mirror of https://github.com/electron/electron
340 lines
12 KiB
C++
340 lines
12 KiB
C++
// Copyright (c) 2022 Microsoft, 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/usb/usb_chooser_context.h"
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#include <string_view>
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#include <utility>
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#include <vector>
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#include "base/containers/contains.h"
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#include "base/functional/bind.h"
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#include "base/task/sequenced_task_runner.h"
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#include "base/values.h"
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#include "components/content_settings/core/common/content_settings.h"
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#include "content/public/browser/device_service.h"
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#include "services/device/public/cpp/usb/usb_ids.h"
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#include "services/device/public/mojom/usb_device.mojom.h"
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#include "shell/browser/api/electron_api_session.h"
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#include "shell/browser/electron_browser_context.h"
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#include "shell/browser/electron_permission_manager.h"
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#include "shell/browser/web_contents_permission_helper.h"
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#include "shell/common/electron_constants.h"
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#include "shell/common/gin_converters/usb_device_info_converter.h"
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#include "shell/common/gin_helper/dictionary.h"
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#include "shell/common/node_includes.h"
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#include "ui/base/l10n/l10n_util.h"
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namespace {
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constexpr char kDeviceNameKey[] = "productName";
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constexpr char kDeviceIdKey[] = "deviceId";
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constexpr int kUsbClassMassStorage = 0x08;
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bool CanStorePersistentEntry(const device::mojom::UsbDeviceInfo& device_info) {
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return device_info.serial_number && !device_info.serial_number->empty();
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}
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bool IsMassStorageInterface(const device::mojom::UsbInterfaceInfo& interface) {
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for (auto& alternate : interface.alternates) {
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if (alternate->class_code == kUsbClassMassStorage)
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return true;
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}
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return false;
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}
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bool ShouldExposeDevice(const device::mojom::UsbDeviceInfo& device_info) {
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// blink::USBDevice::claimInterface() disallows claiming mass storage
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// interfaces, but explicitly prevent access in the browser process as
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// ChromeOS would allow these interfaces to be claimed.
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for (auto& configuration : device_info.configurations) {
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if (configuration->interfaces.size() == 0) {
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return true;
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}
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for (auto& interface : configuration->interfaces) {
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if (!IsMassStorageInterface(*interface))
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return true;
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}
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}
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return false;
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}
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} // namespace
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namespace electron {
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UsbChooserContext::UsbChooserContext(ElectronBrowserContext* context)
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: browser_context_(context) {}
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// static
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base::Value UsbChooserContext::DeviceInfoToValue(
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const device::mojom::UsbDeviceInfo& device_info) {
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base::Value::Dict device_value;
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device_value.Set(kDeviceNameKey, device_info.product_name
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? *device_info.product_name
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: std::u16string_view());
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device_value.Set(kDeviceVendorIdKey, device_info.vendor_id);
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device_value.Set(kDeviceProductIdKey, device_info.product_id);
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if (device_info.manufacturer_name) {
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device_value.Set("manufacturerName", *device_info.manufacturer_name);
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}
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// CanStorePersistentEntry checks if |device_info.serial_number| is not empty.
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if (CanStorePersistentEntry(device_info)) {
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device_value.Set(kDeviceSerialNumberKey, *device_info.serial_number);
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}
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device_value.Set(kDeviceIdKey, device_info.guid);
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device_value.Set("usbVersionMajor", device_info.usb_version_major);
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device_value.Set("usbVersionMinor", device_info.usb_version_minor);
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device_value.Set("usbVersionSubminor", device_info.usb_version_subminor);
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device_value.Set("deviceClass", device_info.class_code);
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device_value.Set("deviceSubclass", device_info.subclass_code);
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device_value.Set("deviceProtocol", device_info.protocol_code);
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device_value.Set("deviceVersionMajor", device_info.device_version_major);
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device_value.Set("deviceVersionMinor", device_info.device_version_minor);
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device_value.Set("deviceVersionSubminor",
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device_info.device_version_subminor);
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return base::Value(std::move(device_value));
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}
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void UsbChooserContext::InitDeviceList(
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std::vector<device::mojom::UsbDeviceInfoPtr> devices) {
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for (auto& device_info : devices) {
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DCHECK(device_info);
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if (ShouldExposeDevice(*device_info)) {
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devices_.insert(
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std::make_pair(device_info->guid, std::move(device_info)));
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}
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}
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is_initialized_ = true;
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while (!pending_get_devices_requests_.empty()) {
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std::vector<device::mojom::UsbDeviceInfoPtr> device_list;
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for (const auto& entry : devices_) {
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device_list.push_back(entry.second->Clone());
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}
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std::move(pending_get_devices_requests_.front())
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.Run(std::move(device_list));
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pending_get_devices_requests_.pop();
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}
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}
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void UsbChooserContext::EnsureConnectionWithDeviceManager() {
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if (device_manager_)
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return;
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// Receive mojo::Remote<UsbDeviceManager> from DeviceService.
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content::GetDeviceService().BindUsbDeviceManager(
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device_manager_.BindNewPipeAndPassReceiver());
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SetUpDeviceManagerConnection();
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}
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void UsbChooserContext::SetUpDeviceManagerConnection() {
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DCHECK(device_manager_);
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device_manager_.set_disconnect_handler(
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base::BindOnce(&UsbChooserContext::OnDeviceManagerConnectionError,
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base::Unretained(this)));
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// Listen for added/removed device events.
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DCHECK(!client_receiver_.is_bound());
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device_manager_->EnumerateDevicesAndSetClient(
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client_receiver_.BindNewEndpointAndPassRemote(),
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base::BindOnce(&UsbChooserContext::InitDeviceList,
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weak_factory_.GetWeakPtr()));
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}
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UsbChooserContext::~UsbChooserContext() {
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OnDeviceManagerConnectionError();
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for (auto& observer : device_observer_list_) {
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observer.OnBrowserContextShutdown();
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DCHECK(!device_observer_list_.HasObserver(&observer));
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}
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}
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void UsbChooserContext::RevokeDevicePermissionWebInitiated(
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const url::Origin& origin,
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const device::mojom::UsbDeviceInfo& device) {
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DCHECK(base::Contains(devices_, device.guid));
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RevokeObjectPermissionInternal(origin, DeviceInfoToValue(device),
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/*revoked_by_website=*/true);
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}
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void UsbChooserContext::RevokeObjectPermissionInternal(
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const url::Origin& origin,
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const base::Value& object,
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bool revoked_by_website = false) {
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const base::Value::Dict* object_dict = object.GetIfDict();
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DCHECK(object_dict != nullptr);
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if (object_dict->FindString(kDeviceSerialNumberKey) != nullptr) {
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auto* permission_manager = static_cast<ElectronPermissionManager*>(
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browser_context_->GetPermissionControllerDelegate());
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permission_manager->RevokeDevicePermission(
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static_cast<blink::PermissionType>(
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WebContentsPermissionHelper::PermissionType::USB),
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origin, object, browser_context_);
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} else {
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const std::string* guid = object_dict->FindString(kDeviceIdKey);
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auto it = ephemeral_devices_.find(origin);
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if (it != ephemeral_devices_.end()) {
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it->second.erase(*guid);
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if (it->second.empty())
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ephemeral_devices_.erase(it);
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}
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}
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api::Session* session = api::Session::FromBrowserContext(browser_context_);
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if (session) {
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v8::Isolate* isolate = JavascriptEnvironment::GetIsolate();
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v8::HandleScope scope(isolate);
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auto details = gin_helper::Dictionary::CreateEmpty(isolate);
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details.Set("device", object);
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details.Set("origin", origin.Serialize());
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session->Emit("usb-device-revoked", details);
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}
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}
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void UsbChooserContext::GrantDevicePermission(
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const url::Origin& origin,
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const device::mojom::UsbDeviceInfo& device_info) {
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if (CanStorePersistentEntry(device_info)) {
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auto* permission_manager = static_cast<ElectronPermissionManager*>(
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browser_context_->GetPermissionControllerDelegate());
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permission_manager->GrantDevicePermission(
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static_cast<blink::PermissionType>(
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WebContentsPermissionHelper::PermissionType::USB),
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origin, DeviceInfoToValue(device_info), browser_context_);
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} else {
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ephemeral_devices_[origin].insert(device_info.guid);
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}
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}
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bool UsbChooserContext::HasDevicePermission(
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const url::Origin& origin,
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const device::mojom::UsbDeviceInfo& device_info) {
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auto it = ephemeral_devices_.find(origin);
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if (it != ephemeral_devices_.end() &&
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base::Contains(it->second, device_info.guid)) {
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return true;
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}
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auto* permission_manager = static_cast<ElectronPermissionManager*>(
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browser_context_->GetPermissionControllerDelegate());
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return permission_manager->CheckDevicePermission(
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static_cast<blink::PermissionType>(
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WebContentsPermissionHelper::PermissionType::USB),
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origin, DeviceInfoToValue(device_info), browser_context_);
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}
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void UsbChooserContext::GetDevices(
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device::mojom::UsbDeviceManager::GetDevicesCallback callback) {
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if (!is_initialized_) {
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EnsureConnectionWithDeviceManager();
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pending_get_devices_requests_.push(std::move(callback));
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return;
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}
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std::vector<device::mojom::UsbDeviceInfoPtr> device_list;
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for (const auto& pair : devices_) {
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device_list.push_back(pair.second->Clone());
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}
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base::SequencedTaskRunner::GetCurrentDefault()->PostTask(
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FROM_HERE, base::BindOnce(std::move(callback), std::move(device_list)));
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}
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void UsbChooserContext::GetDevice(
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const std::string& guid,
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base::span<const uint8_t> blocked_interface_classes,
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mojo::PendingReceiver<device::mojom::UsbDevice> device_receiver,
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mojo::PendingRemote<device::mojom::UsbDeviceClient> device_client) {
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EnsureConnectionWithDeviceManager();
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device_manager_->GetDevice(
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guid,
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std::vector<uint8_t>(blocked_interface_classes.begin(),
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blocked_interface_classes.end()),
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std::move(device_receiver), std::move(device_client));
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}
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const device::mojom::UsbDeviceInfo* UsbChooserContext::GetDeviceInfo(
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const std::string& guid) {
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DCHECK(is_initialized_);
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auto it = devices_.find(guid);
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return it == devices_.end() ? nullptr : it->second.get();
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}
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void UsbChooserContext::AddObserver(DeviceObserver* observer) {
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EnsureConnectionWithDeviceManager();
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device_observer_list_.AddObserver(observer);
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}
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void UsbChooserContext::RemoveObserver(DeviceObserver* observer) {
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device_observer_list_.RemoveObserver(observer);
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}
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base::WeakPtr<UsbChooserContext> UsbChooserContext::AsWeakPtr() {
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return weak_factory_.GetWeakPtr();
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}
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void UsbChooserContext::OnDeviceAdded(
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device::mojom::UsbDeviceInfoPtr device_info) {
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DCHECK(device_info);
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// Update the device list.
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DCHECK(!base::Contains(devices_, device_info->guid));
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if (!ShouldExposeDevice(*device_info))
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return;
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devices_.insert(std::make_pair(device_info->guid, device_info->Clone()));
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// Notify all observers.
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for (auto& observer : device_observer_list_)
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observer.OnDeviceAdded(*device_info);
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}
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void UsbChooserContext::OnDeviceRemoved(
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device::mojom::UsbDeviceInfoPtr device_info) {
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DCHECK(device_info);
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if (!ShouldExposeDevice(*device_info)) {
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DCHECK(!base::Contains(devices_, device_info->guid));
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return;
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}
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// Update the device list.
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DCHECK(base::Contains(devices_, device_info->guid));
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devices_.erase(device_info->guid);
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// Notify all device observers.
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for (auto& observer : device_observer_list_)
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observer.OnDeviceRemoved(*device_info);
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// If the device was persistent, return. Otherwise, notify all permission
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// observers that its permissions were revoked.
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if (device_info->serial_number &&
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!device_info->serial_number.value().empty()) {
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return;
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}
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for (auto& map_entry : ephemeral_devices_) {
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map_entry.second.erase(device_info->guid);
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}
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}
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void UsbChooserContext::OnDeviceManagerConnectionError() {
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device_manager_.reset();
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client_receiver_.reset();
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devices_.clear();
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is_initialized_ = false;
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ephemeral_devices_.clear();
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// Notify all device observers.
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for (auto& observer : device_observer_list_)
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observer.OnDeviceManagerConnectionError();
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}
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} // namespace electron
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