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scythe_codegen/backends/
ruby_sqlite3.rs

1use std::fmt::Write;
2use std::path::Path;
3
4use scythe_backend::manifest::{BackendManifest, load_manifest};
5use scythe_backend::naming::{
6    enum_type_name, enum_variant_name, fn_name, row_struct_name, to_pascal_case,
7};
8
9use scythe_core::analyzer::{AnalyzedQuery, CompositeInfo, EnumInfo};
10use scythe_core::errors::{ErrorCode, ScytheError};
11use scythe_core::parser::QueryCommand;
12
13use crate::backend_trait::{CodegenBackend, ResolvedColumn, ResolvedParam};
14
15const DEFAULT_MANIFEST_TOML: &str = include_str!("../../manifests/ruby-sqlite3.toml");
16
17pub struct RubySqlite3Backend {
18    manifest: BackendManifest,
19}
20
21impl RubySqlite3Backend {
22    pub fn new(engine: &str) -> Result<Self, ScytheError> {
23        match engine {
24            "sqlite" | "sqlite3" => {}
25            _ => {
26                return Err(ScytheError::new(
27                    ErrorCode::InternalError,
28                    format!("ruby-sqlite3 only supports SQLite, got engine '{}'", engine),
29                ));
30            }
31        }
32        let manifest_path = Path::new("backends/ruby-sqlite3/manifest.toml");
33        let manifest = if manifest_path.exists() {
34            load_manifest(manifest_path)
35                .map_err(|e| ScytheError::new(ErrorCode::InternalError, format!("manifest: {e}")))?
36        } else {
37            toml::from_str(DEFAULT_MANIFEST_TOML)
38                .map_err(|e| ScytheError::new(ErrorCode::InternalError, format!("manifest: {e}")))?
39        };
40        Ok(Self { manifest })
41    }
42}
43
44/// Map a neutral type to a Ruby type coercion method for sqlite3.
45fn ruby_coercion(neutral_type: &str) -> &'static str {
46    match neutral_type {
47        "int16" | "int32" | "int64" => ".to_i",
48        "float32" | "float64" | "decimal" => ".to_f",
49        "bool" => " == 1",
50        _ => "",
51    }
52}
53
54impl CodegenBackend for RubySqlite3Backend {
55    fn name(&self) -> &str {
56        "ruby-sqlite3"
57    }
58
59    fn manifest(&self) -> &scythe_backend::manifest::BackendManifest {
60        &self.manifest
61    }
62
63    fn supported_engines(&self) -> &[&str] {
64        &["sqlite"]
65    }
66
67    fn file_header(&self) -> String {
68        "# frozen_string_literal: true\n\n# Auto-generated by scythe. Do not edit.\n\nmodule Queries"
69            .to_string()
70    }
71
72    fn file_footer(&self) -> String {
73        "end".to_string()
74    }
75
76    fn generate_row_struct(
77        &self,
78        query_name: &str,
79        columns: &[ResolvedColumn],
80    ) -> Result<String, ScytheError> {
81        let struct_name = row_struct_name(query_name, &self.manifest.naming);
82        let fields = columns
83            .iter()
84            .map(|c| format!(":{}", c.field_name))
85            .collect::<Vec<_>>()
86            .join(", ");
87        let mut out = String::new();
88        let _ = writeln!(out, "  {} = Data.define({})", struct_name, fields);
89        Ok(out)
90    }
91
92    fn generate_model_struct(
93        &self,
94        table_name: &str,
95        columns: &[ResolvedColumn],
96    ) -> Result<String, ScytheError> {
97        let name = to_pascal_case(table_name);
98        self.generate_row_struct(&name, columns)
99    }
100
101    fn generate_query_fn(
102        &self,
103        analyzed: &AnalyzedQuery,
104        struct_name: &str,
105        columns: &[ResolvedColumn],
106        params: &[ResolvedParam],
107    ) -> Result<String, ScytheError> {
108        let func_name = fn_name(&analyzed.name, &self.manifest.naming);
109        let sql = super::clean_sql(&analyzed.sql);
110        let mut out = String::new();
111
112        let param_list = params
113            .iter()
114            .map(|p| p.field_name.clone())
115            .collect::<Vec<_>>()
116            .join(", ");
117        let sep = if param_list.is_empty() { "" } else { ", " };
118
119        let _ = writeln!(out, "  def self.{}(db{}{})", func_name, sep, param_list);
120
121        let param_array = if params.is_empty() {
122            "[]".to_string()
123        } else {
124            format!(
125                "[{}]",
126                params
127                    .iter()
128                    .map(|p| p.field_name.clone())
129                    .collect::<Vec<_>>()
130                    .join(", ")
131            )
132        };
133
134        match &analyzed.command {
135            QueryCommand::One => {
136                let _ = writeln!(
137                    out,
138                    "    row = db.get_first_row(\"{}\", {})",
139                    sql, param_array
140                );
141                let _ = writeln!(out, "    return nil if row.nil?");
142
143                let fields = columns
144                    .iter()
145                    .enumerate()
146                    .map(|(i, c)| {
147                        let coercion = ruby_coercion(&c.neutral_type);
148                        if c.nullable {
149                            format!("{}: row[{}]&.then {{ |v| v{} }}", c.field_name, i, coercion)
150                        } else {
151                            format!("{}: row[{}]{}", c.field_name, i, coercion)
152                        }
153                    })
154                    .collect::<Vec<_>>()
155                    .join(", ");
156                let _ = writeln!(out, "    {}.new({})", struct_name, fields);
157            }
158            QueryCommand::Many | QueryCommand::Batch => {
159                let _ = writeln!(out, "    rows = db.execute(\"{}\", {})", sql, param_array);
160                let _ = writeln!(out, "    rows.map do |row|");
161                let fields = columns
162                    .iter()
163                    .enumerate()
164                    .map(|(i, c)| {
165                        let coercion = ruby_coercion(&c.neutral_type);
166                        if c.nullable {
167                            format!("{}: row[{}]&.then {{ |v| v{} }}", c.field_name, i, coercion)
168                        } else {
169                            format!("{}: row[{}]{}", c.field_name, i, coercion)
170                        }
171                    })
172                    .collect::<Vec<_>>()
173                    .join(", ");
174                let _ = writeln!(out, "      {}.new({})", struct_name, fields);
175                let _ = writeln!(out, "    end");
176            }
177            QueryCommand::Exec => {
178                let _ = writeln!(out, "    db.execute(\"{}\", {})", sql, param_array);
179                let _ = writeln!(out, "    nil");
180            }
181            QueryCommand::ExecResult | QueryCommand::ExecRows => {
182                let _ = writeln!(out, "    db.execute(\"{}\", {})", sql, param_array);
183                let _ = writeln!(out, "    db.changes");
184            }
185        }
186
187        let _ = write!(out, "  end");
188        Ok(out)
189    }
190
191    fn generate_enum_def(&self, enum_info: &EnumInfo) -> Result<String, ScytheError> {
192        let type_name = enum_type_name(&enum_info.sql_name, &self.manifest.naming);
193        let mut out = String::new();
194        let _ = writeln!(out, "  module {}", type_name);
195        for value in &enum_info.values {
196            let variant = enum_variant_name(value, &self.manifest.naming);
197            let _ = writeln!(out, "    {} = \"{}\"", variant, value);
198        }
199        let all_values = enum_info
200            .values
201            .iter()
202            .map(|v| enum_variant_name(v, &self.manifest.naming))
203            .collect::<Vec<_>>()
204            .join(", ");
205        let _ = writeln!(out, "    ALL = [{}].freeze", all_values);
206        let _ = write!(out, "  end");
207        Ok(out)
208    }
209
210    fn generate_composite_def(&self, composite: &CompositeInfo) -> Result<String, ScytheError> {
211        let name = to_pascal_case(&composite.sql_name);
212        let mut out = String::new();
213        if composite.fields.is_empty() {
214            let _ = writeln!(out, "  {} = Data.define()", name);
215        } else {
216            let fields = composite
217                .fields
218                .iter()
219                .map(|f| format!(":{}", f.name))
220                .collect::<Vec<_>>()
221                .join(", ");
222            let _ = writeln!(out, "  {} = Data.define({})", name, fields);
223        }
224        Ok(out)
225    }
226}