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ArkScript-lang / Ark / 20663874221

02 Jan 2026 06:15PM UTC coverage: 92.735% (-0.009%) from 92.744%
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feat(repl): add repl:load to load code from a file in the repl

8489 of 9154 relevant lines covered (92.74%)

281230.8 hits per line

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91.86
/src/arkreactor/VM/VM.cpp
1
#include <Ark/VM/VM.hpp>
2

3
#include <utility>
4
#include <numeric>
5
#include <fmt/core.h>
6
#include <fmt/color.h>
7
#include <fmt/ostream.h>
8

9
#include <Ark/Utils/Files.hpp>
10
#include <Ark/Utils/Utils.hpp>
11
#include <Ark/Error/Diagnostics.hpp>
12
#include <Ark/TypeChecker.hpp>
13
#include <Ark/VM/ModuleMapping.hpp>
14
#include <Ark/Compiler/Instructions.hpp>
15

16
namespace Ark
17
{
18
    using namespace internal;
19

20
    namespace helper
21
    {
22
        inline Value tail(Value* a)
348✔
23
        {
348✔
24
            if (a->valueType() == ValueType::List)
348✔
25
            {
26
                if (a->constList().size() < 2)
80✔
27
                    return Value(ValueType::List);
21✔
28

29
                std::vector<Value> tmp(a->constList().size() - 1);
59✔
30
                for (std::size_t i = 1, end = a->constList().size(); i < end; ++i)
348✔
31
                    tmp[i - 1] = a->constList()[i];
289✔
32
                return Value(std::move(tmp));
59✔
33
            }
60✔
34
            if (a->valueType() == ValueType::String)
268✔
35
            {
36
                if (a->string().size() < 2)
267✔
37
                    return Value(ValueType::String);
50✔
38

39
                Value b { *a };
217✔
40
                b.stringRef().erase(b.stringRef().begin());
217✔
41
                return b;
217✔
42
            }
217✔
43

44
            throw types::TypeCheckingError(
2✔
45
                "tail",
1✔
46
                { { types::Contract { { types::Typedef("value", ValueType::List) } },
2✔
47
                    types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
48
                { *a });
1✔
49
        }
348✔
50

51
        inline Value head(Value* a)
1,172✔
52
        {
1,172✔
53
            if (a->valueType() == ValueType::List)
1,172✔
54
            {
55
                if (a->constList().empty())
903✔
56
                    return Builtins::nil;
1✔
57
                return a->constList()[0];
902✔
58
            }
59
            if (a->valueType() == ValueType::String)
269✔
60
            {
61
                if (a->string().empty())
268✔
62
                    return Value(ValueType::String);
1✔
63
                return Value(std::string(1, a->stringRef()[0]));
268✔
64
            }
65

66
            throw types::TypeCheckingError(
2✔
67
                "head",
1✔
68
                { { types::Contract { { types::Typedef("value", ValueType::List) } },
2✔
69
                    types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
70
                { *a });
1✔
71
        }
1,172✔
72

73
        inline Value at(Value& container, Value& index, VM& vm)
17,479✔
74
        {
17,479✔
75
            if (index.valueType() != ValueType::Number)
17,479✔
76
                throw types::TypeCheckingError(
5✔
77
                    "@",
1✔
78
                    { { types::Contract { { types::Typedef("src", ValueType::List), types::Typedef("idx", ValueType::Number) } },
2✔
79
                        types::Contract { { types::Typedef("src", ValueType::String), types::Typedef("idx", ValueType::Number) } } } },
1✔
80
                    { container, index });
1✔
81

82
            const auto num = static_cast<long>(index.number());
17,478✔
83

84
            if (container.valueType() == ValueType::List)
17,478✔
85
            {
86
                const auto i = static_cast<std::size_t>(num < 0 ? static_cast<long>(container.list().size()) + num : num);
8,332✔
87
                if (i < container.list().size())
8,332✔
88
                    return container.list()[i];
8,331✔
89
                else
90
                    VM::throwVMError(
1✔
91
                        ErrorKind::Index,
92
                        fmt::format("{} out of range {} (length {})", num, container.toString(vm), container.list().size()));
1✔
93
            }
8,332✔
94
            else if (container.valueType() == ValueType::String)
9,146✔
95
            {
96
                const auto i = static_cast<std::size_t>(num < 0 ? static_cast<long>(container.string().size()) + num : num);
9,145✔
97
                if (i < container.string().size())
9,145✔
98
                    return Value(std::string(1, container.string()[i]));
9,144✔
99
                else
100
                    VM::throwVMError(
1✔
101
                        ErrorKind::Index,
102
                        fmt::format("{} out of range \"{}\" (length {})", num, container.string(), container.string().size()));
1✔
103
            }
9,145✔
104
            else
105
                throw types::TypeCheckingError(
2✔
106
                    "@",
1✔
107
                    { { types::Contract { { types::Typedef("src", ValueType::List), types::Typedef("idx", ValueType::Number) } },
2✔
108
                        types::Contract { { types::Typedef("src", ValueType::String), types::Typedef("idx", ValueType::Number) } } } },
1✔
109
                    { container, index });
1✔
110
        }
17,482✔
111

112
        inline double doMath(double a, double b, const Instruction op)
2,250✔
113
        {
2,250✔
114
            if (op == ADD)
2,250✔
115
                a += b;
72✔
116
            else if (op == SUB)
2,178✔
117
                a -= b;
41✔
118
            else if (op == MUL)
2,137✔
119
                a *= b;
1,127✔
120
            else if (op == DIV)
1,010✔
121
            {
122
                if (b == 0)
1,010✔
123
                    Ark::VM::throwVMError(ErrorKind::DivisionByZero, fmt::format("Can not compute expression (/ {} {})", a, b));
1✔
124
                a /= b;
1,009✔
125
            }
1,009✔
126

127
            return a;
2,249✔
128
        }
1✔
129

130
        inline std::string mathInstToStr(const Instruction op)
4✔
131
        {
4✔
132
            if (op == ADD)
4✔
133
                return "+";
1✔
134
            if (op == SUB)
3✔
135
                return "-";
1✔
136
            if (op == MUL)
2✔
137
                return "*";
1✔
138
            if (op == DIV)
1✔
139
                return "/";
1✔
140
            return "???";
×
141
        }
4✔
142
    }
143

144
    VM::VM(State& state) noexcept :
654✔
145
        m_state(state), m_exit_code(0), m_running(false)
218✔
146
    {
218✔
147
        m_execution_contexts.emplace_back(std::make_unique<ExecutionContext>());
218✔
148
    }
218✔
149

150
    void VM::init() noexcept
212✔
151
    {
212✔
152
        ExecutionContext& context = *m_execution_contexts.back();
212✔
153
        for (const auto& c : m_execution_contexts)
424✔
154
        {
155
            c->ip = 0;
212✔
156
            c->pp = 0;
212✔
157
            c->sp = 0;
212✔
158
        }
212✔
159

160
        context.sp = 0;
212✔
161
        context.fc = 1;
212✔
162

163
        m_shared_lib_objects.clear();
212✔
164
        context.stacked_closure_scopes.clear();
212✔
165
        context.stacked_closure_scopes.emplace_back(nullptr);
212✔
166

167
        context.saved_scope.reset();
212✔
168
        m_exit_code = 0;
212✔
169

170
        context.locals.clear();
212✔
171
        context.locals.reserve(128);
212✔
172
        context.locals.emplace_back(context.scopes_storage.data(), 0);
212✔
173

174
        // loading bound stuff
175
        // put them in the global frame if we can, aka the first one
176
        for (const auto& [sym_id, value] : m_state.m_binded)
662✔
177
        {
178
            auto it = std::ranges::find(m_state.m_symbols, sym_id);
432✔
179
            if (it != m_state.m_symbols.end())
432✔
180
                context.locals[0].pushBack(static_cast<uint16_t>(std::distance(m_state.m_symbols.begin(), it)), value);
236✔
181
        }
432✔
182
    }
212✔
183

184
    Value VM::getField(Value* closure, const uint16_t id, const ExecutionContext& context)
3,801✔
185
    {
3,801✔
186
        if (closure->valueType() != ValueType::Closure)
3,801✔
187
        {
188
            if (context.last_symbol < m_state.m_symbols.size()) [[likely]]
1✔
189
                throwVMError(
2✔
190
                    ErrorKind::Type,
191
                    fmt::format(
3✔
192
                        "`{}' is a {}, not a Closure, can not get the field `{}' from it",
1✔
193
                        m_state.m_symbols[context.last_symbol],
1✔
194
                        std::to_string(closure->valueType()),
1✔
195
                        m_state.m_symbols[id]));
1✔
196
            else
197
                throwVMError(ErrorKind::Type,
×
198
                             fmt::format(
×
199
                                 "{} is not a Closure, can not get the field `{}' from it",
×
200
                                 std::to_string(closure->valueType()),
×
201
                                 m_state.m_symbols[id]));
×
202
        }
203

204
        if (Value* field = closure->refClosure().refScope()[id]; field != nullptr)
7,600✔
205
        {
206
            // check for CALL instruction (the instruction because context.ip is already on the next instruction word)
207
            if (m_state.inst(context.pp, context.ip) == CALL)
3,799✔
208
                return Value(Closure(closure->refClosure().scopePtr(), field->pageAddr()));
2,134✔
209
            else
210
                return *field;
1,665✔
211
        }
212
        else
213
        {
214
            if (!closure->refClosure().hasFieldEndingWith(m_state.m_symbols[id], *this))
1✔
215
                throwVMError(
1✔
216
                    ErrorKind::Scope,
217
                    fmt::format(
2✔
218
                        "`{0}' isn't in the closure environment: {1}",
1✔
219
                        m_state.m_symbols[id],
1✔
220
                        closure->refClosure().toString(*this)));
1✔
221
            throwVMError(
×
222
                ErrorKind::Scope,
223
                fmt::format(
×
224
                    "`{0}' isn't in the closure environment: {1}. A variable in the package might have the same name as '{0}', "
×
225
                    "and name resolution tried to fully qualify it. Rename either the variable or the capture to solve this",
226
                    m_state.m_symbols[id],
×
227
                    closure->refClosure().toString(*this)));
×
228
        }
229
    }
3,801✔
230

231
    Value VM::createList(const std::size_t count, internal::ExecutionContext& context)
1,823✔
232
    {
1,823✔
233
        Value l(ValueType::List);
1,823✔
234
        if (count != 0)
1,823✔
235
            l.list().reserve(count);
723✔
236

237
        for (std::size_t i = 0; i < count; ++i)
3,692✔
238
            l.push_back(*popAndResolveAsPtr(context));
1,869✔
239

240
        return l;
1,823✔
241
    }
1,823✔
242

243
    void VM::listAppendInPlace(Value* list, const std::size_t count, ExecutionContext& context)
1,936✔
244
    {
1,936✔
245
        if (list->valueType() != ValueType::List)
1,936✔
246
        {
247
            std::vector<Value> args = { *list };
1✔
248
            for (std::size_t i = 0; i < count; ++i)
2✔
249
                args.push_back(*popAndResolveAsPtr(context));
1✔
250
            throw types::TypeCheckingError(
2✔
251
                "append!",
1✔
252
                { { types::Contract { { types::Typedef("list", ValueType::List), types::Typedef("value", ValueType::Any, /* is_variadic= */ true) } } } },
1✔
253
                args);
254
        }
1✔
255

256
        for (std::size_t i = 0; i < count; ++i)
3,870✔
257
            list->push_back(*popAndResolveAsPtr(context));
1,935✔
258
    }
1,936✔
259

260
    Value& VM::operator[](const std::string& name) noexcept
38✔
261
    {
38✔
262
        // find id of object
263
        const auto it = std::ranges::find(m_state.m_symbols, name);
38✔
264
        if (it == m_state.m_symbols.end())
38✔
265
        {
266
            m_no_value = Builtins::nil;
3✔
267
            return m_no_value;
3✔
268
        }
269

270
        const auto dist = std::distance(m_state.m_symbols.begin(), it);
35✔
271
        if (std::cmp_less(dist, MaxValue16Bits))
35✔
272
        {
273
            ExecutionContext& context = *m_execution_contexts.front();
35✔
274

275
            const auto id = static_cast<uint16_t>(dist);
35✔
276
            Value* var = findNearestVariable(id, context);
35✔
277
            if (var != nullptr)
35✔
278
                return *var;
35✔
279
        }
35✔
280

281
        m_no_value = Builtins::nil;
×
282
        return m_no_value;
×
283
    }
38✔
284

285
    void VM::loadPlugin(const uint16_t id, ExecutionContext& context)
1✔
286
    {
1✔
287
        namespace fs = std::filesystem;
288

289
        const std::string file = m_state.m_constants[id].stringRef();
1✔
290

291
        std::string path = file;
1✔
292
        // bytecode loaded from file
293
        if (m_state.m_filename != ARK_NO_NAME_FILE)
1✔
294
            path = (fs::path(m_state.m_filename).parent_path() / fs::path(file)).relative_path().string();
1✔
295

296
        std::shared_ptr<SharedLibrary> lib;
1✔
297
        // if it exists alongside the .arkc file
298
        if (Utils::fileExists(path))
1✔
299
            lib = std::make_shared<SharedLibrary>(path);
×
300
        else
301
        {
302
            for (auto const& v : m_state.m_libenv)
3✔
303
            {
304
                std::string lib_path = (fs::path(v) / fs::path(file)).string();
2✔
305

306
                // if it's already loaded don't do anything
307
                if (std::ranges::find_if(m_shared_lib_objects, [&](const auto& val) {
2✔
308
                        return (val->path() == path || val->path() == lib_path);
×
309
                    }) != m_shared_lib_objects.end())
2✔
310
                    return;
×
311

312
                // check in lib_path
313
                if (Utils::fileExists(lib_path))
2✔
314
                {
315
                    lib = std::make_shared<SharedLibrary>(lib_path);
1✔
316
                    break;
1✔
317
                }
318
            }
2✔
319
        }
320

321
        if (!lib)
1✔
322
        {
323
            auto lib_path = std::accumulate(
×
324
                std::next(m_state.m_libenv.begin()),
×
325
                m_state.m_libenv.end(),
×
326
                m_state.m_libenv[0].string(),
×
327
                [](const std::string& a, const fs::path& b) -> std::string {
×
328
                    return a + "\n\t- " + b.string();
×
329
                });
×
330
            throwVMError(
×
331
                ErrorKind::Module,
332
                fmt::format("Could not find module '{}'. Searched under\n\t- {}\n\t- {}", file, path, lib_path));
×
333
        }
×
334

335
        m_shared_lib_objects.emplace_back(lib);
1✔
336

337
        // load the mapping from the dynamic library
338
        try
339
        {
340
            std::vector<ScopeView::pair_t> data;
1✔
341
            const mapping* map = m_shared_lib_objects.back()->get<mapping* (*)()>("getFunctionsMapping")();
1✔
342

343
            std::size_t i = 0;
1✔
344
            while (map[i].name != nullptr)
2✔
345
            {
346
                const auto it = std::ranges::find(m_state.m_symbols, std::string(map[i].name));
1✔
347
                if (it != m_state.m_symbols.end())
1✔
348
                    data.emplace_back(static_cast<uint16_t>(std::distance(m_state.m_symbols.begin(), it)), Value(map[i].value));
1✔
349

350
                ++i;
1✔
351
            }
1✔
352

353
            context.locals.back().insertFront(data);
1✔
354
        }
1✔
355
        catch (const std::system_error& e)
356
        {
357
            throwVMError(
×
358
                ErrorKind::Module,
359
                fmt::format(
×
360
                    "An error occurred while loading module '{}': {}\nIt is most likely because the versions of the module and the language don't match.",
×
361
                    file, e.what()));
×
362
        }
1✔
363
    }
1✔
364

365
    void VM::exit(const int code) noexcept
×
366
    {
×
367
        m_exit_code = code;
×
368
        m_running = false;
×
369
    }
×
370

371
    ExecutionContext* VM::createAndGetContext()
17✔
372
    {
17✔
373
        const std::lock_guard lock(m_mutex);
17✔
374

375
        ExecutionContext* ctx = nullptr;
17✔
376

377
        // Try and find a free execution context.
378
        // If there is only one context, this is the primary one, which can't be reused.
379
        // Otherwise, we can check if a context is marked as free and reserve it!
380
        // It is possible that all contexts are being used, thus we will create one (active by default) in that case.
381

382
        if (m_execution_contexts.size() > 1)
17✔
383
        {
384
            const auto it = std::ranges::find_if(
28✔
385
                m_execution_contexts,
14✔
386
                [](const std::unique_ptr<ExecutionContext>& context) -> bool {
38✔
387
                    return !context->primary && context->isFree();
38✔
388
                });
389

390
            if (it != m_execution_contexts.end())
14✔
391
            {
392
                ctx = it->get();
10✔
393
                ctx->setActive(true);
10✔
394
                // reset the context before using it
395
                ctx->sp = 0;
10✔
396
                ctx->saved_scope.reset();
10✔
397
                ctx->stacked_closure_scopes.clear();
10✔
398
                ctx->locals.clear();
10✔
399
            }
10✔
400
        }
14✔
401

402
        if (ctx == nullptr)
17✔
403
            ctx = m_execution_contexts.emplace_back(std::make_unique<ExecutionContext>()).get();
7✔
404

405
        assert(!ctx->primary && "The new context shouldn't be marked as primary!");
17✔
406
        assert(ctx != m_execution_contexts.front().get() && "The new context isn't really new!");
17✔
407

408
        const ExecutionContext& primary_ctx = *m_execution_contexts.front();
17✔
409
        ctx->locals.reserve(primary_ctx.locals.size());
17✔
410
        ctx->scopes_storage = primary_ctx.scopes_storage;
17✔
411
        ctx->stacked_closure_scopes.emplace_back(nullptr);
17✔
412
        ctx->fc = 1;
17✔
413

414
        for (const auto& scope_view : primary_ctx.locals)
62✔
415
        {
416
            auto& new_scope = ctx->locals.emplace_back(ctx->scopes_storage.data(), scope_view.m_start);
45✔
417
            for (std::size_t i = 0; i < scope_view.size(); ++i)
3,149✔
418
            {
419
                const auto& [id, val] = scope_view.atPos(i);
3,104✔
420
                new_scope.pushBack(id, val);
3,104✔
421
            }
3,104✔
422
        }
45✔
423

424
        return ctx;
17✔
425
    }
17✔
426

427
    void VM::deleteContext(ExecutionContext* ec)
16✔
428
    {
16✔
429
        const std::lock_guard lock(m_mutex);
16✔
430

431
        // 1 + 4 additional contexts, it's a bit much (~600kB per context) to have in memory
432
        if (m_execution_contexts.size() > 5)
16✔
433
        {
434
            const auto it =
1✔
435
                std::ranges::remove_if(
2✔
436
                    m_execution_contexts,
1✔
437
                    [ec](const std::unique_ptr<ExecutionContext>& ctx) {
7✔
438
                        return ctx.get() == ec;
6✔
439
                    })
440
                    .begin();
1✔
441
            m_execution_contexts.erase(it);
1✔
442
        }
1✔
443
        else
444
        {
445
            // mark the used context as ready to be used again
446
            for (std::size_t i = 1; i < m_execution_contexts.size(); ++i)
40✔
447
            {
448
                if (m_execution_contexts[i].get() == ec)
25✔
449
                {
450
                    ec->setActive(false);
15✔
451
                    break;
15✔
452
                }
453
            }
10✔
454
        }
455
    }
16✔
456

457
    Future* VM::createFuture(std::vector<Value>& args)
17✔
458
    {
17✔
459
        const std::lock_guard lock(m_mutex_futures);
17✔
460

461
        ExecutionContext* ctx = createAndGetContext();
17✔
462
        // so that we have access to the presumed symbol id of the function we are calling
463
        // assuming that the callee is always the global context
464
        ctx->last_symbol = m_execution_contexts.front()->last_symbol;
17✔
465

466
        m_futures.push_back(std::make_unique<Future>(ctx, this, args));
17✔
467
        return m_futures.back().get();
17✔
468
    }
17✔
469

470
    void VM::deleteFuture(Future* f)
1✔
471
    {
1✔
472
        const std::lock_guard lock(m_mutex_futures);
1✔
473

474
        std::erase_if(
1✔
475
            m_futures,
1✔
476
            [f](const std::unique_ptr<Future>& future) {
3✔
477
                return future.get() == f;
2✔
478
            });
479
    }
1✔
480

481
    bool VM::forceReloadPlugins() const
×
482
    {
×
483
        // load the mapping from the dynamic library
484
        try
485
        {
486
            for (const auto& shared_lib : m_shared_lib_objects)
×
487
            {
488
                const mapping* map = shared_lib->get<mapping* (*)()>("getFunctionsMapping")();
×
489
                // load the mapping data
490
                std::size_t i = 0;
×
491
                while (map[i].name != nullptr)
×
492
                {
493
                    // put it in the global frame, aka the first one
494
                    auto it = std::ranges::find(m_state.m_symbols, std::string(map[i].name));
×
495
                    if (it != m_state.m_symbols.end())
×
496
                        m_execution_contexts[0]->locals[0].pushBack(
×
497
                            static_cast<uint16_t>(std::distance(m_state.m_symbols.begin(), it)),
×
498
                            Value(map[i].value));
×
499

500
                    ++i;
×
501
                }
×
502
            }
×
503

504
            return true;
×
505
        }
×
506
        catch (const std::system_error&)
507
        {
508
            return false;
×
509
        }
×
510
    }
×
511

512
    void VM::throwVMError(ErrorKind kind, const std::string& message)
33✔
513
    {
33✔
514
        throw std::runtime_error(std::string(errorKinds[static_cast<std::size_t>(kind)]) + ": " + message + "\n");
33✔
515
    }
33✔
516

517
    int VM::run(const bool fail_with_exception)
212✔
518
    {
212✔
519
        init();
212✔
520
        safeRun(*m_execution_contexts[0], 0, fail_with_exception);
212✔
521
        return m_exit_code;
212✔
522
    }
523

524
    int VM::safeRun(ExecutionContext& context, std::size_t untilFrameCount, bool fail_with_exception)
230✔
525
    {
230✔
526
#if ARK_USE_COMPUTED_GOTOS
527
#    define TARGET(op) TARGET_##op:
528
#    define DISPATCH_GOTO()            \
529
        _Pragma("GCC diagnostic push") \
530
            _Pragma("GCC diagnostic ignored \"-Wpedantic\"") goto* opcode_targets[inst];
531
        _Pragma("GCC diagnostic pop")
532
#    define GOTO_HALT() goto dispatch_end
533
#else
534
#    define TARGET(op) case op:
535
#    define DISPATCH_GOTO() goto dispatch_opcode
536
#    define GOTO_HALT() break
537
#endif
538

539
#define NEXTOPARG()                                                                                                               \
540
    do                                                                                                                            \
541
    {                                                                                                                             \
542
        inst = m_state.inst(context.pp, context.ip);                                                                              \
543
        padding = m_state.inst(context.pp, context.ip + 1);                                                                       \
544
        arg = static_cast<uint16_t>((m_state.inst(context.pp, context.ip + 2) << 8) +                                             \
545
                                    m_state.inst(context.pp, context.ip + 3));                                                    \
546
        context.ip += 4;                                                                                                          \
547
        context.inst_exec_counter = (context.inst_exec_counter + 1) % VMOverflowBufferSize;                                       \
548
        if (context.inst_exec_counter < 2 && context.sp >= VMStackSize)                                                           \
549
        {                                                                                                                         \
550
            if (context.pp != 0)                                                                                                  \
551
                throw Error("Stack overflow. You could consider rewriting your function to make use of tail-call optimization."); \
552
            else                                                                                                                  \
553
                throw Error("Stack overflow. Are you trying to call a function with too many arguments?");                        \
554
        }                                                                                                                         \
555
    } while (false)
556
#define DISPATCH() \
557
    NEXTOPARG();   \
558
    DISPATCH_GOTO();
559
#define UNPACK_ARGS()                                                                 \
560
    do                                                                                \
561
    {                                                                                 \
562
        secondary_arg = static_cast<uint16_t>((padding << 4) | (arg & 0xf000) >> 12); \
563
        primary_arg = arg & 0x0fff;                                                   \
564
    } while (false)
565

566
#if ARK_USE_COMPUTED_GOTOS
567
#    pragma GCC diagnostic push
568
#    pragma GCC diagnostic ignored "-Wpedantic"
569
            constexpr std::array opcode_targets = {
230✔
570
                // cppcheck-suppress syntaxError ; cppcheck do not know about labels addresses (GCC extension)
571
                &&TARGET_NOP,
572
                &&TARGET_LOAD_SYMBOL,
573
                &&TARGET_LOAD_SYMBOL_BY_INDEX,
574
                &&TARGET_LOAD_CONST,
575
                &&TARGET_POP_JUMP_IF_TRUE,
576
                &&TARGET_STORE,
577
                &&TARGET_STORE_REF,
578
                &&TARGET_SET_VAL,
579
                &&TARGET_POP_JUMP_IF_FALSE,
580
                &&TARGET_JUMP,
581
                &&TARGET_RET,
582
                &&TARGET_HALT,
583
                &&TARGET_PUSH_RETURN_ADDRESS,
584
                &&TARGET_CALL,
585
                &&TARGET_CAPTURE,
586
                &&TARGET_RENAME_NEXT_CAPTURE,
587
                &&TARGET_BUILTIN,
588
                &&TARGET_DEL,
589
                &&TARGET_MAKE_CLOSURE,
590
                &&TARGET_GET_FIELD,
591
                &&TARGET_PLUGIN,
592
                &&TARGET_LIST,
593
                &&TARGET_APPEND,
594
                &&TARGET_CONCAT,
595
                &&TARGET_APPEND_IN_PLACE,
596
                &&TARGET_CONCAT_IN_PLACE,
597
                &&TARGET_POP_LIST,
598
                &&TARGET_POP_LIST_IN_PLACE,
599
                &&TARGET_SET_AT_INDEX,
600
                &&TARGET_SET_AT_2_INDEX,
601
                &&TARGET_POP,
602
                &&TARGET_SHORTCIRCUIT_AND,
603
                &&TARGET_SHORTCIRCUIT_OR,
604
                &&TARGET_CREATE_SCOPE,
605
                &&TARGET_RESET_SCOPE_JUMP,
606
                &&TARGET_POP_SCOPE,
607
                &&TARGET_GET_CURRENT_PAGE_ADDR,
608
                &&TARGET_ADD,
609
                &&TARGET_SUB,
610
                &&TARGET_MUL,
611
                &&TARGET_DIV,
612
                &&TARGET_GT,
613
                &&TARGET_LT,
614
                &&TARGET_LE,
615
                &&TARGET_GE,
616
                &&TARGET_NEQ,
617
                &&TARGET_EQ,
618
                &&TARGET_LEN,
619
                &&TARGET_EMPTY,
620
                &&TARGET_TAIL,
621
                &&TARGET_HEAD,
622
                &&TARGET_ISNIL,
623
                &&TARGET_ASSERT,
624
                &&TARGET_TO_NUM,
625
                &&TARGET_TO_STR,
626
                &&TARGET_AT,
627
                &&TARGET_AT_AT,
628
                &&TARGET_MOD,
629
                &&TARGET_TYPE,
630
                &&TARGET_HASFIELD,
631
                &&TARGET_NOT,
632
                &&TARGET_LOAD_CONST_LOAD_CONST,
633
                &&TARGET_LOAD_CONST_STORE,
634
                &&TARGET_LOAD_CONST_SET_VAL,
635
                &&TARGET_STORE_FROM,
636
                &&TARGET_STORE_FROM_INDEX,
637
                &&TARGET_SET_VAL_FROM,
638
                &&TARGET_SET_VAL_FROM_INDEX,
639
                &&TARGET_INCREMENT,
640
                &&TARGET_INCREMENT_BY_INDEX,
641
                &&TARGET_INCREMENT_STORE,
642
                &&TARGET_DECREMENT,
643
                &&TARGET_DECREMENT_BY_INDEX,
644
                &&TARGET_DECREMENT_STORE,
645
                &&TARGET_STORE_TAIL,
646
                &&TARGET_STORE_TAIL_BY_INDEX,
647
                &&TARGET_STORE_HEAD,
648
                &&TARGET_STORE_HEAD_BY_INDEX,
649
                &&TARGET_STORE_LIST,
650
                &&TARGET_SET_VAL_TAIL,
651
                &&TARGET_SET_VAL_TAIL_BY_INDEX,
652
                &&TARGET_SET_VAL_HEAD,
653
                &&TARGET_SET_VAL_HEAD_BY_INDEX,
654
                &&TARGET_CALL_BUILTIN,
655
                &&TARGET_CALL_BUILTIN_WITHOUT_RETURN_ADDRESS,
656
                &&TARGET_LT_CONST_JUMP_IF_FALSE,
657
                &&TARGET_LT_CONST_JUMP_IF_TRUE,
658
                &&TARGET_LT_SYM_JUMP_IF_FALSE,
659
                &&TARGET_GT_CONST_JUMP_IF_TRUE,
660
                &&TARGET_GT_CONST_JUMP_IF_FALSE,
661
                &&TARGET_GT_SYM_JUMP_IF_FALSE,
662
                &&TARGET_EQ_CONST_JUMP_IF_TRUE,
663
                &&TARGET_EQ_SYM_INDEX_JUMP_IF_TRUE,
664
                &&TARGET_NEQ_CONST_JUMP_IF_TRUE,
665
                &&TARGET_NEQ_SYM_JUMP_IF_FALSE,
666
                &&TARGET_CALL_SYMBOL,
667
                &&TARGET_CALL_CURRENT_PAGE,
668
                &&TARGET_GET_FIELD_FROM_SYMBOL,
669
                &&TARGET_GET_FIELD_FROM_SYMBOL_INDEX,
670
                &&TARGET_AT_SYM_SYM,
671
                &&TARGET_AT_SYM_INDEX_SYM_INDEX,
672
                &&TARGET_AT_SYM_INDEX_CONST,
673
                &&TARGET_CHECK_TYPE_OF,
674
                &&TARGET_CHECK_TYPE_OF_BY_INDEX,
675
                &&TARGET_APPEND_IN_PLACE_SYM,
676
                &&TARGET_APPEND_IN_PLACE_SYM_INDEX,
677
                &&TARGET_STORE_LEN,
678
                &&TARGET_LT_LEN_SYM_JUMP_IF_FALSE,
679
                &&TARGET_MUL_BY,
680
                &&TARGET_MUL_BY_INDEX,
681
                &&TARGET_MUL_SET_VAL,
682
                &&TARGET_FUSED_MATH
683
            };
684

685
        static_assert(opcode_targets.size() == static_cast<std::size_t>(Instruction::InstructionsCount) && "Some instructions are not implemented in the VM");
686
#    pragma GCC diagnostic pop
687
#endif
688

689
        try
690
        {
691
            uint8_t inst = 0;
230✔
692
            uint8_t padding = 0;
230✔
693
            uint16_t arg = 0;
230✔
694
            uint16_t primary_arg = 0;
230✔
695
            uint16_t secondary_arg = 0;
230✔
696

697
            m_running = true;
230✔
698

699
            DISPATCH();
230✔
700
            // cppcheck-suppress unreachableCode ; analysis cannot follow the chain of goto... but it works!
701
            {
702
#if !ARK_USE_COMPUTED_GOTOS
703
            dispatch_opcode:
704
                switch (inst)
705
#endif
706
                {
×
707
#pragma region "Instructions"
708
                    TARGET(NOP)
709
                    {
710
                        DISPATCH();
×
711
                    }
150,184✔
712

713
                    TARGET(LOAD_SYMBOL)
714
                    {
715
                        push(loadSymbol(arg, context), context);
150,184✔
716
                        DISPATCH();
150,184✔
717
                    }
335,702✔
718

719
                    TARGET(LOAD_SYMBOL_BY_INDEX)
720
                    {
721
                        push(loadSymbolFromIndex(arg, context), context);
335,702✔
722
                        DISPATCH();
335,702✔
723
                    }
116,371✔
724

725
                    TARGET(LOAD_CONST)
726
                    {
727
                        push(loadConstAsPtr(arg), context);
116,371✔
728
                        DISPATCH();
116,371✔
729
                    }
30,828✔
730

731
                    TARGET(POP_JUMP_IF_TRUE)
732
                    {
733
                        if (Value boolean = *popAndResolveAsPtr(context); !!boolean)
39,213✔
734
                            jump(arg, context);
8,385✔
735
                        DISPATCH();
30,828✔
736
                    }
403,313✔
737

738
                    TARGET(STORE)
739
                    {
740
                        store(arg, popAndResolveAsPtr(context), context);
403,313✔
741
                        DISPATCH();
403,313✔
742
                    }
469✔
743

744
                    TARGET(STORE_REF)
745
                    {
746
                        // Not resolving a potential ref is on purpose!
747
                        // This instruction is only used by functions when storing arguments
748
                        const Value* tmp = pop(context);
469✔
749
                        store(arg, tmp, context);
469✔
750
                        DISPATCH();
469✔
751
                    }
25,182✔
752

753
                    TARGET(SET_VAL)
754
                    {
755
                        setVal(arg, popAndResolveAsPtr(context), context);
25,182✔
756
                        DISPATCH();
25,182✔
757
                    }
18,984✔
758

759
                    TARGET(POP_JUMP_IF_FALSE)
760
                    {
761
                        if (Value boolean = *popAndResolveAsPtr(context); !boolean)
20,051✔
762
                            jump(arg, context);
1,067✔
763
                        DISPATCH();
18,984✔
764
                    }
208,867✔
765

766
                    TARGET(JUMP)
767
                    {
768
                        jump(arg, context);
208,867✔
769
                        DISPATCH();
208,867✔
770
                    }
138,988✔
771

772
                    TARGET(RET)
773
                    {
774
                        {
775
                            Value ip_or_val = *popAndResolveAsPtr(context);
138,988✔
776
                            // no return value on the stack
777
                            if (ip_or_val.valueType() == ValueType::InstPtr) [[unlikely]]
138,988✔
778
                            {
779
                                context.ip = ip_or_val.pageAddr();
3,783✔
780
                                // we always push PP then IP, thus the next value
781
                                // MUST be the page pointer
782
                                context.pp = pop(context)->pageAddr();
3,783✔
783

784
                                returnFromFuncCall(context);
3,783✔
785
                                push(Builtins::nil, context);
3,783✔
786
                            }
3,783✔
787
                            // value on the stack
788
                            else [[likely]]
789
                            {
790
                                const Value* ip = popAndResolveAsPtr(context);
135,205✔
791
                                assert(ip->valueType() == ValueType::InstPtr && "Expected instruction pointer on the stack (is the stack trashed?)");
135,205✔
792
                                context.ip = ip->pageAddr();
135,205✔
793
                                context.pp = pop(context)->pageAddr();
135,205✔
794

795
                                returnFromFuncCall(context);
135,205✔
796
                                push(std::move(ip_or_val), context);
135,205✔
797
                            }
798

799
                            if (context.fc <= untilFrameCount)
138,988✔
800
                                GOTO_HALT();
18✔
801
                        }
138,988✔
802

803
                        DISPATCH();
138,970✔
804
                    }
72✔
805

806
                    TARGET(HALT)
807
                    {
808
                        m_running = false;
72✔
809
                        GOTO_HALT();
72✔
810
                    }
142,046✔
811

812
                    TARGET(PUSH_RETURN_ADDRESS)
813
                    {
814
                        push(Value(static_cast<PageAddr_t>(context.pp)), context);
142,046✔
815
                        // arg * 4 to skip over the call instruction, so that the return address points to AFTER the call
816
                        push(Value(ValueType::InstPtr, static_cast<PageAddr_t>(arg * 4)), context);
142,046✔
817
                        context.inst_exec_counter++;
142,046✔
818
                        DISPATCH();
142,046✔
819
                    }
3,268✔
820

821
                    TARGET(CALL)
822
                    {
823
                        call(context, arg);
3,268✔
824
                        if (!m_running)
3,261✔
825
                            GOTO_HALT();
×
826
                        DISPATCH();
3,261✔
827
                    }
3,191✔
828

829
                    TARGET(CAPTURE)
830
                    {
831
                        if (!context.saved_scope)
3,191✔
832
                            context.saved_scope = ClosureScope();
631✔
833

834
                        const Value* ptr = findNearestVariable(arg, context);
3,191✔
835
                        if (!ptr)
3,191✔
836
                            throwVMError(ErrorKind::Scope, fmt::format("Couldn't capture `{}' as it is currently unbound", m_state.m_symbols[arg]));
×
837
                        else
838
                        {
839
                            ptr = ptr->valueType() == ValueType::Reference ? ptr->reference() : ptr;
3,191✔
840
                            uint16_t id = context.capture_rename_id.value_or(arg);
3,191✔
841
                            context.saved_scope.value().push_back(id, *ptr);
3,191✔
842
                            context.capture_rename_id.reset();
3,191✔
843
                        }
844

845
                        DISPATCH();
3,191✔
846
                    }
13✔
847

848
                    TARGET(RENAME_NEXT_CAPTURE)
849
                    {
850
                        context.capture_rename_id = arg;
13✔
851
                        DISPATCH();
13✔
852
                    }
1,857✔
853

854
                    TARGET(BUILTIN)
855
                    {
856
                        push(Builtins::builtins[arg].second, context);
1,857✔
857
                        DISPATCH();
1,857✔
858
                    }
2✔
859

860
                    TARGET(DEL)
861
                    {
862
                        if (Value* var = findNearestVariable(arg, context); var != nullptr)
2✔
863
                        {
864
                            if (var->valueType() == ValueType::User)
1✔
865
                                var->usertypeRef().del();
1✔
866
                            *var = Value();
1✔
867
                            DISPATCH();
1✔
868
                        }
869

870
                        throwVMError(ErrorKind::Scope, fmt::format("Can not delete unbound variable `{}'", m_state.m_symbols[arg]));
1✔
871
                    }
631✔
872

873
                    TARGET(MAKE_CLOSURE)
874
                    {
875
                        push(Value(Closure(context.saved_scope.value(), m_state.m_constants[arg].pageAddr())), context);
631✔
876
                        context.saved_scope.reset();
631✔
877
                        DISPATCH();
631✔
878
                    }
6✔
879

880
                    TARGET(GET_FIELD)
881
                    {
882
                        Value* var = popAndResolveAsPtr(context);
6✔
883
                        push(getField(var, arg, context), context);
6✔
884
                        DISPATCH();
6✔
885
                    }
1✔
886

887
                    TARGET(PLUGIN)
888
                    {
889
                        loadPlugin(arg, context);
1✔
890
                        DISPATCH();
1✔
891
                    }
816✔
892

893
                    TARGET(LIST)
894
                    {
895
                        {
896
                            Value l = createList(arg, context);
816✔
897
                            push(std::move(l), context);
816✔
898
                        }
816✔
899
                        DISPATCH();
816✔
900
                    }
1,552✔
901

902
                    TARGET(APPEND)
903
                    {
904
                        {
905
                            Value* list = popAndResolveAsPtr(context);
1,552✔
906
                            if (list->valueType() != ValueType::List)
1,552✔
907
                            {
908
                                std::vector<Value> args = { *list };
1✔
909
                                for (uint16_t i = 0; i < arg; ++i)
2✔
910
                                    args.push_back(*popAndResolveAsPtr(context));
1✔
911
                                throw types::TypeCheckingError(
2✔
912
                                    "append",
1✔
913
                                    { { types::Contract { { types::Typedef("list", ValueType::List), types::Typedef("value", ValueType::Any, /* variadic= */ true) } } } },
1✔
914
                                    args);
915
                            }
1✔
916

917
                            const auto size = static_cast<uint16_t>(list->constList().size());
1,551✔
918

919
                            Value obj { *list };
1,551✔
920
                            obj.list().reserve(size + arg);
1,551✔
921

922
                            for (uint16_t i = 0; i < arg; ++i)
3,102✔
923
                                obj.push_back(*popAndResolveAsPtr(context));
1,551✔
924
                            push(std::move(obj), context);
1,551✔
925
                        }
1,551✔
926
                        DISPATCH();
1,551✔
927
                    }
15✔
928

929
                    TARGET(CONCAT)
930
                    {
931
                        {
932
                            Value* list = popAndResolveAsPtr(context);
15✔
933
                            Value obj { *list };
15✔
934

935
                            for (uint16_t i = 0; i < arg; ++i)
30✔
936
                            {
937
                                Value* next = popAndResolveAsPtr(context);
17✔
938

939
                                if (list->valueType() != ValueType::List || next->valueType() != ValueType::List)
17✔
940
                                    throw types::TypeCheckingError(
4✔
941
                                        "concat",
2✔
942
                                        { { types::Contract { { types::Typedef("dst", ValueType::List), types::Typedef("src", ValueType::List) } } } },
2✔
943
                                        { *list, *next });
2✔
944

945
                                std::ranges::copy(next->list(), std::back_inserter(obj.list()));
15✔
946
                            }
15✔
947
                            push(std::move(obj), context);
13✔
948
                        }
15✔
949
                        DISPATCH();
13✔
950
                    }
1✔
951

952
                    TARGET(APPEND_IN_PLACE)
953
                    {
954
                        Value* list = popAndResolveAsPtr(context);
1✔
955
                        listAppendInPlace(list, arg, context);
1✔
956
                        DISPATCH();
1✔
957
                    }
570✔
958

959
                    TARGET(CONCAT_IN_PLACE)
960
                    {
961
                        Value* list = popAndResolveAsPtr(context);
570✔
962

963
                        for (uint16_t i = 0; i < arg; ++i)
1,175✔
964
                        {
965
                            Value* next = popAndResolveAsPtr(context);
607✔
966

967
                            if (list->valueType() != ValueType::List || next->valueType() != ValueType::List)
607✔
968
                                throw types::TypeCheckingError(
4✔
969
                                    "concat!",
2✔
970
                                    { { types::Contract { { types::Typedef("dst", ValueType::List), types::Typedef("src", ValueType::List) } } } },
2✔
971
                                    { *list, *next });
2✔
972

973
                            std::ranges::copy(next->list(), std::back_inserter(list->list()));
605✔
974
                        }
605✔
975
                        DISPATCH();
568✔
976
                    }
6✔
977

978
                    TARGET(POP_LIST)
979
                    {
980
                        {
981
                            Value list = *popAndResolveAsPtr(context);
6✔
982
                            Value number = *popAndResolveAsPtr(context);
6✔
983

984
                            if (list.valueType() != ValueType::List || number.valueType() != ValueType::Number)
6✔
985
                                throw types::TypeCheckingError(
2✔
986
                                    "pop",
1✔
987
                                    { { types::Contract { { types::Typedef("list", ValueType::List), types::Typedef("index", ValueType::Number) } } } },
1✔
988
                                    { list, number });
1✔
989

990
                            long idx = static_cast<long>(number.number());
5✔
991
                            idx = idx < 0 ? static_cast<long>(list.list().size()) + idx : idx;
5✔
992
                            if (std::cmp_greater_equal(idx, list.list().size()) || idx < 0)
5✔
993
                                throwVMError(
2✔
994
                                    ErrorKind::Index,
995
                                    fmt::format("pop index ({}) out of range (list size: {})", idx, list.list().size()));
2✔
996

997
                            list.list().erase(list.list().begin() + idx);
3✔
998
                            push(list, context);
3✔
999
                        }
6✔
1000
                        DISPATCH();
3✔
1001
                    }
206✔
1002

1003
                    TARGET(POP_LIST_IN_PLACE)
1004
                    {
1005
                        {
1006
                            Value* list = popAndResolveAsPtr(context);
206✔
1007
                            Value number = *popAndResolveAsPtr(context);
206✔
1008

1009
                            if (list->valueType() != ValueType::List || number.valueType() != ValueType::Number)
206✔
1010
                                throw types::TypeCheckingError(
2✔
1011
                                    "pop!",
1✔
1012
                                    { { types::Contract { { types::Typedef("list", ValueType::List), types::Typedef("index", ValueType::Number) } } } },
1✔
1013
                                    { *list, number });
1✔
1014

1015
                            long idx = static_cast<long>(number.number());
205✔
1016
                            idx = idx < 0 ? static_cast<long>(list->list().size()) + idx : idx;
205✔
1017
                            if (std::cmp_greater_equal(idx, list->list().size()) || idx < 0)
205✔
1018
                                throwVMError(
2✔
1019
                                    ErrorKind::Index,
1020
                                    fmt::format("pop! index ({}) out of range (list size: {})", idx, list->list().size()));
2✔
1021

1022
                            list->list().erase(list->list().begin() + idx);
203✔
1023
                        }
206✔
1024
                        DISPATCH();
203✔
1025
                    }
510✔
1026

1027
                    TARGET(SET_AT_INDEX)
1028
                    {
1029
                        {
1030
                            Value* list = popAndResolveAsPtr(context);
510✔
1031
                            Value number = *popAndResolveAsPtr(context);
510✔
1032
                            Value new_value = *popAndResolveAsPtr(context);
510✔
1033

1034
                            if (!list->isIndexable() || number.valueType() != ValueType::Number || (list->valueType() == ValueType::String && new_value.valueType() != ValueType::String))
510✔
1035
                                throw types::TypeCheckingError(
2✔
1036
                                    "@=",
1✔
1037
                                    { { types::Contract {
3✔
1038
                                          { types::Typedef("list", ValueType::List),
3✔
1039
                                            types::Typedef("index", ValueType::Number),
1✔
1040
                                            types::Typedef("new_value", ValueType::Any) } } },
1✔
1041
                                      { types::Contract {
1✔
1042
                                          { types::Typedef("string", ValueType::String),
3✔
1043
                                            types::Typedef("index", ValueType::Number),
1✔
1044
                                            types::Typedef("char", ValueType::String) } } } },
1✔
1045
                                    { *list, number, new_value });
1✔
1046

1047
                            const std::size_t size = list->valueType() == ValueType::List ? list->list().size() : list->stringRef().size();
509✔
1048
                            long idx = static_cast<long>(number.number());
509✔
1049
                            idx = idx < 0 ? static_cast<long>(size) + idx : idx;
509✔
1050
                            if (std::cmp_greater_equal(idx, size) || idx < 0)
509✔
1051
                                throwVMError(
2✔
1052
                                    ErrorKind::Index,
1053
                                    fmt::format("@= index ({}) out of range (indexable size: {})", idx, size));
2✔
1054

1055
                            if (list->valueType() == ValueType::List)
507✔
1056
                                list->list()[static_cast<std::size_t>(idx)] = new_value;
505✔
1057
                            else
1058
                                list->stringRef()[static_cast<std::size_t>(idx)] = new_value.string()[0];
2✔
1059
                        }
510✔
1060
                        DISPATCH();
507✔
1061
                    }
12✔
1062

1063
                    TARGET(SET_AT_2_INDEX)
1064
                    {
1065
                        {
1066
                            Value* list = popAndResolveAsPtr(context);
12✔
1067
                            Value x = *popAndResolveAsPtr(context);
12✔
1068
                            Value y = *popAndResolveAsPtr(context);
12✔
1069
                            Value new_value = *popAndResolveAsPtr(context);
12✔
1070

1071
                            if (list->valueType() != ValueType::List || x.valueType() != ValueType::Number || y.valueType() != ValueType::Number)
12✔
1072
                                throw types::TypeCheckingError(
2✔
1073
                                    "@@=",
1✔
1074
                                    { { types::Contract {
2✔
1075
                                        { types::Typedef("list", ValueType::List),
4✔
1076
                                          types::Typedef("x", ValueType::Number),
1✔
1077
                                          types::Typedef("y", ValueType::Number),
1✔
1078
                                          types::Typedef("new_value", ValueType::Any) } } } },
1✔
1079
                                    { *list, x, y, new_value });
1✔
1080

1081
                            long idx_y = static_cast<long>(x.number());
11✔
1082
                            idx_y = idx_y < 0 ? static_cast<long>(list->list().size()) + idx_y : idx_y;
11✔
1083
                            if (std::cmp_greater_equal(idx_y, list->list().size()) || idx_y < 0)
11✔
1084
                                throwVMError(
2✔
1085
                                    ErrorKind::Index,
1086
                                    fmt::format("@@= index (y: {}) out of range (list size: {})", idx_y, list->list().size()));
2✔
1087

1088
                            if (!list->list()[static_cast<std::size_t>(idx_y)].isIndexable() ||
13✔
1089
                                (list->list()[static_cast<std::size_t>(idx_y)].valueType() == ValueType::String && new_value.valueType() != ValueType::String))
8✔
1090
                                throw types::TypeCheckingError(
2✔
1091
                                    "@@=",
1✔
1092
                                    { { types::Contract {
3✔
1093
                                          { types::Typedef("list", ValueType::List),
4✔
1094
                                            types::Typedef("x", ValueType::Number),
1✔
1095
                                            types::Typedef("y", ValueType::Number),
1✔
1096
                                            types::Typedef("new_value", ValueType::Any) } } },
1✔
1097
                                      { types::Contract {
1✔
1098
                                          { types::Typedef("string", ValueType::String),
4✔
1099
                                            types::Typedef("x", ValueType::Number),
1✔
1100
                                            types::Typedef("y", ValueType::Number),
1✔
1101
                                            types::Typedef("char", ValueType::String) } } } },
1✔
1102
                                    { *list, x, y, new_value });
1✔
1103

1104
                            const bool is_list = list->list()[static_cast<std::size_t>(idx_y)].valueType() == ValueType::List;
8✔
1105
                            const std::size_t size =
8✔
1106
                                is_list
16✔
1107
                                ? list->list()[static_cast<std::size_t>(idx_y)].list().size()
6✔
1108
                                : list->list()[static_cast<std::size_t>(idx_y)].stringRef().size();
2✔
1109

1110
                            long idx_x = static_cast<long>(y.number());
8✔
1111
                            idx_x = idx_x < 0 ? static_cast<long>(size) + idx_x : idx_x;
8✔
1112
                            if (std::cmp_greater_equal(idx_x, size) || idx_x < 0)
8✔
1113
                                throwVMError(
2✔
1114
                                    ErrorKind::Index,
1115
                                    fmt::format("@@= index (x: {}) out of range (inner indexable size: {})", idx_x, size));
2✔
1116

1117
                            if (is_list)
6✔
1118
                                list->list()[static_cast<std::size_t>(idx_y)].list()[static_cast<std::size_t>(idx_x)] = new_value;
4✔
1119
                            else
1120
                                list->list()[static_cast<std::size_t>(idx_y)].stringRef()[static_cast<std::size_t>(idx_x)] = new_value.string()[0];
2✔
1121
                        }
12✔
1122
                        DISPATCH();
6✔
1123
                    }
3,631✔
1124

1125
                    TARGET(POP)
1126
                    {
1127
                        pop(context);
3,631✔
1128
                        DISPATCH();
3,631✔
1129
                    }
23,897✔
1130

1131
                    TARGET(SHORTCIRCUIT_AND)
1132
                    {
1133
                        if (!*peekAndResolveAsPtr(context))
23,897✔
1134
                            jump(arg, context);
822✔
1135
                        else
1136
                            pop(context);
23,075✔
1137
                        DISPATCH();
23,897✔
1138
                    }
851✔
1139

1140
                    TARGET(SHORTCIRCUIT_OR)
1141
                    {
1142
                        if (!!*peekAndResolveAsPtr(context))
851✔
1143
                            jump(arg, context);
219✔
1144
                        else
1145
                            pop(context);
632✔
1146
                        DISPATCH();
851✔
1147
                    }
3,126✔
1148

1149
                    TARGET(CREATE_SCOPE)
1150
                    {
1151
                        context.locals.emplace_back(context.scopes_storage.data(), context.locals.back().storageEnd());
3,126✔
1152
                        DISPATCH();
3,126✔
1153
                    }
33,165✔
1154

1155
                    TARGET(RESET_SCOPE_JUMP)
1156
                    {
1157
                        context.locals.back().reset();
33,165✔
1158
                        jump(arg, context);
33,165✔
1159
                        DISPATCH();
33,165✔
1160
                    }
3,125✔
1161

1162
                    TARGET(POP_SCOPE)
1163
                    {
1164
                        context.locals.pop_back();
3,125✔
1165
                        DISPATCH();
3,125✔
1166
                    }
×
1167

1168
                    TARGET(GET_CURRENT_PAGE_ADDR)
1169
                    {
1170
                        context.last_symbol = arg;
×
1171
                        push(Value(static_cast<PageAddr_t>(context.pp)), context);
×
1172
                        DISPATCH();
×
1173
                    }
28,272✔
1174

1175
#pragma endregion
1176

1177
#pragma region "Operators"
1178

1179
                    TARGET(ADD)
1180
                    {
1181
                        Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
28,272✔
1182

1183
                        if (a->valueType() == ValueType::Number && b->valueType() == ValueType::Number)
28,272✔
1184
                            push(Value(a->number() + b->number()), context);
19,575✔
1185
                        else if (a->valueType() == ValueType::String && b->valueType() == ValueType::String)
8,697✔
1186
                            push(Value(a->string() + b->string()), context);
8,696✔
1187
                        else
1188
                            throw types::TypeCheckingError(
2✔
1189
                                "+",
1✔
1190
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } },
2✔
1191
                                    types::Contract { { types::Typedef("a", ValueType::String), types::Typedef("b", ValueType::String) } } } },
1✔
1192
                                { *a, *b });
1✔
1193
                        DISPATCH();
28,271✔
1194
                    }
386✔
1195

1196
                    TARGET(SUB)
1197
                    {
1198
                        Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
386✔
1199

1200
                        if (a->valueType() != ValueType::Number || b->valueType() != ValueType::Number)
386✔
1201
                            throw types::TypeCheckingError(
2✔
1202
                                "-",
1✔
1203
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1204
                                { *a, *b });
1✔
1205
                        push(Value(a->number() - b->number()), context);
385✔
1206
                        DISPATCH();
385✔
1207
                    }
825✔
1208

1209
                    TARGET(MUL)
1210
                    {
1211
                        Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
825✔
1212

1213
                        if (a->valueType() != ValueType::Number || b->valueType() != ValueType::Number)
825✔
1214
                            throw types::TypeCheckingError(
2✔
1215
                                "*",
1✔
1216
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1217
                                { *a, *b });
1✔
1218
                        push(Value(a->number() * b->number()), context);
824✔
1219
                        DISPATCH();
824✔
1220
                    }
141✔
1221

1222
                    TARGET(DIV)
1223
                    {
1224
                        Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
141✔
1225

1226
                        if (a->valueType() != ValueType::Number || b->valueType() != ValueType::Number)
141✔
1227
                            throw types::TypeCheckingError(
2✔
1228
                                "/",
1✔
1229
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1230
                                { *a, *b });
1✔
1231
                        auto d = b->number();
140✔
1232
                        if (d == 0)
140✔
1233
                            throwVMError(ErrorKind::DivisionByZero, fmt::format("Can not compute expression (/ {} {})", a->toString(*this), b->toString(*this)));
1✔
1234

1235
                        push(Value(a->number() / d), context);
139✔
1236
                        DISPATCH();
139✔
1237
                    }
187✔
1238

1239
                    TARGET(GT)
1240
                    {
1241
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
187✔
1242
                        push(*b < *a ? Builtins::trueSym : Builtins::falseSym, context);
187✔
1243
                        DISPATCH();
187✔
1244
                    }
21,008✔
1245

1246
                    TARGET(LT)
1247
                    {
1248
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
21,008✔
1249
                        push(*a < *b ? Builtins::trueSym : Builtins::falseSym, context);
21,008✔
1250
                        DISPATCH();
21,008✔
1251
                    }
7,290✔
1252

1253
                    TARGET(LE)
1254
                    {
1255
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
7,290✔
1256
                        push((((*a < *b) || (*a == *b)) ? Builtins::trueSym : Builtins::falseSym), context);
7,290✔
1257
                        DISPATCH();
7,290✔
1258
                    }
5,931✔
1259

1260
                    TARGET(GE)
1261
                    {
1262
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
5,931✔
1263
                        push(!(*a < *b) ? Builtins::trueSym : Builtins::falseSym, context);
5,931✔
1264
                        DISPATCH();
5,931✔
1265
                    }
1,232✔
1266

1267
                    TARGET(NEQ)
1268
                    {
1269
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
1,232✔
1270
                        push(*a != *b ? Builtins::trueSym : Builtins::falseSym, context);
1,232✔
1271
                        DISPATCH();
1,232✔
1272
                    }
18,216✔
1273

1274
                    TARGET(EQ)
1275
                    {
1276
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
18,216✔
1277
                        push(*a == *b ? Builtins::trueSym : Builtins::falseSym, context);
18,216✔
1278
                        DISPATCH();
18,216✔
1279
                    }
3,969✔
1280

1281
                    TARGET(LEN)
1282
                    {
1283
                        const Value* a = popAndResolveAsPtr(context);
3,969✔
1284

1285
                        if (a->valueType() == ValueType::List)
3,969✔
1286
                            push(Value(static_cast<int>(a->constList().size())), context);
1,561✔
1287
                        else if (a->valueType() == ValueType::String)
2,408✔
1288
                            push(Value(static_cast<int>(a->string().size())), context);
2,407✔
1289
                        else
1290
                            throw types::TypeCheckingError(
2✔
1291
                                "len",
1✔
1292
                                { { types::Contract { { types::Typedef("value", ValueType::List) } },
2✔
1293
                                    types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
1294
                                { *a });
1✔
1295
                        DISPATCH();
3,968✔
1296
                    }
625✔
1297

1298
                    TARGET(EMPTY)
1299
                    {
1300
                        const Value* a = popAndResolveAsPtr(context);
625✔
1301

1302
                        if (a->valueType() == ValueType::List)
625✔
1303
                            push(a->constList().empty() ? Builtins::trueSym : Builtins::falseSym, context);
126✔
1304
                        else if (a->valueType() == ValueType::String)
499✔
1305
                            push(a->string().empty() ? Builtins::trueSym : Builtins::falseSym, context);
498✔
1306
                        else if (a->valueType() == ValueType::Nil)
1✔
1307
                            push(Builtins::trueSym, context);
×
1308
                        else
1309
                            throw types::TypeCheckingError(
2✔
1310
                                "empty?",
1✔
1311
                                { { types::Contract { { types::Typedef("value", ValueType::List) } },
3✔
1312
                                    types::Contract { { types::Typedef("value", ValueType::Nil) } },
1✔
1313
                                    types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
1314
                                { *a });
1✔
1315
                        DISPATCH();
624✔
1316
                    }
335✔
1317

1318
                    TARGET(TAIL)
1319
                    {
1320
                        Value* const a = popAndResolveAsPtr(context);
335✔
1321
                        push(helper::tail(a), context);
335✔
1322
                        DISPATCH();
334✔
1323
                    }
1,128✔
1324

1325
                    TARGET(HEAD)
1326
                    {
1327
                        Value* const a = popAndResolveAsPtr(context);
1,128✔
1328
                        push(helper::head(a), context);
1,128✔
1329
                        DISPATCH();
1,127✔
1330
                    }
2,377✔
1331

1332
                    TARGET(ISNIL)
1333
                    {
1334
                        const Value* a = popAndResolveAsPtr(context);
2,377✔
1335
                        push((*a == Builtins::nil) ? Builtins::trueSym : Builtins::falseSym, context);
2,377✔
1336
                        DISPATCH();
2,377✔
1337
                    }
671✔
1338

1339
                    TARGET(ASSERT)
1340
                    {
1341
                        Value* const b = popAndResolveAsPtr(context);
671✔
1342
                        Value* const a = popAndResolveAsPtr(context);
671✔
1343

1344
                        if (b->valueType() != ValueType::String)
671✔
1345
                            throw types::TypeCheckingError(
2✔
1346
                                "assert",
1✔
1347
                                { { types::Contract { { types::Typedef("expr", ValueType::Any), types::Typedef("message", ValueType::String) } } } },
1✔
1348
                                { *a, *b });
1✔
1349

1350
                        if (*a == Builtins::falseSym)
670✔
1351
                            throw AssertionFailed(b->stringRef());
1✔
1352
                        DISPATCH();
669✔
1353
                    }
15✔
1354

1355
                    TARGET(TO_NUM)
1356
                    {
1357
                        const Value* a = popAndResolveAsPtr(context);
15✔
1358

1359
                        if (a->valueType() != ValueType::String)
15✔
1360
                            throw types::TypeCheckingError(
2✔
1361
                                "toNumber",
1✔
1362
                                { { types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
1363
                                { *a });
1✔
1364

1365
                        double val;
1366
                        if (Utils::isDouble(a->string(), &val))
14✔
1367
                            push(Value(val), context);
11✔
1368
                        else
1369
                            push(Builtins::nil, context);
3✔
1370
                        DISPATCH();
14✔
1371
                    }
145✔
1372

1373
                    TARGET(TO_STR)
1374
                    {
1375
                        const Value* a = popAndResolveAsPtr(context);
145✔
1376
                        push(Value(a->toString(*this)), context);
145✔
1377
                        DISPATCH();
145✔
1378
                    }
187✔
1379

1380
                    TARGET(AT)
1381
                    {
1382
                        Value& b = *popAndResolveAsPtr(context);
187✔
1383
                        Value& a = *popAndResolveAsPtr(context);
187✔
1384
                        push(helper::at(a, b, *this), context);
187✔
1385
                        DISPATCH();
185✔
1386
                    }
74✔
1387

1388
                    TARGET(AT_AT)
1389
                    {
1390
                        {
1391
                            const Value* x = popAndResolveAsPtr(context);
74✔
1392
                            const Value* y = popAndResolveAsPtr(context);
74✔
1393
                            Value& list = *popAndResolveAsPtr(context);
74✔
1394

1395
                            if (y->valueType() != ValueType::Number || x->valueType() != ValueType::Number ||
74✔
1396
                                list.valueType() != ValueType::List)
73✔
1397
                                throw types::TypeCheckingError(
2✔
1398
                                    "@@",
1✔
1399
                                    { { types::Contract {
2✔
1400
                                        { types::Typedef("src", ValueType::List),
3✔
1401
                                          types::Typedef("y", ValueType::Number),
1✔
1402
                                          types::Typedef("x", ValueType::Number) } } } },
1✔
1403
                                    { list, *y, *x });
1✔
1404

1405
                            long idx_y = static_cast<long>(y->number());
73✔
1406
                            idx_y = idx_y < 0 ? static_cast<long>(list.list().size()) + idx_y : idx_y;
73✔
1407
                            if (std::cmp_greater_equal(idx_y, list.list().size()) || idx_y < 0)
73✔
1408
                                throwVMError(
2✔
1409
                                    ErrorKind::Index,
1410
                                    fmt::format("@@ index ({}) out of range (list size: {})", idx_y, list.list().size()));
2✔
1411

1412
                            const bool is_list = list.list()[static_cast<std::size_t>(idx_y)].valueType() == ValueType::List;
71✔
1413
                            const std::size_t size =
71✔
1414
                                is_list
142✔
1415
                                ? list.list()[static_cast<std::size_t>(idx_y)].list().size()
42✔
1416
                                : list.list()[static_cast<std::size_t>(idx_y)].stringRef().size();
29✔
1417

1418
                            long idx_x = static_cast<long>(x->number());
71✔
1419
                            idx_x = idx_x < 0 ? static_cast<long>(size) + idx_x : idx_x;
71✔
1420
                            if (std::cmp_greater_equal(idx_x, size) || idx_x < 0)
71✔
1421
                                throwVMError(
2✔
1422
                                    ErrorKind::Index,
1423
                                    fmt::format("@@ index (x: {}) out of range (inner indexable size: {})", idx_x, size));
2✔
1424

1425
                            if (is_list)
69✔
1426
                                push(list.list()[static_cast<std::size_t>(idx_y)].list()[static_cast<std::size_t>(idx_x)], context);
40✔
1427
                            else
1428
                                push(Value(std::string(1, list.list()[static_cast<std::size_t>(idx_y)].stringRef()[static_cast<std::size_t>(idx_x)])), context);
29✔
1429
                        }
1430
                        DISPATCH();
69✔
1431
                    }
16,403✔
1432

1433
                    TARGET(MOD)
1434
                    {
1435
                        const Value *b = popAndResolveAsPtr(context), *a = popAndResolveAsPtr(context);
16,403✔
1436
                        if (a->valueType() != ValueType::Number || b->valueType() != ValueType::Number)
16,403✔
1437
                            throw types::TypeCheckingError(
2✔
1438
                                "mod",
1✔
1439
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1440
                                { *a, *b });
1✔
1441
                        push(Value(std::fmod(a->number(), b->number())), context);
16,402✔
1442
                        DISPATCH();
16,402✔
1443
                    }
26✔
1444

1445
                    TARGET(TYPE)
1446
                    {
1447
                        const Value* a = popAndResolveAsPtr(context);
26✔
1448
                        push(Value(std::to_string(a->valueType())), context);
26✔
1449
                        DISPATCH();
26✔
1450
                    }
3✔
1451

1452
                    TARGET(HASFIELD)
1453
                    {
1454
                        {
1455
                            Value* const field = popAndResolveAsPtr(context);
3✔
1456
                            Value* const closure = popAndResolveAsPtr(context);
3✔
1457
                            if (closure->valueType() != ValueType::Closure || field->valueType() != ValueType::String)
3✔
1458
                                throw types::TypeCheckingError(
2✔
1459
                                    "hasField",
1✔
1460
                                    { { types::Contract { { types::Typedef("closure", ValueType::Closure), types::Typedef("field", ValueType::String) } } } },
1✔
1461
                                    { *closure, *field });
1✔
1462

1463
                            auto it = std::ranges::find(m_state.m_symbols, field->stringRef());
2✔
1464
                            if (it == m_state.m_symbols.end())
2✔
1465
                            {
1466
                                push(Builtins::falseSym, context);
1✔
1467
                                DISPATCH();
1✔
1468
                            }
1469

1470
                            auto id = static_cast<std::uint16_t>(std::distance(m_state.m_symbols.begin(), it));
1✔
1471
                            push(closure->refClosure().refScope()[id] != nullptr ? Builtins::trueSym : Builtins::falseSym, context);
1✔
1472
                        }
1473
                        DISPATCH();
1✔
1474
                    }
3,698✔
1475

1476
                    TARGET(NOT)
1477
                    {
1478
                        const Value* a = popAndResolveAsPtr(context);
3,698✔
1479
                        push(!(*a) ? Builtins::trueSym : Builtins::falseSym, context);
3,698✔
1480
                        DISPATCH();
3,698✔
1481
                    }
8,290✔
1482

1483
#pragma endregion
1484

1485
#pragma region "Super Instructions"
1486
                    TARGET(LOAD_CONST_LOAD_CONST)
1487
                    {
1488
                        UNPACK_ARGS();
8,290✔
1489
                        push(loadConstAsPtr(primary_arg), context);
8,290✔
1490
                        push(loadConstAsPtr(secondary_arg), context);
8,290✔
1491
                        context.inst_exec_counter++;
8,290✔
1492
                        DISPATCH();
8,290✔
1493
                    }
10,000✔
1494

1495
                    TARGET(LOAD_CONST_STORE)
1496
                    {
1497
                        UNPACK_ARGS();
10,000✔
1498
                        store(secondary_arg, loadConstAsPtr(primary_arg), context);
10,000✔
1499
                        DISPATCH();
10,000✔
1500
                    }
893✔
1501

1502
                    TARGET(LOAD_CONST_SET_VAL)
1503
                    {
1504
                        UNPACK_ARGS();
893✔
1505
                        setVal(secondary_arg, loadConstAsPtr(primary_arg), context);
893✔
1506
                        DISPATCH();
892✔
1507
                    }
25✔
1508

1509
                    TARGET(STORE_FROM)
1510
                    {
1511
                        UNPACK_ARGS();
25✔
1512
                        store(secondary_arg, loadSymbol(primary_arg, context), context);
25✔
1513
                        DISPATCH();
24✔
1514
                    }
1,223✔
1515

1516
                    TARGET(STORE_FROM_INDEX)
1517
                    {
1518
                        UNPACK_ARGS();
1,223✔
1519
                        store(secondary_arg, loadSymbolFromIndex(primary_arg, context), context);
1,223✔
1520
                        DISPATCH();
1,223✔
1521
                    }
627✔
1522

1523
                    TARGET(SET_VAL_FROM)
1524
                    {
1525
                        UNPACK_ARGS();
627✔
1526
                        setVal(secondary_arg, loadSymbol(primary_arg, context), context);
627✔
1527
                        DISPATCH();
627✔
1528
                    }
547✔
1529

1530
                    TARGET(SET_VAL_FROM_INDEX)
1531
                    {
1532
                        UNPACK_ARGS();
547✔
1533
                        setVal(secondary_arg, loadSymbolFromIndex(primary_arg, context), context);
547✔
1534
                        DISPATCH();
547✔
1535
                    }
50✔
1536

1537
                    TARGET(INCREMENT)
1538
                    {
1539
                        UNPACK_ARGS();
50✔
1540
                        {
1541
                            Value* var = loadSymbol(primary_arg, context);
50✔
1542

1543
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
1544
                            if (var->valueType() == ValueType::Reference)
50✔
1545
                                var = var->reference();
×
1546

1547
                            if (var->valueType() == ValueType::Number)
50✔
1548
                                push(Value(var->number() + secondary_arg), context);
49✔
1549
                            else
1550
                                throw types::TypeCheckingError(
2✔
1551
                                    "+",
1✔
1552
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1553
                                    { *var, Value(secondary_arg) });
1✔
1554
                        }
1555
                        DISPATCH();
49✔
1556
                    }
88,028✔
1557

1558
                    TARGET(INCREMENT_BY_INDEX)
1559
                    {
1560
                        UNPACK_ARGS();
88,028✔
1561
                        {
1562
                            Value* var = loadSymbolFromIndex(primary_arg, context);
88,028✔
1563

1564
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
1565
                            if (var->valueType() == ValueType::Reference)
88,028✔
1566
                                var = var->reference();
×
1567

1568
                            if (var->valueType() == ValueType::Number)
88,028✔
1569
                                push(Value(var->number() + secondary_arg), context);
88,027✔
1570
                            else
1571
                                throw types::TypeCheckingError(
2✔
1572
                                    "+",
1✔
1573
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1574
                                    { *var, Value(secondary_arg) });
1✔
1575
                        }
1576
                        DISPATCH();
88,027✔
1577
                    }
33,139✔
1578

1579
                    TARGET(INCREMENT_STORE)
1580
                    {
1581
                        UNPACK_ARGS();
33,139✔
1582
                        {
1583
                            Value* var = loadSymbol(primary_arg, context);
33,139✔
1584

1585
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
1586
                            if (var->valueType() == ValueType::Reference)
33,139✔
1587
                                var = var->reference();
×
1588

1589
                            if (var->valueType() == ValueType::Number)
33,139✔
1590
                            {
1591
                                auto val = Value(var->number() + secondary_arg);
33,138✔
1592
                                setVal(primary_arg, &val, context);
33,138✔
1593
                            }
33,138✔
1594
                            else
1595
                                throw types::TypeCheckingError(
2✔
1596
                                    "+",
1✔
1597
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1598
                                    { *var, Value(secondary_arg) });
1✔
1599
                        }
1600
                        DISPATCH();
33,138✔
1601
                    }
1,854✔
1602

1603
                    TARGET(DECREMENT)
1604
                    {
1605
                        UNPACK_ARGS();
1,854✔
1606
                        {
1607
                            Value* var = loadSymbol(primary_arg, context);
1,854✔
1608

1609
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
1610
                            if (var->valueType() == ValueType::Reference)
1,854✔
1611
                                var = var->reference();
×
1612

1613
                            if (var->valueType() == ValueType::Number)
1,854✔
1614
                                push(Value(var->number() - secondary_arg), context);
1,853✔
1615
                            else
1616
                                throw types::TypeCheckingError(
2✔
1617
                                    "-",
1✔
1618
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1619
                                    { *var, Value(secondary_arg) });
1✔
1620
                        }
1621
                        DISPATCH();
1,853✔
1622
                    }
194,414✔
1623

1624
                    TARGET(DECREMENT_BY_INDEX)
1625
                    {
1626
                        UNPACK_ARGS();
194,414✔
1627
                        {
1628
                            Value* var = loadSymbolFromIndex(primary_arg, context);
194,414✔
1629

1630
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
1631
                            if (var->valueType() == ValueType::Reference)
194,414✔
1632
                                var = var->reference();
×
1633

1634
                            if (var->valueType() == ValueType::Number)
194,414✔
1635
                                push(Value(var->number() - secondary_arg), context);
194,413✔
1636
                            else
1637
                                throw types::TypeCheckingError(
2✔
1638
                                    "-",
1✔
1639
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1640
                                    { *var, Value(secondary_arg) });
1✔
1641
                        }
1642
                        DISPATCH();
194,413✔
1643
                    }
957✔
1644

1645
                    TARGET(DECREMENT_STORE)
1646
                    {
1647
                        UNPACK_ARGS();
957✔
1648
                        {
1649
                            Value* var = loadSymbol(primary_arg, context);
957✔
1650

1651
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
1652
                            if (var->valueType() == ValueType::Reference)
957✔
1653
                                var = var->reference();
×
1654

1655
                            if (var->valueType() == ValueType::Number)
957✔
1656
                            {
1657
                                auto val = Value(var->number() - secondary_arg);
956✔
1658
                                setVal(primary_arg, &val, context);
956✔
1659
                            }
956✔
1660
                            else
1661
                                throw types::TypeCheckingError(
2✔
1662
                                    "-",
1✔
1663
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
1664
                                    { *var, Value(secondary_arg) });
1✔
1665
                        }
1666
                        DISPATCH();
956✔
1667
                    }
1✔
1668

1669
                    TARGET(STORE_TAIL)
1670
                    {
1671
                        UNPACK_ARGS();
1✔
1672
                        {
1673
                            Value* list = loadSymbol(primary_arg, context);
1✔
1674
                            Value tail = helper::tail(list);
1✔
1675
                            store(secondary_arg, &tail, context);
1✔
1676
                        }
1✔
1677
                        DISPATCH();
1✔
1678
                    }
8✔
1679

1680
                    TARGET(STORE_TAIL_BY_INDEX)
1681
                    {
1682
                        UNPACK_ARGS();
8✔
1683
                        {
1684
                            Value* list = loadSymbolFromIndex(primary_arg, context);
8✔
1685
                            Value tail = helper::tail(list);
8✔
1686
                            store(secondary_arg, &tail, context);
8✔
1687
                        }
8✔
1688
                        DISPATCH();
8✔
1689
                    }
4✔
1690

1691
                    TARGET(STORE_HEAD)
1692
                    {
1693
                        UNPACK_ARGS();
4✔
1694
                        {
1695
                            Value* list = loadSymbol(primary_arg, context);
4✔
1696
                            Value head = helper::head(list);
4✔
1697
                            store(secondary_arg, &head, context);
4✔
1698
                        }
4✔
1699
                        DISPATCH();
4✔
1700
                    }
38✔
1701

1702
                    TARGET(STORE_HEAD_BY_INDEX)
1703
                    {
1704
                        UNPACK_ARGS();
38✔
1705
                        {
1706
                            Value* list = loadSymbolFromIndex(primary_arg, context);
38✔
1707
                            Value head = helper::head(list);
38✔
1708
                            store(secondary_arg, &head, context);
38✔
1709
                        }
38✔
1710
                        DISPATCH();
38✔
1711
                    }
1,007✔
1712

1713
                    TARGET(STORE_LIST)
1714
                    {
1715
                        UNPACK_ARGS();
1,007✔
1716
                        {
1717
                            Value l = createList(primary_arg, context);
1,007✔
1718
                            store(secondary_arg, &l, context);
1,007✔
1719
                        }
1,007✔
1720
                        DISPATCH();
1,007✔
1721
                    }
3✔
1722

1723
                    TARGET(SET_VAL_TAIL)
1724
                    {
1725
                        UNPACK_ARGS();
3✔
1726
                        {
1727
                            Value* list = loadSymbol(primary_arg, context);
3✔
1728
                            Value tail = helper::tail(list);
3✔
1729
                            setVal(secondary_arg, &tail, context);
3✔
1730
                        }
3✔
1731
                        DISPATCH();
3✔
1732
                    }
1✔
1733

1734
                    TARGET(SET_VAL_TAIL_BY_INDEX)
1735
                    {
1736
                        UNPACK_ARGS();
1✔
1737
                        {
1738
                            Value* list = loadSymbolFromIndex(primary_arg, context);
1✔
1739
                            Value tail = helper::tail(list);
1✔
1740
                            setVal(secondary_arg, &tail, context);
1✔
1741
                        }
1✔
1742
                        DISPATCH();
1✔
1743
                    }
1✔
1744

1745
                    TARGET(SET_VAL_HEAD)
1746
                    {
1747
                        UNPACK_ARGS();
1✔
1748
                        {
1749
                            Value* list = loadSymbol(primary_arg, context);
1✔
1750
                            Value head = helper::head(list);
1✔
1751
                            setVal(secondary_arg, &head, context);
1✔
1752
                        }
1✔
1753
                        DISPATCH();
1✔
1754
                    }
1✔
1755

1756
                    TARGET(SET_VAL_HEAD_BY_INDEX)
1757
                    {
1758
                        UNPACK_ARGS();
1✔
1759
                        {
1760
                            Value* list = loadSymbolFromIndex(primary_arg, context);
1✔
1761
                            Value head = helper::head(list);
1✔
1762
                            setVal(secondary_arg, &head, context);
1✔
1763
                        }
1✔
1764
                        DISPATCH();
1✔
1765
                    }
993✔
1766

1767
                    TARGET(CALL_BUILTIN)
1768
                    {
1769
                        UNPACK_ARGS();
993✔
1770
                        // no stack size check because we do not push IP/PP since we are just calling a builtin
1771
                        callBuiltin(context, Builtins::builtins[primary_arg].second, secondary_arg);
993✔
1772
                        if (!m_running)
931✔
1773
                            GOTO_HALT();
×
1774
                        DISPATCH();
931✔
1775
                    }
11,692✔
1776

1777
                    TARGET(CALL_BUILTIN_WITHOUT_RETURN_ADDRESS)
1778
                    {
1779
                        UNPACK_ARGS();
11,692✔
1780
                        // no stack size check because we do not push IP/PP since we are just calling a builtin
1781
                        callBuiltin(context, Builtins::builtins[primary_arg].second, secondary_arg, /* remove_return_address= */ false);
11,692✔
1782
                        if (!m_running)
11,691✔
1783
                            GOTO_HALT();
×
1784
                        DISPATCH();
11,691✔
1785
                    }
857✔
1786

1787
                    TARGET(LT_CONST_JUMP_IF_FALSE)
1788
                    {
1789
                        UNPACK_ARGS();
857✔
1790
                        const Value* sym = popAndResolveAsPtr(context);
857✔
1791
                        if (!(*sym < *loadConstAsPtr(primary_arg)))
857✔
1792
                            jump(secondary_arg, context);
122✔
1793
                        DISPATCH();
857✔
1794
                    }
21,988✔
1795

1796
                    TARGET(LT_CONST_JUMP_IF_TRUE)
1797
                    {
1798
                        UNPACK_ARGS();
21,988✔
1799
                        const Value* sym = popAndResolveAsPtr(context);
21,988✔
1800
                        if (*sym < *loadConstAsPtr(primary_arg))
21,988✔
1801
                            jump(secondary_arg, context);
10,960✔
1802
                        DISPATCH();
21,988✔
1803
                    }
6,917✔
1804

1805
                    TARGET(LT_SYM_JUMP_IF_FALSE)
1806
                    {
1807
                        UNPACK_ARGS();
6,917✔
1808
                        const Value* sym = popAndResolveAsPtr(context);
6,917✔
1809
                        if (!(*sym < *loadSymbol(primary_arg, context)))
6,917✔
1810
                            jump(secondary_arg, context);
669✔
1811
                        DISPATCH();
6,917✔
1812
                    }
172,506✔
1813

1814
                    TARGET(GT_CONST_JUMP_IF_TRUE)
1815
                    {
1816
                        UNPACK_ARGS();
172,506✔
1817
                        const Value* sym = popAndResolveAsPtr(context);
172,506✔
1818
                        const Value* cst = loadConstAsPtr(primary_arg);
172,506✔
1819
                        if (*cst < *sym)
172,506✔
1820
                            jump(secondary_arg, context);
86,589✔
1821
                        DISPATCH();
172,506✔
1822
                    }
292✔
1823

1824
                    TARGET(GT_CONST_JUMP_IF_FALSE)
1825
                    {
1826
                        UNPACK_ARGS();
292✔
1827
                        const Value* sym = popAndResolveAsPtr(context);
292✔
1828
                        const Value* cst = loadConstAsPtr(primary_arg);
292✔
1829
                        if (!(*cst < *sym))
292✔
1830
                            jump(secondary_arg, context);
56✔
1831
                        DISPATCH();
292✔
1832
                    }
6✔
1833

1834
                    TARGET(GT_SYM_JUMP_IF_FALSE)
1835
                    {
1836
                        UNPACK_ARGS();
6✔
1837
                        const Value* sym = popAndResolveAsPtr(context);
6✔
1838
                        const Value* rhs = loadSymbol(primary_arg, context);
6✔
1839
                        if (!(*rhs < *sym))
6✔
1840
                            jump(secondary_arg, context);
1✔
1841
                        DISPATCH();
6✔
1842
                    }
1,096✔
1843

1844
                    TARGET(EQ_CONST_JUMP_IF_TRUE)
1845
                    {
1846
                        UNPACK_ARGS();
1,096✔
1847
                        const Value* sym = popAndResolveAsPtr(context);
1,096✔
1848
                        if (*sym == *loadConstAsPtr(primary_arg))
1,096✔
1849
                            jump(secondary_arg, context);
38✔
1850
                        DISPATCH();
1,096✔
1851
                    }
87,351✔
1852

1853
                    TARGET(EQ_SYM_INDEX_JUMP_IF_TRUE)
1854
                    {
1855
                        UNPACK_ARGS();
87,351✔
1856
                        const Value* sym = popAndResolveAsPtr(context);
87,351✔
1857
                        if (*sym == *loadSymbolFromIndex(primary_arg, context))
87,351✔
1858
                            jump(secondary_arg, context);
548✔
1859
                        DISPATCH();
87,351✔
1860
                    }
11✔
1861

1862
                    TARGET(NEQ_CONST_JUMP_IF_TRUE)
1863
                    {
1864
                        UNPACK_ARGS();
11✔
1865
                        const Value* sym = popAndResolveAsPtr(context);
11✔
1866
                        if (*sym != *loadConstAsPtr(primary_arg))
11✔
1867
                            jump(secondary_arg, context);
2✔
1868
                        DISPATCH();
11✔
1869
                    }
30✔
1870

1871
                    TARGET(NEQ_SYM_JUMP_IF_FALSE)
1872
                    {
1873
                        UNPACK_ARGS();
30✔
1874
                        const Value* sym = popAndResolveAsPtr(context);
30✔
1875
                        if (*sym == *loadSymbol(primary_arg, context))
30✔
1876
                            jump(secondary_arg, context);
10✔
1877
                        DISPATCH();
30✔
1878
                    }
27,900✔
1879

1880
                    TARGET(CALL_SYMBOL)
1881
                    {
1882
                        UNPACK_ARGS();
27,900✔
1883
                        call(context, secondary_arg, loadSymbol(primary_arg, context));
27,900✔
1884
                        if (!m_running)
27,898✔
1885
                            GOTO_HALT();
×
1886
                        DISPATCH();
27,898✔
1887
                    }
109,875✔
1888

1889
                    TARGET(CALL_CURRENT_PAGE)
1890
                    {
1891
                        UNPACK_ARGS();
109,875✔
1892
                        context.last_symbol = primary_arg;
109,875✔
1893
                        call(context, secondary_arg, /* function_ptr= */ nullptr, /* or_address= */ static_cast<PageAddr_t>(context.pp));
109,875✔
1894
                        if (!m_running)
109,874✔
1895
                            GOTO_HALT();
×
1896
                        DISPATCH();
109,874✔
1897
                    }
2,953✔
1898

1899
                    TARGET(GET_FIELD_FROM_SYMBOL)
1900
                    {
1901
                        UNPACK_ARGS();
2,953✔
1902
                        push(getField(loadSymbol(primary_arg, context), secondary_arg, context), context);
2,953✔
1903
                        DISPATCH();
2,953✔
1904
                    }
842✔
1905

1906
                    TARGET(GET_FIELD_FROM_SYMBOL_INDEX)
1907
                    {
1908
                        UNPACK_ARGS();
842✔
1909
                        push(getField(loadSymbolFromIndex(primary_arg, context), secondary_arg, context), context);
842✔
1910
                        DISPATCH();
840✔
1911
                    }
16,199✔
1912

1913
                    TARGET(AT_SYM_SYM)
1914
                    {
1915
                        UNPACK_ARGS();
16,199✔
1916
                        push(helper::at(*loadSymbol(primary_arg, context), *loadSymbol(secondary_arg, context), *this), context);
16,199✔
1917
                        DISPATCH();
16,199✔
1918
                    }
49✔
1919

1920
                    TARGET(AT_SYM_INDEX_SYM_INDEX)
1921
                    {
1922
                        UNPACK_ARGS();
49✔
1923
                        push(helper::at(*loadSymbolFromIndex(primary_arg, context), *loadSymbolFromIndex(secondary_arg, context), *this), context);
49✔
1924
                        DISPATCH();
49✔
1925
                    }
1,044✔
1926

1927
                    TARGET(AT_SYM_INDEX_CONST)
1928
                    {
1929
                        UNPACK_ARGS();
1,044✔
1930
                        push(helper::at(*loadSymbolFromIndex(primary_arg, context), *loadConstAsPtr(secondary_arg), *this), context);
1,044✔
1931
                        DISPATCH();
1,042✔
1932
                    }
2✔
1933

1934
                    TARGET(CHECK_TYPE_OF)
1935
                    {
1936
                        UNPACK_ARGS();
2✔
1937
                        const Value* sym = loadSymbol(primary_arg, context);
2✔
1938
                        const Value* cst = loadConstAsPtr(secondary_arg);
2✔
1939
                        push(
2✔
1940
                            cst->valueType() == ValueType::String &&
4✔
1941
                                    std::to_string(sym->valueType()) == cst->string()
2✔
1942
                                ? Builtins::trueSym
1943
                                : Builtins::falseSym,
1944
                            context);
2✔
1945
                        DISPATCH();
2✔
1946
                    }
81✔
1947

1948
                    TARGET(CHECK_TYPE_OF_BY_INDEX)
1949
                    {
1950
                        UNPACK_ARGS();
81✔
1951
                        const Value* sym = loadSymbolFromIndex(primary_arg, context);
81✔
1952
                        const Value* cst = loadConstAsPtr(secondary_arg);
81✔
1953
                        push(
81✔
1954
                            cst->valueType() == ValueType::String &&
162✔
1955
                                    std::to_string(sym->valueType()) == cst->string()
81✔
1956
                                ? Builtins::trueSym
1957
                                : Builtins::falseSym,
1958
                            context);
81✔
1959
                        DISPATCH();
81✔
1960
                    }
1,921✔
1961

1962
                    TARGET(APPEND_IN_PLACE_SYM)
1963
                    {
1964
                        UNPACK_ARGS();
1,921✔
1965
                        listAppendInPlace(loadSymbol(primary_arg, context), secondary_arg, context);
1,921✔
1966
                        DISPATCH();
1,921✔
1967
                    }
14✔
1968

1969
                    TARGET(APPEND_IN_PLACE_SYM_INDEX)
1970
                    {
1971
                        UNPACK_ARGS();
14✔
1972
                        listAppendInPlace(loadSymbolFromIndex(primary_arg, context), secondary_arg, context);
14✔
1973
                        DISPATCH();
13✔
1974
                    }
123✔
1975

1976
                    TARGET(STORE_LEN)
1977
                    {
1978
                        UNPACK_ARGS();
123✔
1979
                        {
1980
                            Value* a = loadSymbolFromIndex(primary_arg, context);
123✔
1981
                            Value len;
123✔
1982
                            if (a->valueType() == ValueType::List)
123✔
1983
                                len = Value(static_cast<int>(a->constList().size()));
43✔
1984
                            else if (a->valueType() == ValueType::String)
80✔
1985
                                len = Value(static_cast<int>(a->string().size()));
79✔
1986
                            else
1987
                                throw types::TypeCheckingError(
2✔
1988
                                    "len",
1✔
1989
                                    { { types::Contract { { types::Typedef("value", ValueType::List) } },
2✔
1990
                                        types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
1991
                                    { *a });
1✔
1992
                            store(secondary_arg, &len, context);
122✔
1993
                        }
123✔
1994
                        DISPATCH();
122✔
1995
                    }
9,205✔
1996

1997
                    TARGET(LT_LEN_SYM_JUMP_IF_FALSE)
1998
                    {
1999
                        UNPACK_ARGS();
9,205✔
2000
                        {
2001
                            const Value* sym = loadSymbol(primary_arg, context);
9,205✔
2002
                            Value size;
9,205✔
2003

2004
                            if (sym->valueType() == ValueType::List)
9,205✔
2005
                                size = Value(static_cast<int>(sym->constList().size()));
3,534✔
2006
                            else if (sym->valueType() == ValueType::String)
5,671✔
2007
                                size = Value(static_cast<int>(sym->string().size()));
5,670✔
2008
                            else
2009
                                throw types::TypeCheckingError(
2✔
2010
                                    "len",
1✔
2011
                                    { { types::Contract { { types::Typedef("value", ValueType::List) } },
2✔
2012
                                        types::Contract { { types::Typedef("value", ValueType::String) } } } },
1✔
2013
                                    { *sym });
1✔
2014

2015
                            if (!(*popAndResolveAsPtr(context) < size))
9,204✔
2016
                                jump(secondary_arg, context);
1,200✔
2017
                        }
9,205✔
2018
                        DISPATCH();
9,204✔
2019
                    }
521✔
2020

2021
                    TARGET(MUL_BY)
2022
                    {
2023
                        UNPACK_ARGS();
521✔
2024
                        {
2025
                            Value* var = loadSymbol(primary_arg, context);
521✔
2026
                            const int other = static_cast<int>(secondary_arg) - 2048;
521✔
2027

2028
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
2029
                            if (var->valueType() == ValueType::Reference)
521✔
2030
                                var = var->reference();
×
2031

2032
                            if (var->valueType() == ValueType::Number)
521✔
2033
                                push(Value(var->number() * other), context);
520✔
2034
                            else
2035
                                throw types::TypeCheckingError(
2✔
2036
                                    "*",
1✔
2037
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
2038
                                    { *var, Value(other) });
1✔
2039
                        }
2040
                        DISPATCH();
520✔
2041
                    }
36✔
2042

2043
                    TARGET(MUL_BY_INDEX)
2044
                    {
2045
                        UNPACK_ARGS();
36✔
2046
                        {
2047
                            Value* var = loadSymbolFromIndex(primary_arg, context);
36✔
2048
                            const int other = static_cast<int>(secondary_arg) - 2048;
36✔
2049

2050
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
2051
                            if (var->valueType() == ValueType::Reference)
36✔
2052
                                var = var->reference();
×
2053

2054
                            if (var->valueType() == ValueType::Number)
36✔
2055
                                push(Value(var->number() * other), context);
35✔
2056
                            else
2057
                                throw types::TypeCheckingError(
2✔
2058
                                    "*",
1✔
2059
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
2060
                                    { *var, Value(other) });
1✔
2061
                        }
2062
                        DISPATCH();
35✔
2063
                    }
1✔
2064

2065
                    TARGET(MUL_SET_VAL)
2066
                    {
2067
                        UNPACK_ARGS();
1✔
2068
                        {
2069
                            Value* var = loadSymbol(primary_arg, context);
1✔
2070
                            const int other = static_cast<int>(secondary_arg) - 2048;
1✔
2071

2072
                            // use internal reference, shouldn't break anything so far, unless it's already a ref
2073
                            if (var->valueType() == ValueType::Reference)
1✔
2074
                                var = var->reference();
×
2075

2076
                            if (var->valueType() == ValueType::Number)
1✔
2077
                            {
2078
                                auto val = Value(var->number() * other);
×
2079
                                setVal(primary_arg, &val, context);
×
2080
                            }
×
2081
                            else
2082
                                throw types::TypeCheckingError(
2✔
2083
                                    "*",
1✔
2084
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
2085
                                    { *var, Value(other) });
1✔
2086
                        }
2087
                        DISPATCH();
×
2088
                    }
1,109✔
2089

2090
                    TARGET(FUSED_MATH)
2091
                    {
2092
                        const auto op1 = static_cast<Instruction>(padding),
1,109✔
2093
                                   op2 = static_cast<Instruction>((arg & 0xff00) >> 8),
1,109✔
2094
                                   op3 = static_cast<Instruction>(arg & 0x00ff);
1,109✔
2095
                        const std::size_t arg_count = (op1 != NOP) + (op2 != NOP) + (op3 != NOP);
1,109✔
2096

2097
                        const Value* d = popAndResolveAsPtr(context);
1,109✔
2098
                        const Value* c = popAndResolveAsPtr(context);
1,109✔
2099
                        const Value* b = popAndResolveAsPtr(context);
1,109✔
2100

2101
                        if (d->valueType() != ValueType::Number || c->valueType() != ValueType::Number)
1,109✔
2102
                            throw types::TypeCheckingError(
2✔
2103
                                helper::mathInstToStr(op1),
1✔
2104
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
2105
                                { *c, *d });
1✔
2106

2107
                        double temp = helper::doMath(c->number(), d->number(), op1);
1,108✔
2108
                        if (b->valueType() != ValueType::Number)
1,108✔
2109
                            throw types::TypeCheckingError(
4✔
2110
                                helper::mathInstToStr(op2),
2✔
2111
                                { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
2✔
2112
                                { *b, Value(temp) });
2✔
2113
                        temp = helper::doMath(b->number(), temp, op2);
1,106✔
2114

2115
                        if (arg_count == 2)
1,105✔
2116
                            push(Value(temp), context);
1,068✔
2117
                        else if (arg_count == 3)
37✔
2118
                        {
2119
                            const Value* a = popAndResolveAsPtr(context);
37✔
2120
                            if (a->valueType() != ValueType::Number)
37✔
2121
                                throw types::TypeCheckingError(
2✔
2122
                                    helper::mathInstToStr(op3),
1✔
2123
                                    { { types::Contract { { types::Typedef("a", ValueType::Number), types::Typedef("b", ValueType::Number) } } } },
1✔
2124
                                    { *a, Value(temp) });
1✔
2125

2126
                            temp = helper::doMath(a->number(), temp, op3);
36✔
2127
                            push(Value(temp), context);
36✔
2128
                        }
36✔
2129
                        else
2130
                            throw Error(
×
2131
                                fmt::format(
×
2132
                                    "FUSED_MATH got {} arguments, expected 2 or 3. Arguments: {:x}{:x}{:x}. There is a bug in the codegen!",
×
2133
                                    arg_count, static_cast<uint8_t>(op1), static_cast<uint8_t>(op2), static_cast<uint8_t>(op3)));
×
2134
                        DISPATCH();
1,104✔
2135
                    }
2136
#pragma endregion
2137
                }
90✔
2138
#if ARK_USE_COMPUTED_GOTOS
2139
            dispatch_end:
2140
                do
90✔
2141
                {
2142
                } while (false);
90✔
2143
#endif
2144
            }
2145
        }
230✔
2146
        catch (const Error& e)
2147
        {
2148
            if (fail_with_exception)
97✔
2149
            {
2150
                std::stringstream stream;
97✔
2151
                backtrace(context, stream, /* colorize= */ false);
97✔
2152
                // It's important we have an Ark::Error here, as the constructor for NestedError
2153
                // does more than just aggregate error messages, hence the code duplication.
2154
                throw NestedError(e, stream.str(), *this);
97✔
2155
            }
97✔
2156
            else
2157
                showBacktraceWithException(Error(e.details(/* colorize= */ true, *this)), context);
×
2158
        }
187✔
2159
        catch (const std::exception& e)
2160
        {
2161
            if (fail_with_exception)
43✔
2162
            {
2163
                std::stringstream stream;
43✔
2164
                backtrace(context, stream, /* colorize= */ false);
43✔
2165
                throw NestedError(e, stream.str());
43✔
2166
            }
43✔
2167
            else
2168
                showBacktraceWithException(e, context);
×
2169
        }
140✔
2170
        catch (...)
2171
        {
2172
            if (fail_with_exception)
×
2173
                throw;
×
2174

2175
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
2176
            throw;
2177
#endif
2178
            fmt::println("Unknown error");
×
2179
            backtrace(context);
×
2180
            m_exit_code = 1;
×
2181
        }
183✔
2182

2183
        return m_exit_code;
90✔
2184
    }
280✔
2185

2186
    uint16_t VM::findNearestVariableIdWithValue(const Value& value, ExecutionContext& context) const noexcept
2,056✔
2187
    {
2,056✔
2188
        for (auto& local : std::ranges::reverse_view(context.locals))
2,098,202✔
2189
        {
2190
            if (const auto id = local.idFromValue(value); id < m_state.m_symbols.size())
2,096,146✔
2191
                return id;
2,050✔
2192
        }
2,096,146✔
2193
        return MaxValue16Bits;
6✔
2194
    }
2,056✔
2195

2196
    void VM::throwArityError(std::size_t passed_arg_count, std::size_t expected_arg_count, internal::ExecutionContext& context)
5✔
2197
    {
5✔
2198
        std::vector<std::string> arg_names;
5✔
2199
        arg_names.reserve(expected_arg_count + 1);
5✔
2200
        if (expected_arg_count > 0)
5✔
2201
            arg_names.emplace_back("");  // for formatting, so that we have a space between the function and the args
5✔
2202

2203
        std::size_t index = 0;
5✔
2204
        while (m_state.inst(context.pp, index) == STORE ||
10✔
2205
               m_state.inst(context.pp, index) == STORE_REF)
5✔
2206
        {
2207
            const auto id = static_cast<uint16_t>((m_state.inst(context.pp, index + 2) << 8) + m_state.inst(context.pp, index + 3));
×
2208
            arg_names.push_back(m_state.m_symbols[id]);
×
2209
            index += 4;
×
2210
        }
×
2211
        // we only the blank space for formatting and no arg names, probably because of a CALL_BUILTIN_WITHOUT_RETURN_ADDRESS
2212
        if (arg_names.size() == 1 && index == 0)
5✔
2213
        {
2214
            assert(m_state.inst(context.pp, 0) == CALL_BUILTIN_WITHOUT_RETURN_ADDRESS && "expected a CALL_BUILTIN_WITHOUT_RETURN_ADDRESS instruction or STORE instructions");
2✔
2215
            for (std::size_t i = 0; i < expected_arg_count; ++i)
4✔
2216
                arg_names.push_back(std::string(1, static_cast<char>('a' + i)));
2✔
2217
        }
2✔
2218

2219
        std::vector<std::string> arg_vals;
5✔
2220
        arg_vals.reserve(passed_arg_count + 1);
5✔
2221
        if (passed_arg_count > 0)
5✔
2222
            arg_vals.emplace_back("");  // for formatting, so that we have a space between the function and the args
4✔
2223

2224
        for (std::size_t i = 0; i < passed_arg_count && i + 1 <= context.sp; ++i)
15✔
2225
            // -1 on the stack because we always point to the next available slot
2226
            arg_vals.push_back(context.stack[context.sp - i - 1].toString(*this));
10✔
2227

2228
        // set ip/pp to the callee location so that the error can pinpoint the line
2229
        // where the bad call happened
2230
        if (context.sp >= 2 + passed_arg_count)
5✔
2231
        {
2232
            context.ip = context.stack[context.sp - 1 - passed_arg_count].pageAddr();
5✔
2233
            context.pp = context.stack[context.sp - 2 - passed_arg_count].pageAddr();
5✔
2234
            returnFromFuncCall(context);
5✔
2235
        }
5✔
2236

2237
        std::string function_name = (context.last_symbol < m_state.m_symbols.size())
10✔
2238
            ? m_state.m_symbols[context.last_symbol]
5✔
2239
            : Value(static_cast<PageAddr_t>(context.pp)).toString(*this);
×
2240

2241
        throwVMError(
5✔
2242
            ErrorKind::Arity,
2243
            fmt::format(
10✔
2244
                "When calling `({}{})', received {} argument{}, but expected {}: `({}{})'",
5✔
2245
                function_name,
2246
                fmt::join(arg_vals, " "),
5✔
2247
                passed_arg_count,
2248
                passed_arg_count > 1 ? "s" : "",
5✔
2249
                expected_arg_count,
2250
                function_name,
2251
                fmt::join(arg_names, " ")));
5✔
2252
    }
10✔
2253

2254
    void VM::showBacktraceWithException(const std::exception& e, internal::ExecutionContext& context)
×
2255
    {
×
2256
        std::string text = e.what();
×
2257
        if (!text.empty() && text.back() != '\n')
×
2258
            text += '\n';
×
2259
        fmt::println("{}", text);
×
2260
        backtrace(context);
×
2261
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
2262
        // don't report a "failed" exit code so that the fuzzers can more accurately triage crashes
2263
        m_exit_code = 0;
2264
#else
2265
        m_exit_code = 1;
×
2266
#endif
2267
    }
×
2268

2269
    std::optional<InstLoc> VM::findSourceLocation(const std::size_t ip, const std::size_t pp) const
2,205✔
2270
    {
2,205✔
2271
        std::optional<InstLoc> match = std::nullopt;
2,205✔
2272

2273
        for (const auto location : m_state.m_inst_locations)
11,025✔
2274
        {
2275
            if (location.page_pointer == pp && !match)
8,820✔
2276
                match = location;
2,205✔
2277

2278
            // select the best match: we want to find the location that's nearest our instruction pointer,
2279
            // but not equal to it as the IP will always be pointing to the next instruction,
2280
            // not yet executed. Thus, the erroneous instruction is the previous one.
2281
            if (location.page_pointer == pp && match && location.inst_pointer < ip / 4)
8,820✔
2282
                match = location;
2,381✔
2283

2284
            // early exit because we won't find anything better, as inst locations are ordered by ascending (pp, ip)
2285
            if (location.page_pointer > pp || (location.page_pointer == pp && location.inst_pointer >= ip / 4))
8,820✔
2286
                break;
2,071✔
2287
        }
8,820✔
2288

2289
        return match;
2,205✔
2290
    }
2291

2292
    std::string VM::debugShowSource() const
×
2293
    {
×
2294
        const auto& context = m_execution_contexts.front();
×
2295
        auto maybe_source_loc = findSourceLocation(context->ip, context->pp);
×
2296
        if (maybe_source_loc)
×
2297
        {
2298
            const auto filename = m_state.m_filenames[maybe_source_loc->filename_id];
×
2299
            return fmt::format("{}:{} -- IP: {}, PP: {}", filename, maybe_source_loc->line + 1, maybe_source_loc->inst_pointer, maybe_source_loc->page_pointer);
×
2300
        }
×
2301
        return "No source location found";
×
2302
    }
×
2303

2304
    void VM::backtrace(ExecutionContext& context, std::ostream& os, const bool colorize)
140✔
2305
    {
140✔
2306
        const std::size_t saved_ip = context.ip;
140✔
2307
        const std::size_t saved_pp = context.pp;
140✔
2308
        const uint16_t saved_sp = context.sp;
140✔
2309
        constexpr std::size_t max_consecutive_traces = 7;
140✔
2310

2311
        const auto maybe_location = findSourceLocation(context.ip, context.pp);
140✔
2312
        if (maybe_location)
140✔
2313
        {
2314
            const auto filename = m_state.m_filenames[maybe_location->filename_id];
140✔
2315

2316
            if (Utils::fileExists(filename))
140✔
2317
                Diagnostics::makeContext(
276✔
2318
                    Diagnostics::ErrorLocation {
276✔
2319
                        .filename = filename,
138✔
2320
                        .start = FilePos { .line = maybe_location->line, .column = 0 },
138✔
2321
                        .end = std::nullopt },
138✔
2322
                    os,
138✔
2323
                    /* maybe_context= */ std::nullopt,
138✔
2324
                    /* colorize= */ colorize);
138✔
2325
            fmt::println(os, "");
140✔
2326
        }
140✔
2327

2328
        if (context.fc > 1)
140✔
2329
        {
2330
            // display call stack trace
2331
            const ScopeView old_scope = context.locals.back();
9✔
2332

2333
            std::string previous_trace;
9✔
2334
            std::size_t displayed_traces = 0;
9✔
2335
            std::size_t consecutive_similar_traces = 0;
9✔
2336

2337
            while (context.fc != 0 && context.pp != 0)
2,065✔
2338
            {
2339
                const auto maybe_call_loc = findSourceLocation(context.ip, context.pp);
2,056✔
2340
                const auto loc_as_text = maybe_call_loc ? fmt::format(" ({}:{})", m_state.m_filenames[maybe_call_loc->filename_id], maybe_call_loc->line + 1) : "";
2,056✔
2341

2342
                const uint16_t id = findNearestVariableIdWithValue(
2,056✔
2343
                    Value(static_cast<PageAddr_t>(context.pp)),
2,056✔
2344
                    context);
2,056✔
2345
                const std::string& func_name = (id < m_state.m_symbols.size()) ? m_state.m_symbols[id] : "???";
2,056✔
2346

2347
                if (func_name + loc_as_text != previous_trace)
2,056✔
2348
                {
2349
                    fmt::println(
20✔
2350
                        os,
10✔
2351
                        "[{:4}] In function `{}'{}",
10✔
2352
                        fmt::styled(context.fc, colorize ? fmt::fg(fmt::color::cyan) : fmt::text_style()),
10✔
2353
                        fmt::styled(func_name, colorize ? fmt::fg(fmt::color::green) : fmt::text_style()),
10✔
2354
                        loc_as_text);
2355
                    previous_trace = func_name + loc_as_text;
10✔
2356
                    ++displayed_traces;
10✔
2357
                    consecutive_similar_traces = 0;
10✔
2358
                }
10✔
2359
                else if (consecutive_similar_traces == 0)
2,046✔
2360
                {
2361
                    fmt::println(os, "       ...");
1✔
2362
                    ++consecutive_similar_traces;
1✔
2363
                }
1✔
2364

2365
                const Value* ip;
2,056✔
2366
                do
6,261✔
2367
                {
2368
                    ip = popAndResolveAsPtr(context);
6,261✔
2369
                } while (ip->valueType() != ValueType::InstPtr);
6,261✔
2370

2371
                context.ip = ip->pageAddr();
2,056✔
2372
                context.pp = pop(context)->pageAddr();
2,056✔
2373
                returnFromFuncCall(context);
2,056✔
2374

2375
                if (displayed_traces > max_consecutive_traces)
2,056✔
2376
                {
2377
                    fmt::println(os, "       ...");
×
2378
                    break;
×
2379
                }
2380
            }
2,056✔
2381

2382
            if (context.pp == 0)
9✔
2383
            {
2384
                const auto maybe_call_loc = findSourceLocation(context.ip, context.pp);
9✔
2385
                const auto loc_as_text = maybe_call_loc ? fmt::format(" ({}:{})", m_state.m_filenames[maybe_call_loc->filename_id], maybe_call_loc->line + 1) : "";
9✔
2386
                fmt::println(os, "[{:4}] In global scope{}", fmt::styled(context.fc, colorize ? fmt::fg(fmt::color::cyan) : fmt::text_style()), loc_as_text);
9✔
2387
            }
9✔
2388

2389
            // display variables values in the current scope
2390
            fmt::println(os, "\nCurrent scope variables values:");
9✔
2391
            for (std::size_t i = 0, size = old_scope.size(); i < size; ++i)
10✔
2392
            {
2393
                fmt::println(
2✔
2394
                    os,
1✔
2395
                    "{} = {}",
1✔
2396
                    fmt::styled(m_state.m_symbols[old_scope.atPos(i).first], colorize ? fmt::fg(fmt::color::cyan) : fmt::text_style()),
1✔
2397
                    old_scope.atPos(i).second.toString(*this));
1✔
2398
            }
1✔
2399
        }
9✔
2400

2401
        fmt::println(
280✔
2402
            os,
140✔
2403
            "At IP: {}, PP: {}, SP: {}",
140✔
2404
            // dividing by 4 because the instructions are actually on 4 bytes
2405
            fmt::styled(saved_ip / 4, colorize ? fmt::fg(fmt::color::cyan) : fmt::text_style()),
140✔
2406
            fmt::styled(saved_pp, colorize ? fmt::fg(fmt::color::green) : fmt::text_style()),
140✔
2407
            fmt::styled(saved_sp, colorize ? fmt::fg(fmt::color::yellow) : fmt::text_style()));
140✔
2408
    }
140✔
2409
}
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