398 lines
14 KiB
C++
398 lines
14 KiB
C++
// Copyright (c) 2015 GitHub, Inc.
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// Use of this source code is governed by the MIT license that can be
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// found in the LICENSE file.
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#include "shell/browser/api/electron_api_cookies.h"
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#include <utility>
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#include "base/time/time.h"
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#include "base/values.h"
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#include "content/public/browser/browser_context.h"
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#include "content/public/browser/browser_task_traits.h"
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#include "content/public/browser/browser_thread.h"
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#include "content/public/browser/storage_partition.h"
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#include "gin/dictionary.h"
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#include "gin/object_template_builder.h"
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#include "net/cookies/canonical_cookie.h"
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#include "net/cookies/cookie_inclusion_status.h"
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#include "net/cookies/cookie_store.h"
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#include "net/cookies/cookie_util.h"
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#include "shell/browser/cookie_change_notifier.h"
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#include "shell/browser/electron_browser_context.h"
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#include "shell/browser/javascript_environment.h"
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#include "shell/common/gin_converters/gurl_converter.h"
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#include "shell/common/gin_converters/value_converter.h"
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#include "shell/common/gin_helper/dictionary.h"
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#include "shell/common/gin_helper/object_template_builder.h"
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namespace gin {
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template <>
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struct Converter<net::CookieSameSite> {
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static v8::Local<v8::Value> ToV8(v8::Isolate* isolate,
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const net::CookieSameSite& val) {
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switch (val) {
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case net::CookieSameSite::UNSPECIFIED:
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return ConvertToV8(isolate, "unspecified");
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case net::CookieSameSite::NO_RESTRICTION:
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return ConvertToV8(isolate, "no_restriction");
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case net::CookieSameSite::LAX_MODE:
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return ConvertToV8(isolate, "lax");
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case net::CookieSameSite::STRICT_MODE:
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return ConvertToV8(isolate, "strict");
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}
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DCHECK(false);
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return ConvertToV8(isolate, "unknown");
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}
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};
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template <>
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struct Converter<net::CanonicalCookie> {
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static v8::Local<v8::Value> ToV8(v8::Isolate* isolate,
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const net::CanonicalCookie& val) {
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gin::Dictionary dict(isolate, v8::Object::New(isolate));
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dict.Set("name", val.Name());
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dict.Set("value", val.Value());
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dict.Set("domain", val.Domain());
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dict.Set("hostOnly", net::cookie_util::DomainIsHostOnly(val.Domain()));
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dict.Set("path", val.Path());
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dict.Set("secure", val.IsSecure());
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dict.Set("httpOnly", val.IsHttpOnly());
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dict.Set("session", !val.IsPersistent());
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if (val.IsPersistent())
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dict.Set("expirationDate", val.ExpiryDate().ToDoubleT());
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dict.Set("sameSite", val.SameSite());
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return ConvertToV8(isolate, dict).As<v8::Object>();
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}
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};
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template <>
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struct Converter<net::CookieChangeCause> {
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static v8::Local<v8::Value> ToV8(v8::Isolate* isolate,
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const net::CookieChangeCause& val) {
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switch (val) {
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case net::CookieChangeCause::INSERTED:
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case net::CookieChangeCause::EXPLICIT:
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return gin::StringToV8(isolate, "explicit");
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case net::CookieChangeCause::OVERWRITE:
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return gin::StringToV8(isolate, "overwrite");
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case net::CookieChangeCause::EXPIRED:
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return gin::StringToV8(isolate, "expired");
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case net::CookieChangeCause::EVICTED:
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return gin::StringToV8(isolate, "evicted");
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case net::CookieChangeCause::EXPIRED_OVERWRITE:
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return gin::StringToV8(isolate, "expired-overwrite");
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default:
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return gin::StringToV8(isolate, "unknown");
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}
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}
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};
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} // namespace gin
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namespace electron::api {
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namespace {
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// Returns whether |domain| matches |filter|.
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bool MatchesDomain(std::string filter, const std::string& domain) {
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// Add a leading '.' character to the filter domain if it doesn't exist.
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if (net::cookie_util::DomainIsHostOnly(filter))
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filter.insert(0, ".");
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std::string sub_domain(domain);
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// Strip any leading '.' character from the input cookie domain.
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if (!net::cookie_util::DomainIsHostOnly(sub_domain))
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sub_domain = sub_domain.substr(1);
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// Now check whether the domain argument is a subdomain of the filter domain.
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for (sub_domain.insert(0, "."); sub_domain.length() >= filter.length();) {
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if (sub_domain == filter)
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return true;
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const size_t next_dot = sub_domain.find('.', 1); // Skip over leading dot.
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sub_domain.erase(0, next_dot);
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}
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return false;
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}
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// Returns whether |cookie| matches |filter|.
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bool MatchesCookie(const base::Value& filter,
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const net::CanonicalCookie& cookie) {
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const std::string* str;
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if ((str = filter.FindStringKey("name")) && *str != cookie.Name())
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return false;
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if ((str = filter.FindStringKey("path")) && *str != cookie.Path())
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return false;
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if ((str = filter.FindStringKey("domain")) &&
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!MatchesDomain(*str, cookie.Domain()))
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return false;
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absl::optional<bool> secure_filter = filter.FindBoolKey("secure");
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if (secure_filter && *secure_filter == cookie.IsSecure())
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return false;
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absl::optional<bool> session_filter = filter.FindBoolKey("session");
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if (session_filter && *session_filter != !cookie.IsPersistent())
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return false;
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return true;
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}
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// Remove cookies from |list| not matching |filter|, and pass it to |callback|.
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void FilterCookies(const base::Value& filter,
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gin_helper::Promise<net::CookieList> promise,
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const net::CookieList& cookies) {
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net::CookieList result;
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for (const auto& cookie : cookies) {
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if (MatchesCookie(filter, cookie))
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result.push_back(cookie);
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}
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promise.Resolve(result);
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}
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void FilterCookieWithStatuses(
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const base::Value& filter,
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gin_helper::Promise<net::CookieList> promise,
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const net::CookieAccessResultList& list,
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const net::CookieAccessResultList& excluded_list) {
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FilterCookies(filter, std::move(promise),
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net::cookie_util::StripAccessResults(list));
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}
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// Parse dictionary property to CanonicalCookie time correctly.
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base::Time ParseTimeProperty(const absl::optional<double>& value) {
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if (!value) // empty time means ignoring the parameter
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return base::Time();
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if (*value == 0) // FromDoubleT would convert 0 to empty Time
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return base::Time::UnixEpoch();
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return base::Time::FromDoubleT(*value);
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}
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std::string InclusionStatusToString(net::CookieInclusionStatus status) {
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if (status.HasExclusionReason(net::CookieInclusionStatus::EXCLUDE_HTTP_ONLY))
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return "Failed to create httponly cookie";
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if (status.HasExclusionReason(
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net::CookieInclusionStatus::EXCLUDE_SECURE_ONLY))
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return "Cannot create a secure cookie from an insecure URL";
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if (status.HasExclusionReason(
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net::CookieInclusionStatus::EXCLUDE_FAILURE_TO_STORE))
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return "Failed to parse cookie";
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if (status.HasExclusionReason(
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net::CookieInclusionStatus::EXCLUDE_INVALID_DOMAIN))
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return "Failed to get cookie domain";
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if (status.HasExclusionReason(
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net::CookieInclusionStatus::EXCLUDE_INVALID_PREFIX))
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return "Failed because the cookie violated prefix rules.";
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if (status.HasExclusionReason(
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net::CookieInclusionStatus::EXCLUDE_NONCOOKIEABLE_SCHEME))
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return "Cannot set cookie for current scheme";
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return "Setting cookie failed";
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}
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std::string StringToCookieSameSite(const std::string* str_ptr,
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net::CookieSameSite* same_site) {
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if (!str_ptr) {
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*same_site = net::CookieSameSite::LAX_MODE;
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return "";
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}
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const std::string& str = *str_ptr;
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if (str == "unspecified") {
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*same_site = net::CookieSameSite::UNSPECIFIED;
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} else if (str == "no_restriction") {
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*same_site = net::CookieSameSite::NO_RESTRICTION;
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} else if (str == "lax") {
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*same_site = net::CookieSameSite::LAX_MODE;
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} else if (str == "strict") {
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*same_site = net::CookieSameSite::STRICT_MODE;
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} else {
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return "Failed to convert '" + str +
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"' to an appropriate cookie same site value";
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}
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return "";
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}
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} // namespace
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gin::WrapperInfo Cookies::kWrapperInfo = {gin::kEmbedderNativeGin};
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Cookies::Cookies(v8::Isolate* isolate, ElectronBrowserContext* browser_context)
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: browser_context_(browser_context) {
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cookie_change_subscription_ =
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browser_context_->cookie_change_notifier()->RegisterCookieChangeCallback(
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base::BindRepeating(&Cookies::OnCookieChanged,
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base::Unretained(this)));
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}
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Cookies::~Cookies() = default;
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v8::Local<v8::Promise> Cookies::Get(v8::Isolate* isolate,
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const gin_helper::Dictionary& filter) {
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gin_helper::Promise<net::CookieList> promise(isolate);
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v8::Local<v8::Promise> handle = promise.GetHandle();
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auto* storage_partition = browser_context_->GetDefaultStoragePartition();
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auto* manager = storage_partition->GetCookieManagerForBrowserProcess();
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base::DictionaryValue dict;
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gin::ConvertFromV8(isolate, filter.GetHandle(), &dict);
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std::string url;
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filter.Get("url", &url);
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if (url.empty()) {
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manager->GetAllCookies(
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base::BindOnce(&FilterCookies, std::move(dict), std::move(promise)));
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} else {
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net::CookieOptions options;
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options.set_include_httponly();
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options.set_same_site_cookie_context(
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net::CookieOptions::SameSiteCookieContext::MakeInclusive());
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options.set_do_not_update_access_time();
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manager->GetCookieList(GURL(url), options,
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net::CookiePartitionKeyCollection::Todo(),
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base::BindOnce(&FilterCookieWithStatuses,
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std::move(dict), std::move(promise)));
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}
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return handle;
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}
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v8::Local<v8::Promise> Cookies::Remove(v8::Isolate* isolate,
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const GURL& url,
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const std::string& name) {
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gin_helper::Promise<void> promise(isolate);
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v8::Local<v8::Promise> handle = promise.GetHandle();
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auto cookie_deletion_filter = network::mojom::CookieDeletionFilter::New();
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cookie_deletion_filter->url = url;
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cookie_deletion_filter->cookie_name = name;
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auto* storage_partition = browser_context_->GetDefaultStoragePartition();
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auto* manager = storage_partition->GetCookieManagerForBrowserProcess();
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manager->DeleteCookies(
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std::move(cookie_deletion_filter),
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base::BindOnce(
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[](gin_helper::Promise<void> promise, uint32_t num_deleted) {
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gin_helper::Promise<void>::ResolvePromise(std::move(promise));
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},
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std::move(promise)));
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return handle;
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}
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v8::Local<v8::Promise> Cookies::Set(v8::Isolate* isolate,
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const base::DictionaryValue& details) {
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gin_helper::Promise<void> promise(isolate);
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v8::Local<v8::Promise> handle = promise.GetHandle();
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const std::string* url_string = details.FindStringKey("url");
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if (!url_string) {
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promise.RejectWithErrorMessage("Missing required option 'url'");
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return handle;
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}
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const std::string* name = details.FindStringKey("name");
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const std::string* value = details.FindStringKey("value");
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const std::string* domain = details.FindStringKey("domain");
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const std::string* path = details.FindStringKey("path");
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bool http_only = details.FindBoolKey("httpOnly").value_or(false);
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const std::string* same_site_string = details.FindStringKey("sameSite");
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net::CookieSameSite same_site;
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std::string error = StringToCookieSameSite(same_site_string, &same_site);
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if (!error.empty()) {
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promise.RejectWithErrorMessage(error);
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return handle;
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}
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bool secure = details.FindBoolKey("secure").value_or(
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same_site == net::CookieSameSite::NO_RESTRICTION);
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bool same_party =
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details.FindBoolKey("sameParty")
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.value_or(secure && same_site != net::CookieSameSite::STRICT_MODE);
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GURL url(url_string ? *url_string : "");
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if (!url.is_valid()) {
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promise.RejectWithErrorMessage(
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InclusionStatusToString(net::CookieInclusionStatus(
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net::CookieInclusionStatus::EXCLUDE_INVALID_DOMAIN)));
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return handle;
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}
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auto canonical_cookie = net::CanonicalCookie::CreateSanitizedCookie(
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url, name ? *name : "", value ? *value : "", domain ? *domain : "",
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path ? *path : "",
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ParseTimeProperty(details.FindDoubleKey("creationDate")),
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ParseTimeProperty(details.FindDoubleKey("expirationDate")),
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ParseTimeProperty(details.FindDoubleKey("lastAccessDate")), secure,
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http_only, same_site, net::COOKIE_PRIORITY_DEFAULT, same_party,
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absl::nullopt);
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if (!canonical_cookie || !canonical_cookie->IsCanonical()) {
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promise.RejectWithErrorMessage(
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InclusionStatusToString(net::CookieInclusionStatus(
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net::CookieInclusionStatus::EXCLUDE_FAILURE_TO_STORE)));
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return handle;
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}
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net::CookieOptions options;
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if (http_only) {
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options.set_include_httponly();
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}
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options.set_same_site_cookie_context(
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net::CookieOptions::SameSiteCookieContext::MakeInclusive());
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auto* storage_partition = browser_context_->GetDefaultStoragePartition();
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auto* manager = storage_partition->GetCookieManagerForBrowserProcess();
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manager->SetCanonicalCookie(
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*canonical_cookie, url, options,
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base::BindOnce(
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[](gin_helper::Promise<void> promise, net::CookieAccessResult r) {
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if (r.status.IsInclude()) {
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promise.Resolve();
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} else {
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promise.RejectWithErrorMessage(InclusionStatusToString(r.status));
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}
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},
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std::move(promise)));
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return handle;
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}
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v8::Local<v8::Promise> Cookies::FlushStore(v8::Isolate* isolate) {
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gin_helper::Promise<void> promise(isolate);
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v8::Local<v8::Promise> handle = promise.GetHandle();
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auto* storage_partition = browser_context_->GetDefaultStoragePartition();
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auto* manager = storage_partition->GetCookieManagerForBrowserProcess();
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manager->FlushCookieStore(base::BindOnce(
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gin_helper::Promise<void>::ResolvePromise, std::move(promise)));
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return handle;
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}
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void Cookies::OnCookieChanged(const net::CookieChangeInfo& change) {
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v8::Isolate* isolate = JavascriptEnvironment::GetIsolate();
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v8::HandleScope scope(isolate);
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Emit("changed", gin::ConvertToV8(isolate, change.cookie),
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gin::ConvertToV8(isolate, change.cause),
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gin::ConvertToV8(isolate,
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change.cause != net::CookieChangeCause::INSERTED));
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}
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// static
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gin::Handle<Cookies> Cookies::Create(v8::Isolate* isolate,
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ElectronBrowserContext* browser_context) {
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return gin::CreateHandle(isolate, new Cookies(isolate, browser_context));
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}
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gin::ObjectTemplateBuilder Cookies::GetObjectTemplateBuilder(
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v8::Isolate* isolate) {
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return gin_helper::EventEmitterMixin<Cookies>::GetObjectTemplateBuilder(
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isolate)
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.SetMethod("get", &Cookies::Get)
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.SetMethod("remove", &Cookies::Remove)
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.SetMethod("set", &Cookies::Set)
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.SetMethod("flushStore", &Cookies::FlushStore);
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}
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const char* Cookies::GetTypeName() {
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return "Cookies";
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}
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} // namespace electron::api
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