main-apidocs-libatomvm-src-module-dot-c.md
Include dependency graph for module.c:
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Defines
BEAM_TYPES_VERSION_V3 3
BEAM_TYPES_VERSION_V4 4
BEAM_TYPE_ATOM (1 << 0)
BEAM_TYPE_BITSTRING (1 << 1)
BEAM_TYPE_CONS (1 << 2)
BEAM_TYPE_FLOAT (1 << 3)
BEAM_TYPE_FUN (1 << 4)
BEAM_TYPE_INTEGER (1 << 5)
BEAM_TYPE_MAP (1 << 6)
BEAM_TYPE_NIL (1 << 7)
BEAM_TYPE_PID (1 << 8)
BEAM_TYPE_PORT (1 << 9)
BEAM_TYPE_REFERENCE (1 << 10)
BEAM_TYPE_TUPLE (1 << 11)
BEAM_TYPE_RECORD (1 << 12)
BEAM_TYPE_V3_HAS_LOWER_BOUND (1 << 12)
BEAM_TYPE_V3_HAS_UPPER_BOUND (1 << 13)
BEAM_TYPE_V3_HAS_UNIT (1 << 14)
BEAM_TYPE_V3_BITS_MASK 0xFFF
BEAM_TYPE_V4_HAS_LOWER_BOUND (1 << 13)
BEAM_TYPE_V4_HAS_UPPER_BOUND (1 << 14)
BEAM_TYPE_V4_HAS_UNIT (1 << 15)
BEAM_TYPE_V4_BITS_MASK 0x1FFF
LITT_UNCOMPRESSED_SIZE_OFFSET 8
LITT_HEADER_SIZE 12
CHECK_FREE_SPACE(space, error)
if ((size_t) ((pos + space) - data) > len) { \
fprintf(stderr, error);\
return;\
}
DEST_REGISTER(...)
DECODE_COMPACT_TERM(dest_term, decode_pc)
DECODE_EXTENDED_LIST_TAG(decode_pc)
{\
if ((*(decode_pc)++) !=
) {\
fprintf(stderr, "Unexpected operand, expected a list, got %x\n", (decode_pc)[-1]); \
();\
}\
}
DECODE_NIL(decode_pc)
{\
if ((*(decode_pc)++) !=
) {\
fprintf(stderr, "Unexpected operand, expected nil, got %x\n", (decode_pc)[-1]); \
();\
}\
}
DECODE_DEST_REGISTER(dreg, decode_pc)
{\
uint8_t first_byte = *(decode_pc)++;\
uint8_t reg_type = first_byte & 0xF;\
switch (reg_type) {\
case COMPACT_XREG:\
case COMPACT_YREG:\
break;\
case COMPACT_LARGE_XREG:\
case COMPACT_LARGE_YREG:\
(decode_pc)++;\
break;\
default:\
();\
}\
}
DECODE_FP_REGISTER(freg, decode_pc)
{\
if ((*(decode_pc)++) !=
) {\
fprintf(stderr, "Unexpected operand, expected an fp register, got %x\n", (decode_pc)[-1]); \
();\
}\
(freg, decode_pc);\
if (freg >
) {\
fprintf(stderr, "FP register index %u >
MAX_REG = %d\n", (unsigned) freg, MAX_REG);[AVM_ABORT](utils.h.html#libatomvmutils_8h_1a48e118cd23f648768f0faf4a32d303e6)
();\
}\
}
DECODE_VALUE32(val, decode_pc)
{\
uint8_t first_byte = *(decode_pc)++;\
switch (((first_byte) >> 3) & 0x3) {\
case 0:\
case 2:\
val = first_byte >> 4;\
break;\
\
case 1:\
val = ((first_byte & 0xE0) << 3) | *(decode_pc)++;\
break;\
\
case 3: {\
uint8_t sz = (first_byte >> 5) + 2;\
if (sz > 4) {\
fprintf(stderr, "Unexpected operand, expected a literal of at most 4 bytes\n"); \
();\
}\
val = 0;\
for (uint8_t vi = 0; vi < sz; vi++) {\
val <<= 8;\
val |= *(decode_pc)++;\
}\
break;\
}\
default:\
(); /* help gcc 8.4 */\
}\
}
DECODE_ATOM(atom, decode_pc)
{\
if (
UNLIKELY((*(decode_pc) &0x7) != COMPACT_ATOM
)) {\
fprintf(stderr, "Unexpected operand, expected an atom (%x)\n", *(decode_pc)); \
();\
}\
uint32_t atom_ix;\
(atom_ix, decode_pc);\
atom =
(mod, atom_ix);\
}
DECODE_LABEL(label, decode_pc)
{\
if (
UNLIKELY((*(decode_pc) &0x7) != COMPACT_LABEL
)) {\
fprintf(stderr, "Unexpected operand, expected a label (%x)\n", *(decode_pc)); \
();\
}\
(label, decode_pc);\
}
DECODE_ATOM_OR_LABEL(atom, label, decode_pc)
{\
if ((*(decode_pc) &0x7) !=
) {\
if (
UNLIKELY((*(decode_pc) &0x7) != COMPACT_LABEL
)) {\
fprintf(stderr, "Unexpected operand, expected an atom or label (%x)\n", *(decode_pc)); \
();\
}\
atom =
term_invalid_term();[DECODE_VALUE32](#libatomvmmodule_8c_1ae8e390228f9867d178bbfba2ed4bd8ba)
(label, decode_pc);\
} else {\
uint32_t atom_ix;\
(atom_ix, decode_pc);\
atom =
(mod, atom_ix);\
}\
}
DECODE_LITERAL(literal, decode_pc)
{\
if (
UNLIKELY((*(decode_pc) &0x7) != COMPACT_LITERAL
)) {\
fprintf(stderr, "Unexpected operand, expected a literal (%x)\n", *(decode_pc)); \
();\
}\
(literal, decode_pc);\
}
DECODE_XREG(reg, decode_pc)
{\
if (
UNLIKELY((*(decode_pc) &0x7) != COMPACT_XREG
)) {\
fprintf(stderr, "Unexpected operand, expected an xreg (%x)\n", *(decode_pc));\
();\
}\
(reg, decode_pc);\
if (reg >
) {\
fprintf(stderr, "Register index %u >
MAX_REG = %d\n", (unsigned) reg, MAX_REG); [AVM_ABORT](utils.h.html#libatomvmutils_8h_1a48e118cd23f648768f0faf4a32d303e6)
();\
}\
}
DECODE_YREG(reg, decode_pc)
{\
if (
UNLIKELY((*(decode_pc) &0x7) != COMPACT_YREG
)) {\
fprintf(stderr, "Unexpected operand, expected a yreg (%x)\n", *(decode_pc)); \
();\
}\
(reg, decode_pc);\
}
IS_EXTENDED_ALLOCATOR(decode_pc)(*decode_pc) == COMPACT_EXTENDED_ALLOCATION_LIST
DECODE_ALLOCATOR_LIST(need, decode_pc)if (IS_EXTENDED_ALLOCATOR
(decode_pc)) {\
need = 0;\
(decode_pc)++; /* skip list tag */\
uint32_t list_size;\
(list_size, (decode_pc));\
uint32_t allocator_tag;\
uint32_t allocator_size;\
for (uint32_t j = 0; j < list_size; j++) {\
DECODE_LITERAL(allocator_tag, (decode_pc));[DECODE_LITERAL](#libatomvmmodule_8c_1a076f79b50e4d159f6d1c8eaebc098819)
(allocator_size, (decode_pc));\
if (allocator_tag ==
COMPACT_EXTENDED_ALLOCATOR_LIST_TAG_FLOATS
) {\
allocator_size *=
;\
} else if (allocator_tag ==
COMPACT_EXTENDED_ALLOCATOR_LIST_TAG_FUNS
) { \
allocator_size *=
;\
}\
need += allocator_size;\
}\
} else {\
(need, decode_pc);\
}
X_OPCODE(op_name, num, lower_name, signature)signature,
X_OPCODE_HANDLER(op_name, num, lower_name, signature)signature,
X_OPCODE_REMOVED(op_name, num, lower_name)NULL,
X_OPCODE_SKIP(...)NULL,
OPCODE_SIGNATURES_LEN (sizeof(opcode_signatures) / sizeof(opcode_signatures[0]))
X_OPCODE(op_name, num, lower_name, signature)NULL,
X_OPCODE_HANDLER(op_name, num, lower_name, signature)handle_##lower_name##_opcode,
X_OPCODE_REMOVED(op_name, num, lower_name)NULL,
X_OPCODE_SKIP(...)NULL,
Typedefs
typedef void (*label_opcode_handler_t)(Module *mod, struct ListHead *line_refs, const uint8_t **current_pc, int arg_index, uint32_t u32_arg)
Functions
static bool module_are_literals_compressed(const uint8_t *litT)
static struct LiteralEntry *module_build_literals_table(const void *literalsBuf)
static void module_add_label(Module *mod, int index, const uint8_t *ptr)
static enum ModuleLoadResult module_build_imported_functions_table(Module *this_module, uint8_t *table_data, GlobalContext *glb)
static void module_parse_line_table(Module *mod, const uint8_t *data, size_t len)
static size_t decode_nbits_integer(Context *ctx, const uint8_t *encoded, term *out_term)
static void handle_fmove_opcode(Module *mod, struct ListHead *line_refs, const uint8_t **current_pc, int arg_index, uint32_t u32_arg)
static void handle_bs_match_opcode(Module *mod, struct ListHead *line_refs, const uint8_t **current_pc, int arg_index, uint32_t u32_arg)
static void handle_label_opcode(Module *mod, struct ListHead *line_refs, const uint8_t **current_pc, int arg_index, uint32_t u32_arg)
static void handle_line_opcode(Module *mod, struct ListHead *line_refs, const uint8_t **current_pc, int arg_index, uint32_t u32_arg)
static int parse_core_chunk(Module *mod, struct ListHead *line_refs)
static enum ModuleLoadResult module_populate_atoms_table(Module *this_module, uint8_t *table_data, GlobalContext *glb)
void module_get_imported_function_module_and_name(const Module *this_module, int index, AtomString *module_atom, AtomString *function_atom, GlobalContext *glb)
Gets imported function module and name.
Gets imported function module and name given its import table index.
Parameters:
this_module – the module on which the function will be searched.
index – the modules import table offset to begin searching.
module_atom – module name atom string.
function_atom – function name atom string.
glb – the global context.
void module_get_imported_function_module_and_name_atoms(const Module *this_module, int index, term *module_atom, term *function_atom)
Gets imported function module and name atom.
Gets imported function module and name given its import table index.
Parameters:
this_module – the module on which the function will be searched.
index – the modules import table offset to begin searching.
module_atom – module name atom
function_atom – function name atom
bool module_get_function_from_label(Module *this_module, int label, atom_index_t *function_name, int *arity)
size_t module_get_exported_functions_count(Module *this_module)
Count exported functions of a given module.
Get the number of exported functions. This function is used to compute the required heap size of the list of exported functions.
Parameters:
Returns:
the number of exported functions
uint32_t module_search_exported_function(Module *this_module, atom_index_t func_name, int func_arity)
Gets exported function index by searching it by function name and arity.
Gets exported function index by searching it by function name and arity
Parameters:
this_module – the module on which the function will be searched.
func_name – function name atom string.
func_arity – function arity.
term module_get_exported_functions(Module *this_module, Heap *heap)
Get the list of exported functions.
Create a list of exported functions of the form {FunctionName, Arity} To create this list, the heap must be grown by module_get_exported_functions_list_size terms.
Parameters:
this_module – the module to count exported functions of
heap – heap to allocate tuples
Returns:
a list of exported functions
Module *module_new_from_iff_binary(GlobalContext *global, const void *iff_binary, unsigned long size)
Parse a BEAM file and returns a Module.
Parse a BEAM file a returns a newly allocated and initialized Module struct.
Parameters:
global – the global context.
iff_binary – the IFF file data.
size – the size of the buffer containing the IFF data.
void module_destroy(Module *module)
term module_load_literal(Module *mod, int index, Context *ctx)
Gets a literal stored on the literal table of the specified module.
Loads and deserialize a term stored in the literal table and returns a term.
Parameters:
mod – The module that owns that is going to be loaded.
index – a valid literal index.
ctx – the target context.
term module_get_type_by_index(const Module *mod, int type_index, Context *ctx)
Gets type information for the given type index.
Loads and parses type information from the Type chunk and returns the type.
Parameters:
mod – The module that owns the type information.
type_index – a valid type index.
ctx – the target context.
ModuleNativeEntryPoint module_get_native_entry_point(Module *module, int exported_label)
Get the entry point to native code for a given exported label.
This function is used to call native code.
Parameters:
module – the module
exported_label – label to get the native entry point to
Returns:
the native entry point
static const struct ExportedFunction *module_create_function(Module *found_module, int exported_label)
const struct ExportedFunction *module_resolve_function0(Module *mod, int import_table_index, struct UnresolvedFunctionCall *unresolved, GlobalContext *glb)
static bool module_check_line_refs(Module *mod, const uint8_t **data, size_t len)
static bool module_check_locations(Module *mod, const uint8_t *data, size_t len)
static bool module_get_line_ref(Module *mod, uint16_t line_ref, uint32_t *out_line, uint16_t *out_location)
static bool module_get_location(Module *mod, uint16_t location_ix, size_t *filename_len, const uint8_t **filename)
void module_insert_line_ref_offset(Module *mod, struct ListHead *line_refs, uint32_t line_ref, int offset)
static bool module_find_line_ref(Module *mod, uint16_t line_ref, uint32_t *line, size_t *filename_len, const uint8_t **filename)
bool module_find_line(Module *mod, size_t offset, uint32_t *line, size_t *filename_len, const uint8_t **filename)
void module_cp_to_label_offset(term cp, Module **cp_mod, int *label, size_t *l_off, size_t *out_mod_offset, GlobalContext *global)
uint32_t module_label_code_offset(Module *mod, int label)
Get the offset of a given label from the beginning of the code, emulated or native.
Parameters:
mod – the module
label – the label to get the offset of
Returns:
the offset to the label code
void module_set_native_code(Module *mod, uint32_t labels_count, ModuleNativeEntryPoint entry_point)
set native code for given module, typically after it is jit-compiled
Parameters:
mod – the module to set native code for
labels_count – number of labels
entry_point – the native entry point
Variables
static const char *const opcode_signatures[] = {NULL,}
static label_opcode_handler_t const opcode_handlers[] = {NULL,}
struct LineRefOffset
Collaboration diagram for LineRefOffset:
digraph { graph [bgcolor="#00000000"] node [shape=rectangle style=filled fillcolor="#FFFFFF" font=Helvetica padding=2] edge [color="#1414CE"] "1" [label="LineRefOffset" tooltip="LineRefOffset" fillcolor="#BFBFBF"] "2" [label="ListHead" tooltip="ListHead"] "1" -> "2" [dir=forward tooltip="usage"] "2" -> "2" [dir=forward tooltip="usage"] }
Public Members