Darwin/aarch64: size_t assumptions
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@@ -65,13 +65,13 @@ static inline void ffi_clear_cache(void *start, void *end)
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}
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static void *
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get_x_addr (struct call_context *context, unsigned n)
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get_x_addr (struct call_context *context, size_t n)
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{
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return &context->x[n];
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}
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static void *
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get_s_addr (struct call_context *context, unsigned n)
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get_s_addr (struct call_context *context, size_t n)
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{
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#if defined __AARCH64EB__
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return &context->v[n].d[1].s[1];
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@@ -81,7 +81,7 @@ get_s_addr (struct call_context *context, unsigned n)
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}
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static void *
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get_d_addr (struct call_context *context, unsigned n)
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get_d_addr (struct call_context *context, size_t n)
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{
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#if defined __AARCH64EB__
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return &context->v[n].d[1];
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@@ -91,7 +91,7 @@ get_d_addr (struct call_context *context, unsigned n)
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}
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static void *
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get_v_addr (struct call_context *context, unsigned n)
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get_v_addr (struct call_context *context, size_t n)
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{
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return &context->v[n];
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}
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@@ -207,7 +207,7 @@ ffi_call_SYSV (unsigned (*)(struct call_context *context, unsigned char *,
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extended_cif *),
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struct call_context *context,
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extended_cif *,
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unsigned,
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size_t,
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void (*fn)(void));
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extern void
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@@ -388,14 +388,14 @@ is_v_register_candidate (ffi_type *ty)
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struct arg_state
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{
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unsigned ngrn; /* Next general-purpose register number. */
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unsigned nsrn; /* Next vector register number. */
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unsigned nsaa; /* Next stack offset. */
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size_t ngrn; /* Next general-purpose register number. */
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size_t nsrn; /* Next vector register number. */
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size_t nsaa; /* Next stack offset. */
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};
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/* Initialize a procedure call argument marshalling state. */
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static void
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arg_init (struct arg_state *state, unsigned call_frame_size)
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arg_init (struct arg_state *state, size_t call_frame_size)
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{
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state->ngrn = 0;
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state->nsrn = 0;
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@@ -405,7 +405,7 @@ arg_init (struct arg_state *state, unsigned call_frame_size)
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/* Return the number of available consecutive core argument
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registers. */
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static unsigned
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static size_t
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available_x (struct arg_state *state)
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{
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return N_X_ARG_REG - state->ngrn;
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@@ -414,7 +414,7 @@ available_x (struct arg_state *state)
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/* Return the number of available consecutive vector argument
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registers. */
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static unsigned
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static size_t
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available_v (struct arg_state *state)
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{
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return N_V_ARG_REG - state->nsrn;
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@@ -450,8 +450,8 @@ allocate_to_v (struct call_context *context, struct arg_state *state)
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/* Allocate an aligned slot on the stack and return a pointer to it. */
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static void *
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allocate_to_stack (struct arg_state *state, void *stack, unsigned alignment,
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unsigned size)
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allocate_to_stack (struct arg_state *state, void *stack, size_t alignment,
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size_t size)
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{
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void *allocation;
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@@ -757,7 +757,7 @@ ffi_call (ffi_cif *cif, void (*fn)(void), void *rvalue, void **avalue)
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case FFI_SYSV:
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{
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struct call_context context;
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unsigned stack_bytes;
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size_t stack_bytes;
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/* Figure out the total amount of stack space we need, the
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above call frame space needs to be 16 bytes aligned to
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@@ -809,7 +809,7 @@ ffi_call (ffi_cif *cif, void (*fn)(void), void *rvalue, void **avalue)
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}
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else if ((cif->rtype->size + 7) / 8 < N_X_ARG_REG)
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{
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unsigned size = ALIGN (cif->rtype->size, sizeof (UINT64));
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size_t size = ALIGN (cif->rtype->size, sizeof (UINT64));
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memcpy (rvalue, get_x_addr (&context, 0), size);
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}
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else
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@@ -1093,7 +1093,7 @@ ffi_closure_SYSV_inner (ffi_closure *closure, struct call_context *context,
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}
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else if ((cif->rtype->size + 7) / 8 < N_X_ARG_REG)
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{
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unsigned size = ALIGN (cif->rtype->size, sizeof (UINT64)) ;
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size_t size = ALIGN (cif->rtype->size, sizeof (UINT64)) ;
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memcpy (get_x_addr (context, 0), rvalue, size);
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}
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else
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@@ -1112,4 +1112,3 @@ ffi_closure_SYSV_inner (ffi_closure *closure, struct call_context *context,
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(closure->fun) (cif, rvalue, avalue, closure->user_data);
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}
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}
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@@ -63,7 +63,7 @@ SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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extended_cif *),
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struct call_context *context,
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extended_cif *,
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unsigned required_stack_size,
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size_t required_stack_size,
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void (*fn)(void));
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Therefore on entry we have:
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