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6a7247ab44
Instead of allowing the client to set a caching attribute in the io_mem() call of the device interface, which was only used to decide in between of the memory being write-combined or not, remove it from the API. Instead use the information delivered by the devices ROM, whether memory from a PCI BAR is prefetchable or not, to decide whether it is mapped write-combined or not. Ref genodelabs/genode#4578
209 lines
4.8 KiB
C++
209 lines
4.8 KiB
C++
/*
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* \brief Platform-device interface
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* \author Stefan Kalkowski
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* \author Norman Feske
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* \date 2020-04-15
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*/
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/*
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* Copyright (C) 2020-2021 Genode Labs GmbH
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*
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* This file is part of the Genode OS framework, which is distributed
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* under the terms of the GNU Affero General Public License version 3.
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*/
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#ifndef _INCLUDE__PLATFORM_SESSION__DEVICE_H_
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#define _INCLUDE__PLATFORM_SESSION__DEVICE_H_
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#include <util/mmio.h>
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#include <util/string.h>
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#include <base/rpc.h>
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#include <base/exception.h>
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#include <io_mem_session/client.h>
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#include <irq_session/client.h>
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#include <io_port_session/client.h>
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#include <platform_session/connection.h>
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class Platform::Device : Interface, Noncopyable
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{
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public:
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struct Mmio;
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struct Irq;
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struct Io_port_range;
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typedef Platform::Session::Device_name Name;
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private:
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typedef Device_interface::Range Range;
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friend class Mmio;
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::Platform::Connection &_platform;
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Capability<Device_interface> _cap;
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Irq_session_capability _irq(unsigned index)
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{
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return _cap.call<Device_interface::Rpc_irq>(index);
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}
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Io_mem_session_capability _io_mem(unsigned index, Range &range)
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{
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return _cap.call<Device_interface::Rpc_io_mem>(index, range);
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}
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Io_port_session_capability _io_port_range(unsigned index)
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{
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return _cap.call<Device_interface::Rpc_io_port_range>(index);
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}
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Region_map &_rm() { return _platform._env.rm(); }
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public:
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struct Index { unsigned value; };
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explicit Device(Connection &platform)
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:
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_platform(platform), _cap(platform.acquire_device())
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{ }
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struct Type { String<64> name; };
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Device(Connection &platform, Type type)
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:
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_platform(platform), _cap(platform.device_by_type(type.name.string()))
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{ }
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Device(Connection &platform, Name name)
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:
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_platform(platform), _cap(platform.acquire_device(name))
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{ }
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~Device() { _platform.release_device(_cap); }
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};
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class Platform::Device::Mmio : Range, Attached_dataspace, public Genode::Mmio
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{
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private:
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Dataspace_capability _ds_cap(Device &device, unsigned id)
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{
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Io_mem_session_client io_mem(device._io_mem(id, *this));
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return io_mem.dataspace();
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}
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addr_t _local_addr()
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{
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return (addr_t)Attached_dataspace::local_addr<char>() + Range::start;
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}
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public:
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struct Index { unsigned value; };
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Mmio(Device &device, Index index)
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:
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Attached_dataspace(device._rm(), _ds_cap(device, index.value)),
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Genode::Mmio(_local_addr())
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{ }
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explicit Mmio(Device &device) : Mmio(device, Index { 0 }) { }
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size_t size() const { return Range::size; }
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template <typename T>
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T *local_addr() { return reinterpret_cast<T *>(_local_addr()); }
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Dataspace_capability cap() { return Attached_dataspace::cap(); }
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};
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class Platform::Device::Irq : Noncopyable
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{
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private:
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Irq_session_client _irq;
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public:
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struct Index { unsigned value; };
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Irq(Device &device, Index index) : _irq(device._irq(index.value)) { }
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explicit Irq(Device &device) : Irq(device, Index { 0 }) { }
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/**
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* Acknowledge interrupt
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*
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* This method must be called by the interrupt handler.
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*/
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void ack() { _irq.ack_irq(); }
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/**
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* Register interrupt signal handler
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*
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* The call of this method implies a one-time trigger of the interrupt
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* handler once the driver component becomes receptive to signals. This
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* artificial interrupt signal alleviates the need to place an explicit
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* 'Irq::ack' respectively a manual call of the interrupt handler
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* routine during the driver initialization.
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*
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* Furthermore, this artificial interrupt reforces drivers to be robust
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* against spurious interrupts.
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*/
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void sigh(Signal_context_capability sigh)
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{
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_irq.sigh(sigh);
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/* trigger initial interrupt */
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if (sigh.valid())
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Signal_transmitter(sigh).submit();
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}
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/**
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* Register interrupt signal handler
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*
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* This call omits the one-time trigger of the interrupt
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* handler for ported drivers that cannot handle it sufficiently.
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*/
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void sigh_omit_initial_signal(Signal_context_capability sigh)
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{
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_irq.sigh(sigh);
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}
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};
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class Platform::Device::Io_port_range : Noncopyable
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{
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private:
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Io_port_session_client _io_port_range;
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public:
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struct Index { unsigned value; };
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Io_port_range(Device &device, Index index)
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: _io_port_range(device._io_port_range(index.value)) { }
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explicit Io_port_range(Device &device)
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: Io_port_range(device, Index { 0 }) { }
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uint8_t inb(uint16_t addr) { return _io_port_range.inb(addr); };
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uint16_t inw(uint16_t addr) { return _io_port_range.inw(addr); };
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uint32_t inl(uint16_t addr) { return _io_port_range.inl(addr); };
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void outb(uint16_t addr, uint8_t value) {
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_io_port_range.outb(addr, value); };
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void outw(uint16_t addr, uint16_t value) {
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_io_port_range.outw(addr, value); };
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void outl(uint16_t addr, uint32_t value) {
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_io_port_range.outl(addr, value); };
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};
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#endif /* _INCLUDE__PLATFORM_SESSION__DEVICE_H_ */
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