// Copyright 2019 The Fuchsia Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include #include #include namespace async { IrqBase::IrqBase(zx_handle_t object, zx_signals_t trigger, uint32_t options, async_irq_handler_t* handler) : irq_{{ASYNC_STATE_INIT}, handler, object} {} IrqBase::~IrqBase() { if (dispatcher_) { // Failure to cancel here may result in a dangling pointer... zx_status_t status = async_unbind_irq(dispatcher_, &irq_); ZX_ASSERT_MSG(status == ZX_OK, "status=%d", status); } } zx_status_t IrqBase::Begin(async_dispatcher_t* dispatcher) { if (dispatcher_) return ZX_ERR_ALREADY_EXISTS; dispatcher_ = dispatcher; zx_status_t status = async_bind_irq(dispatcher, &irq_); if (status != ZX_OK) { dispatcher_ = nullptr; } return status; } zx_status_t IrqBase::Cancel() { if (!dispatcher_) return ZX_ERR_NOT_FOUND; async_dispatcher_t* dispatcher = dispatcher_; dispatcher_ = nullptr; zx_status_t status = async_unbind_irq(dispatcher, &irq_); // |dispatcher| is required to be single-threaded, Cancel() is // only supposed to be called on |dispatcher|'s thread, and // we verified that the wait was pending before calling // async_cancel_wait(). Assuming that |dispatcher| never queues // a wait, |wait_| must have been pending with |dispatcher|. ZX_DEBUG_ASSERT(status != ZX_ERR_NOT_FOUND); return status; } Irq::Irq(zx_handle_t object, zx_signals_t trigger, uint32_t options, Handler handler) : IrqBase(object, trigger, options, &Irq::CallHandler), handler_(std::move(handler)) {} Irq::~Irq() = default; void Irq::CallHandler(async_dispatcher_t* dispatcher, async_irq_t* irq, zx_status_t status, const zx_packet_interrupt_t* signal) { auto self = Dispatch(irq); self->handler_(dispatcher, self, status, signal); } } // namespace async