mirror of
https://github.com/akuker/RASCSI.git
synced 2024-11-26 13:49:21 +00:00
454c61ac0d
* Support for ID and LUN parameter for the -L option in rascsi * Added DeviceLogger class * Removed dupiicate code * Fixed SonarQube issues * Added unit tests, improved code sharing * Fixed regression (#979)
136 lines
4.3 KiB
C++
136 lines
4.3 KiB
C++
//---------------------------------------------------------------------------
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//
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// SCSI Target Emulator RaSCSI Reloaded
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// for Raspberry Pi
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//
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// Copyright (C) 2022 Uwe Seimet
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//
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// Base class for device controllers
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//
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//---------------------------------------------------------------------------
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#pragma once
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#include "shared/scsi.h"
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#include "hal/bus.h"
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#include "phase_handler.h"
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#include "controller_manager.h"
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#include <unordered_set>
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#include <unordered_map>
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#include <vector>
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#include <memory>
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using namespace std;
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class PrimaryDevice;
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class AbstractController : public PhaseHandler, public enable_shared_from_this<AbstractController>
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{
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public:
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static inline const int UNKNOWN_INITIATOR_ID = -1;
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enum class rascsi_shutdown_mode {
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NONE,
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STOP_RASCSI,
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STOP_PI,
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RESTART_PI
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};
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AbstractController(shared_ptr<ControllerManager> controller_manager, int target_id, int max_luns)
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: controller_manager(controller_manager), target_id(target_id), max_luns(max_luns) {}
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~AbstractController() override = default;
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virtual void Error(scsi_defs::sense_key, scsi_defs::asc = scsi_defs::asc::NO_ADDITIONAL_SENSE_INFORMATION,
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scsi_defs::status = scsi_defs::status::CHECK_CONDITION) = 0;
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virtual void Reset();
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virtual int GetInitiatorId() const = 0;
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// Get requested LUN based on IDENTIFY message, with LUN from the CDB as fallback
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virtual int GetEffectiveLun() const = 0;
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virtual void ScheduleShutdown(rascsi_shutdown_mode) = 0;
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int GetTargetId() const { return target_id; }
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int GetMaxLuns() const { return max_luns; }
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int GetLunCount() const { return static_cast<int>(luns.size()); }
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unordered_set<shared_ptr<PrimaryDevice>> GetDevices() const;
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shared_ptr<PrimaryDevice> GetDeviceForLun(int) const;
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bool AddDevice(shared_ptr<PrimaryDevice>);
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bool RemoveDevice(shared_ptr<PrimaryDevice>);
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bool HasDeviceForLun(int) const;
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int ExtractInitiatorId(int) const;
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// TODO These should probably be extracted into a new TransferHandler class
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void AllocateBuffer(size_t);
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vector<uint8_t>& GetBuffer() { return ctrl.buffer; }
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scsi_defs::status GetStatus() const { return ctrl.status; }
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void SetStatus(scsi_defs::status s) { ctrl.status = s; }
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uint32_t GetLength() const { return ctrl.length; }
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void SetLength(uint32_t l) { ctrl.length = l; }
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uint32_t GetBlocks() const { return ctrl.blocks; }
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void SetBlocks(uint32_t b) { ctrl.blocks = b; }
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void DecrementBlocks() { --ctrl.blocks; }
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uint64_t GetNext() const { return ctrl.next; }
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void SetNext(uint64_t n) { ctrl.next = n; }
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void IncrementNext() { ++ctrl.next; }
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int GetMessage() const { return ctrl.message; }
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void SetMessage(int m) { ctrl.message = m; }
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vector<int>& GetCmd() { return ctrl.cmd; }
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int GetCmd(int index) const { return ctrl.cmd[index]; }
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bool IsByteTransfer() const { return is_byte_transfer; }
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void SetByteTransfer(bool);
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uint32_t GetBytesToTransfer() const { return bytes_to_transfer; }
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void SetBytesToTransfer(uint32_t b) { bytes_to_transfer = b; }
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protected:
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shared_ptr<ControllerManager> GetControllerManager() const { return controller_manager.lock(); }
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inline BUS& GetBus() const { return controller_manager.lock()->GetBus(); }
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scsi_defs::scsi_command GetOpcode() const { return static_cast<scsi_defs::scsi_command>(ctrl.cmd[0]); }
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int GetLun() const { return (ctrl.cmd[1] >> 5) & 0x07; }
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void ProcessPhase();
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void AllocateCmd(size_t);
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// TODO These should probably be extracted into a new TransferHandler class
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bool HasValidLength() const { return ctrl.length != 0; }
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int GetOffset() const { return ctrl.offset; }
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void ResetOffset() { ctrl.offset = 0; }
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void UpdateOffsetAndLength() { ctrl.offset += ctrl.length; ctrl.length = 0; }
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private:
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using ctrl_t = struct _ctrl_t {
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// Command data, dynamically resized if required
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vector<int> cmd = vector<int>(16);
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scsi_defs::status status; // Status data
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int message; // Message data
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// Transfer
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vector<uint8_t> buffer; // Transfer data buffer
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uint32_t blocks; // Number of transfer blocks
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uint64_t next; // Next record
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uint32_t offset; // Transfer offset
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uint32_t length; // Transfer remaining length
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};
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ctrl_t ctrl = {};
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weak_ptr<ControllerManager> controller_manager;
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// Logical units of this controller mapped to their LUN numbers
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unordered_map<int, shared_ptr<PrimaryDevice>> luns;
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int target_id;
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int max_luns;
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bool is_byte_transfer = false;
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uint32_t bytes_to_transfer = 0;
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};
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