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big_code_analysis/
count.rs

1// Metric counts (token, function, branch, argument, etc.) are stored as
2// `usize` and crossed with `f64` averages, ratios, and Halstead scores
3// across the cyclomatic / MI / Halstead computations. The `usize as f64`
4// and `f64 as usize` casts are intentional and snapshot-anchored — every
5// site is bounded by the count it came from. Allowing the lints at the
6// module level keeps the metric arithmetic legible.
7#![allow(
8    clippy::cast_precision_loss,
9    clippy::cast_possible_truncation,
10    clippy::cast_sign_loss
11)]
12// Per-language metric and AST modules deliberately consume the macro-
13// generated tree-sitter token enums via `use crate::*` and `use Foo::*`
14// inside match expressions — explicit imports would list dozens of
15// variants per arm and obscure the per-language token sets that are the
16// point of these files. Allowed at the module level rather than per
17// function so the per-language impl blocks stay readable.
18#![allow(clippy::wildcard_imports, clippy::enum_glob_use)]
19
20extern crate num_format;
21
22use num_format::{Locale, ToFormattedString};
23use std::fmt;
24use std::sync::{Arc, Mutex};
25
26use crate::traits::*;
27
28// Hidden from rustdoc because the signature exposes `ParserTrait`,
29// which is `#[doc(hidden)]` per issue #256. The CLI's `Count` callback
30// remains the documented surface for this functionality.
31#[doc(hidden)]
32/// Counts the types of nodes specified in the input slice
33/// and the number of nodes in a code.
34pub fn count<T: ParserTrait>(parser: &T, filters: &[String]) -> (usize, usize) {
35    let filters = parser.get_filters(filters);
36    let node = parser.get_root();
37    let mut cursor = node.cursor();
38    let mut stack = Vec::new();
39    let mut good = 0;
40    let mut total = 0;
41
42    stack.push(node);
43
44    while let Some(node) = stack.pop() {
45        total += 1;
46        if filters.any(&node) {
47            good += 1;
48        }
49        cursor.reset(&node);
50        if cursor.goto_first_child() {
51            loop {
52                stack.push(cursor.node());
53                if !cursor.goto_next_sibling() {
54                    break;
55                }
56            }
57        }
58    }
59    (good, total)
60}
61
62/// Configuration options for counting different
63/// types of nodes in a code.
64#[derive(Debug)]
65pub struct CountCfg {
66    /// Types of nodes to count
67    pub filters: Arc<[String]>,
68    /// Number of nodes of a certain type counted by each thread
69    pub stats: Arc<Mutex<Count>>,
70}
71
72/// Count of different types of nodes in a code.
73#[derive(Debug, Default)]
74pub struct Count {
75    /// The number of specific types of nodes searched in a code
76    pub good: usize,
77    /// The total number of nodes in a code
78    pub total: usize,
79}
80
81impl Callback for Count {
82    type Res = std::io::Result<()>;
83    type Cfg = CountCfg;
84
85    fn call<T: ParserTrait>(cfg: Self::Cfg, parser: &T) -> Self::Res {
86        let (good, total) = count(parser, &cfg.filters);
87        let mut results = cfg.stats.lock().unwrap();
88        results.good += good;
89        results.total += total;
90        Ok(())
91    }
92}
93
94impl fmt::Display for Count {
95    fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
96        writeln!(
97            f,
98            "Total nodes: {}",
99            self.total.to_formatted_string(&Locale::en)
100        )?;
101        writeln!(
102            f,
103            "Found nodes: {}",
104            self.good.to_formatted_string(&Locale::en)
105        )?;
106        write!(
107            f,
108            "Percentage: {:.2}%",
109            (self.good as f64) / (self.total as f64) * 100.
110        )
111    }
112}