mirror of https://github.com/rm-dr/daisy
70 lines
2.4 KiB
Markdown
70 lines
2.4 KiB
Markdown
![](./site/misc/readme-banner.png)
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A high-precision scientific calculator with support for units, derivatives, and more.
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Many features are missing, this is still under development.
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# 📦 Installation
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- **Cargo:** `cargo install daisycalc`
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- **Arch:** `yay -S daisy`
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- **Debian:** coming soon
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From source: `cargo build --release` \
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Binary will be in `target/release/daisy`
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# 📹 Screenshot
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![Screenshot](https://github.com/rm-dr/daisy/assets/96270320/cc71887a-0fde-46b2-a13b-96b05098b158)
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# 🛠️ Features
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- Open-source
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- Extremely high precision
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- Uses a rational datatype when possible, and a high-precision float when not.
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- Pretty printing in prompt (with special substitutions)
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- Supports many physical units, with metric and binary prefixes
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- Supports exponential notation
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- Clear syntax, parsed input is always re-printed as a sanity check.
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- Useful, detailed error messages
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# 📑 Usage
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All documentation is built into the prompt. Use the `help` command to view it.
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## Evaluate expressions:
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- Basic math: ``103 / 2 * 43``
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- Functions: ``sqrt(1.4^3 + 4) * sin(pi / 4)``
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- Scientific notation: ``1.2e12 * 1e-5``
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## Physical units
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- Unit operations: ``2 day + 1 hour``
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- Unit conversion: ``2 day + 1 hour to minutes``
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- Compound units: ``10 m/s to mph``
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- Conversion errors: ``1 liter to volt``
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## Varables
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- Previous answer: `ans + 2`
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- Variable assignment: `a = 143`
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# 🌹 Additional Notes
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## Unit Conversion
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The conversion operator `to` converts its left argument to the *unit* of its right argument, ignoring its value. For example, `5m to mi` and `5m to 10mi` are identical.
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## Celsius and Fahrenheit
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Celsius and Fahrenheit are not supported as first-class units because they require an offset when converting from other temperature units. This leads to ambiguity when adding units, since one temperature must be seen as a *difference* rather than an absolute temperature.
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Daisy instead provides four functions (`fromCelsius`, `toCelsius`, `fromFahrenheit`, `toFahrenheit`) which convert between scalars and Kelvin.
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- "from" functions take a scalar and return a value in Kelvin: `fromCelsius(0) = 273.15K`
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- "to" functions take a value in Kelvin and return a scalar: `toCelsius(273.15 K) = 0`
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## Multiplication Order
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Implicit multiplication has a higher priority than division. `pi/2 radians` will parse as `pi/(2 radians)`. Type `(pi/2) radians` or `pi/2 * radians` to get 90 degrees.
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