miden_debug_engine/exec/
diagnostic.rs1use alloc::{sync::Arc, vec::Vec};
2
3use miden_core::{Word, events::EventId, program::Program};
4use miden_processor::{
5 BaseHost, ExecutionError, ExecutionOptions, ExecutionOutput, FastProcessor, Felt,
6 FutureMaybeSend, Host, LoadedMastForest, ProcessorState, StackInputs,
7 advice::{AdviceInputs, AdviceMutation},
8 event::EventError,
9 trace::RowIndex,
10};
11
12struct DiagnosticHostWrapper<'a, H: Host> {
21 inner: &'a mut H,
22 call_depth: usize,
24 last_stack_state: Vec<Felt>,
26 last_cycle: RowIndex,
28}
29
30impl<'a, H: Host> DiagnosticHostWrapper<'a, H> {
31 fn new(inner: &'a mut H) -> Self {
32 Self {
33 inner,
34 call_depth: 0,
35 last_stack_state: Vec::new(),
36 last_cycle: RowIndex::from(0u32),
37 }
38 }
39
40 #[cfg(feature = "std")]
42 fn report_diagnostics(&self, err: &ExecutionError) {
43 eprintln!("\n=== Transaction Execution Failed ===");
44 eprintln!("Error: {err}");
45 eprintln!("Last known cycle: {}", self.last_cycle);
46 eprintln!("Call depth at failure: {}", self.call_depth);
47
48 if !self.last_stack_state.is_empty() {
49 let stack_display: Vec<_> =
50 self.last_stack_state.iter().take(16).map(|f| f.as_canonical_u64()).collect();
51 eprintln!("Last known stack state (top 16): {stack_display:?}");
52 }
53
54 eprintln!("====================================\n");
55 }
56
57 #[cfg(not(feature = "std"))]
58 fn report_diagnostics(&self, _err: &ExecutionError) {}
59
60 fn capture_state(&mut self, process: &ProcessorState<'_>) {
61 self.last_stack_state = process.get_stack_state();
62 self.last_cycle = process.clock();
63 }
64}
65
66impl<H: Host> BaseHost for DiagnosticHostWrapper<'_, H> {
67 fn get_label_and_source_file(
68 &self,
69 location: &miden_debug_types::Location,
70 ) -> (miden_debug_types::SourceSpan, Option<Arc<miden_debug_types::SourceFile>>) {
71 self.inner.get_label_and_source_file(location)
72 }
73
74 fn resolve_event(
75 &self,
76 event_id: miden_core::events::EventId,
77 ) -> Option<&miden_core::events::EventName> {
78 self.inner.resolve_event(event_id)
79 }
80}
81
82impl<H: Host> Host for DiagnosticHostWrapper<'_, H> {
83 fn get_mast_forest(
84 &self,
85 node_digest: &Word,
86 ) -> impl FutureMaybeSend<Option<LoadedMastForest>> {
87 self.inner.get_mast_forest(node_digest)
88 }
89
90 fn on_event(
91 &mut self,
92 process: &ProcessorState<'_>,
93 ) -> impl FutureMaybeSend<Result<Vec<AdviceMutation>, EventError>> {
94 self.capture_state(process);
95 let event_id = EventId::from_felt(process.get_stack_item(0));
96 match crate::Event::from(event_id) {
97 crate::Event::FrameStart => self.call_depth += 1,
98 crate::Event::FrameEnd => self.call_depth = self.call_depth.saturating_sub(1),
99 _ => (),
100 }
101 self.inner.on_event(process)
102 }
103}
104
105pub struct DiagnosticExecutor {
130 stack_inputs: StackInputs,
131 advice_inputs: AdviceInputs,
132 options: ExecutionOptions,
133}
134
135impl DiagnosticExecutor {
136 pub fn new(
137 stack_inputs: StackInputs,
138 advice_inputs: AdviceInputs,
139 options: ExecutionOptions,
140 ) -> Self {
141 DiagnosticExecutor {
142 stack_inputs,
143 advice_inputs,
144 options,
145 }
146 }
147
148 pub fn execute_async<H: Host + Send>(
149 self,
150 program: &Program,
151 host: &mut H,
152 ) -> impl FutureMaybeSend<Result<ExecutionOutput, ExecutionError>> {
153 async move {
154 let processor = FastProcessor::new_with_options(
156 self.stack_inputs,
157 self.advice_inputs,
158 self.options,
159 )
160 .expect("advice inputs should fit advice map limits");
161
162 let mut wrapper = DiagnosticHostWrapper::new(host);
163
164 match processor.execute(program, &mut wrapper).await {
165 Ok(output) => Ok(output),
166 Err(err) => {
167 wrapper.report_diagnostics(&err);
168 Err(err)
169 }
170 }
171 }
172 }
173}