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1738b19d63
* More documentation for sched.c * VI retrace -> vertical retrace, attempt to clarify comment in viconfig * Further review changes, fix inconsistent capitalization of PreNMI (PRENMI -> PreNMI) * Fix typo Co-authored-by: engineer124 <47598039+engineer124@users.noreply.github.com> * Change TaskSwapBuffer, change comment on OS_SC_DRAM_DLIST to unimplemented * Rename SchedContext/gSchedContext to Scheduler/gScheduler * Comments fixes Co-authored-by: Dragorn421 <Dragorn421@users.noreply.github.com> * Format Co-authored-by: engineer124 <47598039+engineer124@users.noreply.github.com> Co-authored-by: Dragorn421 <Dragorn421@users.noreply.github.com>
309 lines
12 KiB
C
309 lines
12 KiB
C
/**
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* @file irqmgr.c
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*
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* This file implements a manager for forwarding three key system interrupt events to
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* registered clients.
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* Together with sched.c, these systems implement the libultra video and task scheduling
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* model from the libultra "sched" module, with improved functionality in the handling of
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* Pre-NMI related events.
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*
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* The interrupts the IRQ manager deals with are:
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* - Vertical Retrace
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* This event is sent to the IRQ manager by the OS VI manager which only supports
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* the forwarding of VI events to a single message queue. The IRQ manager will
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* forward these events to every registered client. Vertical retrace events are
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* received when the Video Interface has reached the start of the vertical blanking
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* interval, happening at approximately 60Hz on NTSC and 50Hz on PAL. Many threads
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* sit idle until a vertical retrace event wakes them up, at which point they will
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* perform their task and then return to idle to await the next retrace.
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*
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* - Pre-NMI
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* This event is sent to the IRQ manager by the OS Interrupt Handler when the reset
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* button on the N64 control deck is pressed. This event is forwarded to clients to
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* inform them that a reset will occur in at least 0.5s / 500ms so they may begin any
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* shutdown procedures.
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*
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* - NMI
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* This event is sent at 450ms into the Pre-NMI phase, informing clients that the
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* mandatory 0.5s of Pre-NMI is almost over and a reset may be imminent. This event
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* is not to be confused with the hardware NMI interrupt signalled when the CPU is
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* to fully reset, as by the time that interrupt is received there is no time left
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* to do anything.
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*
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* @see sched.c
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*/
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#include "global.h"
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#include "vt.h"
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vu32 gIrqMgrResetStatus = IRQ_RESET_STATUS_IDLE;
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volatile OSTime sIrqMgrResetTime = 0;
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volatile OSTime gIrqMgrRetraceTime = 0;
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u32 sIrqMgrRetraceCount = 0;
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// Internal messages
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#define IRQ_RETRACE_MSG 666
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#define IRQ_PRENMI_MSG 669
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#define IRQ_PRENMI450_MSG 671
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#define IRQ_PRENMI480_MSG 672
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#define IRQ_PRENMI500_MSG 673
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/**
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* Registers a client and an associated message queue with the IRQ manager. When an
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* interrupt event is received by the IRQ manager, these clients will be notified of
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* the event.
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*
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* @param irqMgr the IrqMgr instance to register with.
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* @param client client to register.
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* @param msgQueue message queue to send notifications of interrupts to, associated with the client.
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*/
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void IrqMgr_AddClient(IrqMgr* irqMgr, IrqMgrClient* client, OSMesgQueue* msgQueue) {
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OSIntMask prevInt;
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LogUtils_CheckNullPointer("this", irqMgr, "../irqmgr.c", 96);
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LogUtils_CheckNullPointer("c", client, "../irqmgr.c", 97);
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LogUtils_CheckNullPointer("msgQ", msgQueue, "../irqmgr.c", 98);
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prevInt = osSetIntMask(OS_IM_NONE);
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client->queue = msgQueue;
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client->prev = irqMgr->clients;
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irqMgr->clients = client;
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osSetIntMask(prevInt);
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if (irqMgr->resetStatus >= IRQ_RESET_STATUS_PRENMI) {
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osSendMesg(client->queue, (OSMesg)&irqMgr->prenmiMsg, OS_MESG_NOBLOCK);
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}
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if (irqMgr->resetStatus >= IRQ_RESET_STATUS_NMI) {
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osSendMesg(client->queue, (OSMesg)&irqMgr->nmiMsg, OS_MESG_NOBLOCK);
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}
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}
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void IrqMgr_RemoveClient(IrqMgr* irqMgr, IrqMgrClient* client) {
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IrqMgrClient* iterClient = irqMgr->clients;
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IrqMgrClient* lastClient = NULL;
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OSIntMask prevInt;
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LogUtils_CheckNullPointer("this", irqMgr, "../irqmgr.c", 129);
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LogUtils_CheckNullPointer("c", client, "../irqmgr.c", 130);
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// Disable interrupts to prevent a thread context switch while the linked list is modified
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prevInt = osSetIntMask(OS_IM_NONE);
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// Remove the client
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while (iterClient != NULL) {
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if (iterClient == client) {
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if (lastClient != NULL) {
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lastClient->prev = client->prev;
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} else {
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irqMgr->clients = client->prev;
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}
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break;
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}
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lastClient = iterClient;
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iterClient = iterClient->prev;
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}
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osSetIntMask(prevInt);
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}
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/**
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* Send `msg` to every registered client if the message queue is not full. The message is
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* appended to the back of the queue.
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*/
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void IrqMgr_SendMesgToClients(IrqMgr* irqMgr, OSMesg msg) {
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IrqMgrClient* client;
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for (client = irqMgr->clients; client != NULL; client = client->prev) {
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if (MQ_IS_FULL(client->queue)) {
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// "irqmgr_SendMesgForClient: Message queue is overflowing mq=%08x cnt=%d"
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osSyncPrintf(
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VT_COL(RED, WHITE) "irqmgr_SendMesgForClient:メッセージキューがあふれています mq=%08x cnt=%d\n" VT_RST,
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client->queue, MQ_GET_COUNT(client->queue));
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} else {
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osSendMesg(client->queue, msg, OS_MESG_NOBLOCK);
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}
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}
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}
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/**
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* Send `msg` to every registered client if the message queue is not full. This appears to be for
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* high-priority messages that should be jammed to the front of the queue, however a bug prevents
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* this from working in this way and the message is appended to the back of the queue as in
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* `IrqMgr_SendMesgToClients`.
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*
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* @see IrqMgr_SendMesgToClients
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*/
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void IrqMgr_JamMesgToClients(IrqMgr* irqMgr, OSMesg msg) {
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IrqMgrClient* client;
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for (client = irqMgr->clients; client != NULL; client = client->prev) {
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if (MQ_IS_FULL(client->queue)) {
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// "irqmgr_JamMesgForClient: Message queue is overflowing mq=%08x cnt=%d"
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osSyncPrintf(
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VT_COL(RED, WHITE) "irqmgr_JamMesgForClient:メッセージキューがあふれています mq=%08x cnt=%d\n" VT_RST,
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client->queue, MQ_GET_COUNT(client->queue));
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} else {
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//! @bug The function's name suggests this would use osJamMesg rather than osSendMesg, using the
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//! latter makes this function no different than IrqMgr_SendMesgToClients.
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osSendMesg(client->queue, msg, OS_MESG_NOBLOCK);
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}
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}
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}
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/**
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* Runs when the Pre-NMI OS Event is received. This indicates that the console will reset in at least
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* 0.5s / 500ms. Updates the reset status and time before forwarding the Pre-NMI message to registered
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* clients so they may begin shutting down in advance of the reset.
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*/
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void IrqMgr_HandlePreNMI(IrqMgr* irqMgr) {
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u64 preNmi = IRQ_RESET_STATUS_PRENMI; // required to match
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gIrqMgrResetStatus = preNmi;
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irqMgr->resetStatus = IRQ_RESET_STATUS_PRENMI;
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sIrqMgrResetTime = irqMgr->resetTime = osGetTime();
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// Schedule a PRENMI450 message to be handled in 450ms
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osSetTimer(&irqMgr->timer, OS_MSEC_TO_CYCLES(450), 0, &irqMgr->queue, (OSMesg)IRQ_PRENMI450_MSG);
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IrqMgr_JamMesgToClients(irqMgr, (OSMesg)&irqMgr->prenmiMsg);
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}
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void IrqMgr_CheckStacks(void) {
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// "0.5 seconds after PRENMI"
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osSyncPrintf("irqmgr.c: PRENMIから0.5秒経過\n");
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if (StackCheck_Check(NULL) == STACK_STATUS_OK) {
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// "The stack looks ok"
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osSyncPrintf("スタックは大丈夫みたいです\n");
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} else {
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osSyncPrintf("%c", BEL);
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osSyncPrintf(VT_FGCOL(RED));
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// "Stack overflow or dangerous"
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osSyncPrintf("スタックがオーバーフローしたか危険な状態です\n");
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// "Increase stack size early or don't consume stack"
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osSyncPrintf("早々にスタックサイズを増やすか、スタックを消費しないようにしてください\n");
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osSyncPrintf(VT_RST);
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}
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}
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void IrqMgr_HandlePreNMI450(IrqMgr* irqMgr) {
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u64 nmi = IRQ_RESET_STATUS_NMI; // required to match
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gIrqMgrResetStatus = nmi;
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irqMgr->resetStatus = IRQ_RESET_STATUS_NMI;
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// Schedule a PRENMI480 message to be handled in 30ms
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osSetTimer(&irqMgr->timer, OS_MSEC_TO_CYCLES(30), 0, &irqMgr->queue, (OSMesg)IRQ_PRENMI480_MSG);
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// Send the NMI event to clients
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IrqMgr_SendMesgToClients(irqMgr, (OSMesg)&irqMgr->nmiMsg);
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}
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void IrqMgr_HandlePreNMI480(IrqMgr* irqMgr) {
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u32 result;
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// Schedule a PRENMI500 message to be handled in 20ms
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osSetTimer(&irqMgr->timer, OS_MSEC_TO_CYCLES(20), 0, &irqMgr->queue, (OSMesg)IRQ_PRENMI500_MSG);
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result = osAfterPreNMI();
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if (result != 0) {
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// "osAfterPreNMI returned %d !?"
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osSyncPrintf("osAfterPreNMIが %d を返しました!?\n", result);
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// osAfterPreNMI failed, try again in 1ms
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//! @bug setting the same timer for a second time without letting the first one complete breaks
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//! the timer linked list
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osSetTimer(&irqMgr->timer, OS_MSEC_TO_CYCLES(1), 0, &irqMgr->queue, (OSMesg)IRQ_PRENMI480_MSG);
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}
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}
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void IrqMgr_HandlePreNMI500(IrqMgr* irqMgr) {
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IrqMgr_CheckStacks();
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}
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/**
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* Runs on each vertical retrace
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*
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* Measures the time elapsed between the first and second vertical retrace and
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* dispatches vertical retrace messages to each registered Irq Client
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*/
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void IrqMgr_HandleRetrace(IrqMgr* irqMgr) {
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if (gIrqMgrRetraceTime == 0) {
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if (irqMgr->retraceTime == 0) {
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irqMgr->retraceTime = osGetTime();
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} else {
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gIrqMgrRetraceTime = osGetTime() - irqMgr->retraceTime;
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}
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}
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sIrqMgrRetraceCount++;
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IrqMgr_SendMesgToClients(irqMgr, (OSMesg)&irqMgr->retraceMsg);
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}
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void IrqMgr_ThreadEntry(void* arg) {
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u32 msg = 0;
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IrqMgr* irqMgr = (IrqMgr*)arg;
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u8 exit;
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// "Start IRQ manager thread execution"
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osSyncPrintf("IRQマネージャスレッド実行開始\n");
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exit = false;
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while (!exit) {
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osRecvMesg(&irqMgr->queue, (OSMesg*)&msg, OS_MESG_BLOCK);
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switch (msg) {
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case IRQ_RETRACE_MSG:
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IrqMgr_HandleRetrace(irqMgr);
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break;
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case IRQ_PRENMI_MSG:
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osSyncPrintf("PRE_NMI_MSG\n");
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// "Scheduler: Receives PRE_NMI message"
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osSyncPrintf("スケジューラ:PRE_NMIメッセージを受信\n");
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IrqMgr_HandlePreNMI(irqMgr);
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break;
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case IRQ_PRENMI450_MSG:
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osSyncPrintf("PRENMI450_MSG\n");
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// "Scheduler: Receives PRENMI450 message"
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osSyncPrintf("スケジューラ:PRENMI450メッセージを受信\n");
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IrqMgr_HandlePreNMI450(irqMgr);
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break;
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case IRQ_PRENMI480_MSG:
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osSyncPrintf("PRENMI480_MSG\n");
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// "Scheduler: Receives PRENMI480 message"
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osSyncPrintf("スケジューラ:PRENMI480メッセージを受信\n");
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IrqMgr_HandlePreNMI480(irqMgr);
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break;
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case IRQ_PRENMI500_MSG:
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osSyncPrintf("PRENMI500_MSG\n");
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// "Scheduler: Receives PRENMI500 message"
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osSyncPrintf("スケジューラ:PRENMI500メッセージを受信\n");
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exit = true;
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IrqMgr_HandlePreNMI500(irqMgr);
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break;
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default:
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// "Unexpected message received"
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osSyncPrintf("irqmgr.c:予期しないメッセージを受け取りました(%08x)\n", msg);
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break;
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}
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}
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// "End of IRQ manager thread execution"
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osSyncPrintf("IRQマネージャスレッド実行終了\n");
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}
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void IrqMgr_Init(IrqMgr* irqMgr, void* stack, OSPri pri, u8 retraceCount) {
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LogUtils_CheckNullPointer("this", irqMgr, "../irqmgr.c", 346);
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LogUtils_CheckNullPointer("stack", stack, "../irqmgr.c", 347);
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irqMgr->clients = NULL;
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// Messages to send to each client message queue on each interrupt event
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irqMgr->retraceMsg.type = OS_SC_RETRACE_MSG;
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irqMgr->prenmiMsg.type = OS_SC_PRE_NMI_MSG;
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irqMgr->nmiMsg.type = OS_SC_NMI_MSG;
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irqMgr->resetStatus = IRQ_RESET_STATUS_IDLE;
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irqMgr->resetTime = 0;
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osCreateMesgQueue(&irqMgr->queue, irqMgr->msgBuf, ARRAY_COUNT(irqMgr->msgBuf));
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osSetEventMesg(OS_EVENT_PRENMI, &irqMgr->queue, (OSMesg)IRQ_PRENMI_MSG);
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osViSetEvent(&irqMgr->queue, (OSMesg)IRQ_RETRACE_MSG, retraceCount);
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osCreateThread(&irqMgr->thread, THREAD_ID_IRQMGR, IrqMgr_ThreadEntry, irqMgr, stack, pri);
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osStartThread(&irqMgr->thread);
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}
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