#cyclictest — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #cyclictest, aggregated by home.social.
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Update after longer run (~10M cycles): max jitter reached 55 µs 👌🏻
Plugging in AC power caused a localized spike on a single RT thread (51 µs), while others stayed stable.
Classic ACPI / power-state event: bounded, localized, fully recoverable.Determinism preserved under real hardware events 👊🏻
#linux #realtime #rtos #buildroot #PREEMPTRT #latency #cyclictest #determinism
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Update after longer run (~10M cycles): max jitter reached 55 µs 👌🏻
Plugging in AC power caused a localized spike on a single RT thread (51 µs), while others stayed stable.
Classic ACPI / power-state event: bounded, localized, fully recoverable.Determinism preserved under real hardware events 👊🏻
#linux #realtime #rtos #buildroot #PREEMPTRT #latency #cyclictest #determinism
-
Update after longer run (~10M cycles): max jitter reached 55 µs 👌🏻
Plugging in AC power caused a localized spike on a single RT thread (51 µs), while others stayed stable.
Classic ACPI / power-state event: bounded, localized, fully recoverable.Determinism preserved under real hardware events 👊🏻
#linux #realtime #rtos #buildroot #PREEMPTRT #latency #cyclictest #determinism
-
Update after longer run (~10M cycles): max jitter reached 55 µs 👌🏻
Plugging in AC power caused a localized spike on a single RT thread (51 µs), while others stayed stable.
Classic ACPI / power-state event: bounded, localized, fully recoverable.Determinism preserved under real hardware events 👊🏻
#linux #realtime #rtos #buildroot #PREEMPTRT #latency #cyclictest #determinism
-
Update after longer run (~10M cycles): max jitter reached 55 µs 👌🏻
Plugging in AC power caused a localized spike on a single RT thread (51 µs), while others stayed stable.
Classic ACPI / power-state event: bounded, localized, fully recoverable.Determinism preserved under real hardware events 👊🏻
#linux #realtime #rtos #buildroot #PREEMPTRT #latency #cyclictest #determinism
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Again my custom Linux RT OS from scratch with Buildroot on Raspberry Pi 4.
Wi-Fi and OpenVPN are up, real apps running (wpa_supplicant, mosquitto, dropbear…), and yet cyclictest shows max latency under 50µs, even under stress-ng load.
Real-time performance, real-world conditions. I'm impressed.
#Linux #Buildroot #RealTime #RaspberryPi #OpenVPN #WiFi #cyclictest
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Again my custom Linux RT OS from scratch with Buildroot on Raspberry Pi 4.
Wi-Fi and OpenVPN are up, real apps running (wpa_supplicant, mosquitto, dropbear…), and yet cyclictest shows max latency under 50µs, even under stress-ng load.
Real-time performance, real-world conditions. I'm impressed.
#Linux #Buildroot #RealTime #RaspberryPi #OpenVPN #WiFi #cyclictest
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Again my custom Linux RT OS from scratch with Buildroot on Raspberry Pi 4.
Wi-Fi and OpenVPN are up, real apps running (wpa_supplicant, mosquitto, dropbear…), and yet cyclictest shows max latency under 50µs, even under stress-ng load.
Real-time performance, real-world conditions. I'm impressed.
#Linux #Buildroot #RealTime #RaspberryPi #OpenVPN #WiFi #cyclictest
-
Again my custom Linux RT OS from scratch with Buildroot on Raspberry Pi 4.
Wi-Fi and OpenVPN are up, real apps running (wpa_supplicant, mosquitto, dropbear…), and yet cyclictest shows max latency under 50µs, even under stress-ng load.
Real-time performance, real-world conditions. I'm impressed.
#Linux #Buildroot #RealTime #RaspberryPi #OpenVPN #WiFi #cyclictest
-
Again my custom Linux RT OS from scratch with Buildroot on Raspberry Pi 4.
Wi-Fi and OpenVPN are up, real apps running (wpa_supplicant, mosquitto, dropbear…), and yet cyclictest shows max latency under 50µs, even under stress-ng load.
Real-time performance, real-world conditions. I'm impressed.
#Linux #Buildroot #RealTime #RaspberryPi #OpenVPN #WiFi #cyclictest
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BashCoreZ just proved it's the ultimate Real-Time base! 🚀
Tested the ultra-minimal #BashCoreZ (Debian 13 + Kernel 6.12 #PREEMPT_RT) using #cyclictest, remotely piloted from a #BashLabOS host.
Result: Max Jitter stayed under 240µs! That’s incredible determinism for embedded, robotics, and industrial control.
The "zero bloat" foundation truly eliminates noise.
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BashCoreZ just proved it's the ultimate Real-Time base! 🚀
Tested the ultra-minimal #BashCoreZ (Debian 13 + Kernel 6.12 #PREEMPT_RT) using #cyclictest, remotely piloted from a #BashLabOS host.
Result: Max Jitter stayed under 240µs! That’s incredible determinism for embedded, robotics, and industrial control.
The "zero bloat" foundation truly eliminates noise.
-
BashCoreZ just proved it's the ultimate Real-Time base! 🚀
Tested the ultra-minimal #BashCoreZ (Debian 13 + Kernel 6.12 #PREEMPT_RT) using #cyclictest, remotely piloted from a #BashLabOS host.
Result: Max Jitter stayed under 240µs! That’s incredible determinism for embedded, robotics, and industrial control.
The "zero bloat" foundation truly eliminates noise.
-
BashCoreZ just proved it's the ultimate Real-Time base! 🚀
Tested the ultra-minimal #BashCoreZ (Debian 13 + Kernel 6.12 #PREEMPT_RT) using #cyclictest, remotely piloted from a #BashLabOS host.
Result: Max Jitter stayed under 240µs! That’s incredible determinism for embedded, robotics, and industrial control.
The "zero bloat" foundation truly eliminates noise.
-
BashCoreZ just proved it's the ultimate Real-Time base! 🚀
Tested the ultra-minimal #BashCoreZ (Debian 13 + Kernel 6.12 #PREEMPT_RT) using #cyclictest, remotely piloted from a #BashLabOS host.
Result: Max Jitter stayed under 240µs! That’s incredible determinism for embedded, robotics, and industrial control.
The "zero bloat" foundation truly eliminates noise.