2020-02-05 21:02:35 +00:00
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/*
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* Copyright (c) 2018-2020 Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <mesosphere.hpp>
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namespace ams::kern::arm64 {
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void KInterruptManager::Initialize(s32 core_id) {
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2020-02-05 22:07:51 +00:00
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this->interrupt_controller.Initialize(core_id);
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2020-02-05 21:02:35 +00:00
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}
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void KInterruptManager::Finalize(s32 core_id) {
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2020-02-05 22:07:51 +00:00
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this->interrupt_controller.Finalize(core_id);
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}
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Result KInterruptManager::BindHandler(KInterruptHandler *handler, s32 irq, s32 core_id, s32 priority, bool manual_clear, bool level) {
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R_UNLESS(KInterruptController::IsGlobal(irq) || KInterruptController::IsLocal(irq), svc::ResultOutOfRange());
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KScopedInterruptDisable di;
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if (KInterruptController::IsGlobal(irq)) {
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KScopedSpinLock lk(GetLock());
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return this->BindGlobal(handler, irq, core_id, priority, manual_clear, level);
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} else {
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MESOSPHERE_ASSERT(core_id == GetCurrentCoreId());
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return this->BindLocal(handler, irq, priority, manual_clear);
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}
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}
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Result KInterruptManager::UnbindHandler(s32 irq, s32 core_id) {
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R_UNLESS(KInterruptController::IsGlobal(irq) || KInterruptController::IsLocal(irq), svc::ResultOutOfRange());
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KScopedInterruptDisable di;
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if (KInterruptController::IsGlobal(irq)) {
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KScopedSpinLock lk(GetLock());
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return this->UnbindGlobal(irq);
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} else {
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MESOSPHERE_ASSERT(core_id == GetCurrentCoreId());
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return this->UnbindLocal(irq);
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}
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}
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Result KInterruptManager::ClearInterrupt(s32 irq) {
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R_UNLESS(KInterruptController::IsGlobal(irq), svc::ResultOutOfRange());
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KScopedInterruptDisable di;
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KScopedSpinLock lk(GetLock());
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return this->ClearGlobal(irq);
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}
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Result KInterruptManager::ClearInterrupt(s32 irq, s32 core_id) {
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R_UNLESS(KInterruptController::IsGlobal(irq) || KInterruptController::IsLocal(irq), svc::ResultOutOfRange());
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KScopedInterruptDisable di;
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if (KInterruptController::IsGlobal(irq)) {
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KScopedSpinLock lk(GetLock());
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return this->ClearGlobal(irq);
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} else {
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MESOSPHERE_ASSERT(core_id == GetCurrentCoreId());
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return this->ClearLocal(irq);
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}
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}
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Result KInterruptManager::BindGlobal(KInterruptHandler *handler, s32 irq, s32 core_id, s32 priority, bool manual_clear, bool level) {
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/* Ensure the priority level is valid. */
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R_UNLESS(KInterruptController::PriorityLevel_High <= priority, svc::ResultOutOfRange());
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R_UNLESS(priority <= KInterruptController::PriorityLevel_Low, svc::ResultOutOfRange());
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/* Ensure we aren't already bound. */
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auto &entry = GetGlobalInterruptEntry(irq);
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R_UNLESS(entry.handler == nullptr, svc::ResultBusy());
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/* Set entry fields. */
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entry.needs_clear = false;
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entry.manually_cleared = manual_clear;
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entry.handler = handler;
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/* Configure the interrupt as level or edge. */
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if (level) {
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this->interrupt_controller.SetLevel(irq);
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} else {
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this->interrupt_controller.SetEdge(irq);
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}
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/* Configure the interrupt. */
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this->interrupt_controller.Clear(irq);
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this->interrupt_controller.SetTarget(irq, core_id);
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this->interrupt_controller.SetPriorityLevel(irq, priority);
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this->interrupt_controller.Enable(irq);
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return ResultSuccess();
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}
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Result KInterruptManager::BindLocal(KInterruptHandler *handler, s32 irq, s32 priority, bool manual_clear) {
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/* Ensure the priority level is valid. */
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R_UNLESS(KInterruptController::PriorityLevel_High <= priority, svc::ResultOutOfRange());
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R_UNLESS(priority <= KInterruptController::PriorityLevel_Low, svc::ResultOutOfRange());
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/* Ensure we aren't already bound. */
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auto &entry = this->GetLocalInterruptEntry(irq);
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R_UNLESS(entry.handler == nullptr, svc::ResultBusy());
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/* Set entry fields. */
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entry.needs_clear = false;
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entry.manually_cleared = manual_clear;
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entry.handler = handler;
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entry.priority = static_cast<u8>(priority);
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/* Configure the interrupt. */
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this->interrupt_controller.Clear(irq);
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this->interrupt_controller.SetPriorityLevel(irq, priority);
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this->interrupt_controller.Enable(irq);
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return ResultSuccess();
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}
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Result KInterruptManager::UnbindGlobal(s32 irq) {
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for (size_t core_id = 0; core_id < cpu::NumCores; core_id++) {
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this->interrupt_controller.ClearTarget(irq, static_cast<s32>(core_id));
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}
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this->interrupt_controller.SetPriorityLevel(irq, KInterruptController::PriorityLevel_Low);
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this->interrupt_controller.Disable(irq);
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GetGlobalInterruptEntry(irq).handler = nullptr;
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return ResultSuccess();
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}
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Result KInterruptManager::UnbindLocal(s32 irq) {
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auto &entry = this->GetLocalInterruptEntry(irq);
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R_UNLESS(entry.handler != nullptr, svc::ResultInvalidState());
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this->interrupt_controller.SetPriorityLevel(irq, KInterruptController::PriorityLevel_Low);
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this->interrupt_controller.Disable(irq);
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entry.handler = nullptr;
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return ResultSuccess();
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}
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Result KInterruptManager::ClearGlobal(s32 irq) {
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/* We can't clear an entry with no handler. */
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auto &entry = GetGlobalInterruptEntry(irq);
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R_UNLESS(entry.handler != nullptr, svc::ResultInvalidState());
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/* If auto-cleared, we can succeed immediately. */
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R_UNLESS(entry.manually_cleared, ResultSuccess());
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R_UNLESS(entry.needs_clear, ResultSuccess());
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/* Clear and enable. */
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entry.needs_clear = false;
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this->interrupt_controller.Enable(irq);
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return ResultSuccess();
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}
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Result KInterruptManager::ClearLocal(s32 irq) {
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/* We can't clear an entry with no handler. */
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auto &entry = this->GetLocalInterruptEntry(irq);
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R_UNLESS(entry.handler != nullptr, svc::ResultInvalidState());
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/* If auto-cleared, we can succeed immediately. */
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R_UNLESS(entry.manually_cleared, ResultSuccess());
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R_UNLESS(entry.needs_clear, ResultSuccess());
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/* Clear and set priority. */
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entry.needs_clear = false;
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this->interrupt_controller.SetPriorityLevel(irq, entry.priority);
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return ResultSuccess();
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2020-02-05 21:02:35 +00:00
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}
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}
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