swamp_runtime/
lib.rs

1/*
2 * Copyright (c) Peter Bjorklund. All rights reserved. https://github.com/swamp/swamp
3 * Licensed under the MIT License. See LICENSE in the project root for license information.
4 */
5mod err_wrt;
6pub mod prelude;
7
8use seq_map::SeqMap;
9use source_map_cache::{FileId, KeepTrackOfSourceLine, SourceFileLineInfo, SourceMapLookup};
10use source_map_cache::{SourceMap, SourceMapWrapper};
11use std::env::current_dir;
12use std::fmt::Write as FmtWrite;
13use std::hash::{DefaultHasher, Hash, Hasher};
14use std::path::{Path, PathBuf};
15use swamp_analyzer::Program;
16use swamp_code_gen::{ConstantInfo, GenFunctionInfo};
17use swamp_code_gen_program::{code_gen_program, CodeGenOptions};
18pub use swamp_compile::CompileOptions;
19use swamp_dep_loader::{swamp_registry_path, RunMode};
20use swamp_semantic::{ConstantId, InternalFunctionDefinitionRef, InternalFunctionId};
21use swamp_std::pack::pack;
22use swamp_std::print::print_fn;
23use swamp_types::TypeRef;
24use swamp_vm::host::{HostArgs, HostFunctionCallback};
25use swamp_vm::memory::ExecutionMode;
26use swamp_vm::{TrapCode, Vm, VmSetup, VmState};
27use swamp_vm_debug_info::{DebugInfo, DebugInfoForPc};
28use swamp_vm_disasm::{disasm_color, display_lines};
29use swamp_vm_layout::LayoutCache;
30use swamp_vm_types::types::BasicTypeKind;
31use swamp_vm_types::{BinaryInstruction, InstructionPosition, InstructionRange};
32
33pub struct RunConstantsOptions {
34    pub stderr_adapter: Option<Box<dyn FmtWrite>>,
35}
36
37pub struct RunOptions<'a> {
38    //pub stderr_adapter: Option<Box<dyn FmtWrite>>,
39    pub debug_stats_enabled: bool,
40    pub debug_opcodes_enabled: bool,
41    pub debug_info: &'a DebugInfo,
42    pub source_map_wrapper: SourceMapWrapper<'a>,
43    pub debug_operations_enabled: bool,
44    pub max_count: usize, // dangerous
45    pub use_color: bool,
46    pub debug_memory_enabled: bool,
47}
48
49pub fn run_constants_in_order(
50    vm: &mut Vm,
51    constants_in_order: &SeqMap<ConstantId, ConstantInfo>,
52    host_function_callback: &mut dyn HostFunctionCallback,
53    options: &RunOptions,
54) {
55    vm.memory_mut().set_heap_directly_after_constant_area();
56    for (_key, constant) in constants_in_order {
57        // do not reset heap, all allocations from heap should remain (for now)
58        vm.reset_call_stack();
59
60        if constant.target_constant_memory.ty().is_scalar() {} else {
61            // set memory location into to r0
62            vm.registers[0] = constant.target_constant_memory.addr().0;
63        }
64
65        run_function_with_debug(vm, &constant.ip_range, host_function_callback, options);
66
67        if constant.target_constant_memory.ty().is_scalar() {
68            match constant.target_constant_memory.ty().kind {
69                BasicTypeKind::S32 | BasicTypeKind::Fixed32 | BasicTypeKind::U32 => {
70                    let heap_ptr = vm
71                        .memory_mut()
72                        .get_heap_ptr(constant.target_constant_memory.addr().0 as usize)
73                        .cast::<u32>();
74                    unsafe {
75                        *heap_ptr = vm.registers[0];
76                    }
77                }
78                BasicTypeKind::B8 | BasicTypeKind::U8 => {
79                    let heap_ptr = vm
80                        .memory_mut()
81                        .get_heap_ptr(constant.target_constant_memory.addr().0 as usize)
82                        .cast::<u8>();
83                    unsafe {
84                        *heap_ptr = vm.registers[0] as u8;
85                    }
86                }
87                _ => todo!(),
88            }
89        }
90
91        let return_layout = constant.target_constant_memory.ty();
92
93        assert_eq!(
94            constant.target_constant_memory.size(),
95            return_layout.total_size
96        );
97
98        // TODO: Bring this back
99        /*
100        if let Some(x) = &mut options.stderr_adapter {
101            swamp_vm_pretty_print::print_value(
102                x.as_mut(),
103                vm.frame_memory(),
104                vm.memory(),
105                StackMemoryAddress(0),
106                return_layout,
107                &constant.constant_ref.assigned_name,
108            )
109                .unwrap();
110        }
111
112         */
113    }
114
115    // We need to properly preserve string headers when incorporating heap into constant area
116    vm.memory_mut().incorporate_heap_into_constant_area();
117}
118
119// "/Users/peter/external/swamp_autobattler/scripts"
120#[must_use]
121pub fn crate_and_registry(path_to_swamp: &Path, run_mode: &RunMode) -> SourceMap {
122    let mut mounts = SeqMap::new();
123    //  let path_buf = Path::new(path_to_swamp).to_path_buf();
124    mounts
125        .insert("crate".to_string(), path_to_swamp.to_path_buf())
126        .unwrap();
127
128    if let Some(found_swamp_home) = swamp_registry_path(run_mode) {
129        mounts
130            .insert("registry".to_string(), found_swamp_home)
131            .unwrap();
132    }
133
134    SourceMap::new(&mounts).expect("source map failed")
135}
136
137pub struct CompileAndMaybeCodeGenResult {
138    pub compile: CompileResult,
139    pub codegen: Option<CodeGenResult>,
140}
141
142pub struct CompileResult {
143    pub program: Program,
144}
145
146pub struct CodeGenResult {
147    pub instructions: Vec<BinaryInstruction>,
148    pub constants_in_order: SeqMap<ConstantId, ConstantInfo>,
149    pub functions: SeqMap<InternalFunctionId, GenFunctionInfo>,
150    pub prepared_constant_memory: Vec<u8>,
151    pub layout_cache: LayoutCache,
152    pub debug_info: DebugInfo,
153}
154
155impl CodeGenResult {
156    #[must_use]
157    pub fn find_function(&self, formal_name: &str) -> Option<&GenFunctionInfo> {
158        self.functions
159            .values()
160            .find(|&func| func.internal_function_definition.assigned_name == formal_name)
161    }
162}
163
164pub fn compile_main_path(
165    source_map: &mut SourceMap,
166    root_module_path: &[String],
167    options: &CompileOptions,
168) -> Option<CompileResult> {
169    let program =
170        swamp_compile::bootstrap_and_compile(source_map, root_module_path, options).ok()?;
171
172    Some(CompileResult { program })
173}
174
175#[must_use]
176pub fn code_gen(
177    program: &Program,
178    source_map_wrapper: &SourceMapWrapper,
179    code_gen_options: &CodeGenOptions,
180) -> CodeGenResult {
181    let top_gen_state = code_gen_program(program, source_map_wrapper, code_gen_options);
182
183    let all_types = top_gen_state.codegen_state.layout_cache.clone();
184    let (instructions, constants_in_order, emit_function_infos, constant_memory, debug_info) =
185        top_gen_state.take_instructions_and_constants();
186
187    CodeGenResult {
188        debug_info,
189        instructions,
190        constants_in_order,
191        functions: emit_function_infos,
192        prepared_constant_memory: constant_memory,
193        layout_cache: all_types,
194    }
195}
196
197#[must_use]
198pub fn create_vm_with_standard_settings(
199    instructions: &[BinaryInstruction],
200    prepared_constant_memory: &[u8],
201) -> Vm {
202    let vm_setup = VmSetup {
203        stack_memory_size: 64 * 1024 * 1024, // 64 MiB
204        heap_memory_size: 512 * 1024,        // 512 KiB for transient heap allocation (strings)
205        constant_memory: prepared_constant_memory.to_vec(),
206        debug_opcodes_enabled: false,
207        debug_stats_enabled: false,
208        debug_operations_enabled: false,
209    };
210
211    Vm::new(instructions.to_vec(), vm_setup)
212}
213
214pub fn run_first_time(
215    vm: &mut Vm,
216    constants_in_order: &SeqMap<ConstantId, ConstantInfo>,
217    host_function_callback: &mut dyn HostFunctionCallback,
218    options: &RunOptions,
219) {
220    run_constants_in_order(vm, constants_in_order, host_function_callback, options);
221}
222
223pub fn run_as_fast_as_possible(
224    vm: &mut Vm,
225    function_to_run: &GenFunctionInfo,
226    host_function_callback: &mut dyn HostFunctionCallback,
227    run_options: RunOptions,
228) {
229    vm.reset_minimal_stack_and_fp();
230    vm.state = VmState::Normal;
231    vm.debug_opcodes_enabled = false;
232    vm.debug_operations_enabled = run_options.debug_operations_enabled;
233    vm.debug_stats_enabled = run_options.debug_stats_enabled;
234
235    vm.execute_from_ip(&function_to_run.ip_range.start, host_function_callback);
236    if matches!(vm.state, VmState::Trap(_) | VmState::Panic(_)) {
237        show_crash_info(vm, run_options.debug_info, &run_options.source_map_wrapper);
238    }
239}
240
241fn calculate_memory_checksum(memory: &[u8]) -> u64 {
242    let mut hasher = DefaultHasher::new();
243    memory.hash(&mut hasher);
244    hasher.finish()
245}
246
247pub fn run_function(
248    vm: &mut Vm,
249    ip_range: &InstructionRange,
250    host_function_callback: &mut dyn HostFunctionCallback,
251    run_options: &RunOptions,
252) {
253    vm.reset_minimal_stack_and_fp();
254
255    vm.state = VmState::Normal;
256
257    vm.execute_from_ip(&ip_range.start, host_function_callback);
258
259    if matches!(vm.state, VmState::Trap(_) | VmState::Panic(_)) {
260        show_crash_info(vm, run_options.debug_info, &run_options.source_map_wrapper);
261    }
262}
263
264pub fn show_call_stack(
265    vm: &Vm,
266    debug_info: &DebugInfo,
267    info: &DebugInfoForPc,
268    source_map_wrapper: &SourceMapWrapper,
269) {
270    // Show call stack
271    eprintln!("\nšŸ“ž Call stack:");
272
273    // Current function (where the crash occurred)
274    if info.meta.node.span.file_id != 0 {
275        let (line, _column) = source_map_wrapper.source_map.get_span_location_utf8(
276            info.meta.node.span.file_id,
277            info.meta.node.span.offset as usize,
278        );
279        let relative_path = source_map_wrapper
280            .source_map
281            .fetch_relative_filename(info.meta.node.span.file_id);
282
283        // Get the actual source line
284        if let Some(source_line) =
285            source_map_wrapper.get_source_line(info.meta.node.span.file_id as FileId, line)
286        {
287            eprintln!(
288                "  {}: {} {}",
289                tinter::bright_cyan("0"),
290                tinter::blue(&info.function_debug_info.name),
291                tinter::bright_black("(current)")
292            );
293            eprintln!(
294                "{:4} {} {}",
295                tinter::bright_black(&line.to_string()),
296                tinter::green("|"),
297                source_line.trim()
298            );
299            eprintln!(
300                "{} {}",
301                tinter::bright_black("->"),
302                tinter::cyan(&format!("{relative_path}:{line}"))
303            );
304        } else {
305            eprintln!(
306                "  {}: {} {}",
307                tinter::bright_cyan("0"),
308                tinter::blue(&info.function_debug_info.name),
309                tinter::bright_black("(current)")
310            );
311            eprintln!(
312                "{} {}",
313                tinter::bright_black("->"),
314                tinter::cyan(&format!("{relative_path}:{line}"))
315            );
316        }
317    } else {
318        eprintln!(
319            "  {}: {} {}",
320            tinter::bright_cyan("0"),
321            tinter::blue(&info.function_debug_info.name),
322            tinter::bright_black("(current)")
323        );
324    }
325
326    let call_stack = vm.call_stack();
327    for (i, frame) in call_stack.iter().enumerate().rev() {
328        let frame_pc = if frame.return_address > 0 {
329            frame.return_address - 1
330        } else {
331            frame.return_address
332        };
333
334        if let Some(frame_info) = debug_info.fetch(frame_pc) {
335            if frame_info.meta.node.span.file_id != 0 {
336                let (line, _column) = source_map_wrapper.source_map.get_span_location_utf8(
337                    frame_info.meta.node.span.file_id,
338                    frame_info.meta.node.span.offset as usize,
339                );
340                let relative_path = source_map_wrapper
341                    .source_map
342                    .fetch_relative_filename(frame_info.meta.node.span.file_id);
343
344                if let Some(source_line) = source_map_wrapper
345                    .get_source_line(frame_info.meta.node.span.file_id as FileId, line)
346                {
347                    eprintln!(
348                        "  {}: {}",
349                        tinter::bright_cyan(&(i + 1).to_string()),
350                        tinter::blue(&frame_info.function_debug_info.name)
351                    );
352                    eprintln!(
353                        "{:4} {} {}",
354                        tinter::bright_black(&line.to_string()),
355                        tinter::green("|"),
356                        source_line.trim()
357                    );
358                    eprintln!(
359                        "{} {}",
360                        tinter::bright_black("->"),
361                        tinter::cyan(&format!("{relative_path}:{line}"))
362                    );
363                } else {
364                    eprintln!(
365                        "  {}: {}",
366                        tinter::bright_cyan(&(i + 1).to_string()),
367                        tinter::blue(&frame_info.function_debug_info.name)
368                    );
369                    eprintln!(
370                        "{} {}",
371                        tinter::bright_black("->"),
372                        tinter::cyan(&format!("{relative_path}:{line}"))
373                    );
374                }
375            } else {
376                eprintln!(
377                    "  {}: {}",
378                    tinter::bright_cyan(&(i + 1).to_string()),
379                    tinter::blue(&frame_info.function_debug_info.name)
380                );
381            }
382        } else {
383            eprintln!(
384                "  {}: {} {}",
385                tinter::bright_cyan(&(i + 1).to_string()),
386                tinter::red("<unknown function>"),
387                tinter::bright_black(&format!("(pc: {frame_pc:04X})"))
388            );
389        }
390    }
391}
392
393pub fn show_crash_info(vm: &Vm, debug_info: &DebugInfo, source_map_wrapper: &SourceMapWrapper) {
394    let pc = vm.pc();
395
396    // PC has advanced past the instruction that caused the trap/panic, so look at pc - 1
397
398    let trap_pc = if pc > 0 { pc - 1 } else { pc };
399
400    if let Some(info) = debug_info.fetch(trap_pc) {
401        match &vm.state {
402            VmState::Trap(trap_code) => {
403                eprintln!("\n🚫 VM TRAP: {trap_code}");
404            }
405            VmState::Panic(message) => {
406                eprintln!("\nšŸ’„ VM PANIC: {message}");
407            }
408            _ => unreachable!(),
409        }
410
411        if info.meta.node.span.file_id != 0 {
412            let (line, column) = source_map_wrapper.source_map.get_span_location_utf8(
413                info.meta.node.span.file_id,
414                info.meta.node.span.offset as usize,
415            );
416
417            eprintln!("šŸ“ Source location:");
418            let mut string = String::new();
419            display_lines(
420                &mut string,
421                info.meta.node.span.file_id as FileId,
422                line.saturating_sub(2), // Show a couple lines before
423                line + 2,               // Show a couple lines after
424                source_map_wrapper,
425                true,
426            );
427            eprint!("{string}");
428
429            let relative_path = source_map_wrapper
430                .source_map
431                .fetch_relative_filename(info.meta.node.span.file_id);
432            eprintln!("   at {relative_path}:{line}:{column}");
433        }
434
435        // Also show the instruction that caused the trap/panic
436        let instruction = &vm.instructions()[trap_pc];
437        let disassembler_string = disasm_color(
438            instruction,
439            &info.function_debug_info.frame_memory,
440            &info.meta,
441            &InstructionPosition(trap_pc as u32),
442        );
443        eprintln!("šŸ’» Failing instruction: {trap_pc:04X}> {disassembler_string}");
444
445        show_call_stack(vm, debug_info, &info, source_map_wrapper);
446    }
447}
448
449pub fn run_function_with_debug(
450    vm: &mut Vm,
451    function_to_run: &InstructionRange,
452    host_function_callback: &mut dyn HostFunctionCallback,
453    run_options: &RunOptions,
454) {
455    vm.reset_minimal_stack_and_fp();
456    //vm.reset_debug();
457    vm.state = VmState::Normal;
458    vm.debug_opcodes_enabled = run_options.debug_opcodes_enabled;
459    vm.debug_operations_enabled = run_options.debug_operations_enabled;
460    vm.debug_stats_enabled = run_options.debug_stats_enabled;
461    vm.set_pc(&function_to_run.start);
462
463    let mut debug_count = 0;
464
465    let use_color = run_options.use_color;
466
467    let mut last_line_info = KeepTrackOfSourceLine::new();
468
469    let saved_fp = vm.memory().constant_memory_size;
470    let hash_before: u64 = if run_options.debug_memory_enabled {
471        calculate_memory_checksum(vm.all_memory_up_to(saved_fp))
472    } else {
473        0
474    };
475
476    while !vm.is_execution_complete() {
477        debug_count += 1;
478
479        if run_options.max_count != 0 && (debug_count >= run_options.max_count) {
480            if vm.state == VmState::Normal {
481                vm.internal_trap(TrapCode::StoppedByTestHarness);
482            }
483            break;
484        }
485
486        let pc = vm.pc();
487        #[cfg(feature = "debug_vm")]
488        if run_options.debug_opcodes_enabled {
489            let regs = [
490                0, 1, 2, 3, 4, 5, 6, 7, 8, 128, 129, 130, 131, 132, 133, 134, 135,
491            ];
492            if use_color {
493                print!(
494                    "{}",
495                    tinter::bright_black(&format!("fp:{:08X}, sp:{:08X} ", vm.fp(), vm.sp(), ))
496                );
497
498                for reg in regs {
499                    let reg_name = &format!("r{reg}");
500                    print!(
501                        "{}",
502                        tinter::bright_black(&format!("{reg_name:>3}:{:08X}, ", vm.registers[reg]))
503                    );
504                }
505                println!();
506            } else {
507                // TODO!: Use style instead
508                print!("{}", &format!("fp:{:08X}, sp:{:08X}, ", vm.fp(), vm.sp()));
509
510                for reg in regs {
511                    let reg_name = &format!("r{reg}");
512                    print!("{}", &format!("{reg_name:>3}:{:08X}, ", vm.registers[reg]));
513                }
514                println!();
515            }
516
517            let info = run_options.debug_info.fetch(pc).unwrap();
518
519            if info.meta.node.span.file_id != 0 {
520                let (line, column) = run_options
521                    .source_map_wrapper
522                    .source_map
523                    .get_span_location_utf8(
524                        info.meta.node.span.file_id,
525                        info.meta.node.span.offset as usize,
526                    );
527                let source_line_info = SourceFileLineInfo {
528                    row: line,
529                    file_id: info.meta.node.span.file_id as usize,
530                };
531
532                if let Some((start_row, end_row)) =
533                    last_line_info.check_if_new_line(&source_line_info)
534                {
535                    let mut string = String::new();
536                    display_lines(
537                        &mut string,
538                        source_line_info.file_id as FileId,
539                        start_row,
540                        end_row,
541                        &run_options.source_map_wrapper,
542                        true,
543                    );
544                    print!("{string}");
545                }
546            }
547
548            let instruction = &vm.instructions()[pc];
549            let string = disasm_color(
550                instruction,
551                &info.function_debug_info.frame_memory,
552                &info.meta,
553                &InstructionPosition(pc as u32),
554            );
555            println!("{pc:04X}> {string}");
556        }
557
558        vm.step(host_function_callback);
559
560        // Check if VM encountered a trap or panic and show source information
561        if matches!(vm.state, VmState::Trap(_) | VmState::Panic(_)) {
562            show_crash_info(vm, run_options.debug_info, &run_options.source_map_wrapper);
563        }
564
565        if run_options.debug_memory_enabled
566            && vm.memory().execution_mode != ExecutionMode::ConstantEvaluation
567        {
568            // During constant execution, of course the constant memory changes
569            let hash_after = calculate_memory_checksum(vm.all_memory_up_to(saved_fp));
570            //vm.state = VmState::Trap(TrapCode::VecBoundsFail);
571            assert!(
572                (hash_after == hash_before),
573                "INTERNAL ERROR: constant memory has been written to"
574            );
575        }
576    }
577}
578
579pub struct CompileAndCodeGenOptions {
580    pub compile_options: CompileOptions,
581    pub code_gen_options: CodeGenOptions,
582    pub skip_codegen: bool,
583    pub run_mode: RunMode,
584}
585
586#[must_use]
587pub fn compile_and_code_gen(
588    source_map: &mut SourceMap,
589    main_module_path: &[String],
590    options: &CompileAndCodeGenOptions,
591) -> Option<CompileAndMaybeCodeGenResult> {
592    let current_dir = PathBuf::from(Path::new(""));
593
594    let compile_result =
595        compile_main_path(source_map, main_module_path, &options.compile_options)?;
596
597    let source_map_wrapper = SourceMapWrapper {
598        source_map,
599        current_dir,
600    };
601
602    let maybe_code_gen_result =
603        if options.skip_codegen || !compile_result.program.state.errors().is_empty() {
604            None
605        } else {
606            let code_gen_result = code_gen(
607                &compile_result.program,
608                &source_map_wrapper,
609                &options.code_gen_options,
610            );
611            Some(code_gen_result)
612        };
613
614    Some(
615        CompileAndMaybeCodeGenResult {
616            compile: compile_result,
617            codegen: maybe_code_gen_result,
618        },
619    )
620}
621
622pub struct CompileCodeGenVmResult {
623    pub compile: CompileResult,
624    pub codegen: CodeGenAndVmResult,
625}
626
627pub enum CompileAndVmResult {
628    CompileOnly(CompileResult),
629    CompileAndVm(CompileCodeGenVmResult),
630}
631
632pub struct CodeGenAndVmResult {
633    pub vm: Vm,
634    pub code_gen_result: CodeGenResult,
635}
636
637pub struct StandardOnlyHostCallbacks {}
638
639impl HostFunctionCallback for StandardOnlyHostCallbacks {
640    fn dispatch_host_call(&mut self, args: HostArgs) {
641        match args.function_id {
642            1 => print_fn(args),
643            2 => pack(args),
644
645            _ => panic!("unknown external {}", args.function_id),
646        }
647    }
648}
649
650impl CompileCodeGenVmResult {
651    #[must_use]
652    pub fn get_internal_member_function(
653        &self,
654        ty: &TypeRef,
655        member_function_str: &str,
656    ) -> Option<&InternalFunctionDefinitionRef> {
657        self.compile
658            .program
659            .state
660            .associated_impls
661            .get_internal_member_function(ty, member_function_str)
662    }
663    #[must_use]
664    pub fn get_gen_internal_member_function(
665        &self,
666        ty: &TypeRef,
667        member_function_str: &str,
668    ) -> Option<&GenFunctionInfo> {
669        let x = self
670            .get_internal_member_function(ty, member_function_str)
671            .unwrap();
672
673        self.codegen
674            .code_gen_result
675            .functions
676            .get(&x.program_unique_id)
677    }
678}
679
680#[must_use]
681pub fn compile_codegen_and_create_vm_and_run_first_time(
682    source_map: &mut SourceMap,
683    root_module: &[String],
684    compile_and_code_gen_options: CompileAndCodeGenOptions,
685) -> Option<CompileAndVmResult> {
686    let result =
687        compile_codegen_and_create_vm(source_map, root_module, &compile_and_code_gen_options);
688    if let Some(mut first_result) = result {
689        if let CompileAndVmResult::CompileAndVm(found_result) = &mut first_result {
690            let mut callbacks = StandardOnlyHostCallbacks {};
691            let run_first_options = RunOptions {
692                debug_stats_enabled: false,
693                debug_opcodes_enabled: false,
694                debug_operations_enabled: false,
695                use_color: true,
696                max_count: 0,
697                debug_info: &found_result.codegen.code_gen_result.debug_info,
698                source_map_wrapper: SourceMapWrapper {
699                    source_map,
700                    current_dir: current_dir().unwrap(),
701                },
702                debug_memory_enabled: false,
703            };
704
705            run_first_time(
706                &mut found_result.codegen.vm,
707                &found_result.codegen.code_gen_result.constants_in_order,
708                &mut callbacks,
709                &run_first_options,
710            );
711            Some(first_result)
712        } else {
713            None
714        }
715    } else {
716        None
717    }
718}
719
720/// The root module is needed so it knows which mod that should be considered.
721#[must_use]
722pub fn compile_codegen_and_create_vm(
723    source_map: &mut SourceMap,
724    root_module: &[String],
725    compile_and_code_gen_options: &CompileAndCodeGenOptions,
726) -> Option<CompileAndVmResult> {
727    let compile_and_maybe_code_gen =
728        compile_and_code_gen(source_map, root_module, compile_and_code_gen_options)?;
729
730    if let Some(code_gen_result) = compile_and_maybe_code_gen.codegen {
731        let vm = create_vm_with_standard_settings(
732            &code_gen_result.instructions,
733            &code_gen_result.prepared_constant_memory,
734        );
735
736        let code_gen_and_vm = CodeGenAndVmResult {
737            vm,
738            code_gen_result,
739        };
740
741        Some(CompileAndVmResult::CompileAndVm(CompileCodeGenVmResult {
742            compile: compile_and_maybe_code_gen.compile,
743            codegen: code_gen_and_vm,
744        }))
745    } else {
746        Some(CompileAndVmResult::CompileOnly(
747            compile_and_maybe_code_gen.compile,
748        ))
749    }
750}