mirror of
https://github.com/akuker/RASCSI.git
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609 lines
17 KiB
C++
609 lines
17 KiB
C++
//---------------------------------------------------------------------------
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//
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// SCSI Target Emulator PiSCSI
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// for Raspberry Pi
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//
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// Copyright (C) 2021-2023 Uwe Seimet
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//
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//---------------------------------------------------------------------------
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#include "shared/piscsi_util.h"
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#include "shared/protobuf_util.h"
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#include "shared/piscsi_exceptions.h"
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#include "devices/device_factory.h"
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#include "devices/disk.h"
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#include "localizer.h"
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#include "command_context.h"
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#include "piscsi_executor.h"
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#include <spdlog/spdlog.h>
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#include <sstream>
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using namespace spdlog;
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using namespace protobuf_util;
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using namespace piscsi_util;
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bool PiscsiExecutor::ProcessDeviceCmd(const CommandContext& context, const PbDeviceDefinition& pb_device, bool dryRun)
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{
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spdlog::info((dryRun ? "Validating: " : "Executing: ") + PrintCommand(context.GetCommand(), pb_device));
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const int id = pb_device.id();
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const int lun = pb_device.unit();
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if (!ValidateIdAndLun(context, id, lun)) {
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return false;
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}
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const PbOperation operation = context.GetCommand().operation();
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// For all commands except ATTACH the device and LUN must exist
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if (operation != ATTACH && !VerifyExistingIdAndLun(context, id, lun)) {
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return false;
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}
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auto device = controller_manager.GetDeviceForIdAndLun(id, lun);
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if (!ValidateOperationAgainstDevice(context, *device, operation)) {
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return false;
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}
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switch (operation) {
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case START:
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return Start(*device, dryRun);
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case STOP:
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return Stop(*device, dryRun);
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case ATTACH:
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return Attach(context, pb_device, dryRun);
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case DETACH:
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return Detach(context, *device, dryRun);
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case INSERT:
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return Insert(context, pb_device, device, dryRun);
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case EJECT:
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return Eject(*device, dryRun);
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case PROTECT:
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return Protect(*device, dryRun);
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case UNPROTECT:
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return Unprotect(*device, dryRun);
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break;
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case CHECK_AUTHENTICATION:
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case NO_OPERATION:
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// Do nothing, just log
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spdlog::trace("Received " + PbOperation_Name(operation) + " command");
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break;
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default:
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return context.ReturnLocalizedError(LocalizationKey::ERROR_OPERATION, to_string(operation));
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}
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return true;
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}
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bool PiscsiExecutor::ProcessCmd(const CommandContext& context)
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{
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const PbCommand& command = context.GetCommand();
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// Handle commands that are not device-specific
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switch (command.operation()) {
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case DETACH_ALL:
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DetachAll();
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return context.ReturnSuccessStatus();
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case RESERVE_IDS: {
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if (const string error = SetReservedIds(GetParam(command, "ids")); !error.empty()) {
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return context.ReturnErrorStatus(error);
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}
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return context.ReturnSuccessStatus();
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}
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default:
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// This is a device-specific command handled below
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break;
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}
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// Remember the list of reserved files during the dry run
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const auto& reserved_files = StorageDevice::GetReservedFiles();
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const bool isDryRunError = ranges::find_if_not(command.devices(), [&] (const auto& device)
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{ return ProcessDeviceCmd(context, device, true); }) != command.devices().end();
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StorageDevice::SetReservedFiles(reserved_files);
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if (isDryRunError) {
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return false;
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}
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if (const string error = EnsureLun0(command); !error.empty()) {
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return context.ReturnErrorStatus(error);
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}
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if (ranges::find_if_not(command.devices(), [&] (const auto& device)
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{ return ProcessDeviceCmd(context, device, false); } ) != command.devices().end()) {
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return false;
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}
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return context.ReturnSuccessStatus();
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}
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bool PiscsiExecutor::Start(PrimaryDevice& device, bool dryRun) const
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{
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if (!dryRun) {
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spdlog::info("Start requested for " + device.GetIdentifier());
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if (!device.Start()) {
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spdlog::warn("Starting " + device.GetIdentifier() + " failed");
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}
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}
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return true;
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}
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bool PiscsiExecutor::Stop(PrimaryDevice& device, bool dryRun) const
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{
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if (!dryRun) {
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spdlog::info("Stop requested for " + device.GetIdentifier());
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device.Stop();
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}
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return true;
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}
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bool PiscsiExecutor::Eject(PrimaryDevice& device, bool dryRun) const
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{
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if (!dryRun) {
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spdlog::info("Eject requested for " + device.GetIdentifier());
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if (!device.Eject(true)) {
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spdlog::warn("Ejecting " + device.GetIdentifier() + " failed");
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}
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}
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return true;
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}
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bool PiscsiExecutor::Protect(PrimaryDevice& device, bool dryRun) const
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{
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if (!dryRun) {
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spdlog::info("Write protection requested for " + device.GetIdentifier());
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device.SetProtected(true);
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}
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return true;
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}
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bool PiscsiExecutor::Unprotect(PrimaryDevice& device, bool dryRun) const
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{
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if (!dryRun) {
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spdlog::info("Write unprotection requested for " + device.GetIdentifier());
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device.SetProtected(false);
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}
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return true;
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}
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bool PiscsiExecutor::Attach(const CommandContext& context, const PbDeviceDefinition& pb_device, bool dryRun)
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{
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const int id = pb_device.id();
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const int lun = pb_device.unit();
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const PbDeviceType type = pb_device.type();
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if (lun >= ControllerManager::GetScsiLunMax()) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_INVALID_LUN, to_string(lun),
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to_string(ControllerManager::GetScsiLunMax()));
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}
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if (controller_manager.HasDeviceForIdAndLun(id, lun)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_DUPLICATE_ID, to_string(id), to_string(lun));
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}
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if (reserved_ids.contains(id)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_RESERVED_ID, to_string(id));
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}
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const string filename = GetParam(pb_device, "file");
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auto device = CreateDevice(context, type, lun, filename);
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if (device == nullptr) {
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return false;
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}
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// If no filename was provided the medium is considered not inserted
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device->SetRemoved(device->SupportsFile() ? filename.empty() : false);
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if (!SetProductData(context, pb_device, *device)) {
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return false;
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}
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if (!SetSectorSize(context, device, pb_device.block_size())) {
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return false;
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}
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const auto storage_device = dynamic_pointer_cast<StorageDevice>(device);
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if (device->SupportsFile()) {
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// Only with removable media drives, CD and MO the medium (=file) may be inserted later
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if (!device->IsRemovable() && filename.empty()) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_MISSING_FILENAME, PbDeviceType_Name(type));
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}
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if (!ValidateImageFile(context, *storage_device, filename)) {
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return false;
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}
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}
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// Only non read-only devices support protect/unprotect
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// This operation must not be executed before Open() because Open() overrides some settings.
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if (device->IsProtectable() && !device->IsReadOnly()) {
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device->SetProtected(pb_device.protected_());
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}
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// Stop the dry run here, before actually attaching
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if (dryRun) {
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return true;
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}
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param_map params = { pb_device.params().begin(), pb_device.params().end() };
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if (!device->SupportsFile()) {
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// Clients like scsictl might have sent both "file" and "interfaces"
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params.erase("file");
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}
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if (!device->Init(params)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_INITIALIZATION, device->GetIdentifier());
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}
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if (!controller_manager.AttachToController(bus, id, device)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_SCSI_CONTROLLER);
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}
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if (storage_device != nullptr && !storage_device->IsRemoved()) {
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storage_device->ReserveFile();
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}
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string msg = "Attached ";
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if (device->IsReadOnly()) {
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msg += "read-only ";
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}
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else if (device->IsProtectable() && device->IsProtected()) {
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msg += "protected ";
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}
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msg += device->GetIdentifier();
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spdlog::info(msg);
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return true;
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}
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bool PiscsiExecutor::Insert(const CommandContext& context, const PbDeviceDefinition& pb_device,
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const shared_ptr<PrimaryDevice>& device, bool dryRun) const
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{
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if (!device->SupportsFile()) {
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return false;
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}
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if (!device->IsRemoved()) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_EJECT_REQUIRED);
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}
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if (!pb_device.vendor().empty() || !pb_device.product().empty() || !pb_device.revision().empty()) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_DEVICE_NAME_UPDATE);
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}
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const string filename = GetParam(pb_device, "file");
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if (filename.empty()) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_MISSING_FILENAME);
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}
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// Stop the dry run here, before modifying the device
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if (dryRun) {
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return true;
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}
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spdlog::info("Insert " + string(pb_device.protected_() ? "protected " : "") + "file '" + filename +
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"' requested into " + device->GetIdentifier());
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if (!SetSectorSize(context, device, pb_device.block_size())) {
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return false;
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}
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auto storage_device = dynamic_pointer_cast<StorageDevice>(device);
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if (!ValidateImageFile(context, *storage_device, filename)) {
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return false;
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}
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storage_device->SetProtected(pb_device.protected_());
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storage_device->ReserveFile();
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storage_device->SetMediumChanged(true);
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return true;
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}
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bool PiscsiExecutor::Detach(const CommandContext& context, PrimaryDevice& device, bool dryRun)
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{
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auto controller = controller_manager.FindController(device.GetId());
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if (controller == nullptr) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_DETACH);
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}
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// LUN 0 can only be detached if there is no other LUN anymore
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if (!device.GetLun() && controller->GetLunCount() > 1) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_LUN0);
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}
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if (!dryRun) {
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// Remember the device identifier for the log message before the device data become invalid on removal
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const string identifier = device.GetIdentifier();
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if (!controller->RemoveDevice(device)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_DETACH);
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}
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// If no LUN is left also delete the controller
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if (!controller->GetLunCount() && !controller_manager.DeleteController(*controller)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_DETACH);
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}
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spdlog::info("Detached " + identifier);
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}
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return true;
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}
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void PiscsiExecutor::DetachAll()
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{
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controller_manager.DeleteAllControllers();
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spdlog::info("Detached all devices");
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}
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string PiscsiExecutor::SetReservedIds(string_view ids)
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{
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set<int> ids_to_reserve;
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stringstream ss(ids.data());
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string id;
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while (getline(ss, id, ',')) {
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int res_id;
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if (!GetAsUnsignedInt(id, res_id) || res_id > 7) {
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return "Invalid ID " + id;
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}
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if (controller_manager.HasController(res_id)) {
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return "ID " + id + " is currently in use";
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}
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ids_to_reserve.insert(res_id);
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}
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reserved_ids = { ids_to_reserve.begin(), ids_to_reserve.end() };
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if (!ids_to_reserve.empty()) {
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spdlog::info("Reserved ID(s) set to " + Join(ids_to_reserve));
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}
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else {
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spdlog::info("Cleared reserved ID(s)");
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}
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return "";
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}
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bool PiscsiExecutor::ValidateImageFile(const CommandContext& context, StorageDevice& storage_device,
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const string& filename) const
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{
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if (filename.empty()) {
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return true;
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}
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if (!CheckForReservedFile(context, filename)) {
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return false;
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}
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storage_device.SetFilename(filename);
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if (!StorageDevice::FileExists(filename)) {
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// If the file does not exist search for it in the default image folder
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const string effective_filename = context.GetDefaultFolder() + "/" + filename;
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if (!CheckForReservedFile(context, effective_filename)) {
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return false;
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}
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storage_device.SetFilename(effective_filename);
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}
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try {
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storage_device.Open();
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}
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catch(const io_exception&) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_FILE_OPEN, storage_device.GetFilename());
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}
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return true;
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}
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bool PiscsiExecutor::CheckForReservedFile(const CommandContext& context, const string& filename)
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{
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if (const auto [id, lun] = StorageDevice::GetIdsForReservedFile(filename); id != -1) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_IMAGE_IN_USE, filename,
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to_string(id) + ":" + to_string(lun));
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}
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return true;
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}
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string PiscsiExecutor::PrintCommand(const PbCommand& command, const PbDeviceDefinition& pb_device) const
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{
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const map<string, string, less<>> params = { command.params().begin(), command.params().end() };
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ostringstream s;
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s << "operation=" << PbOperation_Name(command.operation());
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if (!params.empty()) {
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s << ", command params=";
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bool isFirst = true;
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for (const auto& [key, value] : params) {
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if (!isFirst) {
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s << ", ";
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}
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isFirst = false;
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string v = key != "token" ? value : "???";
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s << "'" << key << "=" << v << "'";
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}
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}
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s << ", device=" << pb_device.id() << ":" << pb_device.unit() << ", type=" << PbDeviceType_Name(pb_device.type());
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if (pb_device.params_size()) {
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s << ", device params=";
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bool isFirst = true;
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for (const auto& [key, value]: pb_device.params()) {
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if (!isFirst) {
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s << ":";
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}
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isFirst = false;
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s << "'" << key << "=" << value << "'";
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}
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}
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s << ", vendor='" << pb_device.vendor() << "', product='" << pb_device.product()
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<< "', revision='" << pb_device.revision() << "', block size=" << pb_device.block_size();
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return s.str();
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}
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string PiscsiExecutor::EnsureLun0(const PbCommand& command) const
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{
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// Mapping of available LUNs (bit vector) to devices
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unordered_map<int32_t, int32_t> luns;
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// Collect LUN bit vectors of new devices
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for (const auto& device : command.devices()) {
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luns[device.id()] |= 1 << device.unit();
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}
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// Collect LUN bit vectors of existing devices
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for (const auto& device : controller_manager.GetAllDevices()) {
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luns[device->GetId()] |= 1 << device->GetLun();
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}
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const auto& it = ranges::find_if_not(luns, [] (const auto& l) { return l.second & 0x01; } );
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return it == luns.end() ? "" : "LUN 0 is missing for device ID " + to_string((*it).first);
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}
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bool PiscsiExecutor::VerifyExistingIdAndLun(const CommandContext& context, int id, int lun) const
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{
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if (!controller_manager.HasController(id)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_NON_EXISTING_DEVICE, to_string(id));
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}
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if (!controller_manager.HasDeviceForIdAndLun(id, lun)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_NON_EXISTING_UNIT, to_string(id), to_string(lun));
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}
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return true;
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}
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shared_ptr<PrimaryDevice> PiscsiExecutor::CreateDevice(const CommandContext& context, const PbDeviceType type,
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int lun, const string& filename) const
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{
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auto device = device_factory.CreateDevice(type, lun, filename);
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if (device == nullptr) {
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if (type == UNDEFINED) {
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context.ReturnLocalizedError(LocalizationKey::ERROR_MISSING_DEVICE_TYPE, filename);
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}
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else {
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context.ReturnLocalizedError(LocalizationKey::ERROR_UNKNOWN_DEVICE_TYPE, PbDeviceType_Name(type));
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}
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}
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return device;
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}
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bool PiscsiExecutor::SetSectorSize(const CommandContext& context, shared_ptr<PrimaryDevice> device, int size) const
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{
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if (size) {
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const auto disk = dynamic_pointer_cast<Disk>(device);
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if (disk != nullptr && disk->IsSectorSizeConfigurable()) {
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if (!disk->SetConfiguredSectorSize(device_factory, size)) {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_BLOCK_SIZE, to_string(size));
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}
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}
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else {
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return context.ReturnLocalizedError(LocalizationKey::ERROR_BLOCK_SIZE_NOT_CONFIGURABLE,
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device->GetTypeString());
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}
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}
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return true;
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}
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bool PiscsiExecutor::ValidateOperationAgainstDevice(const CommandContext& context, const PrimaryDevice& device,
|
|
PbOperation operation)
|
|
{
|
|
if ((operation == START || operation == STOP) && !device.IsStoppable()) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_OPERATION_DENIED_STOPPABLE, PbOperation_Name(operation),
|
|
device.GetTypeString());
|
|
}
|
|
|
|
if ((operation == INSERT || operation == EJECT) && !device.IsRemovable()) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_OPERATION_DENIED_REMOVABLE, PbOperation_Name(operation),
|
|
device.GetTypeString());
|
|
}
|
|
|
|
if ((operation == PROTECT || operation == UNPROTECT) && !device.IsProtectable()) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_OPERATION_DENIED_PROTECTABLE, PbOperation_Name(operation),
|
|
device.GetTypeString());
|
|
}
|
|
|
|
if ((operation == PROTECT || operation == UNPROTECT) && !device.IsReady()) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_OPERATION_DENIED_READY, PbOperation_Name(operation),
|
|
device.GetTypeString());
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
bool PiscsiExecutor::ValidateIdAndLun(const CommandContext& context, int id, int lun)
|
|
{
|
|
if (id < 0) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_MISSING_DEVICE_ID);
|
|
}
|
|
if (id >= ControllerManager::GetScsiIdMax()) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_INVALID_ID, to_string(id),
|
|
to_string(ControllerManager::GetScsiIdMax() - 1));
|
|
}
|
|
if (lun < 0 || lun >= ControllerManager::GetScsiLunMax()) {
|
|
return context.ReturnLocalizedError(LocalizationKey::ERROR_INVALID_LUN, to_string(lun),
|
|
to_string(ControllerManager::GetScsiLunMax() - 1));
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
bool PiscsiExecutor::SetProductData(const CommandContext& context, const PbDeviceDefinition& pb_device,
|
|
PrimaryDevice& device)
|
|
{
|
|
try {
|
|
if (!pb_device.vendor().empty()) {
|
|
device.SetVendor(pb_device.vendor());
|
|
}
|
|
if (!pb_device.product().empty()) {
|
|
device.SetProduct(pb_device.product());
|
|
}
|
|
if (!pb_device.revision().empty()) {
|
|
device.SetRevision(pb_device.revision());
|
|
}
|
|
}
|
|
catch(const invalid_argument& e) {
|
|
return context.ReturnErrorStatus(e.what());
|
|
}
|
|
|
|
return true;
|
|
}
|