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15 Commits
7 changed files with 96 additions and 55 deletions
+3 -3
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@@ -234,7 +234,7 @@ static int cpuOnExecute(VB *sim) {
#define VB_ON_READ VB_DIRECT_READ #define VB_ON_READ VB_DIRECT_READ
#endif #endif
static int cpuRead(VB *sim, uint32_t address, int type, int32_t *value) { static int cpuRead(VB *sim, uint32_t address, int type, int32_t *value) {
uint32_t cycles = 4; /* TODO: Research this */ uint32_t cycles = 0; /* TODO: Research this */
/* Retrieve the value from the simulation state directly */ /* Retrieve the value from the simulation state directly */
busRead(sim, address, type, value); busRead(sim, address, type, value);
@@ -289,7 +289,7 @@ static int cpuReadFetch(VB *sim, int fetch, uint32_t address, int32_t *value) {
#endif #endif
static int cpuWrite(VB *sim, uint32_t address, int type, int32_t value) { static int cpuWrite(VB *sim, uint32_t address, int type, int32_t value) {
int cancel = 0; int cancel = 0;
uint32_t cycles = 3; /* TODO: Research this */ uint32_t cycles = 0; /* TODO: Research this */
/* Reset pseudo-halt */ /* Reset pseudo-halt */
if (sim->ph.enabled) if (sim->ph.enabled)
@@ -495,7 +495,7 @@ static int cpuException(VB *sim) {
sim->cpu.eipc = sim->cpu.pc; sim->cpu.eipc = sim->cpu.pc;
sim->cpu.psw.ep = 1; sim->cpu.psw.ep = 1;
sim->cpu.nextPC = 0xFFFF0000 | sim->cpu.nextPC = 0xFFFF0000 |
((cause & 0xFFF0) == 0xFF60 ? 0xFF60 : cause & 0xFFF0); ((cause & 0xFFF0) == 0xFF70 ? 0xFF60 : cause & 0xFFF0);
} }
/* All exceptions */ /* All exceptions */
+1 -1
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@@ -900,7 +900,7 @@ VBAPI vbOnWrite vbSetWriteCallback(VB *sim, vbOnWrite callback) {
} }
/* Determine the size of a simulation instance */ /* Determine the size of a simulation instance */
VBAPI size_t vbSizeOf() { VBAPI size_t vbSizeOf(void) {
return sizeof (VB); return sizeof (VB);
} }
+1 -1
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@@ -166,7 +166,7 @@ VBAPI vbOnSamples vbSetSamplesCallback (VB *sim, vbOnSamples callback);
VBAPI uint32_t vbSetSystemRegister (VB *sim, unsigned index, uint32_t value); VBAPI uint32_t vbSetSystemRegister (VB *sim, unsigned index, uint32_t value);
VBAPI void* vbSetUserData (VB *sim, void *tag); VBAPI void* vbSetUserData (VB *sim, void *tag);
VBAPI vbOnWrite vbSetWriteCallback (VB *sim, vbOnWrite callback); VBAPI vbOnWrite vbSetWriteCallback (VB *sim, vbOnWrite callback);
VBAPI size_t vbSizeOf (); VBAPI size_t vbSizeOf (void);
VBAPI int32_t vbWrite (VB *sim, uint32_t address, int type, int32_t value); VBAPI int32_t vbWrite (VB *sim, uint32_t address, int type, int32_t value);
+24 -18
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@@ -41,16 +41,17 @@ static const uint8_t BG_TEMPLATES[][64] = {
}; };
/* 8-bit color magnitude by brightness level */ /* 8-bit color magnitude by brightness level */
/* Generated as BRIGHT8[n] = round((n / 132) ** 1.6 * 255) */
static const uint8_t BRIGHT8[] = { static const uint8_t BRIGHT8[] = {
0, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 28, 0, 12, 19, 24, 29, 33, 37, 41, 44, 48, 51, 54, 57, 60, 63, 65,
30, 32, 34, 36, 38, 40, 42, 44, 46, 48, 50, 52, 54, 56, 57, 59, 68, 71, 73, 76, 78, 81, 83, 86, 88, 90, 92, 95, 97, 99,101,103,
61, 63, 65, 67, 69, 71, 73, 75, 77, 79, 81, 83, 85, 86, 88, 90, 105,107,109,111,113,115,117,119,121,123,125,127,128,130,132,134,
92, 94, 96, 98,100,102,104,106,108,110,112,113,115,117,119,121, 136,137,139,141,142,144,146,148,149,151,153,154,156,157,159,161,
123,125,127,129,131,133,135,137,139,141,142,144,146,148,150,152, 162,164,165,167,168,170,172,173,175,176,178,179,181,182,184,185,
154,156,158,160,162,164,166,168,170,171,173,175,177,179,181,183, 186,188,189,191,192,194,195,197,198,199,201,202,203,205,206,208,
185,187,189,191,193,195,197,198,200,202,204,206,208,210,212,214, 209,210,212,213,214,216,217,218,220,221,222,224,225,226,228,229,
216,218,220,222,224,226,227,229,231,233,235,237,239,241,243,245, 230,231,233,234,235,236,238,239,240,242,243,244,245,246,248,249,
247,249,251,253,255 250,251,253,254,255
}; };
@@ -984,7 +985,7 @@ static void vipDrawHBias(VB *sim, World *world) {
/* Process all visible lines */ /* Process all visible lines */
param = &sim->vip.ram[world->paramBase + param = &sim->vip.ram[world->paramBase +
((y1 - world->gy) << 2) + (i << 1)]; ((y1 - world->gy) << 2) + (i << 1)];
for (y = y1; y < y2; y++, param += 2) { for (y = y1; y < y2; y++, param += 4) {
/* Configure window bounds */ /* Configure window bounds */
wnd.y1 = y; wnd.y1 = y;
@@ -992,7 +993,7 @@ static void vipDrawHBias(VB *sim, World *world) {
/* Draw the background into the window */ /* Draw the background into the window */
vipDrawBackground(sim->vip.shadow[i], &wnd, world, vipDrawBackground(sim->vip.shadow[i], &wnd, world,
mx + busReadBuffer(param, VB_S16), my); mx - busReadBuffer(param, VB_S16), my);
} }
} }
@@ -1004,7 +1005,7 @@ static void vipDrawAffine(VB *sim, World *world) {
Cell *cell; /* Source cell */ Cell *cell; /* Source cell */
uint8_t *col, *row; /* Output pixel */ uint8_t *col, *row; /* Output pixel */
uint8_t pixel; /* Character pixel value */ uint8_t pixel; /* Character pixel value */
uint8_t *param; /* World parameter memory */ uint32_t param; /* World parameter memory */
int32_t px, py; /* Pixel source coordinates */ int32_t px, py; /* Pixel source coordinates */
int32_t dx, dy, mp, mx, my; /* Affine parameters */ int32_t dx, dy, mp, mx, my; /* Affine parameters */
int32_t wx; /* Base world X coordinate */ int32_t wx; /* Base world X coordinate */
@@ -1051,21 +1052,26 @@ static void vipDrawAffine(VB *sim, World *world) {
wx = x1 - wx; wx = x1 - wx;
/* Process all visible rows */ /* Process all visible rows */
param = &sim->vip.ram[world->paramBase | (y1 - world->gy) << 4]; param = world->paramBase + ((y1 - world->gy) << 4);
row = &sim->vip.shadow[i][x1 * 224 + y1]; row = &sim->vip.shadow[i][x1 * 224 + y1];
for (y = y1; y < y2; y++, param += 16, row++) { for (y = y1; y < y2; y++, param += 16, row++) {
/* Parse line parameters */ /* Parse line parameters */
mx = (int32_t) busReadBuffer(param + 0, VB_S16) << 6; mx = (int32_t) busReadBuffer(&sim->vip.ram[param | 0], VB_S16) << 6;
mp = (int32_t) busReadBuffer(param + 2, VB_S16); mp = (int32_t) busReadBuffer(&sim->vip.ram[param | 2], VB_S16);
my = (int32_t) busReadBuffer(param + 4, VB_S16) << 6; my = (int32_t) busReadBuffer(&sim->vip.ram[param | 4], VB_S16) << 6;
dx = (int32_t) busReadBuffer(param + 6, VB_S16); dx = (int32_t) busReadBuffer(&sim->vip.ram[param | 6], VB_S16);
dy = (int32_t) busReadBuffer(param + 8, VB_S16); dy = (int32_t) busReadBuffer(&sim->vip.ram[param | 8], VB_S16);
/* Adjust left-edge parameters */ /* Adjust left-edge parameters */
if ((mp < 0) ^ i) { if ((mp < 0) ^ i) {
if (mp < 0) {
mx += dx * (wx - mp);
my += dy * (wx - mp);
} else {
mx += dx * (wx + mp); mx += dx * (wx + mp);
my += dy * (wx + mp); my += dy * (wx + mp);
}
} else { } else {
mx += dx * wx; mx += dx * wx;
my += dy * wx; my += dy * wx;
+27 -17
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@@ -132,14 +132,19 @@ static void vsuEmulateChannel(VB *sim, Channel *chan) {
} }
/* Envelope modification */ /* Envelope modification */
if (chan->env.enb && !chan->env.modmask && chan->env.clocks == 0) { if (chan->env.clocks == 0) {
uint8_t new_envelope = chan->env.value;
if (chan->env.dir == 0 && chan->env.value != 0) if (chan->env.dir == 0 && chan->env.value != 0)
chan->env.value--; new_envelope--;
else if (chan->env.dir == 1 && chan->env.value != 15) else if (chan->env.dir == 1 && chan->env.value != 15)
chan->env.value++; new_envelope++;
else if (chan->env.rep) else if (chan->env.rep && chan->env.modmask != 2) {
chan->env.value = chan->env.reload; new_envelope = chan->env.reload;
else chan->env.modmask = 1; chan->env.modmask = 0;
} else if (!chan->env.modmask)
chan->env.modmask = 1;
if (chan->env.enb && !chan->env.modmask)
chan->env.value = new_envelope;
chan->env.clocks = ((uint32_t) chan->env.interval + 1) * 307220; chan->env.clocks = ((uint32_t) chan->env.interval + 1) * 307220;
} }
@@ -215,6 +220,7 @@ static void vsuWriteEV0(VB *sim, int index, uint8_t value) {
chan->env.interval = value & 7; chan->env.interval = value & 7;
chan->env.value = value >> 4 & 15; chan->env.value = value >> 4 & 15;
chan->env.reload = chan->env.value; chan->env.reload = chan->env.value;
if (chan->env.modmask == 1) chan->env.modmask = 2;
if (index == 4) { if (index == 4) {
chan->freqmod = vsuCheckFreqMod(sim); chan->freqmod = vsuCheckFreqMod(sim);
vsuNextFreqMod(sim, chan); vsuNextFreqMod(sim, chan);
@@ -231,6 +237,12 @@ static void vsuWriteEV1(VB *sim, int index, uint8_t value) {
/* Parse fields */ /* Parse fields */
chan->env.enb = value & 1; chan->env.enb = value & 1;
chan->env.rep = value >> 1 & 1; chan->env.rep = value >> 1 & 1;
if (
!chan->env.rep && (
(chan->env.reload == 0 && chan->env.dir == 0) ||
(chan->env.reload == 15 && chan->env.dir == 1)
)
) chan->env.modmask = 1;
/* Processing by channel */ /* Processing by channel */
switch (index) { switch (index) {
@@ -286,7 +298,12 @@ static void vsuWriteINT(VB *sim, int index, uint8_t value) {
/* Update state */ /* Update state */
chan->int_.clocks = 76805 * ((uint32_t) chan->int_.interval + 1); chan->int_.clocks = 76805 * ((uint32_t) chan->int_.interval + 1);
chan->env.modmask = 0; chan->env.modmask = 0;
if (chan->env.enb) if (
!chan->env.rep && (
(chan->env.reload == 0 && chan->env.dir == 0) ||
(chan->env.reload == 15 && chan->env.dir == 1)
)
) chan->env.modmask = 1;
chan->env.clocks = 307220 * ((uint32_t) chan->env.interval + 1); chan->env.clocks = 307220 * ((uint32_t) chan->env.interval + 1);
if (index != 5) { if (index != 5) {
chan->wave.sample = 0; chan->wave.sample = 0;
@@ -377,7 +394,7 @@ static void vsuEmulate(VB *sim, uint32_t clocks) {
/* Clocks until next state change */ /* Clocks until next state change */
chan->until = chan->clocks; chan->until = chan->clocks;
if (chan->env.enb && !chan->env.modmask && if (chan->env.enb && chan->env.modmask != 2 &&
chan->env.clocks < chan->until) chan->env.clocks < chan->until)
chan->until = chan->env.clocks; chan->until = chan->env.clocks;
if (chan->int_.auto_ && chan->int_.clocks < chan->until) if (chan->int_.auto_ && chan->int_.clocks < chan->until)
@@ -387,7 +404,7 @@ static void vsuEmulate(VB *sim, uint32_t clocks) {
/* Manage clocks */ /* Manage clocks */
chan->clocks -= chan->until; chan->clocks -= chan->until;
if (chan->env.enb && !chan->env.modmask) if (chan->env.enb && chan->env.modmask != 2)
chan->env.clocks -= chan->until; chan->env.clocks -= chan->until;
if (chan->int_.auto_) if (chan->int_.auto_)
chan->int_.clocks -= chan->until; chan->int_.clocks -= chan->until;
@@ -531,14 +548,7 @@ static void vsuReset(VB *sim) {
/* Write a typed value to the VSU bus */ /* Write a typed value to the VSU bus */
static void vsuWrite(VB*sim,uint32_t address,int type,int32_t value,int debug){ static void vsuWrite(VB*sim,uint32_t address,int type,int32_t value,int debug){
(void) type;
/* Only byte writes are allowed */
switch (type) {
case VB_S16:
case VB_U16:
case VB_S32:
return;
}
/* Unmapped */ /* Unmapped */
if (address & 1) if (address & 1)
+6
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@@ -293,6 +293,12 @@ new class Core {
}, [ output.buffer ]); }, [ output.buffer ]);
} }
// Reset simulation state
reset(message) {
this.vbReset(message.sim);
this.dom.postMessage({ promised: true });
}
// Specify anaglyph colors // Specify anaglyph colors
setAnaglyph(message) { setAnaglyph(message) {
this.SetAnaglyph(message.sim, message.left, message.right); this.SetAnaglyph(message.sim, message.left, message.right);
+31 -12
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@@ -436,8 +436,17 @@ class Sim extends HTMLElement {
response.lines.map(l=>new DasmLine(GUARD, l)); response.lines.map(l=>new DasmLine(GUARD, l));
} }
// Reset simulation state
reset() {
return this.#core.toCore({
command : "reset",
promised: true,
sim : this.#pointer
});
}
// Specify anaglyph colors // Specify anaglyph colors
async setAnaglyph(left, right) { setAnaglyph(left, right) {
// Error checking // Error checking
if (!Number.isSafeInteger(left ) || left < 0 || left > 0xFFFFFF) if (!Number.isSafeInteger(left ) || left < 0 || left > 0xFFFFFF)
@@ -455,7 +464,7 @@ class Sim extends HTMLElement {
this.#anaglyph[1] = right; this.#anaglyph[1] = right;
// Send the colors to the core // Send the colors to the core
await this.#core.toCore({ return this.#core.toCore({
command : "setAnaglyph", command : "setAnaglyph",
promised: true, promised: true,
sim : this.#pointer, sim : this.#pointer,
@@ -475,7 +484,7 @@ class Sim extends HTMLElement {
} }
// Specify new game pad keys // Specify new game pad keys
async setKeys(keys) { setKeys(keys) {
// Error checking // Error checking
if (!Number.isSafeInteger(keys) || keys < 0 || keys > 0xFFFF) if (!Number.isSafeInteger(keys) || keys < 0 || keys > 0xFFFF)
@@ -487,7 +496,7 @@ class Sim extends HTMLElement {
this.#keys = keys; this.#keys = keys;
// Send the keys to the core // Send the keys to the core
await this.#core.toCore({ return this.#core.toCore({
command : "setKeys", command : "setKeys",
promised: true, promised: true,
sim : this.#pointer, sim : this.#pointer,
@@ -496,7 +505,7 @@ class Sim extends HTMLElement {
} }
// Specify audio panning // Specify audio panning
async setPanning(panning) { setPanning(panning) {
// Error checking // Error checking
if (!Number.isFinite(panning) ||panning < -1 || panning > +1) { if (!Number.isFinite(panning) ||panning < -1 || panning > +1) {
@@ -508,7 +517,7 @@ class Sim extends HTMLElement {
this.#panning = panning; this.#panning = panning;
// Send the panning to the core // Send the panning to the core
await this.#core.toCore({ return this.#core.toCore({
command : "setPanning", command : "setPanning",
promised: true, promised: true,
sim : this.#pointer, sim : this.#pointer,
@@ -529,7 +538,7 @@ class Sim extends HTMLElement {
} }
// Specify audio volume // Specify audio volume
async setVolume(volume) { setVolume(volume) {
// Error checking // Error checking
if (!Number.isFinite(volume) ||volume < 0 || volume > 10) { if (!Number.isFinite(volume) ||volume < 0 || volume > 10) {
@@ -541,7 +550,7 @@ class Sim extends HTMLElement {
this.#volume = volume; this.#volume = volume;
// Send the volume to the core // Send the volume to the core
await this.#core.toCore({ return this.#core.toCore({
command : "setVolume", command : "setVolume",
promised: true, promised: true,
sim : this.#pointer, sim : this.#pointer,
@@ -596,7 +605,7 @@ class VB {
#commands; // Computed method table #commands; // Computed method table
#core; // Core worker #core; // Core worker
#proxy; // Self proxy for sim access #proxy; // Self proxy for sim access
#sims; // All sims #sims; // Mapping of Sim|pointer -> proxy
#state; // Operations state #state; // Operations state
@@ -683,8 +692,8 @@ class VB {
///////////////////////////// Static Methods ////////////////////////////// ///////////////////////////// Static Methods //////////////////////////////
// Create a core instance // Create a core instance
static async create(options) { static create(options) {
return await new VB(GUARD).#construct(options); return new VB(GUARD).#construct(options);
} }
@@ -769,6 +778,16 @@ class VB {
/////////////////////////////// Properties ////////////////////////////////
// Number of managed simulations
get size() { return this.#sims.size / 2; }
// Managed simulations
get sims() { return [... this.#sims.keys()].filter(s=>s instanceof Sim); }
///////////////////////////// Public Methods ////////////////////////////// ///////////////////////////// Public Methods //////////////////////////////
// Create one or more sims // Create one or more sims
@@ -809,7 +828,7 @@ class VB {
if ( if (
!Array.isArray(sims) || !Array.isArray(sims) ||
sims.length == 0 || sims.length == 0 ||
sims.find(s=>!this.#sims.has(s)) sims.some(s=>!this.#sims.has(s))
) { ) {
throw new TypeError("Must specify a Sim or array of Sims " + throw new TypeError("Must specify a Sim or array of Sims " +
"that belong to this core."); "that belong to this core.");