benchmark_toolbox: hanoi cpu test

This commit is contained in:
souldbminersmwc
2026-06-11 19:01:15 -04:00
parent 464b7d8fff
commit 65eb5f8903
4 changed files with 326 additions and 2 deletions

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@@ -12,10 +12,10 @@ include $(DEVKITPRO)/libnx/switch_rules
#---------------------------------------------------------------------------------
TARGET := Benchmark-Toolbox
BUILD := build
SOURCES := source source/furmark source/memtester
SOURCES := source source/furmark source/memtester source/cpustress
DATA := data
ICON := icon.jpg
INCLUDES := source source/furmark source/memtester ../hoc-clk/common/include
INCLUDES := source source/furmark source/memtester source/cpustress ../hoc-clk/common/include
APP_TITLE := Benchmark Toolbox
APP_AUTHOR := Horizon-OC

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@@ -0,0 +1,178 @@
#include "cpu_stress.h"
#include <stdbool.h>
#include <stdlib.h>
#include <switch.h>
#define CS_N 128
#define CS_THREADS 3
#define CS_PRIO 0x3B
#define CS_STACK 0x10000
typedef struct {
int core;
volatile uint64_t iters;
volatile uint64_t mismatches;
} cs_worker_t;
static Thread s_t[CS_THREADS];
static bool s_started[CS_THREADS];
static cs_worker_t s_w[CS_THREADS];
static volatile bool s_stop = false;
static volatile bool s_running = false;
static int s_mode = 0;
static volatile int s_nthreads = 0;
static volatile long double s_sink;
static void mwc_seed(uint32_t *w, uint32_t *z, int core) {
uint32_t mix = (uint32_t)core * 0x9e3779b9u;
uint32_t ww = 0xdeadbeefu ^ mix;
uint32_t zz = 0x12345678u ^ ~mix;
*w = ww ? ww : 0xdeadbeefu;
*z = zz ? zz : 0x12345678u;
}
static inline uint32_t mwc32(uint32_t *w, uint32_t *z) {
*z = 36969u * (*z & 65535u) + (*z >> 16);
*w = 18000u * (*w & 65535u) + (*w >> 16);
return (*z << 16) + *w;
}
static void matrixprod(long double *a, long double *b, long double *r, uint32_t *w, uint32_t *z) {
const long double v = 1.0L / (long double)((uint32_t)~0u);
for (int i = 0; i < CS_N; i++) {
for (int j = 0; j < CS_N; j++) {
a[i * CS_N + j] = (long double)mwc32(w, z) * v;
b[i * CS_N + j] = (long double)mwc32(w, z) * v;
r[i * CS_N + j] = 0.0L;
}
}
for (int i = 0; i < CS_N && !s_stop; i++) {
for (int j = 0; j < CS_N; j++) {
for (int k = 0; k < CS_N; k++)
r[i * CS_N + j] += a[i * CS_N + k] * b[k * CS_N + j];
}
}
long double sum = 0.0L;
for (int i = 0; i < CS_N; i++)
for (int j = 0; j < CS_N; j++)
sum += r[i * CS_N + j];
s_sink = sum;
}
static uint32_t hanoi_rec(int n) {
if (n == 0)
return 1;
if (n == 1)
return 2;
return hanoi_rec(n - 1) + hanoi_rec(n - 1);
}
static int hanoi_pass(void) {
uint32_t sum = 0;
for (int k = 19; k >= 0; k--)
sum += hanoi_rec(k);
return sum == 0xfffffu;
}
static void cs_worker(void *arg) {
cs_worker_t *c = (cs_worker_t *)arg;
uint32_t w, z;
mwc_seed(&w, &z, c->core);
long double *a = NULL, *b = NULL, *r = NULL;
if (s_mode == 0) {
size_t bytes = sizeof(long double) * CS_N * CS_N;
a = (long double *)malloc(bytes);
b = (long double *)malloc(bytes);
r = (long double *)malloc(bytes);
if (!a || !b || !r) {
free(a);
free(b);
free(r);
return;
}
}
while (!s_stop) {
if (s_mode == 0) {
matrixprod(a, b, r, &w, &z);
} else {
if (!hanoi_pass())
c->mismatches++;
}
c->iters++;
}
free(a);
free(b);
free(r);
}
void cpu_stress_start(int mode) {
if (s_running)
return;
s_mode = mode;
s_stop = false;
s_running = true;
s_nthreads = CS_THREADS;
appletSetAutoSleepDisabled(true);
int started = 0;
for (int i = 0; i < CS_THREADS; i++) {
s_started[i] = false;
s_w[i].core = i;
s_w[i].iters = 0;
s_w[i].mismatches = 0;
if (R_FAILED(threadCreate(&s_t[i], cs_worker, &s_w[i], NULL, CS_STACK, CS_PRIO, i)))
continue;
if (R_SUCCEEDED(threadStart(&s_t[i]))) {
s_started[i] = true;
started++;
} else {
threadClose(&s_t[i]);
}
}
if (started == 0) {
s_running = false;
appletSetAutoSleepDisabled(false);
}
}
void cpu_stress_stop(void) {
s_stop = true;
for (int i = 0; i < CS_THREADS; i++) {
if (!s_started[i])
continue;
threadWaitForExit(&s_t[i]);
threadClose(&s_t[i]);
s_started[i] = false;
}
s_running = false;
appletSetAutoSleepDisabled(false);
}
int cpu_stress_running(void) {
return s_running ? 1 : 0;
}
void cpu_stress_get(cpu_stress_status_t *out) {
if (!out)
return;
uint64_t it = 0, mm = 0;
int n = s_nthreads;
for (int i = 0; i < n; i++) {
it += s_w[i].iters;
mm += s_w[i].mismatches;
}
out->iters = it;
out->mismatches = mm;
out->threads = s_nthreads;
out->running = s_running ? 1 : 0;
}

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@@ -0,0 +1,23 @@
#pragma once
#include <stdint.h>
#ifdef __cplusplus
extern "C" {
#endif
typedef struct {
uint64_t iters;
uint64_t mismatches;
int threads;
int running;
} cpu_stress_status_t;
void cpu_stress_start(int mode);
void cpu_stress_stop(void);
int cpu_stress_running(void);
void cpu_stress_get(cpu_stress_status_t *out);
#ifdef __cplusplus
}
#endif

View File

@@ -13,6 +13,7 @@ extern "C" {
#include <unistd.h>
#include "bench.h"
#include "cpu_stress.h"
#include "gpu_bw.h"
#include "gpu_stress.h"
#include "hoc_clk.h"
@@ -658,6 +659,125 @@ class MemtesterTab : public brls::Box {
brls::Rectangle *barFill, *barTrack;
};
class CpuStressTab : public brls::Box {
public:
CpuStressTab() {
this->setAxis(brls::Axis::COLUMN);
this->setGrow(1.0f);
this->setPadding(40.0f, 60.0f, 40.0f, 60.0f);
auto *modeRow = new brls::Box(brls::Axis::ROW);
modeRow->setMarginBottom(10.0f);
auto *ml = new brls::Label();
ml->setText("Mode");
ml->setGrow(1.0f);
modeRow->addView(ml);
modeVal = new brls::Label();
modeVal->setText(modeName(mode));
modeRow->addView(modeVal);
this->addView(modeRow);
auto *hint = new brls::Label();
hint->setText("Use L / R to select the CPU stress mode. Press A to run.");
hint->setFontSize(15.0f);
hint->setTextColor(nvgRGB(150, 150, 150));
hint->setMarginBottom(14.0f);
this->addView(hint);
toggle = new brls::Button();
toggle->setText("Start");
toggle->registerClickAction([this](brls::View *) {
onToggle();
return true;
});
this->addView(toggle);
this->registerAction("Prev mode", brls::ControllerButton::BUTTON_LB, [this](brls::View *) {
cycle(-1);
return true;
});
this->registerAction("Next mode", brls::ControllerButton::BUTTON_RB, [this](brls::View *) {
cycle(1);
return true;
});
statusL = new brls::Label();
statusL->setText("Stopped");
statusL->setMarginTop(10.0f);
statusL->setMarginBottom(8.0f);
this->addView(statusL);
auto *h = new brls::Header();
h->setTitle("Live");
this->addView(h);
rowA = makeRow(this, "Iterations");
rowB = makeRow(this, "Mismatches");
rowC = makeRow(this, "Threads");
}
~CpuStressTab() override {
if (cpu_stress_running())
cpu_stress_stop();
}
void willDisappear(bool resetState = false) override {
if (cpu_stress_running())
cpu_stress_stop();
brls::Box::willDisappear(resetState);
}
void frame(brls::FrameContext *ctx) override {
cpu_stress_status_t s;
cpu_stress_get(&s);
if (cpu_stress_running() || lastRunning) {
rowA->setText(fstru("%llu", (unsigned long long)s.iters));
rowB->setText(fstru("%llu", (unsigned long long)s.mismatches));
rowC->setText(fstru("%llu", (unsigned long long)s.threads));
if (cpu_stress_running())
statusL->setText(s.mismatches ? "Errors found! Running..." : "Running...");
}
syncToggle(cpu_stress_running() != 0);
brls::Box::frame(ctx);
}
private:
static const char *modeName(int m) {
switch (m) {
case 0: return "Matrixprod";
case 1: return "Hanoi (verify)";
}
return "";
}
void cycle(int dir) {
if (cpu_stress_running())
return;
mode = (mode + dir + 2) % 2;
modeVal->setText(modeName(mode));
}
void onToggle() {
if (cpu_stress_running())
cpu_stress_stop();
else {
rowA->setText("-");
rowB->setText("-");
rowC->setText("-");
cpu_stress_start(mode);
}
}
void syncToggle(bool running) {
if (running == lastRunning)
return;
lastRunning = running;
toggle->setText(running ? "Stop" : "Start");
if (!running)
statusL->setText("Stopped");
}
int mode = 0;
bool lastRunning = false;
brls::Label *modeVal, *statusL, *rowA, *rowB, *rowC;
brls::Button *toggle;
};
class CreditsTab : public brls::Box {
public:
CreditsTab() {
@@ -773,6 +893,7 @@ class MainActivity : public brls::Activity {
tab->addTab("Membench", [] { return new BenchTab(); });
tab->addTab("GPU Test", [] { return new StressTab(); });
tab->addTab("Memtester", [] { return new MemtesterTab(); });
tab->addTab("CPU Stress", [] { return new CpuStressTab(); });
tab->addSeparator();
tab->addTab("Furmark", [] { return new FurmarkTab(0, "FurMark for Switch (48 step)"); });
tab->addTab("Furmark RAM", [] { return new FurmarkTab(1, "FurMark with extra ram stress"); });
@@ -813,6 +934,8 @@ int main(int argc, char *argv[]) {
mt_gpu_stop();
if (mt_cpu_running())
mt_cpu_stop();
if (cpu_stress_running())
cpu_stress_stop();
_exit(EXIT_SUCCESS);
}