child expressions parsing
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5c950a1f40
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@ -5,11 +5,11 @@ use regex::Regex;
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// configure possible Tasks.
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// None means, the Expression doesn't send it's Value to a Task Handler
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#[derive(Debug)] // automatically generate Debug Formatter
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enum Task {
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pub enum Task {
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None,
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Sqrt,
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Power,
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Log,
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Log(u64),
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}
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// How to clone a Task, i was supprised I had to do it myself.
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@ -20,11 +20,23 @@ impl Clone for Task {
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Task::None => Task::None,
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Task::Sqrt => Task::Sqrt,
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Task::Power => Task::Power,
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Task::Log => Task::Log,
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Task::Log(base) => Task::Log(*base), // TODO add base for log
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}
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}
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}
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impl Task {
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pub fn new(task_text: &str) -> Task {
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match task_text {
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"none" => Task::None,
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"sqrt" => Task::Sqrt,
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"power"|"pow" => Task::Power,
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"log"|"ln" => Task::Log(10), // TODO add base
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// what to do if a bad task was given:
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&_ => {eprintln!("Bad Task: {}", task_text); std::process::exit(1); },
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}
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}
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}
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// An Expression is something that can be calculated. 20+5 is an expression. Expressions can
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// contain other
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// Expressions and have tasks: 20+sqrt(20+5)
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@ -75,21 +87,59 @@ impl Clone for Expression{
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impl Expression {
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/*
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* Main function for making text into Expression
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* example: "12 + log_10(10 + 15) + 3"
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* has a sub expression log_10(10 + 5), which has Task::Log with base 10
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*/
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pub fn new(expression_text: String) -> Expression {
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pub fn new(expression_text: String, task: Task) -> Expression {
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// find children
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let re_sub_expression = Regex::new(r"\w+\(.+\)").unwrap();
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// TODO add error for unused task parameters
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let re_sub_expression = Regex::new(r"\w+\(.+?\)").unwrap();
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if re_sub_expression.is_match(&expression_text) {
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let mut children: Vec<Expression> = Vec::new();
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for sub_expression_text in re_sub_expression.captures_iter(&expression_text) {
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println!("{}", &sub_expression_text[0]);
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// if any task parameters are set ( syntax: task_para(expression) )
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if sub_expression_text[0].contains('_') {
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let task_and_expr: Vec<&str> = sub_expression_text[0].split(['_', '(']).collect();
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let task_text = task_and_expr[0].clone().to_lowercase();
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let task_param = task_and_expr[1].clone().to_string();
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let task = match task_text.as_str() {
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"none" => Task::None,
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"sqrt" => Task::Sqrt,
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"power" => Task::Power,
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"log" => {let base: u64 = task_param.parse().unwrap(); Task::Log(base)},
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// what to do if a bad task was given:
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&_ => {eprintln!("Bad Task: {}", task_text); std::process::exit(1); },
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};
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let expression_inner = task_and_expr[2].clone().to_string();
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children.push(Expression::new(expression_inner, task));
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}
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// if there are no parameters we need to do diffrent splitting and assume defaults
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else {
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let task_and_expr: Vec<&str> = sub_expression_text[0].split(['(']).collect();
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let task_text = task_and_expr[0].clone().to_lowercase();
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let task = match task_text.as_str() {
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"none" => Task::None,
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"sqrt" => Task::Sqrt,
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"power" => Task::Power,
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"log" => Task::Log(10),
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// what to do if a bad task was given:
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&_ => {eprintln!("Bad Task: {}", task_text); std::process::exit(1); },
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};
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let expression_inner = task_and_expr[1].clone().to_string();
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children.push(Expression::new(expression_inner, task));
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}
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}
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#[cfg(debug_assertions)]
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dbg!(children);
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}
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let expression = Expression {
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text: expression_text,
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// TODO generate these from the text!
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task: Task::None,
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task: task,
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complex: false,
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inner_value: 0.0,
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outer_value: 0.0,
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@ -97,4 +147,9 @@ impl Expression {
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};
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expression
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}
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pub fn process(&self) {
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println!("{}", self.text);
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}
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}
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35
src/main.rs
35
src/main.rs
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@ -4,32 +4,30 @@ mod expression_parser;
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mod linear_algebra;
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use expression_parser::Expression;
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use expression_parser::Task;
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#[derive(Parser)]
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#[command(author, version, about, long_about = None)]
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struct Arg {
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// /// Optional subcommand
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// #[command(subcommand)]
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// command: Option<Commands>,
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/// Show verbose output
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#[arg(short, long)]
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verbose: bool,
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/// Show debug output
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#[arg(short, long, default_value_t = false)]
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debug: bool,
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#[command(subcommand)]
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command: Option<Commands>,
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/// An expression that should be used to calculate something
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expression_texts: Vec<String>,
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expressions: Vec<String>,
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}
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#[derive(Subcommand)]
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enum Commands {
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/// Assert if two expressions are equal to each other
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Equal {
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}
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}
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//#[derive(Subcommand)]
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//enum Commands {
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// /// Assert if two expressions are equal to each other
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// Equal {
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// }
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//}
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fn main() {
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let args = Arg::parse();
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@ -40,11 +38,14 @@ fn main() {
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// TODO implement splitting of expressions, currently they are made only into a single big
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// expression text
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let mut expression_texts_concat: Vec<String> = Vec::new();
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expression_texts_concat.push(args.expression_texts.join(" ").trim().to_string());
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expression_texts_concat.push(args.expressions.join(" ").trim().to_string());
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for expression_text in expression_texts_concat {
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expression_vec.push(Expression::new(expression_text));
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expression_vec.push(Expression::new(expression_text, Task::None));
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}
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for expression in expression_vec {
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expression.process();
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}
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dbg!(expression_vec);
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}
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