mirror of
https://github.com/Polprzewodnikowy/SummerCart64.git
synced 2024-11-23 06:19:16 +01:00
141 lines
3.1 KiB
C
141 lines
3.1 KiB
C
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// This is free and unencumbered software released into the public domain.
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//
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// Anyone is free to copy, modify, publish, use, compile, sell, or
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// distribute this software, either in source code form or as a compiled
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// binary, for any purpose, commercial or non-commercial, and by any
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// means.
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#include "firmware.h"
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uint32_t *irq(uint32_t *regs, uint32_t irqs)
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{
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static unsigned int ext_irq_4_count = 0;
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static unsigned int ext_irq_5_count = 0;
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static unsigned int timer_irq_count = 0;
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// checking compressed isa q0 reg handling
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if ((irqs & 6) != 0) {
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uint32_t pc = (regs[0] & 1) ? regs[0] - 3 : regs[0] - 4;
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uint32_t instr = *(uint16_t*)pc;
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if ((instr & 3) == 3)
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instr = instr | (*(uint16_t*)(pc + 2)) << 16;
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if (((instr & 3) != 3) != (regs[0] & 1)) {
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print_str("Mismatch between q0 LSB and decoded instruction word! q0=0x");
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print_hex(regs[0], 8);
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print_str(", instr=0x");
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if ((instr & 3) == 3)
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print_hex(instr, 8);
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else
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print_hex(instr, 4);
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print_str("\n");
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__asm__ volatile ("ebreak");
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}
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}
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if ((irqs & (1<<4)) != 0) {
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ext_irq_4_count++;
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// print_str("[EXT-IRQ-4]");
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}
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if ((irqs & (1<<5)) != 0) {
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ext_irq_5_count++;
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// print_str("[EXT-IRQ-5]");
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}
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if ((irqs & 1) != 0) {
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timer_irq_count++;
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// print_str("[TIMER-IRQ]");
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}
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if ((irqs & 6) != 0)
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{
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uint32_t pc = (regs[0] & 1) ? regs[0] - 3 : regs[0] - 4;
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uint32_t instr = *(uint16_t*)pc;
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if ((instr & 3) == 3)
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instr = instr | (*(uint16_t*)(pc + 2)) << 16;
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print_str("\n");
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print_str("------------------------------------------------------------\n");
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if ((irqs & 2) != 0) {
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if (instr == 0x00100073 || instr == 0x9002) {
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print_str("EBREAK instruction at 0x");
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print_hex(pc, 8);
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print_str("\n");
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} else {
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print_str("Illegal Instruction at 0x");
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print_hex(pc, 8);
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print_str(": 0x");
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print_hex(instr, ((instr & 3) == 3) ? 8 : 4);
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print_str("\n");
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}
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}
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if ((irqs & 4) != 0) {
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print_str("Bus error in Instruction at 0x");
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print_hex(pc, 8);
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print_str(": 0x");
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print_hex(instr, ((instr & 3) == 3) ? 8 : 4);
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print_str("\n");
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}
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for (int i = 0; i < 8; i++)
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for (int k = 0; k < 4; k++)
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{
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int r = i + k*8;
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if (r == 0) {
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print_str("pc ");
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} else
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if (r < 10) {
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print_chr('x');
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print_chr('0' + r);
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print_chr(' ');
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print_chr(' ');
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} else
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if (r < 20) {
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print_chr('x');
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print_chr('1');
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print_chr('0' + r - 10);
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print_chr(' ');
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} else
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if (r < 30) {
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print_chr('x');
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print_chr('2');
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print_chr('0' + r - 20);
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print_chr(' ');
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} else {
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print_chr('x');
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print_chr('3');
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print_chr('0' + r - 30);
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print_chr(' ');
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}
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print_hex(regs[r], 8);
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print_str(k == 3 ? "\n" : " ");
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}
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print_str("------------------------------------------------------------\n");
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print_str("Number of fast external IRQs counted: ");
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print_dec(ext_irq_4_count);
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print_str("\n");
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print_str("Number of slow external IRQs counted: ");
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print_dec(ext_irq_5_count);
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print_str("\n");
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print_str("Number of timer IRQs counted: ");
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print_dec(timer_irq_count);
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print_str("\n");
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__asm__ volatile ("ebreak");
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}
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return regs;
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}
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