112 lines
4.0 KiB
Markdown
112 lines
4.0 KiB
Markdown
# AutoBenchmark
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This sketch measures the amount of time consumed by the `AceButton::check()`
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method when processing various button events. It uses a special
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`ProfilingButtonConfig` object that allows the program to inject button events
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into the library. The profiling numbers come from activating the `TimingStats`
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object that has been instrumented into the `AceButton::check()` method.
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Note that `ProfilingButtonConfig` class generates synthetic button events,
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bypassing the actual `digitalRead()` function. The `digitalRead()` function on
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an Arduino AVR platform (UNO, Nano, etc) is
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[known to be slow](https://forum.arduino.cc/index.php?topic=337578)
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which will add to the timing values in actual usage.
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The [digitalWriteFast library](https://github.com/NicksonYap/digitalWriteFast)
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might be an alternative if speed is critical.
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## Benchmark Results
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In all of the tests, the **min** time for the "idle" case is larger than any of
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the other button events. This is because when a button event occurs, the
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`AceButton::checkDebounced()` method returns immediately until the debouncing
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time is over which brings down the minimum time. No debouncing is done in the
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"idle" case so the minimum code path takes more CPU cycles.
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All times are in microseconds. The "samples" column is the number of
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`TimingStats::update()` calls that were made.
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### Arduino Nano
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* 16MHz ATmega328P
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```
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------------------------+-------------+---------+
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button event | min/avg/max | samples |
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------------------------+-------------+---------+
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idle | 12/ 13/ 20 | 1934 |
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press/release | 8/ 14/ 20 | 1925 |
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click | 8/ 14/ 24 | 1925 |
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double click | 8/ 13/ 24 | 1925 |
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long press/repeat press | 8/ 15/ 24 | 1927 |
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------------------------+-------------+---------+
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```
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### Arduino Pro Micro
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* 16MHz ATmega32U4
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```
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------------------------+-------------+---------+
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button event | min/avg/max | samples |
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------------------------+-------------+---------+
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idle | 12/ 13/ 24 | 1935 |
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press/release | 8/ 14/ 24 | 1928 |
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click | 8/ 13/ 24 | 1928 |
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double click | 8/ 13/ 24 | 1926 |
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long press/repeat press | 8/ 15/ 28 | 1928 |
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------------------------+-------------+---------+
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```
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### Teensy 3.2
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* 96 MHz ARM Cortex-M4
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```
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------------------------+-------------+---------+
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button event | min/avg/max | samples |
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------------------------+-------------+---------+
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idle | 3/ 3/ 5 | 1985 |
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press/release | 1/ 3/ 6 | 1983 |
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click | 1/ 3/ 6 | 1984 |
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double click | 1/ 3/ 6 | 1984 |
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long press/repeat press | 1/ 3/ 6 | 1983 |
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------------------------+-------------+---------+
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```
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### NodeMCU 1.0 clone
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* 80MHz ESP8266
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```
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------------------------+-------------+---------+
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button event | min/avg/max | samples |
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------------------------+-------------+---------+
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idle | 7/ 8/ 24 | 1922 |
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press/release | 6/ 8/ 53 | 1919 |
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click | 6/ 8/ 50 | 1920 |
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double click | 6/ 8/ 67 | 1910 |
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long press/repeat press | 6/ 9/ 60 | 1894 |
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------------------------+-------------+---------+
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```
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The large **max** times for "double click" and "long press" seem to be
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reproducible. I have not researched this but my speculation is that the system
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WiFi code interrupts the `AceButton::check()` method right when the "double
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click" and "long press" samples are taken, causing the extra latency.
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### ESP32-01 Dev Board
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* 240 MHz Tensilica LX6
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```
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------------------------+-------------+---------+
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button event | min/avg/max | samples |
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------------------------+-------------+---------+
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idle | 3/ 3/ 3 | 2002 |
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press/release | 2/ 2/ 8 | 2002 |
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click | 2/ 2/ 7 | 2002 |
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double click | 2/ 2/ 4 | 2002 |
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long press/repeat press | 2/ 2/ 4 | 2002 |
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------------------------+-------------+---------+
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```
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