mirror of
https://github.com/SerenityOS/serenity.git
synced 2025-01-23 01:41:59 -05:00
193 lines
6.8 KiB
C++
193 lines
6.8 KiB
C++
/*
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* Copyright (c) 2020, Liav A. <liavalb@hotmail.co.il>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/OwnPtr.h>
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#include <AK/RefPtr.h>
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#include <AK/Types.h>
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#include <Kernel/FileSystem/ProcFS.h>
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#include <Kernel/Storage/BMIDEChannel.h>
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#include <Kernel/Storage/IDEController.h>
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#include <Kernel/Storage/PATADiskDevice.h>
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namespace Kernel {
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UNMAP_AFTER_INIT NonnullRefPtr<IDEController> IDEController::initialize(PCI::Address address, bool force_pio)
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{
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return adopt_ref(*new IDEController(address, force_pio));
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}
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bool IDEController::reset()
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{
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TODO();
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}
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bool IDEController::shutdown()
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{
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TODO();
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}
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size_t IDEController::devices_count() const
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{
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size_t count = 0;
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for (u32 index = 0; index < 4; index++) {
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if (!device(index).is_null())
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count++;
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}
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return count;
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}
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void IDEController::start_request(const StorageDevice&, AsyncBlockDeviceRequest&)
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{
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VERIFY_NOT_REACHED();
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}
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void IDEController::complete_current_request(AsyncDeviceRequest::RequestResult)
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{
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VERIFY_NOT_REACHED();
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}
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UNMAP_AFTER_INIT IDEController::IDEController(PCI::Address address, bool force_pio)
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: StorageController()
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, PCI::DeviceController(address)
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{
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PCI::enable_io_space(address);
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PCI::enable_memory_space(address);
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initialize(force_pio);
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}
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UNMAP_AFTER_INIT IDEController::~IDEController()
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{
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}
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bool IDEController::is_pci_native_mode_enabled() const
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{
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return (PCI::get_programming_interface(pci_address()) & 0x05) != 0;
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}
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bool IDEController::is_pci_native_mode_enabled_on_primary_channel() const
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{
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return (PCI::get_programming_interface(pci_address()) & 0x1) == 0x1;
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}
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bool IDEController::is_pci_native_mode_enabled_on_secondary_channel() const
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{
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return (PCI::get_programming_interface(pci_address()) & 0x4) == 0x4;
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}
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bool IDEController::is_bus_master_capable() const
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{
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return PCI::get_programming_interface(pci_address()) & (1 << 7);
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}
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static const char* detect_controller_type(u8 programming_value)
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{
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switch (programming_value) {
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case 0x00:
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return "ISA Compatibility mode-only controller";
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case 0x05:
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return "PCI native mode-only controller";
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case 0x0A:
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return "ISA Compatibility mode controller, supports both channels switched to PCI native mode";
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case 0x0F:
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return "PCI native mode controller, supports both channels switched to ISA compatibility mode";
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case 0x80:
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return "ISA Compatibility mode-only controller, supports bus mastering";
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case 0x85:
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return "PCI native mode-only controller, supports bus mastering";
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case 0x8A:
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return "ISA Compatibility mode controller, supports both channels switched to PCI native mode, supports bus mastering";
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case 0x8F:
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return "PCI native mode controller, supports both channels switched to ISA compatibility mode, supports bus mastering";
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default:
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VERIFY_NOT_REACHED();
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}
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VERIFY_NOT_REACHED();
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}
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UNMAP_AFTER_INIT void IDEController::initialize(bool force_pio)
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{
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auto bus_master_base = IOAddress(PCI::get_BAR4(pci_address()) & (~1));
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dbgln("IDE controller @ {}: bus master base was set to {}", pci_address(), bus_master_base);
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dbgln("IDE controller @ {}: interrupt line was set to {}", pci_address(), PCI::get_interrupt_line(pci_address()));
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dbgln("IDE controller @ {}: {}", pci_address(), detect_controller_type(PCI::get_programming_interface(pci_address())));
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dbgln("IDE controller @ {}: primary channel DMA capable? {}", pci_address(), ((bus_master_base.offset(2).in<u8>() >> 5) & 0b11));
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dbgln("IDE controller @ {}: secondary channel DMA capable? {}", pci_address(), ((bus_master_base.offset(2 + 8).in<u8>() >> 5) & 0b11));
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if (!is_bus_master_capable())
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force_pio = true;
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auto bar0 = PCI::get_BAR0(pci_address());
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auto primary_base_io = (bar0 == 0x1 || bar0 == 0) ? IOAddress(0x1F0) : IOAddress(bar0 & (~1));
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auto bar1 = PCI::get_BAR1(pci_address());
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auto primary_control_io = (bar1 == 0x1 || bar1 == 0) ? IOAddress(0x3F6) : IOAddress(bar1 & (~1));
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auto bar2 = PCI::get_BAR2(pci_address());
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auto secondary_base_io = (bar2 == 0x1 || bar2 == 0) ? IOAddress(0x170) : IOAddress(bar2 & (~1));
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auto bar3 = PCI::get_BAR3(pci_address());
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auto secondary_control_io = (bar3 == 0x1 || bar3 == 0) ? IOAddress(0x376) : IOAddress(bar3 & (~1));
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auto irq_line = PCI::get_interrupt_line(pci_address());
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if (is_pci_native_mode_enabled()) {
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VERIFY(irq_line != 0);
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}
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if (is_pci_native_mode_enabled_on_primary_channel()) {
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if (force_pio)
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m_channels.append(IDEChannel::create(*this, irq_line, { primary_base_io, primary_control_io }, IDEChannel::ChannelType::Primary));
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else
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m_channels.append(BMIDEChannel::create(*this, irq_line, { primary_base_io, primary_control_io, bus_master_base }, IDEChannel::ChannelType::Primary));
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} else {
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if (force_pio)
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m_channels.append(IDEChannel::create(*this, { primary_base_io, primary_control_io }, IDEChannel::ChannelType::Primary));
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else
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m_channels.append(BMIDEChannel::create(*this, { primary_base_io, primary_control_io, bus_master_base }, IDEChannel::ChannelType::Primary));
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}
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m_channels[0].enable_irq();
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if (is_pci_native_mode_enabled_on_secondary_channel()) {
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if (force_pio)
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m_channels.append(IDEChannel::create(*this, irq_line, { secondary_base_io, secondary_control_io }, IDEChannel::ChannelType::Secondary));
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else
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m_channels.append(BMIDEChannel::create(*this, irq_line, { secondary_base_io, secondary_control_io, bus_master_base.offset(8) }, IDEChannel::ChannelType::Secondary));
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} else {
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if (force_pio)
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m_channels.append(IDEChannel::create(*this, { secondary_base_io, secondary_control_io }, IDEChannel::ChannelType::Secondary));
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else
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m_channels.append(BMIDEChannel::create(*this, { secondary_base_io, secondary_control_io, bus_master_base.offset(8) }, IDEChannel::ChannelType::Secondary));
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}
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m_channels[1].enable_irq();
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}
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RefPtr<StorageDevice> IDEController::device_by_channel_and_position(u32 index) const
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{
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switch (index) {
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case 0:
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return m_channels[0].master_device();
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case 1:
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return m_channels[0].slave_device();
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case 2:
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return m_channels[1].master_device();
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case 3:
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return m_channels[1].slave_device();
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}
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VERIFY_NOT_REACHED();
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}
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RefPtr<StorageDevice> IDEController::device(u32 index) const
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{
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NonnullRefPtrVector<StorageDevice> connected_devices;
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for (size_t index = 0; index < 4; index++) {
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auto checked_device = device_by_channel_and_position(index);
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if (checked_device.is_null())
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continue;
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connected_devices.append(checked_device.release_nonnull());
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}
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if (index >= connected_devices.size())
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return nullptr;
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return connected_devices[index];
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}
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}
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