92 Commits

Author SHA1 Message Date
3f02f47ee4 Maintenance
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 5m51s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 5m31s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 6m17s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 6m14s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m28s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m28s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 8m1s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m43s
Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m12s
Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m18s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m24s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m17s
Bigfoot / Clang Format Checks (push) Successful in 12s
2026-05-17 16:12:32 +02:00
8685f3d1dd Formatting
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 5m48s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 5m32s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 6m17s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 6m14s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m20s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m21s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m50s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m49s
Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m20s
Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m24s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m34s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m23s
Bigfoot / Clang Format Checks (push) Successful in 2m0s
2026-05-17 12:54:44 +02:00
3fe5c31fc0 Use gtest recommandation and provide global environment through main
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2026-05-17 12:47:34 +02:00
8996adec61 Fix logging environment causing pointer corruption
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 5m46s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 5m30s
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 6m14s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m27s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m23s
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Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m13s
Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m13s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m21s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m10s
Bigfoot / Clang Format Checks (push) Failing after 12s
2026-05-16 22:10:25 +02:00
2003121d07 Logging changes
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 5m39s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 5m30s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Failing after 5m47s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Failing after 5m39s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m20s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m28s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Failing after 7m14s
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Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m19s
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Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m19s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m21s
Bigfoot / Clang Format Checks (push) Failing after 11s
2026-05-16 20:04:32 +02:00
902ef87e1d Environment for tests
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2026-05-16 19:56:54 +02:00
9bea52973b Maintenance
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 5m34s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 5m32s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 6m13s
Bigfoot / Build & Test Debug with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 6m9s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m24s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: ON) (push) Successful in 6m23s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m38s
Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Failing after 6m56s
Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 6m13s
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Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: OFF) (push) Successful in 7m31s
Bigfoot / Build & Test Release with ./ConanProfiles/clang_asan (Unity Build: ON) (push) Successful in 7m15s
Bigfoot / Clang Format Checks (push) Failing after 12s
2026-05-16 17:48:43 +02:00
a343d65598 Maintenance
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2026-05-16 17:39:58 +02:00
bb279bb212 UUID does not have spaceship operator
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Failing after 5m22s
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2026-05-16 17:19:01 +02:00
00b86fbd00 Maintenance
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2026-05-16 17:10:17 +02:00
87d59a00c1 AssetContainer 2026-05-16 16:47:01 +02:00
2c83dcc0bc Move Singleton lifetime + refactor logs 2026-05-16 15:41:05 +02:00
e3c55cc359 ci
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Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: OFF) (push) Successful in 5m35s
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2026-05-16 02:44:56 +02:00
d42f6d31d4 ci
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2026-05-16 02:35:31 +02:00
0e780c08d0 ci
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2026-05-16 02:14:04 +02:00
798ae04720 benchmark
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2026-05-16 02:12:32 +02:00
943597202b SlotMap benchmark
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2026-05-16 01:53:43 +02:00
acdbfb505e Fix Invalid slotkey access when a slot is exhausted
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2026-05-15 23:24:00 +02:00
09ff240423 SlotMap impl and tests
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2026-05-15 22:59:30 +02:00
65727753c0 Cleanup linking
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2026-05-15 16:25:56 +02:00
4bedaad0af Header guards follow our convention
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2026-05-15 14:05:21 +02:00
b87bd30db9 run format on entire project
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2026-05-15 12:15:31 +02:00
63c57b482a clang format includes
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2026-05-15 12:10:43 +02:00
f2228a0182 SlotMap update
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2026-05-15 11:16:49 +02:00
b867701d2a SlotMaps
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2026-05-14 01:54:38 +02:00
f314ffc2f7 Slot maps
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2026-05-13 22:47:39 +02:00
f77a11f27d Cleanup
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2026-05-13 16:59:37 +02:00
9bfe308924 Cleanup
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2026-05-13 16:38:24 +02:00
4798ed8ab7 AssetContainer barebones
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2026-05-12 21:09:17 +02:00
0d3885a863 Remove full reflection, we'll use minireflect
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2026-05-11 21:53:13 +02:00
11f0106dea Put back reflection info
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2026-05-10 23:55:11 +02:00
dd7fe3bfba cleanup
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2026-05-10 15:59:51 +02:00
4261ddd393 Basic asset system serialization
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2026-05-09 23:41:04 +02:00
4c9c4d5547 Reference layout
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2026-05-04 06:00:33 +02:00
b9b837137b Cleaner separation
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2026-05-02 18:50:07 +02:00
c925cba3a1 CI
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2026-04-27 21:23:41 +02:00
4af978fdeb CI
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2026-04-27 21:05:37 +02:00
2b5360e765 injected through profiles
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2026-04-26 15:28:11 +02:00
6e01879e21 format
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2026-04-26 15:21:47 +02:00
60f312a97e correctness
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2026-04-26 15:19:30 +02:00
1b3c914037 header manipulation
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2026-04-26 15:07:26 +02:00
b8b80b697c packing 2026-04-26 14:55:49 +02:00
334390b8e8 Asset 2026-04-26 14:18:28 +02:00
aa1a2ea4de build modif 2026-04-26 14:18:20 +02:00
53cfe7a413 AssetWrapper
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2026-04-20 06:27:46 +02:00
e5e4a997cb fix build
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2026-04-17 15:09:19 +02:00
f5ade086db fix build
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2026-04-17 15:08:39 +02:00
6327cb7a76 Update profiles
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2026-04-17 14:39:21 +02:00
8cb19d4693 Fixing CMake
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2026-04-15 02:40:30 +02:00
64e2f5218f Typo
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2026-04-15 01:49:41 +02:00
9936119fa5 Fix finddependencies
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2026-04-15 01:34:57 +02:00
a21c539d0f remove validation layers. We'll use the system wide available ones
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2026-04-15 01:26:03 +02:00
5bf8d45521 Remove cpptrace
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2026-04-15 01:16:29 +02:00
a075526eb0 profiles for tools
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2026-04-15 00:52:14 +02:00
34ea3f518f use cmake_policy
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2026-04-14 23:27:13 +02:00
abd5a9477f CMAKE_POLICY_DEFAULT_CMP0069
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2026-04-14 23:22:24 +02:00
df9fe0cb63 IPO for all
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2026-04-14 23:20:39 +02:00
a2136f5367 Remove tools, they will be their own packages
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2026-04-14 23:14:17 +02:00
9b02711f59 pugixml no exceptions
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2026-04-14 22:48:45 +02:00
f7683a0fb7 no clipper
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2026-04-14 22:39:18 +02:00
85d136a91f no rtti and no exceptions
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2026-04-14 21:44:31 +02:00
2ffe0c4860 fix unused
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2026-04-14 19:56:45 +02:00
6c0584e276 ccache
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2026-04-14 18:38:18 +02:00
1f6821c0e0 ccache
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2026-04-14 18:36:29 +02:00
f1b54d9e16 per job ccache
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2026-04-14 17:30:20 +02:00
fb259cae7c better ccache ?
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2026-04-14 17:24:25 +02:00
a818f96f13 Fix upload
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2026-04-14 16:18:50 +02:00
a8b42835e0 Fix clang format
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2026-04-14 16:16:27 +02:00
eb1b961b09 fix dependency between jobs
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2026-04-14 16:14:28 +02:00
9c2c599de5 ccache stats
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2026-04-14 16:08:21 +02:00
f99a5e32a6 reduce build steps
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2026-04-14 16:04:11 +02:00
9ab704da29 CI fix
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2026-04-14 16:00:36 +02:00
0efb45616a IPO/LTO
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2026-04-14 15:26:04 +02:00
2804391403 IPO
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Bigfoot / Build & Test RelWithDebInfo with ./ConanProfiles/clang (Unity Build: OFF) (push) Has been cancelled
2026-04-14 12:38:26 +02:00
5709a2c7cd cmake fix
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2026-04-14 12:13:40 +02:00
1ad36d1225 IPO
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2026-04-14 12:09:34 +02:00
85eb1da205 upload built packages
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2026-04-14 10:49:33 +02:00
674a84890c ccache ?
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2026-04-14 10:36:30 +02:00
f8a2d08070 Merge branch 'BigFile' of https://git.romainboullard.com/BigfootDev/Bigfoot into BigFile
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2026-04-14 10:25:21 +02:00
b44702d30b ccache ? 2026-04-14 10:25:19 +02:00
56d6f961bf Override vulkan headers
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2026-04-13 07:24:12 +02:00
284c5f9957 update vulkan
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Bigfoot / Build & Test Release with ./ConanProfiles/clang (Unity Build: ON) (push) Failing after 9s
2026-04-12 23:50:12 +02:00
a99a7e7d88 ReflectionInfo in Asset
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2026-04-12 13:40:01 +02:00
e95a5022a7 Fix test
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2026-04-12 13:25:56 +02:00
d97e342284 fix test
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2026-04-11 20:30:01 +02:00
e8655042db Reflecting flatbuffers 2026-04-11 20:25:50 +02:00
fd292b3b21 Asset dependencies 2026-04-11 19:13:22 +02:00
5e5ce4b095 Fix profiles
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2026-04-11 15:58:37 +02:00
5397d358f6 Updated Bin2CPP
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2026-03-29 13:28:29 +02:00
9c59bd6ab8 Bin2CPP
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2026-03-29 03:03:13 +02:00
ab96945192 Use profiles from repo instead
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Bigfoot / Build & Test Release (Unity Build: ON) (push) Failing after 2m13s
Bigfoot / Clang Format Checks (push) Successful in 29s
2026-02-20 16:54:11 +01:00
45342a3555 Rework AssetContainer; adding references 2026-02-14 12:26:26 +01:00
131 changed files with 5115 additions and 1797 deletions

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@@ -51,7 +51,7 @@ CompactNamespaces: false
Cpp11BracedListStyle: true
EmptyLineBeforeAccessModifier: Always
FixNamespaceComments: true
IncludeBlocks: Preserve
IncludeBlocks: Regroup
IndentCaseBlocks: true
IndentCaseLabels: false
IndentPPDirectives: None
@@ -119,4 +119,24 @@ SpaceAroundPointerQualifiers: Default
SpaceBeforeCpp11BracedList: true
SpaceInEmptyBlock: true
PenaltyBreakAssignment: 200
KeepEmptyLinesAtTheStartOfBlocks: false
KeepEmptyLinesAtTheStartOfBlocks: false
IncludeCategories:
- Regex: '^<Engine/'
Priority: 1
- Regex: '^<System/'
Priority: 2
- Regex: '^<Utils/'
Priority: 3
- Regex: '^<EngineTests/'
Priority: 4
- Regex: '^<SystemTests/'
Priority: 5
- Regex: '^<UtilsTests/'
Priority: 6
- Regex: '^<[a-zA-Z0-9_/]+\.h>'
Priority: 7
- Regex: '^<[a-zA-Z0-9_/]+\.hpp>'
Priority: 7
- Regex: '^<[a-zA-Z0-9_/]+>'
Priority: 8
MainIncludeChar: AngleBracket

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@@ -1,4 +1,4 @@
{
"name": "Bigfoot",
"image": "git.romainboullard.com/bigfootdev/linuxbigfootbuilder:main"
"image": "git.romainboullard.com/bigfootdev/linuxcppbuilder:development"
}

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@@ -6,20 +6,19 @@ on:
- '**'
workflow_dispatch:
env:
CCACHE_BASEDIR: ${{ github.workspace }}
jobs:
build-and-test:
runs-on: ubuntu-latest
timeout-minutes: 120
container:
image: git.romainboullard.com/bigfootdev/linuxbigfootbuilder:main
image: git.romainboullard.com/bigfootdev/linuxcppbuilder:development
strategy:
matrix:
build_type: ["Debug", "RelWithDebInfo", "Release"]
unity_build: ["ON", "OFF"]
name: "Build & Test ${{ matrix.build_type }} (Unity Build: ${{ matrix.unity_build }})"
conan_profile: ["./ConanProfiles/clang", "./ConanProfiles/clang_asan"]
name: "Build & Test ${{ matrix.build_type }} with ${{ matrix.conan_profile }} (Unity Build: ${{ matrix.unity_build }})"
steps:
- name: Install Node.js
run: apt-get update && apt-get install -y nodejs
@@ -29,22 +28,20 @@ jobs:
with:
submodules: recursive
- name: Show ccache stats before
run: ccache --zero-stats
- name: Build
run: |
conan install . --deployer=full_deploy --deployer-folder=build --remote=bigfootpackages -pr:h=clang -pr:b=clang --build=missing -s build_type=${{ matrix.build_type }} -o bigfoot/*:build_tests=True -o bigfoot/*:tracy=False -o bigfoot/*:build_tools=True -o bigfoot/*:vulkan=True -o bigfoot/*:build_benchmarks=True
conan install . --remote=bigfootpackages -pr:h=${{ matrix.conan_profile }} -pr:b=./ConanProfiles/Tools/clang --build=* -s build_type=${{ matrix.build_type }} -o bigfoot/*:build_tests=True -o bigfoot/*:build_benchmarks=True -o bigfoot/*:tracy=False -o bigfoot/*:vulkan=True
. ./build/${{ matrix.build_type }}/generators/conanbuild.sh
cmake -S . -B ./build/${{ matrix.build_type }} --toolchain ./build/${{ matrix.build_type }}/generators/conan_toolchain.cmake -DCMAKE_BUILD_TYPE=${{ matrix.build_type }} -DCMAKE_UNITY_BUILD=${{ matrix.unity_build }} -G "Ninja"
cmake --build build/${{ matrix.build_type }} --parallel $(nproc)
- name: Show ccache stats after
run: ccache --show-stats
. ./build/${{ matrix.build_type }}/generators/deactivate_conanbuild.sh
- name: Unit Tests
run: |
cd ./build/${{ matrix.build_type }}
. ../../build/${{ matrix.build_type }}/generators/conanbuild.sh
xvfb-run ctest . --output-on-failure
. ../../build/${{ matrix.build_type }}/generators/deactivate_conanbuild.sh
clang-format:
runs-on: ubuntu-latest

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@@ -11,7 +11,8 @@ jobs:
runs-on: ubuntu-latest
timeout-minutes: 120
container:
image: git.romainboullard.com/bigfootdev/linuxbigfootbuilder:main
image: git.romainboullard.com/bigfootdev/linuxcppbuilder:development
name: "Sonarqube"
steps:
- name: Install Node.js
@@ -23,11 +24,13 @@ jobs:
fetch-depth: 0
submodules: recursive
- name: Generate
- name: Build
run: |
conan install . --deployer=full_deploy --deployer-folder=build --remote=bigfootpackages -pr:h=clang_coverage -pr:b=clang_coverage --build=missing -s build_type=Debug -o bigfoot/*:build_tests=True -o bigfoot/*:tracy=False -o bigfoot/*:build_tools=True -o bigfoot/*:vulkan=True -o bigfoot/*:build_benchmarks=True
conan install . --remote=bigfootpackages -pr:h=./ConanProfiles/clang_coverage -pr:b=./ConanProfiles/Tools/clang --build=* -s build_type=Debug -o bigfoot/*:build_tests=True -o bigfoot/*:build_benchmarks=True -o bigfoot/*:tracy=False -o bigfoot/*:build_tools=True -o bigfoot/*:vulkan=True
. ./build/Debug/generators/conanbuild.sh
cmake -S . -B ./build/Debug --toolchain ./build/Debug/generators/conan_toolchain.cmake -DCMAKE_BUILD_TYPE=Debug -G "Ninja"
cmake --build build/Debug --parallel $(nproc)
. ./build/Debug/generators/deactivate_conanbuild.sh
- name: Clang-Tidy
run: run-clang-tidy -p ./build/Debug/ >> tidy_result.txt

2
.gitignore vendored
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@@ -18,4 +18,4 @@ graph_info.json
test_package/Vendor
graphviz
graphviz*

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@@ -0,0 +1 @@
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/Utils)

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@@ -0,0 +1,5 @@
get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Benchmarks)
bigfoot_create_package_benchmarks(
"")

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@@ -0,0 +1,250 @@
#include <Utils/Containers/SlotMap.hpp>
#include <ankerl/unordered_dense.h>
#include <benchmark/benchmark.h>
#include <algorithm>
#include <cstdint>
#include <random>
#include <type_traits>
#include <utility>
#include <vector>
namespace Bigfoot
{
struct MyComplexStruct
{
std::uint32_t m_actualValueForBench = 0; // field summed by the Iterate benchmark
float m_position[3] = {0.0f, 0.0f, 0.0f};
float m_rotation[4] = {0.0f, 0.0f, 0.0f, 1.0f};
float m_scale[3] = {1.0f, 1.0f, 1.0f};
std::uint64_t m_entityId = 0;
std::uint32_t m_parentSlot = 0;
std::uint32_t m_flags = 0;
MyComplexStruct() = default;
explicit MyComplexStruct(const std::uint32_t p_value):
m_actualValueForBench(p_value),
m_entityId(p_value)
{
}
};
static_assert(sizeof(MyComplexStruct) == 64, "Payload should be exactly one cache line.");
static_assert(std::is_trivially_copyable_v<MyComplexStruct>,
"Container moves should be a plain memcpy, not a heap-touching move.");
class SlotMapAdaptor
{
public:
using Key = SlotMap<MyComplexStruct>::SlotKey;
Key Add(MyComplexStruct&& p_value)
{
return m_container.Insert(std::move(p_value));
}
const MyComplexStruct* Find(const Key p_key) const
{
return m_container.Get(p_key);
}
void Remove(const Key p_key)
{
m_container.Remove(p_key);
}
void Clear()
{
m_container.Reset();
}
template<class FUNC>
void ForEachValue(FUNC&& p_func) const
{
for (const MyComplexStruct& value: m_container)
{
p_func(value);
}
}
private:
SlotMap<MyComplexStruct> m_container;
};
template<class MAP>
class HashMapHarnessAdaptor
{
public:
using Key = typename MAP::key_type;
Key Add(MyComplexStruct&& p_value)
{
const Key key = m_nextKey++;
m_container.emplace(key, std::move(p_value));
return key;
}
const MyComplexStruct* Find(const Key p_key) const
{
const auto it = m_container.find(p_key);
return it != m_container.end() ? &it->second : nullptr;
}
void Remove(const Key p_key)
{
m_container.erase(p_key);
}
void Clear()
{
m_container.clear();
m_nextKey = 0;
}
template<class FUNC>
void ForEachValue(FUNC&& p_func) const
{
for (const auto& keyValue: m_container)
{
p_func(keyValue.second);
}
}
private:
MAP m_container;
Key m_nextKey = 0;
};
template<class ADAPTOR>
void Insert(benchmark::State& state)
{
const auto count = static_cast<std::uint32_t>(state.range(0));
for (auto _: state)
{
ADAPTOR adaptor;
for (std::uint32_t i = 0; i < count; ++i)
{
benchmark::DoNotOptimize(adaptor.Add(MyComplexStruct {i}));
}
benchmark::DoNotOptimize(adaptor);
benchmark::ClobberMemory();
}
state.SetItemsProcessed(state.iterations() * count);
}
template<class ADAPTOR>
void Remove(benchmark::State& state)
{
const auto count = static_cast<std::uint32_t>(state.range(0));
ADAPTOR adaptor;
std::vector<typename ADAPTOR::Key> keys;
keys.reserve(count);
std::mt19937 rng(0x5EEDU);
for (auto _: state)
{
state.PauseTiming();
adaptor.Clear();
keys.clear();
for (std::uint32_t i = 0; i < count; ++i)
{
keys.push_back(adaptor.Add(MyComplexStruct {i}));
}
std::shuffle(keys.begin(), keys.end(), rng);
state.ResumeTiming();
for (const typename ADAPTOR::Key key: keys)
{
adaptor.Remove(key);
}
benchmark::DoNotOptimize(adaptor);
benchmark::ClobberMemory();
}
state.SetItemsProcessed(state.iterations() * count);
}
template<class ADAPTOR>
void Get(benchmark::State& state)
{
const auto count = static_cast<std::uint32_t>(state.range(0));
ADAPTOR adaptor;
std::vector<typename ADAPTOR::Key> keys;
keys.reserve(count);
for (std::uint32_t i = 0; i < count; ++i)
{
keys.push_back(adaptor.Add(MyComplexStruct {i}));
}
std::mt19937 rng(0x5EEDU);
std::shuffle(keys.begin(), keys.end(), rng);
for (auto _: state)
{
std::uint64_t sum = 0;
for (const typename ADAPTOR::Key key: keys)
{
if (const MyComplexStruct* const value = adaptor.Find(key))
{
sum += value->m_actualValueForBench;
}
}
benchmark::DoNotOptimize(sum);
}
state.SetItemsProcessed(state.iterations() * count);
}
template<class ADAPTOR>
void Iterate(benchmark::State& state)
{
const auto count = static_cast<std::uint32_t>(state.range(0));
ADAPTOR adaptor;
for (std::uint32_t i = 0; i < count; ++i)
{
adaptor.Add(MyComplexStruct {i});
}
for (auto _: state)
{
std::uint64_t sum = 0;
adaptor.ForEachValue(
[&sum](const MyComplexStruct& value)
{
sum += value.m_actualValueForBench;
});
benchmark::DoNotOptimize(sum);
}
state.SetItemsProcessed(state.iterations() * count);
}
#define BIGFOOT_REGISTER_BENCHMARKS(ADAPTOR, NAME) \
BENCHMARK_TEMPLATE(Insert, ADAPTOR)->Name(NAME "/Insert")->Arg(512)->Arg(8192)->Arg(262'144)->Arg(4'194'304); \
BENCHMARK_TEMPLATE(Remove, ADAPTOR)->Name(NAME "/Remove")->Arg(512)->Arg(8192)->Arg(262'144)->Arg(4'194'304); \
BENCHMARK_TEMPLATE(Get, ADAPTOR)->Name(NAME "/Get")->Arg(512)->Arg(8192)->Arg(262'144)->Arg(4'194'304); \
BENCHMARK_TEMPLATE(Iterate, ADAPTOR)->Name(NAME "/Iterate")->Arg(512)->Arg(8192)->Arg(262'144)->Arg(4'194'304);
using UnorderedDenseMapHarness = HashMapHarnessAdaptor<ankerl::unordered_dense::map<std::uint64_t, MyComplexStruct>>;
using UnorderedDenseSegementedMapHarness =
HashMapHarnessAdaptor<ankerl::unordered_dense::segmented_map<std::uint64_t, MyComplexStruct>>;
using UnorderedMapHarness = HashMapHarnessAdaptor<std::unordered_map<std::uint64_t, MyComplexStruct>>;
using MapHarness = HashMapHarnessAdaptor<std::map<std::uint64_t, MyComplexStruct>>;
BIGFOOT_REGISTER_BENCHMARKS(SlotMapAdaptor, "Bigfoot::SlotMap");
BIGFOOT_REGISTER_BENCHMARKS(UnorderedDenseMapHarness, "ankerl::unordered_dense::map");
BIGFOOT_REGISTER_BENCHMARKS(UnorderedDenseSegementedMapHarness, "ankerl::unordered_dense::segmented_map");
BIGFOOT_REGISTER_BENCHMARKS(UnorderedMapHarness, "std::unordered_map");
BIGFOOT_REGISTER_BENCHMARKS(MapHarness, "std::map");
#undef BIGFOOT_REGISTER_BENCHMARKS
#undef BIGFOOT_CACHE_TIER_ARGS
} // namespace Bigfoot

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@@ -2,20 +2,22 @@
* \file AssetTypeID.cpp
*
* \author Romain BOULLARD
* \date February 2026
* \date May 2026
*********************************************************************/
#include <Engine/BigFile/Asset/AssetTypeID.hpp>
#include <Engine/Asset/AssetTypeID.hpp>
#include <Engine/Asset/AssetTypeID_generated.hpp>
namespace flatbuffers
{
Bigfoot::Flat::AssetTypeID Pack(const Bigfoot::AssetTypeID& p_assetTypeID)
Flat::Bigfoot::AssetTypeID Pack(const Bigfoot::AssetTypeID& p_assetTypeID)
{
return Bigfoot::Flat::AssetTypeID {p_assetTypeID};
return Flat::Bigfoot::AssetTypeID {p_assetTypeID};
}
/****************************************************************************************/
Bigfoot::AssetTypeID UnPack(const Bigfoot::Flat::AssetTypeID& p_flatAssetTypeID)
Bigfoot::AssetTypeID UnPack(const Flat::Bigfoot::AssetTypeID& p_flatAssetTypeID)
{
return Bigfoot::AssetTypeID {p_flatAssetTypeID.value()};
}

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@@ -13,8 +13,12 @@ namespace Bigfoot
BigFile::BigFile(const File& p_file)
{
[[maybe_unused]]
const int result = sqlite3_open_v2(p_file.Absolute().Path().data(), &m_db, SQLITE_OPEN_READWRITE, nullptr);
CRITICAL_ASSERT(EngineAssertHandler, result == SQLITE_OK, "Failed to open BigFile DB: {}", sqlite3_errmsg(m_db));
const int result = sqlite3_open_v2(p_file.ToAbsolute().GetPath().data(), &m_db, SQLITE_OPEN_READWRITE, nullptr);
CRITICAL_ASSERT(EngineAssertHandler,
result == SQLITE_OK,
"Failed to open BigFile {} DB: {}",
p_file.ToAbsolute().GetPath(),
sqlite3_errmsg(m_db));
}
/****************************************************************************************/
@@ -111,6 +115,19 @@ void BigFile::Request::Bind(const std::uint32_t p_index, const std::int64_t p_va
/****************************************************************************************/
void BigFile::Request::Bind(const std::uint32_t p_index, const std::uint64_t p_value)
{
ASSERT(EngineAssertHandler,
(p_index >= 1) && (p_index <= static_cast<std::uint32_t>(sqlite3_bind_parameter_count(m_statement))),
"Invalid index for statement");
[[maybe_unused]]
const int result = sqlite3_bind_int64(m_statement, p_index, std::bit_cast<std::int64_t>(p_value));
ASSERT(EngineAssertHandler, result == SQLITE_OK, "Failed to bind value for statement: {}", sqlite3_errmsg(m_db));
}
/****************************************************************************************/
void BigFile::Request::Bind(const std::uint32_t p_index, const float p_value)
{
ASSERT(EngineAssertHandler,
@@ -226,6 +243,13 @@ BigFile::Request::Column::operator std::int64_t() const
/****************************************************************************************/
BigFile::Request::Column::operator std::uint64_t() const
{
return std::bit_cast<std::uint64_t>(sqlite3_column_int64(m_statement, m_index));
}
/****************************************************************************************/
BigFile::Request::Column::operator float() const
{
return static_cast<float>(sqlite3_column_double(m_statement, m_index));

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@@ -1,7 +1,6 @@
PRAGMA journal_mode=WAL;
PRAGMA foreign_keys = ON;
DROP TABLE IF EXISTS AssetHeader;
CREATE TABLE IF NOT EXISTS AssetHeader (
UUID BLOB NOT NULL UNIQUE,
Name TEXT NOT NULL UNIQUE,
@@ -22,7 +21,6 @@ BEGIN
WHERE UUID = NEW.UUID;
END;
DROP TABLE IF EXISTS Asset;
CREATE TABLE IF NOT EXISTS Asset (
UUID BLOB NOT NULL UNIQUE,

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@@ -5,8 +5,7 @@ set(PublicDependencies
SQLite::SQLite3)
set(PrivateDependencies)
set(BigfootPublicDependencies
System
Utils)
System)
set(BigfootPrivateDependencies)
set(BIGFOOT_MAJOR 0)

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@@ -0,0 +1,22 @@
include "Engine/Asset/AssetTypeID.fbs";
include "System/UUID/UUID.fbs";
namespace Flat.Bigfoot;
table AssetHeader
{
uuid: UUID (required, native_inline, id: 0);
name: string (required, id: 1);
type_id: AssetTypeID (required, native_inline, id: 2);
type_name: string (required, id: 3);
version: uint = 0 (id: 4);
}
table Asset
{
header: AssetHeader (required, id: 0);
inner_asset: [ubyte] (required, id: 1);
}
root_type Asset;

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@@ -0,0 +1,131 @@
/*********************************************************************
* \file Asset.hpp
*
* \author Romain BOULLARD
* \date April 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSET_ASSET_HPP
#define BIGFOOT_ENGINE_ASSET_ASSET_HPP
#include <Engine/Asset/Asset_generated.hpp>
#include <Engine/Asset/Reference_generated.hpp>
#include <Engine/EngineAssertHandler.hpp>
#include <EASTL/span.h>
#include <EASTL/vector.h>
#include <ankerl/unordered_dense.h>
#include <flatbuffers/reflection.h>
#include <rapidhash.h>
namespace Bigfoot
{
template<class ASSET>
class Asset
{
public:
using FLAT_ASSET = typename ASSET::FLAT;
Asset():
m_header(::Flat::Bigfoot::AssetHeaderT {.uuid = UUID {},
.name = eastl::string {},
.type_id = GetTypeID(),
.type_name = eastl::string {GetTypeName()},
.version = 0})
{
}
explicit Asset(const eastl::span<const std::byte> p_flatbuffer):
Asset()
{
#ifdef BIGFOOT_NOT_OPTIMIZED
flatbuffers::Verifier verifier {std::bit_cast<std::uint8_t*>(p_flatbuffer.data()), p_flatbuffer.size()};
const bool assetVerified = ::Flat::Bigfoot::VerifyAssetBuffer(verifier);
CRITICAL_ASSERT(EngineAssertHandler, assetVerified, "Given asset could not be verified!");
const ::Flat::Bigfoot::Asset* asset = flatbuffers::GetRoot<::Flat::Bigfoot::Asset>(p_flatbuffer.data());
flatbuffers::Verifier innerAssetVerifier {asset->inner_asset()->data(), asset->inner_asset()->size()};
const bool innerAssetVerified = innerAssetVerifier.VerifyBuffer<FLAT_ASSET>();
CRITICAL_ASSERT(EngineAssertHandler, innerAssetVerified, "Given asset could not be verified!");
#else
const ::Flat::Bigfoot::Asset* asset = flatbuffers::GetRoot<::Flat::Bigfoot::Asset>(p_flatbuffer.data());
#endif
asset->header()->UnPackTo(&m_header);
flatbuffers::GetRoot<FLAT_ASSET>(asset->inner_asset()->data())->UnPackTo(&m_asset, nullptr);
}
Asset(const Asset& p_asset) = delete;
Asset(Asset&& p_asset) = default;
~Asset() = default;
[[nodiscard]]
const ::Flat::Bigfoot::AssetHeaderT& GetHeader() const
{
return m_header;
}
[[nodiscard]]
const typename FLAT_ASSET::NativeTableType& GetAsset() const
{
return m_asset;
}
[[nodiscard]]
typename FLAT_ASSET::NativeTableType& GetAsset()
{
return m_asset;
}
[[nodiscard]]
eastl::vector<std::byte> Save() const
{
flatbuffers::FlatBufferBuilder innerAssetFbb;
innerAssetFbb.Finish(FLAT_ASSET::Pack(innerAssetFbb, &m_asset));
::Flat::Bigfoot::AssetT asset;
asset.header = eastl::make_unique<::Flat::Bigfoot::AssetHeaderT>(m_header);
asset.inner_asset = eastl::vector<std::uint8_t> {innerAssetFbb.GetBufferPointer(),
innerAssetFbb.GetBufferPointer() + innerAssetFbb.GetSize()};
flatbuffers::FlatBufferBuilder assetFbb;
assetFbb.Finish(::Flat::Bigfoot::Asset::Pack(assetFbb, &asset));
return eastl::vector<std::byte> {std::bit_cast<std::byte*>(assetFbb.GetBufferPointer()),
std::bit_cast<std::byte*>(assetFbb.GetBufferPointer() + assetFbb.GetSize())};
}
void SetName(const eastl::string_view p_name)
{
m_header.name = p_name;
}
void SetVersion(const std::uint32_t p_version)
{
m_header.version = p_version;
}
[[nodiscard]]
static std::uint64_t GetTypeID()
{
static const std::uint64_t typeID = rapidhash(FLAT_ASSET::GetFullyQualifiedName(),
std::strlen(FLAT_ASSET::GetFullyQualifiedName()));
return typeID;
}
[[nodiscard]]
static eastl::string_view GetTypeName()
{
return FLAT_ASSET::GetFullyQualifiedName();
}
Asset& operator=(const Asset& p_asset) = delete;
Asset& operator=(Asset&& p_asset) = default;
private:
::Flat::Bigfoot::AssetHeaderT m_header;
typename FLAT_ASSET::NativeTableType m_asset;
};
} // namespace Bigfoot
#endif

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@@ -0,0 +1,103 @@
/*********************************************************************
* \file AssetContainer.hpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSET_ASSETCONTAINER_HPP
#define BIGFOOT_ENGINE_ASSET_ASSETCONTAINER_HPP
#include <Engine/Asset/Asset.hpp>
#include <Engine/EngineAssertHandler.hpp>
#include <Utils/Containers/SlotMap.hpp>
#include <ankerl/unordered_dense.h>
#include <cstdint>
namespace Bigfoot
{
template<class ASSET>
class AssetContainer
{
public:
AssetContainer() = default;
AssetContainer(const AssetContainer& p_container) = default;
AssetContainer(AssetContainer&& p_container) = default;
~AssetContainer() = default;
template<class... ARGS>
[[nodiscard]]
typename SlotMap<ASSET>::SlotKey Insert(ARGS&&... p_args)
{
const typename SlotMap<ASSET>::SlotKey slotKey = m_assets.Insert(std::forward<ARGS>(p_args)...);
m_uuidToSlotKey.insert({m_assets.Get(slotKey)->GetHeader().uuid, slotKey});
return slotKey;
}
[[nodiscard]]
ASSET* Get(const typename SlotMap<ASSET>::SlotKey p_key)
{
return m_assets.Get(p_key);
}
[[nodiscard]]
const ASSET* Get(const typename SlotMap<ASSET>::SlotKey p_key) const
{
return m_assets.Get(p_key);
}
[[nodiscard]]
typename SlotMap<ASSET>::SlotKey GetSlotKey(const UUID& p_uuid) const
{
if (const auto it = m_uuidToSlotKey.find(p_uuid); it != m_uuidToSlotKey.end())
{
return it->second;
}
return typename SlotMap<ASSET>::SlotKey {};
}
[[nodiscard]]
bool Has(const typename SlotMap<ASSET>::SlotKey p_key) const
{
return m_assets.Has(p_key);
}
[[nodiscard]]
bool Has(const UUID& p_uuid) const
{
return m_uuidToSlotKey.contains(p_uuid);
}
void Remove(const typename SlotMap<ASSET>::SlotKey p_key)
{
if (const ASSET* asset = Get(p_key))
{
const UUID uuid = asset->GetHeader().uuid;
m_assets.Remove(p_key);
m_uuidToSlotKey.erase(uuid);
}
}
void Remove(const UUID& p_uuid)
{
if (const auto it = m_uuidToSlotKey.find(p_uuid); it != m_uuidToSlotKey.end())
{
Remove(it->second);
}
}
AssetContainer& operator=(const AssetContainer& p_container) = default;
AssetContainer& operator=(AssetContainer&& p_container) = default;
private:
ankerl::unordered_dense::segmented_map<UUID, typename SlotMap<ASSET>::SlotKey> m_uuidToSlotKey;
SlotMap<ASSET> m_assets;
};
} // namespace Bigfoot
#endif

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@@ -0,0 +1,66 @@
/*********************************************************************
* \file AssetHelper.hpp
*
* \author Romain BOULLARD
* \date April 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSET_ASSETHELPER_HPP
#define BIGFOOT_ENGINE_ASSET_ASSETHELPER_HPP
#include <Engine/Asset/AssetContainer.hpp>
#include <Engine/Asset/Reference.hpp>
#include <Engine/Asset/Reference_generated.hpp>
#define ASSET_SOFT_REF_DECL(AssetName, AssetType) \
namespace flatbuffers \
{ \
Flat::Bigfoot::SoftReference PackSoftReference##AssetName(const Bigfoot::SoftReference<AssetType>& p_softRef); \
Bigfoot::SoftReference<AssetType> UnPackSoftReference##AssetName(const Flat::Bigfoot::SoftReference& p_softRef); \
}
#define ASSET_HARD_REF_DECL(AssetName, AssetType) \
namespace flatbuffers \
{ \
Flat::Bigfoot::HardReference PackHardReference##AssetName(const Bigfoot::HardReference<AssetType>& p_hardRef); \
Bigfoot::HardReference<AssetType> UnPackHardReference##AssetName(const Flat::Bigfoot::HardReference& p_hardRef); \
}
#define ASSET_REF_DECL(AssetName, AssetType) \
ASSET_SOFT_REF_DECL(AssetName, AssetType) \
ASSET_HARD_REF_DECL(AssetName, AssetType)
#define ASSET_DECL(AssetName, AssetType) ASSET_REF_DECL(AssetName, AssetType)
/****************************************************************************************/
#define ASSET_SOFT_REF_IMPL(AssetName, AssetType) \
namespace flatbuffers \
{ \
Flat::Bigfoot::SoftReference PackSoftReference##AssetName(const Bigfoot::SoftReference<AssetType>& p_softRef) \
{ \
return {flatbuffers::Pack(p_softRef.GetUUID())}; \
} \
Bigfoot::SoftReference<AssetType> UnPackSoftReference##AssetName(const Flat::Bigfoot::SoftReference& p_softRef) \
{ \
return {flatbuffers::UnPack(p_softRef.uuid())}; \
} \
}
#define ASSET_HARD_REF_IMPL(AssetName, AssetType) \
namespace flatbuffers \
{ \
Flat::Bigfoot::HardReference PackHardReference##AssetName(const Bigfoot::HardReference<AssetType>& p_hardRef) \
{ \
return {flatbuffers::Pack(p_hardRef.GetUUID())}; \
} \
Bigfoot::HardReference<AssetType> UnPackHardReference##AssetName(const Flat::Bigfoot::HardReference& p_hardRef) \
{ \
return {flatbuffers::UnPack(p_hardRef.uuid())}; \
} \
}
#define ASSET_REF_IMPL(AssetName, AssetType) \
ASSET_SOFT_REF_IMPL(AssetName, AssetType) \
ASSET_HARD_REF_IMPL(AssetName, AssetType)
#define ASSET_IMPL(AssetName, AssetType) ASSET_REF_IMPL(AssetName, AssetType)
#endif

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@@ -1,4 +1,6 @@
namespace Bigfoot.Flat;
native_include "Engine/Asset/AssetTypeID.hpp";
namespace Flat.Bigfoot;
struct AssetTypeID (native_type: "::Bigfoot::AssetTypeID")
{

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@@ -0,0 +1,34 @@
/*********************************************************************
* \file AssetTypeID.hpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSET_ASSETTYPEID_HPP
#define BIGFOOT_ENGINE_ASSET_ASSETTYPEID_HPP
#include <cstdint>
namespace Bigfoot
{
using AssetTypeID = std::uint64_t;
}
/****************************************************************************************/
namespace Flat
{
namespace Bigfoot
{
struct AssetTypeID;
}
} // namespace Flat
/****************************************************************************************/
namespace flatbuffers
{
Flat::Bigfoot::AssetTypeID Pack(const Bigfoot::AssetTypeID& p_assetTypeID);
Bigfoot::AssetTypeID UnPack(const Flat::Bigfoot::AssetTypeID& p_flatAssetTypeID);
} // namespace flatbuffers
#endif

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@@ -1,8 +1,8 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETTYPEID_BIGFOOT_FLAT_H_
#define FLATBUFFERS_GENERATED_ASSETTYPEID_BIGFOOT_FLAT_H_
#ifndef FLATBUFFERS_GENERATED_ASSETTYPEID_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSETTYPEID_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
@@ -13,11 +13,14 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/Asset/AssetTypeID.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat {
namespace Bigfoot {
struct AssetTypeID;
@@ -33,7 +36,7 @@ FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(8) AssetTypeID FLATBUFFERS_FINAL_CLASS {
return AssetTypeIDTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.AssetTypeID";
return "Flat.Bigfoot.AssetTypeID";
}
AssetTypeID()
: value_(0) {
@@ -56,16 +59,13 @@ inline const ::flatbuffers::TypeTable *AssetTypeIDTypeTable() {
{ ::flatbuffers::ET_ULONG, 0, -1 }
};
static const int64_t values[] = { 0, 8 };
static const char * const names[] = {
"value"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, nullptr, values, names
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, nullptr, values, nullptr
};
return &tt;
}
} // namespace Flat
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSETTYPEID_BIGFOOT_FLAT_H_
#endif // FLATBUFFERS_GENERATED_ASSETTYPEID_FLAT_BIGFOOT_H_

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@@ -0,0 +1,406 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSET_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSET_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
// Ensure the included flatbuffers.h is the same version as when this file was
// generated, otherwise it may not be compatible.
static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_MINOR == 12 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/Asset/AssetTypeID.hpp"
#include "System/UUID/UUID.hpp"
#include "Engine/Asset/AssetTypeID_generated.hpp"
#include "System/UUID/UUID_generated.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Flat {
namespace Bigfoot {
struct AssetHeader;
struct AssetHeaderBuilder;
struct AssetHeaderT;
struct Asset;
struct AssetBuilder;
struct AssetT;
inline const ::flatbuffers::TypeTable *AssetHeaderTypeTable();
inline const ::flatbuffers::TypeTable *AssetTypeTable();
struct AssetHeaderT : public ::flatbuffers::NativeTable {
typedef AssetHeader TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetHeaderT";
}
::Bigfoot::UUID uuid{};
eastl::string name{};
::Bigfoot::AssetTypeID type_id{};
eastl::string type_name{};
uint32_t version = 0;
};
struct AssetHeader FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef AssetHeaderT NativeTableType;
typedef AssetHeaderBuilder Builder;
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return AssetHeaderTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetHeader";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_UUID = 4,
VT_NAME = 6,
VT_TYPE_ID = 8,
VT_TYPE_NAME = 10,
VT_VERSION = 12
};
const Flat::Bigfoot::UUID *uuid() const {
return GetStruct<const Flat::Bigfoot::UUID *>(VT_UUID);
}
const ::flatbuffers::String *name() const {
return GetPointer<const ::flatbuffers::String *>(VT_NAME);
}
const Flat::Bigfoot::AssetTypeID *type_id() const {
return GetStruct<const Flat::Bigfoot::AssetTypeID *>(VT_TYPE_ID);
}
const ::flatbuffers::String *type_name() const {
return GetPointer<const ::flatbuffers::String *>(VT_TYPE_NAME);
}
uint32_t version() const {
return GetField<uint32_t>(VT_VERSION, 0);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyFieldRequired<Flat::Bigfoot::UUID>(verifier, VT_UUID, 1) &&
VerifyOffsetRequired(verifier, VT_NAME) &&
verifier.VerifyString(name()) &&
VerifyFieldRequired<Flat::Bigfoot::AssetTypeID>(verifier, VT_TYPE_ID, 8) &&
VerifyOffsetRequired(verifier, VT_TYPE_NAME) &&
verifier.VerifyString(type_name()) &&
VerifyField<uint32_t>(verifier, VT_VERSION, 4) &&
verifier.EndTable();
}
AssetHeaderT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
void UnPackTo(AssetHeaderT *_o, const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
static ::flatbuffers::Offset<AssetHeader> Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT* _o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
};
struct AssetHeaderBuilder {
typedef AssetHeader Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_uuid(const Flat::Bigfoot::UUID *uuid) {
fbb_.AddStruct(AssetHeader::VT_UUID, uuid);
}
void add_name(::flatbuffers::Offset<::flatbuffers::String> name) {
fbb_.AddOffset(AssetHeader::VT_NAME, name);
}
void add_type_id(const Flat::Bigfoot::AssetTypeID *type_id) {
fbb_.AddStruct(AssetHeader::VT_TYPE_ID, type_id);
}
void add_type_name(::flatbuffers::Offset<::flatbuffers::String> type_name) {
fbb_.AddOffset(AssetHeader::VT_TYPE_NAME, type_name);
}
void add_version(uint32_t version) {
fbb_.AddElement<uint32_t>(AssetHeader::VT_VERSION, version, 0);
}
explicit AssetHeaderBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<AssetHeader> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<AssetHeader>(end);
fbb_.Required(o, AssetHeader::VT_UUID);
fbb_.Required(o, AssetHeader::VT_NAME);
fbb_.Required(o, AssetHeader::VT_TYPE_ID);
fbb_.Required(o, AssetHeader::VT_TYPE_NAME);
return o;
}
};
inline ::flatbuffers::Offset<AssetHeader> CreateAssetHeader(
::flatbuffers::FlatBufferBuilder &_fbb,
const Flat::Bigfoot::UUID *uuid = nullptr,
::flatbuffers::Offset<::flatbuffers::String> name = 0,
const Flat::Bigfoot::AssetTypeID *type_id = nullptr,
::flatbuffers::Offset<::flatbuffers::String> type_name = 0,
uint32_t version = 0) {
AssetHeaderBuilder builder_(_fbb);
builder_.add_version(version);
builder_.add_type_name(type_name);
builder_.add_type_id(type_id);
builder_.add_name(name);
builder_.add_uuid(uuid);
return builder_.Finish();
}
struct AssetHeader::Traits {
using type = AssetHeader;
static auto constexpr Create = CreateAssetHeader;
};
::flatbuffers::Offset<AssetHeader> CreateAssetHeader(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
struct AssetT : public ::flatbuffers::NativeTable {
typedef Asset TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetT";
}
eastl::unique_ptr<Flat::Bigfoot::AssetHeaderT> header{};
eastl::vector<uint8_t> inner_asset{};
AssetT() = default;
AssetT(const AssetT &o);
AssetT(AssetT&&) FLATBUFFERS_NOEXCEPT = default;
AssetT &operator=(AssetT o) FLATBUFFERS_NOEXCEPT;
};
struct Asset FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef AssetT NativeTableType;
typedef AssetBuilder Builder;
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return AssetTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.Asset";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_HEADER = 4,
VT_INNER_ASSET = 6
};
const Flat::Bigfoot::AssetHeader *header() const {
return GetPointer<const Flat::Bigfoot::AssetHeader *>(VT_HEADER);
}
const ::flatbuffers::Vector<uint8_t> *inner_asset() const {
return GetPointer<const ::flatbuffers::Vector<uint8_t> *>(VT_INNER_ASSET);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyOffsetRequired(verifier, VT_HEADER) &&
verifier.VerifyTable(header()) &&
VerifyOffsetRequired(verifier, VT_INNER_ASSET) &&
verifier.VerifyVector(inner_asset()) &&
verifier.EndTable();
}
AssetT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
void UnPackTo(AssetT *_o, const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
static ::flatbuffers::Offset<Asset> Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetT* _o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
};
struct AssetBuilder {
typedef Asset Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_header(::flatbuffers::Offset<Flat::Bigfoot::AssetHeader> header) {
fbb_.AddOffset(Asset::VT_HEADER, header);
}
void add_inner_asset(::flatbuffers::Offset<::flatbuffers::Vector<uint8_t>> inner_asset) {
fbb_.AddOffset(Asset::VT_INNER_ASSET, inner_asset);
}
explicit AssetBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<Asset> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<Asset>(end);
fbb_.Required(o, Asset::VT_HEADER);
fbb_.Required(o, Asset::VT_INNER_ASSET);
return o;
}
};
inline ::flatbuffers::Offset<Asset> CreateAsset(
::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<Flat::Bigfoot::AssetHeader> header = 0,
::flatbuffers::Offset<::flatbuffers::Vector<uint8_t>> inner_asset = 0) {
AssetBuilder builder_(_fbb);
builder_.add_inner_asset(inner_asset);
builder_.add_header(header);
return builder_.Finish();
}
struct Asset::Traits {
using type = Asset;
static auto constexpr Create = CreateAsset;
};
::flatbuffers::Offset<Asset> CreateAsset(::flatbuffers::FlatBufferBuilder &_fbb, const AssetT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
inline AssetHeaderT *AssetHeader::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetHeaderT>();
UnPackTo(_o.get(), _resolver);
return _o.release();
}
inline void AssetHeader::UnPackTo(AssetHeaderT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = uuid(); if (_e) _o->uuid = ::flatbuffers::UnPack(*_e); }
{ auto _e = name(); if (_e) _o->name = eastl::string(_e->c_str(), _e->size()); }
{ auto _e = type_id(); if (_e) _o->type_id = ::flatbuffers::UnPack(*_e); }
{ auto _e = type_name(); if (_e) _o->type_name = eastl::string(_e->c_str(), _e->size()); }
{ auto _e = version(); _o->version = _e; }
}
inline ::flatbuffers::Offset<AssetHeader> CreateAssetHeader(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
return AssetHeader::Pack(_fbb, _o, _rehasher);
}
inline ::flatbuffers::Offset<AssetHeader> AssetHeader::Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT* _o, const ::flatbuffers::rehasher_function_t *_rehasher) {
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetHeaderT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _uuid = ::flatbuffers::Pack(_o->uuid);
auto _name = _fbb.CreateString(_o->name);
auto _type_id = ::flatbuffers::Pack(_o->type_id);
auto _type_name = _fbb.CreateString(_o->type_name);
auto _version = _o->version;
return Flat::Bigfoot::CreateAssetHeader(
_fbb,
&_uuid,
_name,
&_type_id,
_type_name,
_version);
}
inline AssetT::AssetT(const AssetT &o)
: header((o.header) ? new Flat::Bigfoot::AssetHeaderT(*o.header) : nullptr),
inner_asset(o.inner_asset) {
}
inline AssetT &AssetT::operator=(AssetT o) FLATBUFFERS_NOEXCEPT {
std::swap(header, o.header);
std::swap(inner_asset, o.inner_asset);
return *this;
}
inline AssetT *Asset::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetT>();
UnPackTo(_o.get(), _resolver);
return _o.release();
}
inline void Asset::UnPackTo(AssetT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = header(); if (_e) { if(_o->header) { _e->UnPackTo(_o->header.get(), _resolver); } else { _o->header = eastl::unique_ptr<Flat::Bigfoot::AssetHeaderT>(_e->UnPack(_resolver)); } } else if (_o->header) { _o->header.reset(); } }
{ auto _e = inner_asset(); if (_e) { _o->inner_asset.resize(_e->size()); std::copy(_e->begin(), _e->end(), _o->inner_asset.begin()); } }
}
inline ::flatbuffers::Offset<Asset> CreateAsset(::flatbuffers::FlatBufferBuilder &_fbb, const AssetT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
return Asset::Pack(_fbb, _o, _rehasher);
}
inline ::flatbuffers::Offset<Asset> Asset::Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetT* _o, const ::flatbuffers::rehasher_function_t *_rehasher) {
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _header = _o->header ? CreateAssetHeader(_fbb, _o->header.get(), _rehasher) : 0;
auto _inner_asset = _fbb.CreateVector(_o->inner_asset.data(), _o->inner_asset.size());
return Flat::Bigfoot::CreateAsset(
_fbb,
_header,
_inner_asset);
}
inline const ::flatbuffers::TypeTable *AssetHeaderTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_STRING, 0, -1 },
{ ::flatbuffers::ET_SEQUENCE, 0, 1 },
{ ::flatbuffers::ET_STRING, 0, -1 },
{ ::flatbuffers::ET_UINT, 0, -1 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::UUIDTypeTable,
Flat::Bigfoot::AssetTypeIDTypeTable
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 5, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}
inline const ::flatbuffers::TypeTable *AssetTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_UCHAR, 1, -1 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::AssetHeaderTypeTable
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 2, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}
inline const Flat::Bigfoot::Asset *GetAsset(const void *buf) {
return ::flatbuffers::GetRoot<Flat::Bigfoot::Asset>(buf);
}
inline const Flat::Bigfoot::Asset *GetSizePrefixedAsset(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Flat::Bigfoot::Asset>(buf);
}
template <bool B = false>
inline bool VerifyAssetBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifyBuffer<Flat::Bigfoot::Asset>(nullptr);
}
template <bool B = false>
inline bool VerifySizePrefixedAssetBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifySizePrefixedBuffer<Flat::Bigfoot::Asset>(nullptr);
}
inline const char *AssetExtension() {
return "bfbs";
}
inline void FinishAssetBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Flat::Bigfoot::Asset> root) {
fbb.Finish(root);
}
inline void FinishSizePrefixedAssetBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Flat::Bigfoot::Asset> root) {
fbb.FinishSizePrefixed(root);
}
inline eastl::unique_ptr<Flat::Bigfoot::AssetT> UnPackAsset(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Flat::Bigfoot::AssetT>(GetAsset(buf)->UnPack(res));
}
inline eastl::unique_ptr<Flat::Bigfoot::AssetT> UnPackSizePrefixedAsset(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Flat::Bigfoot::AssetT>(GetSizePrefixedAsset(buf)->UnPack(res));
}
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSET_FLAT_BIGFOOT_H_

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@@ -0,0 +1,15 @@
native_include "Engine/Asset/Reference.hpp";
include "System/UUID/UUID.fbs";
namespace Flat.Bigfoot;
struct HardReference
{
uuid:UUID;
}
struct SoftReference
{
uuid:UUID;
}

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@@ -0,0 +1,179 @@
/*********************************************************************
* \file Reference.hpp
*
* \author Romain BOULLARD
* \date April 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSET_REFERENCE_HPP
#define BIGFOOT_ENGINE_ASSET_REFERENCE_HPP
#include <Engine/Asset/AssetContainer.hpp>
#include <System/UUID/UUID.hpp>
#include <utility>
namespace Bigfoot
{
template<class ASSET>
class HardReference
{
public:
HardReference() = default;
HardReference(const UUID& p_uuid):
m_uuid(p_uuid)
{
Acquire();
}
HardReference(const HardReference& p_ref):
m_uuid(p_ref.m_uuid)
{
Acquire();
}
HardReference(HardReference&& p_ref) noexcept:
m_uuid(std::exchange(p_ref.m_uuid, UUID::NULL_UUID))
{
}
[[nodiscard]]
const UUID& GetUUID() const
{
return m_uuid;
}
~HardReference()
{
Release();
}
HardReference& operator=(const HardReference& p_ref)
{
if (this != &p_ref)
{
Release();
m_uuid = p_ref.m_uuid;
Acquire();
}
return *this;
}
HardReference& operator=(HardReference&& p_ref) noexcept
{
if (this != &p_ref)
{
Release();
m_uuid = std::exchange(p_ref.m_uuid, UUID::NULL_UUID);
}
return *this;
}
[[nodiscard]]
bool operator==(const HardReference& p_ref) const
{
return m_uuid == p_ref.m_uuid;
}
private:
void Acquire()
{
if (m_uuid)
{
// AssetContainer<ASSET>::Get().IncrementHardRefCount(m_uuid);
}
}
void Release()
{
if (m_uuid)
{
// AssetContainer<ASSET>::Get().DecrementHardRefCount(m_uuid);
}
}
UUID m_uuid = UUID::NULL_UUID;
};
template<class ASSET>
class SoftReference
{
public:
SoftReference() = default;
SoftReference(const UUID& p_uuid):
m_uuid(p_uuid)
{
Acquire();
}
SoftReference(const SoftReference& p_ref):
m_uuid(p_ref.m_uuid)
{
Acquire();
}
SoftReference(SoftReference&& p_ref) noexcept:
m_uuid(std::exchange(p_ref.m_uuid, UUID::NULL_UUID))
{
}
[[nodiscard]]
const UUID& GetUUID() const
{
return m_uuid;
}
~SoftReference()
{
Release();
}
SoftReference& operator=(const SoftReference& p_ref)
{
if (this != &p_ref)
{
Release();
m_uuid = p_ref.m_uuid;
Acquire();
}
return *this;
}
SoftReference& operator=(SoftReference&& p_ref) noexcept
{
if (this != &p_ref)
{
Release();
m_uuid = std::exchange(p_ref.m_uuid, UUID::NULL_UUID);
}
return *this;
}
[[nodiscard]]
bool operator==(const SoftReference& p_ref) const
{
return m_uuid == p_ref.m_uuid;
}
private:
void Acquire()
{
if (m_uuid)
{
// AssetContainer<ASSET>::Get().IncrementSoftRefCount(m_uuid);
}
}
void Release()
{
if (m_uuid)
{
// AssetContainer<ASSET>::Get().DecrementSoftRefCount(m_uuid);
}
}
UUID m_uuid = UUID::NULL_UUID;
};
} // namespace Bigfoot
#endif

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@@ -0,0 +1,123 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_REFERENCE_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_REFERENCE_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
// Ensure the included flatbuffers.h is the same version as when this file was
// generated, otherwise it may not be compatible.
static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_MINOR == 12 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/Asset/Reference.hpp"
#include "System/UUID/UUID.hpp"
#include "Engine/Asset/Reference.hpp"
#include "System/UUID/UUID_generated.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Flat {
namespace Bigfoot {
struct HardReference;
struct SoftReference;
inline const ::flatbuffers::TypeTable *HardReferenceTypeTable();
inline const ::flatbuffers::TypeTable *SoftReferenceTypeTable();
FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(1) HardReference FLATBUFFERS_FINAL_CLASS {
private:
Flat::Bigfoot::UUID uuid_;
public:
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return HardReferenceTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.HardReference";
}
HardReference()
: uuid_() {
}
HardReference(const Flat::Bigfoot::UUID &_uuid)
: uuid_(_uuid) {
}
const Flat::Bigfoot::UUID &uuid() const {
return uuid_;
}
};
FLATBUFFERS_STRUCT_END(HardReference, 16);
struct HardReference::Traits {
using type = HardReference;
};
FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(1) SoftReference FLATBUFFERS_FINAL_CLASS {
private:
Flat::Bigfoot::UUID uuid_;
public:
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return SoftReferenceTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.SoftReference";
}
SoftReference()
: uuid_() {
}
SoftReference(const Flat::Bigfoot::UUID &_uuid)
: uuid_(_uuid) {
}
const Flat::Bigfoot::UUID &uuid() const {
return uuid_;
}
};
FLATBUFFERS_STRUCT_END(SoftReference, 16);
struct SoftReference::Traits {
using type = SoftReference;
};
inline const ::flatbuffers::TypeTable *HardReferenceTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::UUIDTypeTable
};
static const int64_t values[] = { 0, 16 };
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_STRUCT, 1, type_codes, type_refs, nullptr, values, nullptr
};
return &tt;
}
inline const ::flatbuffers::TypeTable *SoftReferenceTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::UUIDTypeTable
};
static const int64_t values[] = { 0, 16 };
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_STRUCT, 1, type_codes, type_refs, nullptr, values, nullptr
};
return &tt;
}
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_REFERENCE_FLAT_BIGFOOT_H_

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@@ -1,122 +0,0 @@
/*********************************************************************
* \file Asset.hpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSET_HPP
#define BIGFOOT_ENGINE_ASSET_HPP
#include <Engine/BigFile/Asset/AssetHeader_generated.hpp>
#include <Engine/EngineAssertHandler.hpp>
#include <EASTL/vector.h>
#include <rapidhash.h>
namespace Bigfoot
{
template<typename FLAT_ASSET>
concept FlatAssetConcept = requires(FLAT_ASSET p_flatAsset) {
requires std::is_base_of_v<::flatbuffers::Table, FLAT_ASSET> &&
std::derived_from<typename FLAT_ASSET::NativeTableType, ::flatbuffers::NativeTable>;
{ FLAT_ASSET::GetFullyQualifiedName() } -> std::convertible_to<const char*>;
{ p_flatAsset.asset_header() } -> std::same_as<const Bigfoot::Flat::AssetHeader*>;
};
template<FlatAssetConcept FLAT_ASSET>
class FlatAssetWrapper
{
private:
using FLAT_ASSET_NATIVE = FLAT_ASSET::NativeTableType;
using FLAT_ASSET_BUILDER = FLAT_ASSET::Builder;
public:
FlatAssetWrapper()
{
m_asset.asset_header = eastl::make_unique<Flat::AssetHeaderT>();
m_asset.asset_header->type_id = TypeID();
m_asset.asset_header->type_name = TypeName();
}
FlatAssetWrapper(const eastl::span<const std::byte> p_flatBuffer)
{
flatbuffers::Verifier::Options verifierOptions;
flatbuffers::Verifier verifier {std::bit_cast<const std::uint8_t*>(p_flatBuffer.data()),
p_flatBuffer.size(),
verifierOptions};
CRITICAL_ASSERT(EngineAssertHandler,
verifier.VerifyBuffer<FLAT_ASSET>(),
"Flatbuffer verifier failed for FLAT_ASSET!");
const FLAT_ASSET* flatAsset = flatbuffers::GetRoot<FLAT_ASSET>(p_flatBuffer.data());
CRITICAL_ASSERT(EngineAssertHandler,
flatAsset->asset_header()->type_id()->value() == TypeID() &&
(std::strcmp(flatAsset->asset_header()->type_name()->c_str(), TypeName().data()) == 0),
"Mismatch between flatbufer type and actual type! flatbuffer = {}/{}; expected = {}/{}",
flatAsset->asset_header()->type_name()->c_str(),
flatAsset->asset_header()->type_id()->value(),
TypeName(),
TypeID());
flatAsset->UnPackTo(&m_asset);
}
FlatAssetWrapper(const FlatAssetWrapper& p_assetWrapper) = delete;
FlatAssetWrapper(FlatAssetWrapper&& p_assetWrapper) = delete;
~FlatAssetWrapper() = default;
eastl::vector<std::byte> Pack() const
{
flatbuffers::FlatBufferBuilder builder;
builder.Finish(FLAT_ASSET::Pack(builder, &m_asset));
eastl::vector<std::byte> result {builder.GetSize()};
eastl::transform(builder.GetBufferSpan().begin(),
builder.GetBufferSpan().end(),
result.begin(),
[](const std::uint8_t p_value)
{
return static_cast<std::byte>(p_value);
});
return result;
}
[[nodiscard]]
FLAT_ASSET_NATIVE& Asset()
{
return m_asset;
}
[[nodiscard]]
const FLAT_ASSET_NATIVE& Asset() const
{
return m_asset;
}
static AssetTypeID TypeID()
{
static eastl::string_view typeName = TypeName();
static AssetTypeID typeID = rapidhash(typeName.data(), typeName.size());
return typeID;
}
static eastl::string_view TypeName()
{
static eastl::string_view typeName {FLAT_ASSET::GetFullyQualifiedName()};
return typeName;
}
FlatAssetWrapper& operator=(const FlatAssetWrapper p_assetWrapper) = delete;
FlatAssetWrapper& operator=(FlatAssetWrapper&& p_assetWrapper) = delete;
private:
FLAT_ASSET_NATIVE m_asset;
};
} // namespace Bigfoot
#endif

View File

@@ -1,98 +0,0 @@
/*********************************************************************
* \file AssetContainer.hpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSETCONTAINER_HPP
#define BIGFOOT_ENGINE_ASSETCONTAINER_HPP
#include <Engine/BigFile/Asset/Asset.hpp>
#include <Engine/EngineAssertHandler.hpp>
#include <eastl/vector_map.h>
namespace Bigfoot
{
template<typename ASSET>
concept BigfootAssetConcept = requires(ASSET p_asset, const ASSET p_constAsset) {
requires FlatAssetConcept<typename ASSET::FLAT_ASSET> &&
std::constructible_from<ASSET, FlatAssetWrapper<typename ASSET::FLAT_ASSET>*>;
};
template<BigfootAssetConcept ASSET>
class AssetContainer
{
public:
AssetContainer() = default;
AssetContainer(const AssetContainer& p_container) = delete;
AssetContainer(AssetContainer&& p_container) = delete;
[[nodiscard]]
bool Add(const UUID& p_uuid, const eastl::string_view p_name)
{
FlatAssetWrapper<typename ASSET::FLAT_ASSET> flatAsset {};
flatAsset.Asset().asset_header->uuid = p_uuid;
flatAsset.Asset().asset_header->name = p_name;
return Add(p_uuid, flatAsset.Pack());
}
[[nodiscard]]
bool Add(const UUID& p_uuid, const eastl::span<const std::byte> p_flatBuffer)
{
const auto& added = m_assets.emplace(p_uuid, eastl::make_unique<AssetFlatAssetWrapperPair>(p_flatBuffer));
CRITICAL_ASSERT(EngineAssertHandler,
!added.second || added.first->second->m_flatAsset.Asset().asset_header->uuid == p_uuid,
"Added ASSET UUID does not match !");
return added.second;
}
[[nodiscard]]
ASSET* Get(const UUID& p_uuid)
{
return m_assets.contains(p_uuid) ? &m_assets.at_key(p_uuid)->m_asset : nullptr;
}
[[nodiscard]]
const ASSET* Get(const UUID& p_uuid) const
{
return m_assets.contains(p_uuid) ? &m_assets.at_key(p_uuid)->m_asset : nullptr;
}
void Remove(const UUID& p_uuid)
{
m_assets.erase(p_uuid);
}
[[nodiscard]]
eastl::vector<std::byte> Pack(const UUID& p_uuid) const
{
return m_assets.contains(p_uuid) ? m_assets.at_key(p_uuid)->m_flatAsset.Pack() : eastl::vector<std::byte> {};
}
~AssetContainer() = default;
AssetContainer& operator=(const AssetContainer& p_container) = delete;
AssetContainer& operator=(AssetContainer&& p_container) = delete;
private:
struct AssetFlatAssetWrapperPair
{
AssetFlatAssetWrapperPair(const eastl::span<const std::byte> p_flatbuffer):
m_flatAsset(p_flatbuffer),
m_asset(&m_flatAsset)
{
}
FlatAssetWrapper<typename ASSET::FLAT_ASSET> m_flatAsset;
ASSET m_asset;
};
eastl::vector_map<UUID, eastl::unique_ptr<AssetFlatAssetWrapperPair>> m_assets;
};
} // namespace Bigfoot
#endif

View File

@@ -1,18 +0,0 @@
include "Engine/BigFile/Asset/AssetTypeID.fbs";
native_include "Engine/BigFile/Asset/AssetTypeID.hpp";
include "System/UUID/UUID.fbs";
native_include "System/UUID/UUID.hpp";
namespace Bigfoot.Flat;
table AssetHeader
{
uuid: UUID (required, native_inline);
name: string (required);
type_id: AssetTypeID (required, native_inline);
type_name: string (required);
version: uint;
}
root_type AssetHeader;

View File

@@ -1,262 +0,0 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETHEADER_BIGFOOT_FLAT_H_
#define FLATBUFFERS_GENERATED_ASSETHEADER_BIGFOOT_FLAT_H_
#include "flatbuffers/flatbuffers.h"
// Ensure the included flatbuffers.h is the same version as when this file was
// generated, otherwise it may not be compatible.
static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_MINOR == 12 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/BigFile/Asset/AssetTypeID.hpp"
#include "Engine/BigFile/Asset/AssetTypeID.hpp"
#include "System/UUID/UUID.hpp"
#include "Engine/BigFile/Asset/AssetTypeID_generated.hpp"
#include "System/UUID/UUID_generated.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
namespace Bigfoot {
namespace Flat {
struct AssetHeader;
struct AssetHeaderBuilder;
struct AssetHeaderT;
inline const ::flatbuffers::TypeTable *AssetHeaderTypeTable();
struct AssetHeaderT : public ::flatbuffers::NativeTable {
typedef AssetHeader TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.AssetHeaderT";
}
::Bigfoot::UUID uuid{};
eastl::string name{};
::Bigfoot::AssetTypeID type_id{};
eastl::string type_name{};
uint32_t version = 0;
};
struct AssetHeader FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef AssetHeaderT NativeTableType;
typedef AssetHeaderBuilder Builder;
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return AssetHeaderTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.AssetHeader";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_UUID = 4,
VT_NAME = 6,
VT_TYPE_ID = 8,
VT_TYPE_NAME = 10,
VT_VERSION = 12
};
const Bigfoot::Flat::UUID *uuid() const {
return GetStruct<const Bigfoot::Flat::UUID *>(VT_UUID);
}
const ::flatbuffers::String *name() const {
return GetPointer<const ::flatbuffers::String *>(VT_NAME);
}
const Bigfoot::Flat::AssetTypeID *type_id() const {
return GetStruct<const Bigfoot::Flat::AssetTypeID *>(VT_TYPE_ID);
}
const ::flatbuffers::String *type_name() const {
return GetPointer<const ::flatbuffers::String *>(VT_TYPE_NAME);
}
uint32_t version() const {
return GetField<uint32_t>(VT_VERSION, 0);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyFieldRequired<Bigfoot::Flat::UUID>(verifier, VT_UUID, 1) &&
VerifyOffsetRequired(verifier, VT_NAME) &&
verifier.VerifyString(name()) &&
VerifyFieldRequired<Bigfoot::Flat::AssetTypeID>(verifier, VT_TYPE_ID, 8) &&
VerifyOffsetRequired(verifier, VT_TYPE_NAME) &&
verifier.VerifyString(type_name()) &&
VerifyField<uint32_t>(verifier, VT_VERSION, 4) &&
verifier.EndTable();
}
AssetHeaderT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
void UnPackTo(AssetHeaderT *_o, const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
static ::flatbuffers::Offset<AssetHeader> Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT* _o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
};
struct AssetHeaderBuilder {
typedef AssetHeader Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_uuid(const Bigfoot::Flat::UUID *uuid) {
fbb_.AddStruct(AssetHeader::VT_UUID, uuid);
}
void add_name(::flatbuffers::Offset<::flatbuffers::String> name) {
fbb_.AddOffset(AssetHeader::VT_NAME, name);
}
void add_type_id(const Bigfoot::Flat::AssetTypeID *type_id) {
fbb_.AddStruct(AssetHeader::VT_TYPE_ID, type_id);
}
void add_type_name(::flatbuffers::Offset<::flatbuffers::String> type_name) {
fbb_.AddOffset(AssetHeader::VT_TYPE_NAME, type_name);
}
void add_version(uint32_t version) {
fbb_.AddElement<uint32_t>(AssetHeader::VT_VERSION, version, 0);
}
explicit AssetHeaderBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<AssetHeader> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<AssetHeader>(end);
fbb_.Required(o, AssetHeader::VT_UUID);
fbb_.Required(o, AssetHeader::VT_NAME);
fbb_.Required(o, AssetHeader::VT_TYPE_ID);
fbb_.Required(o, AssetHeader::VT_TYPE_NAME);
return o;
}
};
inline ::flatbuffers::Offset<AssetHeader> CreateAssetHeader(
::flatbuffers::FlatBufferBuilder &_fbb,
const Bigfoot::Flat::UUID *uuid = nullptr,
::flatbuffers::Offset<::flatbuffers::String> name = 0,
const Bigfoot::Flat::AssetTypeID *type_id = nullptr,
::flatbuffers::Offset<::flatbuffers::String> type_name = 0,
uint32_t version = 0) {
AssetHeaderBuilder builder_(_fbb);
builder_.add_version(version);
builder_.add_type_name(type_name);
builder_.add_type_id(type_id);
builder_.add_name(name);
builder_.add_uuid(uuid);
return builder_.Finish();
}
struct AssetHeader::Traits {
using type = AssetHeader;
static auto constexpr Create = CreateAssetHeader;
};
::flatbuffers::Offset<AssetHeader> CreateAssetHeader(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
inline AssetHeaderT *AssetHeader::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetHeaderT>();
UnPackTo(_o.get(), _resolver);
return _o.release();
}
inline void AssetHeader::UnPackTo(AssetHeaderT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = uuid(); if (_e) _o->uuid = ::flatbuffers::UnPack(*_e); }
{ auto _e = name(); if (_e) _o->name = eastl::string(_e->c_str(), _e->size()); }
{ auto _e = type_id(); if (_e) _o->type_id = ::flatbuffers::UnPack(*_e); }
{ auto _e = type_name(); if (_e) _o->type_name = eastl::string(_e->c_str(), _e->size()); }
{ auto _e = version(); _o->version = _e; }
}
inline ::flatbuffers::Offset<AssetHeader> CreateAssetHeader(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
return AssetHeader::Pack(_fbb, _o, _rehasher);
}
inline ::flatbuffers::Offset<AssetHeader> AssetHeader::Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetHeaderT* _o, const ::flatbuffers::rehasher_function_t *_rehasher) {
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetHeaderT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _uuid = ::flatbuffers::Pack(_o->uuid);
auto _name = _fbb.CreateString(_o->name);
auto _type_id = ::flatbuffers::Pack(_o->type_id);
auto _type_name = _fbb.CreateString(_o->type_name);
auto _version = _o->version;
return Bigfoot::Flat::CreateAssetHeader(
_fbb,
&_uuid,
_name,
&_type_id,
_type_name,
_version);
}
inline const ::flatbuffers::TypeTable *AssetHeaderTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_STRING, 0, -1 },
{ ::flatbuffers::ET_SEQUENCE, 0, 1 },
{ ::flatbuffers::ET_STRING, 0, -1 },
{ ::flatbuffers::ET_UINT, 0, -1 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Bigfoot::Flat::UUIDTypeTable,
Bigfoot::Flat::AssetTypeIDTypeTable
};
static const char * const names[] = {
"uuid",
"name",
"type_id",
"type_name",
"version"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 5, type_codes, type_refs, nullptr, nullptr, names
};
return &tt;
}
inline const Bigfoot::Flat::AssetHeader *GetAssetHeader(const void *buf) {
return ::flatbuffers::GetRoot<Bigfoot::Flat::AssetHeader>(buf);
}
inline const Bigfoot::Flat::AssetHeader *GetSizePrefixedAssetHeader(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Bigfoot::Flat::AssetHeader>(buf);
}
template <bool B = false>
inline bool VerifyAssetHeaderBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifyBuffer<Bigfoot::Flat::AssetHeader>(nullptr);
}
template <bool B = false>
inline bool VerifySizePrefixedAssetHeaderBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifySizePrefixedBuffer<Bigfoot::Flat::AssetHeader>(nullptr);
}
inline void FinishAssetHeaderBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetHeader> root) {
fbb.Finish(root);
}
inline void FinishSizePrefixedAssetHeaderBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetHeader> root) {
fbb.FinishSizePrefixed(root);
}
inline eastl::unique_ptr<Bigfoot::Flat::AssetHeaderT> UnPackAssetHeader(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Bigfoot::Flat::AssetHeaderT>(GetAssetHeader(buf)->UnPack(res));
}
inline eastl::unique_ptr<Bigfoot::Flat::AssetHeaderT> UnPackSizePrefixedAssetHeader(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Bigfoot::Flat::AssetHeaderT>(GetSizePrefixedAssetHeader(buf)->UnPack(res));
}
} // namespace Flat
} // namespace Bigfoot
#endif // FLATBUFFERS_GENERATED_ASSETHEADER_BIGFOOT_FLAT_H_

View File

@@ -1,24 +0,0 @@
/*********************************************************************
* \file AssetTypeID.hpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ASSETTYPEID_HPP
#define BIGFOOT_ENGINE_ASSETTYPEID_HPP
#include <Engine/BigFile/Asset/AssetTypeID_generated.hpp>
#include <cstdint>
namespace Bigfoot
{
using AssetTypeID = std::uint64_t;
}
namespace flatbuffers
{
Bigfoot::Flat::AssetTypeID Pack(const Bigfoot::AssetTypeID& p_assetTypeID);
Bigfoot::AssetTypeID UnPack(const Bigfoot::Flat::AssetTypeID& p_flatAssetTypeID);
} // namespace flatbuffers
#endif

View File

@@ -4,14 +4,13 @@
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#ifndef BIGFOOT_ENGINE_BIGFILE_HPP
#define BIGFOOT_ENGINE_BIGFILE_HPP
#ifndef BIGFOOT_ENGINE_BIGFILE_BIGFILE_HPP
#define BIGFOOT_ENGINE_BIGFILE_BIGFILE_HPP
#include <System/File.hpp>
#include <Utils/TaggedType.hpp>
#include <EASTL/span.h>
#include <sqlite3.h>
namespace Bigfoot
@@ -26,8 +25,8 @@ class BigFile
*/
BigFile(const File& p_file);
BigFile(const BigFile& p_bigFile) = default;
BigFile(BigFile&& p_bigFile) = default;
BigFile(const BigFile& p_bigFile) = delete;
BigFile(BigFile&& p_bigFile) = delete;
/**
* Begin a transaction
@@ -49,8 +48,8 @@ class BigFile
~BigFile();
BigFile& operator=(const BigFile& p_bigFile) = default;
BigFile& operator=(BigFile&& p_bigFile) = default;
BigFile& operator=(const BigFile& p_bigFile) = delete;
BigFile& operator=(BigFile&& p_bigFile) = delete;
class Request
{
@@ -63,8 +62,8 @@ class BigFile
*/
Request(const BigFile& p_bigFile, const eastl::string_view p_request);
Request(const Request& p_request) = default;
Request(Request&& p_request) = default;
Request(const Request& p_request) = delete;
Request(Request&& p_request) = delete;
using CopyValue = TaggedType<bool>;
@@ -92,6 +91,14 @@ class BigFile
*/
void Bind(const std::uint32_t p_index, const std::int64_t p_value);
/*
* Bind a uint64 value to the Request at index
*
* \param p_index The index to bind to
* \param p_value The value
*/
void Bind(const std::uint32_t p_index, const std::uint64_t p_value);
/*
* Bind a float value to the Request at index
*
@@ -186,6 +193,13 @@ class BigFile
*/
operator std::int64_t() const;
/*
* Get value as a uint64
*
* \return The value
*/
operator std::uint64_t() const;
/*
* Get value as a float
*
@@ -236,8 +250,8 @@ class BigFile
~Request();
Request& operator=(const Request& p_request) = default;
Request& operator=(Request&& p_request) = default;
Request& operator=(const Request& p_request) = delete;
Request& operator=(Request&& p_request) = delete;
private:
/*

View File

@@ -6,16 +6,14 @@
*********************************************************************/
#ifndef BIGFOOT_ENGINE_ENGINEASSERTHANDLER_HPP
#define BIGFOOT_ENGINE_ENGINEASSERTHANDLER_HPP
#include <Utils/Assert.hpp>
#include <Engine/EngineLogger_generated.hpp>
#include <Utils/Assert.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <EASTL/utility.h>
#include <format>
#include <source_location>
#include <string_view>
namespace Bigfoot
{
@@ -33,23 +31,18 @@ class EngineAssertHandler
* Handle an assertion.
*
* \param p_location Location of the assertion.
* \param p_stacktrace The stack trace
* \param p_format Format string for the assertion message.
* \param p_args Arguments for the format string.
*/
template<typename... ARGS>
static void Handle(const std::source_location& p_location,
const std::string_view p_stacktrace,
std::format_string<ARGS...> p_format,
ARGS&&... p_args)
static void Handle(const std::source_location& p_location, std::format_string<ARGS...> p_format, ARGS&&... p_args)
{
BIGFOOT_LOG_FATAL(ENGINE_LOGGER,
"Assert: {} (File:{}, Line:{}, Function:{}\n{}",
"Assert: {} (File:{}, Line:{}, Function:{}\n",
std::format(p_format, std::forward<ARGS>(p_args)...),
p_location.file_name(),
p_location.line(),
p_location.function_name(),
p_stacktrace);
p_location.function_name());
}
EngineAssertHandler& operator=(const EngineAssertHandler& p_handler) = delete;

View File

@@ -6,7 +6,7 @@
*********************************************************************/
#ifndef BIGFOOT_ENGINELOGGER_GENERATED_HPP
#define BIGFOOT_ENGINELOGGER_GENERATED_HPP
#include <System/Log/Log.hpp>
#include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED

View File

@@ -2,8 +2,6 @@ get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName})
set(PublicDependencies
$<$<CONFIG:Debug,RelWithDebInfo>:quill::quill>
mimalloc
stduuid::stduuid)
set(PrivateDependencies)
set(BigfootPublicDependencies
@@ -18,11 +16,3 @@ bigfoot_create_package_lib(
"")
bigfoot_create_logger()
target_compile_definitions(${PROJECT_NAME}
PUBLIC $<$<CONFIG:Debug,RelWithDebInfo>:QUILL_NO_EXCEPTIONS>
PUBLIC $<$<CONFIG:Debug,RelWithDebInfo>:QUILL_DISABLE_NON_PREFIXED_MACROS>
PUBLIC MI_SHARED_LIB)
set_source_files_properties(${CMAKE_CURRENT_SOURCE_DIR}/MimallocImpl.cpp PROPERTIES SKIP_UNITY_BUILD_INCLUSION ON)

View File

@@ -37,21 +37,21 @@ bool File::Exists() const
/****************************************************************************************/
eastl::string_view File::Path() const
eastl::string_view File::GetPath() const
{
return m_pathString;
}
/****************************************************************************************/
File File::Absolute() const
File File::ToAbsolute() const
{
return File {std::filesystem::absolute(m_path)};
}
/****************************************************************************************/
File File::Relative() const
File File::ToRelative() const
{
return File {std::filesystem::relative(m_path)};
}

View File

@@ -57,7 +57,7 @@ class File
* \return The path
*/
[[nodiscard]]
eastl::string_view Path() const;
eastl::string_view GetPath() const;
/**
* Get the same file, relative to the current executable
@@ -65,7 +65,7 @@ class File
* \return The relative file
*/
[[nodiscard]]
File Relative() const;
File ToRelative() const;
/**
* Get the same file, with an absolute path
@@ -73,7 +73,7 @@ class File
* \return The absolute file
*/
[[nodiscard]]
File Absolute() const;
File ToAbsolute() const;
~File() = default;

View File

@@ -6,16 +6,14 @@
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_SYSTEMASSERTHANDLER_HPP
#define BIGFOOT_SYSTEM_SYSTEMASSERTHANDLER_HPP
#include <Utils/Assert.hpp>
#include <System/SystemLogger_generated.hpp>
#include <Utils/Assert.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <EASTL/utility.h>
#include <format>
#include <source_location>
#include <string_view>
namespace Bigfoot
{
@@ -33,23 +31,18 @@ class SystemAssertHandler
* Handle an assertion.
*
* \param p_location Location of the assertion.
* \param p_stacktrace The stack trace
* \param p_format Format string for the assertion message.
* \param p_args Arguments for the format string.
*/
template<typename... ARGS>
static void Handle(const std::source_location& p_location,
const std::string_view p_stacktrace,
std::format_string<ARGS...> p_format,
ARGS&&... p_args)
static void Handle(const std::source_location& p_location, std::format_string<ARGS...> p_format, ARGS&&... p_args)
{
BIGFOOT_LOG_FATAL(SYSTEM_LOGGER,
"Assert: {} (File:{}, Line:{}, Function:{}\n{}",
"Assert: {} (File:{}, Line:{}, Function:{}\n",
std::format(p_format, std::forward<ARGS>(p_args)...),
p_location.file_name(),
p_location.line(),
p_location.function_name(),
p_stacktrace);
p_location.function_name());
}
SystemAssertHandler& operator=(const SystemAssertHandler& p_handler) = delete;

View File

@@ -6,7 +6,7 @@
*********************************************************************/
#ifndef BIGFOOT_SYSTEMLOGGER_GENERATED_HPP
#define BIGFOOT_SYSTEMLOGGER_GENERATED_HPP
#include <System/Log/Log.hpp>
#include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED

View File

@@ -1,4 +1,6 @@
namespace Bigfoot.Flat;
native_include "System/Time/Time.hpp";
namespace Flat.Bigfoot;
struct Time (native_type: "::Bigfoot::Time")
{

View File

@@ -4,10 +4,8 @@
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_TIME_HPP
#define BIGFOOT_SYSTEM_TIME_HPP
#include <System/Time/Time_generated.hpp>
#ifndef BIGFOOT_SYSTEM_TIME_TIME_HPP
#define BIGFOOT_SYSTEM_TIME_TIME_HPP
#include <chrono>
#include <compare>
#include <cstdint>
@@ -23,28 +21,28 @@ class Time
Time(Time&& p_time) = default;
[[nodiscard]]
std::uint32_t Year() const;
std::uint32_t GetYear() const;
[[nodiscard]]
std::uint32_t Month() const;
std::uint32_t GetMonth() const;
[[nodiscard]]
std::uint32_t Day() const;
std::uint32_t GetDay() const;
[[nodiscard]]
std::uint32_t Hour() const;
std::uint32_t GetHour() const;
[[nodiscard]]
std::uint32_t Minute() const;
std::uint32_t GetMinute() const;
[[nodiscard]]
std::uint32_t Second() const;
std::uint32_t GetSecond() const;
[[nodiscard]]
std::uint32_t Microsecond() const;
std::uint32_t GetMicrosecond() const;
[[nodiscard]]
std::uint64_t Epoch() const;
std::uint64_t GetEpoch() const;
~Time() = default;
@@ -69,10 +67,20 @@ class Time
/****************************************************************************************/
namespace Flat
{
namespace Bigfoot
{
struct Time;
}
} // namespace Flat
/****************************************************************************************/
namespace flatbuffers
{
Bigfoot::Flat::Time Pack(const Bigfoot::Time& p_time);
Bigfoot::Time UnPack(const Bigfoot::Flat::Time& p_flatTime);
Flat::Bigfoot::Time Pack(const Bigfoot::Time& p_time);
Bigfoot::Time UnPack(const Flat::Bigfoot::Time& p_flatTime);
} // namespace flatbuffers
#endif

View File

@@ -1,8 +1,8 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_TIME_BIGFOOT_FLAT_H_
#define FLATBUFFERS_GENERATED_TIME_BIGFOOT_FLAT_H_
#ifndef FLATBUFFERS_GENERATED_TIME_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_TIME_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
@@ -13,11 +13,14 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "System/Time/Time.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat {
namespace Bigfoot {
struct Time;
@@ -33,7 +36,7 @@ FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(8) Time FLATBUFFERS_FINAL_CLASS {
return TimeTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.Time";
return "Flat.Bigfoot.Time";
}
Time()
: epoch_(0) {
@@ -56,16 +59,13 @@ inline const ::flatbuffers::TypeTable *TimeTypeTable() {
{ ::flatbuffers::ET_ULONG, 0, -1 }
};
static const int64_t values[] = { 0, 8 };
static const char * const names[] = {
"epoch"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, nullptr, values, names
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, nullptr, values, nullptr
};
return &tt;
}
} // namespace Flat
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_TIME_BIGFOOT_FLAT_H_
#endif // FLATBUFFERS_GENERATED_TIME_FLAT_BIGFOOT_H_

View File

@@ -1,4 +1,6 @@
namespace Bigfoot.Flat;
native_include "System/UUID/UUID.hpp";
namespace Flat.Bigfoot;
struct UUID (native_type: "::Bigfoot::UUID")
{

View File

@@ -4,10 +4,8 @@
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_UUID_HPP
#define BIGFOOT_SYSTEM_UUID_HPP
#include <System/UUID/UUID_generated.hpp>
#ifndef BIGFOOT_SYSTEM_UUID_UUID_HPP
#define BIGFOOT_SYSTEM_UUID_UUID_HPP
#include <uuid.h>
namespace Bigfoot
@@ -36,19 +34,31 @@ class UUID
UUID(const UUID& p_uuid) = default;
UUID(UUID&& p_uuid) noexcept = default;
/**
* Gets the raw bytes of a UUID
*
* \return A view to the raw bytes
*/
[[nodiscard]]
std::span<const std::byte, UUID_BYTE_SIZE> ToBytes() const;
/**
* Gets the string representation of a UUID
*
* \return A string representing the UUID
*/
[[nodiscard]]
std::string ToString() const;
~UUID() = default;
operator std::span<const std::byte, UUID_BYTE_SIZE>() const;
operator std::string() const;
operator bool() const;
UUID& operator=(const UUID& p_uuid) = default;
UUID& operator=(UUID&& p_uuid) noexcept = default;
[[nodiscard]]
bool operator==(const UUID& p_uuid) const = default;
[[nodiscard]]
bool operator!=(const UUID& p_uuid) const = default;
bool operator==(const UUID& p_uuid) const;
[[nodiscard]]
bool operator<(const UUID& p_uuid) const;
@@ -115,7 +125,7 @@ struct std::formatter<Bigfoot::UUID, char>
template<typename FormatContext>
auto format(const Bigfoot::UUID& p_uuid, FormatContext& ctx) const
{
return std::format_to(ctx.out(), "{}", static_cast<std::string>(p_uuid));
return std::format_to(ctx.out(), "{}", p_uuid.ToString());
}
};
@@ -134,7 +144,7 @@ struct fmtquill::formatter<Bigfoot::UUID>
auto format(const Bigfoot::UUID& p_uuid, format_context& ctx) const
{
return fmtquill::format_to(ctx.out(), "{}", static_cast<std::string>(p_uuid));
return fmtquill::format_to(ctx.out(), "{}", p_uuid.ToString());
}
};
@@ -146,10 +156,20 @@ struct quill::Codec<Bigfoot::UUID>: quill::DeferredFormatCodec<Bigfoot::UUID>
/****************************************************************************************/
namespace Flat
{
namespace Bigfoot
{
struct UUID;
}
} // namespace Flat
/****************************************************************************************/
namespace flatbuffers
{
Bigfoot::Flat::UUID Pack(const Bigfoot::UUID& p_uuid);
Bigfoot::UUID UnPack(const Bigfoot::Flat::UUID& p_flatUUID);
Flat::Bigfoot::UUID Pack(const Bigfoot::UUID& p_uuid);
Bigfoot::UUID UnPack(const Flat::Bigfoot::UUID& p_flatUUID);
} // namespace flatbuffers
#endif

View File

@@ -1,8 +1,8 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_UUID_BIGFOOT_FLAT_H_
#define FLATBUFFERS_GENERATED_UUID_BIGFOOT_FLAT_H_
#ifndef FLATBUFFERS_GENERATED_UUID_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_UUID_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
@@ -13,11 +13,14 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "System/UUID/UUID.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat {
namespace Bigfoot {
struct UUID;
@@ -33,7 +36,7 @@ FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(1) UUID FLATBUFFERS_FINAL_CLASS {
return UUIDTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.UUID";
return "Flat.Bigfoot.UUID";
}
UUID()
: bytes_() {
@@ -57,16 +60,13 @@ inline const ::flatbuffers::TypeTable *UUIDTypeTable() {
};
static const int16_t array_sizes[] = { 16, };
static const int64_t values[] = { 0, 16 };
static const char * const names[] = {
"bytes"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, array_sizes, values, names
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, array_sizes, values, nullptr
};
return &tt;
}
} // namespace Flat
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_UUID_BIGFOOT_FLAT_H_
#endif // FLATBUFFERS_GENERATED_UUID_FLAT_BIGFOOT_H_

View File

@@ -7,6 +7,7 @@
#include <System/Time/Time.hpp>
#include <System/SystemAssertHandler.hpp>
#include <System/Time/Time_generated.hpp>
namespace
{
@@ -54,56 +55,56 @@ Time::Time(const std::uint64_t p_epoch):
/****************************************************************************************/
std::uint32_t Time::Year() const
std::uint32_t Time::GetYear() const
{
return m_timeInfo.tm_year + 1900;
}
/****************************************************************************************/
std::uint32_t Time::Month() const
std::uint32_t Time::GetMonth() const
{
return m_timeInfo.tm_mon + 1;
}
/****************************************************************************************/
std::uint32_t Time::Day() const
std::uint32_t Time::GetDay() const
{
return m_timeInfo.tm_mday;
}
/****************************************************************************************/
std::uint32_t Time::Hour() const
std::uint32_t Time::GetHour() const
{
return m_timeInfo.tm_hour;
}
/****************************************************************************************/
std::uint32_t Time::Minute() const
std::uint32_t Time::GetMinute() const
{
return m_timeInfo.tm_min;
}
/****************************************************************************************/
std::uint32_t Time::Second() const
std::uint32_t Time::GetSecond() const
{
return m_timeInfo.tm_sec;
}
/****************************************************************************************/
std::uint32_t Time::Microsecond() const
std::uint32_t Time::GetMicrosecond() const
{
return static_cast<std::uint32_t>(m_microseconds.count());
}
/****************************************************************************************/
std::uint64_t Time::Epoch() const
std::uint64_t Time::GetEpoch() const
{
return m_epoch;
}
@@ -124,14 +125,14 @@ Time Time::Now()
namespace flatbuffers
{
Bigfoot::Flat::Time Pack(const Bigfoot::Time& p_time)
Flat::Bigfoot::Time Pack(const Bigfoot::Time& p_time)
{
return Bigfoot::Flat::Time {p_time.Epoch()};
return Flat::Bigfoot::Time {p_time.GetEpoch()};
}
/****************************************************************************************/
Bigfoot::Time UnPack(const Bigfoot::Flat::Time& p_flatTime)
Bigfoot::Time UnPack(const Flat::Bigfoot::Time& p_flatTime)
{
return Bigfoot::Time {p_flatTime.epoch()};
}

View File

@@ -6,6 +6,8 @@
*********************************************************************/
#include <System/UUID/UUID.hpp>
#include <System/UUID/UUID_generated.hpp>
namespace Bigfoot
{
UUID UUID::NULL_UUID {"00000000-0000-0000-0000-000000000000"};
@@ -41,14 +43,14 @@ UUID::UUID(const std::span<const std::byte, UUID_BYTE_SIZE> p_raw)
/****************************************************************************************/
UUID::operator std::span<const std::byte, UUID::UUID_BYTE_SIZE>() const
std::span<const std::byte, UUID::UUID_BYTE_SIZE> UUID::ToBytes() const
{
return m_uuid.as_bytes();
}
/****************************************************************************************/
UUID::operator std::string() const
std::string UUID::ToString() const
{
return uuids::to_string(m_uuid);
}
@@ -60,6 +62,11 @@ UUID::operator bool() const
return *this != NULL_UUID;
}
bool UUID::operator==(const UUID& p_uuid) const
{
return m_uuid == p_uuid.m_uuid;
}
/****************************************************************************************/
bool UUID::operator<(const UUID& p_uuid) const
@@ -90,17 +97,17 @@ uuids::uuid_random_generator UUID::GetUUIDGenerator()
namespace flatbuffers
{
Bigfoot::Flat::UUID Pack(const Bigfoot::UUID& p_uuid)
Flat::Bigfoot::UUID Pack(const Bigfoot::UUID& p_uuid)
{
const std::span<const std::byte, Bigfoot::UUID::UUID_BYTE_SIZE> bytes = p_uuid;
return Bigfoot::Flat::UUID {
const std::span<const std::byte, Bigfoot::UUID::UUID_BYTE_SIZE> bytes = p_uuid.ToBytes();
return Flat::Bigfoot::UUID {
std::span<const std::uint8_t, Bigfoot::UUID::UUID_BYTE_SIZE> {reinterpret_cast<const std::uint8_t*>(bytes.data()),
bytes.size()}};
}
/****************************************************************************************/
Bigfoot::UUID UnPack(const Bigfoot::Flat::UUID& p_flatUUID)
Bigfoot::UUID UnPack(const Flat::Bigfoot::UUID& p_flatUUID)
{
const std::span<const std::uint8_t, Bigfoot::UUID::UUID_BYTE_SIZE> bytesView {p_flatUUID.bytes()->data(),
p_flatUUID.bytes()->size()};

View File

@@ -2,8 +2,12 @@ get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName})
set(PublicDependencies
$<$<CONFIG:Debug,RelWithDebInfo>:cpptrace::cpptrace>
unordered_dense::unordered_dense)
$<$<CONFIG:Debug,RelWithDebInfo>:quill::quill>
$<IF:$<BOOL:${ASAN}>,mimalloc-asan,mimalloc-static>
unordered_dense::unordered_dense
EASTL::EASTL
flatbuffers::flatbuffers
rapidhash::rapidhash)
set(PrivateDependencies)
set(BigfootPublicDependencies)
set(BigfootPrivateDependencies)
@@ -13,4 +17,12 @@ bigfoot_create_package_lib(
"${PrivateLibraries}"
"${BigfootPublicDependencies}"
"${BigfootPrivateDependencies}"
"")
"")
set_source_files_properties(../Utils/MimallocImpl.cpp PROPERTIES SKIP_UNITY_BUILD_INCLUSION ON)
bigfoot_create_logger()
target_compile_definitions(${PROJECT_NAME}
PUBLIC
$<$<CONFIG:Debug,RelWithDebInfo>:QUILL_NO_EXCEPTIONS>
$<$<CONFIG:Debug,RelWithDebInfo>:QUILL_DISABLE_NON_PREFIXED_MACROS>)

View File

@@ -4,14 +4,12 @@
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_ASSERT_HPP
#define BIGFOOT_SYSTEM_ASSERT_HPP
#include <System/Log/Log.hpp>
#ifndef BIGFOOT_UTILS_ASSERT_HPP
#define BIGFOOT_UTILS_ASSERT_HPP
#include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <cpptrace/cpptrace.hpp>
#include <source_location>
#include <string>
@@ -39,13 +37,7 @@
constexpr std::source_location location = std::source_location::current(); \
if (!(p_assert)) [[unlikely]] \
{ \
constexpr auto stacktrace = []() -> std::string \
{ \
const cpptrace::stacktrace stacktrace = cpptrace::generate_trace(); \
return stacktrace.to_string(); \
}; \
\
HANDLER::Handle(location, stacktrace(), p_message __VA_OPT__(, ) __VA_ARGS__); \
HANDLER::Handle(location, p_message __VA_OPT__(, ) __VA_ARGS__); \
BREAK; \
} \
} while (false)
@@ -56,13 +48,7 @@
constexpr std::source_location location = std::source_location::current(); \
if (!(p_assert)) [[unlikely]] \
{ \
constexpr auto stacktrace = []() -> std::string \
{ \
const cpptrace::stacktrace stacktrace = cpptrace::generate_trace(); \
return stacktrace.to_string(); \
}; \
\
HANDLER::Handle(location, stacktrace(), p_message __VA_OPT__(, ) __VA_ARGS__); \
HANDLER::Handle(location, p_message __VA_OPT__(, ) __VA_ARGS__); \
BREAK; \
} \
} while (false)
@@ -73,16 +59,10 @@
constexpr std::source_location location = std::source_location::current(); \
if (!(p_assert)) [[unlikely]] \
{ \
constexpr auto stacktrace = []() -> std::string \
{ \
const cpptrace::stacktrace stacktrace = cpptrace::generate_trace(); \
return stacktrace.to_string(); \
}; \
\
HANDLER::Handle(location, stacktrace(), p_message __VA_OPT__(, ) __VA_ARGS__); \
HANDLER::Handle(location, p_message __VA_OPT__(, ) __VA_ARGS__); \
if (Bigfoot::Singleton<Bigfoot::Log>::HasInstance()) \
{ \
Bigfoot::Singleton<Bigfoot::Log>::Instance().Flush(); \
Bigfoot::Singleton<Bigfoot::Log>::GetInstance().Flush(); \
} \
BREAK; \
std::abort(); \

View File

@@ -0,0 +1,311 @@
/*********************************************************************
* \file SlotMap.hpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_UTILS_CONTAINERS_SLOTMAP_HPP
#define BIGFOOT_UTILS_CONTAINERS_SLOTMAP_HPP
#include <Utils/UtilsAssertHandler.hpp>
#include <EASTL/vector.h>
#include <cstdint>
#include <limits>
namespace Bigfoot
{
template<class TYPE,
class VERSION_TYPE = std::uint32_t,
class INDEX_TYPE = std::uint32_t,
std::enable_if_t<std::is_unsigned_v<VERSION_TYPE> && std::is_unsigned_v<INDEX_TYPE>, bool> = true>
class SlotMap
{
public:
class SlotKey
{
public:
using IndexType = INDEX_TYPE;
using VersionType = VERSION_TYPE;
private:
static constexpr std::uint32_t VERSION_BIT_COUNT = sizeof(VersionType) *
std::numeric_limits<unsigned char>::digits;
static constexpr std::uint32_t INDEX_BIT_COUNT = sizeof(IndexType) * std::numeric_limits<unsigned char>::digits;
static_assert(VERSION_BIT_COUNT + INDEX_BIT_COUNT <= 64,
"We cant construct a 64 bit key from the given Version and Index types!");
static constexpr std::uint64_t INDEX_MASK = (static_cast<std::uint64_t>(1) << INDEX_BIT_COUNT) - 1;
public:
static constexpr VersionType INVALID_VERSION = 0;
static constexpr IndexType MAX_INDEX = std::numeric_limits<IndexType>::max();
constexpr SlotKey(const VersionType p_version, const IndexType p_index):
m_key((static_cast<std::uint64_t>(p_version) << INDEX_BIT_COUNT) |
(static_cast<std::uint64_t>(p_index) & INDEX_MASK))
{
}
constexpr SlotKey():
SlotKey(INVALID_VERSION, 0)
{
}
constexpr SlotKey(const SlotKey& p_slotKey) = default;
constexpr SlotKey(SlotKey&& p_slotKey) = default;
constexpr ~SlotKey() = default;
constexpr bool Valid() const
{
return GetVersion() != INVALID_VERSION;
}
constexpr VersionType GetVersion() const
{
return static_cast<VersionType>(m_key >> INDEX_BIT_COUNT);
}
constexpr IndexType GetIndex() const
{
return static_cast<IndexType>(m_key & INDEX_MASK);
}
constexpr SlotKey& operator=(const SlotKey& p_slotKey) = default;
constexpr SlotKey& operator=(SlotKey&& p_slotKey) = default;
[[nodiscard]]
constexpr bool operator==(const SlotKey& p_other) const = default;
private:
std::uint64_t m_key;
};
SlotMap():
m_freeSlotHead(std::numeric_limits<typename SlotKey::IndexType>::max())
{
}
SlotMap(const SlotMap& p_map) = default;
SlotMap(SlotMap&& p_map) = default;
~SlotMap() = default;
template<class... ARGS>
[[nodiscard]]
SlotKey Insert(ARGS&&... p_args)
{
ASSERT(UtilsAssertHandler, m_slots.size() < SlotKey::MAX_INDEX, "All slots have been exhausted!");
const typename SlotKey::IndexType dataIndex = static_cast<SlotKey::IndexType>(m_data.size());
m_data.emplace_back(std::forward<ARGS>(p_args)...);
if (HasFreeSlots())
{
const typename SlotKey::IndexType slotIndex = m_freeSlotHead;
m_freeSlotHead = m_slots[slotIndex].GetIndex();
m_slots[slotIndex] = SlotKey {m_slots[slotIndex].GetVersion(), dataIndex};
m_dataToSlots.push_back(slotIndex);
return SlotKey {m_slots[slotIndex].GetVersion(), slotIndex};
}
const typename SlotKey::IndexType slotIndex = static_cast<SlotKey::IndexType>(m_slots.size());
m_slots.emplace_back(1, dataIndex);
m_dataToSlots.push_back(slotIndex);
return SlotKey {1, slotIndex};
}
void Remove(const SlotKey p_slotKey)
{
if (!Has(p_slotKey))
{
return;
}
const typename SlotKey::IndexType dataIndex = m_slots[p_slotKey.GetIndex()].GetIndex();
m_data.erase_unsorted(m_data.begin() + dataIndex);
m_dataToSlots.erase_unsorted(m_dataToSlots.begin() + dataIndex);
if (dataIndex < m_data.size())
{
m_slots[m_dataToSlots[dataIndex]] = SlotKey {m_slots[m_dataToSlots[dataIndex]].GetVersion(), dataIndex};
}
RecycleSlot(p_slotKey.GetVersion() + 1, p_slotKey.GetIndex());
}
[[nodiscard]]
bool Has(const SlotKey p_slotKey) const
{
return p_slotKey.Valid() && (p_slotKey.GetIndex() < m_slots.size() &&
p_slotKey.GetVersion() == m_slots[p_slotKey.GetIndex()].GetVersion());
}
[[nodiscard]]
TYPE* Get(const SlotKey p_slotKey)
{
return Has(p_slotKey) ? &m_data[m_slots[p_slotKey.GetIndex()].GetIndex()] : nullptr;
}
[[nodiscard]]
const TYPE* Get(const SlotKey p_slotKey) const
{
return Has(p_slotKey) ? &m_data[m_slots[p_slotKey.GetIndex()].GetIndex()] : nullptr;
}
void Reset()
{
m_data.clear();
m_slots.clear();
m_dataToSlots.clear();
m_freeSlotHead = std::numeric_limits<typename SlotKey::IndexType>::max();
}
void Clear()
{
for (const typename eastl::vector<TYPE>::size_type slotIndex: m_dataToSlots)
{
RecycleSlot(m_slots[slotIndex].GetVersion() + 1, static_cast<SlotKey::IndexType>(slotIndex));
}
m_data.clear();
m_dataToSlots.clear();
}
[[nodiscard]]
eastl::vector<TYPE>::size_type GetSize() const
{
return m_data.size();
}
[[nodiscard]]
eastl::vector<TYPE>::size_type GetCapacity() const
{
return m_data.capacity();
}
[[nodiscard]]
bool Empty() const
{
return m_data.empty();
}
void Reserve(const eastl::vector<TYPE>::size_type p_size)
{
m_data.reserve(p_size);
m_dataToSlots.reserve(p_size);
m_slots.reserve(p_size);
}
[[nodiscard]]
eastl::vector<TYPE>::iterator begin()
{
return m_data.begin();
}
[[nodiscard]]
eastl::vector<TYPE>::iterator end()
{
return m_data.end();
}
[[nodiscard]]
eastl::vector<TYPE>::const_iterator begin() const
{
return m_data.begin();
}
[[nodiscard]]
eastl::vector<TYPE>::const_iterator end() const
{
return m_data.end();
}
[[nodiscard]]
eastl::vector<TYPE>::reverse_iterator rbegin()
{
return m_data.rbegin();
}
[[nodiscard]]
eastl::vector<TYPE>::reverse_iterator rend()
{
return m_data.rend();
}
[[nodiscard]]
eastl::vector<TYPE>::const_reverse_iterator rbegin() const
{
return m_data.rbegin();
}
[[nodiscard]]
eastl::vector<TYPE>::const_reverse_iterator rend() const
{
return m_data.rend();
}
[[nodiscard]]
eastl::vector<TYPE>::const_iterator cbegin() const
{
return m_data.cbegin();
}
[[nodiscard]]
eastl::vector<TYPE>::const_iterator cend() const
{
return m_data.cend();
}
[[nodiscard]]
eastl::vector<TYPE>::const_reverse_iterator crbegin() const
{
return m_data.crbegin();
}
[[nodiscard]]
eastl::vector<TYPE>::const_reverse_iterator crend() const
{
return m_data.crend();
}
SlotMap& operator=(const SlotMap& p_slotMap) = default;
SlotMap& operator=(SlotMap&& p_slotMap) = default;
private:
[[nodiscard]]
bool HasFreeSlots() const
{
return m_freeSlotHead != std::numeric_limits<typename SlotKey::IndexType>::max();
}
void RecycleSlot(const SlotKey::VersionType p_version, const SlotKey::IndexType p_slotIndex)
{
if (p_version == SlotKey::INVALID_VERSION)
{
m_slots[p_slotIndex] = SlotKey {SlotKey::INVALID_VERSION, 0};
return;
}
m_slots[p_slotIndex] = SlotKey {p_version, m_freeSlotHead};
m_freeSlotHead = p_slotIndex;
}
eastl::vector<TYPE> m_data;
eastl::vector<SlotKey> m_slots;
eastl::vector<typename eastl::vector<TYPE>::size_type> m_dataToSlots;
SlotKey::IndexType m_freeSlotHead;
};
} // namespace Bigfoot
#endif

View File

@@ -4,19 +4,19 @@
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_EASTLFORMATTERS_HPP
#define BIGFOOT_SYSTEM_EASTLFORMATTERS_HPP
#ifndef BIGFOOT_UTILS_LOG_EASTLFORMATTERS_HPP
#define BIGFOOT_UTILS_LOG_EASTLFORMATTERS_HPP
#include <Utils/TargetMacros.h>
#if defined(BIGFOOT_NOT_OPTIMIZED)
#include <quill/DeferredFormatCodec.h>
#endif
#include <format>
#include <EASTL/string.h>
#include <EASTL/string_view.h>
#include <format>
// STRING
template<>

View File

@@ -0,0 +1,102 @@
/*********************************************************************
* \file Log.hpp
*
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#ifndef BIGFOOT_UTILS_LOG_LOG_HPP
#define BIGFOOT_UTILS_LOG_LOG_HPP
#include <Utils/Log/EASTLFormatters.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <Utils/Log/Log_generated.hpp>
#include <EASTL/array.h>
#ifdef BIGFOOT_WINDOWS
#pragma warning(disable: 4702)
#endif
#include <quill/Backend.h>
#include <quill/Frontend.h>
#include <quill/LogMacros.h>
#include <quill/Logger.h>
#include <quill/sinks/ConsoleSink.h>
#if defined BIGFOOT_WINDOWS
#pragma warning(default: 4702)
#endif
namespace Bigfoot
{
class Log
{
public:
struct LoggerInfo
{
std::string m_name;
Flat::LogLevel m_level;
};
Log();
Log(const Log& p_logger) = delete;
Log(Log&& p_logger) = delete;
/**
* Register a logger.
*
* \param p_loggerInfo The logger to register
*/
[[nodiscard]]
quill::Logger* RegisterLogger(const LoggerInfo& p_loggerInfo);
/**
* Unregister a logger.
*
* \param p_loggerInfo The logger to unregister
*/
void UnregisterLogger(const LoggerInfo& p_loggerInfo);
/**
* Register a logger.
*
* \param p_loggerInfo The logger to get
* \return The logger, nullptr if it does not exist
*/
[[nodiscard]]
quill::Logger* GetLogger(const LoggerInfo& p_loggerInfo);
/**
* Changes the loglevel of a Logger.
*
* \param p_loggerInfo The logger to change
* \param p_level The new level
*/
void ChangeLoggerLogLevel(LoggerInfo& p_loggerInfo, const Flat::LogLevel p_level);
/*
* Flush all the loggers
*
*/
void Flush();
~Log();
Log& operator=(const Log& p_logger) = delete;
Log& operator=(Log&& p_logger) = delete;
private:
/**
* Set the LogLevel of a logger
*
* \param p_loggerInfo The logger to set
*/
void SetLoggerLevel(const LoggerInfo& p_loggerInfo);
/*
* The sinks
*/
eastl::array<std::shared_ptr<quill::Sink>, 1> m_sinks;
};
} // namespace Bigfoot
#endif
#endif

View File

@@ -1,109 +1,25 @@
/*********************************************************************
* \file Log.hpp
* \file LogMacros.hpp
*
* \author Romain BOULLARD
* \date October 2025
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_LOG_HPP
#define BIGFOOT_SYSTEM_LOG_HPP
#include <System/Log/EASTLFormatters.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <System/Log/Log_generated.hpp>
#ifndef BIGFOOT_UTILS_LOG_LOGMACROS_HPP
#define BIGFOOT_UTILS_LOG_LOGMACROS_HPP
#include <Utils/Log/Log.hpp>
#include <Utils/Singleton.hpp>
#include <EASTL/array.h>
#ifdef BIGFOOT_WINDOWS
#pragma warning(disable: 4702)
#endif
#include <quill/Backend.h>
#include <quill/Frontend.h>
#include <quill/LogMacros.h>
#include <quill/Logger.h>
#include <quill/sinks/ConsoleSink.h>
#if defined BIGFOOT_WINDOWS
#pragma warning(default: 4702)
#endif
namespace Bigfoot
{
class Log
{
public:
struct LoggerInfo
{
std::string m_name;
Flat::LogLevel m_level;
};
Log();
Log(const Log& p_logger) = delete;
Log(Log&& p_logger) = delete;
/**
* Register a logger.
*
* \param p_loggerInfo The logger to register
*/
[[nodiscard]]
quill::Logger* RegisterLogger(const LoggerInfo& p_loggerInfo);
/**
* Register a logger.
*
* \param p_loggerInfo The logger to get
* \return The logger, nullptr if it does not exist
*/
[[nodiscard]]
quill::Logger* GetLogger(const LoggerInfo& p_loggerInfo);
/**
* Changes the loglevel of a Logger.
*
* \param p_loggerInfo The logger to change
* \param p_level The new level
*/
void ChangeLoggerLogLevel(LoggerInfo& p_loggerInfo, const Flat::LogLevel p_level);
/*
* Flush all the loggers
*
*/
void Flush();
~Log();
Log& operator=(const Log& p_logger) = delete;
Log& operator=(Log&& p_logger) = delete;
private:
/**
* Set the LogLevel of a logger
*
* \param p_loggerInfo The logger to set
*/
void SetLoggerLevel(const LoggerInfo& p_loggerInfo);
/*
* The sinks
*/
eastl::array<std::shared_ptr<quill::Sink>, 1> m_sinks;
};
} // namespace Bigfoot
#if defined BIGFOOT_NOT_OPTIMIZED
#define BIGFOOT_LOG_DEBUG(loggerName, fmt, ...) \
do \
{ \
if (quill::Logger* logger = Bigfoot::Singleton<Bigfoot::Log>::Instance().GetLogger(loggerName)) \
if (::quill::Logger* logger = ::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().GetLogger(loggerName)) \
{ \
QUILL_LOG_DEBUG(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
else \
{ \
QUILL_LOG_DEBUG(Bigfoot::Singleton<Bigfoot::Log>::Instance().RegisterLogger(loggerName), \
QUILL_LOG_DEBUG(::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().RegisterLogger(loggerName), \
fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
} while (0)
@@ -111,13 +27,13 @@ class Log
#define BIGFOOT_LOG_TRACE(loggerName, fmt, ...) \
do \
{ \
if (quill::Logger* logger = Bigfoot::Singleton<Bigfoot::Log>::Instance().GetLogger(loggerName)) \
if (::quill::Logger* logger = ::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().GetLogger(loggerName)) \
{ \
QUILL_LOG_TRACE_L3(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
else \
{ \
QUILL_LOG_TRACE_L3(Bigfoot::Singleton<Bigfoot::Log>::Instance().RegisterLogger(loggerName), \
QUILL_LOG_TRACE_L3(::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().RegisterLogger(loggerName), \
fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
} while (0)
@@ -125,13 +41,13 @@ class Log
#define BIGFOOT_LOG_INFO(loggerName, fmt, ...) \
do \
{ \
if (quill::Logger* logger = Bigfoot::Singleton<Bigfoot::Log>::Instance().GetLogger(loggerName)) \
if (::quill::Logger* logger = ::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().GetLogger(loggerName)) \
{ \
QUILL_LOG_INFO(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
else \
{ \
QUILL_LOG_INFO(Bigfoot::Singleton<Bigfoot::Log>::Instance().RegisterLogger(loggerName), \
QUILL_LOG_INFO(::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().RegisterLogger(loggerName), \
fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
} while (0)
@@ -139,13 +55,13 @@ class Log
#define BIGFOOT_LOG_WARN(loggerName, fmt, ...) \
do \
{ \
if (quill::Logger* logger = Bigfoot::Singleton<Bigfoot::Log>::Instance().GetLogger(loggerName)) \
if (::quill::Logger* logger = ::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().GetLogger(loggerName)) \
{ \
QUILL_LOG_WARNING(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
else \
{ \
QUILL_LOG_WARNING(Bigfoot::Singleton<Bigfoot::Log>::Instance().RegisterLogger(loggerName), \
QUILL_LOG_WARNING(::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().RegisterLogger(loggerName), \
fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
} while (0)
@@ -153,13 +69,13 @@ class Log
#define BIGFOOT_LOG_ERROR(loggerName, fmt, ...) \
do \
{ \
if (quill::Logger* logger = Bigfoot::Singleton<Bigfoot::Log>::Instance().GetLogger(loggerName)) \
if (::quill::Logger* logger = ::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().GetLogger(loggerName)) \
{ \
QUILL_LOG_ERROR(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
else \
{ \
QUILL_LOG_ERROR(Bigfoot::Singleton<Bigfoot::Log>::Instance().RegisterLogger(loggerName), \
QUILL_LOG_ERROR(::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().RegisterLogger(loggerName), \
fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
} while (0)
@@ -167,13 +83,13 @@ class Log
#define BIGFOOT_LOG_FATAL(loggerName, fmt, ...) \
do \
{ \
if (quill::Logger* logger = Bigfoot::Singleton<Bigfoot::Log>::Instance().GetLogger(loggerName)) \
if (::quill::Logger* logger = ::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().GetLogger(loggerName)) \
{ \
QUILL_LOG_CRITICAL(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
else \
{ \
QUILL_LOG_CRITICAL(Bigfoot::Singleton<Bigfoot::Log>::Instance().RegisterLogger(loggerName), \
QUILL_LOG_CRITICAL(::Bigfoot::Singleton<::Bigfoot::Log>::GetInstance().RegisterLogger(loggerName), \
fmt __VA_OPT__(, ) __VA_ARGS__); \
} \
} while (0)

View File

@@ -15,6 +15,7 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat {
@@ -95,11 +96,8 @@ inline const ::flatbuffers::TypeTable *LogSinkTypeTypeTable() {
static const ::flatbuffers::TypeFunction type_refs[] = {
Bigfoot::Flat::LogSinkTypeTypeTable
};
static const char * const names[] = {
"Console"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_ENUM, 1, type_codes, type_refs, nullptr, nullptr, names
::flatbuffers::ST_ENUM, 1, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}
@@ -116,16 +114,8 @@ inline const ::flatbuffers::TypeTable *LogLevelTypeTable() {
static const ::flatbuffers::TypeFunction type_refs[] = {
Bigfoot::Flat::LogLevelTypeTable
};
static const char * const names[] = {
"Debug",
"Trace",
"Info",
"Warn",
"Error",
"Critical"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_ENUM, 6, type_codes, type_refs, nullptr, nullptr, names
::flatbuffers::ST_ENUM, 6, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}

View File

@@ -6,7 +6,7 @@
*********************************************************************/
#ifndef BIGFOOT_@LOGGER_FILENAME_UPPER@_GENERATED_HPP
#define BIGFOOT_@LOGGER_FILENAME_UPPER@_GENERATED_HPP
#include <System/Log/Log.hpp>
#include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED

View File

@@ -4,8 +4,8 @@
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#ifndef BIGFOOT_CONCAT_PROFILER_HPP
#define BIGFOOT_CONCAT_PROFILER_HPP
#ifndef BIGFOOT_UTILS_PROFILER_HPP
#define BIGFOOT_UTILS_PROFILER_HPP
#ifdef TRACY
#include <tracy/Tracy.hpp>

View File

@@ -6,12 +6,7 @@
*********************************************************************/
#ifndef BIGFOOT_UTILS_SINGLETON_HPP
#define BIGFOOT_UTILS_SINGLETON_HPP
#include <EASTL/array.h>
#include <EASTL/bit.h>
#include <EASTL/optional.h>
#include <EASTL/type_traits.h>
#include <EASTL/utility.h>
namespace Bigfoot
{
@@ -31,7 +26,7 @@ class Singleton
*
* \return The instance
*/
static constexpr TYPE& Instance()
static constexpr TYPE& GetInstance()
{
return ms_instance.value();
}
@@ -68,15 +63,11 @@ class Singleton
Finalize();
}
[[nodiscard]]
Lifetime& operator=(const Lifetime& p_lifetime) = delete;
[[nodiscard]]
Lifetime& operator=(Lifetime&& p_lifetime) = delete;
Lifetime& operator=(Lifetime&& p_lifetime) noexcept = delete;
};
[[nodiscard]]
Singleton& operator=(const Singleton& p_singleton) = delete;
[[nodiscard]]
Singleton& operator=(Singleton&& p_singleton) = delete;
private:

View File

@@ -4,8 +4,8 @@
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#ifndef BIGFOOT_UTILS_TAGGEDTYPE_H
#define BIGFOOT_UTILS_TAGGEDTYPE_H
#ifndef BIGFOOT_UTILS_TAGGEDTYPE_HPP
#define BIGFOOT_UTILS_TAGGEDTYPE_HPP
#include <compare>

View File

@@ -7,6 +7,14 @@
#ifndef BIGFOOT_UTILS_TARGETMACROS_H
#define BIGFOOT_UTILS_TARGETMACROS_H
#if defined BIGFOOT_WINDOWS
#define BIGFOOT_WINDOWS_OR_LINUX(p_windows, p_linux) p_windows
#endif
#if defined BIGFOOT_LINUX
#define BIGFOOT_WINDOWS_OR_LINUX(p_windows, p_linux) p_linux
#endif
#if defined BIGFOOT_OPTIMIZED
#define BIGFOOT_OPTIMIZED_ONLY(...) __VA_ARGS__
#define BIGFOOT_NOT_OPTIMIZED_ONLY(...)

View File

@@ -0,0 +1,52 @@
/*********************************************************************
* \file UtilsAssertHandler.hpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_UTILS_UTILSASSERTHANDLER_HPP
#define BIGFOOT_UTILS_UTILSASSERTHANDLER_HPP
#include <Utils/Assert.hpp>
#include <Utils/UtilsLogger_generated.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <format>
#include <source_location>
namespace Bigfoot
{
class UtilsAssertHandler
{
public:
UtilsAssertHandler() = delete;
UtilsAssertHandler(const UtilsAssertHandler& p_handler) = delete;
UtilsAssertHandler(UtilsAssertHandler&& p_handler) = delete;
~UtilsAssertHandler() = delete;
/**
* Handle an assertion.
*
* \param p_location Location of the assertion.
* \param p_format Format string for the assertion message.
* \param p_args Arguments for the format string.
*/
template<typename... ARGS>
static void Handle(const std::source_location& p_location, std::format_string<ARGS...> p_format, ARGS&&... p_args)
{
BIGFOOT_LOG_FATAL(UTILS_LOGGER,
"Assert: {} (File:{}, Line:{}, Function:{}\n",
std::format(p_format, std::forward<ARGS>(p_args)...),
p_location.file_name(),
p_location.line(),
p_location.function_name());
}
UtilsAssertHandler& operator=(const UtilsAssertHandler& p_handler) = delete;
UtilsAssertHandler& operator=(UtilsAssertHandler&& p_handler) = delete;
};
} // namespace Bigfoot
#endif
#endif

View File

@@ -1,12 +1,12 @@
// AUTO-GENERATED DO NOT TOUCH
/*********************************************************************
* \file SystemTestsLogger.generated.hpp
* \file UtilsLogger.generated.hpp
*
*********************************************************************/
#ifndef BIGFOOT_SYSTEMTESTSLOGGER_GENERATED_HPP
#define BIGFOOT_SYSTEMTESTSLOGGER_GENERATED_HPP
#include <System/Log/Log.hpp>
#ifndef BIGFOOT_UTILSLOGGER_GENERATED_HPP
#define BIGFOOT_UTILSLOGGER_GENERATED_HPP
#include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
@@ -15,7 +15,7 @@ namespace Bigfoot
/*
* Logger
*/
inline Log::LoggerInfo SYSTEMTESTS_LOGGER {"SYSTEMTESTS_LOGGER", Flat::LogLevel::Trace};
inline Log::LoggerInfo UTILS_LOGGER {"UTILS_LOGGER", Flat::LogLevel::Trace};
} // namespace Bigfoot
#endif
#endif

View File

@@ -53,7 +53,7 @@ class Version
* \return The major part of the version.
*/
[[nodiscard]]
constexpr std::uint8_t Major() const
constexpr std::uint8_t GetMajor() const
{
constexpr std::uint32_t mask = 0b00000000111111110000000000000000;
@@ -66,7 +66,7 @@ class Version
* \return The minor part of the version.
*/
[[nodiscard]]
constexpr std::uint8_t Minor() const
constexpr std::uint8_t GetMinor() const
{
constexpr std::uint32_t mask = 0b00000000000000001111111100000000;
@@ -79,54 +79,37 @@ class Version
* \return The patch part of the version.
*/
[[nodiscard]]
constexpr std::uint8_t Patch() const
constexpr std::uint8_t GetPatch() const
{
constexpr std::uint32_t mask = 0b00000000000000000000000011111111;
return static_cast<std::uint8_t>(m_combined & mask);
}
/**
* Gets the raw Version
*
* \return the raw version
*/
[[nodiscard]]
constexpr operator std::uint32_t() const
constexpr std::uint32_t Raw() const
{
return m_combined;
}
operator std::string() const;
/**
* Gets the string representation of the Version
*
* \return The string
*/
[[nodiscard]]
std::string ToString() const;
constexpr Version& operator=(const Version& p_version) = default;
constexpr Version& operator=(Version&& p_version) = default;
[[nodiscard]]
constexpr bool operator>(const Version& p_version) const
{
return m_combined > p_version.m_combined;
}
[[nodiscard]]
constexpr bool operator<(const Version& p_version) const
{
return m_combined < p_version.m_combined;
}
[[nodiscard]]
constexpr bool operator>=(const Version& p_version) const
{
return m_combined >= p_version.m_combined;
}
[[nodiscard]]
constexpr bool operator<=(const Version& p_version) const
{
return m_combined <= p_version.m_combined;
}
[[nodiscard]]
constexpr bool operator==(const Version& p_version) const = default;
[[nodiscard]]
constexpr bool operator!=(const Version& p_version) const = default;
constexpr auto operator<=>(const Version& p_version) const = default;
private:
/**
@@ -151,7 +134,7 @@ struct std::formatter<Bigfoot::Version>
template<typename FormatContext>
auto format(const Bigfoot::Version& p_version, FormatContext& p_context) const
{
return std::format_to(p_context.out(), "{}", static_cast<std::string>(p_version));
return std::format_to(p_context.out(), "{}", p_version.ToString());
}
};
#endif

View File

@@ -4,7 +4,7 @@
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#include <System/Log/Log.hpp>
#include <Utils/Log/Log.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
@@ -33,6 +33,16 @@ quill::Logger* Log::RegisterLogger(const LoggerInfo& p_loggerInfo)
/****************************************************************************************/
void Log::UnregisterLogger(const LoggerInfo& p_loggerInfo)
{
if (quill::Logger* logger = quill::Frontend::get_logger(p_loggerInfo.m_name))
{
quill::Frontend::remove_logger_blocking(logger);
}
}
/****************************************************************************************/
quill::Logger* Log::GetLogger(const LoggerInfo& p_loggerInfo)
{
return quill::Frontend::get_logger(p_loggerInfo.m_name);
@@ -91,11 +101,11 @@ void Log::Flush()
Log::~Log()
{
Flush();
for (quill::Logger* logger: quill::Frontend::get_all_loggers())
{
quill::Frontend::remove_logger(logger);
quill::Frontend::remove_logger_blocking(logger);
}
quill::Backend::stop();
}
} // namespace Bigfoot

View File

@@ -4,7 +4,7 @@
* \author Romain BOULLARD
* \date October 2025
*********************************************************************/
#include <System/Profiler.hpp>
#include <Utils/Profiler.hpp>
#if defined BIGFOOT_WINDOWS
#pragma comment(linker, "/include:mi_version")

View File

@@ -8,8 +8,8 @@
namespace Bigfoot
{
Version::operator std::string() const
std::string Version::ToString() const
{
return std::format("{}.{}.{}", Major(), Minor(), Patch());
return std::format("{}.{}.{}", GetMajor(), GetMinor(), GetPatch());
}
} // namespace Bigfoot

View File

@@ -1,3 +1,3 @@
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/System)
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/Utils)
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/System)
add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/Engine)

View File

@@ -0,0 +1,206 @@
/*********************************************************************
* \file BigFile.cpp
*
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#include <Engine/Asset/Asset.hpp>
#include <EngineTests/Asset/AssetA.hpp>
#include <EngineTests/Asset/AssetB.hpp>
#include <EngineTests/Asset/AssetC.hpp>
#include <gtest/gtest.h>
namespace Bigfoot
{
class AssetFixture: public ::testing::Test
{
protected:
};
/****************************************************************************************/
TEST_F(AssetFixture, AssetATests)
{
constexpr eastl::string_view name = "Hello";
constexpr std::uint32_t version = 42;
constexpr std::uint32_t health = 100;
constexpr std::uint32_t mana = 50;
AssetA assetA;
assetA.SetName(name);
assetA.SetVersion(version);
assetA.GetAsset().health = health;
assetA.GetAsset().mana = mana;
const eastl::vector<std::byte> test = assetA.Save();
AssetA assetA_dup {test};
EXPECT_EQ(assetA.GetHeader().uuid, assetA_dup.GetHeader().uuid);
EXPECT_EQ(assetA.GetHeader().type_id, AssetA::GetTypeID());
EXPECT_EQ(assetA.GetHeader().type_id, assetA_dup.GetHeader().type_id);
EXPECT_EQ(assetA.GetHeader().type_name, AssetA::GetTypeName());
EXPECT_EQ(assetA.GetHeader().type_name, assetA_dup.GetHeader().type_name);
EXPECT_EQ(assetA.GetHeader().name, name);
EXPECT_EQ(assetA.GetHeader().name, assetA_dup.GetHeader().name);
EXPECT_EQ(assetA.GetHeader().version, version);
EXPECT_EQ(assetA.GetHeader().version, assetA_dup.GetHeader().version);
EXPECT_EQ(assetA.GetAsset().health, health);
EXPECT_EQ(assetA.GetAsset().health, assetA_dup.GetAsset().health);
EXPECT_EQ(assetA.GetAsset().mana, mana);
EXPECT_EQ(assetA.GetAsset().mana, assetA_dup.GetAsset().mana);
}
/****************************************************************************************/
TEST_F(AssetFixture, AssetBTests)
{
constexpr eastl::string_view nameA = "Hello";
constexpr std::uint32_t versionA = 42;
constexpr std::uint32_t healthA = 100;
constexpr std::uint32_t manaA = 50;
AssetA assetA;
assetA.SetName(nameA);
assetA.SetVersion(versionA);
assetA.GetAsset().health = healthA;
assetA.GetAsset().mana = manaA;
constexpr eastl::string_view nameAA = "There";
constexpr std::uint32_t versionAA = 42;
constexpr std::uint32_t healthAA = 100;
constexpr std::uint32_t manaAA = 50;
AssetA assetAA;
assetAA.SetName(nameAA);
assetAA.SetVersion(versionAA);
assetAA.GetAsset().health = healthAA;
assetAA.GetAsset().mana = manaAA;
constexpr eastl::string_view nameB = "Kenobi";
constexpr std::uint32_t versionB = 1;
AssetB assetB;
assetB.SetName(nameB);
assetB.SetVersion(versionB);
assetB.GetAsset().asset_a_ref = HardReference<AssetA> {assetA.GetHeader().uuid};
assetB.GetAsset().asset_a_refs = {SoftReference<AssetA> {assetA.GetHeader().uuid},
SoftReference<AssetA> {assetAA.GetHeader().uuid}};
const eastl::vector<std::byte> test = assetB.Save();
AssetB assetB_dup {test};
EXPECT_EQ(assetB.GetHeader().uuid, assetB_dup.GetHeader().uuid);
EXPECT_EQ(assetB.GetHeader().type_id, AssetB::GetTypeID());
EXPECT_EQ(assetB.GetHeader().type_id, assetB_dup.GetHeader().type_id);
EXPECT_EQ(assetB.GetHeader().type_name, AssetB::GetTypeName());
EXPECT_EQ(assetB.GetHeader().type_name, assetB_dup.GetHeader().type_name);
EXPECT_EQ(assetB.GetHeader().name, nameB);
EXPECT_EQ(assetB.GetHeader().name, assetB_dup.GetHeader().name);
EXPECT_EQ(assetB.GetHeader().version, versionB);
EXPECT_EQ(assetB.GetHeader().version, assetB_dup.GetHeader().version);
EXPECT_EQ(assetB.GetAsset().asset_a_ref, HardReference<AssetA> {assetA.GetHeader().uuid});
EXPECT_EQ(assetB.GetAsset().asset_a_ref, assetB_dup.GetAsset().asset_a_ref);
EXPECT_EQ(assetB.GetAsset().asset_a_refs,
(eastl::vector<SoftReference<AssetA>> {SoftReference<AssetA> {assetA.GetHeader().uuid},
SoftReference<AssetA> {assetAA.GetHeader().uuid}}));
EXPECT_EQ(assetB.GetAsset().asset_a_refs, assetB_dup.GetAsset().asset_a_refs);
}
/****************************************************************************************/
TEST_F(AssetFixture, AssetCTests)
{
constexpr eastl::string_view nameA = "Hello";
constexpr std::uint32_t versionA = 42;
constexpr std::uint32_t healthA = 100;
constexpr std::uint32_t manaA = 50;
AssetA assetA;
assetA.SetName(nameA);
assetA.SetVersion(versionA);
assetA.GetAsset().health = healthA;
assetA.GetAsset().mana = manaA;
constexpr eastl::string_view nameAA = "There";
constexpr std::uint32_t versionAA = 42;
constexpr std::uint32_t healthAA = 100;
constexpr std::uint32_t manaAA = 50;
AssetA assetAA;
assetAA.SetName(nameAA);
assetAA.SetVersion(versionAA);
assetAA.GetAsset().health = healthAA;
assetAA.GetAsset().mana = manaAA;
constexpr eastl::string_view nameB = "Kenobi";
constexpr std::uint32_t versionB = 1;
AssetB assetB;
assetB.SetName(nameB);
assetB.SetVersion(versionB);
assetB.GetAsset().asset_a_ref = HardReference<AssetA> {assetA.GetHeader().uuid};
assetB.GetAsset().asset_a_refs = {SoftReference<AssetA> {assetA.GetHeader().uuid},
SoftReference<AssetA> {assetAA.GetHeader().uuid}};
constexpr eastl::string_view nameC = "General";
constexpr std::uint32_t versionC = 1;
AssetC assetC;
assetC.SetName(nameC);
assetC.SetVersion(versionC);
assetC.GetAsset().inner_table->asset_a_ref = HardReference<AssetA> {assetA.GetHeader().uuid};
assetC.GetAsset().inner_table->asset_a_refs = {HardReference<AssetA> {assetA.GetHeader().uuid},
HardReference<AssetA> {assetAA.GetHeader().uuid}};
assetC.GetAsset().asset_b_ref = HardReference<AssetB> {assetB.GetHeader().uuid};
assetC.GetAsset().asset_b_refs = {SoftReference<AssetB> {assetB.GetHeader().uuid}};
const eastl::vector<std::byte> test = assetC.Save();
AssetC assetC_dup {test};
EXPECT_EQ(assetC.GetHeader().uuid, assetC_dup.GetHeader().uuid);
EXPECT_EQ(assetC.GetHeader().type_id, AssetC::GetTypeID());
EXPECT_EQ(assetC.GetHeader().type_id, assetC_dup.GetHeader().type_id);
EXPECT_EQ(assetC.GetHeader().type_name, AssetC::GetTypeName());
EXPECT_EQ(assetC.GetHeader().type_name, assetC_dup.GetHeader().type_name);
EXPECT_EQ(assetC.GetHeader().name, nameC);
EXPECT_EQ(assetC.GetHeader().name, assetC_dup.GetHeader().name);
EXPECT_EQ(assetC.GetHeader().version, versionC);
EXPECT_EQ(assetC.GetHeader().version, assetC_dup.GetHeader().version);
EXPECT_EQ(assetC.GetAsset().asset_b_ref, HardReference<AssetB> {assetB.GetHeader().uuid});
EXPECT_EQ(assetC.GetAsset().asset_b_ref, assetC_dup.GetAsset().asset_b_ref);
EXPECT_EQ(assetC.GetAsset().asset_b_refs,
(eastl::vector<SoftReference<AssetB>> {SoftReference<AssetB> {assetB.GetHeader().uuid}}));
EXPECT_EQ(assetC.GetAsset().asset_b_refs, assetC_dup.GetAsset().asset_b_refs);
EXPECT_EQ(assetC.GetAsset().inner_table->asset_a_ref, HardReference<AssetA> {assetA.GetHeader().uuid});
EXPECT_EQ(assetC.GetAsset().inner_table->asset_a_ref, assetC_dup.GetAsset().inner_table->asset_a_ref);
EXPECT_EQ(assetC.GetAsset().inner_table->asset_a_refs,
(eastl::vector<HardReference<AssetA>> {HardReference<AssetA> {assetA.GetHeader().uuid},
HardReference<AssetA> {assetAA.GetHeader().uuid}}));
EXPECT_EQ(assetC.GetAsset().inner_table->asset_a_refs, assetC_dup.GetAsset().inner_table->asset_a_refs);
}
} // namespace Bigfoot

View File

@@ -0,0 +1,73 @@
/*********************************************************************
* \file BigFile.cpp
*
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#include <Engine/Asset/AssetContainer.hpp>
#include <EngineTests/Asset/AssetA.hpp>
#include <gtest/gtest.h>
namespace Bigfoot
{
class AssetContainerFixture: public ::testing::Test
{
protected:
AssetContainer<AssetA> m_container;
};
/****************************************************************************************/
TEST_F(AssetContainerFixture, Insert)
{
std::ignore = m_container.Insert();
}
/****************************************************************************************/
TEST_F(AssetContainerFixture, Get)
{
const auto key = m_container.Insert();
const auto& constContainer = m_container;
const auto validateKey = [&](auto& p_assetContainer)
{
const auto asset = p_assetContainer.Get(key);
EXPECT_NE(asset, nullptr);
};
validateKey(m_container);
validateKey(constContainer);
}
/****************************************************************************************/
TEST_F(AssetContainerFixture, GetSlotKey)
{
const auto key = m_container.Insert();
const auto asset = m_container.Get(key);
EXPECT_EQ(m_container.GetSlotKey(asset->GetHeader().uuid), key);
}
/****************************************************************************************/
TEST_F(AssetContainerFixture, Has)
{
const auto key = m_container.Insert();
EXPECT_TRUE(m_container.Has(key));
EXPECT_TRUE(m_container.Has(m_container.Get(key)->GetHeader().uuid));
}
/****************************************************************************************/
TEST_F(AssetContainerFixture, Remove)
{
const auto key1 = m_container.Insert();
m_container.Remove(key1);
const auto key2 = m_container.Insert();
m_container.Remove(m_container.Get(key2)->GetHeader().uuid);
}
} // namespace Bigfoot

View File

@@ -6,19 +6,13 @@
*********************************************************************/
#include <Engine/BigFile/BigFile.hpp>
#include <Engine/BigFile/Asset/Asset.hpp>
#include <System/Log/Log.hpp>
#include <System/Time/Time.hpp>
#include <System/UUID/UUID.hpp>
#include <Utils/Singleton.hpp>
#include <Utils/TargetMacros.h>
#include <EngineTests/BigFile/Asset/AssetA.hpp>
#include <EngineTests/BigFile/Asset/AssetA_generated.hpp>
#include <EngineTests/BigFileInfo_generated.hpp>
#include <ankerl/unordered_dense.h>
#include <flatbuffers/reflection.h>
#include <gtest/gtest.h>
namespace Bigfoot
@@ -29,7 +23,7 @@ class BigFileFixture: public ::testing::Test
void SetUp() override
{
BigFile::Request deleteHeader {m_bigFile, "DELETE FROM AssetHeader"};
BigFile::Request deleteAsset {m_bigFile, "DELETE FROM AssetHeader"};
BigFile::Request deleteAsset {m_bigFile, "DELETE FROM Asset"};
m_bigFile.BeginTransaction();
deleteHeader.Execute();
@@ -37,92 +31,76 @@ class BigFileFixture: public ::testing::Test
m_bigFile.CommitTransaction();
}
AssetAContainer m_assetAContainer;
BIGFOOT_NOT_OPTIMIZED_ONLY(Singleton<Log>::Lifetime m_loggerLifetime;)
BigFile m_bigFile {File {BIGFILE_ENGINETESTS_LOCATION}};
};
/****************************************************************************************/
TEST_F(BigFileFixture, Lol)
TEST_F(BigFileFixture, BigFileManipulation)
{
{
EXPECT_STREQ(FlatAssetWrapper<Flat::AssetA>::TypeName().data(), "Bigfoot.Flat.AssetA");
EXPECT_EQ(FlatAssetWrapper<Flat::AssetA>::TypeID(),
rapidhash(FlatAssetWrapper<Flat::AssetA>::TypeName().data(),
FlatAssetWrapper<Flat::AssetA>::TypeName().size()));
UUID uuid;
std::ignore = m_assetAContainer.Add(uuid, "Instance");
AssetA* test = m_assetAContainer.Get(uuid);
test->Health() = 100;
test->Mana() = 42;
const eastl::vector<std::byte> flatbuffer = m_assetAContainer.Pack(uuid);
m_assetAContainer.Remove(uuid);
std::ignore = m_assetAContainer.Add(uuid, flatbuffer);
std::ignore = m_assetAContainer.Add(UUID {}, "Instance2");
std::ignore = m_assetAContainer.Add(UUID {}, "Instance3");
AssetA* test2 = m_assetAContainer.Get(uuid);
EXPECT_EQ(test2->Health(), 100);
EXPECT_EQ(test2->Mana(), 42);
EXPECT_STREQ(test2->AssetHeader()->name.c_str(), "Instance");
EXPECT_EQ(test2->AssetHeader()->type_id, FlatAssetWrapper<Flat::AssetA>::TypeID());
EXPECT_STREQ(test2->AssetHeader()->type_name.c_str(), FlatAssetWrapper<Flat::AssetA>::TypeName().data());
EXPECT_EQ(test2->AssetHeader()->uuid, uuid);
EXPECT_EQ(test2->AssetHeader()->version, 2);
}
UUID uuid;
UUID uuid2;
UUID uuid3;
eastl::array<std::byte, 4> blob {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {4}};
eastl::array<std::byte, 4> blob2 {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {5}};
eastl::array<std::byte, 4> blob3 {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {6}};
constexpr eastl::array<std::byte, 4> blob {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {4}};
constexpr eastl::array<std::byte, 4> blob2 {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {5}};
constexpr eastl::array<std::byte, 4> blob3 {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {6}};
constexpr eastl::array<std::byte, 4> blob4 {std::byte {10}, std::byte {11}, std::byte {12}, std::byte {13}};
constexpr std::uint64_t typeIDRef = std::numeric_limits<std::uint64_t>::max() - 1;
{
BigFile::Request assetHeaderRequest {
m_bigFile,
"INSERT INTO AssetHeader (UUID, Name, TypeID, TypeName) VALUES(?, ?, ?, ?)"};
assetHeaderRequest.Bind(1, static_cast<std::span<const std::byte, UUID::UUID_BYTE_SIZE>>(uuid));
assetHeaderRequest.Bind(1, uuid.ToBytes());
assetHeaderRequest.Bind(2, "Test");
assetHeaderRequest.Bind(3, 42);
assetHeaderRequest.Bind(3, typeIDRef);
assetHeaderRequest.Bind(4, "TypeTest");
BigFile::Request assetRequest {m_bigFile, "INSERT INTO Asset (UUID, Asset) VALUES(?, ?)"};
assetRequest.Bind(1, static_cast<std::span<const std::byte, UUID::UUID_BYTE_SIZE>>(uuid));
assetRequest.Bind(1, uuid.ToBytes());
assetRequest.Bind(2, blob);
BigFile::Request assetHeaderRequest2 {
m_bigFile,
"INSERT INTO AssetHeader (UUID, Name, TypeID, TypeName) VALUES(?, ?, ?, ?)"};
assetHeaderRequest2.Bind(1, static_cast<std::span<const std::byte, UUID::UUID_BYTE_SIZE>>(uuid2));
assetHeaderRequest2.Bind(1, uuid2.ToBytes());
assetHeaderRequest2.Bind(2, "Test2");
assetHeaderRequest2.Bind(3, 42);
assetHeaderRequest2.Bind(3, typeIDRef);
assetHeaderRequest2.Bind(4, "TypeTest");
BigFile::Request assetRequest2 {m_bigFile, "INSERT INTO Asset (UUID, Asset) VALUES(?, ?)"};
assetRequest2.Bind(1, static_cast<std::span<const std::byte, UUID::UUID_BYTE_SIZE>>(uuid2));
assetRequest2.Bind(1, uuid2.ToBytes());
assetRequest2.Bind(2, blob3);
m_bigFile.BeginTransaction();
[[maybe_unused]]
std::uint32_t assetHeaderChangedCount = assetHeaderRequest.Execute();
[[maybe_unused]]
std::uint32_t assetChangedCount = assetRequest.Execute();
BigFile::Request assetHeaderRequest3 {
m_bigFile,
"INSERT INTO AssetHeader (UUID, Name, TypeID, TypeName) VALUES(?, ?, ?, ?)"};
assetHeaderRequest3.Bind(1, uuid3.ToBytes());
assetHeaderRequest3.Bind(2, "Test3");
assetHeaderRequest3.Bind(3, typeIDRef);
assetHeaderRequest3.Bind(4, "TypeTest");
BigFile::Request assetRequest3 {m_bigFile, "INSERT INTO Asset (UUID, Asset) VALUES(?, ?)"};
assetRequest3.Bind(1, uuid3.ToBytes());
assetRequest3.Bind(2, blob4);
m_bigFile.BeginTransaction();
std::uint32_t assetHeaderChangedCount = assetHeaderRequest.Execute();
EXPECT_EQ(assetHeaderChangedCount, 1);
std::uint32_t assetChangedCount = assetRequest.Execute();
EXPECT_EQ(assetChangedCount, 1);
[[maybe_unused]]
std::uint32_t assetHeaderChangedCount2 = assetHeaderRequest2.Execute();
[[maybe_unused]]
EXPECT_EQ(assetHeaderChangedCount2, 1);
std::uint32_t assetChangedCount2 = assetRequest2.Execute();
EXPECT_EQ(assetChangedCount2, 1);
std::uint32_t assetHeaderChangedCount3 = assetHeaderRequest3.Execute();
EXPECT_EQ(assetHeaderChangedCount3, 1);
std::uint32_t assetChangedCount3 = assetRequest3.Execute();
EXPECT_EQ(assetChangedCount3, 1);
m_bigFile.CommitTransaction();
}
@@ -130,11 +108,11 @@ TEST_F(BigFileFixture, Lol)
{
BigFile::Request updateAsset {m_bigFile, "UPDATE Asset SET Asset = ? WHERE UUID = ?"};
updateAsset.Bind(1, blob2);
updateAsset.Bind(2, static_cast<std::span<const std::byte, UUID::UUID_BYTE_SIZE>>(uuid));
updateAsset.Bind(2, uuid.ToBytes());
m_bigFile.BeginTransaction();
[[maybe_unused]]
std::uint32_t updateAssetChangedCount = updateAsset.Execute();
EXPECT_EQ(updateAssetChangedCount, 1);
m_bigFile.CommitTransaction();
}
@@ -142,56 +120,28 @@ TEST_F(BigFileFixture, Lol)
BigFile::Request request {
m_bigFile,
"SELECT Name, TypeID, TypeName, CreateTime, ModificationTime FROM AssetHeader WHERE UUID = ?"};
request.Bind(1, static_cast<std::span<const std::byte, UUID::UUID_BYTE_SIZE>>(uuid));
request.Bind(1, uuid.ToBytes());
[[maybe_unused]]
const bool get = request.Step();
EXPECT_TRUE(get);
[[maybe_unused]]
const eastl::string name {static_cast<eastl::string_view>(request.Get(0))};
[[maybe_unused]]
const std::uint32_t typeId = request.Get(1);
[[maybe_unused]]
EXPECT_STREQ(name.c_str(), "Test");
const std::uint64_t typeID = static_cast<std::uint64_t>(request.Get(1));
EXPECT_EQ(typeID, typeIDRef);
const eastl::string typeName {static_cast<eastl::string_view>(request.Get(2))};
[[maybe_unused]]
const Time createTime = static_cast<std::int64_t>(request.Get(3));
[[maybe_unused]]
const Time modificationTime = static_cast<std::int64_t>(request.Get(4));
EXPECT_STREQ(typeName.c_str(), "TypeTest");
{
[[maybe_unused]]
const std::uint32_t year = createTime.Year();
[[maybe_unused]]
const std::uint32_t month = createTime.Month();
[[maybe_unused]]
const std::uint32_t day = createTime.Day();
[[maybe_unused]]
const std::uint32_t hour = createTime.Hour();
[[maybe_unused]]
const std::uint32_t minute = createTime.Minute();
[[maybe_unused]]
const std::uint32_t second = createTime.Second();
[[maybe_unused]]
const std::uint32_t microsecond = createTime.Microsecond();
}
const Time createTime = static_cast<std::uint64_t>(request.Get(3));
const Time modificationTime = static_cast<std::uint64_t>(request.Get(4));
{
[[maybe_unused]]
const std::uint32_t year = modificationTime.Year();
[[maybe_unused]]
const std::uint32_t month = modificationTime.Month();
[[maybe_unused]]
const std::uint32_t day = modificationTime.Day();
[[maybe_unused]]
const std::uint32_t hour = modificationTime.Hour();
[[maybe_unused]]
const std::uint32_t minute = modificationTime.Minute();
[[maybe_unused]]
const std::uint32_t second = modificationTime.Second();
[[maybe_unused]]
const std::uint32_t microsecond = modificationTime.Microsecond();
}
EXPECT_GT(createTime.GetEpoch(), 0);
EXPECT_GT(modificationTime.GetEpoch(), 0);
EXPECT_GE(createTime, modificationTime);
EXPECT_GT(createTime.GetYear(), 2025);
EXPECT_GT(modificationTime.GetYear(), 2025);
}
}
} // namespace Bigfoot

View File

@@ -1,15 +1,7 @@
get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Tests)
set(BigfootDependencies
Engine
System
Utils)
bigfoot_create_bigfile("Tests/Bigfoot")
bigfoot_create_package_tests(
""
"${BigfootDependencies}")
"")
bigfoot_setup_dependencies("Tests/Bigfoot")
bigfoot_create_bigfile("Tests/Bigfoot")

View File

@@ -0,0 +1,9 @@
/*********************************************************************
* \file AssetA_fwd.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <EngineTests/Asset/AssetA_fwd.hpp>
ASSET_REF_IMPL(AssetA, ::Bigfoot::AssetA)

View File

@@ -0,0 +1,9 @@
/*********************************************************************
* \file AssetB_fwd.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <EngineTests/Asset/AssetB_fwd.hpp>
ASSET_REF_IMPL(AssetB, ::Bigfoot::AssetB)

View File

@@ -0,0 +1,9 @@
/*********************************************************************
* \file AssetC_fwd.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <EngineTests/Asset/AssetC_fwd.hpp>
ASSET_REF_IMPL(AssetC, ::Bigfoot::AssetC)

View File

@@ -0,0 +1,19 @@
/*********************************************************************
* \file main.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <Utils/Log/LogMacros.hpp>
#include <Utils/TargetMacros.h>
#include <gtest/gtest.h>
int main(int argc, char** argv)
{
testing::InitGoogleTest(&argc, argv);
BIGFOOT_NOT_OPTIMIZED_ONLY(::Bigfoot::Singleton<::Bigfoot::Log>::Lifetime m_lifetime);
return RUN_ALL_TESTS();
}

View File

@@ -0,0 +1,13 @@
include "Engine/Asset/Reference.fbs";
native_include "EngineTests/Asset/AssetA_fwd.hpp";
namespace Flat.Bigfoot;
table AssetA
{
health: uint = 0;
mana: uint = 0;
}
root_type AssetA;

View File

@@ -0,0 +1,40 @@
/*********************************************************************
* \file AssetA.hpp
*
* \author Romain BOULLARD
* \date April 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSET_ASSETA_HPP
#define BIGFOOT_ENGINETESTS_ASSET_ASSETA_HPP
#include <Engine/Asset/Asset.hpp>
#include <EngineTests/Asset/AssetA_generated.hpp>
namespace Bigfoot
{
struct AssetATraits
{
using FLAT = ::Flat::Bigfoot::AssetA;
};
class AssetA: public Asset<AssetATraits>
{
public:
AssetA() = default;
AssetA(const eastl::span<const std::byte> p_flatbuffer):
Asset(p_flatbuffer)
{
}
AssetA(const AssetA& p_asset) = delete;
AssetA(AssetA&& p_asset) = default;
~AssetA() = default;
AssetA& operator=(const AssetA& p_asset) = delete;
AssetA& operator=(AssetA&& p_asset) = default;
};
} // namespace Bigfoot
#endif

View File

@@ -0,0 +1,18 @@
/*********************************************************************
* \file AssetA_fwd.hpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSET_ASSETA_FWD_HPP
#define BIGFOOT_ENGINETESTS_ASSET_ASSETA_FWD_HPP
#include <Engine/Asset/AssetHelper.hpp>
namespace Bigfoot
{
class AssetA;
} // namespace Bigfoot
ASSET_DECL(AssetA, ::Bigfoot::AssetA)
#endif

View File

@@ -1,8 +1,8 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETA_BIGFOOT_FLAT_H_
#define FLATBUFFERS_GENERATED_ASSETA_BIGFOOT_FLAT_H_
#ifndef FLATBUFFERS_GENERATED_ASSETA_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSETA_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
@@ -13,16 +13,18 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/BigFile/Asset/AssetTypeID.hpp"
#include "Engine/BigFile/Asset/AssetTypeID.hpp"
#include "Engine/Asset/Reference.hpp"
#include "System/UUID/UUID.hpp"
#include "Engine/BigFile/Asset/AssetHeader_generated.hpp"
#include "Engine/Asset/Reference.hpp"
#include "EngineTests/Asset/AssetA_fwd.hpp"
#include "Engine/Asset/Reference_generated.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat {
namespace Bigfoot {
struct AssetA;
struct AssetABuilder;
@@ -33,15 +35,10 @@ inline const ::flatbuffers::TypeTable *AssetATypeTable();
struct AssetAT : public ::flatbuffers::NativeTable {
typedef AssetA TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.AssetAT";
return "Flat.Bigfoot.AssetAT";
}
eastl::unique_ptr<Bigfoot::Flat::AssetHeaderT> asset_header{};
uint32_t health = 0;
uint32_t mana = 0;
AssetAT() = default;
AssetAT(const AssetAT &o);
AssetAT(AssetAT&&) FLATBUFFERS_NOEXCEPT = default;
AssetAT &operator=(AssetAT o) FLATBUFFERS_NOEXCEPT;
};
struct AssetA FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
@@ -52,16 +49,12 @@ struct AssetA FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
return AssetATypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.AssetA";
return "Flat.Bigfoot.AssetA";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_ASSET_HEADER = 4,
VT_HEALTH = 6,
VT_MANA = 8
VT_HEALTH = 4,
VT_MANA = 6
};
const Bigfoot::Flat::AssetHeader *asset_header() const {
return GetPointer<const Bigfoot::Flat::AssetHeader *>(VT_ASSET_HEADER);
}
uint32_t health() const {
return GetField<uint32_t>(VT_HEALTH, 0);
}
@@ -71,8 +64,6 @@ struct AssetA FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyOffset(verifier, VT_ASSET_HEADER) &&
verifier.VerifyTable(asset_header()) &&
VerifyField<uint32_t>(verifier, VT_HEALTH, 4) &&
VerifyField<uint32_t>(verifier, VT_MANA, 4) &&
verifier.EndTable();
@@ -86,9 +77,6 @@ struct AssetABuilder {
typedef AssetA Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_asset_header(::flatbuffers::Offset<Bigfoot::Flat::AssetHeader> asset_header) {
fbb_.AddOffset(AssetA::VT_ASSET_HEADER, asset_header);
}
void add_health(uint32_t health) {
fbb_.AddElement<uint32_t>(AssetA::VT_HEALTH, health, 0);
}
@@ -108,13 +96,11 @@ struct AssetABuilder {
inline ::flatbuffers::Offset<AssetA> CreateAssetA(
::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetHeader> asset_header = 0,
uint32_t health = 0,
uint32_t mana = 0) {
AssetABuilder builder_(_fbb);
builder_.add_mana(mana);
builder_.add_health(health);
builder_.add_asset_header(asset_header);
return builder_.Finish();
}
@@ -125,19 +111,6 @@ struct AssetA::Traits {
::flatbuffers::Offset<AssetA> CreateAssetA(::flatbuffers::FlatBufferBuilder &_fbb, const AssetAT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
inline AssetAT::AssetAT(const AssetAT &o)
: asset_header((o.asset_header) ? new Bigfoot::Flat::AssetHeaderT(*o.asset_header) : nullptr),
health(o.health),
mana(o.mana) {
}
inline AssetAT &AssetAT::operator=(AssetAT o) FLATBUFFERS_NOEXCEPT {
std::swap(asset_header, o.asset_header);
std::swap(health, o.health);
std::swap(mana, o.mana);
return *this;
}
inline AssetAT *AssetA::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetAT>();
UnPackTo(_o.get(), _resolver);
@@ -147,7 +120,6 @@ inline AssetAT *AssetA::UnPack(const ::flatbuffers::resolver_function_t *_resolv
inline void AssetA::UnPackTo(AssetAT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = asset_header(); if (_e) { if(_o->asset_header) { _e->UnPackTo(_o->asset_header.get(), _resolver); } else { _o->asset_header = eastl::unique_ptr<Bigfoot::Flat::AssetHeaderT>(_e->UnPack(_resolver)); } } else if (_o->asset_header) { _o->asset_header.reset(); } }
{ auto _e = health(); _o->health = _e; }
{ auto _e = mana(); _o->mana = _e; }
}
@@ -160,81 +132,74 @@ inline ::flatbuffers::Offset<AssetA> AssetA::Pack(::flatbuffers::FlatBufferBuild
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetAT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _asset_header = _o->asset_header ? CreateAssetHeader(_fbb, _o->asset_header.get(), _rehasher) : 0;
auto _health = _o->health;
auto _mana = _o->mana;
return Bigfoot::Flat::CreateAssetA(
return Flat::Bigfoot::CreateAssetA(
_fbb,
_asset_header,
_health,
_mana);
}
inline const ::flatbuffers::TypeTable *AssetATypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_UINT, 0, -1 },
{ ::flatbuffers::ET_UINT, 0, -1 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Bigfoot::Flat::AssetHeaderTypeTable
};
static const char * const names[] = {
"asset_header",
"health",
"mana"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 3, type_codes, type_refs, nullptr, nullptr, names
::flatbuffers::ST_TABLE, 2, type_codes, nullptr, nullptr, nullptr, nullptr
};
return &tt;
}
inline const Bigfoot::Flat::AssetA *GetAssetA(const void *buf) {
return ::flatbuffers::GetRoot<Bigfoot::Flat::AssetA>(buf);
inline const Flat::Bigfoot::AssetA *GetAssetA(const void *buf) {
return ::flatbuffers::GetRoot<Flat::Bigfoot::AssetA>(buf);
}
inline const Bigfoot::Flat::AssetA *GetSizePrefixedAssetA(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Bigfoot::Flat::AssetA>(buf);
inline const Flat::Bigfoot::AssetA *GetSizePrefixedAssetA(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Flat::Bigfoot::AssetA>(buf);
}
template <bool B = false>
inline bool VerifyAssetABuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifyBuffer<Bigfoot::Flat::AssetA>(nullptr);
return verifier.template VerifyBuffer<Flat::Bigfoot::AssetA>(nullptr);
}
template <bool B = false>
inline bool VerifySizePrefixedAssetABuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifySizePrefixedBuffer<Bigfoot::Flat::AssetA>(nullptr);
return verifier.template VerifySizePrefixedBuffer<Flat::Bigfoot::AssetA>(nullptr);
}
inline const char *AssetAExtension() {
return "bfbs";
}
inline void FinishAssetABuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetA> root) {
::flatbuffers::Offset<Flat::Bigfoot::AssetA> root) {
fbb.Finish(root);
}
inline void FinishSizePrefixedAssetABuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetA> root) {
::flatbuffers::Offset<Flat::Bigfoot::AssetA> root) {
fbb.FinishSizePrefixed(root);
}
inline eastl::unique_ptr<Bigfoot::Flat::AssetAT> UnPackAssetA(
inline eastl::unique_ptr<Flat::Bigfoot::AssetAT> UnPackAssetA(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Bigfoot::Flat::AssetAT>(GetAssetA(buf)->UnPack(res));
return eastl::unique_ptr<Flat::Bigfoot::AssetAT>(GetAssetA(buf)->UnPack(res));
}
inline eastl::unique_ptr<Bigfoot::Flat::AssetAT> UnPackSizePrefixedAssetA(
inline eastl::unique_ptr<Flat::Bigfoot::AssetAT> UnPackSizePrefixedAssetA(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Bigfoot::Flat::AssetAT>(GetSizePrefixedAssetA(buf)->UnPack(res));
return eastl::unique_ptr<Flat::Bigfoot::AssetAT>(GetSizePrefixedAssetA(buf)->UnPack(res));
}
} // namespace Flat
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSETA_BIGFOOT_FLAT_H_
#endif // FLATBUFFERS_GENERATED_ASSETA_FLAT_BIGFOOT_H_

View File

@@ -0,0 +1,15 @@
include "Engine/Asset/Reference.fbs";
include "EngineTests/Asset/AssetA.fbs";
native_include "EngineTests/Asset/AssetB_fwd.hpp";
namespace Flat.Bigfoot;
table AssetB
{
asset_a_ref: Flat.Bigfoot.HardReference (native_type: "::Bigfoot::HardReference<::Bigfoot::AssetA>", native_inline, native_type_pack_name: "HardReferenceAssetA");
asset_a_refs: [Flat.Bigfoot.SoftReference] (native_type: "::Bigfoot::SoftReference<::Bigfoot::AssetA>", native_inline, native_type_pack_name: "SoftReferenceAssetA");
}
root_type AssetB;

View File

@@ -0,0 +1,40 @@
/*********************************************************************
* \file AssetB.hpp
*
* \author Romain BOULLARD
* \date April 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSET_ASSETB_HPP
#define BIGFOOT_ENGINETESTS_ASSET_ASSETB_HPP
#include <Engine/Asset/Asset.hpp>
#include <EngineTests/Asset/AssetB_generated.hpp>
namespace Bigfoot
{
struct AssetBTraits
{
using FLAT = ::Flat::Bigfoot::AssetB;
};
class AssetB: public Asset<AssetBTraits>
{
public:
AssetB() = default;
AssetB(const eastl::span<const std::byte> p_flatbuffer):
Asset(p_flatbuffer)
{
}
AssetB(const AssetB& p_asset) = delete;
AssetB(AssetB&& p_asset) = default;
~AssetB() = default;
AssetB& operator=(const AssetB& p_asset) = delete;
AssetB& operator=(AssetB&& p_asset) = default;
};
} // namespace Bigfoot
#endif

View File

@@ -0,0 +1,18 @@
/*********************************************************************
* \file AssetB_fwd.hpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSET_ASSETB_FWD_HPP
#define BIGFOOT_ENGINETESTS_ASSET_ASSETB_FWD_HPP
#include <Engine/Asset/AssetHelper.hpp>
namespace Bigfoot
{
class AssetB;
} // namespace Bigfoot
ASSET_DECL(AssetB, ::Bigfoot::AssetB)
#endif

View File

@@ -0,0 +1,212 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETB_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSETB_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
// Ensure the included flatbuffers.h is the same version as when this file was
// generated, otherwise it may not be compatible.
static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_MINOR == 12 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/Asset/Reference.hpp"
#include "System/UUID/UUID.hpp"
#include "Engine/Asset/Reference.hpp"
#include "EngineTests/Asset/AssetA_fwd.hpp"
#include "EngineTests/Asset/AssetB_fwd.hpp"
#include "Engine/Asset/Reference_generated.hpp"
#include "EngineTests/Asset/AssetA_generated.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Flat {
namespace Bigfoot {
struct AssetB;
struct AssetBBuilder;
struct AssetBT;
inline const ::flatbuffers::TypeTable *AssetBTypeTable();
struct AssetBT : public ::flatbuffers::NativeTable {
typedef AssetB TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetBT";
}
::Bigfoot::HardReference<::Bigfoot::AssetA> asset_a_ref{};
eastl::vector<::Bigfoot::SoftReference<::Bigfoot::AssetA>> asset_a_refs{};
};
struct AssetB FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef AssetBT NativeTableType;
typedef AssetBBuilder Builder;
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return AssetBTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetB";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_ASSET_A_REF = 4,
VT_ASSET_A_REFS = 6
};
const Flat::Bigfoot::HardReference *asset_a_ref() const {
return GetStruct<const Flat::Bigfoot::HardReference *>(VT_ASSET_A_REF);
}
const ::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *> *asset_a_refs() const {
return GetPointer<const ::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *> *>(VT_ASSET_A_REFS);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<Flat::Bigfoot::HardReference>(verifier, VT_ASSET_A_REF, 1) &&
VerifyOffset(verifier, VT_ASSET_A_REFS) &&
verifier.VerifyVector(asset_a_refs()) &&
verifier.EndTable();
}
AssetBT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
void UnPackTo(AssetBT *_o, const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
static ::flatbuffers::Offset<AssetB> Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetBT* _o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
};
struct AssetBBuilder {
typedef AssetB Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_asset_a_ref(const Flat::Bigfoot::HardReference *asset_a_ref) {
fbb_.AddStruct(AssetB::VT_ASSET_A_REF, asset_a_ref);
}
void add_asset_a_refs(::flatbuffers::Offset<::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *>> asset_a_refs) {
fbb_.AddOffset(AssetB::VT_ASSET_A_REFS, asset_a_refs);
}
explicit AssetBBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<AssetB> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<AssetB>(end);
return o;
}
};
inline ::flatbuffers::Offset<AssetB> CreateAssetB(
::flatbuffers::FlatBufferBuilder &_fbb,
const Flat::Bigfoot::HardReference *asset_a_ref = nullptr,
::flatbuffers::Offset<::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *>> asset_a_refs = 0) {
AssetBBuilder builder_(_fbb);
builder_.add_asset_a_refs(asset_a_refs);
builder_.add_asset_a_ref(asset_a_ref);
return builder_.Finish();
}
struct AssetB::Traits {
using type = AssetB;
static auto constexpr Create = CreateAssetB;
};
::flatbuffers::Offset<AssetB> CreateAssetB(::flatbuffers::FlatBufferBuilder &_fbb, const AssetBT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
inline AssetBT *AssetB::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetBT>();
UnPackTo(_o.get(), _resolver);
return _o.release();
}
inline void AssetB::UnPackTo(AssetBT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = asset_a_ref(); if (_e) _o->asset_a_ref = ::flatbuffers::UnPackHardReferenceAssetA(*_e); }
{ auto _e = asset_a_refs(); if (_e) { _o->asset_a_refs.resize(_e->size()); for (::flatbuffers::uoffset_t _i = 0; _i < _e->size(); _i++) { _o->asset_a_refs[_i] = ::flatbuffers::UnPackSoftReferenceAssetA(*_e->Get(_i)); } } else { _o->asset_a_refs.resize(0); } }
}
inline ::flatbuffers::Offset<AssetB> CreateAssetB(::flatbuffers::FlatBufferBuilder &_fbb, const AssetBT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
return AssetB::Pack(_fbb, _o, _rehasher);
}
inline ::flatbuffers::Offset<AssetB> AssetB::Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetBT* _o, const ::flatbuffers::rehasher_function_t *_rehasher) {
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetBT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _asset_a_ref = ::flatbuffers::PackHardReferenceAssetA(_o->asset_a_ref);
auto _asset_a_refs = _fbb.CreateVectorOfNativeStructs<Flat::Bigfoot::SoftReference, ::Bigfoot::SoftReference<::Bigfoot::AssetA>>(_o->asset_a_refs.data(), _o->asset_a_refs.size(), ::flatbuffers::PackSoftReferenceAssetA);
return Flat::Bigfoot::CreateAssetB(
_fbb,
&_asset_a_ref,
_asset_a_refs);
}
inline const ::flatbuffers::TypeTable *AssetBTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_SEQUENCE, 1, 1 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::HardReferenceTypeTable,
Flat::Bigfoot::SoftReferenceTypeTable
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 2, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}
inline const Flat::Bigfoot::AssetB *GetAssetB(const void *buf) {
return ::flatbuffers::GetRoot<Flat::Bigfoot::AssetB>(buf);
}
inline const Flat::Bigfoot::AssetB *GetSizePrefixedAssetB(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Flat::Bigfoot::AssetB>(buf);
}
template <bool B = false>
inline bool VerifyAssetBBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifyBuffer<Flat::Bigfoot::AssetB>(nullptr);
}
template <bool B = false>
inline bool VerifySizePrefixedAssetBBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifySizePrefixedBuffer<Flat::Bigfoot::AssetB>(nullptr);
}
inline const char *AssetBExtension() {
return "bfbs";
}
inline void FinishAssetBBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Flat::Bigfoot::AssetB> root) {
fbb.Finish(root);
}
inline void FinishSizePrefixedAssetBBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Flat::Bigfoot::AssetB> root) {
fbb.FinishSizePrefixed(root);
}
inline eastl::unique_ptr<Flat::Bigfoot::AssetBT> UnPackAssetB(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Flat::Bigfoot::AssetBT>(GetAssetB(buf)->UnPack(res));
}
inline eastl::unique_ptr<Flat::Bigfoot::AssetBT> UnPackSizePrefixedAssetB(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Flat::Bigfoot::AssetBT>(GetSizePrefixedAssetB(buf)->UnPack(res));
}
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSETB_FLAT_BIGFOOT_H_

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@@ -0,0 +1,24 @@
include "Engine/Asset/Reference.fbs";
include "EngineTests/Asset/AssetA.fbs";
include "EngineTests/Asset/AssetB.fbs";
native_include "EngineTests/Asset/AssetC_fwd.hpp";
namespace Flat.Bigfoot;
table InnerTable
{
asset_a_ref: Flat.Bigfoot.HardReference (native_type: "::Bigfoot::HardReference<::Bigfoot::AssetA>", native_inline, native_type_pack_name: "HardReferenceAssetA");
asset_a_refs: [Flat.Bigfoot.HardReference] (native_type: "::Bigfoot::HardReference<::Bigfoot::AssetA>", native_inline, native_type_pack_name: "HardReferenceAssetA");
}
table AssetC
{
inner_table: InnerTable (required);
asset_b_ref: Flat.Bigfoot.HardReference (native_type: "::Bigfoot::HardReference<::Bigfoot::AssetB>", native_inline, native_type_pack_name: "HardReferenceAssetB");
asset_b_refs: [Flat.Bigfoot.SoftReference] (native_type: "::Bigfoot::SoftReference<::Bigfoot::AssetB>", native_inline, native_type_pack_name: "SoftReferenceAssetB");
}
root_type AssetC;

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@@ -0,0 +1,43 @@
/*********************************************************************
* \file AssetC.hpp
*
* \author Romain BOULLARD
* \date April 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSET_ASSETC_HPP
#define BIGFOOT_ENGINETESTS_ASSET_ASSETC_HPP
#include <Engine/Asset/Asset.hpp>
#include <EngineTests/Asset/AssetC_generated.hpp>
namespace Bigfoot
{
struct AssetCTraits
{
using FLAT = ::Flat::Bigfoot::AssetC;
};
class AssetC: public Asset<AssetCTraits>
{
public:
AssetC()
{
GetAsset().inner_table = eastl::make_unique<::Flat::Bigfoot::InnerTableT>();
}
AssetC(const eastl::span<const std::byte> p_flatbuffer):
Asset(p_flatbuffer)
{
}
AssetC(const AssetC& p_asset) = delete;
AssetC(AssetC&& p_asset) = default;
~AssetC() = default;
AssetC& operator=(const AssetC& p_asset) = delete;
AssetC& operator=(AssetC&& p_asset) = default;
};
} // namespace Bigfoot
#endif

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@@ -0,0 +1,18 @@
/*********************************************************************
* \file AssetC_fwd.hpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSET_ASSETC_FWD_HPP
#define BIGFOOT_ENGINETESTS_ASSET_ASSETC_FWD_HPP
#include <Engine/Asset/AssetHelper.hpp>
namespace Bigfoot
{
class AssetC;
} // namespace Bigfoot
ASSET_DECL(AssetC, ::Bigfoot::AssetC)
#endif

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@@ -0,0 +1,378 @@
// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETC_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSETC_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h"
// Ensure the included flatbuffers.h is the same version as when this file was
// generated, otherwise it may not be compatible.
static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_MINOR == 12 &&
FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included");
#include "Engine/Asset/Reference.hpp"
#include "System/UUID/UUID.hpp"
#include "Engine/Asset/Reference.hpp"
#include "EngineTests/Asset/AssetA_fwd.hpp"
#include "EngineTests/Asset/AssetB_fwd.hpp"
#include "EngineTests/Asset/AssetC_fwd.hpp"
#include "Engine/Asset/Reference_generated.hpp"
#include "EngineTests/Asset/AssetA_generated.hpp"
#include "EngineTests/Asset/AssetB_generated.hpp"
#include "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Flat {
namespace Bigfoot {
struct InnerTable;
struct InnerTableBuilder;
struct InnerTableT;
struct AssetC;
struct AssetCBuilder;
struct AssetCT;
inline const ::flatbuffers::TypeTable *InnerTableTypeTable();
inline const ::flatbuffers::TypeTable *AssetCTypeTable();
struct InnerTableT : public ::flatbuffers::NativeTable {
typedef InnerTable TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.InnerTableT";
}
::Bigfoot::HardReference<::Bigfoot::AssetA> asset_a_ref{};
eastl::vector<::Bigfoot::HardReference<::Bigfoot::AssetA>> asset_a_refs{};
};
struct InnerTable FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef InnerTableT NativeTableType;
typedef InnerTableBuilder Builder;
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return InnerTableTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.InnerTable";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_ASSET_A_REF = 4,
VT_ASSET_A_REFS = 6
};
const Flat::Bigfoot::HardReference *asset_a_ref() const {
return GetStruct<const Flat::Bigfoot::HardReference *>(VT_ASSET_A_REF);
}
const ::flatbuffers::Vector<const Flat::Bigfoot::HardReference *> *asset_a_refs() const {
return GetPointer<const ::flatbuffers::Vector<const Flat::Bigfoot::HardReference *> *>(VT_ASSET_A_REFS);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<Flat::Bigfoot::HardReference>(verifier, VT_ASSET_A_REF, 1) &&
VerifyOffset(verifier, VT_ASSET_A_REFS) &&
verifier.VerifyVector(asset_a_refs()) &&
verifier.EndTable();
}
InnerTableT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
void UnPackTo(InnerTableT *_o, const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
static ::flatbuffers::Offset<InnerTable> Pack(::flatbuffers::FlatBufferBuilder &_fbb, const InnerTableT* _o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
};
struct InnerTableBuilder {
typedef InnerTable Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_asset_a_ref(const Flat::Bigfoot::HardReference *asset_a_ref) {
fbb_.AddStruct(InnerTable::VT_ASSET_A_REF, asset_a_ref);
}
void add_asset_a_refs(::flatbuffers::Offset<::flatbuffers::Vector<const Flat::Bigfoot::HardReference *>> asset_a_refs) {
fbb_.AddOffset(InnerTable::VT_ASSET_A_REFS, asset_a_refs);
}
explicit InnerTableBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<InnerTable> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<InnerTable>(end);
return o;
}
};
inline ::flatbuffers::Offset<InnerTable> CreateInnerTable(
::flatbuffers::FlatBufferBuilder &_fbb,
const Flat::Bigfoot::HardReference *asset_a_ref = nullptr,
::flatbuffers::Offset<::flatbuffers::Vector<const Flat::Bigfoot::HardReference *>> asset_a_refs = 0) {
InnerTableBuilder builder_(_fbb);
builder_.add_asset_a_refs(asset_a_refs);
builder_.add_asset_a_ref(asset_a_ref);
return builder_.Finish();
}
struct InnerTable::Traits {
using type = InnerTable;
static auto constexpr Create = CreateInnerTable;
};
::flatbuffers::Offset<InnerTable> CreateInnerTable(::flatbuffers::FlatBufferBuilder &_fbb, const InnerTableT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
struct AssetCT : public ::flatbuffers::NativeTable {
typedef AssetC TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetCT";
}
eastl::unique_ptr<Flat::Bigfoot::InnerTableT> inner_table{};
::Bigfoot::HardReference<::Bigfoot::AssetB> asset_b_ref{};
eastl::vector<::Bigfoot::SoftReference<::Bigfoot::AssetB>> asset_b_refs{};
AssetCT() = default;
AssetCT(const AssetCT &o);
AssetCT(AssetCT&&) FLATBUFFERS_NOEXCEPT = default;
AssetCT &operator=(AssetCT o) FLATBUFFERS_NOEXCEPT;
};
struct AssetC FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
typedef AssetCT NativeTableType;
typedef AssetCBuilder Builder;
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return AssetCTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetC";
}
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_INNER_TABLE = 4,
VT_ASSET_B_REF = 6,
VT_ASSET_B_REFS = 8
};
const Flat::Bigfoot::InnerTable *inner_table() const {
return GetPointer<const Flat::Bigfoot::InnerTable *>(VT_INNER_TABLE);
}
const Flat::Bigfoot::HardReference *asset_b_ref() const {
return GetStruct<const Flat::Bigfoot::HardReference *>(VT_ASSET_B_REF);
}
const ::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *> *asset_b_refs() const {
return GetPointer<const ::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *> *>(VT_ASSET_B_REFS);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyOffsetRequired(verifier, VT_INNER_TABLE) &&
verifier.VerifyTable(inner_table()) &&
VerifyField<Flat::Bigfoot::HardReference>(verifier, VT_ASSET_B_REF, 1) &&
VerifyOffset(verifier, VT_ASSET_B_REFS) &&
verifier.VerifyVector(asset_b_refs()) &&
verifier.EndTable();
}
AssetCT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
void UnPackTo(AssetCT *_o, const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
static ::flatbuffers::Offset<AssetC> Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetCT* _o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
};
struct AssetCBuilder {
typedef AssetC Table;
::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_;
void add_inner_table(::flatbuffers::Offset<Flat::Bigfoot::InnerTable> inner_table) {
fbb_.AddOffset(AssetC::VT_INNER_TABLE, inner_table);
}
void add_asset_b_ref(const Flat::Bigfoot::HardReference *asset_b_ref) {
fbb_.AddStruct(AssetC::VT_ASSET_B_REF, asset_b_ref);
}
void add_asset_b_refs(::flatbuffers::Offset<::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *>> asset_b_refs) {
fbb_.AddOffset(AssetC::VT_ASSET_B_REFS, asset_b_refs);
}
explicit AssetCBuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) {
start_ = fbb_.StartTable();
}
::flatbuffers::Offset<AssetC> Finish() {
const auto end = fbb_.EndTable(start_);
auto o = ::flatbuffers::Offset<AssetC>(end);
fbb_.Required(o, AssetC::VT_INNER_TABLE);
return o;
}
};
inline ::flatbuffers::Offset<AssetC> CreateAssetC(
::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<Flat::Bigfoot::InnerTable> inner_table = 0,
const Flat::Bigfoot::HardReference *asset_b_ref = nullptr,
::flatbuffers::Offset<::flatbuffers::Vector<const Flat::Bigfoot::SoftReference *>> asset_b_refs = 0) {
AssetCBuilder builder_(_fbb);
builder_.add_asset_b_refs(asset_b_refs);
builder_.add_asset_b_ref(asset_b_ref);
builder_.add_inner_table(inner_table);
return builder_.Finish();
}
struct AssetC::Traits {
using type = AssetC;
static auto constexpr Create = CreateAssetC;
};
::flatbuffers::Offset<AssetC> CreateAssetC(::flatbuffers::FlatBufferBuilder &_fbb, const AssetCT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr);
inline InnerTableT *InnerTable::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<InnerTableT>();
UnPackTo(_o.get(), _resolver);
return _o.release();
}
inline void InnerTable::UnPackTo(InnerTableT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = asset_a_ref(); if (_e) _o->asset_a_ref = ::flatbuffers::UnPackHardReferenceAssetA(*_e); }
{ auto _e = asset_a_refs(); if (_e) { _o->asset_a_refs.resize(_e->size()); for (::flatbuffers::uoffset_t _i = 0; _i < _e->size(); _i++) { _o->asset_a_refs[_i] = ::flatbuffers::UnPackHardReferenceAssetA(*_e->Get(_i)); } } else { _o->asset_a_refs.resize(0); } }
}
inline ::flatbuffers::Offset<InnerTable> CreateInnerTable(::flatbuffers::FlatBufferBuilder &_fbb, const InnerTableT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
return InnerTable::Pack(_fbb, _o, _rehasher);
}
inline ::flatbuffers::Offset<InnerTable> InnerTable::Pack(::flatbuffers::FlatBufferBuilder &_fbb, const InnerTableT* _o, const ::flatbuffers::rehasher_function_t *_rehasher) {
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const InnerTableT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _asset_a_ref = ::flatbuffers::PackHardReferenceAssetA(_o->asset_a_ref);
auto _asset_a_refs = _fbb.CreateVectorOfNativeStructs<Flat::Bigfoot::HardReference, ::Bigfoot::HardReference<::Bigfoot::AssetA>>(_o->asset_a_refs.data(), _o->asset_a_refs.size(), ::flatbuffers::PackHardReferenceAssetA);
return Flat::Bigfoot::CreateInnerTable(
_fbb,
&_asset_a_ref,
_asset_a_refs);
}
inline AssetCT::AssetCT(const AssetCT &o)
: inner_table((o.inner_table) ? new Flat::Bigfoot::InnerTableT(*o.inner_table) : nullptr),
asset_b_ref(o.asset_b_ref),
asset_b_refs(o.asset_b_refs) {
}
inline AssetCT &AssetCT::operator=(AssetCT o) FLATBUFFERS_NOEXCEPT {
std::swap(inner_table, o.inner_table);
std::swap(asset_b_ref, o.asset_b_ref);
std::swap(asset_b_refs, o.asset_b_refs);
return *this;
}
inline AssetCT *AssetC::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetCT>();
UnPackTo(_o.get(), _resolver);
return _o.release();
}
inline void AssetC::UnPackTo(AssetCT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o;
(void)_resolver;
{ auto _e = inner_table(); if (_e) { if(_o->inner_table) { _e->UnPackTo(_o->inner_table.get(), _resolver); } else { _o->inner_table = eastl::unique_ptr<Flat::Bigfoot::InnerTableT>(_e->UnPack(_resolver)); } } else if (_o->inner_table) { _o->inner_table.reset(); } }
{ auto _e = asset_b_ref(); if (_e) _o->asset_b_ref = ::flatbuffers::UnPackHardReferenceAssetB(*_e); }
{ auto _e = asset_b_refs(); if (_e) { _o->asset_b_refs.resize(_e->size()); for (::flatbuffers::uoffset_t _i = 0; _i < _e->size(); _i++) { _o->asset_b_refs[_i] = ::flatbuffers::UnPackSoftReferenceAssetB(*_e->Get(_i)); } } else { _o->asset_b_refs.resize(0); } }
}
inline ::flatbuffers::Offset<AssetC> CreateAssetC(::flatbuffers::FlatBufferBuilder &_fbb, const AssetCT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
return AssetC::Pack(_fbb, _o, _rehasher);
}
inline ::flatbuffers::Offset<AssetC> AssetC::Pack(::flatbuffers::FlatBufferBuilder &_fbb, const AssetCT* _o, const ::flatbuffers::rehasher_function_t *_rehasher) {
(void)_rehasher;
(void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetCT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va;
auto _inner_table = _o->inner_table ? CreateInnerTable(_fbb, _o->inner_table.get(), _rehasher) : 0;
auto _asset_b_ref = ::flatbuffers::PackHardReferenceAssetB(_o->asset_b_ref);
auto _asset_b_refs = _fbb.CreateVectorOfNativeStructs<Flat::Bigfoot::SoftReference, ::Bigfoot::SoftReference<::Bigfoot::AssetB>>(_o->asset_b_refs.data(), _o->asset_b_refs.size(), ::flatbuffers::PackSoftReferenceAssetB);
return Flat::Bigfoot::CreateAssetC(
_fbb,
_inner_table,
&_asset_b_ref,
_asset_b_refs);
}
inline const ::flatbuffers::TypeTable *InnerTableTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_SEQUENCE, 1, 0 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::HardReferenceTypeTable
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 2, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}
inline const ::flatbuffers::TypeTable *AssetCTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_SEQUENCE, 0, 1 },
{ ::flatbuffers::ET_SEQUENCE, 1, 2 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Flat::Bigfoot::InnerTableTypeTable,
Flat::Bigfoot::HardReferenceTypeTable,
Flat::Bigfoot::SoftReferenceTypeTable
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 3, type_codes, type_refs, nullptr, nullptr, nullptr
};
return &tt;
}
inline const Flat::Bigfoot::AssetC *GetAssetC(const void *buf) {
return ::flatbuffers::GetRoot<Flat::Bigfoot::AssetC>(buf);
}
inline const Flat::Bigfoot::AssetC *GetSizePrefixedAssetC(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Flat::Bigfoot::AssetC>(buf);
}
template <bool B = false>
inline bool VerifyAssetCBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifyBuffer<Flat::Bigfoot::AssetC>(nullptr);
}
template <bool B = false>
inline bool VerifySizePrefixedAssetCBuffer(
::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifySizePrefixedBuffer<Flat::Bigfoot::AssetC>(nullptr);
}
inline const char *AssetCExtension() {
return "bfbs";
}
inline void FinishAssetCBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Flat::Bigfoot::AssetC> root) {
fbb.Finish(root);
}
inline void FinishSizePrefixedAssetCBuffer(
::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Flat::Bigfoot::AssetC> root) {
fbb.FinishSizePrefixed(root);
}
inline eastl::unique_ptr<Flat::Bigfoot::AssetCT> UnPackAssetC(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Flat::Bigfoot::AssetCT>(GetAssetC(buf)->UnPack(res));
}
inline eastl::unique_ptr<Flat::Bigfoot::AssetCT> UnPackSizePrefixedAssetC(
const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) {
return eastl::unique_ptr<Flat::Bigfoot::AssetCT>(GetSizePrefixedAssetC(buf)->UnPack(res));
}
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSETC_FLAT_BIGFOOT_H_

View File

@@ -1,13 +0,0 @@
include "Engine/BigFile/Asset/AssetHeader.fbs";
namespace Bigfoot.Flat;
table AssetA
{
asset_header: AssetHeader;
health: uint;
mana: uint;
}
root_type AssetA;

View File

@@ -1,69 +0,0 @@
/*********************************************************************
* \file AssetA.hpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#ifndef BIGFOOT_ENGINETESTS_ASSETA_HPP
#define BIGFOOT_ENGINETESTS_ASSETA_HPP
#include <Engine/BigFile/Asset/AssetContainer.hpp>
#include <EngineTests/BigFile/Asset/AssetA_generated.hpp>
namespace Bigfoot
{
class AssetA
{
public:
using FLAT_ASSET = Flat::AssetA;
AssetA(FlatAssetWrapper<Flat::AssetA>* p_flatAsset):
m_flatAsset(p_flatAsset)
{
// deprecation...
if (m_flatAsset->Asset().asset_header->version < 2)
{
m_flatAsset->Asset().asset_header->version = 2;
}
}
AssetA(const AssetA& p_assetA) = default;
AssetA(AssetA&& p_assetA) = default;
[[nodiscard]]
std::uint32_t& Health()
{
return m_flatAsset->Asset().health;
}
[[nodiscard]]
std::uint32_t& Mana()
{
return m_flatAsset->Asset().mana;
}
[[nodiscard]]
Flat::AssetHeaderT* AssetHeader()
{
return m_flatAsset->Asset().asset_header.get();
}
[[nodiscard]]
const Flat::AssetHeaderT* AssetHeader() const
{
return m_flatAsset->Asset().asset_header.get();
}
~AssetA() = default;
AssetA& operator=(const AssetA& p_assetA) = default;
AssetA& operator=(AssetA&& p_assetA) = default;
private:
FlatAssetWrapper<Flat::AssetA>* m_flatAsset;
};
using AssetAContainer = AssetContainer<AssetA>;
} // namespace Bigfoot
#endif

View File

@@ -1,14 +1,5 @@
get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Tests)
set(BigfootDependencies
System
Utils)
bigfoot_create_package_tests(
""
"${BigfootDependencies}")
bigfoot_create_logger()
bigfoot_setup_dependencies("Tests/Bigfoot")
"")

View File

@@ -28,14 +28,14 @@ TEST_F(FileFixture, IsRelative_ShouldReturnTrueOnRelativeFile)
TEST_F(FileFixture, IsRelative_ShouldReturnFalseOnAbsoluteFile)
{
EXPECT_FALSE(m_file.Absolute().IsRelative());
EXPECT_FALSE(m_file.ToAbsolute().IsRelative());
}
/****************************************************************************************/
TEST_F(FileFixture, IsAbsolute_ShouldReturnTrueOnAbsoluteFile)
{
EXPECT_TRUE(m_file.Absolute().IsAbsolute());
EXPECT_TRUE(m_file.ToAbsolute().IsAbsolute());
}
TEST_F(FileFixture, IsAbsolute_ShouldReturnFalseOnRelativeFile)
@@ -59,22 +59,22 @@ TEST_F(FileFixture, Exists_ShouldReturnFalseOnNonExistingFile)
/****************************************************************************************/
TEST_F(FileFixture, Path_ShouldReturnThePath)
TEST_F(FileFixture, GetPath_ShouldReturnThePath)
{
EXPECT_STREQ(m_file.Path().data(), "Fixture/file");
EXPECT_STREQ(m_file.GetPath().data(), "Fixture/file");
}
/****************************************************************************************/
TEST_F(FileFixture, Absolute_ShouldReturnTheAbsolutePath)
TEST_F(FileFixture, ToAbsolute_ShouldReturnTheAbsolutePath)
{
EXPECT_STREQ(std::filesystem::absolute("Fixture/file").string().c_str(), m_file.Absolute().Path().data());
EXPECT_STREQ(std::filesystem::absolute("Fixture/file").string().c_str(), m_file.ToAbsolute().GetPath().data());
}
/****************************************************************************************/
TEST_F(FileFixture, Relative_ShouldReturnTheRelativePath)
TEST_F(FileFixture, ToRelative_ShouldReturnTheRelativePath)
{
EXPECT_STREQ(std::filesystem::relative("Fixture/file").string().c_str(), m_file.Relative().Path().data());
EXPECT_STREQ(std::filesystem::relative("Fixture/file").string().c_str(), m_file.ToRelative().GetPath().data());
}
} // namespace Bigfoot

View File

@@ -1,138 +0,0 @@
/*********************************************************************
* \file Log.cpp
*
* \author Romain BOULLARD
* \date December 2022
*********************************************************************/
#include <System/Log/Log.hpp>
#include <Utils/Singleton.hpp>
#include <SystemTests/SystemTestsLogger_generated.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <gtest/gtest.h>
namespace Bigfoot
{
class LogFixture: public ::testing::Test
{
protected:
void SetUp() override
{
SYSTEMTESTS_LOGGER = {"UTILSTESTS_LOGGER", Flat::LogLevel::Trace};
}
static constexpr Flat::LogLevel QuillLogLevelToLogLevel(const quill::LogLevel p_level)
{
switch (p_level)
{
case quill::LogLevel::Debug:
return Flat::LogLevel::Debug;
case quill::LogLevel::TraceL3:
return Flat::LogLevel::Trace;
case quill::LogLevel::Info:
return Flat::LogLevel::Info;
case quill::LogLevel::Warning:
return Flat::LogLevel::Warn;
case quill::LogLevel::Error:
return Flat::LogLevel::Error;
case quill::LogLevel::Critical:
return Flat::LogLevel::Critical;
default:
break;
}
return Flat::LogLevel::Trace;
}
Log m_log;
};
/****************************************************************************************/
TEST_F(LogFixture, RegisterLogger_ShouldRegisterTheLogger)
{
const quill::Logger* logger = m_log.RegisterLogger(SYSTEMTESTS_LOGGER);
EXPECT_TRUE(logger);
EXPECT_EQ(logger, m_log.GetLogger(SYSTEMTESTS_LOGGER));
EXPECT_EQ(logger->get_logger_name(), SYSTEMTESTS_LOGGER.m_name);
EXPECT_EQ(QuillLogLevelToLogLevel(logger->get_log_level()), SYSTEMTESTS_LOGGER.m_level);
}
/****************************************************************************************/
TEST_F(LogFixture, GetLogger_ShouldReturnNullptrIfTheLoggerDoesNotExist)
{
EXPECT_FALSE(m_log.GetLogger(SYSTEMTESTS_LOGGER));
}
/****************************************************************************************/
TEST_F(LogFixture, GetLogger_ShouldReturnTheLoggerIfItExists)
{
[[maybe_unused]]
const quill::Logger* logger = m_log.RegisterLogger(SYSTEMTESTS_LOGGER);
EXPECT_TRUE(m_log.GetLogger(SYSTEMTESTS_LOGGER));
}
/****************************************************************************************/
TEST_F(LogFixture, ChangeLoggerLogLevel_ShouldChangeTheLoggerLogLevel)
{
const quill::Logger* logger = m_log.RegisterLogger(SYSTEMTESTS_LOGGER);
m_log.ChangeLoggerLogLevel(SYSTEMTESTS_LOGGER, Flat::LogLevel::Critical);
EXPECT_EQ(QuillLogLevelToLogLevel(logger->get_log_level()), Flat::LogLevel::Critical);
}
/****************************************************************************************/
TEST_F(LogFixture, LogDebug)
{
Singleton<Log>::Lifetime singletonLifetime;
BIGFOOT_LOG_DEBUG(SYSTEMTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogFixture, LogTrace)
{
Singleton<Log>::Lifetime singletonLifetime;
BIGFOOT_LOG_TRACE(SYSTEMTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogFixture, LogInfo)
{
Singleton<Log>::Lifetime singletonLifetime;
BIGFOOT_LOG_INFO(SYSTEMTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogFixture, LogWarn)
{
Singleton<Log>::Lifetime singletonLifetime;
BIGFOOT_LOG_WARN(SYSTEMTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogFixture, LogError)
{
Singleton<Log>::Lifetime singletonLifetime;
BIGFOOT_LOG_ERROR(SYSTEMTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogFixture, LogFatal)
{
Singleton<Log>::Lifetime singletonLifetime;
BIGFOOT_LOG_FATAL(SYSTEMTESTS_LOGGER, "Hello");
}
} // namespace Bigfoot
#endif

View File

@@ -0,0 +1,19 @@
/*********************************************************************
* \file main.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <Utils/Log/LogMacros.hpp>
#include <Utils/TargetMacros.h>
#include <gtest/gtest.h>
int main(int argc, char** argv)
{
testing::InitGoogleTest(&argc, argv);
BIGFOOT_NOT_OPTIMIZED_ONLY(::Bigfoot::Singleton<::Bigfoot::Log>::Lifetime m_lifetime);
return RUN_ALL_TESTS();
}

View File

@@ -18,50 +18,50 @@ class TimeFixture: public ::testing::Test
/****************************************************************************************/
TEST_F(TimeFixture, Year_ShouldReturnTheYear)
TEST_F(TimeFixture, GetYear_ShouldReturnTheYear)
{
EXPECT_EQ(m_time.Year(), 2026);
EXPECT_EQ(m_time.GetYear(), 2026);
}
/****************************************************************************************/
TEST_F(TimeFixture, Month_ShouldReturnTheMonth)
TEST_F(TimeFixture, GetMonth_ShouldReturnTheMonth)
{
EXPECT_EQ(m_time.Month(), 1);
EXPECT_EQ(m_time.GetMonth(), 1);
}
/****************************************************************************************/
TEST_F(TimeFixture, Day_ShouldReturnTheDay)
TEST_F(TimeFixture, GetDay_ShouldReturnTheDay)
{
EXPECT_EQ(m_time.Day(), 5);
EXPECT_EQ(m_time.GetDay(), 5);
}
/****************************************************************************************/
TEST_F(TimeFixture, Hour_ShouldReturnTheHour)
TEST_F(TimeFixture, GetHour_ShouldReturnTheHour)
{
EXPECT_EQ(m_time.Hour(), 20);
EXPECT_EQ(m_time.GetHour(), 20);
}
/****************************************************************************************/
TEST_F(TimeFixture, Minute_ShouldReturnTheMinute)
TEST_F(TimeFixture, GetMinute_ShouldReturnTheMinute)
{
EXPECT_EQ(m_time.Minute(), 9);
EXPECT_EQ(m_time.GetMinute(), 9);
}
/****************************************************************************************/
TEST_F(TimeFixture, Second_ShouldReturnTheSecond)
TEST_F(TimeFixture, GetSecond_ShouldReturnTheSecond)
{
EXPECT_EQ(m_time.Second(), 6);
EXPECT_EQ(m_time.GetSecond(), 6);
}
/****************************************************************************************/
TEST_F(TimeFixture, Microsecond_ShouldReturnTheMicrosecond)
TEST_F(TimeFixture, GetMicrosecond_ShouldReturnTheMicrosecond)
{
EXPECT_EQ(m_time.Microsecond(), 680'609);
EXPECT_EQ(m_time.GetMicrosecond(), 680'609);
}
} // namespace Bigfoot

View File

@@ -7,7 +7,6 @@
#include <System/UUID/UUID.hpp>
#include <ankerl/unordered_dense.h>
#include <gtest/gtest.h>
namespace Bigfoot
@@ -44,13 +43,13 @@ class UUIDFixture: public ::testing::Test
TEST_F(UUIDFixture, DumpingRawAndConstructAnUUIDWithItShouldGiveTheSameUUID)
{
std::span<const std::byte, UUID::UUID_BYTE_SIZE> raw = m_a;
std::span<const std::byte, UUID::UUID_BYTE_SIZE> raw = m_a.ToBytes();
EXPECT_EQ(m_a, UUID {raw});
raw = m_b;
raw = m_b.ToBytes();
EXPECT_EQ(m_b, UUID {raw});
raw = m_d;
raw = m_d.ToBytes();
EXPECT_EQ(m_d, UUID {raw});
}
@@ -58,21 +57,21 @@ TEST_F(UUIDFixture, DumpingRawAndConstructAnUUIDWithItShouldGiveTheSameUUID)
TEST_F(UUIDFixture, ValidIDFromStringShouldBeEqualToString)
{
EXPECT_EQ(static_cast<std::string>(m_b), "47183823-2574-4bfd-b411-99ed177d3e43");
EXPECT_EQ(m_b.ToString(), "47183823-2574-4bfd-b411-99ed177d3e43");
}
/****************************************************************************************/
TEST_F(UUIDFixture, InvalidIDFromStringShouldNotBeEqualToString)
{
EXPECT_NE(static_cast<std::string>(m_c), "4bfd-b411-99ed177d3e43");
EXPECT_NE(m_c.ToString(), "4bfd-b411-99ed177d3e43");
}
/****************************************************************************************/
TEST_F(UUIDFixture, NullIDStringShouldBeEqualToNullIDString)
{
EXPECT_EQ(static_cast<std::string>(UUID::NULL_UUID), "00000000-0000-0000-0000-000000000000");
EXPECT_EQ(UUID::NULL_UUID.ToString(), "00000000-0000-0000-0000-000000000000");
}
/****************************************************************************************/
@@ -169,9 +168,9 @@ TEST_F(UUIDFixture, GeneratingFiveMillionUniqueID)
/****************************************************************************************/
TEST_F(UUIDFixture, Raw_ShouldGiveBackTheRawDataOfTheID)
TEST_F(UUIDFixture, ToBytes_ShouldGiveBackTheRawDataOfTheID)
{
std::span<const std::byte, UUID::UUID_BYTE_SIZE> d = m_d;
std::span<const std::byte, UUID::UUID_BYTE_SIZE> d = m_d.ToBytes();
std::span<const std::byte, UUID::UUID_BYTE_SIZE> raw = m_raw;
for (std::uint32_t i = 0; i < UUID::UUID_BYTE_SIZE; ++i)

View File

@@ -1,11 +1,7 @@
get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Tests)
set(BigfootDependencies
Utils)
bigfoot_create_package_tests(
""
"${BigfootDependencies}")
"")
bigfoot_setup_dependencies("Tests/Bigfoot")
bigfoot_create_logger()

View File

@@ -0,0 +1,537 @@
/*********************************************************************
* \file SlotMap.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <Utils/Containers/SlotMap.hpp>
#include <gtest/gtest.h>
namespace Bigfoot
{
template<class VERSION_TYPE, class INDEX_TYPE>
struct SlotMapConfig
{
using Version = VERSION_TYPE;
using Index = INDEX_TYPE;
};
using SlotMapConfigs = ::testing::Types<SlotMapConfig<std::uint8_t, std::uint8_t>,
SlotMapConfig<std::uint8_t, std::uint16_t>,
SlotMapConfig<std::uint8_t, std::uint32_t>,
SlotMapConfig<std::uint16_t, std::uint8_t>,
SlotMapConfig<std::uint16_t, std::uint16_t>,
SlotMapConfig<std::uint16_t, std::uint32_t>,
SlotMapConfig<std::uint32_t, std::uint8_t>,
SlotMapConfig<std::uint32_t, std::uint16_t>,
SlotMapConfig<std::uint32_t, std::uint32_t>>;
struct SlotMapConfigNames
{
template<class T>
static std::string GetName(int)
{
return "VERSION" + std::to_string(sizeof(typename T::Version) * 8) + "_INDEX" +
std::to_string(sizeof(typename T::Index) * 8);
}
};
/****************************************************************************************/
template<class CONFIG>
class SlotKeyFixture: public ::testing::Test
{
protected:
using SlotMapVersion = typename CONFIG::Version;
using SlotMapIndex = typename CONFIG::Index;
using SlotMapType = SlotMap<std::uint32_t, SlotMapVersion, SlotMapIndex>;
using SlotKey = typename SlotMapType::SlotKey;
};
TYPED_TEST_SUITE(SlotKeyFixture, SlotMapConfigs, SlotMapConfigNames);
/****************************************************************************************/
TYPED_TEST(SlotKeyFixture, DefaultSlotKeyIsInvalid)
{
constexpr typename TestFixture::SlotMapIndex index = 0;
constexpr typename TestFixture::SlotMapVersion version = 0;
constexpr typename TestFixture::SlotKey slotKey {};
EXPECT_FALSE(slotKey.Valid());
EXPECT_EQ(slotKey.GetVersion(), version);
EXPECT_EQ(slotKey.GetIndex(), index);
}
/****************************************************************************************/
TYPED_TEST(SlotKeyFixture, Valid_ShouldReturnTrueIfTheSlotKeyIsValid)
{
constexpr typename TestFixture::SlotMapIndex index = 0;
constexpr typename TestFixture::SlotMapVersion version = 1;
constexpr typename TestFixture::SlotKey slotKey {version, index};
EXPECT_TRUE(slotKey.Valid());
}
/****************************************************************************************/
TYPED_TEST(SlotKeyFixture, Valid_ShouldReturnFalseIfTheSlotKeyIsValid)
{
constexpr typename TestFixture::SlotMapIndex index = 0;
constexpr typename TestFixture::SlotMapVersion version = 0;
constexpr typename TestFixture::SlotKey slotKey {version, index};
EXPECT_FALSE(slotKey.Valid());
}
/****************************************************************************************/
TYPED_TEST(SlotKeyFixture, GetVersion_ShouldReturnTheVersion)
{
constexpr typename TestFixture::SlotMapIndex index = 0;
constexpr typename TestFixture::SlotMapVersion version = 42;
constexpr typename TestFixture::SlotKey slotKey {version, index};
EXPECT_EQ(slotKey.GetVersion(), version);
}
/****************************************************************************************/
TYPED_TEST(SlotKeyFixture, GetIndex_ShouldReturnTheIndex)
{
constexpr typename TestFixture::SlotMapIndex index = 42;
constexpr typename TestFixture::SlotMapVersion version = 0;
constexpr typename TestFixture::SlotKey slotKey {version, index};
EXPECT_EQ(slotKey.GetIndex(), index);
}
/****************************************************************************************/
template<class CONFIG>
class SlotMapFixture: public ::testing::Test
{
protected:
using SlotMapVersion = typename CONFIG::Version;
using SlotMapIndex = typename CONFIG::Index;
using SlotMapType = SlotMap<std::uint32_t, SlotMapVersion, SlotMapIndex>;
using SlotKey = typename SlotMapType::SlotKey;
SlotMapType m_slotMap;
};
TYPED_TEST_SUITE(SlotMapFixture, SlotMapConfigs, SlotMapConfigNames);
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Insert_ShouldReturnAValidSlotKey)
{
const auto slotKey = this->m_slotMap.Insert(42);
EXPECT_TRUE(slotKey.Valid());
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Insert_ShouldRecycleASlotKeyAfterARemove)
{
const auto slotKey = this->m_slotMap.Insert(42);
this->m_slotMap.Remove(slotKey);
const auto secondSlotKey = this->m_slotMap.Insert(69);
EXPECT_NE(secondSlotKey.GetVersion(), slotKey.GetVersion());
EXPECT_EQ(secondSlotKey.GetIndex(), slotKey.GetIndex());
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Has_ShouldReturnTrueIfTheSlotMapHasTheKey)
{
const auto slotKey = this->m_slotMap.Insert(42);
EXPECT_TRUE(this->m_slotMap.Has(slotKey));
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Has_ShouldReturnFalseIfTheSlotMapDoesNotHaveTheKey)
{
const auto slotKey = this->m_slotMap.Insert(42);
this->m_slotMap.Remove(slotKey);
EXPECT_FALSE(this->m_slotMap.Has(slotKey));
EXPECT_FALSE(this->m_slotMap.Has(typename TestFixture::SlotKey {1, 22}));
EXPECT_FALSE(this->m_slotMap.Has(typename TestFixture::SlotKey {}));
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Remove_ShouldRemoveTheSlotKey)
{
const auto slotKey = this->m_slotMap.Insert(42);
this->m_slotMap.Remove(slotKey);
EXPECT_FALSE(this->m_slotMap.Has(slotKey));
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Remove_ShouldNotRecycleASlotWhenVersionWasExhausted)
{
if constexpr (std::is_same_v<typename TestFixture::SlotMapVersion, std::uint32_t>)
{
GTEST_SKIP() << "Skipped for 32-bit version: exhausting all versions is too slow.";
}
else
{
auto key = this->m_slotMap.Insert(1);
for (typename TestFixture::SlotMapVersion i = 1;
i < std::numeric_limits<typename TestFixture::SlotMapVersion>::max();
++i)
{
this->m_slotMap.Remove(key);
const auto newKey = this->m_slotMap.Insert(1);
EXPECT_EQ(newKey.GetIndex(), key.GetIndex());
key = newKey;
}
// Slot is at MAX_VERSION — one more remove should overflow and permanently deactivate it
EXPECT_EQ(key.GetVersion(), std::numeric_limits<typename TestFixture::SlotMapVersion>::max());
this->m_slotMap.Remove(key);
EXPECT_FALSE(this->m_slotMap.Has(key));
// Dead slot must not be recycled; a new insert must allocate a fresh slot index
const auto newKey = this->m_slotMap.Insert(2);
EXPECT_NE(newKey.GetIndex(), key.GetIndex());
// Ensure an invalid key does not return an exhausted slot
EXPECT_EQ(this->m_slotMap.Get(typename TestFixture::SlotKey {}), nullptr);
}
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Remove_ShouldNotDoAnythingInCaseOfDoubleRemove)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
this->m_slotMap.Remove(slotKey1);
this->m_slotMap.Remove(slotKey1);
EXPECT_EQ(*this->m_slotMap.Get(slotKey2), 69);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Remove_ShouldNotDoAnythingInCaseStaleKey)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
this->m_slotMap.Remove(typename TestFixture::SlotKey {2, 0});
EXPECT_EQ(*this->m_slotMap.Get(slotKey1), 42);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Get_ShouldReturnNullptrForInvalidSlotKeys)
{
const auto slotKey = this->m_slotMap.Insert(42);
this->m_slotMap.Remove(slotKey);
const auto validate = [&](auto& p_slotMap)
{
EXPECT_EQ(p_slotMap.Get(slotKey), nullptr);
EXPECT_EQ(p_slotMap.Get(typename TestFixture::SlotKey {1, 3}), nullptr);
EXPECT_EQ(p_slotMap.Get(typename TestFixture::SlotKey {}), nullptr);
};
validate(this->m_slotMap);
const auto& constSlotMap = this->m_slotMap;
validate(constSlotMap);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Get_ShouldReturnTheValueForValidSlotKeys)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
const auto slotKey3 = this->m_slotMap.Insert(28);
const auto slotKey4 = this->m_slotMap.Insert(0);
this->m_slotMap.Remove(slotKey2);
const auto validate = [&](auto& p_slotMap)
{
EXPECT_EQ(*p_slotMap.Get(slotKey1), 42);
EXPECT_EQ(*p_slotMap.Get(slotKey3), 28);
EXPECT_EQ(*p_slotMap.Get(slotKey4), 0);
};
validate(this->m_slotMap);
const auto& constSlotMap = this->m_slotMap;
validate(constSlotMap);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Reset_ResetsTheSlotMapAndMakesCollisionWithOldSlotKeys)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
this->m_slotMap.Reset();
const auto slotKey5 = this->m_slotMap.Insert(128);
EXPECT_EQ(slotKey1, slotKey5);
EXPECT_EQ(*this->m_slotMap.Get(slotKey5), 128);
EXPECT_EQ(*this->m_slotMap.Get(slotKey1), 128);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Clear_ResetsTheSlotMapAndButGuaranteesNotCollisionWithOldSlotKeys)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
this->m_slotMap.Clear();
const auto slotKey5 = this->m_slotMap.Insert(128);
EXPECT_NE(slotKey1, slotKey5);
EXPECT_EQ(*this->m_slotMap.Get(slotKey5), 128);
EXPECT_EQ(this->m_slotMap.Get(slotKey1), nullptr);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, GetSize_ReturnTheSizeOfTheSlotMap)
{
EXPECT_EQ(this->m_slotMap.GetSize(), 0);
std::ignore = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
EXPECT_EQ(this->m_slotMap.GetSize(), 4);
this->m_slotMap.Remove(slotKey2);
EXPECT_EQ(this->m_slotMap.GetSize(), 3);
this->m_slotMap.Clear();
EXPECT_EQ(this->m_slotMap.GetSize(), 0);
std::ignore = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
EXPECT_EQ(this->m_slotMap.GetSize(), 4);
this->m_slotMap.Reset();
EXPECT_EQ(this->m_slotMap.GetSize(), 0);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Empty_ShouldReturnTrueIfTheSlotMapIsEmpty)
{
EXPECT_TRUE(this->m_slotMap.Empty());
std::ignore = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
this->m_slotMap.Clear();
EXPECT_TRUE(this->m_slotMap.Empty());
std::ignore = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
this->m_slotMap.Reset();
EXPECT_TRUE(this->m_slotMap.Empty());
const auto slotKey9 = this->m_slotMap.Insert(42);
this->m_slotMap.Remove(slotKey9);
EXPECT_TRUE(this->m_slotMap.Empty());
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Empty_ShouldReturnFalseIfTheSlotMapIsNotEmpty)
{
std::ignore = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
EXPECT_FALSE(this->m_slotMap.Empty());
this->m_slotMap.Clear();
std::ignore = this->m_slotMap.Insert(42);
std::ignore = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
EXPECT_FALSE(this->m_slotMap.Empty());
this->m_slotMap.Reset();
const auto slotKey9 = this->m_slotMap.Insert(42);
EXPECT_FALSE(this->m_slotMap.Empty());
this->m_slotMap.Remove(slotKey9);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, Iterator)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
const auto slotKey3 = this->m_slotMap.Insert(28);
const auto slotKey4 = this->m_slotMap.Insert(0);
this->m_slotMap.Remove(slotKey2);
eastl::vector<std::uint32_t> values;
for (auto it = this->m_slotMap.begin(); it != this->m_slotMap.end(); ++it)
{
values.push_back(*it);
}
ASSERT_EQ(values.size(), 3);
EXPECT_EQ(values[0], 42);
EXPECT_EQ(values[1], 0);
EXPECT_EQ(values[2], 28);
// The non-const iterator is mutable.
for (std::uint32_t& value: this->m_slotMap)
{
value += 100;
}
EXPECT_EQ(*this->m_slotMap.Get(slotKey1), 142);
EXPECT_EQ(*this->m_slotMap.Get(slotKey3), 128);
EXPECT_EQ(*this->m_slotMap.Get(slotKey4), 100);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, ConstIterator)
{
std::ignore = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
this->m_slotMap.Remove(slotKey2);
const auto& constSlotMap = this->m_slotMap;
eastl::vector<std::uint32_t> values;
for (auto it = constSlotMap.begin(); it != constSlotMap.end(); ++it)
{
values.push_back(*it);
}
ASSERT_EQ(values.size(), 3);
EXPECT_EQ(values[0], 42);
EXPECT_EQ(values[1], 0);
EXPECT_EQ(values[2], 28);
// cbegin/cend yield the same const traversal.
eastl::vector<std::uint32_t> cValues;
for (auto it = this->m_slotMap.cbegin(); it != this->m_slotMap.cend(); ++it)
{
cValues.push_back(*it);
}
EXPECT_EQ(values, cValues);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, ReverseIterator)
{
const auto slotKey1 = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
const auto slotKey3 = this->m_slotMap.Insert(28);
const auto slotKey4 = this->m_slotMap.Insert(0);
this->m_slotMap.Remove(slotKey2);
eastl::vector<std::uint32_t> values;
for (auto it = this->m_slotMap.rbegin(); it != this->m_slotMap.rend(); ++it)
{
values.push_back(*it);
}
ASSERT_EQ(values.size(), 3);
EXPECT_EQ(values[0], 28);
EXPECT_EQ(values[1], 0);
EXPECT_EQ(values[2], 42);
// The non-const reverse iterator is mutable.
for (auto it = this->m_slotMap.rbegin(); it != this->m_slotMap.rend(); ++it)
{
*it += 100;
}
EXPECT_EQ(*this->m_slotMap.Get(slotKey1), 142);
EXPECT_EQ(*this->m_slotMap.Get(slotKey3), 128);
EXPECT_EQ(*this->m_slotMap.Get(slotKey4), 100);
}
/****************************************************************************************/
TYPED_TEST(SlotMapFixture, ConstReverseIterator)
{
std::ignore = this->m_slotMap.Insert(42);
const auto slotKey2 = this->m_slotMap.Insert(69);
std::ignore = this->m_slotMap.Insert(28);
std::ignore = this->m_slotMap.Insert(0);
this->m_slotMap.Remove(slotKey2);
const auto& constSlotMap = this->m_slotMap;
eastl::vector<std::uint32_t> values;
for (auto it = constSlotMap.rbegin(); it != constSlotMap.rend(); ++it)
{
values.push_back(*it);
}
ASSERT_EQ(values.size(), 3);
EXPECT_EQ(values[0], 28);
EXPECT_EQ(values[1], 0);
EXPECT_EQ(values[2], 42);
// crbegin/crend yield the same const reverse traversal.
eastl::vector<std::uint32_t> crValues;
for (auto it = this->m_slotMap.crbegin(); it != this->m_slotMap.crend(); ++it)
{
crValues.push_back(*it);
}
EXPECT_EQ(values, crValues);
}
} // namespace Bigfoot

View File

@@ -0,0 +1,21 @@
// AUTO-GENERATED DO NOT TOUCH
/*********************************************************************
* \file UtilsTestsLogger.generated.hpp
*
*********************************************************************/
#ifndef BIGFOOT_UTILSTESTSLOGGER_GENERATED_HPP
#define BIGFOOT_UTILSTESTSLOGGER_GENERATED_HPP
#include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
namespace Bigfoot
{
/*
* Logger
*/
inline Log::LoggerInfo UTILSTESTS_LOGGER {"UTILSTESTS_LOGGER", Flat::LogLevel::Trace};
} // namespace Bigfoot
#endif
#endif

View File

@@ -0,0 +1,97 @@
/*********************************************************************
* \file Log.cpp
*
* \author Romain BOULLARD
* \date December 2022
*********************************************************************/
#include <Utils/Log/Log.hpp>
#include <Utils/Singleton.hpp>
#include <UtilsTests/UtilsTestsLogger_generated.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <gtest/gtest.h>
namespace Bigfoot
{
class LogFixture: public ::testing::Test
{
protected:
static constexpr Flat::LogLevel QuillLogLevelToLogLevel(const quill::LogLevel p_level)
{
switch (p_level)
{
case quill::LogLevel::Debug:
return Flat::LogLevel::Debug;
case quill::LogLevel::TraceL3:
return Flat::LogLevel::Trace;
case quill::LogLevel::Info:
return Flat::LogLevel::Info;
case quill::LogLevel::Warning:
return Flat::LogLevel::Warn;
case quill::LogLevel::Error:
return Flat::LogLevel::Error;
case quill::LogLevel::Critical:
return Flat::LogLevel::Critical;
default:
break;
}
return Flat::LogLevel::Trace;
}
};
/****************************************************************************************/
TEST_F(LogFixture, RegisterLogger_ShouldRegisterTheLogger)
{
const quill::Logger* logger = Singleton<Log>::GetInstance().RegisterLogger(UTILSTESTS_LOGGER);
EXPECT_TRUE(logger);
EXPECT_EQ(logger, Singleton<Log>::GetInstance().GetLogger(UTILSTESTS_LOGGER));
EXPECT_EQ(logger->get_logger_name(), UTILSTESTS_LOGGER.m_name);
EXPECT_EQ(QuillLogLevelToLogLevel(logger->get_log_level()), UTILSTESTS_LOGGER.m_level);
}
/****************************************************************************************/
TEST_F(LogFixture, UnregisterLogger_ShouldUnregisterTheLogger)
{
std::ignore = Singleton<Log>::GetInstance().RegisterLogger(UTILSTESTS_LOGGER);
Singleton<Log>::GetInstance().UnregisterLogger(UTILSTESTS_LOGGER);
EXPECT_EQ(Singleton<Log>::GetInstance().GetLogger(UTILSTESTS_LOGGER), nullptr);
}
/****************************************************************************************/
TEST_F(LogFixture, GetLogger_ShouldReturnNullptrIfTheLoggerDoesNotExist)
{
EXPECT_FALSE(Singleton<Log>::GetInstance().GetLogger(UTILSTESTS_LOGGER));
}
/****************************************************************************************/
TEST_F(LogFixture, GetLoger_ShouldReturnTheLoggerIfItExists)
{
[[maybe_unused]]
const quill::Logger* logger = Singleton<Log>::GetInstance().RegisterLogger(UTILSTESTS_LOGGER);
EXPECT_TRUE(Singleton<Log>::GetInstance().GetLogger(UTILSTESTS_LOGGER));
}
/****************************************************************************************/
TEST_F(LogFixture, ChangeLoggerLogLevel_ShouldChangeTheLoggerLogLevel)
{
const Flat::LogLevel previous = UTILSTESTS_LOGGER.m_level;
const quill::Logger* logger = Singleton<Log>::GetInstance().RegisterLogger(UTILSTESTS_LOGGER);
Singleton<Log>::GetInstance().ChangeLoggerLogLevel(UTILSTESTS_LOGGER, Flat::LogLevel::Critical);
EXPECT_EQ(QuillLogLevelToLogLevel(logger->get_log_level()), Flat::LogLevel::Critical);
Singleton<Log>::GetInstance().ChangeLoggerLogLevel(UTILSTESTS_LOGGER, previous);
EXPECT_EQ(QuillLogLevelToLogLevel(logger->get_log_level()), previous);
}
} // namespace Bigfoot
#endif

View File

@@ -0,0 +1,64 @@
/*********************************************************************
* \file LogMacros.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <Utils/Log/LogMacros.hpp>
#include <UtilsTests/UtilsTestsLogger_generated.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <gtest/gtest.h>
namespace Bigfoot
{
class LogMacrosFixture: public ::testing::Test
{
protected:
};
/****************************************************************************************/
TEST_F(LogMacrosFixture, LogDebug)
{
BIGFOOT_LOG_DEBUG(UTILSTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogMacrosFixture, LogTrace)
{
BIGFOOT_LOG_TRACE(UTILSTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogMacrosFixture, LogInfo)
{
BIGFOOT_LOG_INFO(UTILSTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogMacrosFixture, LogWarn)
{
BIGFOOT_LOG_WARN(UTILSTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogMacrosFixture, LogError)
{
BIGFOOT_LOG_ERROR(UTILSTESTS_LOGGER, "Hello");
}
/****************************************************************************************/
TEST_F(LogMacrosFixture, LogFatal)
{
BIGFOOT_LOG_FATAL(UTILSTESTS_LOGGER, "Hello");
}
} // namespace Bigfoot
#endif

View File

@@ -42,7 +42,7 @@ class SingletonTest
}
[[nodiscard]]
std::uint32_t Data() const
std::uint32_t GetData() const
{
return m_data;
}
@@ -84,19 +84,19 @@ TEST_F(SingletonFixture, ConstructorAndDestructorShouldBeCalled)
{
::testing::InSequence seq;
EXPECT_CALL(*m_mock, Construct());
EXPECT_CALL(*m_mock, Destruct());
EXPECT_CALL(*m_mock, Construct()).Times(1);
EXPECT_CALL(*m_mock, Destruct()).Times(1);
Singleton<SingletonTest>::Lifetime singleton {42};
}
/****************************************************************************************/
TEST_F(SingletonFixture, Instance_ShouldReturnTheInstance)
TEST_F(SingletonFixture, GetInstance_ShouldReturnTheInstance)
{
Singleton<SingletonTest>::Lifetime singleton {42};
EXPECT_EQ(Singleton<SingletonTest>::Instance().Data(), 42);
EXPECT_EQ(Singleton<SingletonTest>::GetInstance().GetData(), 42);
}
} // namespace Bigfoot

View File

@@ -0,0 +1,19 @@
/*********************************************************************
* \file main.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <Utils/Log/LogMacros.hpp>
#include <Utils/TargetMacros.h>
#include <gtest/gtest.h>
int main(int argc, char** argv)
{
testing::InitGoogleTest(&argc, argv);
BIGFOOT_NOT_OPTIMIZED_ONLY(::Bigfoot::Singleton<::Bigfoot::Log>::Lifetime m_lifetime);
return RUN_ALL_TESTS();
}

View File

@@ -19,42 +19,42 @@ class VersionFixture: public ::testing::Test
/****************************************************************************************/
TEST_F(VersionFixture, string)
TEST_F(VersionFixture, ToString)
{
EXPECT_STREQ(static_cast<std::string>(m_detailed).data(), "1.2.3");
EXPECT_STREQ(static_cast<std::string>(m_combined).data(), "1.2.3");
EXPECT_STREQ(m_detailed.ToString().data(), "1.2.3");
EXPECT_STREQ(m_combined.ToString().data(), "1.2.3");
}
/****************************************************************************************/
TEST_F(VersionFixture, uint32_t)
TEST_F(VersionFixture, Raw)
{
EXPECT_EQ(static_cast<std::uint32_t>(m_detailed), (1 << 16) | (2 << 8) | 3);
EXPECT_EQ(static_cast<std::uint32_t>(m_combined), (1 << 16) | (2 << 8) | 3);
EXPECT_EQ(m_detailed.Raw(), (1 << 16) | (2 << 8) | 3);
EXPECT_EQ(m_combined.Raw(), (1 << 16) | (2 << 8) | 3);
}
/****************************************************************************************/
TEST_F(VersionFixture, Major_ShouldBeEqualToTheMajorPartOfTheVersion)
TEST_F(VersionFixture, GetMajor_ShouldBeEqualToTheMajorPartOfTheVersion)
{
EXPECT_EQ(m_detailed.Major(), 1);
EXPECT_EQ(m_combined.Major(), 1);
EXPECT_EQ(m_detailed.GetMajor(), 1);
EXPECT_EQ(m_combined.GetMajor(), 1);
}
/****************************************************************************************/
TEST_F(VersionFixture, Minor_ShouldBeEqualToTheMinorPartOfTheVersion)
TEST_F(VersionFixture, GetMinor_ShouldBeEqualToTheMinorPartOfTheVersion)
{
EXPECT_EQ(m_detailed.Minor(), 2);
EXPECT_EQ(m_combined.Minor(), 2);
EXPECT_EQ(m_detailed.GetMinor(), 2);
EXPECT_EQ(m_combined.GetMinor(), 2);
}
/****************************************************************************************/
TEST_F(VersionFixture, Patch_ShouldBeEqualToThePatchPartOfTheVersion)
TEST_F(VersionFixture, GetPatch_ShouldBeEqualToThePatchPartOfTheVersion)
{
EXPECT_EQ(m_detailed.Patch(), 3);
EXPECT_EQ(m_combined.Patch(), 3);
EXPECT_EQ(m_detailed.GetPatch(), 3);
EXPECT_EQ(m_combined.GetPatch(), 3);
}
/****************************************************************************************/

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