1use super::FnVariant;
2use crate::JITRunTime;
3use crate::memory::{alloc_dynamic, alloc_struct_bytes};
4use anyhow::Result;
5use cranelift::prelude::AbiParam;
6use cranelift_module::{Linkage, Module};
7use dynamic::{Dynamic, Type};
8use parser::{BinaryOp, Expr, ExprKind, Span};
9use rand::RngExt;
10use std::sync::{Mutex, Weak};
11
12extern "C" fn any_clone(addr: *const Dynamic) -> *const Dynamic {
13 unsafe {
15 let cloned_value = (*addr).deep_clone();
16 alloc_dynamic(cloned_value)
17 }
18}
19
20extern "C" fn any_null() -> *const Dynamic {
21 alloc_dynamic(Dynamic::Null)
23}
24
25extern "C" fn print(addr: *const Dynamic) {
26 if !addr.is_null() {
27 unsafe {
28 println!("{}", (*addr).to_string());
29 }
30 }
31}
32
33extern "C" fn any_is_map(addr: *const Dynamic) -> bool {
34 !addr.is_null() && unsafe { (*addr).is_map() }
35}
36
37extern "C" fn any_is_list(addr: *const Dynamic) -> bool {
38 !addr.is_null() && unsafe { (*addr).is_list() }
39}
40
41extern "C" fn random(start: *const Dynamic, stop: *const Dynamic) -> *const Dynamic {
42 if !start.is_null() && !stop.is_null() {
43 let mut rng = rand::rng();
44 unsafe {
45 if (&*start).is_int() {
46 let start = (*start).as_int().unwrap_or(0);
47 let stop = (*stop).as_int().unwrap_or(100);
48 return alloc_dynamic(Dynamic::I64(rng.random_range(start..stop)));
49 } else if (&*start).is_f32() || (&*start).is_f64() {
50 let start = (*start).as_float().unwrap_or(0.0);
51 let stop = (*stop).as_float().unwrap_or(1.0);
52 return alloc_dynamic(Dynamic::F64(rng.random_range(start..stop)));
53 }
54 }
55 }
56 alloc_dynamic(Dynamic::Null)
57}
58
59extern "C" fn uuid() -> *const Dynamic {
60 alloc_dynamic(uuid::Uuid::new_v4().to_string().into())
61}
62
63pub(crate) extern "C" fn struct_alloc(size: i64) -> *mut u8 {
64 let size = size.max(0) as usize;
65 let ptr = alloc_struct_bytes(size);
66 unsafe {
67 std::ptr::write_bytes(ptr, 0, size);
68 }
69 ptr
70}
71
72pub(crate) extern "C" fn struct_from_ptr(addr: i64, ty: i64) -> *const Dynamic {
73 let ty = unsafe { (&*(ty as *const Type)).clone() };
74 alloc_dynamic(Dynamic::Struct { addr: addr as usize, ty })
75}
76
77pub(crate) extern "C" fn import_with_vm(context: *const Weak<Mutex<JITRunTime>>, addr: *const Dynamic, path: *const Dynamic) -> bool {
78 if addr.is_null() || path.is_null() {
79 return false;
80 }
81 super::with_vm_context(context, |vm| vm.import(unsafe { &*addr }.as_str(), unsafe { &*path }.as_str())).map_err(|e| println!("import {:?}", e)).is_ok()
82}
83
84extern "C" fn any_len(addr: *const Dynamic) -> i64 {
85 if addr.is_null() { 0 } else { unsafe { (&*addr).len() as i64 } }
86}
87
88extern "C" fn any_keys(addr: *const Dynamic) -> *const Dynamic {
89 if addr.is_null() {
90 return alloc_dynamic(Dynamic::list(Vec::new()));
91 }
92 let keys = match unsafe { &*addr } {
93 Dynamic::Map(map) => map.read().unwrap().keys().map(|key| Dynamic::from(key.as_str())).collect(),
94 _ => Vec::new(),
95 };
96 alloc_dynamic(Dynamic::list(keys))
97}
98
99extern "C" fn any_iter(addr: *const Dynamic) -> *const Dynamic {
100 if addr.is_null() { any_null() } else { alloc_dynamic(unsafe { (*addr).clone().into_iter() }) }
101}
102
103extern "C" fn any_next(addr: *mut Dynamic) -> *const Dynamic {
104 alloc_dynamic(unsafe { (*addr).next().unwrap_or(Dynamic::Null) })
105}
106
107extern "C" fn any_push(addr: *mut Dynamic, value: *mut Dynamic) {
108 if !addr.is_null() && !value.is_null() {
109 unsafe {
110 (&mut *addr).push((&*value).clone());
111 }
112 }
113}
114
115extern "C" fn any_pop(addr: *mut Dynamic) -> *const Dynamic {
116 if addr.is_null() { any_null() } else { alloc_dynamic(unsafe { (*addr).pop().unwrap_or(Dynamic::Null) }) }
117}
118
119extern "C" fn get_key(addr: *const Dynamic, key: *const Dynamic) -> *const Dynamic {
120 if addr.is_null() || key.is_null() {
121 any_null()
122 } else {
123 let key: &str = unsafe { &*key }.as_str();
124 alloc_dynamic(unsafe { (*addr).get_dynamic(key).unwrap_or(Dynamic::Null) })
125 }
126}
127
128extern "C" fn del_key(addr: *const Dynamic, key: *const Dynamic) -> *const Dynamic {
129 if addr.is_null() || key.is_null() {
130 any_null()
131 } else {
132 let key: &str = unsafe { &*key }.as_str();
133 alloc_dynamic(unsafe { (*addr).remove_dynamic(key).unwrap_or(Dynamic::Null) })
134 }
135}
136
137extern "C" fn contains(addr: *const Dynamic, key: *const Dynamic) -> bool {
138 if addr.is_null() || key.is_null() {
139 false
140 } else {
141 let key: &str = unsafe { &*key }.as_str();
142 unsafe { (*addr).contains(key) }
143 }
144}
145
146extern "C" fn starts_with(addr: *const Dynamic, prefix: *const Dynamic) -> bool {
147 if addr.is_null() || prefix.is_null() {
148 false
149 } else {
150 let prefix: &str = unsafe { &*prefix }.as_str();
151 unsafe { (*addr).starts_with(prefix) }
152 }
153}
154
155extern "C" fn get_idx(addr: *const Dynamic, idx: i64) -> *const Dynamic {
156 if addr.is_null() { any_null() } else { alloc_dynamic(unsafe { (*addr).get_idx(idx as usize).unwrap_or(Dynamic::Null) }) }
157}
158
159extern "C" fn slice(addr: *const Dynamic, start: i64, stop: *const Dynamic, inclusive: bool) -> *const Dynamic {
160 if addr.is_null() {
161 return any_null();
162 }
163
164 let value = unsafe { &*addr };
165 let len = value.len() as i64;
166 let start = start.clamp(0, len) as usize;
167 let mut stop = if stop.is_null() {
168 len
169 } else {
170 let raw = unsafe { &*stop };
171 if raw.is_null() { len } else { raw.as_int().unwrap_or(len) }
172 };
173 if inclusive && stop < len {
174 stop += 1;
175 }
176 let stop = stop.clamp(start as i64, len) as usize;
177
178 let sliced = match value {
179 Dynamic::String(text) => Dynamic::from(text.chars().skip(start).take(stop.saturating_sub(start)).collect::<String>()),
180 Dynamic::List(list) => Dynamic::list(list.read().unwrap()[start..stop].to_vec()),
181 _ => Dynamic::Null,
182 };
183 alloc_dynamic(sliced)
184}
185
186extern "C" fn set_key(addr: *mut Dynamic, key: *const Dynamic, value: *const Dynamic) {
187 if addr.is_null() || key.is_null() {
188 return;
189 }
190 let key: &str = unsafe { &*key }.as_str();
191 unsafe { (&mut *addr).set_dynamic(key.into(), (&*value).clone()) }
192}
193
194extern "C" fn set_idx(addr: *mut Dynamic, idx: i64, value: *const Dynamic) {
195 if addr.is_null() {
196 return;
197 }
198 unsafe { (&mut *addr).set_idx(idx as usize, (&*value).clone()) }
199}
200
201extern "C" fn any_from_i64(v: i64) -> *const Dynamic {
202 alloc_dynamic(Dynamic::I64(v))
203}
204
205extern "C" fn any_from_bool(v: bool) -> *const Dynamic {
206 alloc_dynamic(Dynamic::Bool(v))
207}
208
209extern "C" fn any_to_i64(addr: *const Dynamic) -> i64 {
210 if addr.is_null() {
211 return 0;
212 }
213 unsafe { (&*addr).as_int().unwrap_or(0) }
214}
215
216extern "C" fn any_to_bool(addr: *const Dynamic) -> bool {
217 if addr.is_null() {
218 return false;
219 }
220 unsafe {
221 let value = &*addr;
222 if let Some(v) = value.as_bool() {
223 v
224 } else if let Some(v) = value.as_int() {
225 v != 0
226 } else if let Some(v) = value.as_float() {
227 v != 0.0
228 } else {
229 !value.is_null()
230 }
231 }
232}
233
234extern "C" fn any_from_f64(v: f64) -> *const Dynamic {
235 alloc_dynamic(Dynamic::F64(v))
236}
237
238extern "C" fn any_split(addr: *mut Dynamic, s: *const Dynamic) -> *const Dynamic {
239 if addr.is_null() || s.is_null() {
240 return any_null();
241 }
242 let s: &str = unsafe { &*s }.as_str();
243 alloc_dynamic(unsafe { (&*addr).clone() }.split(s))
244}
245
246extern "C" fn any_to_f64(addr: *const Dynamic) -> f64 {
247 if addr.is_null() {
248 return 0.0;
249 }
250 unsafe { (&*addr).as_float().unwrap_or(0.0) }
251}
252
253extern "C" fn any_to_string(addr: *const Dynamic) -> *const Dynamic {
254 if addr.is_null() {
255 return alloc_dynamic(Dynamic::from(""));
256 }
257 alloc_dynamic(Dynamic::from(unsafe { &*addr }.to_string()))
258}
259
260extern "C" fn any_binary(left: *const Dynamic, op: i32, right: *const Dynamic) -> *const Dynamic {
261 if left.is_null() {
262 if right.is_null() {
263 return any_null();
264 }
265 return alloc_dynamic(unsafe { (&*right).clone() });
266 }
267 if right.is_null() {
268 return alloc_dynamic(unsafe { (&*left).clone() });
269 }
270 let op = BinaryOp::try_from(op).unwrap();
271 unsafe {
272 let expr = Expr::new(
273 ExprKind::Binary { left: Box::new(Expr::new(ExprKind::Value((&*left).clone()), Span::default())), op, right: Box::new(Expr::new(ExprKind::Value((&*right).clone()), Span::default())) },
274 Span::default(),
275 );
276 alloc_dynamic(expr.compact().unwrap_or(Dynamic::Null))
277 }
278}
279
280extern "C" fn any_logic(left: *const Dynamic, op: i32, right: *const Dynamic) -> i32 {
281 let op = BinaryOp::try_from(op).unwrap();
282 unsafe {
283 let expr = Expr::new(
284 ExprKind::Binary { left: Box::new(Expr::new(ExprKind::Value((&*left).clone()), Span::default())), op, right: Box::new(Expr::new(ExprKind::Value((&*right).clone()), Span::default())) },
285 Span::default(),
286 );
287 if expr.compact().and_then(|r| r.as_bool()).unwrap_or(false) { 1 } else { 0 }
288 }
289}
290
291pub const STD: [(&str, &[Type], Type, *const u8); 3] =
292 [("print", &[Type::Any], Type::Void, print as *const u8), ("uuid", &[], Type::Any, uuid as *const u8), ("rand", &[Type::Any, Type::Any], Type::Any, random as *const u8)];
293
294pub const ANY: [(&str, &[Type], Type, *const u8); 28] = [
295 ("Any::null", &[], Type::Any, any_null as *const u8),
296 ("Any::is_map", &[Type::Any], Type::Bool, any_is_map as *const u8),
297 ("Any::is_list", &[Type::Any], Type::Bool, any_is_list as *const u8),
298 ("Any::clone", &[Type::Any], Type::Any, any_clone as *const u8),
299 ("Any::len", &[Type::Any], Type::I32, any_len as *const u8),
300 ("Any::keys", &[Type::Any], Type::Any, any_keys as *const u8),
301 ("Any::split", &[Type::Any, Type::Any], Type::Any, any_split as *const u8),
302 ("Any::push", &[Type::Any, Type::Any], Type::Void, any_push as *const u8),
303 ("Any::pop", &[Type::Any], Type::Any, any_pop as *const u8),
304 ("Any::get_idx", &[Type::Any, Type::I64], Type::Any, get_idx as *const u8),
305 ("Any::slice", &[Type::Any, Type::I64, Type::Any, Type::Bool], Type::Any, slice as *const u8),
306 ("Any::contains", &[Type::Any, Type::Any], Type::Bool, contains as *const u8),
307 ("Any::starts_with", &[Type::Any, Type::Any], Type::Bool, starts_with as *const u8),
308 ("Any::get_key", &[Type::Any, Type::Any], Type::Any, get_key as *const u8),
309 ("Any::del_key", &[Type::Any, Type::Any], Type::Any, del_key as *const u8),
310 ("Any::set_idx", &[Type::Any, Type::I64, Type::Any], Type::Void, set_idx as *const u8),
311 ("Any::set_key", &[Type::Any, Type::Any, Type::Any], Type::Void, set_key as *const u8),
312 ("Any::from_i64", &[Type::I64], Type::Any, any_from_i64 as *const u8),
313 ("Any::from_bool", &[Type::Bool], Type::Any, any_from_bool as *const u8),
314 ("Any::to_i64", &[Type::Any], Type::I64, any_to_i64 as *const u8),
315 ("Any::to_bool", &[Type::Any], Type::Bool, any_to_bool as *const u8),
316 ("Any::from_f64", &[Type::F64], Type::Any, any_from_f64 as *const u8),
317 ("Any::to_f64", &[Type::Any], Type::F64, any_to_f64 as *const u8),
318 ("Any::to_string", &[Type::Any], Type::Str, any_to_string as *const u8),
319 ("Any::binary", &[Type::Any, Type::I32, Type::Any], Type::Any, any_binary as *const u8),
320 ("Any::logic", &[Type::Any, Type::I32, Type::Any], Type::Bool, any_logic as *const u8),
321 ("Any::iter", &[Type::Any], Type::Any, any_iter as *const u8),
322 ("Any::next", &[Type::Any], Type::Any, any_next as *const u8),
323];
324
325use std::rc::Rc;
326impl JITRunTime {
327 pub fn add_native_ptr(&mut self, full_name: &str, name: &str, arg_tys: &[Type], ret_ty: Type, fn_ptr: *const u8) -> Result<u32> {
328 self.native_symbols.write().unwrap().insert(full_name.to_string(), fn_ptr as usize);
329 self.add_native(full_name, name, arg_tys, ret_ty)
330 }
331
332 pub(crate) fn add_context_native_ptr(&mut self, full_name: &str, name: &str, arg_tys: &[Type], ret_ty: Type, fn_ptr: *const u8) -> Result<u32> {
333 self.native_symbols.write().unwrap().insert(full_name.to_string(), fn_ptr as usize);
334 self.add_context_native(full_name, name, arg_tys, ret_ty)
335 }
336
337 pub fn add_native(&mut self, full_name: &str, name: &str, arg_tys: &[Type], ret_ty: Type) -> Result<u32> {
338 let fn_ty = Type::Fn { tys: arg_tys.to_vec(), ret: Rc::new(ret_ty.clone()) };
339 let id = self.compiler.add_symbol(name, compiler::Symbol::Native(fn_ty.clone()));
340 let sig = self.get_sig(arg_tys, ret_ty)?;
341 let fn_id = self.module.declare_function(full_name, Linkage::Import, &sig)?;
342 self.fns.insert(id, FnVariant::Native { ty: fn_ty, fn_id, context: None });
343 Ok(id)
344 }
345
346 pub(crate) fn add_context_native(&mut self, full_name: &str, name: &str, arg_tys: &[Type], ret_ty: Type) -> Result<u32> {
347 let fn_ty = Type::Fn { tys: arg_tys.to_vec(), ret: Rc::new(ret_ty.clone()) };
348 let id = self.compiler.add_symbol(name, compiler::Symbol::Native(fn_ty.clone()));
349 let mut sig = self.module.make_signature();
350 sig.params.push(AbiParam::new(crate::ptr_type()));
351 for arg in arg_tys.iter() {
352 sig.params.push(AbiParam::new(crate::get_type(arg)?));
353 }
354 if !ret_ty.is_void() {
355 sig.returns.push(AbiParam::new(crate::get_type(&ret_ty)?));
356 }
357 let fn_id = self.module.declare_function(full_name, Linkage::Import, &sig)?;
358 self.fns.insert(id, FnVariant::Native { ty: fn_ty, fn_id, context: Some(self.owner_context_ptr()) });
359 Ok(id)
360 }
361}