssScheme, kWsScheme,
#ifdef OHOS_HAP_DECOMPRESSED
kResourcesScheme,
#endif
};
std::vector<std::string> csp_bypassing_schemes = {};
std::vector<std::string> empty_document_schemes = {
kAboutScheme,
};
std::vector<SchemeWithHandler> predefined_handler_schemes;
#ifdef OHOS_NETWORK_LOAD
std::vector<std::string> custom_schemes = {};
#endif
#if BUILDFLAG(IS_OHOS)
std::vector<std::string> code_cache_enabled_schemes = {
kFileScheme,
};
#endif
bool allow_non_standard_schemes = false;
};
bool scheme_registries_locked = false;
static std::atomic<bool> g_scheme_registries_used{false};
SchemeRegistry* GetSchemeRegistryWithoutLocking() {
static base::NoDestructor<SchemeRegistry> registry;
return registry.get();
}
const SchemeRegistry& GetSchemeRegistry() {
#if DCHECK_IS_ON()
g_scheme_registries_used.store(true);
#endif
return *GetSchemeRegistryWithoutLocking();
}
enum WhitespaceRemovalPolicy {
REMOVE_WHITESPACE,
DO_NOT_REMOVE_WHITESPACE,
};
template<typename CHAR> struct CharToStringPiece {
};
template<> struct CharToStringPiece<char> {
typedef base::StringPiece Piece;
};
template <>
struct CharToStringPiece<char16_t> {
typedef base::StringPiece16 Piece;
};
template<typename CHAR>
inline bool DoCompareSchemeComponent(const CHAR* spec,
const Component& component,
const char* compare_to) {
if (component.is_empty())
return compare_to[0] == 0;
return base::EqualsCaseInsensitiveASCII(
typename CharToStringPiece<CHAR>::Piece(&spec[component.begin],
component.len),
compare_to);
}
template<typename CHAR>
bool DoIsInSchemes(const CHAR* spec,
const Component& scheme,
SchemeType* type,
const std::vector<SchemeWithType>& schemes) {
if (scheme.is_empty())
return false;
for (const SchemeWithType& scheme_with_type : schemes) {
if (base::EqualsCaseInsensitiveASCII(
typename CharToStringPiece<CHAR>::Piece(&spec[scheme.begin],
scheme.len),
scheme_with_type.scheme)) {
*type = scheme_with_type.type;
return true;
}
}
return false;
}
template<typename CHAR>
bool DoIsStandard(const CHAR* spec, const Component& scheme, SchemeType* type) {
return DoIsInSchemes(spec, scheme, type,
GetSchemeRegistry().standard_schemes);
}
template<typename CHAR>
bool DoFindAndCompareScheme(const CHAR* str,
int str_len,
const char* compare,
Component* found_scheme) {
STACK_UNINITIALIZED RawCanonOutputT<CHAR> whitespace_buffer;
int spec_len;
const CHAR* spec =
RemoveURLWhitespace(str, str_len, &whitespace_buffer, &spec_len, nullptr);
Component our_scheme;
if (!ExtractScheme(spec, spec_len, &our_scheme)) {
if (found_scheme)
*found_scheme = Component();
return false;
}
if (found_scheme)
*found_scheme = our_scheme;
return DoCompareSchemeComponent(spec, our_scheme, compare);
}
template <typename CHAR>
bool DoCanonicalize(const CHAR* spec,
int spec_len,
bool trim_path_end,
WhitespaceRemovalPolicy whitespace_policy,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* output_parsed) {
int begin = 0;
TrimURL(spec, &begin, &spec_len, trim_path_end);
DCHECK(0 <= begin && begin <= spec_len);
spec += begin;
spec_len -= begin;
output->ReserveSizeIfNeeded(spec_len);
STACK_UNINITIALIZED RawCanonOutputT<CHAR> whitespace_buffer;
if (whitespace_policy == REMOVE_WHITESPACE) {
spec = RemoveURLWhitespace(spec, spec_len, &whitespace_buffer, &spec_len,
&output_parsed->potentially_dangling_markup);
}
Parsed parsed_input;
#ifdef WIN32
if (DoesBeginUNCPath(spec, 0, spec_len, false) ||
DoesBeginWindowsDriveSpec(spec, 0, spec_len)) {
ParseFileURL(spec, spec_len, &parsed_input);
return CanonicalizeFileURL(spec, spec_len, parsed_input, charset_converter,
output, output_parsed);
}
#endif
Component scheme;
if (!ExtractScheme(spec, spec_len, &scheme))
return false;
bool success;
SchemeType scheme_type = SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION;
if (DoCompareSchemeComponent(spec, scheme, url::kFileScheme)) {
ParseFileURL(spec, spec_len, &parsed_input);
success = CanonicalizeFileURL(spec, spec_len, parsed_input,
charset_converter, output, output_parsed);
} else if (DoCompareSchemeComponent(spec, scheme, url::kFileSystemScheme)) {
ParseFileSystemURL(spec, spec_len, &parsed_input);
success = CanonicalizeFileSystemURL(spec, spec_len, parsed_input,
charset_converter, output,
output_parsed);
} else if (DoIsStandard(spec, scheme, &scheme_type)) {
ParseStandardURL(spec, spec_len, &parsed_input);
success = CanonicalizeStandardURL(spec, spec_len, parsed_input, scheme_type,
charset_converter, output, output_parsed);
} else if (DoCompareSchemeComponent(spec, scheme, url::kMailToScheme)) {
ParseMailtoURL(spec, spec_len, &parsed_input);
success = CanonicalizeMailtoURL(spec, spec_len, parsed_input, output,
output_parsed);
} else {
ParsePathURL(spec, spec_len, trim_path_end, &parsed_input);
success = CanonicalizePathURL(spec, spec_len, parsed_input, output,
output_parsed);
}
return success;
}
template<typename CHAR>
bool DoResolveRelative(const char* base_spec,
int base_spec_len,
const Parsed& base_parsed,
const CHAR* in_relative,
int in_relative_length,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* output_parsed) {
STACK_UNINITIALIZED RawCanonOutputT<CHAR> whitespace_buffer;
int relative_length;
const CHAR* relative = RemoveURLWhitespace(
in_relative, in_relative_length, &whitespace_buffer, &relative_length,
&output_parsed->potentially_dangling_markup);
bool base_is_authority_based = false;
bool base_is_hierarchical = false;
if (base_spec &&
base_parsed.scheme.is_nonempty()) {
int after_scheme = base_parsed.scheme.end() + 1;
int num_slashes = CountConsecutiveSlashes(base_spec, after_scheme,
base_spec_len);
base_is_authority_based = num_slashes > 1;
base_is_hierarchical = num_slashes > 0;
}
SchemeType unused_scheme_type = SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION;
bool standard_base_scheme =
base_parsed.scheme.is_nonempty() &&
DoIsStandard(base_spec, base_parsed.scheme, &unused_scheme_type);
bool is_relative;
Component relative_component;
if (!IsRelativeURL(base_spec, base_parsed, relative, relative_length,
(base_is_hierarchical || standard_base_scheme),
&is_relative, &relative_component)) {
return false;
}
if (is_relative && base_is_authority_based && !standard_base_scheme) {
Parsed base_parsed_authority;
ParseStandardURL(base_spec, base_spec_len, &base_parsed_authority);
if (base_parsed_authority.host.is_nonempty()) {
STACK_UNINITIALIZED RawCanonOutputT<char> temporary_output;
bool did_resolve_succeed =
ResolveRelativeURL(base_spec, base_parsed_authority, false, relative,
relative_component, charset_converter,
&temporary_output, output_parsed);
DoCanonicalize(temporary_output.data(), temporary_output.length(), true,
REMOVE_WHITESPACE, charset_converter, output,
output_parsed);
return did_resolve_succeed;
}
} else if (is_relative) {
bool file_base_scheme = base_parsed.scheme.is_nonempty() &&
DoCompareSchemeComponent(base_spec, base_parsed.scheme, kFileScheme);
return ResolveRelativeURL(base_spec, base_parsed, file_base_scheme, relative,
relative_component, charset_converter, output,
output_parsed);
}
return DoCanonicalize(relative, relative_length, true,
DO_NOT_REMOVE_WHITESPACE, charset_converter, output,
output_parsed);
}
template<typename CHAR>
bool DoReplaceComponents(const char* spec,
int spec_len,
const Parsed& parsed,
const Replacements<CHAR>& replacements,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* out_parsed) {
if (replacements.IsSchemeOverridden()) {
STACK_UNINITIALIZED RawCanonOutput<128> scheme_replaced;
Component scheme_replaced_parsed;
CanonicalizeScheme(replacements.sources().scheme,
replacements.components().scheme,
&scheme_replaced, &scheme_replaced_parsed);
int spec_after_colon = parsed.scheme.is_valid() ? parsed.scheme.end() + 1
: 1;
if (spec_len - spec_after_colon > 0) {
scheme_replaced.Append(&spec[spec_after_colon],
spec_len - spec_after_colon);
}
STACK_UNINITIALIZED RawCanonOutput<128> recanonicalized;
Parsed recanonicalized_parsed;
DoCanonicalize(scheme_replaced.data(), scheme_replaced.length(), true,
REMOVE_WHITESPACE, charset_converter, &recanonicalized,
&recanonicalized_parsed);
Replacements<CHAR> replacements_no_scheme = replacements;
replacements_no_scheme.SetScheme(NULL, Component());
if (parsed.potentially_dangling_markup) {
out_parsed->potentially_dangling_markup = true;
}
return DoReplaceComponents(recanonicalized.data(), recanonicalized.length(),
recanonicalized_parsed, replacements_no_scheme,
charset_converter, output, out_parsed);
}
output->ReserveSizeIfNeeded(spec_len);
if (DoCompareSchemeComponent(spec, parsed.scheme, url::kFileScheme)) {
return ReplaceFileURL(spec, parsed, replacements, charset_converter, output,
out_parsed);
}
if (DoCompareSchemeComponent(spec, parsed.scheme, url::kFileSystemScheme)) {
return ReplaceFileSystemURL(spec, parsed, replacements, charset_converter,
output, out_parsed);
}
SchemeType scheme_type = SCHEME_WITH_HOST_PORT_AND_USER_INFORMATION;
if (DoIsStandard(spec, parsed.scheme, &scheme_type)) {
return ReplaceStandardURL(spec, parsed, replacements, scheme_type,
charset_converter, output, out_parsed);
}
if (DoCompareSchemeComponent(spec, parsed.scheme, url::kMailToScheme)) {
return ReplaceMailtoURL(spec, parsed, replacements, output, out_parsed);
}
return ReplacePathURL(spec, parsed, replacements, output, out_parsed);
}
void DoSchemeModificationPreamble() {
DCHECK(!g_scheme_registries_used.load())
<< "Trying to add a scheme after the lists have been used. "
"Make sure that you haven't added any static GURL initializers in tests.";
DCHECK(!scheme_registries_locked)
<< "Trying to add a scheme after the lists have been locked.";
}
void DoAddSchemeWithHandler(const char* new_scheme,
const char* handler,
std::vector<SchemeWithHandler>* schemes) {
DoSchemeModificationPreamble();
DCHECK(schemes);
DCHECK(strlen(new_scheme) > 0);
DCHECK(strlen(handler) > 0);
DCHECK_EQ(base::ToLowerASCII(new_scheme), new_scheme);
DCHECK(!base::Contains(*schemes, new_scheme, &SchemeWithHandler::scheme));
schemes->push_back({new_scheme, handler});
}
void DoAddScheme(const char* new_scheme, std::vector<std::string>* schemes) {
DoSchemeModificationPreamble();
DCHECK(schemes);
DCHECK(strlen(new_scheme) > 0);
DCHECK_EQ(base::ToLowerASCII(new_scheme), new_scheme);
DCHECK(!base::Contains(*schemes, new_scheme));
schemes->push_back(new_scheme);
}
void DoAddSchemeWithType(const char* new_scheme,
SchemeType type,
std::vector<SchemeWithType>* schemes) {
DoSchemeModificationPreamble();
DCHECK(schemes);
DCHECK(strlen(new_scheme) > 0);
DCHECK_EQ(base::ToLowerASCII(new_scheme), new_scheme);
DCHECK(!base::Contains(*schemes, new_scheme, &SchemeWithType::scheme));
schemes->push_back({new_scheme, type});
}
}
void ClearSchemesForTests() {
DCHECK(!g_scheme_registries_used.load())
<< "Schemes already used "
<< "(use ScopedSchemeRegistryForTests to relax for tests).";
DCHECK(!scheme_registries_locked)
<< "Schemes already locked "
<< "(use ScopedSchemeRegistryForTests to relax for tests).";
*GetSchemeRegistryWithoutLocking() = SchemeRegistry();
}
class ScopedSchemeRegistryInternal {
public:
ScopedSchemeRegistryInternal()
: registry_(std::make_unique<SchemeRegistry>(
*GetSchemeRegistryWithoutLocking())) {
g_scheme_registries_used.store(false);
scheme_registries_locked = false;
}
~ScopedSchemeRegistryInternal() {
*GetSchemeRegistryWithoutLocking() = *registry_;
g_scheme_registries_used.store(true);
scheme_registries_locked = true;
}
private:
std::unique_ptr<SchemeRegistry> registry_;
};
ScopedSchemeRegistryForTests::ScopedSchemeRegistryForTests()
: internal_(std::make_unique<ScopedSchemeRegistryInternal>()) {}
ScopedSchemeRegistryForTests::~ScopedSchemeRegistryForTests() = default;
void EnableNonStandardSchemesForAndroidWebView() {
DoSchemeModificationPreamble();
GetSchemeRegistryWithoutLocking()->allow_non_standard_schemes = true;
}
bool AllowNonStandardSchemesForAndroidWebView() {
#ifdef OHOS_NETWORK_LOAD
return true;
#else
return GetSchemeRegistry().allow_non_standard_schemes;
#endif
}
void AddStandardScheme(const char* new_scheme, SchemeType type) {
DoAddSchemeWithType(new_scheme, type,
&GetSchemeRegistryWithoutLocking()->standard_schemes);
}
std::vector<std::string> GetStandardSchemes() {
std::vector<std::string> result;
result.reserve(GetSchemeRegistry().standard_schemes.size());
for (const auto& entry : GetSchemeRegistry().standard_schemes) {
result.push_back(entry.scheme);
}
return result;
}
void AddReferrerScheme(const char* new_scheme, SchemeType type) {
DoAddSchemeWithType(new_scheme, type,
&GetSchemeRegistryWithoutLocking()->referrer_schemes);
}
void AddSecureScheme(const char* new_scheme) {
DoAddScheme(new_scheme, &GetSchemeRegistryWithoutLocking()->secure_schemes);
}
const std::vector<std::string>& GetSecureSchemes() {
return GetSchemeRegistry().secure_schemes;
}
void AddLocalScheme(const char* new_scheme) {
DoAddScheme(new_scheme, &GetSchemeRegistryWithoutLocking()->local_schemes);
}
const std::vector<std::string>& GetLocalSchemes() {
return GetSchemeRegistry().local_schemes;
}
void AddNoAccessScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->no_access_schemes);
}
const std::vector<std::string>& GetNoAccessSchemes() {
return GetSchemeRegistry().no_access_schemes;
}
void AddCorsEnabledScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->cors_enabled_schemes);
}
const std::vector<std::string>& GetCorsEnabledSchemes() {
return GetSchemeRegistry().cors_enabled_schemes;
}
void AddWebStorageScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->web_storage_schemes);
}
const std::vector<std::string>& GetWebStorageSchemes() {
return GetSchemeRegistry().web_storage_schemes;
}
void AddCSPBypassingScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->csp_bypassing_schemes);
}
const std::vector<std::string>& GetCSPBypassingSchemes() {
return GetSchemeRegistry().csp_bypassing_schemes;
}
void AddEmptyDocumentScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->empty_document_schemes);
}
const std::vector<std::string>& GetEmptyDocumentSchemes() {
return GetSchemeRegistry().empty_document_schemes;
}
#ifdef OHOS_NETWORK_LOAD
void AddCustomScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->custom_schemes);
}
const std::vector<std::string>& GetCustomScheme() {
return GetSchemeRegistry().custom_schemes;
}
#endif
#if BUILDFLAG(IS_OHOS)
void AddCodeCacheEnabledScheme(const char* new_scheme) {
DoAddScheme(new_scheme,
&GetSchemeRegistryWithoutLocking()->code_cache_enabled_schemes);
}
bool IsCodeCacheEnabledScheme(const std::string& scheme) {
for (const std::string& it : GetSchemeRegistry().code_cache_enabled_schemes) {
if (it == scheme) {
return true;
}
}
return false;
}
const std::vector<std::string>& GetCodeCacheEnabledSchemes() {
return GetSchemeRegistry().code_cache_enabled_schemes;
}
#endif
void AddPredefinedHandlerScheme(const char* new_scheme, const char* handler) {
DoAddSchemeWithHandler(
new_scheme, handler,
&GetSchemeRegistryWithoutLocking()->predefined_handler_schemes);
}
std::vector<std::pair<std::string, std::string>> GetPredefinedHandlerSchemes() {
std::vector<std::pair<std::string, std::string>> result;
result.reserve(GetSchemeRegistry().predefined_handler_schemes.size());
for (const SchemeWithHandler& entry :
GetSchemeRegistry().predefined_handler_schemes) {
result.emplace_back(entry.scheme, entry.handler);
}
return result;
}
void LockSchemeRegistries() {
scheme_registries_locked = true;
}
bool IsStandard(const char* spec, const Component& scheme) {
SchemeType unused_scheme_type;
return DoIsStandard(spec, scheme, &unused_scheme_type);
}
bool GetStandardSchemeType(const char* spec,
const Component& scheme,
SchemeType* type) {
return DoIsStandard(spec, scheme, type);
}
bool GetStandardSchemeType(const char16_t* spec,
const Component& scheme,
SchemeType* type) {
return DoIsStandard(spec, scheme, type);
}
bool IsStandard(const char16_t* spec, const Component& scheme) {
SchemeType unused_scheme_type;
return DoIsStandard(spec, scheme, &unused_scheme_type);
}
bool IsReferrerScheme(const char* spec, const Component& scheme) {
SchemeType unused_scheme_type;
return DoIsInSchemes(spec, scheme, &unused_scheme_type,
GetSchemeRegistry().referrer_schemes);
}
bool FindAndCompareScheme(const char* str,
int str_len,
const char* compare,
Component* found_scheme) {
return DoFindAndCompareScheme(str, str_len, compare, found_scheme);
}
bool FindAndCompareScheme(const char16_t* str,
int str_len,
const char* compare,
Component* found_scheme) {
return DoFindAndCompareScheme(str, str_len, compare, found_scheme);
}
bool DomainIs(base::StringPiece canonical_host,
base::StringPiece canonical_domain) {
if (canonical_host.empty() || canonical_domain.empty())
return false;
size_t host_len = canonical_host.length();
if (canonical_host.back() == '.' && canonical_domain.back() != '.')
--host_len;
if (host_len < canonical_domain.length())
return false;
const char* host_first_pos =
canonical_host.data() + host_len - canonical_domain.length();
if (base::StringPiece(host_first_pos, canonical_domain.length()) !=
canonical_domain) {
return false;
}
if (canonical_domain[0] != '.' && host_len > canonical_domain.length() &&
*(host_first_pos - 1) != '.') {
return false;
}
return true;
}
bool HostIsIPAddress(base::StringPiece host) {
STACK_UNINITIALIZED url::RawCanonOutputT<char, 128> ignored_output;
url::CanonHostInfo host_info;
url::CanonicalizeIPAddress(host.data(), Component(0, host.length()),
&ignored_output, &host_info);
return host_info.IsIPAddress();
}
bool Canonicalize(const char* spec,
int spec_len,
bool trim_path_end,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* output_parsed) {
return DoCanonicalize(spec, spec_len, trim_path_end, REMOVE_WHITESPACE,
charset_converter, output, output_parsed);
}
bool Canonicalize(const char16_t* spec,
int spec_len,
bool trim_path_end,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* output_parsed) {
return DoCanonicalize(spec, spec_len, trim_path_end, REMOVE_WHITESPACE,
charset_converter, output, output_parsed);
}
bool ResolveRelative(const char* base_spec,
int base_spec_len,
const Parsed& base_parsed,
const char* relative,
int relative_length,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* output_parsed) {
return DoResolveRelative(base_spec, base_spec_len, base_parsed,
relative, relative_length,
charset_converter, output, output_parsed);
}
bool ResolveRelative(const char* base_spec,
int base_spec_len,
const Parsed& base_parsed,
const char16_t* relative,
int relative_length,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* output_parsed) {
return DoResolveRelative(base_spec, base_spec_len, base_parsed,
relative, relative_length,
charset_converter, output, output_parsed);
}
bool ReplaceComponents(const char* spec,
int spec_len,
const Parsed& parsed,
const Replacements<char>& replacements,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* out_parsed) {
return DoReplaceComponents(spec, spec_len, parsed, replacements,
charset_converter, output, out_parsed);
}
bool ReplaceComponents(const char* spec,
int spec_len,
const Parsed& parsed,
const Replacements<char16_t>& replacements,
CharsetConverter* charset_converter,
CanonOutput* output,
Parsed* out_parsed) {
return DoReplaceComponents(spec, spec_len, parsed, replacements,
charset_converter, output, out_parsed);
}
void DecodeURLEscapeSequences(const char* input,
int length,
DecodeURLMode mode,
CanonOutputW* output) {
if (length <= 0)
return;
STACK_UNINITIALIZED RawCanonOutputT<char> unescaped_chars;
size_t length_size_t = static_cast<size_t>(length);
for (size_t i = 0; i < length_size_t; i++) {
if (input[i] == '%') {
unsigned char ch;
if (DecodeEscaped(input, &i, length_size_t, &ch)) {
unescaped_chars.push_back(ch);
} else {
unescaped_chars.push_back('%');
}
} else {
unescaped_chars.push_back(input[i]);
}
}
int output_initial_length = output->length();
size_t unescaped_length = unescaped_chars.length();
for (size_t i = 0; i < unescaped_length; i++) {
unsigned char uch = static_cast<unsigned char>(unescaped_chars.at(i));
if (uch < 0x80) {
output->push_back(uch);
} else {
size_t next_character = i;
base_icu::UChar32 code_point;
if (ReadUTFChar(unescaped_chars.data(), &next_character, unescaped_length,
&code_point)) {
AppendUTF16Value(code_point, output);
i = next_character;
} else if (mode == DecodeURLMode::kUTF8) {
DCHECK_EQ(code_point, 0xFFFD);
AppendUTF16Value(code_point, output);
i = next_character;
} else {
output->set_length(output_initial_length);
for (size_t j = 0; j < unescaped_chars.length(); ++j)
output->push_back(static_cast<unsigned char>(unescaped_chars.at(j)));
break;
}
}
}
}
void EncodeURIComponent(const char* input, int length, CanonOutput* output) {
for (int i = 0; i < length; ++i) {
unsigned char c = static_cast<unsigned char>(input[i]);
if (IsComponentChar(c))
output->push_back(c);
else
AppendEscapedChar(c, output);
}
}
bool CompareSchemeComponent(const char* spec,
const Component& component,
const char* compare_to) {
return DoCompareSchemeComponent(spec, component, compare_to);
}
bool CompareSchemeComponent(const char16_t* spec,
const Component& component,
const char* compare_to) {
return DoCompareSchemeComponent(spec, component, compare_to);
}
}