100 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
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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
Bigfoot / Build & Test Debug with ./ConanProfiles/clang (Unity Build: ON) (push) Failing after 5m21s
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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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2026-02-20 16:54:11 +01:00
45342a3555 Rework AssetContainer; adding references 2026-02-14 12:26:26 +01:00
a21354b4b4 AssetContainer semantic
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2026-02-13 18:43:21 +01:00
d6df6d8a71 unordered_dense link 2026-02-13 18:40:39 +01:00
bbc8aa3e80 update dependencies 2026-02-13 18:40:30 +01:00
75bd0bf441 AssetContainer concept
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2026-02-11 12:03:15 +01:00
e4bcf5563c Correct TypeID and TypeName
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2026-02-11 01:10:45 +01:00
46c3034ea6 FlatAssetWrapper
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2026-02-10 17:52:07 +01:00
f5ad5adff6 Fix clang-format
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2026-02-10 00:43:44 +01:00
0ef2f842cb AssetTypeID;No circular Dependency;AssetHeader
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2026-02-10 00:37:55 +01:00
131 changed files with 5254 additions and 1544 deletions

View File

@@ -51,7 +51,7 @@ CompactNamespaces: false
Cpp11BracedListStyle: true Cpp11BracedListStyle: true
EmptyLineBeforeAccessModifier: Always EmptyLineBeforeAccessModifier: Always
FixNamespaceComments: true FixNamespaceComments: true
IncludeBlocks: Preserve IncludeBlocks: Regroup
IndentCaseBlocks: true IndentCaseBlocks: true
IndentCaseLabels: false IndentCaseLabels: false
IndentPPDirectives: None IndentPPDirectives: None
@@ -119,4 +119,24 @@ SpaceAroundPointerQualifiers: Default
SpaceBeforeCpp11BracedList: true SpaceBeforeCpp11BracedList: true
SpaceInEmptyBlock: true SpaceInEmptyBlock: true
PenaltyBreakAssignment: 200 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", "name": "Bigfoot",
"image": "git.romainboullard.com/bigfootdev/linuxbigfootbuilder:main" "image": "git.romainboullard.com/bigfootdev/linuxcppbuilder:development"
} }

View File

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

View File

@@ -11,7 +11,8 @@ jobs:
runs-on: ubuntu-latest runs-on: ubuntu-latest
timeout-minutes: 120 timeout-minutes: 120
container: container:
image: git.romainboullard.com/bigfootdev/linuxbigfootbuilder:main image: git.romainboullard.com/bigfootdev/linuxcppbuilder:development
name: "Sonarqube" name: "Sonarqube"
steps: steps:
- name: Install Node.js - name: Install Node.js
@@ -23,11 +24,13 @@ jobs:
fetch-depth: 0 fetch-depth: 0
submodules: recursive submodules: recursive
- name: Generate - name: Build
run: | 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 -S . -B ./build/Debug --toolchain ./build/Debug/generators/conan_toolchain.cmake -DCMAKE_BUILD_TYPE=Debug -G "Ninja"
cmake --build build/Debug --parallel $(nproc) cmake --build build/Debug --parallel $(nproc)
. ./build/Debug/generators/deactivate_conanbuild.sh
- name: Clang-Tidy - name: Clang-Tidy
run: run-clang-tidy -p ./build/Debug/ >> tidy_result.txt 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 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

View File

@@ -0,0 +1,24 @@
/*********************************************************************
* \file AssetTypeID.cpp
*
* \author Romain BOULLARD
* \date May 2026
*********************************************************************/
#include <Engine/Asset/AssetTypeID.hpp>
#include <Engine/Asset/AssetTypeID_generated.hpp>
namespace flatbuffers
{
Flat::Bigfoot::AssetTypeID Pack(const Bigfoot::AssetTypeID& p_assetTypeID)
{
return Flat::Bigfoot::AssetTypeID {p_assetTypeID};
}
/****************************************************************************************/
Bigfoot::AssetTypeID UnPack(const Flat::Bigfoot::AssetTypeID& p_flatAssetTypeID)
{
return Bigfoot::AssetTypeID {p_flatAssetTypeID.value()};
}
} // namespace flatbuffers

View File

@@ -13,8 +13,12 @@ namespace Bigfoot
BigFile::BigFile(const File& p_file) BigFile::BigFile(const File& p_file)
{ {
[[maybe_unused]] [[maybe_unused]]
const int result = sqlite3_open_v2(p_file.Absolute().Path().data(), &m_db, SQLITE_OPEN_READWRITE, nullptr); 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: {}", sqlite3_errmsg(m_db)); 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) void BigFile::Request::Bind(const std::uint32_t p_index, const float p_value)
{ {
ASSERT(EngineAssertHandler, 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 BigFile::Request::Column::operator float() const
{ {
return static_cast<float>(sqlite3_column_double(m_statement, m_index)); return static_cast<float>(sqlite3_column_double(m_statement, m_index));

View File

@@ -1,13 +1,11 @@
PRAGMA journal_mode=WAL; PRAGMA journal_mode=WAL;
PRAGMA foreign_keys = ON; PRAGMA foreign_keys = ON;
DROP TABLE IF EXISTS AssetHeader;
CREATE TABLE IF NOT EXISTS AssetHeader ( CREATE TABLE IF NOT EXISTS AssetHeader (
UUID BLOB NOT NULL UNIQUE, UUID BLOB NOT NULL UNIQUE,
Name TEXT NOT NULL UNIQUE, Name TEXT NOT NULL UNIQUE,
TypeID INTEGER NOT NULL, TypeID INTEGER NOT NULL,
TypeName TEXT NOT NULL, TypeName TEXT NOT NULL,
Version INTEGER NOT NULL,
CreateTime INTEGER NOT NULL DEFAULT(CAST(unixepoch('subsec') AS INTEGER) * 1000000), CreateTime INTEGER NOT NULL DEFAULT(CAST(unixepoch('subsec') AS INTEGER) * 1000000),
ModificationTime INTEGER NOT NULL DEFAULT(CAST(unixepoch('subsec') AS INTEGER) * 1000000), ModificationTime INTEGER NOT NULL DEFAULT(CAST(unixepoch('subsec') AS INTEGER) * 1000000),
@@ -23,7 +21,6 @@ BEGIN
WHERE UUID = NEW.UUID; WHERE UUID = NEW.UUID;
END; END;
DROP TABLE IF EXISTS Asset;
CREATE TABLE IF NOT EXISTS Asset ( CREATE TABLE IF NOT EXISTS Asset (
UUID BLOB NOT NULL UNIQUE, UUID BLOB NOT NULL UNIQUE,

View File

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

View File

@@ -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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/*********************************************************************
* \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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/*********************************************************************
* \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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native_include "Engine/Asset/AssetTypeID.hpp";
namespace Flat.Bigfoot;
struct AssetTypeID (native_type: "::Bigfoot::AssetTypeID")
{
value: ulong;
}

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/*********************************************************************
* \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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// automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETTYPEID_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSETTYPEID_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 "EASTL/unique_ptr.h"
#include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Flat {
namespace Bigfoot {
struct AssetTypeID;
inline const ::flatbuffers::TypeTable *AssetTypeIDTypeTable();
FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(8) AssetTypeID FLATBUFFERS_FINAL_CLASS {
private:
uint64_t value_;
public:
struct Traits;
static const ::flatbuffers::TypeTable *MiniReflectTypeTable() {
return AssetTypeIDTypeTable();
}
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Flat.Bigfoot.AssetTypeID";
}
AssetTypeID()
: value_(0) {
}
AssetTypeID(uint64_t _value)
: value_(::flatbuffers::EndianScalar(_value)) {
}
uint64_t value() const {
return ::flatbuffers::EndianScalar(value_);
}
};
FLATBUFFERS_STRUCT_END(AssetTypeID, 8);
struct AssetTypeID::Traits {
using type = AssetTypeID;
};
inline const ::flatbuffers::TypeTable *AssetTypeIDTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_ULONG, 0, -1 }
};
static const int64_t values[] = { 0, 8 };
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_STRUCT, 1, type_codes, nullptr, nullptr, values, nullptr
};
return &tt;
}
} // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSETTYPEID_FLAT_BIGFOOT_H_

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// 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_

View File

@@ -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;
}

View File

@@ -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_

View File

@@ -1,18 +0,0 @@
include "System/UUID/UUID.fbs";
include "System/Time/Time.fbs";
namespace Bigfoot.Flat;
table AssetHeader
{
uuid: UUID (native_inline);
name: string;
type_id: ulong;
type_name: string;
version: uint;
create_time: Time (native_inline);
modification_time: Time (native_inline);
}
root_type AssetHeader;

View File

@@ -1,289 +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 "System/UUID/FlatUUID.hpp"
#include "System/Time/FlatTime.hpp"
#include "System/Time/Time_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{};
uint64_t type_id = 0;
eastl::string type_name{};
uint32_t version = 0;
::Bigfoot::Time create_time{};
::Bigfoot::Time modification_time{};
};
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,
VT_CREATE_TIME = 14,
VT_MODIFICATION_TIME = 16
};
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);
}
uint64_t type_id() const {
return GetField<uint64_t>(VT_TYPE_ID, 0);
}
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);
}
const Bigfoot::Flat::Time *create_time() const {
return GetStruct<const Bigfoot::Flat::Time *>(VT_CREATE_TIME);
}
const Bigfoot::Flat::Time *modification_time() const {
return GetStruct<const Bigfoot::Flat::Time *>(VT_MODIFICATION_TIME);
}
template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) &&
VerifyField<Bigfoot::Flat::UUID>(verifier, VT_UUID, 1) &&
VerifyOffset(verifier, VT_NAME) &&
verifier.VerifyString(name()) &&
VerifyField<uint64_t>(verifier, VT_TYPE_ID, 8) &&
VerifyOffset(verifier, VT_TYPE_NAME) &&
verifier.VerifyString(type_name()) &&
VerifyField<uint32_t>(verifier, VT_VERSION, 4) &&
VerifyField<Bigfoot::Flat::Time>(verifier, VT_CREATE_TIME, 8) &&
VerifyField<Bigfoot::Flat::Time>(verifier, VT_MODIFICATION_TIME, 8) &&
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(uint64_t type_id) {
fbb_.AddElement<uint64_t>(AssetHeader::VT_TYPE_ID, type_id, 0);
}
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);
}
void add_create_time(const Bigfoot::Flat::Time *create_time) {
fbb_.AddStruct(AssetHeader::VT_CREATE_TIME, create_time);
}
void add_modification_time(const Bigfoot::Flat::Time *modification_time) {
fbb_.AddStruct(AssetHeader::VT_MODIFICATION_TIME, modification_time);
}
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);
return o;
}
};
inline ::flatbuffers::Offset<AssetHeader> CreateAssetHeader(
::flatbuffers::FlatBufferBuilder &_fbb,
const Bigfoot::Flat::UUID *uuid = nullptr,
::flatbuffers::Offset<::flatbuffers::String> name = 0,
uint64_t type_id = 0,
::flatbuffers::Offset<::flatbuffers::String> type_name = 0,
uint32_t version = 0,
const Bigfoot::Flat::Time *create_time = nullptr,
const Bigfoot::Flat::Time *modification_time = nullptr) {
AssetHeaderBuilder builder_(_fbb);
builder_.add_type_id(type_id);
builder_.add_modification_time(modification_time);
builder_.add_create_time(create_time);
builder_.add_version(version);
builder_.add_type_name(type_name);
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(); _o->type_id = _e; }
{ auto _e = type_name(); if (_e) _o->type_name = eastl::string(_e->c_str(), _e->size()); }
{ auto _e = version(); _o->version = _e; }
{ auto _e = create_time(); if (_e) _o->create_time = ::flatbuffers::UnPack(*_e); }
{ auto _e = modification_time(); if (_e) _o->modification_time = ::flatbuffers::UnPack(*_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 = _o->name.empty() ? _fbb.CreateSharedString("") : _fbb.CreateString(_o->name);
auto _type_id = _o->type_id;
auto _type_name = _o->type_name.empty() ? _fbb.CreateSharedString("") : _fbb.CreateString(_o->type_name);
auto _version = _o->version;
auto _create_time = ::flatbuffers::Pack(_o->create_time);
auto _modification_time = ::flatbuffers::Pack(_o->modification_time);
return Bigfoot::Flat::CreateAssetHeader(
_fbb,
&_uuid,
_name,
_type_id,
_type_name,
_version,
&_create_time,
&_modification_time);
}
inline const ::flatbuffers::TypeTable *AssetHeaderTypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_STRING, 0, -1 },
{ ::flatbuffers::ET_ULONG, 0, -1 },
{ ::flatbuffers::ET_STRING, 0, -1 },
{ ::flatbuffers::ET_UINT, 0, -1 },
{ ::flatbuffers::ET_SEQUENCE, 0, 1 },
{ ::flatbuffers::ET_SEQUENCE, 0, 1 }
};
static const ::flatbuffers::TypeFunction type_refs[] = {
Bigfoot::Flat::UUIDTypeTable,
Bigfoot::Flat::TimeTypeTable
};
static const char * const names[] = {
"uuid",
"name",
"type_id",
"type_name",
"version",
"create_time",
"modification_time"
};
static const ::flatbuffers::TypeTable tt = {
::flatbuffers::ST_TABLE, 7, 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

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

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

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

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@@ -2,8 +2,6 @@ get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}) project(${PackageName})
set(PublicDependencies set(PublicDependencies
$<$<CONFIG:Debug,RelWithDebInfo>:quill::quill>
mimalloc
stduuid::stduuid) stduuid::stduuid)
set(PrivateDependencies) set(PrivateDependencies)
set(BigfootPublicDependencies set(BigfootPublicDependencies
@@ -18,11 +16,3 @@ bigfoot_create_package_lib(
"") "")
bigfoot_create_logger() 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)

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

View File

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

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

View File

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

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@@ -1,18 +0,0 @@
/*********************************************************************
* \file FlatTime.hpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_FLATTIME_HPP
#define BIGFOOT_SYSTEM_FLATTIME_HPP
#include <System/Time/Time.hpp>
#include <System/Time/Time_generated.hpp>
namespace flatbuffers
{
Bigfoot::Flat::Time Pack(const Bigfoot::Time& p_time);
Bigfoot::Time UnPack(const Bigfoot::Flat::Time& p_flatTime);
} // namespace flatbuffers
#endif

View File

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

View File

@@ -4,8 +4,8 @@
* \author Romain BOULLARD * \author Romain BOULLARD
* \date December 2025 * \date December 2025
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_SYSTEM_TIME_HPP #ifndef BIGFOOT_SYSTEM_TIME_TIME_HPP
#define BIGFOOT_SYSTEM_TIME_HPP #define BIGFOOT_SYSTEM_TIME_TIME_HPP
#include <chrono> #include <chrono>
#include <compare> #include <compare>
#include <cstdint> #include <cstdint>
@@ -21,28 +21,28 @@ class Time
Time(Time&& p_time) = default; Time(Time&& p_time) = default;
[[nodiscard]] [[nodiscard]]
std::uint32_t Year() const; std::uint32_t GetYear() const;
[[nodiscard]] [[nodiscard]]
std::uint32_t Month() const; std::uint32_t GetMonth() const;
[[nodiscard]] [[nodiscard]]
std::uint32_t Day() const; std::uint32_t GetDay() const;
[[nodiscard]] [[nodiscard]]
std::uint32_t Hour() const; std::uint32_t GetHour() const;
[[nodiscard]] [[nodiscard]]
std::uint32_t Minute() const; std::uint32_t GetMinute() const;
[[nodiscard]] [[nodiscard]]
std::uint32_t Second() const; std::uint32_t GetSecond() const;
[[nodiscard]] [[nodiscard]]
std::uint32_t Microsecond() const; std::uint32_t GetMicrosecond() const;
[[nodiscard]] [[nodiscard]]
std::uint64_t Epoch() const; std::uint64_t GetEpoch() const;
~Time() = default; ~Time() = default;
@@ -65,4 +65,22 @@ class Time
}; };
} // namespace Bigfoot } // namespace Bigfoot
/****************************************************************************************/
namespace Flat
{
namespace Bigfoot
{
struct Time;
}
} // namespace Flat
/****************************************************************************************/
namespace flatbuffers
{
Flat::Bigfoot::Time Pack(const Bigfoot::Time& p_time);
Bigfoot::Time UnPack(const Flat::Bigfoot::Time& p_flatTime);
} // namespace flatbuffers
#endif #endif

View File

@@ -1,8 +1,8 @@
// automatically generated by the FlatBuffers compiler, do not modify // automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_TIME_BIGFOOT_FLAT_H_ #ifndef FLATBUFFERS_GENERATED_TIME_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_TIME_BIGFOOT_FLAT_H_ #define FLATBUFFERS_GENERATED_TIME_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h" #include "flatbuffers/flatbuffers.h"
@@ -13,13 +13,14 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19, FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included"); "Non-compatible flatbuffers version included");
#include "System/Time/FlatTime.hpp" #include "System/Time/Time.hpp"
#include "EASTL/unique_ptr.h" #include "EASTL/unique_ptr.h"
#include "EASTL/string.h" #include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat { namespace Flat {
namespace Bigfoot {
struct Time; struct Time;
@@ -35,7 +36,7 @@ FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(8) Time FLATBUFFERS_FINAL_CLASS {
return TimeTypeTable(); return TimeTypeTable();
} }
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() { static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.Time"; return "Flat.Bigfoot.Time";
} }
Time() Time()
: epoch_(0) { : epoch_(0) {
@@ -58,16 +59,13 @@ inline const ::flatbuffers::TypeTable *TimeTypeTable() {
{ ::flatbuffers::ET_ULONG, 0, -1 } { ::flatbuffers::ET_ULONG, 0, -1 }
}; };
static const int64_t values[] = { 0, 8 }; static const int64_t values[] = { 0, 8 };
static const char * const names[] = {
"epoch"
};
static const ::flatbuffers::TypeTable tt = { 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; return &tt;
} }
} // namespace Flat
} // namespace Bigfoot } // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_TIME_BIGFOOT_FLAT_H_ #endif // FLATBUFFERS_GENERATED_TIME_FLAT_BIGFOOT_H_

View File

@@ -1,18 +0,0 @@
/*********************************************************************
* \file FlatUUID.hpp
*
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#ifndef BIGFOOT_SYSTEM_FLATUUID_HPP
#define BIGFOOT_SYSTEM_FLATUUID_HPP
#include <System/UUID/UUID.hpp>
#include <System/UUID/UUID_generated.hpp>
namespace flatbuffers
{
Bigfoot::Flat::UUID Pack(const Bigfoot::UUID& p_uuid);
Bigfoot::UUID UnPack(const Bigfoot::Flat::UUID& p_flatUUID);
} // namespace flatbuffers
#endif

View File

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

View File

@@ -4,9 +4,8 @@
* \author Romain BOULLARD * \author Romain BOULLARD
* \date October 2025 * \date October 2025
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_SYSTEM_UUID_HPP #ifndef BIGFOOT_SYSTEM_UUID_UUID_HPP
#define BIGFOOT_SYSTEM_UUID_HPP #define BIGFOOT_SYSTEM_UUID_UUID_HPP
#include <uuid.h> #include <uuid.h>
namespace Bigfoot namespace Bigfoot
@@ -35,19 +34,31 @@ class UUID
UUID(const UUID& p_uuid) = default; UUID(const UUID& p_uuid) = default;
UUID(UUID&& p_uuid) noexcept = 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; ~UUID() = default;
operator std::span<const std::byte, UUID_BYTE_SIZE>() const;
operator std::string() const;
operator bool() const; operator bool() const;
UUID& operator=(const UUID& p_uuid) = default; UUID& operator=(const UUID& p_uuid) = default;
UUID& operator=(UUID&& p_uuid) noexcept = default; UUID& operator=(UUID&& p_uuid) noexcept = default;
[[nodiscard]] [[nodiscard]]
bool operator==(const UUID& p_uuid) const = default; bool operator==(const UUID& p_uuid) const;
[[nodiscard]]
bool operator!=(const UUID& p_uuid) const = default;
[[nodiscard]] [[nodiscard]]
bool operator<(const UUID& p_uuid) const; bool operator<(const UUID& p_uuid) const;
@@ -114,10 +125,12 @@ struct std::formatter<Bigfoot::UUID, char>
template<typename FormatContext> template<typename FormatContext>
auto format(const Bigfoot::UUID& p_uuid, FormatContext& ctx) const 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());
} }
}; };
/****************************************************************************************/
#if defined BIGFOOT_NOT_OPTIMIZED #if defined BIGFOOT_NOT_OPTIMIZED
#include <quill/DeferredFormatCodec.h> #include <quill/DeferredFormatCodec.h>
@@ -131,7 +144,7 @@ struct fmtquill::formatter<Bigfoot::UUID>
auto format(const Bigfoot::UUID& p_uuid, format_context& ctx) const 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());
} }
}; };
@@ -141,4 +154,22 @@ struct quill::Codec<Bigfoot::UUID>: quill::DeferredFormatCodec<Bigfoot::UUID>
}; };
#endif #endif
/****************************************************************************************/
namespace Flat
{
namespace Bigfoot
{
struct UUID;
}
} // namespace Flat
/****************************************************************************************/
namespace flatbuffers
{
Flat::Bigfoot::UUID Pack(const Bigfoot::UUID& p_uuid);
Bigfoot::UUID UnPack(const Flat::Bigfoot::UUID& p_flatUUID);
} // namespace flatbuffers
#endif #endif

View File

@@ -1,8 +1,8 @@
// automatically generated by the FlatBuffers compiler, do not modify // automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_UUID_BIGFOOT_FLAT_H_ #ifndef FLATBUFFERS_GENERATED_UUID_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_UUID_BIGFOOT_FLAT_H_ #define FLATBUFFERS_GENERATED_UUID_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h" #include "flatbuffers/flatbuffers.h"
@@ -13,13 +13,14 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19, FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included"); "Non-compatible flatbuffers version included");
#include "System/UUID/FlatUUID.hpp" #include "System/UUID/UUID.hpp"
#include "EASTL/unique_ptr.h" #include "EASTL/unique_ptr.h"
#include "EASTL/string.h" #include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat { namespace Flat {
namespace Bigfoot {
struct UUID; struct UUID;
@@ -35,7 +36,7 @@ FLATBUFFERS_MANUALLY_ALIGNED_STRUCT(1) UUID FLATBUFFERS_FINAL_CLASS {
return UUIDTypeTable(); return UUIDTypeTable();
} }
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() { static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.UUID"; return "Flat.Bigfoot.UUID";
} }
UUID() UUID()
: bytes_() { : bytes_() {
@@ -59,16 +60,13 @@ inline const ::flatbuffers::TypeTable *UUIDTypeTable() {
}; };
static const int16_t array_sizes[] = { 16, }; static const int16_t array_sizes[] = { 16, };
static const int64_t values[] = { 0, 16 }; static const int64_t values[] = { 0, 16 };
static const char * const names[] = {
"bytes"
};
static const ::flatbuffers::TypeTable tt = { 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; return &tt;
} }
} // namespace Flat
} // namespace Bigfoot } // namespace Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_UUID_BIGFOOT_FLAT_H_ #endif // FLATBUFFERS_GENERATED_UUID_FLAT_BIGFOOT_H_

View File

@@ -1,22 +0,0 @@
/*********************************************************************
* \file FlatTime.cpp
*
* \author Romain BOULLARD
* \date February 2026
*********************************************************************/
#include <System/Time/FlatTime.hpp>
namespace flatbuffers
{
Bigfoot::Flat::Time Pack(const Bigfoot::Time& p_time)
{
return Bigfoot::Flat::Time {p_time.Epoch()};
}
/****************************************************************************************/
Bigfoot::Time UnPack(const Bigfoot::Flat::Time& p_flatTime)
{
return Bigfoot::Time {p_flatTime.epoch()};
}
} // namespace flatbuffers

View File

@@ -7,6 +7,7 @@
#include <System/Time/Time.hpp> #include <System/Time/Time.hpp>
#include <System/SystemAssertHandler.hpp> #include <System/SystemAssertHandler.hpp>
#include <System/Time/Time_generated.hpp>
namespace 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; return m_timeInfo.tm_year + 1900;
} }
/****************************************************************************************/ /****************************************************************************************/
std::uint32_t Time::Month() const std::uint32_t Time::GetMonth() const
{ {
return m_timeInfo.tm_mon + 1; return m_timeInfo.tm_mon + 1;
} }
/****************************************************************************************/ /****************************************************************************************/
std::uint32_t Time::Day() const std::uint32_t Time::GetDay() const
{ {
return m_timeInfo.tm_mday; return m_timeInfo.tm_mday;
} }
/****************************************************************************************/ /****************************************************************************************/
std::uint32_t Time::Hour() const std::uint32_t Time::GetHour() const
{ {
return m_timeInfo.tm_hour; return m_timeInfo.tm_hour;
} }
/****************************************************************************************/ /****************************************************************************************/
std::uint32_t Time::Minute() const std::uint32_t Time::GetMinute() const
{ {
return m_timeInfo.tm_min; return m_timeInfo.tm_min;
} }
/****************************************************************************************/ /****************************************************************************************/
std::uint32_t Time::Second() const std::uint32_t Time::GetSecond() const
{ {
return m_timeInfo.tm_sec; 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()); return static_cast<std::uint32_t>(m_microseconds.count());
} }
/****************************************************************************************/ /****************************************************************************************/
std::uint64_t Time::Epoch() const std::uint64_t Time::GetEpoch() const
{ {
return m_epoch; return m_epoch;
} }
@@ -119,3 +120,20 @@ Time Time::Now()
return Time {epochInMicroSeconds}; return Time {epochInMicroSeconds};
} }
} // namespace Bigfoot } // namespace Bigfoot
/****************************************************************************************/
namespace flatbuffers
{
Flat::Bigfoot::Time Pack(const Bigfoot::Time& p_time)
{
return Flat::Bigfoot::Time {p_time.GetEpoch()};
}
/****************************************************************************************/
Bigfoot::Time UnPack(const Flat::Bigfoot::Time& p_flatTime)
{
return Bigfoot::Time {p_flatTime.epoch()};
}
} // namespace flatbuffers

View File

@@ -1,27 +0,0 @@
/*********************************************************************
* \file FlatUUID.cpp
*
* \author Romain BOULLARD
* \date December 2025
*********************************************************************/
#include <System/UUID/FlatUUID.hpp>
namespace flatbuffers
{
Bigfoot::Flat::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 {
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)
{
const std::span<const std::uint8_t, Bigfoot::UUID::UUID_BYTE_SIZE> bytesView {p_flatUUID.bytes()->data(),
p_flatUUID.bytes()->size()};
return Bigfoot::UUID {std::as_bytes(bytesView)};
}
} // namespace flatbuffers

View File

@@ -6,6 +6,8 @@
*********************************************************************/ *********************************************************************/
#include <System/UUID/UUID.hpp> #include <System/UUID/UUID.hpp>
#include <System/UUID/UUID_generated.hpp>
namespace Bigfoot namespace Bigfoot
{ {
UUID UUID::NULL_UUID {"00000000-0000-0000-0000-000000000000"}; 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(); return m_uuid.as_bytes();
} }
/****************************************************************************************/ /****************************************************************************************/
UUID::operator std::string() const std::string UUID::ToString() const
{ {
return uuids::to_string(m_uuid); return uuids::to_string(m_uuid);
} }
@@ -60,6 +62,11 @@ UUID::operator bool() const
return *this != NULL_UUID; 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 bool UUID::operator<(const UUID& p_uuid) const
@@ -85,3 +92,25 @@ uuids::uuid_random_generator UUID::GetUUIDGenerator()
return uuids::uuid_random_generator {ms_randomGenerator}; return uuids::uuid_random_generator {ms_randomGenerator};
} }
} // namespace Bigfoot } // namespace Bigfoot
/****************************************************************************************/
namespace flatbuffers
{
Flat::Bigfoot::UUID Pack(const Bigfoot::UUID& p_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 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()};
return Bigfoot::UUID {std::as_bytes(bytesView)};
}
} // namespace flatbuffers

View File

@@ -2,7 +2,12 @@ get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}) project(${PackageName})
set(PublicDependencies set(PublicDependencies
$<$<CONFIG:Debug,RelWithDebInfo>:cpptrace::cpptrace>) $<$<CONFIG:Debug,RelWithDebInfo>:quill::quill>
$<IF:$<BOOL:${ASAN}>,mimalloc-asan,mimalloc-static>
unordered_dense::unordered_dense
EASTL::EASTL
flatbuffers::flatbuffers
rapidhash::rapidhash)
set(PrivateDependencies) set(PrivateDependencies)
set(BigfootPublicDependencies) set(BigfootPublicDependencies)
set(BigfootPrivateDependencies) set(BigfootPrivateDependencies)
@@ -12,4 +17,12 @@ bigfoot_create_package_lib(
"${PrivateLibraries}" "${PrivateLibraries}"
"${BigfootPublicDependencies}" "${BigfootPublicDependencies}"
"${BigfootPrivateDependencies}" "${BigfootPrivateDependencies}"
"") "")
set_source_files_properties(../Utils/MimallocImpl.cpp PROPERTIES SKIP_UNITY_BUILD_INCLUSION ON)
bigfoot_create_logger()
target_compile_definitions(${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 * \author Romain BOULLARD
* \date October 2025 * \date October 2025
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_SYSTEM_ASSERT_HPP #ifndef BIGFOOT_UTILS_ASSERT_HPP
#define BIGFOOT_SYSTEM_ASSERT_HPP #define BIGFOOT_UTILS_ASSERT_HPP
#include <System/Log/Log.hpp> #include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED #if defined BIGFOOT_NOT_OPTIMIZED
#include <cpptrace/cpptrace.hpp>
#include <source_location> #include <source_location>
#include <string> #include <string>
@@ -39,13 +37,7 @@
constexpr std::source_location location = std::source_location::current(); \ constexpr std::source_location location = std::source_location::current(); \
if (!(p_assert)) [[unlikely]] \ if (!(p_assert)) [[unlikely]] \
{ \ { \
constexpr auto stacktrace = []() -> std::string \ HANDLER::Handle(location, p_message __VA_OPT__(, ) __VA_ARGS__); \
{ \
const cpptrace::stacktrace stacktrace = cpptrace::generate_trace(); \
return stacktrace.to_string(); \
}; \
\
HANDLER::Handle(location, stacktrace(), p_message __VA_OPT__(, ) __VA_ARGS__); \
BREAK; \ BREAK; \
} \ } \
} while (false) } while (false)
@@ -56,13 +48,7 @@
constexpr std::source_location location = std::source_location::current(); \ constexpr std::source_location location = std::source_location::current(); \
if (!(p_assert)) [[unlikely]] \ if (!(p_assert)) [[unlikely]] \
{ \ { \
constexpr auto stacktrace = []() -> std::string \ HANDLER::Handle(location, p_message __VA_OPT__(, ) __VA_ARGS__); \
{ \
const cpptrace::stacktrace stacktrace = cpptrace::generate_trace(); \
return stacktrace.to_string(); \
}; \
\
HANDLER::Handle(location, stacktrace(), p_message __VA_OPT__(, ) __VA_ARGS__); \
BREAK; \ BREAK; \
} \ } \
} while (false) } while (false)
@@ -73,16 +59,10 @@
constexpr std::source_location location = std::source_location::current(); \ constexpr std::source_location location = std::source_location::current(); \
if (!(p_assert)) [[unlikely]] \ if (!(p_assert)) [[unlikely]] \
{ \ { \
constexpr auto stacktrace = []() -> std::string \ HANDLER::Handle(location, p_message __VA_OPT__(, ) __VA_ARGS__); \
{ \
const cpptrace::stacktrace stacktrace = cpptrace::generate_trace(); \
return stacktrace.to_string(); \
}; \
\
HANDLER::Handle(location, stacktrace(), p_message __VA_OPT__(, ) __VA_ARGS__); \
if (Bigfoot::Singleton<Bigfoot::Log>::HasInstance()) \ if (Bigfoot::Singleton<Bigfoot::Log>::HasInstance()) \
{ \ { \
Bigfoot::Singleton<Bigfoot::Log>::Instance().Flush(); \ Bigfoot::Singleton<Bigfoot::Log>::GetInstance().Flush(); \
} \ } \
BREAK; \ BREAK; \
std::abort(); \ 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 * \author Romain BOULLARD
* \date December 2025 * \date December 2025
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_SYSTEM_EASTLFORMATTERS_HPP #ifndef BIGFOOT_UTILS_LOG_EASTLFORMATTERS_HPP
#define BIGFOOT_SYSTEM_EASTLFORMATTERS_HPP #define BIGFOOT_UTILS_LOG_EASTLFORMATTERS_HPP
#include <Utils/TargetMacros.h> #include <Utils/TargetMacros.h>
#if defined(BIGFOOT_NOT_OPTIMIZED) #if defined(BIGFOOT_NOT_OPTIMIZED)
#include <quill/DeferredFormatCodec.h> #include <quill/DeferredFormatCodec.h>
#endif #endif
#include <format>
#include <EASTL/string.h> #include <EASTL/string.h>
#include <EASTL/string_view.h> #include <EASTL/string_view.h>
#include <format>
// STRING // STRING
template<> 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 * \author Romain BOULLARD
* \date October 2025 * \date May 2026
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_SYSTEM_LOG_HPP #ifndef BIGFOOT_UTILS_LOG_LOGMACROS_HPP
#define BIGFOOT_SYSTEM_LOG_HPP #define BIGFOOT_UTILS_LOG_LOGMACROS_HPP
#include <System/Log/EASTLFormatters.hpp> #include <Utils/Log/Log.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED
#include <System/Log/Log_generated.hpp>
#include <Utils/Singleton.hpp> #include <Utils/Singleton.hpp>
#include <EASTL/array.h> #if defined BIGFOOT_NOT_OPTIMIZED
#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
#define BIGFOOT_LOG_DEBUG(loggerName, fmt, ...) \ #define BIGFOOT_LOG_DEBUG(loggerName, fmt, ...) \
do \ 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__); \ QUILL_LOG_DEBUG(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
else \ 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__); \ fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
} while (0) } while (0)
@@ -111,13 +27,13 @@ class Log
#define BIGFOOT_LOG_TRACE(loggerName, fmt, ...) \ #define BIGFOOT_LOG_TRACE(loggerName, fmt, ...) \
do \ 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__); \ QUILL_LOG_TRACE_L3(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
else \ 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__); \ fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
} while (0) } while (0)
@@ -125,13 +41,13 @@ class Log
#define BIGFOOT_LOG_INFO(loggerName, fmt, ...) \ #define BIGFOOT_LOG_INFO(loggerName, fmt, ...) \
do \ 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__); \ QUILL_LOG_INFO(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
else \ 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__); \ fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
} while (0) } while (0)
@@ -139,13 +55,13 @@ class Log
#define BIGFOOT_LOG_WARN(loggerName, fmt, ...) \ #define BIGFOOT_LOG_WARN(loggerName, fmt, ...) \
do \ 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__); \ QUILL_LOG_WARNING(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
else \ 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__); \ fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
} while (0) } while (0)
@@ -153,13 +69,13 @@ class Log
#define BIGFOOT_LOG_ERROR(loggerName, fmt, ...) \ #define BIGFOOT_LOG_ERROR(loggerName, fmt, ...) \
do \ 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__); \ QUILL_LOG_ERROR(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
else \ 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__); \ fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
} while (0) } while (0)
@@ -167,13 +83,13 @@ class Log
#define BIGFOOT_LOG_FATAL(loggerName, fmt, ...) \ #define BIGFOOT_LOG_FATAL(loggerName, fmt, ...) \
do \ 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__); \ QUILL_LOG_CRITICAL(logger, fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
else \ 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__); \ fmt __VA_OPT__(, ) __VA_ARGS__); \
} \ } \
} while (0) } while (0)

View File

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

View File

@@ -6,7 +6,7 @@
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_@LOGGER_FILENAME_UPPER@_GENERATED_HPP #ifndef BIGFOOT_@LOGGER_FILENAME_UPPER@_GENERATED_HPP
#define 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 #if defined BIGFOOT_NOT_OPTIMIZED

View File

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

View File

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

View File

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

View File

@@ -7,6 +7,14 @@
#ifndef BIGFOOT_UTILS_TARGETMACROS_H #ifndef BIGFOOT_UTILS_TARGETMACROS_H
#define 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 #if defined BIGFOOT_OPTIMIZED
#define BIGFOOT_OPTIMIZED_ONLY(...) __VA_ARGS__ #define BIGFOOT_OPTIMIZED_ONLY(...) __VA_ARGS__
#define BIGFOOT_NOT_OPTIMIZED_ONLY(...) #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 // AUTO-GENERATED DO NOT TOUCH
/********************************************************************* /*********************************************************************
* \file SystemTestsLogger.generated.hpp * \file UtilsLogger.generated.hpp
* *
*********************************************************************/ *********************************************************************/
#ifndef BIGFOOT_SYSTEMTESTSLOGGER_GENERATED_HPP #ifndef BIGFOOT_UTILSLOGGER_GENERATED_HPP
#define BIGFOOT_SYSTEMTESTSLOGGER_GENERATED_HPP #define BIGFOOT_UTILSLOGGER_GENERATED_HPP
#include <System/Log/Log.hpp> #include <Utils/Log/LogMacros.hpp>
#if defined BIGFOOT_NOT_OPTIMIZED #if defined BIGFOOT_NOT_OPTIMIZED
@@ -15,7 +15,7 @@ namespace Bigfoot
/* /*
* Logger * Logger
*/ */
inline Log::LoggerInfo SYSTEMTESTS_LOGGER {"SYSTEMTESTS_LOGGER", Flat::LogLevel::Trace}; inline Log::LoggerInfo UTILS_LOGGER {"UTILS_LOGGER", Flat::LogLevel::Trace};
} // namespace Bigfoot } // namespace Bigfoot
#endif #endif
#endif #endif

View File

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

View File

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

View File

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

View File

@@ -8,8 +8,8 @@
namespace Bigfoot 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 } // namespace Bigfoot

View File

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

@@ -6,15 +6,13 @@
*********************************************************************/ *********************************************************************/
#include <Engine/BigFile/BigFile.hpp> #include <Engine/BigFile/BigFile.hpp>
#include <System/Log/Log.hpp>
#include <System/Time/Time.hpp> #include <System/Time/Time.hpp>
#include <System/UUID/UUID.hpp> #include <System/UUID/UUID.hpp>
#include <Utils/Singleton.hpp>
#include <Utils/TargetMacros.h>
#include <EngineTests/BigFileInfo_generated.hpp> #include <EngineTests/BigFileInfo_generated.hpp>
#include <ankerl/unordered_dense.h>
#include <flatbuffers/reflection.h>
#include <gtest/gtest.h> #include <gtest/gtest.h>
namespace Bigfoot namespace Bigfoot
@@ -25,7 +23,7 @@ class BigFileFixture: public ::testing::Test
void SetUp() override void SetUp() override
{ {
BigFile::Request deleteHeader {m_bigFile, "DELETE FROM AssetHeader"}; 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(); m_bigFile.BeginTransaction();
deleteHeader.Execute(); deleteHeader.Execute();
@@ -33,57 +31,76 @@ class BigFileFixture: public ::testing::Test
m_bigFile.CommitTransaction(); m_bigFile.CommitTransaction();
} }
BIGFOOT_NOT_OPTIMIZED_ONLY(Singleton<Log>::Lifetime m_loggerLifetime;)
BigFile m_bigFile {File {BIGFILE_ENGINETESTS_LOCATION}}; BigFile m_bigFile {File {BIGFILE_ENGINETESTS_LOCATION}};
}; };
/****************************************************************************************/ /****************************************************************************************/
TEST_F(BigFileFixture, Lol) TEST_F(BigFileFixture, BigFileManipulation)
{ {
UUID uuid; UUID uuid;
UUID uuid2; UUID uuid2;
UUID uuid3;
eastl::array<std::byte, 4> blob {std::byte {1}, std::byte {2}, std::byte {3}, std::byte {4}}; constexpr 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}}; constexpr 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> 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 { BigFile::Request assetHeaderRequest {
m_bigFile, m_bigFile,
"INSERT INTO AssetHeader (UUID, Name, TypeID, TypeName) VALUES(?, ?, ?, ?)"}; "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(2, "Test");
assetHeaderRequest.Bind(3, 42); assetHeaderRequest.Bind(3, typeIDRef);
assetHeaderRequest.Bind(4, "TypeTest"); assetHeaderRequest.Bind(4, "TypeTest");
BigFile::Request assetRequest {m_bigFile, "INSERT INTO Asset (UUID, Asset) VALUES(?, ?)"}; 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); assetRequest.Bind(2, blob);
BigFile::Request assetHeaderRequest2 { BigFile::Request assetHeaderRequest2 {
m_bigFile, m_bigFile,
"INSERT INTO AssetHeader (UUID, Name, TypeID, TypeName) VALUES(?, ?, ?, ?)"}; "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(2, "Test2");
assetHeaderRequest2.Bind(3, 42); assetHeaderRequest2.Bind(3, typeIDRef);
assetHeaderRequest2.Bind(4, "TypeTest"); assetHeaderRequest2.Bind(4, "TypeTest");
BigFile::Request assetRequest2 {m_bigFile, "INSERT INTO Asset (UUID, Asset) VALUES(?, ?)"}; 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); assetRequest2.Bind(2, blob3);
m_bigFile.BeginTransaction(); BigFile::Request assetHeaderRequest3 {
[[maybe_unused]] m_bigFile,
std::uint32_t assetHeaderChangedCount = assetHeaderRequest.Execute(); "INSERT INTO AssetHeader (UUID, Name, TypeID, TypeName) VALUES(?, ?, ?, ?)"};
[[maybe_unused]] assetHeaderRequest3.Bind(1, uuid3.ToBytes());
std::uint32_t assetChangedCount = assetRequest.Execute(); 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(); std::uint32_t assetHeaderChangedCount2 = assetHeaderRequest2.Execute();
[[maybe_unused]] EXPECT_EQ(assetHeaderChangedCount2, 1);
std::uint32_t assetChangedCount2 = assetRequest2.Execute(); 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(); m_bigFile.CommitTransaction();
} }
@@ -91,11 +108,11 @@ TEST_F(BigFileFixture, Lol)
{ {
BigFile::Request updateAsset {m_bigFile, "UPDATE Asset SET Asset = ? WHERE UUID = ?"}; BigFile::Request updateAsset {m_bigFile, "UPDATE Asset SET Asset = ? WHERE UUID = ?"};
updateAsset.Bind(1, blob2); 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(); m_bigFile.BeginTransaction();
[[maybe_unused]]
std::uint32_t updateAssetChangedCount = updateAsset.Execute(); std::uint32_t updateAssetChangedCount = updateAsset.Execute();
EXPECT_EQ(updateAssetChangedCount, 1);
m_bigFile.CommitTransaction(); m_bigFile.CommitTransaction();
} }
@@ -103,56 +120,28 @@ TEST_F(BigFileFixture, Lol)
BigFile::Request request { BigFile::Request request {
m_bigFile, m_bigFile,
"SELECT Name, TypeID, TypeName, CreateTime, ModificationTime FROM AssetHeader WHERE UUID = ?"}; "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(); const bool get = request.Step();
EXPECT_TRUE(get);
[[maybe_unused]]
const eastl::string name {static_cast<eastl::string_view>(request.Get(0))}; const eastl::string name {static_cast<eastl::string_view>(request.Get(0))};
[[maybe_unused]] EXPECT_STREQ(name.c_str(), "Test");
const std::uint32_t typeId = request.Get(1); const std::uint64_t typeID = static_cast<std::uint64_t>(request.Get(1));
[[maybe_unused]] EXPECT_EQ(typeID, typeIDRef);
const eastl::string typeName {static_cast<eastl::string_view>(request.Get(2))}; const eastl::string typeName {static_cast<eastl::string_view>(request.Get(2))};
[[maybe_unused]] EXPECT_STREQ(typeName.c_str(), "TypeTest");
const Time createTime = static_cast<std::int64_t>(request.Get(3));
[[maybe_unused]]
const Time modificationTime = static_cast<std::int64_t>(request.Get(4));
{ const Time createTime = static_cast<std::uint64_t>(request.Get(3));
[[maybe_unused]] const Time modificationTime = static_cast<std::uint64_t>(request.Get(4));
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();
}
{ EXPECT_GT(createTime.GetEpoch(), 0);
[[maybe_unused]] EXPECT_GT(modificationTime.GetEpoch(), 0);
const std::uint32_t year = modificationTime.Year();
[[maybe_unused]] EXPECT_GE(createTime, modificationTime);
const std::uint32_t month = modificationTime.Month();
[[maybe_unused]] EXPECT_GT(createTime.GetYear(), 2025);
const std::uint32_t day = modificationTime.Day(); EXPECT_GT(modificationTime.GetYear(), 2025);
[[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();
}
} }
} }
} // namespace Bigfoot } // namespace Bigfoot

View File

@@ -1,15 +1,7 @@
get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME) get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Tests) project(${PackageName}Tests)
set(BigfootDependencies
Engine
System
Utils)
bigfoot_create_bigfile("Tests/Bigfoot")
bigfoot_create_package_tests( bigfoot_create_package_tests(
"" "")
"${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 // automatically generated by the FlatBuffers compiler, do not modify
#ifndef FLATBUFFERS_GENERATED_ASSETA_BIGFOOT_FLAT_H_ #ifndef FLATBUFFERS_GENERATED_ASSETA_FLAT_BIGFOOT_H_
#define FLATBUFFERS_GENERATED_ASSETA_BIGFOOT_FLAT_H_ #define FLATBUFFERS_GENERATED_ASSETA_FLAT_BIGFOOT_H_
#include "flatbuffers/flatbuffers.h" #include "flatbuffers/flatbuffers.h"
@@ -13,15 +13,18 @@ static_assert(FLATBUFFERS_VERSION_MAJOR == 25 &&
FLATBUFFERS_VERSION_REVISION == 19, FLATBUFFERS_VERSION_REVISION == 19,
"Non-compatible flatbuffers version included"); "Non-compatible flatbuffers version included");
#include "System/UUID/FlatUUID.hpp" #include "Engine/Asset/Reference.hpp"
#include "System/Time/FlatTime.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/unique_ptr.h"
#include "EASTL/string.h" #include "EASTL/string.h"
#include "EASTL/vector.h"
namespace Bigfoot {
namespace Flat { namespace Flat {
namespace Bigfoot {
struct AssetA; struct AssetA;
struct AssetABuilder; struct AssetABuilder;
@@ -32,15 +35,10 @@ inline const ::flatbuffers::TypeTable *AssetATypeTable();
struct AssetAT : public ::flatbuffers::NativeTable { struct AssetAT : public ::flatbuffers::NativeTable {
typedef AssetA TableType; typedef AssetA TableType;
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() { 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 health = 0;
uint32_t hp = 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 { struct AssetA FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
@@ -51,29 +49,23 @@ struct AssetA FLATBUFFERS_FINAL_CLASS : private ::flatbuffers::Table {
return AssetATypeTable(); return AssetATypeTable();
} }
static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() { static FLATBUFFERS_CONSTEXPR_CPP11 const char *GetFullyQualifiedName() {
return "Bigfoot.Flat.AssetA"; return "Flat.Bigfoot.AssetA";
} }
enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE { enum FlatBuffersVTableOffset FLATBUFFERS_VTABLE_UNDERLYING_TYPE {
VT_ASSET_HEADER = 4, VT_HEALTH = 4,
VT_HEALTH = 6, VT_MANA = 6
VT_HP = 8
}; };
const Bigfoot::Flat::AssetHeader *asset_header() const {
return GetPointer<const Bigfoot::Flat::AssetHeader *>(VT_ASSET_HEADER);
}
uint32_t health() const { uint32_t health() const {
return GetField<uint32_t>(VT_HEALTH, 0); return GetField<uint32_t>(VT_HEALTH, 0);
} }
uint32_t hp() const { uint32_t mana() const {
return GetField<uint32_t>(VT_HP, 0); return GetField<uint32_t>(VT_MANA, 0);
} }
template <bool B = false> template <bool B = false>
bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const { bool Verify(::flatbuffers::VerifierTemplate<B> &verifier) const {
return VerifyTableStart(verifier) && return VerifyTableStart(verifier) &&
VerifyOffset(verifier, VT_ASSET_HEADER) &&
verifier.VerifyTable(asset_header()) &&
VerifyField<uint32_t>(verifier, VT_HEALTH, 4) && VerifyField<uint32_t>(verifier, VT_HEALTH, 4) &&
VerifyField<uint32_t>(verifier, VT_HP, 4) && VerifyField<uint32_t>(verifier, VT_MANA, 4) &&
verifier.EndTable(); verifier.EndTable();
} }
AssetAT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const; AssetAT *UnPack(const ::flatbuffers::resolver_function_t *_resolver = nullptr) const;
@@ -85,14 +77,11 @@ struct AssetABuilder {
typedef AssetA Table; typedef AssetA Table;
::flatbuffers::FlatBufferBuilder &fbb_; ::flatbuffers::FlatBufferBuilder &fbb_;
::flatbuffers::uoffset_t start_; ::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) { void add_health(uint32_t health) {
fbb_.AddElement<uint32_t>(AssetA::VT_HEALTH, health, 0); fbb_.AddElement<uint32_t>(AssetA::VT_HEALTH, health, 0);
} }
void add_hp(uint32_t hp) { void add_mana(uint32_t mana) {
fbb_.AddElement<uint32_t>(AssetA::VT_HP, hp, 0); fbb_.AddElement<uint32_t>(AssetA::VT_MANA, mana, 0);
} }
explicit AssetABuilder(::flatbuffers::FlatBufferBuilder &_fbb) explicit AssetABuilder(::flatbuffers::FlatBufferBuilder &_fbb)
: fbb_(_fbb) { : fbb_(_fbb) {
@@ -107,13 +96,11 @@ struct AssetABuilder {
inline ::flatbuffers::Offset<AssetA> CreateAssetA( inline ::flatbuffers::Offset<AssetA> CreateAssetA(
::flatbuffers::FlatBufferBuilder &_fbb, ::flatbuffers::FlatBufferBuilder &_fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetHeader> asset_header = 0,
uint32_t health = 0, uint32_t health = 0,
uint32_t hp = 0) { uint32_t mana = 0) {
AssetABuilder builder_(_fbb); AssetABuilder builder_(_fbb);
builder_.add_hp(hp); builder_.add_mana(mana);
builder_.add_health(health); builder_.add_health(health);
builder_.add_asset_header(asset_header);
return builder_.Finish(); return builder_.Finish();
} }
@@ -124,19 +111,6 @@ struct AssetA::Traits {
::flatbuffers::Offset<AssetA> CreateAssetA(::flatbuffers::FlatBufferBuilder &_fbb, const AssetAT *_o, const ::flatbuffers::rehasher_function_t *_rehasher = nullptr); ::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),
hp(o.hp) {
}
inline AssetAT &AssetAT::operator=(AssetAT o) FLATBUFFERS_NOEXCEPT {
std::swap(asset_header, o.asset_header);
std::swap(health, o.health);
std::swap(hp, o.hp);
return *this;
}
inline AssetAT *AssetA::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const { inline AssetAT *AssetA::UnPack(const ::flatbuffers::resolver_function_t *_resolver) const {
auto _o = std::make_unique<AssetAT>(); auto _o = std::make_unique<AssetAT>();
UnPackTo(_o.get(), _resolver); UnPackTo(_o.get(), _resolver);
@@ -146,9 +120,8 @@ inline AssetAT *AssetA::UnPack(const ::flatbuffers::resolver_function_t *_resolv
inline void AssetA::UnPackTo(AssetAT *_o, const ::flatbuffers::resolver_function_t *_resolver) const { inline void AssetA::UnPackTo(AssetAT *_o, const ::flatbuffers::resolver_function_t *_resolver) const {
(void)_o; (void)_o;
(void)_resolver; (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 = health(); _o->health = _e; }
{ auto _e = hp(); _o->hp = _e; } { auto _e = mana(); _o->mana = _e; }
} }
inline ::flatbuffers::Offset<AssetA> CreateAssetA(::flatbuffers::FlatBufferBuilder &_fbb, const AssetAT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) { inline ::flatbuffers::Offset<AssetA> CreateAssetA(::flatbuffers::FlatBufferBuilder &_fbb, const AssetAT *_o, const ::flatbuffers::rehasher_function_t *_rehasher) {
@@ -159,81 +132,74 @@ inline ::flatbuffers::Offset<AssetA> AssetA::Pack(::flatbuffers::FlatBufferBuild
(void)_rehasher; (void)_rehasher;
(void)_o; (void)_o;
struct _VectorArgs { ::flatbuffers::FlatBufferBuilder *__fbb; const AssetAT* __o; const ::flatbuffers::rehasher_function_t *__rehasher; } _va = { &_fbb, _o, _rehasher}; (void)_va; 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 _health = _o->health;
auto _hp = _o->hp; auto _mana = _o->mana;
return Bigfoot::Flat::CreateAssetA( return Flat::Bigfoot::CreateAssetA(
_fbb, _fbb,
_asset_header,
_health, _health,
_hp); _mana);
} }
inline const ::flatbuffers::TypeTable *AssetATypeTable() { inline const ::flatbuffers::TypeTable *AssetATypeTable() {
static const ::flatbuffers::TypeCode type_codes[] = { static const ::flatbuffers::TypeCode type_codes[] = {
{ ::flatbuffers::ET_SEQUENCE, 0, 0 },
{ ::flatbuffers::ET_UINT, 0, -1 }, { ::flatbuffers::ET_UINT, 0, -1 },
{ ::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",
"hp"
};
static const ::flatbuffers::TypeTable tt = { 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; return &tt;
} }
inline const Bigfoot::Flat::AssetA *GetAssetA(const void *buf) { inline const Flat::Bigfoot::AssetA *GetAssetA(const void *buf) {
return ::flatbuffers::GetRoot<Bigfoot::Flat::AssetA>(buf); return ::flatbuffers::GetRoot<Flat::Bigfoot::AssetA>(buf);
} }
inline const Bigfoot::Flat::AssetA *GetSizePrefixedAssetA(const void *buf) { inline const Flat::Bigfoot::AssetA *GetSizePrefixedAssetA(const void *buf) {
return ::flatbuffers::GetSizePrefixedRoot<Bigfoot::Flat::AssetA>(buf); return ::flatbuffers::GetSizePrefixedRoot<Flat::Bigfoot::AssetA>(buf);
} }
template <bool B = false> template <bool B = false>
inline bool VerifyAssetABuffer( inline bool VerifyAssetABuffer(
::flatbuffers::VerifierTemplate<B> &verifier) { ::flatbuffers::VerifierTemplate<B> &verifier) {
return verifier.template VerifyBuffer<Bigfoot::Flat::AssetA>(nullptr); return verifier.template VerifyBuffer<Flat::Bigfoot::AssetA>(nullptr);
} }
template <bool B = false> template <bool B = false>
inline bool VerifySizePrefixedAssetABuffer( inline bool VerifySizePrefixedAssetABuffer(
::flatbuffers::VerifierTemplate<B> &verifier) { ::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( inline void FinishAssetABuffer(
::flatbuffers::FlatBufferBuilder &fbb, ::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetA> root) { ::flatbuffers::Offset<Flat::Bigfoot::AssetA> root) {
fbb.Finish(root); fbb.Finish(root);
} }
inline void FinishSizePrefixedAssetABuffer( inline void FinishSizePrefixedAssetABuffer(
::flatbuffers::FlatBufferBuilder &fbb, ::flatbuffers::FlatBufferBuilder &fbb,
::flatbuffers::Offset<Bigfoot::Flat::AssetA> root) { ::flatbuffers::Offset<Flat::Bigfoot::AssetA> root) {
fbb.FinishSizePrefixed(root); fbb.FinishSizePrefixed(root);
} }
inline eastl::unique_ptr<Bigfoot::Flat::AssetAT> UnPackAssetA( inline eastl::unique_ptr<Flat::Bigfoot::AssetAT> UnPackAssetA(
const void *buf, const void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) { 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 void *buf,
const ::flatbuffers::resolver_function_t *res = nullptr) { 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 Bigfoot
} // namespace Flat
#endif // FLATBUFFERS_GENERATED_ASSETA_BIGFOOT_FLAT_H_ #endif // FLATBUFFERS_GENERATED_ASSETA_FLAT_BIGFOOT_H_

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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;

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/*********************************************************************
* \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

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/*********************************************************************
* \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

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// 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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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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/*********************************************************************
* \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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/*********************************************************************
* \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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// 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;
hp: uint;
}
root_type AssetA;

View File

@@ -1,14 +1,5 @@
get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME) get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Tests) project(${PackageName}Tests)
set(BigfootDependencies
System
Utils)
bigfoot_create_package_tests( bigfoot_create_package_tests(
"" "")
"${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) TEST_F(FileFixture, IsRelative_ShouldReturnFalseOnAbsoluteFile)
{ {
EXPECT_FALSE(m_file.Absolute().IsRelative()); EXPECT_FALSE(m_file.ToAbsolute().IsRelative());
} }
/****************************************************************************************/ /****************************************************************************************/
TEST_F(FileFixture, IsAbsolute_ShouldReturnTrueOnAbsoluteFile) TEST_F(FileFixture, IsAbsolute_ShouldReturnTrueOnAbsoluteFile)
{ {
EXPECT_TRUE(m_file.Absolute().IsAbsolute()); EXPECT_TRUE(m_file.ToAbsolute().IsAbsolute());
} }
TEST_F(FileFixture, IsAbsolute_ShouldReturnFalseOnRelativeFile) 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 } // 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 } // namespace Bigfoot

View File

@@ -7,7 +7,6 @@
#include <System/UUID/UUID.hpp> #include <System/UUID/UUID.hpp>
#include <ankerl/unordered_dense.h> #include <ankerl/unordered_dense.h>
#include <gtest/gtest.h> #include <gtest/gtest.h>
namespace Bigfoot namespace Bigfoot
@@ -44,13 +43,13 @@ class UUIDFixture: public ::testing::Test
TEST_F(UUIDFixture, DumpingRawAndConstructAnUUIDWithItShouldGiveTheSameUUID) 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}); EXPECT_EQ(m_a, UUID {raw});
raw = m_b; raw = m_b.ToBytes();
EXPECT_EQ(m_b, UUID {raw}); EXPECT_EQ(m_b, UUID {raw});
raw = m_d; raw = m_d.ToBytes();
EXPECT_EQ(m_d, UUID {raw}); EXPECT_EQ(m_d, UUID {raw});
} }
@@ -58,21 +57,21 @@ TEST_F(UUIDFixture, DumpingRawAndConstructAnUUIDWithItShouldGiveTheSameUUID)
TEST_F(UUIDFixture, ValidIDFromStringShouldBeEqualToString) 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) 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) 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; std::span<const std::byte, UUID::UUID_BYTE_SIZE> raw = m_raw;
for (std::uint32_t i = 0; i < UUID::UUID_BYTE_SIZE; ++i) 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) get_filename_component(PackageName ${CMAKE_CURRENT_SOURCE_DIR} NAME)
project(${PackageName}Tests) project(${PackageName}Tests)
set(BigfootDependencies
Utils)
bigfoot_create_package_tests( bigfoot_create_package_tests(
"" "")
"${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]] [[nodiscard]]
std::uint32_t Data() const std::uint32_t GetData() const
{ {
return m_data; return m_data;
} }
@@ -84,19 +84,19 @@ TEST_F(SingletonFixture, ConstructorAndDestructorShouldBeCalled)
{ {
::testing::InSequence seq; ::testing::InSequence seq;
EXPECT_CALL(*m_mock, Construct()); EXPECT_CALL(*m_mock, Construct()).Times(1);
EXPECT_CALL(*m_mock, Destruct()); EXPECT_CALL(*m_mock, Destruct()).Times(1);
Singleton<SingletonTest>::Lifetime singleton {42}; Singleton<SingletonTest>::Lifetime singleton {42};
} }
/****************************************************************************************/ /****************************************************************************************/
TEST_F(SingletonFixture, Instance_ShouldReturnTheInstance) TEST_F(SingletonFixture, GetInstance_ShouldReturnTheInstance)
{ {
Singleton<SingletonTest>::Lifetime singleton {42}; Singleton<SingletonTest>::Lifetime singleton {42};
EXPECT_EQ(Singleton<SingletonTest>::Instance().Data(), 42); EXPECT_EQ(Singleton<SingletonTest>::GetInstance().GetData(), 42);
} }
} // namespace Bigfoot } // 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(m_detailed.ToString().data(), "1.2.3");
EXPECT_STREQ(static_cast<std::string>(m_combined).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(m_detailed.Raw(), (1 << 16) | (2 << 8) | 3);
EXPECT_EQ(static_cast<std::uint32_t>(m_combined), (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_detailed.GetMajor(), 1);
EXPECT_EQ(m_combined.Major(), 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_detailed.GetMinor(), 2);
EXPECT_EQ(m_combined.Minor(), 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_detailed.GetPatch(), 3);
EXPECT_EQ(m_combined.Patch(), 3); EXPECT_EQ(m_combined.GetPatch(), 3);
} }
/****************************************************************************************/ /****************************************************************************************/

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