rpcsx/rpcs3/Emu/SysCalls/lv2/sys_interrupt.cpp

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#include "stdafx.h"
#include "Emu/Memory/Memory.h"
#include "Emu/System.h"
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#include "Emu/IdManager.h"
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#include "Emu/SysCalls/SysCalls.h"
#include "Emu/Cell/PPUThread.h"
#include "sys_interrupt.h"
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SysCallBase sys_interrupt("sys_interrupt");
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lv2_int_tag_t::lv2_int_tag_t()
: id(idm::get_last_id())
{
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}
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lv2_int_serv_t::lv2_int_serv_t(const std::shared_ptr<PPUThread>& thread)
: thread(thread)
, id(idm::get_last_id())
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{
}
void lv2_int_serv_t::join(PPUThread& ppu, lv2_lock_t& lv2_lock)
{
CHECK_LV2_LOCK(lv2_lock);
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// Use is_joining to stop interrupt thread and signal
thread->is_joining = true;
thread->cv.notify_one();
// Start joining
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while (thread->is_alive())
{
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CHECK_EMU_STATUS;
ppu.cv.wait_for(lv2_lock, std::chrono::milliseconds(1));
}
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// Cleanup
idm::remove<lv2_int_serv_t>(id);
idm::remove<PPUThread>(thread->get_id());
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}
s32 sys_interrupt_tag_destroy(u32 intrtag)
{
sys_interrupt.Warning("sys_interrupt_tag_destroy(intrtag=0x%x)", intrtag);
LV2_LOCK;
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const auto tag = idm::get<lv2_int_tag_t>(intrtag);
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if (!tag)
{
return CELL_ESRCH;
}
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if (tag->handler)
{
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return CELL_EBUSY;
}
idm::remove<lv2_int_tag_t>(intrtag);
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return CELL_OK;
}
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s32 _sys_interrupt_thread_establish(vm::ptr<u32> ih, u32 intrtag, u32 intrthread, u64 arg1, u64 arg2)
{
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sys_interrupt.Warning("_sys_interrupt_thread_establish(ih=*0x%x, intrtag=0x%x, intrthread=0x%x, arg1=0x%llx, arg2=0x%llx)", ih, intrtag, intrthread, arg1, arg2);
LV2_LOCK;
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// Get interrupt tag
const auto tag = idm::get<lv2_int_tag_t>(intrtag);
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if (!tag)
{
return CELL_ESRCH;
}
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// Get interrupt thread
const auto it = idm::get<PPUThread>(intrthread);
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if (!it)
{
return CELL_ESRCH;
}
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// If interrupt thread is running, it's already established on another interrupt tag
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if (!it->is_stopped())
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{
return CELL_EAGAIN;
}
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// It's unclear if multiple handlers can be established on single interrupt tag
if (tag->handler)
{
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sys_interrupt.Error("_sys_interrupt_thread_establish(): handler service already exists (intrtag=0x%x) -> CELL_ESTAT", intrtag);
return CELL_ESTAT;
}
const auto handler = idm::make_ptr<lv2_int_serv_t>(it);
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tag->handler = handler;
it->custom_task = [handler, arg1, arg2](PPUThread& ppu)
{
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const u32 pc = ppu.PC;
const u32 rtoc = ppu.GPR[2];
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LV2_LOCK;
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while (!ppu.is_joining)
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{
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CHECK_EMU_STATUS;
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// call interrupt handler until int status is clear
if (handler->signal)
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{
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if (lv2_lock) lv2_lock.unlock();
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ppu.GPR[3] = arg1;
ppu.GPR[4] = arg2;
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ppu.fast_call(pc, rtoc);
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handler->signal--;
continue;
}
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if (!lv2_lock)
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{
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lv2_lock.lock();
continue;
}
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ppu.cv.wait(lv2_lock);
}
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ppu.exit();
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};
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it->exec();
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*ih = handler->id;
return CELL_OK;
}
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s32 _sys_interrupt_thread_disestablish(PPUThread& ppu, u32 ih, vm::ptr<u64> r13)
{
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sys_interrupt.Warning("_sys_interrupt_thread_disestablish(ih=0x%x, r13=*0x%x)", ih, r13);
LV2_LOCK;
const auto handler = idm::get<lv2_int_serv_t>(ih);
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if (!handler)
{
return CELL_ESRCH;
}
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// Wait for sys_interrupt_thread_eoi() and destroy interrupt thread
handler->join(ppu, lv2_lock);
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// Save TLS base
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*r13 = handler->thread->GPR[13];
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return CELL_OK;
}
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void sys_interrupt_thread_eoi(PPUThread& ppu)
{
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sys_interrupt.Log("sys_interrupt_thread_eoi()");
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// TODO: maybe it should actually unwind the stack of PPU thread?
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ppu.GPR[1] = align(ppu.stack_addr + ppu.stack_size, 0x200) - 0x200; // supercrutch to bypass stack check
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ppu.fast_stop();
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}