• Home
  • Features
  • Pricing
  • Docs
  • Announcements
  • Sign In

JuliaLang / julia / #38011

17 Feb 2025 06:24AM UTC coverage: 20.248% (-5.6%) from 25.839%
#38011

push

local

web-flow
bpart: Track whether any binding replacement has happened in image modules (#57433)

This implements the optimization proposed in #57426 by keeping track of
whether any bindings were replaced in image modules (excluding `Main` as
facilitated by #57426). In addition, we augment serialization to keep
track of whether a method body contains any GlobalRefs that point to a
loaded (system or package) image. If both of these flags are true, we
can skip scanning the body of the method, since we know that we neither
need to add any additional backedges nor were any of the referenced
bindings invalidated. The performance impact on end-to-end load time is
small, but measurable. Overall `@time using ModelingToolkit`
consistently improves about 5% using this PR. However, I should note
that using time is still about 40% slower than 1.11. This is not
necessarily an Apples-to-Apples comparison as there were substantial
other changes on 1.12 (as well as current load-time-tunings targeting
older versions), but I wanted to put the number context.

2 of 15 new or added lines in 5 files covered. (13.33%)

2655 existing lines in 108 files now uncovered.

9867 of 48731 relevant lines covered (20.25%)

107722.08 hits per line

Source File
Press 'n' to go to next uncovered line, 'b' for previous

27.39
/stdlib/Serialization/src/Serialization.jl
1
# This file is a part of Julia. License is MIT: https://julialang.org/license
2

3
"""
4
Provide serialization of Julia objects via the functions
5
* [`serialize`](@ref)
6
* [`deserialize`](@ref)
7
"""
8
module Serialization
9

10
import Base: Bottom, unsafe_convert
11
import Core: svec, SimpleVector
12
using Base: unaliascopy, unwrap_unionall, require_one_based_indexing, ntupleany
13
using Core.IR
14

15
export serialize, deserialize, AbstractSerializer, Serializer
16

17
abstract type AbstractSerializer end
18

19
mutable struct Serializer{I<:IO} <: AbstractSerializer
20
    io::I
21
    counter::Int
22
    table::IdDict{Any,Any}
23
    pending_refs::Vector{Int}
24
    known_object_data::Dict{UInt64,Any}
25
    version::Int
26
    Serializer{I}(io::I) where I<:IO = new(io, 0, IdDict(), Int[], Dict{UInt64,Any}(), ser_version)
×
27
end
28

29
Serializer(io::IO) = Serializer{typeof(io)}(io)
×
30

31
## serializing values ##
32

33
const n_int_literals = 33
34
const n_reserved_slots = 24
35
const n_reserved_tags = 8
36

37
const TAGS = Any[
38
    Symbol, Int8, UInt8, Int16, UInt16, Int32, UInt32, Int64, UInt64, Int128, UInt128,
39
    Float16, Float32, Float64, Char, DataType, Union, UnionAll, Core.TypeName, Tuple,
40
    Array, Expr, LineNumberNode, :__LabelNode__, GotoNode, QuoteNode, CodeInfo, TypeVar,
41
    Core.Box, Core.MethodInstance, Module, Task, String, SimpleVector, Method,
42
    GlobalRef, SlotNumber, Const, NewvarNode, SSAValue,
43

44
    # dummy entries for tags that don't correspond directly to types
45
    Symbol, # UNDEFREF_TAG
46
    Symbol, # BACKREF_TAG
47
    Symbol, # LONGBACKREF_TAG
48
    Symbol, # SHORTBACKREF_TAG
49
    Symbol, # LONGTUPLE_TAG
50
    Symbol, # LONGSYMBOL_TAG
51
    Symbol, # LONGEXPR_TAG
52
    Symbol, # LONGSTRING_TAG
53
    Symbol, # SHORTINT64_TAG
54
    Symbol, # FULL_DATATYPE_TAG
55
    Symbol, # WRAPPER_DATATYPE_TAG
56
    Symbol, # OBJECT_TAG
57
    Symbol, # REF_OBJECT_TAG
58
    Symbol, # FULL_GLOBALREF_TAG
59
    Symbol, # HEADER_TAG
60
    Symbol, # IDDICT_TAG
61
    Symbol, # SHARED_REF_TAG
62
    ReturnNode, GotoIfNot,
63
    fill(Symbol, n_reserved_tags)...,
64

65
    (), Bool, Any, Bottom, Core.TypeofBottom, Type, svec(), Tuple{}, false, true, nothing,
66
    :Any, :Array, :TypeVar, :Box, :Tuple, :Ptr, :return, :call, Symbol("::"), :Function,
67
    :(=), :(==), :(===), :gotoifnot, :A, :B, :C, :M, :N, :T, :S, :X, :Y, :a, :b, :c, :d, :e, :f,
68
    :g, :h, :i, :j, :k, :l, :m, :n, :o, :p, :q, :r, :s, :t, :u, :v, :w, :x, :y, :z, :add_int,
69
    :sub_int, :mul_int, :add_float, :sub_float, :new, :mul_float, :bitcast, :start, :done, :next,
70
    :indexed_iterate, :getfield, :meta, :eq_int, :slt_int, :sle_int, :ne_int, :push_loc, :pop_loc,
71
    :pop, :arrayset, :arrayref, :apply_type, :inbounds, :getindex, :setindex!, :Core, :!, :+,
72
    :Base, :static_parameter, :convert, :colon, Symbol("#self#"), Symbol("#temp#"), :tuple, Symbol(""),
73

74
    fill(:_reserved_, n_reserved_slots)...,
75

76
    (Int32(0):Int32(n_int_literals-1))...,
77
    (Int64(0):Int64(n_int_literals-1))...
78
]
79

80
const NTAGS = length(TAGS)
81
@assert NTAGS == 255
82

83
const ser_version = 30 # do not make changes without bumping the version #!
84

85
format_version(::AbstractSerializer) = ser_version
×
86
format_version(s::Serializer) = s.version
×
87

88
function sertag(@nospecialize(v))
89
    # NOTE: we use jl_value_ptr directly since we know at least one of the arguments
90
    # in the comparison below is a singleton.
91
    ptr = ccall(:jl_value_ptr, Ptr{Cvoid}, (Any,), v)
200✔
92
    ptags = convert(Ptr{Ptr{Cvoid}}, pointer(TAGS))
200✔
93
    # note: constant ints & reserved slots never returned here
94
    @inbounds for i in 1:(NTAGS-(n_reserved_slots+2*n_int_literals))
7,122✔
95
        ptr == unsafe_load(ptags,i) && return i%Int32
26,078✔
96
    end
51,866✔
97
    return Int32(-1)
110✔
98
end
99
desertag(i::Int32) = @inbounds(TAGS[i])
184✔
100

101
# tags >= this just represent themselves, their whole representation is 1 byte
102
const VALUE_TAGS = sertag(())
103
const ZERO32_TAG = Int32(NTAGS-(2*n_int_literals-1))
104
const ZERO64_TAG = Int64(NTAGS-(n_int_literals-1))
105
const TRUE_TAG = sertag(true)
106
const FALSE_TAG = sertag(false)
107
const EMPTYTUPLE_TAG = sertag(())
108
const TUPLE_TAG = sertag(Tuple)
109
const SIMPLEVECTOR_TAG = sertag(SimpleVector)
110
const SYMBOL_TAG = sertag(Symbol)
111
const INT8_TAG = sertag(Int8)
112
const ARRAY_TAG = findfirst(==(Array), TAGS)%Int32
113
const EXPR_TAG = sertag(Expr)
114
const MODULE_TAG = sertag(Module)
115
const METHODINSTANCE_TAG = sertag(Core.MethodInstance)
116
const METHOD_TAG = sertag(Method)
117
const TASK_TAG = sertag(Task)
118
const DATATYPE_TAG = sertag(DataType)
119
const TYPENAME_TAG = sertag(Core.TypeName)
120
const INT32_TAG = sertag(Int32)
121
const INT64_TAG = sertag(Int64)
122
const GLOBALREF_TAG = sertag(GlobalRef)
123
const BOTTOM_TAG = sertag(Bottom)
124
const UNIONALL_TAG = sertag(UnionAll)
125
const STRING_TAG = sertag(String)
126
const o0 = sertag(SSAValue)
127
const UNDEFREF_TAG         = Int32(o0+1)
128
const BACKREF_TAG          = Int32(o0+2)
129
const LONGBACKREF_TAG      = Int32(o0+3)
130
const SHORTBACKREF_TAG     = Int32(o0+4)
131
const LONGTUPLE_TAG        = Int32(o0+5)
132
const LONGSYMBOL_TAG       = Int32(o0+6)
133
const LONGEXPR_TAG         = Int32(o0+7)
134
const LONGSTRING_TAG       = Int32(o0+8)
135
const SHORTINT64_TAG       = Int32(o0+9)
136
const FULL_DATATYPE_TAG    = Int32(o0+10)
137
const WRAPPER_DATATYPE_TAG = Int32(o0+11)
138
const OBJECT_TAG           = Int32(o0+12)
139
const REF_OBJECT_TAG       = Int32(o0+13)
140
const FULL_GLOBALREF_TAG   = Int32(o0+14)
141
const HEADER_TAG           = Int32(o0+15)
142
const IDDICT_TAG           = Int32(o0+16)
143
const SHARED_REF_TAG       = Int32(o0+17)
144

145
writetag(s::IO, tag) = (write(s, UInt8(tag)); nothing)
234✔
146

147
function write_as_tag(s::IO, tag)
148
    tag < VALUE_TAGS && write(s, UInt8(0))
100✔
149
    write(s, UInt8(tag))
100✔
150
    nothing
100✔
151
end
152

153
# cycle handling
154
function serialize_cycle(s::AbstractSerializer, @nospecialize(x))
74✔
155
    offs = get(s.table, x, -1)::Int
74✔
156
    if offs != -1
74✔
157
        if offs <= typemax(UInt16)
10✔
158
            writetag(s.io, SHORTBACKREF_TAG)
10✔
159
            write(s.io, UInt16(offs))
10✔
160
        elseif offs <= typemax(Int32)
×
161
            writetag(s.io, BACKREF_TAG)
×
162
            write(s.io, Int32(offs))
×
163
        else
164
            writetag(s.io, LONGBACKREF_TAG)
×
165
            write(s.io, Int64(offs))
×
166
        end
167
        return true
10✔
168
    end
169
    s.table[x] = s.counter
64✔
170
    s.counter += 1
64✔
171
    return false
64✔
172
end
173

174
function serialize_cycle_header(s::AbstractSerializer, @nospecialize(x))
×
175
    serialize_cycle(s, x) && return true
×
176
    serialize_type(s, typeof(x), true)
×
177
    return false
×
178
end
179

180
function reset_state(s::AbstractSerializer)
40✔
181
    s.counter = 0
40✔
182
    empty!(s.table)
40✔
183
    empty!(s.pending_refs)
40✔
184
    s
40✔
185
end
186

187
serialize(s::AbstractSerializer, x::Bool) = x ? writetag(s.io, TRUE_TAG) :
8✔
188
                                                writetag(s.io, FALSE_TAG)
189

190
serialize(s::AbstractSerializer, p::Ptr) = serialize_any(s, oftype(p, C_NULL))
×
191

192
serialize(s::AbstractSerializer, ::Tuple{}) = writetag(s.io, EMPTYTUPLE_TAG)
26✔
193

194
function serialize(s::AbstractSerializer, t::Tuple)
8✔
195
    l = length(t)
8✔
196
    if l <= NTAGS
8✔
197
        writetag(s.io, TUPLE_TAG)
8✔
198
        write(s.io, UInt8(l))
8✔
199
    else
200
        writetag(s.io, LONGTUPLE_TAG)
×
201
        write(s.io, Int32(l))
×
202
    end
203
    for x in t
8✔
204
        serialize(s, x)
16✔
205
    end
12✔
206
end
207

208
function serialize(s::AbstractSerializer, v::SimpleVector)
×
209
    writetag(s.io, SIMPLEVECTOR_TAG)
×
210
    write(s.io, Int32(length(v)))
×
211
    for x in v
×
212
        serialize(s, x)
×
213
    end
×
214
end
215

216
function serialize(s::AbstractSerializer, x::Symbol)
66✔
217
    tag = sertag(x)
10,718✔
218
    if tag > 0
66✔
219
        return write_as_tag(s.io, tag)
26✔
220
    end
221
    pname = unsafe_convert(Ptr{UInt8}, x)
40✔
222
    len = Int(ccall(:strlen, Csize_t, (Cstring,), pname))
40✔
223
    if len > 7
40✔
224
        serialize_cycle(s, x) && return
24✔
225
    end
226
    if len <= NTAGS
40✔
227
        writetag(s.io, SYMBOL_TAG)
40✔
228
        write(s.io, UInt8(len))
40✔
229
    else
230
        writetag(s.io, LONGSYMBOL_TAG)
×
231
        write(s.io, Int32(len))
×
232
    end
233
    unsafe_write(s.io, pname, len)
40✔
234
    nothing
40✔
235
end
236

237
function serialize_array_data(s::IO, a)
238
    require_one_based_indexing(a)
4✔
239
    isempty(a) && return 0
4✔
240
    if eltype(a) === Bool
4✔
241
        last = a[1]::Bool
×
242
        count = 1
×
243
        for i = 2:length(a)
×
244
            if a[i]::Bool != last || count == 127
×
245
                write(s, UInt8((UInt8(last) << 7) | count))
×
246
                last = a[i]::Bool
×
247
                count = 1
×
248
            else
249
                count += 1
×
250
            end
251
        end
×
252
        write(s, UInt8((UInt8(last) << 7) | count))
×
253
    else
254
        write(s, a)
4✔
255
    end
256
end
257

258
function serialize(s::AbstractSerializer, a::Array)
8✔
259
    serialize_cycle(s, a) && return
8✔
260
    elty = eltype(a)
8✔
261
    writetag(s.io, ARRAY_TAG)
8✔
262
    if elty !== UInt8
8✔
263
        serialize(s, elty)
8✔
264
    end
265
    if ndims(a) != 1
8✔
266
        serialize(s, size(a))
×
267
    else
268
        serialize(s, length(a))
8✔
269
    end
270
    if isbitstype(elty)
8✔
271
        serialize_array_data(s.io, a)
4✔
272
    else
273
        sizehint!(s.table, div(length(a),4))  # prepare for lots of pointers
4✔
274
        @inbounds for i in eachindex(a)
4✔
275
            if isassigned(a, i)
2✔
276
                serialize(s, a[i])
2✔
277
            else
278
                writetag(s.io, UNDEFREF_TAG)
×
279
            end
280
        end
2✔
281
    end
282
end
283

284
function serialize(s::AbstractSerializer, a::SubArray{T,N,A}) where {T,N,A<:Array}
×
285
    # SubArray's copy only selects the relevant data (and reduces the size) but does not
286
    # preserve the type of the argument. This internal function does both:
287
    b = unaliascopy(a)
×
288
    serialize_any(s, b)
×
289
end
290

291
serialize(s::AbstractSerializer, m::GenericMemory) = error("GenericMemory{:atomic} currently cannot be serialized")
×
292
function serialize(s::AbstractSerializer, m::Memory)
×
293
    serialize_cycle_header(s, m) && return
×
294
    serialize(s, length(m))
×
295
    elty = eltype(m)
×
296
    if isbitstype(elty)
×
297
        serialize_array_data(s.io, m)
×
298
    else
299
        sizehint!(s.table, div(length(m),4))  # prepare for lots of pointers
×
300
        @inbounds for i in eachindex(m)
×
301
            if isassigned(m, i)
×
302
                serialize(s, m[i])
×
303
            else
304
                writetag(s.io, UNDEFREF_TAG)
×
305
            end
306
        end
×
307
    end
308
end
309

310
function serialize(s::AbstractSerializer, x::GenericMemoryRef)
×
311
    serialize_type(s, typeof(x))
×
312
    serialize(s, getfield(x, :mem))
×
313
    serialize(s, Base.memoryrefoffset(x))
×
314
end
315

316
function serialize(s::AbstractSerializer, ss::String)
2✔
317
    len = sizeof(ss)
2✔
318
    if len > 7
2✔
319
        serialize_cycle(s, ss) && return
2✔
320
        writetag(s.io, SHARED_REF_TAG)
2✔
321
    end
322
    if len <= NTAGS
2✔
323
        writetag(s.io, STRING_TAG)
2✔
324
        write(s.io, UInt8(len))
2✔
325
    else
326
        writetag(s.io, LONGSTRING_TAG)
×
327
        write(s.io, Int64(len))
×
328
    end
329
    write(s.io, ss)
2✔
330
    nothing
2✔
331
end
332

333
function serialize(s::AbstractSerializer, ss::SubString{String})
×
334
    # avoid saving a copy of the parent string, keeping the type of ss
335
    serialize_any(s, SubString(String(ss)))
×
336
end
337

338
# Don't serialize the pointers
339
function serialize(s::AbstractSerializer, r::Regex)
×
340
    serialize_type(s, typeof(r))
×
341
    serialize(s, r.pattern)
×
342
    serialize(s, r.compile_options)
×
343
    serialize(s, r.match_options)
×
344
end
345

346
function serialize(s::AbstractSerializer, n::BigInt)
×
347
    serialize_type(s, BigInt)
×
348
    serialize(s, string(n, base = 62))
×
349
end
350

351
function serialize(s::AbstractSerializer, ex::Expr)
×
352
    serialize_cycle(s, ex) && return
×
353
    l = length(ex.args)
×
354
    if l <= NTAGS
×
355
        writetag(s.io, EXPR_TAG)
×
356
        write(s.io, UInt8(l))
×
357
    else
358
        writetag(s.io, LONGEXPR_TAG)
×
359
        write(s.io, Int32(l))
×
360
    end
361
    serialize(s, ex.head)
×
362
    for a in ex.args
×
363
        serialize(s, a)
×
364
    end
×
365
end
366

367
function serialize_dict_data(s::AbstractSerializer, d::AbstractDict)
×
368
    write(s.io, Int32(length(d)))
×
369
    for (k,v) in d
×
370
        serialize(s, k)
×
371
        serialize(s, v)
×
372
    end
×
373
end
374

375
function serialize(s::AbstractSerializer, d::Dict)
×
376
    serialize_cycle_header(s, d) && return
×
377
    serialize_dict_data(s, d)
×
378
end
379

380
function serialize(s::AbstractSerializer, d::IdDict)
×
381
    serialize_cycle(s, d) && return
×
382
    writetag(s.io, IDDICT_TAG)
×
383
    serialize_type_data(s, typeof(d))
×
384
    serialize_dict_data(s, d)
×
385
end
386

387
function serialize_mod_names(s::AbstractSerializer, m::Module)
32✔
388
    p = parentmodule(m)
32✔
389
    if p === m || m === Base
50✔
390
        key = Base.root_module_key(m)
30✔
391
        uuid = key.uuid
30✔
392
        serialize(s, uuid === nothing ? nothing : uuid.value)
34✔
393
        serialize(s, Symbol(key.name))
30✔
394
    else
395
        serialize_mod_names(s, p)
2✔
396
        serialize(s, nameof(m))
2✔
397
    end
398
end
399

400
function serialize(s::AbstractSerializer, m::Module)
30✔
401
    writetag(s.io, MODULE_TAG)
30✔
402
    serialize_mod_names(s, m)
30✔
403
    writetag(s.io, EMPTYTUPLE_TAG)
30✔
404
end
405

406
# TODO: make this bidirectional, so objects can be sent back via the same key
407
const object_numbers = WeakKeyDict()
408
const obj_number_salt = Ref{UInt64}(0)
409
function object_number(s::AbstractSerializer, @nospecialize(l))
×
410
    global obj_number_salt, object_numbers
×
411
    if haskey(object_numbers, l)
×
412
        return object_numbers[l]
×
413
    end
414
    ln = obj_number_salt[]
×
415
    object_numbers[l] = ln
×
416
    obj_number_salt[] += 1
×
417
    return ln::UInt64
×
418
end
419

420
lookup_object_number(s::AbstractSerializer, n::UInt64) = nothing
×
421

422
remember_object(s::AbstractSerializer, @nospecialize(o), n::UInt64) = nothing
×
423

424
function lookup_object_number(s::Serializer, n::UInt64)
×
425
    return get(s.known_object_data, n, nothing)
×
426
end
427

428
function remember_object(s::Serializer, @nospecialize(o), n::UInt64)
×
429
    s.known_object_data[n] = o
×
430
    return nothing
×
431
end
432

433
function serialize(s::AbstractSerializer, meth::Method)
×
434
    serialize_cycle(s, meth) && return
×
435
    writetag(s.io, METHOD_TAG)
×
436
    write(s.io, object_number(s, meth))
×
437
    serialize(s, meth.module)
×
438
    serialize(s, meth.name)
×
439
    serialize(s, meth.file)
×
440
    serialize(s, meth.line)
×
441
    serialize(s, meth.sig)
×
442
    serialize(s, meth.slot_syms)
×
443
    serialize(s, meth.nargs)
×
444
    serialize(s, meth.isva)
×
445
    serialize(s, meth.is_for_opaque_closure)
×
446
    serialize(s, meth.nospecializeinfer)
×
447
    serialize(s, meth.constprop)
×
448
    serialize(s, meth.purity)
×
449
    if isdefined(meth, :source)
×
450
        serialize(s, Base._uncompressed_ast(meth))
×
451
    else
452
        serialize(s, nothing)
×
453
    end
454
    if isdefined(meth, :generator)
×
455
        serialize(s, meth.generator)
×
456
    else
457
        serialize(s, nothing)
×
458
    end
459
    if isdefined(meth, :recursion_relation)
×
460
        serialize(s, method.recursion_relation)
×
461
    else
462
        serialize(s, nothing)
×
463
    end
464
    if isdefined(meth, :external_mt)
×
465
        error("cannot serialize Method objects with external method tables")
×
466
    end
467
    nothing
×
468
end
469

470
function serialize(s::AbstractSerializer, linfo::Core.MethodInstance)
×
471
    serialize_cycle(s, linfo) && return
×
472
    writetag(s.io, METHODINSTANCE_TAG)
×
473
    serialize(s, nothing)  # for backwards compat
×
474
    serialize(s, linfo.sparam_vals)
×
475
    serialize(s, Any)  # for backwards compat
×
476
    serialize(s, linfo.specTypes)
×
477
    serialize(s, linfo.def)
×
478
    nothing
×
479
end
480

481
function serialize(s::AbstractSerializer, t::Task)
×
482
    serialize_cycle(s, t) && return
×
483
    if istaskstarted(t) && !istaskdone(t)
×
484
        error("cannot serialize a running Task")
×
485
    end
486
    writetag(s.io, TASK_TAG)
×
487
    serialize(s, t.code)
×
488
    serialize(s, t.storage)
×
489
    serialize(s, t.state)
×
490
    if t._isexception && (stk = Base.current_exceptions(t); !isempty(stk))
×
491
        # the exception stack field is hidden inside the task, so if there
492
        # is any information there make a CapturedException from it instead.
493
        # TODO: Handle full exception chain, not just the first one.
494
        serialize(s, CapturedException(stk[1].exception, stk[1].backtrace))
×
495
    else
496
        serialize(s, t.result)
×
497
    end
498
    serialize(s, t._isexception)
×
499
end
500

501
function serialize(s::AbstractSerializer, g::GlobalRef)
×
502
    if (g.mod === __deserialized_types__ ) ||
×
503
        (g.mod === Main && isdefined(g.mod, g.name) && isconst(g.mod, g.name))
504

505
        v = getglobal(g.mod, g.name)
×
506
        unw = unwrap_unionall(v)
×
507
        if isa(unw,DataType) && v === unw.name.wrapper && should_send_whole_type(s, unw)
×
508
            # handle references to types in Main by sending the whole type.
509
            # needed to be able to send nested functions (#15451).
510
            writetag(s.io, FULL_GLOBALREF_TAG)
×
511
            serialize(s, v)
×
512
            return
×
513
        end
514
    end
515
    writetag(s.io, GLOBALREF_TAG)
×
516
    serialize(s, g.mod)
×
517
    serialize(s, g.name)
×
518
end
519

520
function serialize(s::AbstractSerializer, t::Core.TypeName)
×
521
    serialize_cycle(s, t) && return
×
522
    writetag(s.io, TYPENAME_TAG)
×
523
    write(s.io, object_number(s, t))
×
524
    serialize_typename(s, t)
×
525
end
526

527
function serialize_typename(s::AbstractSerializer, t::Core.TypeName)
×
528
    serialize(s, t.name)
×
529
    serialize(s, t.names)
×
530
    primary = unwrap_unionall(t.wrapper)
×
531
    serialize(s, primary.super)
×
532
    serialize(s, primary.parameters)
×
533
    serialize(s, primary.types)
×
534
    serialize(s, Base.issingletontype(primary))
×
535
    serialize(s, t.flags & 0x1 == 0x1) # .abstract
×
536
    serialize(s, t.flags & 0x2 == 0x2) # .mutable
×
537
    serialize(s, Int32(length(primary.types) - t.n_uninitialized))
×
538
    serialize(s, t.max_methods)
×
539
    if isdefined(t, :mt) && t.mt !== Symbol.name.mt
×
540
        serialize(s, t.mt.name)
×
541
        serialize(s, collect(Base.MethodList(t.mt)))
×
542
        serialize(s, t.mt.max_args)
×
543
        kws = collect(methods(Core.kwcall, (Any, t.wrapper, Vararg)))
×
544
        if isempty(kws)
×
545
            writetag(s.io, UNDEFREF_TAG)
×
546
        else
547
            serialize(s, kws)
×
548
        end
549
    else
550
        writetag(s.io, UNDEFREF_TAG)
×
551
    end
552
    nothing
×
553
end
554

555
# decide whether to send all data for a type (instead of just its name)
556
function should_send_whole_type(s, t::DataType)
557
    tn = t.name
40✔
558
    if isdefined(tn, :mt)
40✔
559
        # TODO improve somehow
560
        # send whole type for anonymous functions in Main
561
        name = tn.mt.name
40✔
562
        mod = tn.module
40✔
563
        isanonfunction = mod === Main && # only Main
40✔
564
            t.super === Function && # only Functions
565
            unsafe_load(unsafe_convert(Ptr{UInt8}, tn.name)) == UInt8('#') && # hidden type
566
            (!isdefined(mod, name) || t != typeof(getglobal(mod, name))) # XXX: 95% accurate test for this being an inner function
567
            # TODO: more accurate test? (tn.name !== "#" name)
568
        #TODO: iskw = startswith(tn.name, "#kw#") && ???
569
        #TODO: iskw && return send-as-kwftype
570
        return mod === __deserialized_types__ || isanonfunction
80✔
571
    end
572
    return false
×
573
end
574

575
function serialize_type_data(s, @nospecialize(t::DataType))
40✔
576
    whole = should_send_whole_type(s, t)
80✔
577
    iswrapper = (t === unwrap_unionall(t.name.wrapper))
40✔
578
    if whole && iswrapper
40✔
579
        writetag(s.io, WRAPPER_DATATYPE_TAG)
×
580
        serialize(s, t.name)
×
581
        return
×
582
    end
583
    serialize_cycle(s, t) && return
40✔
584
    if whole
30✔
585
        writetag(s.io, FULL_DATATYPE_TAG)
×
586
        serialize(s, t.name)
×
587
    else
588
        writetag(s.io, DATATYPE_TAG)
30✔
589
        serialize(s, nameof(t))
30✔
590
        serialize(s, parentmodule(t))
30✔
591
    end
592
    if !isempty(t.parameters)
30✔
593
        if iswrapper
20✔
594
            write(s.io, Int32(0))
×
595
        else
596
            write(s.io, Int32(length(t.parameters)))
20✔
597
            for p in t.parameters
40✔
598
                serialize(s, p)
60✔
599
            end
60✔
600
        end
601
    end
602
    nothing
30✔
603
end
604

605
function serialize(s::AbstractSerializer, t::DataType)
48✔
606
    tag = sertag(t)
3,482✔
607
    tag > 0 && return write_as_tag(s.io, tag)
48✔
608
    if t === Tuple
10✔
609
        # `sertag` is not able to find types === to `Tuple` because they
610
        # will not have been hash-consed. Plus `serialize_type_data` does not
611
        # handle this case correctly, since Tuple{} != Tuple. `Tuple` is the
612
        # only type with this property. issue #15849
613
        return write_as_tag(s.io, TUPLE_TAG)
×
614
    end
615
    serialize_type_data(s, t)
10✔
616
end
617

618
function serialize_type(s::AbstractSerializer, @nospecialize(t::DataType), ref::Bool = false)
30✔
619
    tag = sertag(t)
4,980✔
620
    tag > 0 && return writetag(s.io, tag)
30✔
621
    writetag(s.io, ref ? REF_OBJECT_TAG : OBJECT_TAG)
30✔
622
    serialize_type_data(s, t)
30✔
623
end
624

625
function serialize(s::AbstractSerializer, n::Int32)
626
    if 0 <= n <= (n_int_literals-1)
×
627
        write(s.io, UInt8(ZERO32_TAG+n))
×
628
    else
629
        writetag(s.io, INT32_TAG)
×
630
        write(s.io, n)
×
631
    end
632
    nothing
×
633
end
634

635
function serialize(s::AbstractSerializer, n::Int64)
26✔
636
    if 0 <= n <= (n_int_literals-1)
26✔
637
        write(s.io, UInt8(ZERO64_TAG+n))
20✔
638
    elseif typemin(Int32) <= n <= typemax(Int32)
6✔
639
        writetag(s.io, SHORTINT64_TAG)
6✔
640
        write(s.io, Int32(n))
6✔
641
    else
642
        writetag(s.io, INT64_TAG)
×
643
        write(s.io, n)
×
644
    end
645
    nothing
26✔
646
end
647

648
for i in 0:13
649
    tag = Int32(INT8_TAG + i)
650
    ty = TAGS[tag]
651
    (ty === Int32 || ty === Int64) && continue
652
    @eval serialize(s::AbstractSerializer, n::$ty) = (writetag(s.io, $tag); write(s.io, n); nothing)
4✔
653
end
654

655
serialize(s::AbstractSerializer, ::Type{Bottom}) = write_as_tag(s.io, BOTTOM_TAG)
10✔
656

657
function serialize(s::AbstractSerializer, u::UnionAll)
×
658
    writetag(s.io, UNIONALL_TAG)
×
659
    n = 0; t = u
×
660
    while isa(t, UnionAll)
×
661
        t = t.body
×
662
        n += 1
×
663
    end
×
664
    if isa(t, DataType) && t === unwrap_unionall(t.name.wrapper)
×
665
        write(s.io, UInt8(1))
×
666
        write(s.io, Int16(n))
×
667
        serialize(s, t)
×
668
    else
669
        write(s.io, UInt8(0))
×
670
        serialize(s, u.var)
×
671
        serialize(s, u.body)
×
672
    end
673
end
674

675
serialize(s::AbstractSerializer, @nospecialize(x)) = serialize_any(s, x)
56✔
676

677
function serialize(s::AbstractSerializer, x::Core.AddrSpace)
×
678
    serialize_type(s, typeof(x))
×
679
    write(s.io, Core.bitcast(UInt8, x))
×
680
end
681

682
function serialize_any(s::AbstractSerializer, @nospecialize(x))
56✔
683
    tag = sertag(x)
7,008✔
684
    if tag > 0
56✔
685
        return write_as_tag(s.io, tag)
26✔
686
    end
687
    t = typeof(x)::DataType
30✔
688
    if isprimitivetype(t)
30✔
689
        serialize_type(s, t)
×
690
        write(s.io, x)
×
691
    else
692
        if ismutable(x)
30✔
693
            serialize_cycle(s, x) && return
×
694
            serialize_type(s, t, true)
×
695
        else
696
            serialize_type(s, t, false)
30✔
697
        end
698
        nf = nfields(x)
30✔
699
        for i in 1:nf
30✔
700
            if isdefined(x, i)
20✔
701
                serialize(s, getfield(x, i))
20✔
702
            else
703
                writetag(s.io, UNDEFREF_TAG)
×
704
            end
705
        end
20✔
706
    end
707
    nothing
30✔
708
end
709

710
"""
711
    Serialization.writeheader(s::AbstractSerializer)
712

713
Write an identifying header to the specified serializer. The header consists of
714
8 bytes as follows:
715

716
| Offset | Description                                     |
717
|:-------|:------------------------------------------------|
718
|   0    | tag byte (0x37)                                 |
719
|   1-2  | signature bytes "JL"                            |
720
|   3    | protocol version                                |
721
|   4    | bits 0-1: endianness: 0 = little, 1 = big       |
722
|   4    | bits 2-3: platform: 0 = 32-bit, 1 = 64-bit      |
723
|   5-7  | reserved                                        |
724
"""
725
function writeheader(s::AbstractSerializer)
×
726
    io = s.io
×
727
    writetag(io, HEADER_TAG)
×
728
    write(io, "JL")  # magic bytes
×
729
    write(io, UInt8(ser_version))
×
730
    endianness = (ENDIAN_BOM == 0x04030201 ? 0 :
×
731
                  ENDIAN_BOM == 0x01020304 ? 1 :
732
                  error("unsupported endianness in serializer"))
733
    machine = (sizeof(Int) == 4 ? 0 :
×
734
               sizeof(Int) == 8 ? 1 :
735
               error("unsupported word size in serializer"))
736
    write(io, UInt8(endianness) | (UInt8(machine) << 2))
×
737
    write(io, [0x00,0x00,0x00]) # 3 reserved bytes
×
738
    nothing
×
739
end
740

741
function readheader(s::AbstractSerializer)
×
742
    # Tag already read
743
    io = s.io
×
744
    m1 = read(io, UInt8)
×
745
    m2 = read(io, UInt8)
×
746
    if m1 != UInt8('J') || m2 != UInt8('L')
×
747
        error("Unsupported serialization format (got header magic bytes $m1 $m2)")
×
748
    end
749
    version    = read(io, UInt8)
×
750
    flags      = read(io, UInt8)
×
751
    reserved1  = read(io, UInt8)
×
752
    reserved2  = read(io, UInt8)
×
753
    reserved3  = read(io, UInt8)
×
754
    endianflag = flags & 0x3
×
755
    wordflag   = (flags >> 2) & 0x3
×
756
    wordsize = wordflag == 0 ? 4 :
×
757
               wordflag == 1 ? 8 :
758
               error("Unknown word size flag in header")
759
    endian_bom = endianflag == 0 ? 0x04030201 :
×
760
                 endianflag == 1 ? 0x01020304 :
761
                 error("Unknown endianness flag in header")
762
    # Check protocol compatibility.
763
    endian_bom == ENDIAN_BOM  || error("Serialized byte order mismatch ($(repr(endian_bom)))")
×
764
    # We don't check wordsize == sizeof(Int) here, as Int is encoded concretely
765
    # as Int32 or Int64, which should be enough to correctly deserialize a range
766
    # of data structures between Julia versions.
767
    if version > ser_version
×
768
        error("""Cannot read stream serialized with a newer version of Julia.
×
769
                 Got data version $version > current version $ser_version""")
770
    end
771
    s.version = version
×
772
    return
×
773
end
774

775
"""
776
    serialize(stream::IO, value)
777

778
Write an arbitrary value to a stream in an opaque format, such that it can be read back by
779
[`deserialize`](@ref). The read-back value will be as identical as possible to the original,
780
but note that `Ptr` values are serialized as all-zero bit patterns (`NULL`).
781

782
An 8-byte identifying header is written to the stream first. To avoid writing the header,
783
construct a `Serializer` and use it as the first argument to `serialize` instead.
784
See also [`Serialization.writeheader`](@ref).
785

786
The data format can change in minor (1.x) Julia releases, but files written by prior 1.x
787
versions will remain readable. The main exception to this is when the definition of a
788
type in an external package changes. If that occurs, it may be necessary to specify
789
an explicit compatible version of the affected package in your environment.
790
Renaming functions, even private functions, inside packages can also put existing files
791
out of sync. Anonymous functions require special care: because their names are automatically
792
generated, minor code changes can cause them to be renamed.
793
Serializing anonymous functions should be avoided in files intended for long-term storage.
794

795
In some cases, the word size (32- or 64-bit) of the reading and writing machines must match.
796
In rarer cases the OS or architecture must also match, for example when using packages
797
that contain platform-dependent code.
798
"""
799
function serialize(s::IO, x)
×
800
    ss = Serializer(s)
×
801
    writeheader(ss)
×
802
    serialize(ss, x)
×
803
end
804

805
"""
806
    serialize(filename::AbstractString, value)
807

808
Open a file and serialize the given value to it.
809

810
!!! compat "Julia 1.1"
811
    This method is available as of Julia 1.1.
812
"""
813
serialize(filename::AbstractString, x) = open(io->serialize(io, x), filename, "w")
×
814

815
## deserializing values ##
816

817
"""
818
    deserialize(stream)
819

820
Read a value written by [`serialize`](@ref). `deserialize` assumes the binary data read from
821
`stream` is correct and has been serialized by a compatible implementation of [`serialize`](@ref).
822
`deserialize` is designed for simplicity and performance, and so does not validate
823
the data read. Malformed data can result in process termination. The caller must ensure
824
the integrity and correctness of data read from `stream`.
825
"""
826
deserialize(s::IO) = deserialize(Serializer(s))
×
827

828
"""
829
    deserialize(filename::AbstractString)
830

831
Open a file and deserialize its contents.
832

833
!!! compat "Julia 1.1"
834
    This method is available as of Julia 1.1.
835
"""
836
deserialize(filename::AbstractString) = open(deserialize, filename)
×
837

838
function deserialize(s::AbstractSerializer)
272✔
839
    handle_deserialize(s, Int32(read(s.io, UInt8)::UInt8))
292✔
840
end
841

842
function deserialize_cycle(s::AbstractSerializer, @nospecialize(x))
×
843
    slot = pop!(s.pending_refs)
×
844
    s.table[slot] = x
×
845
    nothing
×
846
end
847

848
# optimized version of:
849
#     slot = s.counter; s.counter += 1
850
#     push!(s.pending_refs, slot)
851
#     slot = pop!(s.pending_refs)
852
#     s.table[slot] = x
853
function resolve_ref_immediately(s::AbstractSerializer, @nospecialize(x))
854
    s.table[s.counter] = x
24✔
855
    s.counter += 1
24✔
856
    nothing
24✔
857
end
858

859
function gettable(s::AbstractSerializer, id::Int)
860
    get(s.table, id) do
10✔
861
        errmsg = """Inconsistent Serializer state when deserializing.
×
862
            Attempt to access internal table with key $id failed.
863

864
            This might occur if the Serializer contexts when serializing and deserializing are inconsistent.
865
            In particular, if multiple serialize calls use the same Serializer object then
866
            the corresponding deserialize calls should also use the same Serializer object.
867
        """
868
        error(errmsg)
×
869
    end
870
end
871

872
# deserialize_ is an internal function to dispatch on the tag
873
# describing the serialized representation. the number of
874
# representations is fixed, so deserialize_ does not get extended.
875
function handle_deserialize(s::AbstractSerializer, b::Int32)
354✔
876
    if b == 0
354✔
877
        return desertag(Int32(read(s.io, UInt8)::UInt8))
14✔
878
    end
879
    if b >= VALUE_TAGS
340✔
880
        return desertag(b)
170✔
881
    elseif b == TUPLE_TAG
170✔
882
        return deserialize_tuple(s, Int(read(s.io, UInt8)::UInt8))
8✔
883
    elseif b == SHORTBACKREF_TAG
162✔
884
        id = read(s.io, UInt16)::UInt16
10✔
885
        return gettable(s, Int(id))
10✔
886
    elseif b == BACKREF_TAG
152✔
887
        id = read(s.io, Int32)::Int32
×
888
        return gettable(s, Int(id))
×
889
    elseif b == ARRAY_TAG
152✔
890
        return deserialize_array(s)
8✔
891
    elseif b == DATATYPE_TAG
144✔
892
        return deserialize_datatype(s, false)
30✔
893
    elseif b == FULL_DATATYPE_TAG
114✔
894
        return deserialize_datatype(s, true)
×
895
    elseif b == WRAPPER_DATATYPE_TAG
114✔
896
        tname = deserialize(s)::Core.TypeName
×
897
        return unwrap_unionall(tname.wrapper)
×
898
    elseif b == OBJECT_TAG
114✔
899
        t = deserialize(s)
30✔
900
        if t === Missing
30✔
901
            return missing
×
902
        end
903
        return deserialize(s, t)
30✔
904
    elseif b == REF_OBJECT_TAG
84✔
905
        slot = s.counter; s.counter += 1
×
906
        push!(s.pending_refs, slot)
×
907
        t = deserialize(s)
×
908
        return deserialize(s, t)
×
909
    elseif b == SHARED_REF_TAG
84✔
910
        slot = s.counter; s.counter += 1
2✔
911
        obj = deserialize(s)
2✔
912
        s.table[slot] = obj
2✔
913
        return obj
2✔
914
    elseif b == SYMBOL_TAG
82✔
915
        return deserialize_symbol(s, Int(read(s.io, UInt8)::UInt8))
40✔
916
    elseif b == SHORTINT64_TAG
42✔
917
        return Int64(read(s.io, Int32)::Int32)
6✔
918
    elseif b == EXPR_TAG
36✔
919
        return deserialize_expr(s, Int(read(s.io, UInt8)::UInt8))
×
920
    elseif b == MODULE_TAG
36✔
921
        return deserialize_module(s)
30✔
922
    elseif b == STRING_TAG
6✔
923
        return deserialize_string(s, Int(read(s.io, UInt8)::UInt8))
2✔
924
    elseif b == LONGSTRING_TAG
4✔
925
        return deserialize_string(s, Int(read(s.io, Int64)::Int64))
×
926
    elseif b == SIMPLEVECTOR_TAG
4✔
927
        return deserialize_svec(s)
×
928
    elseif b == GLOBALREF_TAG
4✔
929
        return GlobalRef(deserialize(s)::Module, deserialize(s)::Symbol)
×
930
    elseif b == FULL_GLOBALREF_TAG
4✔
931
        ty = deserialize(s)
×
932
        tn = unwrap_unionall(ty).name
×
933
        return GlobalRef(tn.module, tn.name)
×
934
    elseif b == LONGTUPLE_TAG
4✔
935
        return deserialize_tuple(s, Int(read(s.io, Int32)::Int32))
×
936
    elseif b == LONGEXPR_TAG
4✔
937
        return deserialize_expr(s, Int(read(s.io, Int32)::Int32))
×
938
    elseif b == LONGBACKREF_TAG
4✔
939
        id = read(s.io, Int64)::Int64
×
940
        return gettable(s, Int(id))
×
941
    elseif b == LONGSYMBOL_TAG
4✔
942
        return deserialize_symbol(s, Int(read(s.io, Int32)::Int32))
×
943
    elseif b == HEADER_TAG
4✔
944
        readheader(s)
×
945
        return deserialize(s)
×
946
    elseif b == INT8_TAG
4✔
947
        return read(s.io, Int8)
×
948
    elseif b == INT8_TAG+1
4✔
949
        return read(s.io, UInt8)
×
950
    elseif b == INT8_TAG+2
4✔
951
        return read(s.io, Int16)
×
952
    elseif b == INT8_TAG+3
4✔
953
        return read(s.io, UInt16)
×
954
    elseif b == INT32_TAG
4✔
955
        return read(s.io, Int32)
×
956
    elseif b == INT8_TAG+5
4✔
957
        return read(s.io, UInt32)
×
958
    elseif b == INT64_TAG
4✔
959
        return read(s.io, Int64)
×
960
    elseif b == INT8_TAG+7
4✔
961
        return read(s.io, UInt64)
×
962
    elseif b == INT8_TAG+8
4✔
963
        return read(s.io, Int128)
×
964
    elseif b == INT8_TAG+9
4✔
965
        return read(s.io, UInt128)
4✔
966
    elseif b == INT8_TAG+10
×
967
        return read(s.io, Float16)
×
968
    elseif b == INT8_TAG+11
×
969
        return read(s.io, Float32)
×
970
    elseif b == INT8_TAG+12
×
971
        return read(s.io, Float64)
×
972
    elseif b == INT8_TAG+13
×
973
        return read(s.io, Char)
×
974
    elseif b == IDDICT_TAG
×
975
        slot = s.counter; s.counter += 1
×
976
        push!(s.pending_refs, slot)
×
977
        t = deserialize(s)
×
978
        return deserialize_dict(s, t)
×
979
    end
980
    t = desertag(b)::DataType
×
981
    if ismutabletype(t) && length(t.types) > 0  # manual specialization of fieldcount
×
982
        slot = s.counter; s.counter += 1
×
983
        push!(s.pending_refs, slot)
×
984
    end
985
    return deserialize(s, t)
×
986
end
987

988
function deserialize_symbol(s::AbstractSerializer, len::Int)
40✔
989
    str = Base._string_n(len)
40✔
990
    unsafe_read(s.io, pointer(str), len)
40✔
991
    sym = Symbol(str)
40✔
992
    if len > 7
40✔
993
        resolve_ref_immediately(s, sym)
24✔
994
    end
995
    return sym
40✔
996
end
997

998
deserialize_tuple(s::AbstractSerializer, len) = ntupleany(i->deserialize(s), len)
20✔
999

1000
function deserialize_svec(s::AbstractSerializer)
×
1001
    n = read(s.io, Int32)
×
1002
    svec(Any[ deserialize(s) for i=1:n ]...)
×
1003
end
1004

1005
function deserialize_module(s::AbstractSerializer)
30✔
1006
    mkey = deserialize(s)
30✔
1007
    if isa(mkey, Tuple)
30✔
1008
        # old version, TODO: remove
1009
        if mkey === ()
×
1010
            return Main
×
1011
        end
1012
        m = Base.root_module(mkey[1])
×
1013
        for i = 2:length(mkey)
×
1014
            m = getglobal(m, mkey[i])::Module
×
1015
        end
×
1016
    else
1017
        name = String(deserialize(s)::Symbol)
30✔
1018
        pkg = (mkey === nothing) ? Base.PkgId(name) : Base.PkgId(Base.UUID(mkey), name)
34✔
1019
        m = Base.root_module(pkg)
30✔
1020
        mname = deserialize(s)
30✔
1021
        while mname !== ()
32✔
1022
            m = getglobal(m, mname)::Module
2✔
1023
            mname = deserialize(s)
2✔
1024
        end
2✔
1025
    end
1026
    return m
30✔
1027
end
1028

1029
function deserialize(s::AbstractSerializer, ::Type{Method})
×
1030
    lnumber = read(s.io, UInt64)
×
1031
    meth = lookup_object_number(s, lnumber)
×
1032
    if meth !== nothing
×
1033
        meth = meth::Method
×
1034
        makenew = false
×
1035
    else
1036
        meth = ccall(:jl_new_method_uninit, Ref{Method}, (Any,), Main)
×
1037
        makenew = true
×
1038
    end
1039
    deserialize_cycle(s, meth)
×
1040
    mod = deserialize(s)::Module
×
1041
    name = deserialize(s)::Symbol
×
1042
    file = deserialize(s)::Symbol
×
1043
    line = deserialize(s)::Int32
×
1044
    sig = deserialize(s)::Type
×
1045
    syms = deserialize(s)
×
1046
    if syms isa SimpleVector
×
1047
        # < v1.2
1048
        _ambig = deserialize(s)
×
1049
    else
1050
        slot_syms = syms::String
×
1051
    end
1052
    nargs = deserialize(s)::Int32
×
1053
    isva = deserialize(s)::Bool
×
1054
    is_for_opaque_closure = false
×
1055
    nospecializeinfer = false
×
1056
    constprop = 0x00
×
1057
    purity = 0x0000
×
1058
    template_or_is_opaque = deserialize(s)
×
1059
    if isa(template_or_is_opaque, Bool)
×
1060
        is_for_opaque_closure = template_or_is_opaque
×
1061
        if format_version(s) >= 24
×
1062
            nospecializeinfer = deserialize(s)::Bool
×
1063
        end
1064
        if format_version(s) >= 14
×
1065
            constprop = deserialize(s)::UInt8
×
1066
        end
1067
        if format_version(s) >= 26
×
1068
            purity = deserialize(s)::UInt16
×
1069
        elseif format_version(s) >= 17
×
1070
            purity = UInt16(deserialize(s)::UInt8)
×
1071
        end
1072
        template = deserialize(s)
×
1073
    else
1074
        template = template_or_is_opaque
×
1075
    end
1076
    generator = deserialize(s)
×
1077
    recursion_relation = nothing
×
1078
    if format_version(s) >= 15
×
1079
        recursion_relation = deserialize(s)
×
1080
    end
1081
    if makenew
×
1082
        meth.module = mod
×
1083
        meth.debuginfo = NullDebugInfo
×
1084
        meth.name = name
×
1085
        meth.file = file
×
1086
        meth.line = line
×
1087
        meth.sig = sig
×
1088
        meth.nargs = nargs
×
1089
        meth.isva = isva
×
1090
        meth.is_for_opaque_closure = is_for_opaque_closure
×
1091
        meth.nospecializeinfer = nospecializeinfer
×
1092
        meth.constprop = constprop
×
1093
        meth.purity = purity
×
1094
        if template !== nothing
×
1095
            # TODO: compress template
1096
            template = template::CodeInfo
×
1097
            if format_version(s) < 29
×
1098
                template.nargs = nargs
×
1099
                template.isva = isva
×
1100
            end
1101
            meth.source = template
×
1102
            meth.debuginfo = template.debuginfo
×
1103
            if !@isdefined(slot_syms)
×
1104
                slot_syms = ccall(:jl_compress_argnames, Ref{String}, (Any,), meth.source.slotnames)
×
1105
            end
1106
        end
1107
        meth.slot_syms = slot_syms
×
1108
        if generator !== nothing
×
1109
            meth.generator = generator
×
1110
        end
1111
        if recursion_relation !== nothing
×
1112
            meth.recursion_relation = recursion_relation
×
1113
        end
1114
        if !is_for_opaque_closure
×
1115
            mt = ccall(:jl_method_table_for, Any, (Any,), sig)
×
1116
            if mt !== nothing && nothing === ccall(:jl_methtable_lookup, Any, (Any, Any, UInt), mt, sig, Base.get_world_counter())
×
1117
                ccall(:jl_method_table_insert, Cvoid, (Any, Any, Ptr{Cvoid}), mt, meth, C_NULL)
×
1118
            end
1119
        end
1120
        remember_object(s, meth, lnumber)
×
1121
    end
1122
    return meth
×
1123
end
1124

1125
function deserialize(s::AbstractSerializer, ::Type{Core.MethodInstance})
×
1126
    linfo = ccall(:jl_new_method_instance_uninit, Ref{Core.MethodInstance}, (Ptr{Cvoid},), C_NULL)
×
1127
    deserialize_cycle(s, linfo)
×
1128
    if format_version(s) < 28
×
1129
        tag = Int32(read(s.io, UInt8)::UInt8)
×
1130
        if tag != UNDEFREF_TAG
×
1131
            code = handle_deserialize(s, tag)::CodeInfo
×
1132
            ci = ccall(:jl_new_codeinst_for_uninferred, Ref{CodeInstance}, (Any, Any), linfo, code)
×
1133
            @atomic linfo.cache = ci
×
1134
        end
1135
    end
1136
    tag = Int32(read(s.io, UInt8)::UInt8)
×
1137
    if tag != UNDEFREF_TAG
×
1138
        # for reading files prior to v1.2
1139
        handle_deserialize(s, tag)
×
1140
    end
1141
    linfo.sparam_vals = deserialize(s)::SimpleVector
×
1142
    _rettype = deserialize(s)  # for backwards compat
×
1143
    linfo.specTypes = deserialize(s)
×
1144
    linfo.def = deserialize(s)
×
1145
    return linfo
×
1146
end
1147

1148
function deserialize(s::AbstractSerializer, ::Type{Core.LineInfoNode})
×
1149
    mod = deserialize(s)
×
1150
    if mod isa Module
×
1151
        method = deserialize(s)
×
1152
    else
1153
        # files post v1.2 and pre v1.6 are broken
1154
        method = mod
×
1155
        mod = Main
×
1156
    end
1157
    return Core.LineInfoNode(mod, method, deserialize(s)::Symbol, Int32(deserialize(s)::Union{Int32, Int}), Int32(deserialize(s)::Union{Int32, Int}))
×
1158
end
1159

1160

1161
function deserialize(s::AbstractSerializer, ::Type{PhiNode})
×
1162
    edges = deserialize(s)
×
1163
    if edges isa Vector{Any}
×
1164
        edges = Vector{Int32}(edges)
×
1165
    end
1166
    values = deserialize(s)::Vector{Any}
×
1167
    return PhiNode(edges, values)
×
1168
end
1169

1170
function deserialize(s::AbstractSerializer, ::Type{CodeInfo})
×
1171
    ci = ccall(:jl_new_code_info_uninit, Ref{CodeInfo}, ())
×
1172
    deserialize_cycle(s, ci)
×
1173
    code = deserialize(s)::Vector{Any}
×
1174
    ci.code = code
×
1175
    ci.debuginfo = NullDebugInfo
×
1176
    # allow older-style IR with return and gotoifnot Exprs
1177
    for i in 1:length(code)
×
1178
        stmt = code[i]
×
1179
        if isa(stmt, Expr)
×
1180
            ex = stmt::Expr
×
1181
            if ex.head === :return
×
1182
                code[i] = ReturnNode(isempty(ex.args) ? nothing : ex.args[1])
×
1183
            elseif ex.head === :gotoifnot
×
1184
                code[i] = GotoIfNot(ex.args[1], ex.args[2])
×
1185
            end
1186
        end
1187
    end
×
1188
    _x = deserialize(s)
×
1189
    have_debuginfo = _x isa Core.DebugInfo
×
1190
    if have_debuginfo
×
1191
        ci.debuginfo = _x
×
1192
    else
1193
        codelocs = _x::Vector{Int32}
×
1194
        # TODO: convert codelocs to debuginfo format?
1195
    end
1196
    _x = deserialize(s)
×
1197
    if _x isa Array || _x isa Int
×
1198
        pre_12 = false
×
1199
    else
1200
        pre_12 = true
×
1201
        # < v1.2
1202
        ci.method_for_inference_limit_heuristics = _x
×
1203
        _x = deserialize(s)
×
1204
    end
1205
    ci.ssavaluetypes = _x
×
1206
    if pre_12
×
1207
        linetable = deserialize(s)
×
1208
        # TODO: convert linetable to debuginfo format?
1209
    end
1210
    ssaflags = deserialize(s)
×
1211
    if length(ssaflags) ≠ length(code)
×
1212
        # make sure the length of `ssaflags` matches that of `code`
1213
        # so that the latest inference doesn't throw on IRs serialized from old versions
1214
        ssaflags = UInt32[0x00 for _ in 1:length(code)]
×
1215
    elseif eltype(ssaflags) != UInt32
×
1216
        ssaflags = map(UInt32, ssaflags)
×
1217
    end
1218
    ci.ssaflags = ssaflags
×
1219
    if pre_12
×
1220
        ci.slotflags = deserialize(s)
×
1221
    else
1222
        if format_version(s) <= 26
×
1223
            ci.method_for_inference_limit_heuristics = deserialize(s)
×
1224
        end
1225
        if !have_debuginfo # pre v1.11 format
×
1226
            linetable = deserialize(s)
×
1227
            # TODO: convert linetable to debuginfo format?
1228
        end
1229
    end
1230
    ci.slotnames = deserialize(s)
×
1231
    if !pre_12
×
1232
        ci.slotflags = deserialize(s)
×
1233
        ci.slottypes = deserialize(s)
×
1234
        ci.rettype = deserialize(s)
×
1235
        ci.parent = deserialize(s)
×
1236
        world_or_edges = deserialize(s)
×
1237
        pre_13 = isa(world_or_edges, Union{UInt, Int})
×
1238
        if pre_13
×
1239
            ci.min_world = reinterpret(UInt, world_or_edges)
×
1240
            ci.max_world = reinterpret(UInt, deserialize(s))
×
1241
        else
1242
            ci.edges = world_or_edges
×
1243
            ci.min_world = deserialize(s)::UInt
×
1244
            ci.max_world = deserialize(s)::UInt
×
1245
        end
1246
        if format_version(s) >= 26
×
1247
            ci.method_for_inference_limit_heuristics = deserialize(s)
×
1248
        end
1249
    end
1250
    if format_version(s) <= 26
×
1251
        deserialize(s)::Bool # inferred
×
1252
    end
1253
    if format_version(s) < 22
×
1254
        inlining_cost = deserialize(s)
×
1255
        if isa(inlining_cost, Bool)
×
1256
            Core.Compiler.set_inlineable!(ci, inlining_cost)
×
1257
        else
1258
            ci.inlining_cost = inlining_cost
×
1259
        end
1260
    end
1261
    if format_version(s) >= 29
×
1262
        ci.nargs = deserialize(s)
×
1263
    end
1264
    ci.propagate_inbounds = deserialize(s)
×
1265
    if format_version(s) < 23
×
1266
        deserialize(s) # `pure` field has been removed
×
1267
    end
1268
    if format_version(s) >= 20
×
1269
        ci.has_fcall = deserialize(s)
×
1270
    end
NEW
1271
    if format_version(s) >= 30
×
NEW
1272
        ci.has_image_globalref = deserialize(s)::Bool
×
1273
    end
1274
    if format_version(s) >= 24
×
1275
        ci.nospecializeinfer = deserialize(s)::Bool
×
1276
    end
1277
    if format_version(s) >= 29
×
1278
        ci.isva = deserialize(s)::Bool
×
1279
    end
1280
    if format_version(s) >= 21
×
1281
        ci.inlining = deserialize(s)::UInt8
×
1282
    end
1283
    if format_version(s) >= 14
×
1284
        ci.constprop = deserialize(s)::UInt8
×
1285
    end
1286
    if format_version(s) >= 26
×
1287
        ci.purity = deserialize(s)::UInt16
×
1288
    elseif format_version(s) >= 17
×
1289
        ci.purity = deserialize(s)::UInt8
×
1290
    end
1291
    if format_version(s) >= 22
×
1292
        ci.inlining_cost = deserialize(s)::UInt16
×
1293
    end
1294
    ci.debuginfo = NullDebugInfo
×
1295
    return ci
×
1296
end
1297

1298
import Core: NullDebugInfo
1299

1300
if Int === Int64
1301
const OtherInt = Int32
1302
else
1303
const OtherInt = Int64
1304
end
1305

1306
function deserialize_array(s::AbstractSerializer)
8✔
1307
    slot = s.counter; s.counter += 1
8✔
1308
    d1 = deserialize(s)
8✔
1309
    if isa(d1, Type)
8✔
1310
        elty = d1
8✔
1311
        d1 = deserialize(s)
8✔
1312
    else
1313
        elty = UInt8
×
1314
    end
1315
    if isa(d1, Int32) || isa(d1, Int64)
16✔
1316
        if elty !== Bool && isbitstype(elty)
8✔
1317
            a = Vector{elty}(undef, d1)
4✔
1318
            s.table[slot] = a
4✔
1319
            return read!(s.io, a)
4✔
1320
        end
1321
        dims = (Int(d1),)
8✔
1322
    elseif d1 isa Dims
×
1323
        dims = d1::Dims
×
1324
    else
1325
        dims = convert(Dims, d1::Tuple{Vararg{OtherInt}})::Dims
×
1326
    end
1327
    if isbitstype(elty)
4✔
1328
        n = prod(dims)::Int
×
1329
        if elty === Bool && n > 0
×
1330
            A = Array{Bool, length(dims)}(undef, dims)
×
1331
            i = 1
×
1332
            while i <= n
×
1333
                b = read(s.io, UInt8)::UInt8
×
1334
                v = (b >> 7) != 0
×
1335
                count = b & 0x7f
×
1336
                nxt = i + count
×
1337
                while i < nxt
×
1338
                    A[i] = v
×
1339
                    i += 1
×
1340
                end
×
1341
            end
×
1342
        else
1343
            A = read!(s.io, Array{elty}(undef, dims))
×
1344
        end
1345
        s.table[slot] = A
×
1346
        return A
×
1347
    end
1348
    A = Array{elty, length(dims)}(undef, dims)
4✔
1349
    s.table[slot] = A
4✔
1350
    sizehint!(s.table, s.counter + div(length(A)::Int,4))
4✔
1351
    deserialize_fillarray!(A, s)
4✔
1352
    return A
4✔
1353
end
1354

1355
function deserialize_fillarray!(A::Union{Array{T},Memory{T}}, s::AbstractSerializer) where {T}
4✔
1356
    for i = eachindex(A)
4✔
1357
        tag = Int32(read(s.io, UInt8)::UInt8)
2✔
1358
        if tag != UNDEFREF_TAG
2✔
1359
            @inbounds A[i] = handle_deserialize(s, tag)
2✔
1360
        end
1361
    end
2✔
1362
    return A
4✔
1363
end
1364

1365
function deserialize(s::AbstractSerializer, X::Type{Memory{T}} where T)
×
1366
    slot = pop!(s.pending_refs) # e.g. deserialize_cycle
×
1367
    n = deserialize(s)::Int
×
1368
    elty = eltype(X)
×
1369
    if isbitstype(elty)
×
1370
        A = X(undef, n)
×
1371
        if X === Memory{Bool}
×
1372
            i = 1
×
1373
            while i <= n
×
1374
                b = read(s.io, UInt8)::UInt8
×
1375
                v = (b >> 7) != 0
×
1376
                count = b & 0x7f
×
1377
                nxt = i + count
×
1378
                while i < nxt
×
1379
                    A[i] = v
×
1380
                    i += 1
×
1381
                end
×
1382
            end
×
1383
        else
1384
            A = read!(s.io, A)::X
×
1385
        end
1386
        s.table[slot] = A
×
1387
        return A
×
1388
    end
1389
    A = X(undef, n)
×
1390
    s.table[slot] = A
×
1391
    sizehint!(s.table, s.counter + div(n, 4))
×
1392
    deserialize_fillarray!(A, s)
×
1393
    return A
×
1394
end
1395

1396
function deserialize(s::AbstractSerializer, X::Type{MemoryRef{T}} where T)
×
1397
    x = Core.memoryref(deserialize(s))::X
×
1398
    i = deserialize(s)::Int
×
1399
    i == 2 || (x = Core.memoryref(x, i, true))
×
1400
    return x::X
×
1401
end
1402

1403
function deserialize(s::AbstractSerializer, X::Type{Core.AddrSpace{M}} where M)
×
1404
    Core.bitcast(X, read(s.io, UInt8))
×
1405
end
1406

1407
function deserialize_expr(s::AbstractSerializer, len)
×
1408
    e = Expr(:temp)
×
1409
    resolve_ref_immediately(s, e)
×
1410
    e.head = deserialize(s)::Symbol
×
1411
    e.args = Any[ deserialize(s) for i = 1:len ]
×
1412
    e
×
1413
end
1414

1415
module __deserialized_types__ end
1416

1417
function deserialize(s::AbstractSerializer, ::Type{Core.TypeName})
×
1418
    number = read(s.io, UInt64)
×
1419
    return deserialize_typename(s, number)
×
1420
end
1421

1422
function deserialize_typename(s::AbstractSerializer, number)
×
1423
    name = deserialize(s)::Symbol
×
1424
    tn = lookup_object_number(s, number)
×
1425
    if tn !== nothing
×
1426
        makenew = false
×
1427
    else
1428
        # reuse the same name for the type, if possible, for nicer debugging
1429
        tn_name = isdefined(__deserialized_types__, name) ? gensym() : name
×
1430
        tn = ccall(:jl_new_typename_in, Any, (Any, Any, Cint, Cint),
×
1431
                   tn_name, __deserialized_types__, false, false)
1432
        makenew = true
×
1433
    end
1434
    tn = tn::Core.TypeName
×
1435
    remember_object(s, tn, number)
×
1436
    deserialize_cycle(s, tn)
×
1437

1438
    names = deserialize(s)::SimpleVector
×
1439
    super = deserialize(s)::Type
×
1440
    parameters = deserialize(s)::SimpleVector
×
1441
    types = deserialize(s)::SimpleVector
×
1442
    attrs = Core.svec()
×
1443
    has_instance = deserialize(s)::Bool
×
1444
    abstr = deserialize(s)::Bool
×
1445
    mutabl = deserialize(s)::Bool
×
1446
    ninitialized = deserialize(s)::Int32
×
1447
    maxm = format_version(s) >= 18 ? deserialize(s)::UInt8 : UInt8(0)
×
1448

1449
    if makenew
×
1450
        # TODO: there's an unhanded cycle in the dependency graph at this point:
1451
        # while deserializing super and/or types, we may have encountered
1452
        # tn.wrapper and throw UndefRefException before we get to this point
1453
        ndt = ccall(:jl_new_datatype, Any, (Any, Any, Any, Any, Any, Any, Any, Cint, Cint, Cint),
×
1454
                    tn, tn.module, super, parameters, names, types, attrs,
1455
                    abstr, mutabl, ninitialized)
1456
        @assert tn == ndt.name
×
1457
        ccall(:jl_set_const, Cvoid, (Any, Any, Any), tn.module, tn.name, tn.wrapper)
×
1458
        ty = tn.wrapper
×
1459
        tn.max_methods = maxm
×
1460
        if has_instance
×
1461
            ty = ty::DataType
×
1462
            if !isdefined(ty, :instance)
×
1463
                singleton = ccall(:jl_new_struct, Any, (Any, Any...), ty)
×
1464
                # use setfield! directly to avoid `fieldtype` lowering expecting to see a Singleton object already on ty
1465
                ccall(:jl_set_nth_field, Cvoid, (Any, Csize_t, Any), ty, Base.fieldindex(DataType, :instance)-1, singleton)
×
1466
            end
1467
        end
1468
    end
1469

1470
    tag = Int32(read(s.io, UInt8)::UInt8)
×
1471
    if tag != UNDEFREF_TAG
×
1472
        mtname = handle_deserialize(s, tag)
×
1473
        defs = deserialize(s)
×
1474
        maxa = deserialize(s)::Int
×
1475
        if makenew
×
1476
            mt = ccall(:jl_new_method_table, Any, (Any, Any), name, tn.module)
×
1477
            if !isempty(parameters)
×
1478
                mt.offs = 0
×
1479
            end
1480
            mt.name = mtname
×
1481
            setfield!(mt, :max_args, maxa, :monotonic)
×
1482
            ccall(:jl_set_nth_field, Cvoid, (Any, Csize_t, Any), tn, Base.fieldindex(Core.TypeName, :mt)-1, mt)
×
1483
            for def in defs
×
1484
                if isdefined(def, :sig)
×
1485
                    ccall(:jl_method_table_insert, Cvoid, (Any, Any, Ptr{Cvoid}), mt, def, C_NULL)
×
1486
                end
1487
            end
×
1488
        end
1489
        tag = Int32(read(s.io, UInt8)::UInt8)
×
1490
        if tag != UNDEFREF_TAG
×
1491
            kws = handle_deserialize(s, tag)
×
1492
            if makenew && !(kws isa Vector{Method})
×
1493
                # old object format -- try to forward from old to new
1494
                @eval Core.kwcall(kwargs::NamedTuple, f::$ty, args...) = $kws(kwargs, f, args...)
×
1495
            end
1496
        end
1497
    elseif makenew
×
1498
        mt = Symbol.name.mt
×
1499
        ccall(:jl_set_nth_field, Cvoid, (Any, Csize_t, Any), tn, Base.fieldindex(Core.TypeName, :mt)-1, mt)
×
1500
    end
1501
    return tn
×
1502
end
1503

1504
function deserialize_datatype(s::AbstractSerializer, full::Bool)
30✔
1505
    slot = s.counter; s.counter += 1
30✔
1506
    if full
30✔
1507
        tname = deserialize(s)::Core.TypeName
×
1508
        ty = tname.wrapper
×
1509
    else
1510
        name = deserialize(s)::Symbol
30✔
1511
        mod = deserialize(s)::Module
30✔
1512
        ty = getglobal(mod, name)
30✔
1513
    end
1514
    if isa(ty,DataType) && isempty(ty.parameters)
30✔
1515
        t = ty
10✔
1516
    else
1517
        np = Int(read(s.io, Int32)::Int32)
20✔
1518
        if np == 0
20✔
1519
            t = unwrap_unionall(ty)
×
1520
        elseif ty === Tuple
20✔
1521
            # note np==0 has its own tag
1522
            if np == 1
×
1523
                t = Tuple{deserialize(s)}
×
1524
            elseif np == 2
×
1525
                t = Tuple{deserialize(s), deserialize(s)}
×
1526
            elseif np == 3
×
1527
                t = Tuple{deserialize(s), deserialize(s), deserialize(s)}
×
1528
            elseif np == 4
×
1529
                t = Tuple{deserialize(s), deserialize(s), deserialize(s), deserialize(s)}
×
1530
            else
1531
                t = Tuple{Any[ deserialize(s) for i=1:np ]...}
×
1532
            end
1533
        else
1534
            t = ty
20✔
1535
            for i = 1:np
20✔
1536
                t = t{deserialize(s)}
60✔
1537
            end
60✔
1538
        end
1539
    end
1540
    s.table[slot] = t
30✔
1541
    return t
30✔
1542
end
1543

1544
function deserialize(s::AbstractSerializer, ::Type{UnionAll})
×
1545
    form = read(s.io, UInt8)
×
1546
    if form == 0
×
1547
        var = deserialize(s)
×
1548
        body = deserialize(s)
×
1549
        return UnionAll(var, body)
×
1550
    else
1551
        n = read(s.io, Int16)
×
1552
        t = deserialize(s)::DataType
×
1553
        w = t.name.wrapper
×
1554
        k = 0
×
1555
        while isa(w, UnionAll)
×
1556
            w = w.body
×
1557
            k += 1
×
1558
        end
×
1559
        w = t.name.wrapper
×
1560
        k -= n
×
1561
        while k > 0
×
1562
            w = w.body
×
1563
            k -= 1
×
1564
        end
×
1565
        return w
×
1566
    end
1567
end
1568

1569
function deserialize(s::AbstractSerializer, ::Type{Task})
×
1570
    t = Task(()->nothing)
×
1571
    deserialize_cycle(s, t)
×
1572
    t.code = deserialize(s)
×
1573
    t.storage = deserialize(s)
×
1574
    state = deserialize(s)
×
1575
    if state === :runnable
×
1576
        @atomic :release t._state = Base.task_state_runnable
×
1577
    elseif state === :done
×
1578
        @atomic :release t._state = Base.task_state_done
×
1579
    elseif state === :failed
×
1580
        @atomic :release t._state = Base.task_state_failed
×
1581
    else
1582
        @assert false
×
1583
    end
1584
    t.result = deserialize(s)
×
1585
    exc = deserialize(s)
×
1586
    if exc === nothing
×
1587
        t._isexception = false
×
1588
    elseif exc isa Bool
×
1589
        t._isexception = exc
×
1590
    else
1591
        t._isexception = true
×
1592
        t.result = exc
×
1593
    end
1594
    t
×
1595
end
1596

1597
function deserialize_string(s::AbstractSerializer, len::Int)
1598
    out = ccall(:jl_alloc_string, Ref{String}, (Csize_t,), len)
2✔
1599
    unsafe_read(s.io, pointer(out), len)
2✔
1600
    return out
2✔
1601
end
1602

1603
# default DataType deserializer
1604
function deserialize(s::AbstractSerializer, t::DataType)
30✔
1605
    nf = length(t.types)
30✔
1606
    if isprimitivetype(t)
30✔
1607
        return read(s.io, t)
×
1608
    elseif ismutabletype(t)
30✔
1609
        x = ccall(:jl_new_struct_uninit, Any, (Any,), t)
×
1610
        deserialize_cycle(s, x)
×
1611
        for i in 1:nf
×
1612
            tag = Int32(read(s.io, UInt8)::UInt8)
×
1613
            if tag != UNDEFREF_TAG
×
1614
                ccall(:jl_set_nth_field, Cvoid, (Any, Csize_t, Any), x, i-1, handle_deserialize(s, tag))
×
1615
            end
1616
        end
×
1617
        return x
×
1618
    elseif nf == 0
30✔
1619
        return ccall(:jl_new_struct_uninit, Any, (Any,), t)
20✔
1620
    else
1621
        na = nf
10✔
1622
        vflds = Vector{Any}(undef, nf)
10✔
1623
        for i in 1:nf
10✔
1624
            tag = Int32(read(s.io, UInt8)::UInt8)
20✔
1625
            if tag != UNDEFREF_TAG
20✔
1626
                f = handle_deserialize(s, tag)
20✔
1627
                na >= i && (vflds[i] = f)
20✔
1628
            else
1629
                na >= i && (na = i - 1) # rest of tail must be undefined values
×
1630
            end
1631
        end
30✔
1632
        return ccall(:jl_new_structv, Any, (Any, Ptr{Any}, UInt32), t, vflds, na)
10✔
1633
    end
1634
end
1635

1636
function deserialize_dict(s::AbstractSerializer, T::Type{<:AbstractDict})
×
1637
    n = read(s.io, Int32)
×
1638
    t = T(); sizehint!(t, n)
×
1639
    deserialize_cycle(s, t)
×
1640
    for i = 1:n
×
1641
        k = deserialize(s)
×
1642
        v = deserialize(s)
×
1643
        t[k] = v
×
1644
    end
×
1645
    return t
×
1646
end
1647

1648
function deserialize(s::AbstractSerializer, T::Type{Dict{K,V}}) where {K,V}
×
1649
    return deserialize_dict(s, T)
×
1650
end
1651

1652
deserialize(s::AbstractSerializer, ::Type{BigInt}) = parse(BigInt, deserialize(s), base = 62)
×
1653

1654
function deserialize(s::AbstractSerializer, t::Type{Regex})
×
1655
    pattern = deserialize(s)
×
1656
    compile_options = deserialize(s)
×
1657
    match_options = deserialize(s)
×
1658
    return Regex(pattern, compile_options, match_options)
×
1659
end
1660

1661
## StackTraces
1662

1663
# provide a custom serializer that skips attempting to serialize the `outer_linfo`
1664
# which is likely to contain complex references, types, and module references
1665
# that may not exist on the receiver end
1666
function serialize(s::AbstractSerializer, frame::Base.StackTraces.StackFrame)
×
1667
    serialize_type(s, typeof(frame))
×
1668
    serialize(s, frame.func)
×
1669
    serialize(s, frame.file)
×
1670
    write(s.io, frame.line)
×
1671
    write(s.io, frame.from_c)
×
1672
    write(s.io, frame.inlined)
×
1673
    write(s.io, frame.pointer)
×
1674
    nothing
×
1675
end
1676

1677
function deserialize(s::AbstractSerializer, ::Type{Base.StackTraces.StackFrame})
×
1678
    func = deserialize(s)
×
1679
    file = deserialize(s)
×
1680
    line = read(s.io, Int)
×
1681
    from_c = read(s.io, Bool)
×
1682
    inlined = read(s.io, Bool)
×
1683
    pointer = read(s.io, UInt64)
×
1684
    return Base.StackTraces.StackFrame(func, file, line, nothing, from_c, inlined, pointer)
×
1685
end
1686

1687
function serialize(s::AbstractSerializer, lock::Base.AbstractLock)
×
1688
    # assert_havelock(lock)
1689
    serialize_cycle_header(s, lock)
×
1690
    nothing
×
1691
end
1692

1693
function deserialize(s::AbstractSerializer, ::Type{T}) where T<:Base.AbstractLock
×
1694
    lock = T()
×
1695
    deserialize_cycle(s, lock)
×
1696
    return lock
×
1697
end
1698

1699
function serialize(s::AbstractSerializer, cond::Base.GenericCondition)
×
1700
    serialize_cycle_header(s, cond) && return
×
1701
    serialize(s, cond.lock)
×
1702
    nothing
×
1703
end
1704

1705
function deserialize(s::AbstractSerializer, ::Type{T}) where T<:Base.GenericCondition
×
1706
    lock = deserialize(s)
×
1707
    cond = T(lock)
×
1708
    deserialize_cycle(s, cond)
×
1709
    return cond
×
1710
end
1711

1712
serialize(s::AbstractSerializer, l::LazyString) =
×
1713
    invoke(serialize, Tuple{AbstractSerializer,Any}, s, Base._LazyString((), string(l)))
1714

1715
end
STATUS · Troubleshooting · Open an Issue · Sales · Support · CAREERS · ENTERPRISE · START FREE · SCHEDULE DEMO
ANNOUNCEMENTS · TWITTER · TOS & SLA · Supported CI Services · What's a CI service? · Automated Testing

© 2026 Coveralls, Inc