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emul/sms: add PS/2 keyboard emulation
This commit is contained in:
parent
cc8068f8ab
commit
8cecd54410
@ -193,3 +193,6 @@ void emul_printdebug()
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fprintf(stderr, "Min SP: %04x\n", m.minsp);
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fprintf(stderr, "Min SP: %04x\n", m.minsp);
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fprintf(stderr, "Max IX: %04x\n", m.maxix);
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fprintf(stderr, "Max IX: %04x\n", m.maxix);
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}
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}
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byte iord_noop() { return 0; }
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void iowr_noop(byte val) {}
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@ -37,3 +37,6 @@ void emul_trace(ushort addr);
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void emul_memdump();
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void emul_memdump();
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void emul_debugstr(char *s);
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void emul_debugstr(char *s);
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void emul_printdebug();
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void emul_printdebug();
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// use when a port is a NOOP, but it's not an error to access it.
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byte iord_noop();
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void iowr_noop(byte val);
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@ -1,5 +1,5 @@
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EXTOBJS = ../../emul.o ../../libz80/libz80.o
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EXTOBJS = ../../emul.o ../../libz80/libz80.o
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OBJS = sms.o vdp.o port.o pad.o
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OBJS = sms.o vdp.o port.o pad.o kbd.o
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TARGET = sms
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TARGET = sms
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CFLAGS += `pkg-config --cflags xcb`
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CFLAGS += `pkg-config --cflags xcb`
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LDFLAGS += `pkg-config --libs xcb`
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LDFLAGS += `pkg-config --libs xcb`
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@ -25,4 +25,9 @@ pad are:
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* K --> C
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* K --> C
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* L --> Start
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* L --> Start
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If your ROM is configured with PS/2 keyboard input, run this emulator with the
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`-k` flag to replace SMS pad emulation with keyboard emulation.
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In both cases (pad or keyboard), only port A emulation is supported.
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Press ESC to quit.
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Press ESC to quit.
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101
emul/hw/sms/kbd.c
Normal file
101
emul/hw/sms/kbd.c
Normal file
@ -0,0 +1,101 @@
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#include "kbd.h"
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void kbd_init(Kbd *kbd, Tristate *TH)
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{
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kbd->kc = 0;
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kbd->breaking = false;
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kbd->TH = TH;
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}
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void kbd_pressshift(Kbd *kbd, bool ispressed)
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{
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kbd->kc = 0x12; // shift keycode
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kbd->breaking = !ispressed;
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}
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void kbd_presskey(Kbd *kbd, uint8_t key)
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{
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kbd->kc = 0;
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switch (key) {
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case '\t': kbd->kc = 0xd; break;
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case '`': kbd->kc = 0xe; break;
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case 'q': kbd->kc = 0x15; break;
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case '1': kbd->kc = 0x16; break;
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case 'z': kbd->kc = 0x1a; break;
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case 's': kbd->kc = 0x1b; break;
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case 'a': kbd->kc = 0x1c; break;
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case 'w': kbd->kc = 0x1d; break;
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case '2': kbd->kc = 0x1e; break;
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case 'c': kbd->kc = 0x21; break;
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case 'x': kbd->kc = 0x22; break;
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case 'd': kbd->kc = 0x23; break;
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case 'e': kbd->kc = 0x24; break;
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case '4': kbd->kc = 0x25; break;
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case '3': kbd->kc = 0x26; break;
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case ' ': kbd->kc = 0x29; break;
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case 'v': kbd->kc = 0x2a; break;
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case 'f': kbd->kc = 0x2b; break;
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case 't': kbd->kc = 0x2c; break;
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case 'r': kbd->kc = 0x2d; break;
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case '5': kbd->kc = 0x2e; break;
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case 'n': kbd->kc = 0x31; break;
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case 'b': kbd->kc = 0x32; break;
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case 'h': kbd->kc = 0x33; break;
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case 'g': kbd->kc = 0x34; break;
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case 'y': kbd->kc = 0x35; break;
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case '6': kbd->kc = 0x36; break;
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case 'm': kbd->kc = 0x3a; break;
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case 'j': kbd->kc = 0x3b; break;
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case 'u': kbd->kc = 0x3c; break;
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case '7': kbd->kc = 0x3d; break;
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case '8': kbd->kc = 0x3e; break;
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case ',': kbd->kc = 0x41; break;
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case 'k': kbd->kc = 0x42; break;
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case 'i': kbd->kc = 0x43; break;
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case 'o': kbd->kc = 0x44; break;
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case '0': kbd->kc = 0x45; break;
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case '9': kbd->kc = 0x46; break;
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case '.': kbd->kc = 0x49; break;
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case '/': kbd->kc = 0x4a; break;
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case 'l': kbd->kc = 0x4b; break;
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case ';': kbd->kc = 0x4c; break;
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case 'p': kbd->kc = 0x4d; break;
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case '-': kbd->kc = 0x4e; break;
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case '\'': kbd->kc = 0x52; break;
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case '[': kbd->kc = 0x54; break;
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case '=': kbd->kc = 0x55; break;
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case '\r': kbd->kc = 0x5a; break;
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case ']': kbd->kc = 0x5b; break;
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case '\\': kbd->kc = 0x5d; break;
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case '\b': kbd->kc = 0x66; break;
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}
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}
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uint8_t kbd_rd(Kbd *kbd)
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{
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// There are 3 modes for reading the kbd:
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// 1. TH = highz: we're polling the the existence of a KC
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// 2. TH = low: return low nibble
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// 3. TH = high: return high nibble and reset KC
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uint8_t res = 0;
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uint8_t tosend = kbd->kc;
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if (kbd->breaking) {
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tosend = 0xf0;
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}
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if (*kbd->TH == TRI_HIGHZ) { // polling
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if (!kbd->kc) {
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res = 0x10; // indicate KC absence;
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}
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} else if (*kbd->TH == TRI_LOW) { // TH selected
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res = tosend & 0xf;
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} else {
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res = tosend >> 4;
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if (kbd->breaking) {
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kbd->breaking = false;
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} else {
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kbd->kc = 0;
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}
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}
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return res;
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}
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16
emul/hw/sms/kbd.h
Normal file
16
emul/hw/sms/kbd.h
Normal file
@ -0,0 +1,16 @@
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#include <stdint.h>
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#include <stdbool.h>
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#include "port.h"
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#define KBD_BUFSZ 0x10
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typedef struct {
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uint8_t kc; // last keycode to be pressed. 0 means none.
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bool breaking; // whether we should send 0xf0 before kc
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Tristate *TH;
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} Kbd;
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void kbd_init(Kbd *kbd, Tristate *TH);
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void kbd_pressshift(Kbd *kbd, bool ispressed);
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void kbd_presskey(Kbd *kbd, uint8_t keycode);
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uint8_t kbd_rd(Kbd *kbd);
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@ -11,6 +11,7 @@
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#include "vdp.h"
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#include "vdp.h"
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#include "port.h"
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#include "port.h"
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#include "pad.h"
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#include "pad.h"
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#include "kbd.h"
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#define RAMSTART 0xc000
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#define RAMSTART 0xc000
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#define VDP_CMD_PORT 0xbf
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#define VDP_CMD_PORT 0xbf
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@ -36,6 +37,8 @@ static VDP vdp;
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static bool vdp_changed;
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static bool vdp_changed;
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static Ports ports;
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static Ports ports;
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static Pad pad;
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static Pad pad;
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static Kbd kbd;
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static bool use_kbd = false;
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static uint8_t iord_vdp_cmd()
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static uint8_t iord_vdp_cmd()
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{
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{
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@ -62,6 +65,11 @@ static uint8_t iord_pad()
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return pad_rd(&pad);
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return pad_rd(&pad);
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}
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}
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static uint8_t iord_kbd()
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{
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return kbd_rd(&kbd);
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}
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static void iowr_vdp_cmd(uint8_t val)
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static void iowr_vdp_cmd(uint8_t val)
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{
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{
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vdp_cmd_wr(&vdp, val);
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vdp_cmd_wr(&vdp, val);
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@ -159,38 +167,49 @@ void draw_pixels()
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static bool _handle_keypress(xcb_generic_event_t *e)
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static bool _handle_keypress(xcb_generic_event_t *e)
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{
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{
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xcb_key_press_event_t *ev = (xcb_key_press_event_t *)e;
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xcb_key_press_event_t *ev = (xcb_key_press_event_t *)e;
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if (ev->detail == 0x09) { // ESC
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return true;
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}
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bool ispressed = e->response_type == XCB_KEY_PRESS;
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bool ispressed = e->response_type == XCB_KEY_PRESS;
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// change keycode into symbol
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// change keycode into symbol
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xcb_get_keyboard_mapping_reply_t* km = xcb_get_keyboard_mapping_reply(
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xcb_get_keyboard_mapping_reply_t* km = xcb_get_keyboard_mapping_reply(
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conn, xcb_get_keyboard_mapping(conn, ev->detail, 1), NULL);
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conn, xcb_get_keyboard_mapping(conn, ev->detail, 1), NULL);
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if (km->length) {
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if (km->length) {
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xcb_keysym_t* keysyms = (xcb_keysym_t*)(km + 1);
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xcb_keysym_t* keysyms = (xcb_keysym_t*)(km + 1);
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switch (keysyms[0]) {
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if (use_kbd) {
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case XK_Escape: free(km); return true;
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if ((keysyms[0] == XK_Shift_L) || (keysyms[0] == XK_Shift_R)) {
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case 'w':
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kbd_pressshift(&kbd, ispressed);
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pad_setbtn(&pad, PAD_BTN_UP, ispressed);
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} else if (ispressed) {
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break;
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fprintf(stderr, "pressing %x\n", keysyms[0]);
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case 'a':
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kbd_presskey(&kbd, keysyms[0]);
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pad_setbtn(&pad, PAD_BTN_LEFT, ispressed);
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}
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break;
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} else { // pad
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case 's':
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switch (keysyms[0]) {
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pad_setbtn(&pad, PAD_BTN_DOWN, ispressed);
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case 'w':
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break;
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pad_setbtn(&pad, PAD_BTN_UP, ispressed);
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case 'd':
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break;
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pad_setbtn(&pad, PAD_BTN_RIGHT, ispressed);
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case 'a':
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break;
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pad_setbtn(&pad, PAD_BTN_LEFT, ispressed);
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case 'h':
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break;
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pad_setbtn(&pad, PAD_BTN_A, ispressed);
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case 's':
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break;
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pad_setbtn(&pad, PAD_BTN_DOWN, ispressed);
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case 'j':
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break;
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pad_setbtn(&pad, PAD_BTN_B, ispressed);
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case 'd':
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break;
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pad_setbtn(&pad, PAD_BTN_RIGHT, ispressed);
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case 'k':
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break;
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pad_setbtn(&pad, PAD_BTN_C, ispressed);
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case 'h':
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break;
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pad_setbtn(&pad, PAD_BTN_A, ispressed);
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case 'l':
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break;
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pad_setbtn(&pad, PAD_BTN_START, ispressed);
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case 'j':
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break;
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pad_setbtn(&pad, PAD_BTN_B, ispressed);
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break;
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case 'k':
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pad_setbtn(&pad, PAD_BTN_C, ispressed);
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break;
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case 'l':
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pad_setbtn(&pad, PAD_BTN_START, ispressed);
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break;
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}
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}
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}
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}
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}
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free(km);
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free(km);
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@ -242,13 +261,30 @@ void event_loop()
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}
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}
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}
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}
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static void usage()
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{
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fprintf(stderr, "Usage: ./sms [-k] /path/to/rom\n");
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}
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int main(int argc, char *argv[])
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int main(int argc, char *argv[])
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{
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{
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if (argc != 2) {
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if (argc < 2) {
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fprintf(stderr, "Usage: ./sms /path/to/rom\n");
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usage();
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return 1;
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return 1;
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}
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}
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FILE *fp = fopen(argv[1], "r");
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int ch;
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while ((ch = getopt(argc, argv, "k")) != -1) {
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switch (ch) {
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case 'k':
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use_kbd = true;
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break;
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}
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}
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if (optind != argc-1) {
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usage();
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return 1;
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}
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FILE *fp = fopen(argv[optind], "r");
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if (fp == NULL) {
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if (fp == NULL) {
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fprintf(stderr, "Can't open %s\n", argv[1]);
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fprintf(stderr, "Can't open %s\n", argv[1]);
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return 1;
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return 1;
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@ -268,12 +304,18 @@ int main(int argc, char *argv[])
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vdp_init(&vdp);
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vdp_init(&vdp);
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vdp_changed = false;
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vdp_changed = false;
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ports_init(&ports);
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ports_init(&ports);
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ports.portA_rd = iord_pad;
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pad_init(&pad, &ports.THA);
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pad_init(&pad, &ports.THA);
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kbd_init(&kbd, &ports.THA);
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if (use_kbd) {
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ports.portA_rd = iord_kbd;
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} else {
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ports.portA_rd = iord_pad;
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}
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m->iord[VDP_CMD_PORT] = iord_vdp_cmd;
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m->iord[VDP_CMD_PORT] = iord_vdp_cmd;
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m->iord[VDP_DATA_PORT] = iord_vdp_data;
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m->iord[VDP_DATA_PORT] = iord_vdp_data;
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m->iord[PORTS_IO1_PORT] = iord_ports_io1;
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m->iord[PORTS_IO1_PORT] = iord_ports_io1;
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m->iord[PORTS_IO2_PORT] = iord_ports_io2;
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m->iord[PORTS_IO2_PORT] = iord_ports_io2;
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m->iord[PORTS_CTL_PORT] = iord_noop;
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m->iowr[VDP_CMD_PORT] = iowr_vdp_cmd;
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m->iowr[VDP_CMD_PORT] = iowr_vdp_cmd;
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m->iowr[VDP_DATA_PORT] = iowr_vdp_data;
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m->iowr[VDP_DATA_PORT] = iowr_vdp_data;
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m->iowr[PORTS_CTL_PORT] = iowr_ports_ctl;
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m->iowr[PORTS_CTL_PORT] = iowr_ports_ctl;
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@ -105,7 +105,7 @@ to TH (and also the A/B on the '157). Q is hooked to PB0 and TL.
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We start with the base recipe and add a few things:
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We start with the base recipe and add a few things:
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1. at the top: `SYSVARS 0x72 + CONSTANT PS2_MEM`
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1. at the top: `SYSVARS 0x72 + CONSTANT PS2_MEM`
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2. After VDP load: `641 LOAD : (ps2kc) (ps2kcB) ;` (that binds us to port B)
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2. After VDP load: `621 LOAD : (ps2kc) (ps2kcB) ;` (that binds us to port B)
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3. Right after: `411 414 LOADR` (that gives us `(key)`)
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3. Right after: `411 414 LOADR` (that gives us `(key)`)
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4. After `VDP$`: `PS2$`.
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4. After `VDP$`: `PS2$`.
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