Files
RedBear-OS/local/recipes/dev/gcc16/source/libffi/libffi.map.in
T
vasilito 48a924c561 recipes: regenerate Cargo.lock for the 0.3.2 fork versions
The libredox 0.1.19 / redox_syscall 0.9.1 bump left 45 recipe lockfiles
pinning libredox 0.1.18+rb0.3.1 and redox_syscall 0.9.0+rb0.3.1. The
cookbook builds with --locked, so every affected recipe died with

  error: cannot update the lock file .../Cargo.lock because --locked was
  passed to prevent this

which is what took out redox-driver-sys -- and with it every Red Bear
driver -- during the redbear-full build. Regenerating the fork lockfiles
was not enough; the recipes that consume the forks as path deps carry
their own. This is step 6 of local/docs/FORK-BUMP-PATCHING-POLICY.md
applied to the recipe layer.

Also drop the hardcoded GCC version in recipes/libs/libstdcxx-v3: the
literal include/c++/13.2.0 stopped resolving the moment the cross
toolchain moved to 16.1.0, leaving -I pointing at a directory that does
not exist. Now resolves the newest installed C++ header directory and
fails loudly if there is none. Same failure class as the hardcoded
13.2.0 in mk/prefix.mk.

Note: a few recipe-level Cargo.lock files (redox-driver-pci, cpufreqd,
redbear-acmd/-ecmd/-ftdi) sit beside a recipe.toml whose [source] is
path = "source", so they are not build inputs; redox-driver-pci's even
references a redox-driver-core/Cargo.toml that does not exist. They are
left alone rather than given meaning they do not have.

redox-driver-sys now cooks clean.
2026-08-03 14:15:38 +03:00

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#define LIBFFI_ASM
#define LIBFFI_H
#include <fficonfig.h>
#include <ffitarget.h>
/* These version numbers correspond to the libtool-version abi numbers,
not to the libffi release numbers. */
LIBFFI_BASE_8.0 {
global:
/* Exported data variables. */
ffi_type_void;
ffi_type_uint8;
ffi_type_sint8;
ffi_type_uint16;
ffi_type_sint16;
ffi_type_uint32;
ffi_type_sint32;
ffi_type_uint64;
ffi_type_sint64;
ffi_type_float;
ffi_type_double;
ffi_type_longdouble;
ffi_type_pointer;
/* Exported functions. */
ffi_call;
ffi_prep_cif;
ffi_prep_cif_var;
ffi_raw_call;
ffi_ptrarray_to_raw;
ffi_raw_to_ptrarray;
ffi_raw_size;
ffi_java_raw_call;
ffi_java_ptrarray_to_raw;
ffi_java_raw_to_ptrarray;
ffi_java_raw_size;
ffi_get_struct_offsets;
local:
*;
};
#ifdef FFI_TARGET_HAS_COMPLEX_TYPE
LIBFFI_COMPLEX_8.0 {
global:
/* Exported data variables. */
ffi_type_complex_float;
ffi_type_complex_double;
ffi_type_complex_longdouble;
} LIBFFI_BASE_8.0;
#endif
#if FFI_CLOSURES
LIBFFI_CLOSURE_8.0 {
global:
ffi_closure_alloc;
ffi_closure_free;
ffi_prep_closure;
ffi_prep_closure_loc;
ffi_prep_raw_closure;
ffi_prep_raw_closure_loc;
ffi_prep_java_raw_closure;
ffi_prep_java_raw_closure_loc;
} LIBFFI_BASE_8.0;
#endif
#if FFI_GO_CLOSURES
LIBFFI_GO_CLOSURE_8.0 {
global:
ffi_call_go;
ffi_prep_go_closure;
} LIBFFI_CLOSURE_8.0;
#endif