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JuliaLang / julia / 1505

15 Apr 2026 03:25AM UTC coverage: 77.832% (-0.04%) from 77.876%
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Merge pull request #61572 from JamesWrigley/distributed

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47.87
/base/binaryplatforms.jl
1
# This file is a part of Julia. License is MIT: https://julialang.org/license
2

3
module BinaryPlatforms
4

5
export AbstractPlatform, Platform, HostPlatform, platform_dlext, tags, arch, os,
6
       os_version, libc, libgfortran_version, libstdcxx_version,
7
       cxxstring_abi, parse_dl_name_version, detect_libgfortran_version,
8
       detect_libstdcxx_version, detect_cxxstring_abi, call_abi, wordsize, triplet,
9
       select_platform, platforms_match, platform_name
10
import .Libc.Libdl
11

12
### Submodule with information about CPU features
13
include("cpuid.jl")
14
using .CPUID
15

16
# This exists to ease compatibility with old-style Platform objects
17
abstract type AbstractPlatform; end
18

19
"""
20
    Platform
21

22
A `Platform` represents all relevant pieces of information that a julia process may need
23
to know about its execution environment, such as the processor architecture, operating
24
system, libc implementation, etc...  It is, at its heart, a key-value mapping of tags
25
(such as `arch`, `os`, `libc`, etc...) to values (such as `"arch" => "x86_64"`, or
26
`"os" => "windows"`, etc...).  `Platform` objects are extensible in that the tag mapping
27
is open for users to add their own mappings to, as long as the mappings do not conflict
28
with the set of reserved tags: `arch`, `os`, `os_version`, `libc`, `call_abi`,
29
`libgfortran_version`, `libstdcxx_version`, `cxxstring_abi` and `julia_version`.
30

31
Valid tags and values are composed of alphanumeric and period characters.  All tags and
32
values will be lowercased when stored to reduce variation.
33

34
Example:
35

36
    Platform("x86_64", "windows"; cuda = "10.1")
37
"""
38
struct Platform <: AbstractPlatform
39
    tags::Dict{String,String}
40
    # The "compare strategy" allows selective overriding on how a tag is compared
41
    compare_strategies::Dict{String,Function}
42

43
    # Passing `tags` as a `Dict` avoids the need to infer different NamedTuple specializations
44
    function Platform(arch::String, os::String, _tags::Dict{String};
2,310✔
45
                      validate_strict::Bool = false,
46
                      compare_strategies::Dict{String,<:Function} = Dict{String,Function}())
47
        # A wee bit of normalization
48
        os = lowercase(os)
78✔
49
        arch = CPUID.normalize_arch(arch)
141✔
50

51
        tags = Dict{String,String}(
78✔
52
            "arch" => arch,
53
            "os" => os,
54
        )
55
        for (tag, value) in _tags
153✔
56
            value = value::Union{String,VersionNumber,Nothing}
435✔
57
            tag = lowercase(tag)
435✔
58
            if tag ∈ ("arch", "os")
870✔
59
                throw(ArgumentError("Cannot double-pass key $(tag)"))
×
60
            end
61

62
            # Drop `nothing` values; this means feature is not present or use default value.
63
            if value === nothing
435✔
64
                continue
220✔
65
            end
66

67
            # Normalize things that are known to be version numbers so that comparisons are easy.
68
            # Note that in our effort to be extremely compatible, we actually allow something that
69
            # doesn't parse nicely into a VersionNumber to persist, but if `validate_strict` is
70
            # set to `true`, it will cause an error later on.
71
            if tag ∈ ("libgfortran_version", "libstdcxx_version", "os_version")
370✔
72
                if isa(value, VersionNumber)
60✔
73
                    value = string(value)
60✔
74
                elseif isa(value, String)
×
75
                    v = tryparse(VersionNumber, value)
×
76
                    if isa(v, VersionNumber)
×
77
                        value = string(v)
×
78
                    end
79
                end
80
            end
81

82
            # Use `add_tag!()` to add the tag to our collection of tags
83
            add_tag!(tags, tag, string(value)::String)
215✔
84
        end
795✔
85

86
        # Auto-map call_abi and libc where necessary:
87
        if os == "linux" && !haskey(tags, "libc")
116✔
88
            # Default to `glibc` on Linux
89
            tags["libc"] = "glibc"
18✔
90
        end
91
        if os == "linux" && arch ∈ ("armv7l", "armv6l") && "call_abi" ∉ keys(tags)
78✔
92
            # default `call_abi` to `eabihf` on 32-bit ARM
93
            tags["call_abi"] = "eabihf"
×
94
        end
95

96
        # If the user is asking for strict validation, do so.
97
        if validate_strict
78✔
98
            validate_tags(tags)
×
99
        end
100

101
        # By default, we compare julia_version only against major and minor versions:
102
        if haskey(tags, "julia_version") && !haskey(compare_strategies, "julia_version")
78✔
103
            compare_strategies["julia_version"] = (a::String, b::String, a_comparator, b_comparator) -> begin
66✔
104
                a = VersionNumber(a)
6✔
105
                b = VersionNumber(b)
6✔
106
                return a.major == b.major && a.minor == b.minor
6✔
107
            end
108
        end
109

110
        return new(tags, compare_strategies)
78✔
111
    end
112
end
113

114
# Keyword interface (to avoid inference of specialized NamedTuple methods, use the Dict interface for `tags`)
115
function Platform(arch::String, os::String;
2,172✔
116
                  validate_strict::Bool = false,
117
                  compare_strategies::Dict{String,<:Function} = Dict{String,Function}(),
118
                  kwargs...)
119
    tags = Dict{String,Any}(String(tag)::String=>tagvalue(value) for (tag, value) in kwargs)
2,172✔
120
    return Platform(arch, os, tags; validate_strict, compare_strategies)
2,172✔
121
end
122

123
tagvalue(v::Union{String,VersionNumber,Nothing}) = v
×
124
tagvalue(v::Symbol) = String(v)
57✔
125
tagvalue(v::AbstractString) = convert(String, v)::String
×
126

127
# Simple tag insertion that performs a little bit of validation
128
function add_tag!(tags::Dict{String,String}, tag::String, value::String)
200✔
129
    # I know we said only alphanumeric and dots, but let's be generous so that we can expand
130
    # our support in the future while remaining as backwards-compatible as possible.  The
131
    # only characters that are absolutely disallowed right now are `-`, `+`, ` ` and things
132
    # that are illegal in filenames:
133
    nonos = raw"""+- /<>:"'\|?*"""
200✔
134
    if any(occursin(nono, tag) for nono in nonos)
200✔
135
        throw(ArgumentError("Invalid character in tag name \"$(tag)\"!"))
×
136
    end
137

138
    # Normalize and reject nonos
139
    value = lowercase(value)
200✔
140
    if any(occursin(nono, value) for nono in nonos)
200✔
141
        throw(ArgumentError("Invalid character in tag value \"$(value)\"!"))
×
142
    end
143
    tags[tag] = value
200✔
144
    return value
200✔
145
end
146

147
# Other `Platform` types can override this (I'm looking at you, `AnyPlatform`)
148
tags(p::Platform) = p.tags
2,210✔
149

150
# Make it act more like a dict
151
Base.getindex(p::AbstractPlatform, k::String) = getindex(tags(p), k)
9✔
152
Base.haskey(p::AbstractPlatform, k::String) = haskey(tags(p), k)
240✔
153
function Base.setindex!(p::AbstractPlatform, v::String, k::String)
9✔
154
    add_tag!(tags(p), k, v)
9✔
155
    return p
6✔
156
end
157

158
# Hash definition to ensure that it's stable
159
function Base.hash(p::Platform, h::UInt)
160
    h ⊻= 0x506c6174666f726d % UInt
×
161
    h = hash(p.tags, h)
6✔
162
    h = hash(p.compare_strategies, h)
6✔
163
    return h
×
164
end
165

166
# Simple equality definition; for compatibility testing, use `platforms_match()`
167
function Base.:(==)(a::Platform, b::Platform)
168
    return a.tags == b.tags && a.compare_strategies == b.compare_strategies
3✔
169
end
170

171

172
# Allow us to easily serialize Platform objects
173
function Base.show(io::IO, p::Platform)
3✔
174
    print(io, "Platform(")
3✔
175
    show(io, arch(p))
6✔
176
    print(io, ", ")
3✔
177
    show(io, os(p))
6✔
178
    print(io, "; ")
3✔
179
    join(io, ("$(k) = $(repr(v))" for (k, v) in tags(p) if k ∉ ("arch", "os")), ", ")
3✔
180
    print(io, ")")
3✔
181
end
182

183
# Make showing the platform a bit more palatable
184
function Base.show(io::IO, ::MIME"text/plain", p::Platform)
×
185
    str = string(platform_name(p), " ", arch(p))
×
186
    # Add on all the other tags not covered by os/arch:
187
    other_tags = sort!(filter!(kv -> kv[1] ∉ ("os", "arch"), collect(tags(p))))
×
188
    if !isempty(other_tags)
×
189
        str = string(str, " {", join([string(k, "=", v) for (k, v) in other_tags], ", "), "}")
×
190
    end
191
    print(io, str)
×
192
end
193

194
function validate_tags(tags::Dict)
×
195
    throw_invalid_key(k) = throw(ArgumentError("Key \"$(k)\" cannot have value \"$(tags[k])\""))
×
196
    # Validate `arch`
197
    if tags["arch"] ∉ ("x86_64", "i686", "armv7l", "armv6l", "aarch64", "powerpc64le", "riscv64")
×
198
        throw_invalid_key("arch")
×
199
    end
200
    # Validate `os`
201
    if tags["os"] ∉ ("linux", "macos", "freebsd", "openbsd", "windows")
×
202
        throw_invalid_key("os")
×
203
    end
204
    # Validate `os`/`arch` combination
205
    throw_os_mismatch() = throw(ArgumentError("Invalid os/arch combination: $(tags["os"])/$(tags["arch"])"))
×
206
    if tags["os"] == "windows" && tags["arch"] ∉ ("x86_64", "i686", "armv7l", "aarch64")
×
207
        throw_os_mismatch()
×
208
    end
209
    if tags["os"] == "macos" && tags["arch"] ∉ ("x86_64", "aarch64")
×
210
        throw_os_mismatch()
×
211
    end
212

213
    # Validate `os`/`libc` combination
214
    throw_libc_mismatch() = throw(ArgumentError("Invalid os/libc combination: $(tags["os"])/$(tags["libc"])"))
×
215
    if tags["os"] == "linux"
×
216
        # Linux always has a `libc` entry
217
        if tags["libc"] ∉ ("glibc", "musl")
×
218
            throw_libc_mismatch()
×
219
        end
220
    else
221
        # Nothing else is allowed to have a `libc` entry
222
        if haskey(tags, "libc")
×
223
            throw_libc_mismatch()
×
224
        end
225
    end
226

227
    # Validate `os`/`arch`/`call_abi` combination
228
    throw_call_abi_mismatch() = throw(ArgumentError("Invalid os/arch/call_abi combination: $(tags["os"])/$(tags["arch"])/$(tags["call_abi"])"))
×
229
    if tags["os"] == "linux" && tags["arch"] ∈ ("armv7l", "armv6l")
×
230
        # If an ARM linux has does not have `call_abi` set to something valid, be sad.
231
        if !haskey(tags, "call_abi") || tags["call_abi"] ∉ ("eabihf", "eabi")
×
232
            throw_call_abi_mismatch()
×
233
        end
234
    else
235
        # Nothing else should have a `call_abi`.
236
        if haskey(tags, "call_abi")
×
237
            throw_call_abi_mismatch()
×
238
        end
239
    end
240

241
    # Validate `libgfortran_version` is a parsable `VersionNumber`
242
    throw_version_number(k) = throw(ArgumentError("\"$(k)\" cannot have value \"$(tags[k])\", must be a valid VersionNumber"))
×
243
    if "libgfortran_version" in keys(tags) && tryparse(VersionNumber, tags["libgfortran_version"]) === nothing
×
244
        throw_version_number("libgfortran_version")
×
245
    end
246

247
    # Validate `cxxstring_abi` is one of the two valid options:
248
    if "cxxstring_abi" in keys(tags) && tags["cxxstring_abi"] ∉ ("cxx03", "cxx11")
×
249
        throw_invalid_key("cxxstring_abi")
×
250
    end
251

252
    # Validate `libstdcxx_version` is a parsable `VersionNumber`
253
    if "libstdcxx_version" in keys(tags) && tryparse(VersionNumber, tags["libstdcxx_version"]) === nothing
×
254
        throw_version_number("libstdcxx_version")
×
255
    end
256
end
257

258
function set_compare_strategy!(p::Platform, key::String, f::Function)
×
259
    if !haskey(p.tags, key)
×
260
        throw(ArgumentError("Cannot set comparison strategy for nonexistent tag $(key)!"))
×
261
    end
262
    p.compare_strategies[key] = f
×
263
end
264

265
function get_compare_strategy(p::Platform, key::String, default = compare_default)
×
266
    if !haskey(p.tags, key)
×
267
        throw(ArgumentError("Cannot get comparison strategy for nonexistent tag $(key)!"))
×
268
    end
269
    return get(p.compare_strategies, key, default)
×
270
end
271
get_compare_strategy(p::AbstractPlatform, key::String, default = compare_default) = default
×
272

273

274

275
"""
276
    compare_default(a::String, b::String, a_requested::Bool, b_requested::Bool)
277

278
Default comparison strategy that falls back to `a == b`.  This only ever happens if both
279
`a` and `b` request this strategy, as any other strategy is preferable to this one.
280
"""
281
function compare_default(a::String, b::String, a_requested::Bool, b_requested::Bool)
×
282
    return a == b
×
283
end
284

285
"""
286
    compare_version_cap(a::String, b::String, a_comparator, b_comparator)
287

288
Example comparison strategy for `set_comparison_strategy!()` that implements a version
289
cap for host platforms that support _up to_ a particular version number.  As an example,
290
if an artifact is built for macOS 10.9, it can run on macOS 10.11, however if it were
291
built for macOS 10.12, it could not.  Therefore, the host platform of macOS 10.11 has a
292
version cap at `v"10.11"`.
293

294
Note that because both hosts and artifacts are represented with `Platform` objects it
295
is possible to call `platforms_match()` with two artifacts, a host and an artifact, an
296
artifact and a host, and even two hosts.  We attempt to do something intelligent for all
297
cases, but in the case of comparing version caps between two hosts, we return `true` only
298
if the two host platforms are in fact identical.
299
"""
300
function compare_version_cap(a::String, b::String, a_requested::Bool, b_requested::Bool)
×
301
    a = VersionNumber(a)
×
302
    b = VersionNumber(b)
×
303

304
    # If both b and a requested, then we fall back to equality:
305
    if a_requested && b_requested
×
306
        return a == b
×
307
    end
308

309
    # Otherwise, do the comparison between the single version cap and the single version:
310
    if a_requested
×
311
        return b <= a
×
312
    else
313
        return a <= b
×
314
    end
315
end
316

317

318

319
"""
320
    HostPlatform(p::AbstractPlatform)
321

322
Convert a `Platform` to act like a "host"; e.g. if it has a version-bound tag such as
323
`"libstdcxx_version" => "3.4.26"`, it will treat that value as an upper bound, rather
324
than a characteristic.  `Platform` objects that define artifacts generally denote the
325
SDK or version that the artifact was built with, but for platforms, these versions are
326
generally the maximal version the platform can support.  The way this transformation
327
is implemented is to change the appropriate comparison strategies to treat these pieces
328
of data as bounds rather than points in any comparison.
329
"""
330
function HostPlatform(p::AbstractPlatform)
60✔
331
    if haskey(p, "os_version")
120✔
332
        set_compare_strategy!(p, "os_version", compare_version_cap)
×
333
    end
334
    if haskey(p, "libstdcxx_version")
120✔
335
        set_compare_strategy!(p, "libstdcxx_version", compare_version_cap)
×
336
    end
337
    return p
60✔
338
end
339

340
"""
341
    arch(p::AbstractPlatform)
342

343
Get the architecture for the given `Platform` object as a `String`.
344

345
# Examples
346
```jldoctest
347
julia> arch(Platform("aarch64", "Linux"))
348
"aarch64"
349

350
julia> arch(Platform("amd64", "freebsd"))
351
"x86_64"
352
```
353
"""
354
arch(p::AbstractPlatform) = get(tags(p), "arch", nothing)
135✔
355

356
"""
357
    os(p::AbstractPlatform)
358

359
Get the operating system for the given `Platform` object as a `String`.
360

361
# Examples
362
```jldoctest
363
julia> os(Platform("armv7l", "Linux"))
364
"linux"
365

366
julia> os(Platform("aarch64", "macos"))
367
"macos"
368
```
369
"""
370
os(p::AbstractPlatform) = get(tags(p), "os", nothing)
299✔
371

372
# As a special helper, it's sometimes useful to know the current OS at compile-time
373
function os()
374
    if Sys.iswindows()
×
375
        return "windows"
×
376
    elseif Sys.isapple()
×
377
        return "macos"
×
378
    elseif Sys.isfreebsd()
×
379
        return "freebsd"
×
380
    elseif Sys.isopenbsd()
×
381
        return "openbsd"
×
382
    else
383
        return "linux"
×
384
    end
385
end
386

387
"""
388
    libc(p::AbstractPlatform)
389

390
Get the libc for the given `Platform` object as a `String`.  Returns `nothing` on
391
platforms with no explicit `libc` choices (which is most platforms).
392

393
# Examples
394
```jldoctest
395
julia> libc(Platform("armv7l", "Linux"))
396
"glibc"
397

398
julia> libc(Platform("aarch64", "linux"; libc="musl"))
399
"musl"
400

401
julia> libc(Platform("i686", "Windows"))
402
```
403
"""
404
libc(p::AbstractPlatform) = get(tags(p), "libc", nothing)
78✔
405

406
"""
407
    call_abi(p::AbstractPlatform)
408

409
Get the call ABI for the given `Platform` object as a `String`.  Returns `nothing` on
410
platforms with no explicit `call_abi` choices (which is most platforms).
411

412
# Examples
413
```jldoctest
414
julia> call_abi(Platform("armv7l", "Linux"))
415
"eabihf"
416

417
julia> call_abi(Platform("x86_64", "macos"))
418
```
419
"""
420
call_abi(p::AbstractPlatform) = get(tags(p), "call_abi", nothing)
84✔
421

422
const platform_names = Dict(
423
    "linux" => "Linux",
424
    "macos" => "macOS",
425
    "windows" => "Windows",
426
    "freebsd" => "FreeBSD",
427
    "openbsd" => "OpenBSD",
428
    nothing => "Unknown",
429
)
430

431
"""
432
    platform_name(p::AbstractPlatform)
433

434
Get the "platform name" of the given platform, returning e.g. "Linux" or "Windows".
435
"""
436
function platform_name(p::AbstractPlatform)
×
437
    return platform_names[os(p)]
×
438
end
439

440
function VNorNothing(d::Dict, key)
133✔
441
    v = get(d, key, nothing)
190✔
442
    if v === nothing
133✔
443
        return nothing
76✔
444
    end
445
    return VersionNumber(v)::VersionNumber
57✔
446
end
447

448
"""
449
    libgfortran_version(p::AbstractPlatform)
450

451
Get the libgfortran version dictated by this `Platform` object as a `VersionNumber`,
452
or `nothing` if no compatibility bound is imposed.
453
"""
454
libgfortran_version(p::AbstractPlatform) = VNorNothing(tags(p), "libgfortran_version")
57✔
455

456
"""
457
    libstdcxx_version(p::AbstractPlatform)
458

459
Get the libstdc++ version dictated by this `Platform` object, or `nothing` if no
460
compatibility bound is imposed.
461
"""
462
libstdcxx_version(p::AbstractPlatform) = VNorNothing(tags(p), "libstdcxx_version")
57✔
463

464
"""
465
    cxxstring_abi(p::AbstractPlatform)
466

467
Get the c++ string ABI dictated by this `Platform` object, or `nothing` if no ABI is imposed.
468
"""
469
cxxstring_abi(p::AbstractPlatform) = get(tags(p), "cxxstring_abi", nothing)
114✔
470

471
"""
472
    os_version(p::AbstractPlatform)
473

474
Get the OS version dictated by this `Platform` object, or `nothing` if no OS version is
475
imposed/no data is available.  This is most commonly used by MacOS and FreeBSD objects
476
where we have high platform SDK fragmentation, and features are available only on certain
477
platform versions.
478
"""
479
os_version(p::AbstractPlatform) = VNorNothing(tags(p), "os_version")
19✔
480

481
"""
482
    wordsize(p::AbstractPlatform)
483

484
Get the word size for the given `Platform` object.
485

486
# Examples
487
```jldoctest
488
julia> wordsize(Platform("armv7l", "linux"))
489
32
490

491
julia> wordsize(Platform("x86_64", "macos"))
492
64
493
```
494
"""
495
wordsize(p::AbstractPlatform) = (arch(p) ∈ ("i686", "armv6l", "armv7l")) ? 32 : 64
18✔
496

497
"""
498
    triplet(p::AbstractPlatform)
499

500
Get the target triplet for the given `Platform` object as a `String`.
501

502
# Examples
503
```jldoctest
504
julia> triplet(Platform("x86_64", "MacOS"))
505
"x86_64-apple-darwin"
506

507
julia> triplet(Platform("i686", "Windows"))
508
"i686-w64-mingw32"
509

510
julia> triplet(Platform("armv7l", "Linux"; libgfortran_version="3"))
511
"armv7l-linux-gnueabihf-libgfortran3"
512
```
513
"""
514
function triplet(p::AbstractPlatform)
57✔
515
    str = string(
57✔
516
        arch(p)::Union{Symbol,String},
517
        os_str(p),
518
        libc_str(p),
519
        call_abi_str(p),
520
    )
521

522
    # Tack on optional compiler ABI flags
523
    libgfortran_version_ = libgfortran_version(p)
57✔
524
    if libgfortran_version_ !== nothing
57✔
525
        str = string(str, "-libgfortran", libgfortran_version_.major)
57✔
526
    end
527
    cxxstring_abi_ = cxxstring_abi(p)
114✔
528
    if cxxstring_abi_ !== nothing
57✔
529
        str = string(str, "-", cxxstring_abi_)
57✔
530
    end
531
    libstdcxx_version_ = libstdcxx_version(p)
57✔
532
    if libstdcxx_version_ !== nothing
57✔
533
        str = string(str, "-libstdcxx", libstdcxx_version_.patch)
×
534
    end
535

536
    # Tack on all extra tags
537
    for (tag, val) in tags(p)
114✔
538
        if tag ∈ ("os", "arch", "libc", "call_abi", "libgfortran_version", "libstdcxx_version", "cxxstring_abi", "os_version")
551✔
539
            continue
247✔
540
        end
541
        str = string(str, "-", tag, "+", val)
57✔
542
    end
551✔
543
    return str
57✔
544
end
545

546
function os_str(p::AbstractPlatform)
57✔
547
    if os(p) == "linux"
114✔
548
        return "-linux"
19✔
549
    elseif os(p) == "macos"
76✔
550
        osvn = os_version(p)
19✔
551
        if osvn !== nothing
19✔
552
            return "-apple-darwin$(osvn.major)"
×
553
        else
554
            return "-apple-darwin"
19✔
555
        end
556
    elseif os(p) == "windows"
38✔
557
        return "-w64-mingw32"
19✔
558
    elseif os(p) == "freebsd"
×
559
        osvn = os_version(p)
×
560
        if osvn !== nothing
×
561
            return "-unknown-freebsd$(osvn.major).$(osvn.minor)"
×
562
        else
563
            return "-unknown-freebsd"
×
564
        end
565
    elseif os(p) == "openbsd"
×
566
        return "-unknown-openbsd"
×
567
    else
568
        return "-unknown"
×
569
    end
570
end
571

572
# Helper functions for Linux and FreeBSD libc/abi mishmashes
573
function libc_str(p::AbstractPlatform)
57✔
574
    lc = libc(p)
76✔
575
    if lc === nothing
57✔
576
        return ""
38✔
577
    elseif lc === "glibc"
19✔
578
        return "-gnu"
19✔
579
    else
580
        return string("-", lc)
×
581
    end
582
end
583
function call_abi_str(p::AbstractPlatform)
584
    cabi = call_abi(p)
57✔
585
    cabi === nothing ? "" : string(cabi::Union{Symbol,String})
57✔
586
end
587

588
Sys.isapple(p::AbstractPlatform) = os(p) == "macos"
6✔
589
Sys.islinux(p::AbstractPlatform) = os(p) == "linux"
6✔
590
Sys.iswindows(p::AbstractPlatform) = os(p) == "windows"
6✔
591
Sys.isfreebsd(p::AbstractPlatform) = os(p) == "freebsd"
×
592
Sys.isopenbsd(p::AbstractPlatform) = os(p) == "openbsd"
×
593
Sys.isbsd(p::AbstractPlatform) = os(p) ∈ ("freebsd", "openbsd", "macos")
9✔
594
Sys.isunix(p::AbstractPlatform) = Sys.isbsd(p) || Sys.islinux(p)
×
595

596
const arch_mapping = Dict(
597
    "x86_64" => "(x86_|amd)64",
598
    "i686" => "i\\d86",
599
    "aarch64" => "(aarch64|arm64)",
600
    "armv7l" => "arm(v7l)?", # if we just see `arm-linux-gnueabihf`, we assume it's `armv7l`
601
    "armv6l" => "armv6l",
602
    "powerpc64le" => "p(ower)?pc64le",
603
    "riscv64" => "(rv64|riscv64)",
604
)
605
# Keep this in sync with `CPUID.ISAs_by_family`
606
# These are the CPUID side of the microarchitectures targeted by GCC flags in BinaryBuilder.jl
607
const arch_march_isa_mapping = let
608
    function get_set(arch, name)
×
609
        all = CPUID.ISAs_by_family[arch]
×
610
        return all[findfirst(x -> x.first == name, all)].second
×
611
    end
612
    Dict(
613
        "i686" => [
614
            "pentium4" => get_set("i686", "pentium4"),
615
            "prescott" => get_set("i686", "prescott"),
616
        ],
617
        "x86_64" => [
618
            "x86_64" => get_set("x86_64", "x86_64"),
619
            "avx" => get_set("x86_64", "sandybridge"),
620
            "avx2" => get_set("x86_64", "haswell"),
621
            "avx512" => get_set("x86_64", "skylake_avx512"),
622
        ],
623
        "aarch64" => [
624
            "armv8_0" => get_set("aarch64", "armv8.0-a"),
625
            "armv8_1" => get_set("aarch64", "armv8.1-a"),
626
            "armv8_2_crypto" => get_set("aarch64", "armv8.2-a+crypto"),
627
            "a64fx" => get_set("aarch64", "a64fx"),
628
            "apple_m1" => get_set("aarch64", "apple_m1"),
629
        ],
630
        "riscv64" => [
631
            "riscv64" => get_set("riscv64", "riscv64"),
632
        ],
633
    )
634
end
635
const os_mapping = Dict(
636
    "macos" => "-apple-darwin[\\d\\.]*",
637
    "freebsd" => "-(.*-)?freebsd[\\d\\.]*",
638
    "openbsd" => "-(.*-)?openbsd[\\d\\.]*",
639
    "windows" => "-w64-mingw32",
640
    "linux" => "-(.*-)?linux",
641
)
642
const libc_mapping = Dict(
643
    "libc_nothing" => "",
644
    "glibc" => "-gnu",
645
    "musl" => "-musl",
646
)
647
const call_abi_mapping = Dict(
648
    "call_abi_nothing" => "",
649
    "eabihf" => "eabihf",
650
    "eabi" => "eabi",
651
)
652
const libgfortran_version_mapping = Dict(
653
    "libgfortran_nothing" => "",
654
    "libgfortran3" => "(-libgfortran3)|(-gcc4)", # support old-style `gccX` versioning
655
    "libgfortran4" => "(-libgfortran4)|(-gcc7)",
656
    "libgfortran5" => "(-libgfortran5)|(-gcc8)",
657
)
658
const cxxstring_abi_mapping = Dict(
659
    "cxxstring_nothing" => "",
660
    "cxx03" => "-cxx03",
661
    "cxx11" => "-cxx11",
662
)
663
const libstdcxx_version_mapping = Dict{String,String}(
664
    "libstdcxx_nothing" => "",
665
    "libstdcxx" => "-libstdcxx\\d+",
666
)
667

668
const triplet_regex = let
669
    # Helper function to collapse dictionary of mappings down into a regex of
670
    # named capture groups joined by "|" operators
671
    c(mapping) = string("(",join(["(?<$k>$v)" for (k, v) in mapping], "|"), ")")
×
672

673
    Regex(string(
674
        "^",
675
        # First, the core triplet; arch/os/libc/call_abi
676
        c(arch_mapping),
677
        c(os_mapping),
678
        c(libc_mapping),
679
        c(call_abi_mapping),
680
        # Next, optional things, like libgfortran/libstdcxx/cxxstring abi
681
        c(libgfortran_version_mapping),
682
        c(cxxstring_abi_mapping),
683
        c(libstdcxx_version_mapping),
684
        # Finally, the catch-all for extended tags
685
        "(?<tags>(?:-[^-]+\\+[^-]+)*)?",
686
        "\$",
687
    ))
688
end
689

690
"""
691
    parse(::Type{Platform}, triplet::AbstractString)
692

693
Parses a string platform triplet back into a `Platform` object.
694
"""
695
function Base.parse(::Type{Platform}, triplet::String; validate_strict::Bool = false)
627✔
696
    m = match(triplet_regex, triplet)
60✔
697
    if m !== nothing
60✔
698
        # Helper function to find the single named field within the giant regex
699
        # that is not `nothing` for each mapping we give it.
700
        get_field(m, mapping) = begin
480✔
701
            for k in keys(mapping)
840✔
702
                if m[k] !== nothing
980✔
703
                    # Convert our sentinel `nothing` values to actual `nothing`
704
                    if endswith(k, "_nothing")
420✔
705
                        return nothing
160✔
706
                    end
707
                    # Convert libgfortran/libstdcxx version numbers
708
                    if startswith(k, "libgfortran")
260✔
709
                        return VersionNumber(parse(Int,k[12:end]))
60✔
710
                    elseif startswith(k, "libstdcxx")
200✔
711
                        return VersionNumber(3, 4, parse(Int,m[k][11:end]))
×
712
                    else
713
                        return k
200✔
714
                    end
715
                end
716
            end
560✔
717
        end
718

719
        # Extract the information we're interested in:
720
        tags = Dict{String,Any}()
60✔
721
        arch = get_field(m, arch_mapping)
60✔
722
        os = get_field(m, os_mapping)
60✔
723
        tags["libc"] = get_field(m, libc_mapping)
80✔
724
        tags["call_abi"] = get_field(m, call_abi_mapping)
60✔
725
        tags["libgfortran_version"] = get_field(m, libgfortran_version_mapping)
120✔
726
        tags["libstdcxx_version"] = get_field(m, libstdcxx_version_mapping)
60✔
727
        tags["cxxstring_abi"] = get_field(m, cxxstring_abi_mapping)
120✔
728
        function split_tags(tagstr)
120✔
729
            tag_fields = split(tagstr, "-"; keepempty=false)
60✔
730
            if isempty(tag_fields)
60✔
731
                return Pair{String,String}[]
×
732
            end
733
            return map(v -> String(v[1]) => String(v[2]), split.(tag_fields, "+"))
120✔
734
        end
735
        merge!(tags, Dict(split_tags(m["tags"])))
120✔
736

737
        # Special parsing of os version number, if any exists
738
        function extract_os_version(os_name, pattern)
60✔
739
            m_osvn = match(pattern, m[os_name])
20✔
740
            if m_osvn !== nothing
20✔
741
                return VersionNumber(m_osvn.captures[1])
×
742
            end
743
            return nothing
20✔
744
        end
745
        os_version = nothing
60✔
746
        if os == "macos"
120✔
747
            os_version = extract_os_version("macos", r".*darwin([\d.]+)"sa)
20✔
748
        end
749
        if os == "freebsd"
120✔
750
            os_version = extract_os_version("freebsd", r".*freebsd([\d.]+)"sa)
×
751
        end
752
        if os == "openbsd"
120✔
753
            os_version = extract_os_version("openbsd", r".*openbsd([\d.]+)"sa)
×
754
        end
755
        tags["os_version"] = os_version
60✔
756

757
        return Platform(arch, os, tags; validate_strict)
60✔
758
    end
759
    throw(ArgumentError("Platform `$(triplet)` is not an officially supported platform"))
×
760
end
761
Base.parse(::Type{Platform}, triplet::AbstractString; kwargs...) =
×
762
    parse(Platform, convert(String, triplet)::String; kwargs...)
763

764
function Base.tryparse(::Type{Platform}, triplet::AbstractString)
×
765
    try
×
766
        parse(Platform, triplet)
×
767
    catch e
768
        if isa(e, InterruptException)
×
769
            rethrow(e)
×
770
        end
771
        return nothing
×
772
    end
773
end
774

775
"""
776
    platform_dlext(p::AbstractPlatform = HostPlatform())
777

778
Return the dynamic library extension for the given platform, defaulting to the
779
currently running platform.  E.g. returns "so" for a Linux-based platform,
780
"dll" for a Windows-based platform, etc...
781
"""
782
function platform_dlext(p::AbstractPlatform = HostPlatform())
15✔
783
    if os(p) == "windows"
30✔
784
        return "dll"
4✔
785
    elseif os(p) == "macos"
22✔
786
        return "dylib"
4✔
787
    else
788
        return "so"
7✔
789
    end
790
end
791

792
# Not general purpose, just for parse_dl_name_version
793
function _this_os_name()
794
    if Sys.iswindows()
×
795
        return "windows"
×
796
    elseif Sys.isapple()
×
797
        return "macos"
×
798
    else
799
        return "other"
×
800
    end
801
end
802

803
"""
804
    parse_dl_name_version(path::String, platform::AbstractPlatform)
805

806
Given a path to a dynamic library, parse out what information we can
807
from the filename.  E.g. given something like "lib/libfoo.so.3.2",
808
this function returns `"libfoo", v"3.2"`.  If the path name is not a
809
valid dynamic library, this method throws an error.  If no soversion
810
can be extracted from the filename, as in "libbar.so" this method
811
returns `"libbar", nothing`.
812
"""
813
function parse_dl_name_version(path::String, os::String=_this_os_name())
814
    # Use an extraction regex that matches the given OS
815
    local dlregex
684✔
816
    # Keep this up to date with _this_os_name
817
    if os == "windows"
342✔
818
        # On Windows, libraries look like `libnettle-6.dll`.
819
        # Stay case-insensitive, the suffix might be `.DLL`.
820
        dlregex = r"^(.*?)(?:-((?:[\.\d]+)*))?\.dll$"isa
×
821
    elseif os == "macos"
342✔
822
        # On OSX, libraries look like `libnettle.6.3.dylib`
823
        dlregex = r"^(.*?)((?:\.[\d]+)*)\.dylib$"sa
×
824
    else
825
        # On Linux and others BSD, libraries look like `libnettle.so.6.3.0`
826
        dlregex = r"^(.*?)\.so((?:\.[\d]+)*)$"sa
×
827
    end
828

829
    m = match(dlregex, basename(path))
342✔
830
    if m === nothing
342✔
831
        throw(ArgumentError("Invalid dynamic library path '$path'"))
×
832
    end
833

834
    # Extract name and version
835
    name = m.captures[1]
342✔
836
    version = m.captures[2]
342✔
837
    if version === nothing || isempty(version)
684✔
838
        version = nothing
×
839
    else
840
        version = VersionNumber(strip(version, '.'))
303✔
841
    end
842
    return name, version
342✔
843
end
844

845
# Adapter for `AbstractString`
846
function parse_dl_name_version(path::AbstractString, os::AbstractString=_this_os_name())
×
847
    return parse_dl_name_version(string(path)::String, string(os)::String)
×
848
end
849

850
function get_csl_member(member::Symbol)
60✔
851
    # If CompilerSupportLibraries_jll is a stdlib, we can just grab things from it
852
    csl_pkgids = filter(pkgid -> pkgid.name == "CompilerSupportLibraries_jll", keys(Base.loaded_modules))
2,398✔
853
    if !isempty(csl_pkgids)
60✔
854
        CSL_mod = Base.loaded_modules[first(csl_pkgids)]
60✔
855

856
        # This can fail during bootstrap, so we skip in that case.
857
        if isdefined(CSL_mod, member)
60✔
858
            return getproperty(CSL_mod, member)
60✔
859
        end
860
    end
861

862
    return nothing
×
863
end
864

865

866
function _get_libgfortran_path()
867
    # If CompilerSupportLibraries_jll is a stdlib, we can just directly ask for
868
    # the path here, without checking `dllist()`:
869
    libgfortran_path = get_csl_member(:libgfortran_path)
×
870
    if libgfortran_path !== nothing
×
871
        return libgfortran_path::String
×
872
    end
873

874
    # Otherwise, look for it having already been loaded by something
875
    libgfortran_paths = filter!(x -> occursin("libgfortran", x), Libdl.dllist())
×
876
    if !isempty(libgfortran_paths)
×
877
        return first(libgfortran_paths)::String
×
878
    end
879

880
    # One day, I hope to not be linking against libgfortran in base Julia
881
    return nothing
×
882
end
883

884
function _get_libstdcxx_handle()
60✔
885
    # If CompilerSupportLibraries_jll is a stdlib, we can just directly open it
886
    libstdcxx = get_csl_member(:libstdcxx)
60✔
887
    if libstdcxx !== nothing
60✔
888
        return nothing
60✔
889
    end
890

891
    # Otherwise, look for it having already been loaded by something
892
    libstdcxx_paths = filter!(x -> occursin("libstdc++", x), Libdl.dllist())
×
893
    if !isempty(libstdcxx_paths)
×
894
        return Libdl.dlopen(first(libstdcxx_paths), Libdl.RTLD_NOLOAD)::Ptr{Cvoid}
×
895
    end
896

897
    # One day, I hope to not be linking against libgfortran in base Julia
898
    return nothing
×
899
end
900

901
"""
902
    detect_libgfortran_version()
903

904
Inspects the current Julia process to determine the libgfortran version this Julia is
905
linked against (if any).  Returns `nothing` if no libgfortran version dependence is
906
detected.
907
"""
908
function detect_libgfortran_version()
×
909
    libgfortran_path = _get_libgfortran_path()
×
910
    name, version = parse_dl_name_version(libgfortran_path, os())
×
911
    if version === nothing
×
912
        # Even though we complain about this, we allow it to continue in the hopes that
913
        # we shall march on to a BRIGHTER TOMORROW.  One in which we are not shackled
914
        # by the constraints of libgfortran compiler ABIs upon our precious programming
915
        # languages; one where the mistakes of yesterday are mere memories and not
916
        # continual maintenance burdens upon the children of the dawn; one where numeric
917
        # code may be cleanly implemented in a modern language and not bestowed onto the
918
        # next generation by grizzled ancients, documented only with a faded yellow
919
        # sticky note that bears a hastily-scribbled "good luck".
920
        @warn("Unable to determine libgfortran version from '$(libgfortran_path)'")
×
921
    end
922
    return version
×
923
end
924

925
"""
926
    detect_libstdcxx_version(max_minor_version::Int=30)
927

928
Inspects the currently running Julia process to find out what version of libstdc++
929
it is linked against (if any).  `max_minor_version` is the latest version in the
930
3.4 series of GLIBCXX where the search is performed.
931
"""
932
function detect_libstdcxx_version(max_minor_version::Int=30)
60✔
933
    # Brute-force our way through GLIBCXX_* symbols to discover which version we're linked against
934
    libstdcxx = _get_libstdcxx_handle()
120✔
935

936
    if libstdcxx !== nothing
60✔
937
        # Try all GLIBCXX versions down to GCC v4.8:
938
        # https://gcc.gnu.org/onlinedocs/libstdc++/manual/abi.html
939
        for minor_version in max_minor_version:-1:18
×
940
            if Libdl.dlsym(libstdcxx, "GLIBCXX_3.4.$(minor_version)"; throw_error=false) !== nothing
×
941
                return VersionNumber("3.4.$(minor_version)")
×
942
            end
943
        end
×
944
    end
945
    return nothing
60✔
946
end
947

948
"""
949
    detect_cxxstring_abi()
950

951
Inspects the currently running Julia process to see what version of the C++11 string ABI
952
it was compiled with (this is only relevant if compiled with `g++`; `clang` has no
953
incompatibilities yet, bless its heart).  In reality, this actually checks for symbols
954
within LLVM, but that is close enough for our purposes, as you can't mix configurations
955
between Julia and LLVM; they must match.
956
"""
957
function detect_cxxstring_abi()
958
    # First, if we're not linked against libstdc++, then early-exit because this doesn't matter.
959
    libstdcxx_paths = filter!(x -> occursin("libstdc++", x), Libdl.dllist())
×
960
    if isempty(libstdcxx_paths)
×
961
        # We were probably built by `clang`; we don't link against `libstdc++`` at all.
962
        return nothing
×
963
    end
964

965
    function open_libllvm(f::Function)
×
966
        for lib_name in (Base.libllvm_name, "libLLVM", "LLVM", "libLLVMSupport")
×
967
            hdl = Libdl.dlopen_e(lib_name)
×
968
            if hdl != C_NULL
×
969
                try
×
970
                    return f(hdl)
×
971
                finally
972
                    Libdl.dlclose(hdl)
×
973
                end
974
            end
975
        end
×
976
        error("Unable to open libLLVM!")
×
977
    end
978

979
    return open_libllvm() do hdl
×
980
        # Check for llvm::sys::getProcessTriple(), first without cxx11 tag:
981
        if Libdl.dlsym_e(hdl, "_ZN4llvm3sys16getProcessTripleEv") != C_NULL
×
982
            return "cxx03"
×
983
        elseif Libdl.dlsym_e(hdl, "_ZN4llvm3sys16getProcessTripleB5cxx11Ev") != C_NULL
×
984
            return "cxx11"
×
985
        else
986
            @warn("Unable to find llvm::sys::getProcessTriple() in libLLVM!")
×
987
            return nothing
×
988
        end
989
    end
990
end
991

992
"""
993
    host_triplet()
994

995
Build host triplet out of `Sys.MACHINE` and various introspective utilities that
996
detect compiler ABI values such as `libgfortran_version`, `libstdcxx_version` and
997
`cxxstring_abi`.  We do this without using any `Platform` tech as it must run before
998
we have much of that built.
999
"""
1000
function host_triplet()
60✔
1001
    str = Base.BUILD_TRIPLET
60✔
1002

1003
    if !occursin("-libgfortran", str)
60✔
1004
        libgfortran_version = detect_libgfortran_version()
×
1005
        if libgfortran_version !== nothing
×
1006
            str = string(str, "-libgfortran", libgfortran_version.major)
×
1007
        end
1008
    end
1009

1010
    if !occursin("-cxx", str)
60✔
1011
        cxxstring_abi = detect_cxxstring_abi()
×
1012
        if cxxstring_abi !== nothing
×
1013
            str = string(str, "-", cxxstring_abi)
×
1014
        end
1015
    end
1016

1017
    if !occursin("-libstdcxx", str)
60✔
1018
        libstdcxx_version = detect_libstdcxx_version()
60✔
1019
        if libstdcxx_version !== nothing
60✔
1020
            str = string(str, "-libstdcxx", libstdcxx_version.patch)
×
1021
        end
1022
    end
1023

1024
    # Add on julia_version extended tag
1025
    if !occursin("-julia_version+", str)
60✔
1026
        str = string(str, "-julia_version+", VersionNumber(VERSION.major, VERSION.minor, VERSION.patch))
60✔
1027
    end
1028
    return str
60✔
1029
end
1030

1031
"""
1032
    HostPlatform()
1033

1034
Return the `Platform` object that corresponds to the current host system, with all
1035
relevant comparison strategies set to host platform mode.  This is equivalent to:
1036

1037
    HostPlatform(parse(Platform, Base.BinaryPlatforms.host_triplet()))
1038
"""
1039
function HostPlatform()
3✔
1040
    return HostPlatform(parse(Platform, host_triplet()))::Platform
309✔
1041
end
1042

1043
"""
1044
    platforms_match(a::AbstractPlatform, b::AbstractPlatform)
1045

1046
Return `true` if `a` and `b` are matching platforms, where matching is determined by
1047
comparing all keys contained within the platform objects, and if both objects contain
1048
entries for that key, they must match.  Comparison, by default, is performed using
1049
the `==` operator, however this can be overridden on a key-by-key basis by adding
1050
"comparison strategies" through `set_compare_strategy!(platform, key, func)`.
1051

1052
Note that as the comparison strategy is set on the `Platform` object, and not globally,
1053
a custom comparison strategy is first looked for within the `a` object, then if none
1054
is found, it is looked for in the `b` object.  Finally, if none is found in either, the
1055
default of `==(ak, bk)` is used.  We throw an error if custom comparison strategies are
1056
used on both `a` and `b` and they are not the same custom comparison.
1057

1058
The reserved tags `os_version` and `libstdcxx_version` use this mechanism to provide
1059
bounded version constraints, where an artifact can specify that it was built using APIs
1060
only available in macOS `v"10.11"` and later, or an artifact can state that it requires
1061
a libstdc++ that is at least `v"3.4.22"`, etc...
1062
"""
1063
function platforms_match(a::AbstractPlatform, b::AbstractPlatform)
×
1064
    for k in union(keys(tags(a)::Dict{String,String}), keys(tags(b)::Dict{String,String}))
×
1065
        ak = get(tags(a), k, nothing)
×
1066
        bk = get(tags(b), k, nothing)
×
1067

1068
        # Only continue if both `ak` and `bk` are not `nothing`
1069
        if ak === nothing || bk === nothing
×
1070
            continue
×
1071
        end
1072

1073
        a_comp = get_compare_strategy(a, k)
×
1074
        b_comp = get_compare_strategy(b, k)
×
1075

1076
        # Throw an error if `a` and `b` have both set non-default comparison strategies for `k`
1077
        # and they're not the same strategy.
1078
        if a_comp !== compare_default && b_comp !== compare_default && a_comp !== b_comp
×
1079
            throw(ArgumentError("Cannot compare Platform objects with two different non-default comparison strategies for the same key \"$(k)\""))
×
1080
        end
1081

1082
        # Select the custom comparator, if we have one.
1083
        comparator = a_comp
×
1084
        if b_comp !== compare_default
×
1085
            comparator = b_comp
×
1086
        end
1087

1088
        # Call the comparator, passing in which objects requested this comparison (one, the other, or both)
1089
        # For some comparators this doesn't matter, but for non-symmetrical comparisons, it does.
1090
        if !(@invokelatest(comparator(ak, bk, a_comp === comparator, b_comp === comparator))::Bool)
×
1091
            return false
×
1092
        end
1093
    end
×
1094
    return true
×
1095
end
1096

1097
function platforms_match(a::String, b::AbstractPlatform)
81✔
1098
    return platforms_match(parse(Platform, a), b)
81✔
1099
end
1100
function platforms_match(a::AbstractPlatform, b::String)
81✔
1101
    return platforms_match(a, parse(Platform, b))
81✔
1102
end
1103
platforms_match(a::String, b::String) = platforms_match(parse(Platform, a), parse(Platform, b))
×
1104

1105
# Adapters for AbstractString backedge avoidance
1106
platforms_match(a::AbstractString, b::AbstractPlatform) = platforms_match(string(a)::String, b)
×
1107
platforms_match(a::AbstractPlatform, b::AbstractString) = platforms_match(a, string(b)::String)
×
1108
platforms_match(a::AbstractString, b::AbstractString) = platforms_match(string(a)::String, string(b)::String)
×
1109

1110

1111
"""
1112
    select_platform(download_info::Dict, platform::AbstractPlatform = HostPlatform())
1113

1114
Given a `download_info` dictionary mapping platforms to some value, choose
1115
the value whose key best matches `platform`, returning `nothing` if no matches
1116
can be found.
1117

1118
Platform attributes such as architecture, libc, calling ABI, etc... must all
1119
match exactly, however attributes such as compiler ABI can have wildcards
1120
within them such as `nothing` which matches any version of GCC.
1121
"""
1122
function select_platform(download_info::Dict, platform::AbstractPlatform = HostPlatform())
×
1123
    ps = collect(filter(p -> platforms_match(p, platform), keys(download_info)))
×
1124

1125
    if isempty(ps)
×
1126
        return nothing
×
1127
    end
1128

1129
    # At this point, we may have multiple possibilities.  We now engage a multi-
1130
    # stage selection algorithm, where we first sort the matches by how complete
1131
    # the match is, e.g. preferring matches where the intersection of tags is
1132
    # equal to the union of the tags:
1133
    function match_loss(a, b)
×
1134
        a_tags = Set(keys(tags(a)))
×
1135
        b_tags = Set(keys(tags(b)))
×
1136
        return length(union(a_tags, b_tags)) - length(intersect(a_tags, b_tags))
×
1137
    end
1138

1139
    # We prefer these better matches, and secondarily reverse-sort by triplet so
1140
    # as to generally choose the latest release (e.g. a `libgfortran5` tarball
1141
    # over a `libgfortran3` tarball).
1142
    sort!(ps, lt = (a, b) -> begin
×
1143
        loss_a = match_loss(a, platform)
×
1144
        loss_b = match_loss(b, platform)
×
1145
        if loss_a != loss_b
×
1146
            return loss_a < loss_b
×
1147
        end
1148
        return triplet(a) > triplet(b)
×
1149
    end)
1150

1151
    # @invokelatest here to not get invalidated by new defs of `==(::Function, ::Function)`
1152
    return @invokelatest getindex(download_info, first(ps))
×
1153
end
1154

1155
# precompiles to reduce latency (see https://github.com/JuliaLang/julia/pull/43990#issuecomment-1025692379)
1156
Dict{Platform,String}()[HostPlatform()] = ""
1157
Platform("x86_64", "linux", Dict{String,Any}(); validate_strict=true)
1158
Platform("x86_64", "linux", Dict{String,String}(); validate_strict=false)  # called this way from Artifacts.unpack_platform
1159

1160
end # module
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