view zdis.c @ 1971:80920c21bb52

Add an event log soft flush and call it twice per frame in between hard flushes to netplay latency when there are insufficient hardware updates to flush packets in the middle of a frame
author Michael Pavone <pavone@retrodev.com>
date Fri, 08 May 2020 11:40:30 -0700
parents 137dbd05ceab
children 92dc3e24f309
line wrap: on
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/*
 Copyright 2013 Michael Pavone
 This file is part of BlastEm. 
 BlastEm is free software distributed under the terms of the GNU General Public License version 3 or greater. See COPYING for full license text.
*/
#include "z80inst.h"
#include <stdio.h>
#include <stdlib.h>
#include <stdarg.h>

uint8_t visited[(64*1024)/8];
uint8_t label[(64*1024)/8];

void fatal_error(char *format, ...)
{
	va_list args;
	va_start(args, format);
	vfprintf(stderr, format, args);
	va_end(args);
	exit(1);
}

void visit(uint16_t address)
{
	visited[address/8] |= 1 << (address % 8);
}

void reference(uint16_t address)
{
	//printf("referenced: %X\n", address);
	label[address/8] |= 1 << (address % 8);
}

uint8_t is_visited(uint16_t address)
{
	return visited[address/8] & (1 << (address % 8));
}

uint8_t is_label(uint16_t address)
{
	return label[address/8] & (1 << (address % 8));
}

typedef struct deferred {
	uint16_t address;
	struct deferred *next;
} deferred;

deferred * defer(uint16_t address, deferred * next)
{
	if (is_visited(address)) {
		return next;
	}
	//printf("deferring %X\n", address);
	deferred * d = malloc(sizeof(deferred));
	d->address = address;
	d->next = next;
	return d;
}

uint8_t labels = 0;
uint8_t addr = 0;
uint8_t only = 0;

int main(int argc, char ** argv)
{
	long filesize;
	uint8_t *filebuf;
	char disbuf[1024];
	z80inst instbuf;
	uint8_t * cur;
	FILE * f = fopen(argv[1], "rb");
	fseek(f, 0, SEEK_END);
	filesize = ftell(f);
	fseek(f, 0, SEEK_SET);
	filebuf = malloc(filesize);
	fread(filebuf, 1, filesize, f);
	fclose(f);
	deferred *def = NULL, *tmpd;
	uint16_t offset = 0;
	for(uint8_t opt = 2; opt < argc; ++opt) {
		if (argv[opt][0] == '-') {
			FILE * address_log;
			switch (argv[opt][1])
			{
			case 'l':
				labels = 1;
				break;
			case 'a':
				addr = 1;
				break;
			case 'o':
				only = 1;
				break;
			case 'f':
				opt++;
				if (opt >= argc) {
					fputs("-f must be followed by a filename\n", stderr);
					exit(1);
				}
				address_log = fopen(argv[opt], "r");
				if (!address_log) {
					fprintf(stderr, "Failed to open %s for reading\n", argv[opt]);
					exit(1);
				}
				while (fgets(disbuf, sizeof(disbuf), address_log)) {
				 	if (disbuf[0]) {
						uint16_t address = strtol(disbuf, NULL, 16);
						if (address) {
							def = defer(address, def);
							reference(address);
						}
					}
				}
				fclose(address_log);
				break;
			case 's':
				opt++;
				if (opt >= argc) {
					fputs("-s must be followed by a start offset in hex\n", stderr);
					exit(1);
				}
				offset = strtol(argv[opt], NULL, 16);
				break;
			}
		} else {
			uint16_t address = strtol(argv[opt], NULL, 16);
			def = defer(address, def);
			reference(address);
		}
	}
	uint16_t start = offset;
	uint8_t *encoded, *next;
	uint32_t size;
	if (!def || !only) {
		def = defer(start, def);
	}
	uint16_t address;
	while(def) {
		do {
			encoded = NULL;
			address = def->address;
			if (!is_visited(address)) {
				encoded = filebuf + address - offset;
			}
			tmpd = def;
			def = def->next;
			free(tmpd);
		} while(def && encoded == NULL);
		if (!encoded) {
			break;
		}
		for(;;) {
			if ((address - offset) > filesize || is_visited(address) || address < offset) {
				break;
			}
			visit(address);
			next = z80_decode(encoded, &instbuf);
			address += (next-encoded);
			encoded = next;
			
			//z80_disasm(&instbuf, disbuf);
			//printf("%X: %s\n", address, disbuf);
			switch (instbuf.op)
			{
			case Z80_JR:
				address += instbuf.immed;
				encoded = filebuf + address - offset;
				break;
			case Z80_JRCC:
				reference(address + instbuf.immed);
				def = defer(address + instbuf.immed, def);
				break;
			case Z80_JP:
				address = instbuf.immed;
				encoded = filebuf + address - offset;
				break;
			case Z80_JPCC:
			case Z80_CALL:
			case Z80_CALLCC:
			case Z80_RST:
				reference(instbuf.immed);
				def = defer(instbuf.immed, def);
				break;
			default:
				if (z80_is_terminal(&instbuf)) {
					address = filesize + 1;
				}
			}
		}
	}
	if (labels) {
		for (address = filesize; address < (64*1024); address++) {
			if (is_label(address)) {
				printf("ADR_%X equ $%X\n", address, address);
			}
		}
		puts("");
	}
	for (address = offset; address < filesize + offset; address++) {
		if (is_visited(address)) {
			encoded = filebuf + address - offset;
			z80_decode(encoded, &instbuf);
			if (labels) {
				/*m68k_disasm_labels(&instbuf, disbuf);
				if (is_label(instbuf.address)) {
					printf("ADR_%X:\n", instbuf.address);
				}
				if (addr) {
					printf("\t%s\t;%X\n", disbuf, instbuf.address);
				} else {
					printf("\t%s\n", disbuf);
				}*/
			} else {
				z80_disasm(&instbuf, disbuf, address);
				printf("%X: %s\n", address, disbuf);
			}
		}
	}
	return 0;
}