initial implementation of DWARF Expression state machine parsing and
it's usage for retrieve arguments/variables of function
This commit is contained in:
+147
-27
@@ -20,6 +20,73 @@
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extern SC_LogBase* logger;
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extern SC_LogBase* logger;
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bool dwarf_value::get_int(int64_t& v)
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{
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switch (size) {
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case 1:
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v = *((int8_t*)value);
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break;
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case 2:
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v = *((int16_t*)value);
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break;
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case 4:
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v = *((int32_t*)value);
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break;
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case 8:
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v = *((int64_t*)value);
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break;
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default:
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return false;
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break;
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}
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return true;
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}
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bool dwarf_value::get_uint(uint64_t& v)
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{
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if(type & DWARF_TYPE_SIGNED) {
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int64_t sig;
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if(!get_int(sig)) {
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return false;
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}
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v = llabs(sig);
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} else {
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return get_generic(v);
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}
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return true;
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}
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__dwarf_value& dwarf_value::operator+=(const __dwarf_value& rhs)
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{
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return *this;
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}
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bool dwarf_value::get_generic(uint64_t& v)
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{
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switch (size) {
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case 1:
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v = *((uint8_t*)value);
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break;
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case 2:
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v = *((uint16_t*)value);
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break;
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case 4:
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v = *((uint32_t*)value);
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break;
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case 8:
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v = *((uint64_t*)value);
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break;
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default:
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return false;
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break;
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}
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return true;
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}
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bool __pst_context::print(const char* fmt, ...)
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bool __pst_context::print(const char* fmt, ...)
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{
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{
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bool nret = true;
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bool nret = true;
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@@ -58,16 +125,17 @@ uint32_t __pst_context::print_expr_block (Dwarf_Op *exprs, int len, char* buff,
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if(map) {
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if(map) {
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if(map->op_num >= DW_OP_breg0 && map->op_num <= DW_OP_breg16) {
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if(map->op_num >= DW_OP_breg0 && map->op_num <= DW_OP_breg16) {
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int32_t off = decode_sleb128((unsigned char*)&exprs[i].number);
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int32_t off = decode_sleb128((unsigned char*)&exprs[i].number);
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int regno = map->op_num - DW_OP_breg0;
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unw_word_t ptr = 0;
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unw_word_t ptr = 0;
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unw_get_reg(&cursor, map->regno, &ptr);
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unw_get_reg(&cursor, regno, &ptr);
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//ptr += off;
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//ptr += off;
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offset += snprintf(buff + offset, buff_size - offset, "%s(*%s%s%d) reg_value: 0x%lX ", map->op_name, map->regname, off >=0 ? "+" : "", off, ptr);
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offset += snprintf(buff + offset, buff_size - offset, "%s(*%s%s%d) reg_value: 0x%lX ", map->op_name, unw_regname(regno), off >=0 ? "+" : "", off, ptr);
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} else if(map->op_num >= DW_OP_reg0 && map->op_num <= DW_OP_reg16) {
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} else if(map->op_num >= DW_OP_reg0 && map->op_num <= DW_OP_reg16) {
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unw_word_t value = 0;
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unw_word_t value = 0;
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unw_get_reg(&cursor, map->regno, &value);
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int regno = map->op_num - DW_OP_reg0;
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offset += snprintf(buff + offset, buff_size - offset, "%s(*%s) value: 0x%lX", map->op_name, map->regname, value);
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unw_get_reg(&cursor, regno, &value);
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offset += snprintf(buff + offset, buff_size - offset, "%s(*%s) value: 0x%lX", map->op_name, unw_regname(regno), value);
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} else if(map->op_num == DW_OP_GNU_entry_value) {
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} else if(map->op_num == DW_OP_GNU_entry_value) {
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uint32_t value = decode_uleb128((unsigned char*)&exprs[i].number);
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uint32_t value = decode_uleb128((unsigned char*)&exprs[i].number);
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offset += snprintf(buff + offset, buff_size - offset, "%s(%u, ", map->op_name, value);
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offset += snprintf(buff + offset, buff_size - offset, "%s(%u, ", map->op_name, value);
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@@ -76,7 +144,7 @@ uint32_t __pst_context::print_expr_block (Dwarf_Op *exprs, int len, char* buff,
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Dwarf_Op *expr;
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Dwarf_Op *expr;
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size_t exprlen;
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size_t exprlen;
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if (dwarf_getlocation(&attr_mem, &expr, &exprlen) == 0) {
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if (dwarf_getlocation(&attr_mem, &expr, &exprlen) == 0) {
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offset += print_expr_block (expr, exprlen, buff + offset, buff_size - offset, attr);
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offset += print_expr_block (expr, exprlen, buff + offset, buff_size - offset, &attr_mem);
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offset += snprintf(buff + offset, buff_size - offset, ") ");
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offset += snprintf(buff + offset, buff_size - offset, ") ");
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} else {
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} else {
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log(SEVERITY_ERROR, "Failed to get DW_OP_GNU_entry_value attr location");
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log(SEVERITY_ERROR, "Failed to get DW_OP_GNU_entry_value attr location");
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@@ -94,7 +162,7 @@ uint32_t __pst_context::print_expr_block (Dwarf_Op *exprs, int len, char* buff,
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int32_t off = decode_sleb128((unsigned char*)&exprs[i].number2);
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int32_t off = decode_sleb128((unsigned char*)&exprs[i].number2);
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unw_word_t ptr = 0;
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unw_word_t ptr = 0;
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unw_get_reg(&cursor, map->regno, &ptr);
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unw_get_reg(&cursor, regno, &ptr);
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//ptr += off;
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//ptr += off;
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offset += snprintf(buff + offset, buff_size - offset, "%s(%s%s%d) reg_value = 0x%lX", map->op_name, unw_regname(regno), off >= 0 ? "+" : "", off, ptr);
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offset += snprintf(buff + offset, buff_size - offset, "%s(%s%s%d) reg_value = 0x%lX", map->op_name, unw_regname(regno), off >= 0 ? "+" : "", off, ptr);
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@@ -121,6 +189,58 @@ uint32_t __pst_context::print_expr_block (Dwarf_Op *exprs, int len, char* buff,
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return offset;
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return offset;
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}
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}
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bool __pst_context::calc_expression(Dwarf_Op *exprs, int expr_len, Dwarf_Attribute* attr)
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{
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stack.clear();
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for (int i = 0; i < expr_len; i++) {
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const dwarf_op_map* map = find_op_map(exprs[i].atom);
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if(!map) {
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log(SEVERITY_ERROR, "Unknown operation type 0x%hhX(0x%lX, 0x%lX)", exprs[i].atom, exprs[i].number, exprs[i].number2);
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return false;
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}
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dwarf_value* v = stack.get();
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if(v && v->type == DWARF_TYPE_REGISTER_LOC) {
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// dereference register location
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unw_word_t value = 0;
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uint64_t regno = *((uint64_t*)v->value);
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if(unw_get_reg(&cursor, regno, &value)) {
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log(SEVERITY_ERROR, "Failed to ger value of register 0x%lX", regno);
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return false;
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}
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v->replace(&value, sizeof(value), DWARF_TYPE_GENERIC);
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}
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if(!map->operation(this, map, exprs[i].number, exprs[i].number2)) {
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log(SEVERITY_ERROR, "Failed to calculate %s(0x%lX, 0x%lX) operation", map->op_name, exprs[i].number, exprs[i].number2);
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return false;
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}
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}
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if(stack.Size()) {
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unw_word_t value = 0;
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dwarf_value* v = stack.get();
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v->get_uint(value);
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if(v->type & DWARF_TYPE_REGISTER_LOC) {
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// dereference register location
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uint64_t regno;
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v->get_uint(regno);
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if(unw_get_reg(&cursor, regno, &value)) {
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log(SEVERITY_ERROR, "Failed to get value of register 0x%lX", regno);
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return false;
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}
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}
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log(SEVERITY_INFO, "Found 0x%X value of location expression", value);
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return true;
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} else {
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log(SEVERITY_ERROR, "No value found for location expression");
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return false;
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}
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return true;
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}
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bool is_location_form(int form)
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bool is_location_form(int form)
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{
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{
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if (form == DW_FORM_block1 || form == DW_FORM_block2 || form == DW_FORM_block4 || form == DW_FORM_block ||
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if (form == DW_FORM_block1 || form == DW_FORM_block2 || form == DW_FORM_block4 || form == DW_FORM_block ||
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@@ -157,22 +277,22 @@ uint32_t decode_uleb128(uint8_t *uleb128)
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// Utility function to encode a ULEB128 value to a buffer. Returns
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// Utility function to encode a ULEB128 value to a buffer. Returns
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// the length in bytes of the encoded value.
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// the length in bytes of the encoded value.
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inline unsigned encodeULEB128(uint64_t Value, uint8_t *p, unsigned PadTo = 0)
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inline unsigned encode_uleb128(uint64_t value, uint8_t *p, unsigned PadTo = 0)
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{
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{
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uint8_t *orig_p = p;
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uint8_t *orig_p = p;
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unsigned Count = 0;
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unsigned count = 0;
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do {
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do {
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uint8_t Byte = Value & 0x7f;
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uint8_t Byte = value & 0x7f;
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Value >>= 7;
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value >>= 7;
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Count++;
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count++;
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if (Value != 0 || Count < PadTo)
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if (value != 0 || count < PadTo)
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Byte |= 0x80; // Mark this byte to show that more bytes will follow.
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Byte |= 0x80; // Mark this byte to show that more bytes will follow.
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*p++ = Byte;
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*p++ = Byte;
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} while (Value != 0);
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} while (value != 0);
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// Pad with 0x80 and emit a null byte at the end.
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// Pad with 0x80 and emit a null byte at the end.
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if (Count < PadTo) {
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if (count < PadTo) {
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for (; Count < PadTo - 1; ++Count)
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for (; count < PadTo - 1; ++count)
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*p++ = '\x80';
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*p++ = '\x80';
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*p++ = '\x00';
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*p++ = '\x00';
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}
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}
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@@ -182,27 +302,27 @@ inline unsigned encodeULEB128(uint64_t Value, uint8_t *p, unsigned PadTo = 0)
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// Utility function to encode a SLEB128 value to a buffer. Returns
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// Utility function to encode a SLEB128 value to a buffer. Returns
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// the length in bytes of the encoded value.
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// the length in bytes of the encoded value.
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inline unsigned encodeSLEB128(int64_t Value, uint8_t *p, unsigned PadTo = 0)
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inline unsigned encode_sleb128(int64_t value, uint8_t *p, unsigned PadTo = 0)
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{
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{
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uint8_t *orig_p = p;
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uint8_t *orig_p = p;
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unsigned Count = 0;
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unsigned count = 0;
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bool More;
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bool More;
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do {
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do {
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uint8_t Byte = Value & 0x7f;
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uint8_t Byte = value & 0x7f;
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// NOTE: this assumes that this signed shift is an arithmetic right shift.
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// NOTE: this assumes that this signed shift is an arithmetic right shift.
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Value >>= 7;
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value >>= 7;
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More = !((((Value == 0 ) && ((Byte & 0x40) == 0)) ||
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More = !((((value == 0 ) && ((Byte & 0x40) == 0)) ||
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((Value == -1) && ((Byte & 0x40) != 0))));
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((value == -1) && ((Byte & 0x40) != 0))));
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Count++;
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count++;
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if (More || Count < PadTo)
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if (More || count < PadTo)
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Byte |= 0x80; // Mark this byte to show that more bytes will follow.
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Byte |= 0x80; // Mark this byte to show that more bytes will follow.
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*p++ = Byte;
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*p++ = Byte;
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} while (More);
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} while (More);
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// Pad with 0x80 and emit a terminating byte at the end.
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// Pad with 0x80 and emit a terminating byte at the end.
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if (Count < PadTo) {
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if (count < PadTo) {
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uint8_t PadValue = Value < 0 ? 0x7f : 0x00;
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uint8_t PadValue = value < 0 ? 0x7f : 0x00;
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for (; Count < PadTo - 1; ++Count)
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for (; count < PadTo - 1; ++count)
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*p++ = (PadValue | 0x80);
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*p++ = (PadValue | 0x80);
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*p++ = PadValue;
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*p++ = PadValue;
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}
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}
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+22
-68
@@ -10,21 +10,22 @@
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typedef enum {
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typedef enum {
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DWARF_TYPE_INVALID = 0,
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DWARF_TYPE_INVALID = 0,
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DWARF_TYPE_UNSIGNED,
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DWARF_TYPE_SIGNED = 1,
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DWARF_TYPE_SIGNED,
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DWARF_TYPE_UNSIGNED = 2,
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DWARF_TYPE_ADDRESS,
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DWARF_TYPE_CONST = 4,
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DWARF_TYPE_GENERIC
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DWARF_TYPE_GENERIC = 8,
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DWARF_TYPE_CHAR = 16,
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DWARF_TYPE_FLOAT = 32,
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DWARF_TYPE_REGISTER_LOC = 64,
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DWARF_TYPE_MEMORY_LOC = 128,
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DWARF_TYPE_PIECE = 256,
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DWARF_TYPE_SHORT = 512,
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DWARF_TYPE_INT = 1024,
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DWARF_TYPE_LONG = 2048
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} dwarf_value_type;
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} dwarf_value_type;
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typedef struct __dwarf_value : public SC_ListNode {
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typedef struct __dwarf_value : public SC_ListNode {
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__dwarf_value(uint32_t s)
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__dwarf_value(char*v, uint32_t s, int t)
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{
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size = s;
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value = (char*)malloc(s);
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type = DWARF_TYPE_INVALID;
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}
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__dwarf_value(char*v, uint32_t s, dwarf_value_type t)
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{
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{
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size = s;
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size = s;
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value = (char*)malloc(s);
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value = (char*)malloc(s);
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||||||
@@ -32,13 +33,6 @@ typedef struct __dwarf_value : public SC_ListNode {
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type = t;
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type = t;
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}
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}
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__dwarf_value()
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{
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||||||
value = NULL;
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|
||||||
size = 0;
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|
||||||
type = DWARF_TYPE_INVALID;
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|
||||||
}
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||||||
|
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||||||
~__dwarf_value()
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~__dwarf_value()
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{
|
{
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||||||
if(value) {
|
if(value) {
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||||||
@@ -48,7 +42,7 @@ typedef struct __dwarf_value : public SC_ListNode {
|
|||||||
}
|
}
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}
|
}
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void replace(void* v, uint32_t s, dwarf_value_type t)
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void replace(void* v, uint32_t s, int t)
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{
|
{
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if(value) {
|
if(value) {
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free(value);
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free(value);
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@@ -62,55 +56,14 @@ typedef struct __dwarf_value : public SC_ListNode {
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type = t;
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type = t;
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}
|
}
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|
|
||||||
bool get_uint(uint64_t v)
|
bool get_uint(uint64_t& v);
|
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{
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bool get_int(int64_t& v);
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||||||
switch (size) {
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bool get_generic(uint64_t& v);
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case 1:
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__dwarf_value& operator+=(const __dwarf_value& rhs);
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v = (uint8_t)*((uint8_t*)value);
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break;
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case 2:
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|
||||||
v = (uint16_t)*((uint16_t*)value);
|
|
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break;
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case 4:
|
|
||||||
v = (uint32_t)*((uint32_t*)value);
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|
||||||
break;
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case 8:
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|
||||||
v = (uint64_t)*((uint64_t*)value);
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|
||||||
break;
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|
||||||
default:
|
|
||||||
return false;
|
|
||||||
break;
|
|
||||||
}
|
|
||||||
|
|
||||||
return true;
|
|
||||||
}
|
|
||||||
|
|
||||||
bool get_int(int64_t v)
|
|
||||||
{
|
|
||||||
switch (size) {
|
|
||||||
case 1:
|
|
||||||
v = (int8_t)*((int8_t*)value);
|
|
||||||
break;
|
|
||||||
case 2:
|
|
||||||
v = (int16_t)*((int16_t*)value);
|
|
||||||
break;
|
|
||||||
case 4:
|
|
||||||
v = (int32_t)*((int32_t*)value);
|
|
||||||
break;
|
|
||||||
case 8:
|
|
||||||
v = (int64_t)*((int64_t*)value);
|
|
||||||
break;
|
|
||||||
default:
|
|
||||||
return false;
|
|
||||||
break;
|
|
||||||
}
|
|
||||||
|
|
||||||
return true;
|
|
||||||
}
|
|
||||||
|
|
||||||
char* value;
|
char* value;
|
||||||
uint32_t size;
|
uint32_t size; // size in bytes except of 'DWARF_TYPE_PIECE', in such case in bits
|
||||||
dwarf_value_type type;
|
int type; // bitmask of DWARF_TYPE_XXX
|
||||||
} dwarf_value;
|
} dwarf_value;
|
||||||
|
|
||||||
typedef struct __dwarf_stack : public SC_ListHead {
|
typedef struct __dwarf_stack : public SC_ListHead {
|
||||||
@@ -121,7 +74,7 @@ typedef struct __dwarf_stack : public SC_ListHead {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
void push(void* v, uint32_t s, dwarf_value_type t) {
|
void push(void* v, uint32_t s, int t) {
|
||||||
dwarf_value* value = new dwarf_value((char*)v, s, t);
|
dwarf_value* value = new dwarf_value((char*)v, s, t);
|
||||||
InsertFirst(value);
|
InsertFirst(value);
|
||||||
}
|
}
|
||||||
@@ -160,6 +113,7 @@ typedef struct __pst_context {
|
|||||||
bool print(const char* fmt, ...);
|
bool print(const char* fmt, ...);
|
||||||
void log(SC_LogSeverity severity, const char*fmt, ...);
|
void log(SC_LogSeverity severity, const char*fmt, ...);
|
||||||
uint32_t print_expr_block(Dwarf_Op *exprs, int len, char* buff, uint32_t buff_size, Dwarf_Attribute* attr = 0);
|
uint32_t print_expr_block(Dwarf_Op *exprs, int len, char* buff, uint32_t buff_size, Dwarf_Attribute* attr = 0);
|
||||||
|
bool calc_expression(Dwarf_Op *exprs, int expr_len, Dwarf_Attribute* attr);
|
||||||
|
|
||||||
ucontext_t* hcontext; // context of signal handler
|
ucontext_t* hcontext; // context of signal handler
|
||||||
unw_context_t context; // context of stack trace
|
unw_context_t context; // context of stack trace
|
||||||
|
|||||||
+515
-197
@@ -6,12 +6,53 @@
|
|||||||
*/
|
*/
|
||||||
|
|
||||||
#include <dwarf.h>
|
#include <dwarf.h>
|
||||||
|
#include <inttypes.h>
|
||||||
|
|
||||||
#include "dwarf_operations.h"
|
#include "dwarf_operations.h"
|
||||||
#include "common.h"
|
#include "common.h"
|
||||||
|
|
||||||
|
dwarf_reg_map reg_map[] = {
|
||||||
|
// GP Registers
|
||||||
|
{0x0, "RAX", "DW_OP_reg0"},
|
||||||
|
{0x1, "RDX", "DW_OP_reg1"},
|
||||||
|
{0x2, "RCX", "DW_OP_reg2"},
|
||||||
|
{0x3, "RBX", "DW_OP_reg3"},
|
||||||
|
{0x4, "RSI", "DW_OP_reg4"},
|
||||||
|
{0x5, "RDI", "DW_OP_reg5"},
|
||||||
|
{0x6, "RBP", "DW_OP_reg6"},
|
||||||
|
{0x7, "RSP", "DW_OP_reg7"},
|
||||||
|
// Extended GP Registers
|
||||||
|
{0x8, "R8", "DW_OP_reg8"},
|
||||||
|
{0x9, "R9", "DW_OP_reg9"},
|
||||||
|
{0xA, "R10", "DW_OP_reg10"},
|
||||||
|
{0xB, "R11", "DW_OP_reg11"},
|
||||||
|
{0xC, "R12", "DW_OP_reg12"},
|
||||||
|
{0xD, "R13", "DW_OP_reg13"},
|
||||||
|
{0xE, "R14", "DW_OP_reg14"},
|
||||||
|
{0xF, "R15", "DW_OP_reg15"},
|
||||||
|
{0x10, "RIP", "DW_OP_reg16"}, // Return Address (RA) mapped to RIP
|
||||||
|
// SSE Vector Registers
|
||||||
|
{0x11, "XMM0", "DW_OP_reg17"},
|
||||||
|
{0x12, "XMM1", "DW_OP_reg18"},
|
||||||
|
{0x13, "XMM2", "DW_OP_reg19"},
|
||||||
|
{0x14, "XMM3", "DW_OP_reg20"},
|
||||||
|
{0x15, "XMM4", "DW_OP_reg21"},
|
||||||
|
{0x16, "XMM5", "DW_OP_reg22"},
|
||||||
|
{0x17, "XMM6", "DW_OP_reg23"},
|
||||||
|
{0x18, "XMM7", "DW_OP_reg24"},
|
||||||
|
{0x19, "XMM8", "DW_OP_reg25"},
|
||||||
|
{0x1a, "XMM9", "DW_OP_reg26"},
|
||||||
|
{0x1b, "XMM10", "DW_OP_reg27"},
|
||||||
|
{0x1c, "XMM11", "DW_OP_reg28"},
|
||||||
|
{0x1d, "XMM12", "DW_OP_reg29"},
|
||||||
|
{0x1e, "XMM13", "DW_OP_reg30"},
|
||||||
|
{0x1f, "XMM14", "DW_OP_reg31"},
|
||||||
|
};
|
||||||
|
|
||||||
|
// not implemented operations
|
||||||
bool dw_op_notimpl(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
bool dw_op_notimpl(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
{
|
{
|
||||||
ctx->log(SEVERITY_ERROR, "0x%lX => %s(0x%lX, 0x%lX) operation is not implemented", map->op_num, map->op_name, op1, op2);
|
ctx->log(SEVERITY_ERROR, "%s(0x%lX, 0x%lX) operation is not implemented", map->op_name, op1, op2);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -19,7 +60,7 @@ bool dw_op_addr(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf
|
|||||||
{
|
{
|
||||||
// The DW_OP_addr operation has a single operand that encodes a machine
|
// The DW_OP_addr operation has a single operand that encodes a machine
|
||||||
// address and whose size is the size of an address on the target machine.
|
// address and whose size is the size of an address on the target machine.
|
||||||
ctx->stack.push(&op1, sizeof(op1), DWARF_TYPE_ADDRESS);
|
ctx->stack.push(&op1, sizeof(op1), DWARF_TYPE_MEMORY_LOC | DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -42,25 +83,31 @@ bool dw_op_deref(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwar
|
|||||||
bool dw_op_const_x_u(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
bool dw_op_const_x_u(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
{
|
{
|
||||||
// DW_OP_const1u, DW_OP_const2u, DW_OP_const4u, DW_OP_const8u. The single operand of a DW_OP_const<n>u operation provides a 1, 2, 4, or 8-byte unsigned integer constant, respectively.
|
// DW_OP_const1u, DW_OP_const2u, DW_OP_const4u, DW_OP_const8u. The single operand of a DW_OP_const<n>u operation provides a 1, 2, 4, or 8-byte unsigned integer constant, respectively.
|
||||||
|
// These operations push a value with the generic type
|
||||||
uint8_t size = 0;
|
uint8_t size = 0;
|
||||||
|
dwarf_value_type type = DWARF_TYPE_UNSIGNED;
|
||||||
switch (map->op_num) {
|
switch (map->op_num) {
|
||||||
case DW_OP_const1u:
|
case DW_OP_const1u:
|
||||||
size = 1;
|
size = 1;
|
||||||
|
type = DWARF_TYPE_CHAR;
|
||||||
break;
|
break;
|
||||||
case DW_OP_const2u:
|
case DW_OP_const2u:
|
||||||
size = 2;
|
size = 2;
|
||||||
|
type = DWARF_TYPE_SHORT;
|
||||||
break;
|
break;
|
||||||
case DW_OP_const4u:
|
case DW_OP_const4u:
|
||||||
size = 4;
|
size = 4;
|
||||||
|
type = DWARF_TYPE_INT;
|
||||||
break;
|
break;
|
||||||
case DW_OP_const8u:
|
case DW_OP_const8u:
|
||||||
size = 1;
|
size = 8;
|
||||||
|
type = DWARF_TYPE_LONG;
|
||||||
break;
|
break;
|
||||||
default:
|
default:
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
ctx->stack.push(&op1, size, DWARF_TYPE_UNSIGNED);
|
ctx->stack.push(&op1, size, type | DWARF_TYPE_CONST | DWARF_TYPE_GENERIC);
|
||||||
|
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
@@ -68,25 +115,35 @@ bool dw_op_const_x_u(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1,
|
|||||||
bool dw_op_const_x_s(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
bool dw_op_const_x_s(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
{
|
{
|
||||||
// DW_OP_const1s, DW_OP_const2s, DW_OP_const4s, DW_OP_const8s. The single operand of a DW_OP_const<n>s operation provides a 1, 2, 4, or 8-byte signed integer constant, respectively.
|
// DW_OP_const1s, DW_OP_const2s, DW_OP_const4s, DW_OP_const8s. The single operand of a DW_OP_const<n>s operation provides a 1, 2, 4, or 8-byte signed integer constant, respectively.
|
||||||
uint8_t size = 0;
|
// These operations push a value with the generic type
|
||||||
|
uint8_t size; int64_t v;
|
||||||
|
dwarf_value_type type = DWARF_TYPE_SIGNED;
|
||||||
switch (map->op_num) {
|
switch (map->op_num) {
|
||||||
case DW_OP_const1u:
|
case DW_OP_const1s:
|
||||||
size = 1;
|
*((int8_t*)(&v)) = (int8_t)op1;
|
||||||
|
size = sizeof(int8_t);
|
||||||
|
type = DWARF_TYPE_CHAR;
|
||||||
break;
|
break;
|
||||||
case DW_OP_const2u:
|
case DW_OP_const2s:
|
||||||
size = 2;
|
*((int16_t*)(&v)) = (int16_t)op1;
|
||||||
|
size = sizeof(int16_t);
|
||||||
|
type = DWARF_TYPE_SHORT;
|
||||||
break;
|
break;
|
||||||
case DW_OP_const4u:
|
case DW_OP_const4s:
|
||||||
size = 4;
|
*((int32_t*)(&v)) = (int32_t)op1;
|
||||||
|
size = sizeof(int32_t);
|
||||||
|
type = DWARF_TYPE_INT;
|
||||||
break;
|
break;
|
||||||
case DW_OP_const8u:
|
case DW_OP_const8s:
|
||||||
size = 1;
|
v = (int64_t)op1;
|
||||||
|
size = sizeof(int64_t);
|
||||||
|
type = DWARF_TYPE_LONG;
|
||||||
break;
|
break;
|
||||||
default:
|
default:
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
ctx->stack.push(&op1, size, DWARF_TYPE_SIGNED);
|
ctx->stack.push(&op1, size, type | DWARF_TYPE_CONST | DWARF_TYPE_GENERIC);
|
||||||
|
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
@@ -95,7 +152,7 @@ bool dw_op_constu(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwa
|
|||||||
{
|
{
|
||||||
// The single operand of the DW_OP_constu operation provides an unsigned LEB128 integer constant.
|
// The single operand of the DW_OP_constu operation provides an unsigned LEB128 integer constant.
|
||||||
uint64_t value = decode_uleb128((unsigned char*)&op1);
|
uint64_t value = decode_uleb128((unsigned char*)&op1);
|
||||||
ctx->stack.push(&value, sizeof(value), DWARF_TYPE_UNSIGNED);
|
ctx->stack.push(&value, sizeof(value), DWARF_TYPE_LONG | DWARF_TYPE_UNSIGNED | DWARF_TYPE_CONST | DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -103,7 +160,7 @@ bool dw_op_consts(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwa
|
|||||||
{
|
{
|
||||||
// The single operand of the DW_OP_consts operation provides a signed LEB128 integer constant.
|
// The single operand of the DW_OP_consts operation provides a signed LEB128 integer constant.
|
||||||
uint64_t value = decode_sleb128((unsigned char*)&op1);
|
uint64_t value = decode_sleb128((unsigned char*)&op1);
|
||||||
ctx->stack.push(&value, sizeof(value), DWARF_TYPE_SIGNED);
|
ctx->stack.push(&value, sizeof(value), DWARF_TYPE_LONG | DWARF_TYPE_SIGNED | DWARF_TYPE_CONST | DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -163,6 +220,13 @@ bool dw_op_swap(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
if(value1) {
|
||||||
|
free(value1);
|
||||||
|
}
|
||||||
|
if(value2) {
|
||||||
|
free(value2);
|
||||||
|
}
|
||||||
|
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -183,6 +247,16 @@ bool dw_op_rot(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
if(value1) {
|
||||||
|
free(value1);
|
||||||
|
}
|
||||||
|
if(value2) {
|
||||||
|
free(value2);
|
||||||
|
}
|
||||||
|
if(value3) {
|
||||||
|
free(value3);
|
||||||
|
}
|
||||||
|
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -193,13 +267,13 @@ bool dw_op_abs(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
|
|
||||||
dwarf_value* value = ctx->stack.get();
|
dwarf_value* value = ctx->stack.get();
|
||||||
if(value) {
|
if(value) {
|
||||||
uint64_t v;
|
int64_t v;
|
||||||
if(!value->get_int(v)) {
|
if(!value->get_int(v)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong %d size of stack value", value->size);
|
ctx->log(SEVERITY_ERROR, "Wrong %d size of stack value", value->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
uint64_t res = llabs(v);
|
||||||
value->replace(&v, value->size, DWARF_TYPE_SIGNED);
|
value->replace(&res, value->size, DWARF_TYPE_UNSIGNED | DWARF_TYPE_GENERIC | DWARF_TYPE_LONG);
|
||||||
}
|
}
|
||||||
|
|
||||||
return false;
|
return false;
|
||||||
@@ -209,25 +283,26 @@ bool dw_op_and(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
{
|
{
|
||||||
// The DW_OP_and operation pops the top two stack values, performs a bitwise and operation on the two, and pushes the result.
|
// The DW_OP_and operation pops the top two stack values, performs a bitwise and operation on the two, and pushes the result.
|
||||||
|
|
||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.get(0);
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.get(1);
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%0x%X, %0x%X)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
uint64_t v1 = 0, v2 = 0;
|
uint64_t v1 = 0, v2 = 0;
|
||||||
if(!value1->get_uint(v1)) {
|
if(!value1->get_generic(v1)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
if(!value2->get_uint(v2)) {
|
if(!value2->get_generic(v2)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
uint64_t res = v1 & v2;
|
uint64_t res = v1 & v2;
|
||||||
ctx->stack.push(&res, value1->size, value1->type);
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, value1->size, DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -238,27 +313,85 @@ bool dw_op_div(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
{
|
{
|
||||||
// The DW_OP_div operation pops the top two stack values, divides the former second entry by the former top of the stack using signed division, and pushes the result.
|
// The DW_OP_div operation pops the top two stack values, divides the former second entry by the former top of the stack using signed division, and pushes the result.
|
||||||
|
|
||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.get(0);
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.get(1);
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%0x%X, %0x%X)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
|
||||||
}
|
|
||||||
int64_t v1 = 0, v2 = 0;
|
|
||||||
if(!value1->get_int(v1)) {
|
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
if(!value2->get_int(v2)) {
|
if(value2->type & DWARF_TYPE_SIGNED) {
|
||||||
|
int64_t sig2;
|
||||||
|
if(!value2->get_int(sig2)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
if(value1->type & DWARF_TYPE_SIGNED) {
|
||||||
int64_t res = v2 / v1;
|
int64_t sig1;
|
||||||
ctx->stack.push(&res, value1->size, value1->type);
|
if(!value1->get_int(sig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(sig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, sig1, sig2);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
uint64_t res = sig2 / sig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_UNSIGNED | DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
|
} else {
|
||||||
|
uint64_t unsig1;
|
||||||
|
if(!value1->get_uint(unsig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(unsig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, unsig1, sig2);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
int64_t res = sig2 / unsig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_SIGNED | DWARF_TYPE_GENERIC);
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
} else {
|
||||||
|
uint64_t unsig2;
|
||||||
|
if(!value2->get_uint(unsig2)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(value1->type & DWARF_TYPE_SIGNED) {
|
||||||
|
int64_t sig1;
|
||||||
|
if(!value1->get_int(sig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(sig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, sig1, sig1);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
int64_t res = unsig2 / sig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_SIGNED | DWARF_TYPE_GENERIC);
|
||||||
|
return true;
|
||||||
|
} else {
|
||||||
|
uint64_t unsig1;
|
||||||
|
if(!value1->get_uint(unsig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(unsig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, unsig1, unsig2);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
uint64_t res = unsig2 / unsig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_UNSIGNED | DWARF_TYPE_GENERIC);
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
return false;
|
return false;
|
||||||
@@ -268,26 +401,32 @@ bool dw_op_minus(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwar
|
|||||||
{
|
{
|
||||||
// The DW_OP_minus operation pops the top two stack values, subtracts the former top of the stack from the former second entry, and pushes the result.
|
// The DW_OP_minus operation pops the top two stack values, subtracts the former top of the stack from the former second entry, and pushes the result.
|
||||||
|
|
||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.get(0);
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.get(1);
|
||||||
|
uint64_t unres; int64_t sigres; void* res;
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
int64_t v1 = 0, v2 = 0;
|
// use arithmetic by modulo 1 plus
|
||||||
if(!value1->get_int(v1)) {
|
uint64_t unsig1; uint64_t unsig2;
|
||||||
|
if(!value1->get_uint(unsig1)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
if(!value2->get_uint(unsig2)) {
|
||||||
if(!value2->get_int(v2)) {
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value2->size);
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
int res_type = DWARF_TYPE_GENERIC;
|
||||||
|
if(value2->type & DWARF_TYPE_MEMORY_LOC) {
|
||||||
|
res_type |= DWARF_TYPE_MEMORY_LOC;
|
||||||
|
}
|
||||||
|
uint64_t res = unsig2 - unsig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), res_type);
|
||||||
|
|
||||||
int64_t res = v2 - v1;
|
|
||||||
ctx->stack.push(&res, value1->size, value1->type);
|
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -298,26 +437,32 @@ bool dw_op_mod(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
{
|
{
|
||||||
// The DW_OP_mod operation pops the top two stack values and pushes the result of the calculation: former second stack entry modulo the former top of the stack.
|
// The DW_OP_mod operation pops the top two stack values and pushes the result of the calculation: former second stack entry modulo the former top of the stack.
|
||||||
|
|
||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.get(0);
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.get(1);
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
int64_t v1 = 0, v2 = 0;
|
uint64_t v1 = 0, v2 = 0;
|
||||||
if(!value1->get_int(v1)) {
|
if(!value1->get_uint(v1)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
if(!value2->get_int(v2)) {
|
if(v1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero requested, aborting.");
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
|
||||||
|
if(!value2->get_uint(v2)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
int64_t res = v2 % v1;
|
uint64_t res = v2 % v1;
|
||||||
ctx->stack.push(&res, value1->size, value1->type);
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, value1->size, DWARF_TYPE_UNSIGNED | DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -328,27 +473,85 @@ bool dw_op_mul(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
{
|
{
|
||||||
// The DW_OP_mul operation pops the top two stack entries, multiplies them together, and pushes the result.
|
// The DW_OP_mul operation pops the top two stack entries, multiplies them together, and pushes the result.
|
||||||
|
|
||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.get(0);
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.get(1);
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%0x%X, %0x%X)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
|
||||||
}
|
|
||||||
int64_t v1 = 0, v2 = 0;
|
|
||||||
if(!value1->get_int(v1)) {
|
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
if(!value2->get_int(v2)) {
|
if(value2->type & DWARF_TYPE_SIGNED) {
|
||||||
|
int64_t sig2;
|
||||||
|
if(!value2->get_int(sig2)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
if(value1->type & DWARF_TYPE_SIGNED) {
|
||||||
int64_t res = v2 * v1;
|
int64_t sig1;
|
||||||
ctx->stack.push(&res, value1->size, value1->type);
|
if(!value1->get_int(sig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(sig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, sig1, sig2);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
uint64_t res = sig2 * sig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_UNSIGNED | DWARF_TYPE_GENERIC);
|
||||||
return true;
|
return true;
|
||||||
|
} else {
|
||||||
|
uint64_t unsig1;
|
||||||
|
if(!value1->get_uint(unsig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(unsig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, unsig1, sig2);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
int64_t res = sig2 * unsig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_SIGNED | DWARF_TYPE_GENERIC);
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
} else {
|
||||||
|
uint64_t unsig2;
|
||||||
|
if(!value2->get_uint(unsig2)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 2nd stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(value1->type & DWARF_TYPE_SIGNED) {
|
||||||
|
int64_t sig1;
|
||||||
|
if(!value1->get_int(sig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(sig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, sig1, sig1);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
int64_t res = unsig2 * sig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_SIGNED | DWARF_TYPE_GENERIC);
|
||||||
|
return true;
|
||||||
|
} else {
|
||||||
|
uint64_t unsig1;
|
||||||
|
if(!value1->get_uint(unsig1)) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Wrong size of 1st stack value for operation %s(%d)", map->op_name, value1->size);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
if(unsig1 == 0) {
|
||||||
|
ctx->log(SEVERITY_ERROR, "Division by zero for operation %s(0x%lX, 0x%lX)", map->op_name, unsig1, unsig2);
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
uint64_t res = unsig2 * unsig1;
|
||||||
|
ctx->stack.pop(); ctx->stack.pop();
|
||||||
|
ctx->stack.push(&res, sizeof(res), DWARF_TYPE_UNSIGNED | DWARF_TYPE_GENERIC);
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
return false;
|
return false;
|
||||||
@@ -402,8 +605,8 @@ bool dw_op_neg(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
|
|
||||||
bool dw_op_not(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
bool dw_op_not(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
{
|
{
|
||||||
// The DW_OP_neg operation pops the top stack entry, interprets it as a signed value and pushes its negation.
|
// The DW_OP_not operation pops the top stack entry, and pushes its bitwise complement.
|
||||||
// If the negation cannot be represented, the result is undefined.
|
|
||||||
|
|
||||||
dwarf_value* value = ctx->stack.get();
|
dwarf_value* value = ctx->stack.get();
|
||||||
if(value) {
|
if(value) {
|
||||||
@@ -412,7 +615,7 @@ bool dw_op_not(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_
|
|||||||
ctx->log(SEVERITY_ERROR, "Wrong size of stack value for operation %s(%d)", map->op_name, value->size);
|
ctx->log(SEVERITY_ERROR, "Wrong size of stack value for operation %s(%d)", map->op_name, value->size);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
v = !v;
|
v = ~v;
|
||||||
|
|
||||||
value->replace(&v, value->size, value->type);
|
value->replace(&v, value->size, value->type);
|
||||||
|
|
||||||
@@ -429,7 +632,7 @@ bool dw_op_or(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_W
|
|||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.pop();
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.pop();
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
@@ -459,7 +662,7 @@ bool dw_op_plus(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf
|
|||||||
dwarf_value* value1 = ctx->stack.pop();
|
dwarf_value* value1 = ctx->stack.pop();
|
||||||
dwarf_value* value2 = ctx->stack.pop();
|
dwarf_value* value2 = ctx->stack.pop();
|
||||||
if(value1 && value2) {
|
if(value1 && value2) {
|
||||||
if(value1->type != value2->type) {
|
if(!(value1->type & value2->type)) {
|
||||||
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
ctx->log(SEVERITY_ERROR, "Different types of two stack values for operation: %s(%d, %d)", map->op_name, value1->type, value2->type);
|
||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
@@ -521,137 +724,252 @@ bool dw_op_plus_uconst(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1
|
|||||||
return false;
|
return false;
|
||||||
}
|
}
|
||||||
|
|
||||||
dwarf_op_map dw_op[] = {
|
// Register location descriptions. From DWARF 5, section 2.6.1.1.3:
|
||||||
{DW_OP_addr, -1, 0, "DW_OP_addr", dw_op_addr},
|
// Register location descriptions describe an object (or a piece of an object) that resides in a register.
|
||||||
{DW_OP_deref, -1, 0, "DW_OP_deref", dw_op_deref},
|
// A register location description must stand alone as the entire description of an object or a piece of an object.
|
||||||
// Constant operations
|
bool dw_op_reg_x(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
{DW_OP_const1u, -1, 0, "DW_OP_const1u", dw_op_const_x_u},
|
{
|
||||||
{DW_OP_const1s, -1, 0, "DW_OP_const1s", dw_op_const_x_s},
|
|
||||||
{DW_OP_const2u, -1, 0, "DW_OP_const2u", dw_op_const_x_u},
|
|
||||||
{DW_OP_const2s, -1, 0, "DW_OP_const2s", dw_op_const_x_s},
|
|
||||||
{DW_OP_const4u, -1, 0, "DW_OP_const4u", dw_op_const_x_u},
|
|
||||||
{DW_OP_const4s, -1, 0, "DW_OP_const4s", dw_op_const_x_s},
|
|
||||||
{DW_OP_const8u, -1, 0, "DW_OP_const8u", dw_op_const_x_u},
|
|
||||||
{DW_OP_const8s, -1, 0, "DW_OP_const8s", dw_op_const_x_s},
|
|
||||||
{DW_OP_constu, -1, 0, "DW_OP_constu", dw_op_constu},
|
|
||||||
{DW_OP_consts, -1, 0, "DW_OP_consts", dw_op_consts},
|
|
||||||
// DWARF expression stack operations
|
|
||||||
{DW_OP_dup, -1, 0, "DW_OP_dup", dw_op_dup},
|
|
||||||
{DW_OP_drop, -1, 0, "DW_OP_drop", dw_op_drop},
|
|
||||||
{DW_OP_over, -1, 0, "DW_OP_over", dw_op_over},
|
|
||||||
{DW_OP_pick, -1, 0, "DW_OP_pick", dw_op_pick},
|
|
||||||
{DW_OP_swap, -1, 0, "DW_OP_swap", dw_op_swap},
|
|
||||||
{DW_OP_rot, -1, 0, "DW_OP_rot", dw_op_rot},
|
|
||||||
{DW_OP_xderef, -1, 0, "DW_OP_xderef", dw_op_notimpl},
|
|
||||||
// Arithmetic and Logical Operations
|
|
||||||
{DW_OP_abs, -1, 0, "DW_OP_abs", dw_op_abs},
|
|
||||||
{DW_OP_and, -1, 0, "DW_OP_and", dw_op_and},
|
|
||||||
{DW_OP_div, -1, 0, "DW_OP_div", dw_op_div},
|
|
||||||
{DW_OP_minus, -1, 0, "DW_OP_minus", dw_op_minus},
|
|
||||||
{DW_OP_mod, -1, 0, "DW_OP_mod", dw_op_mod},
|
|
||||||
{DW_OP_mul, -1, 0, "DW_OP_mul", dw_op_mul},
|
|
||||||
{DW_OP_neg, -1, 0, "DW_OP_neg", dw_op_neg},
|
|
||||||
{DW_OP_not, -1, 0, "DW_OP_not", dw_op_not},
|
|
||||||
{DW_OP_or, -1, 0, "DW_OP_or", dw_op_or},
|
|
||||||
{DW_OP_plus, -1, 0, "DW_OP_plus", dw_op_plus},
|
|
||||||
{DW_OP_plus_uconst, 0x0, 0, "DW_OP_plus_uconst", dw_op_plus_uconst},
|
|
||||||
// Register location descriptions. From DWARF 5, section 2.6.1.1.3:
|
|
||||||
// Register location descriptions describe an object (or a piece of an object) that resides in a register.
|
|
||||||
// A register location description must stand alone as the entire description of an object or a piece of an object.
|
|
||||||
|
|
||||||
// GP Registers
|
|
||||||
{0x50, 0x0, "RAX", "DW_OP_reg0"},
|
|
||||||
{0x51, 0x1, "RDX", "DW_OP_reg1"},
|
|
||||||
{0x52, 0x2, "RCX", "DW_OP_reg2"},
|
|
||||||
{0x53, 0x3, "RBX", "DW_OP_reg3"},
|
|
||||||
{0x54, 0x4, "RSI", "DW_OP_reg4"},
|
|
||||||
{0x55, 0x5, "RDI", "DW_OP_reg5"},
|
|
||||||
{0x56, 0x6, "RBP", "DW_OP_reg6"},
|
|
||||||
{0x57, 0x7, "RSP", "DW_OP_reg7"},
|
|
||||||
// Extended GP Registers
|
|
||||||
{0x58, 0x8, "R8", "DW_OP_reg8"},
|
|
||||||
{0x59, 0x9, "R9", "DW_OP_reg9"},
|
|
||||||
{0x5A, 0xA, "R10", "DW_OP_reg10"},
|
|
||||||
{0x5B, 0xB, "R11", "DW_OP_reg11"},
|
|
||||||
{0x5C, 0xC, "R12", "DW_OP_reg12"},
|
|
||||||
{0x5D, 0xD, "R13", "DW_OP_reg13"},
|
|
||||||
{0x5E, 0xE, "R14", "DW_OP_reg14"},
|
|
||||||
{0x5F, 0xF, "R15", "DW_OP_reg15"},
|
|
||||||
{0x60, 0x10, "RIP", "DW_OP_reg16"}, // Return Address (RA) mapped to RIP
|
|
||||||
// SSE Vector Registers
|
|
||||||
{0x61, 0x11, "XMM0", "DW_OP_reg17"},
|
|
||||||
{0x62, 0x12, "XMM1", "DW_OP_reg18"},
|
|
||||||
{0x63, 0x13, "XMM2", "DW_OP_reg19"},
|
|
||||||
{0x64, 0x14, "XMM3", "DW_OP_reg20"},
|
|
||||||
{0x65, 0x15, "XMM4", "DW_OP_reg21"},
|
|
||||||
{0x66, 0x16, "XMM5", "DW_OP_reg22"},
|
|
||||||
{0x67, 0x17, "XMM6", "DW_OP_reg23"},
|
|
||||||
{0x68, 0x18, "XMM7", "DW_OP_reg24"},
|
|
||||||
{0x69, 0x19, "XMM8", "DW_OP_reg25"},
|
|
||||||
{0x6a, 0x1a, "XMM9", "DW_OP_reg26"},
|
|
||||||
{0x6b, 0x1b, "XMM10", "DW_OP_reg27"},
|
|
||||||
{0x6c, 0x1c, "XMM11", "DW_OP_reg28"},
|
|
||||||
{0x6d, 0x1d, "XMM12", "DW_OP_reg29"},
|
|
||||||
{0x6e, 0x1e, "XMM13", "DW_OP_reg30"},
|
|
||||||
{0x6f, 0x1f, "XMM14", "DW_OP_reg31"},
|
|
||||||
|
|
||||||
// Register values. DWARF5, section 2.5.1.2
|
|
||||||
// Register values are used to describe an object (or a piece of an object) that is located in memory at an address that is contained in
|
|
||||||
// a register (possibly offset by some constant)
|
|
||||||
|
|
||||||
// GP Registers
|
|
||||||
{0x70, 0x0, "RAX", "DW_OP_breg0"},
|
|
||||||
{0x71, 0x1, "RDX", "DW_OP_breg1"},
|
|
||||||
{0x72, 0x2, "RCX", "DW_OP_breg2"},
|
|
||||||
{0x73, 0x3, "RBX", "DW_OP_breg3"},
|
|
||||||
{0x74, 0x4, "RSI", "DW_OP_breg4"},
|
|
||||||
{0x75, 0x5, "RDI", "DW_OP_breg5"},
|
|
||||||
{0x76, 0x6, "RBP", "DW_OP_breg6"},
|
|
||||||
{0x77, 0x7, "RSP", "DW_OP_breg7"},
|
|
||||||
// Extended GP Registers
|
|
||||||
{0x78, 0x8, "R8", "DW_OP_breg8"},
|
|
||||||
{0x79, 0x9, "R9", "DW_OP_breg9"},
|
|
||||||
{0x7A, 0xA, "R10", "DW_OP_breg10"},
|
|
||||||
{0x7B, 0xB, "R11", "DW_OP_breg11"},
|
|
||||||
{0x7C, 0xC, "R12", "DW_OP_breg12"},
|
|
||||||
{0x7D, 0xD, "R13", "DW_OP_breg13"},
|
|
||||||
{0x7E, 0xE, "R14", "DW_OP_breg14"},
|
|
||||||
{0x7F, 0xF, "R15", "DW_OP_breg15"},
|
|
||||||
{0x80, 0x10, "RIP", "DW_OP_breg16"}, // Return Address (RA) mapped to RIP
|
|
||||||
// SSE Vector Registers
|
|
||||||
{0x81, 0x11, "XMM0", "DW_OP_breg17"},
|
|
||||||
{0x82, 0x12, "XMM1", "DW_OP_breg18"},
|
|
||||||
{0x83, 0x13, "XMM2", "DW_OP_breg19"},
|
|
||||||
{0x84, 0x14, "XMM3", "DW_OP_breg20"},
|
|
||||||
{0x85, 0x15, "XMM4", "DW_OP_breg21"},
|
|
||||||
{0x86, 0x16, "XMM5", "DW_OP_breg22"},
|
|
||||||
{0x87, 0x17, "XMM6", "DW_OP_breg23"},
|
|
||||||
{0x88, 0x18, "XMM7", "DW_OP_breg24"},
|
|
||||||
{0x89, 0x19, "XMM8", "DW_OP_breg25"},
|
|
||||||
{0x8a, 0x1a, "XMM9", "DW_OP_breg26"},
|
|
||||||
{0x8b, 0x1b, "XMM10", "DW_OP_breg27"},
|
|
||||||
{0x8c, 0x1c, "XMM11", "DW_OP_breg28"},
|
|
||||||
{0x8d, 0x1d, "XMM12", "DW_OP_breg29"},
|
|
||||||
{0x8e, 0x1e, "XMM13", "DW_OP_breg30"},
|
|
||||||
{0x8f, 0x1f, "XMM14", "DW_OP_breg31"},
|
|
||||||
|
|
||||||
// The DW_OP_regx operation has a single unsigned LEB128 literal operand that encodes the name of a register
|
// The DW_OP_regx operation has a single unsigned LEB128 literal operand that encodes the name of a register
|
||||||
{0x90, -1, 0, "DW_OP_regx"},
|
if(map->op_num != DW_OP_regx && (map->op_num < DW_OP_reg0 || map->op_num > DW_OP_reg31)) {
|
||||||
// The DW_OP_fbreg operation provides a signed LEB128 offset from the address specified by the location description in the DW_AT_frame_base
|
return false;
|
||||||
// attribute of the current function. This is typically a stack pointer register plus or minus some offset
|
}
|
||||||
{0x91, -1, 0, "DW_OP_fbreg"},
|
|
||||||
|
uint64_t regno = 0;
|
||||||
|
if(map->op_num == DW_OP_regx) {
|
||||||
|
regno = decode_uleb128((unsigned char*)&op1);
|
||||||
|
} else {
|
||||||
|
regno = map->op_num - DW_OP_reg0;
|
||||||
|
}
|
||||||
|
|
||||||
|
ctx->stack.push(®no, sizeof(regno), DWARF_TYPE_REGISTER_LOC);
|
||||||
|
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
|
||||||
|
// Register values. DWARF5, section 2.5.1.2
|
||||||
|
// Register values are used to describe an object (or a piece of an object) that is located in memory at an address that is contained in
|
||||||
|
// a register (possibly offset by some constant)
|
||||||
|
bool dw_op_breg_x(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
|
{
|
||||||
// The DW_OP_bregx operation provides the sum of two values specified by its two operands.
|
// The DW_OP_bregx operation provides the sum of two values specified by its two operands.
|
||||||
// The first operand is a register number which is specified by an unsigned LEB128 number. The second operand is a signed LEB128 offset.
|
// The first operand is a register number which is specified by an unsigned LEB128 number. The second operand is a signed LEB128 offset.
|
||||||
{0x92, -1, 0, "DW_OP_bregx"},
|
if(map->op_num != DW_OP_bregx && (map->op_num < DW_OP_breg0 || map->op_num > DW_OP_breg31)) {
|
||||||
{0x9C, -1, 0, "DW_OP_call_frame_cfa"},
|
return false;
|
||||||
|
}
|
||||||
|
|
||||||
|
uint64_t regno = 0; int64_t off = 0;
|
||||||
|
if(map->op_num == DW_OP_bregx) {
|
||||||
|
regno = decode_uleb128((unsigned char*)&op1);
|
||||||
|
off = decode_sleb128((unsigned char*)&op2);
|
||||||
|
} else {
|
||||||
|
regno = map->op_num - DW_OP_breg0;
|
||||||
|
off = decode_sleb128((unsigned char*)&op1);
|
||||||
|
}
|
||||||
|
|
||||||
|
unw_word_t val = 0;
|
||||||
|
if(unw_get_reg(&ctx->cursor, regno, &val)) {
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
|
||||||
|
val += off;
|
||||||
|
ctx->stack.push(&val, sizeof(val), DWARF_TYPE_MEMORY_LOC | DWARF_TYPE_GENERIC);
|
||||||
|
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
|
||||||
|
bool dw_op_lit_x(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
|
{
|
||||||
|
// The DW_OP_lit<n> operations encode the unsigned literal values from 0 through 31, inclusive.
|
||||||
|
// Operations other than DW_OP_const_type push a value with the generic type.
|
||||||
|
if(map->op_num < DW_OP_lit0 || map->op_num > DW_OP_lit31) {
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
|
||||||
|
uint64_t val = map->op_num - DW_OP_lit0;
|
||||||
|
ctx->stack.push(&val, sizeof(val), DWARF_TYPE_GENERIC);
|
||||||
|
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
|
||||||
|
bool dw_op_stack_value(pst_context* ctx, const dwarf_op_map* map, Dwarf_Word op1, Dwarf_Word op2)
|
||||||
|
{
|
||||||
// DWARF5, Section 2.6.1.1.4:
|
// DWARF5, Section 2.6.1.1.4:
|
||||||
// The DW_OP_stack_value operation specifies that the object does not exist in memory but its value is nonetheless known and is at the top of the DWARF
|
// The DW_OP_stack_value operation specifies that the object does not exist in memory but its value is nonetheless known and is at the top of the DWARF
|
||||||
// expression stack. In this form of location description, the DWARF expression represents the actual value of the object, rather than its location.
|
// expression stack. In this form of location description, the DWARF expression represents the actual value of the object, rather than its location.
|
||||||
// The DW_OP_stack_value operation terminates the expression.
|
// The DW_OP_stack_value operation terminates the expression.
|
||||||
{0x9F, -1, 0, "DW_OP_stack_value"},
|
|
||||||
|
dwarf_value* v = ctx->stack.get();
|
||||||
|
if(v) {
|
||||||
|
v->type = DWARF_TYPE_GENERIC;
|
||||||
|
return true;
|
||||||
|
}
|
||||||
|
|
||||||
|
return false;
|
||||||
|
}
|
||||||
|
|
||||||
|
dwarf_op_map dw_op[] = {
|
||||||
|
{DW_OP_addr, "DW_OP_addr", dw_op_addr},
|
||||||
|
{DW_OP_deref, "DW_OP_deref", dw_op_deref},
|
||||||
|
// Constant operations
|
||||||
|
{DW_OP_const1u, "DW_OP_const1u", dw_op_const_x_u},
|
||||||
|
{DW_OP_const1s, "DW_OP_const1s", dw_op_const_x_s},
|
||||||
|
{DW_OP_const2u, "DW_OP_const2u", dw_op_const_x_u},
|
||||||
|
{DW_OP_const2s, "DW_OP_const2s", dw_op_const_x_s},
|
||||||
|
{DW_OP_const4u, "DW_OP_const4u", dw_op_const_x_u},
|
||||||
|
{DW_OP_const4s, "DW_OP_const4s", dw_op_const_x_s},
|
||||||
|
{DW_OP_const8u, "DW_OP_const8u", dw_op_const_x_u},
|
||||||
|
{DW_OP_const8s, "DW_OP_const8s", dw_op_const_x_s},
|
||||||
|
{DW_OP_constu, "DW_OP_constu", dw_op_constu},
|
||||||
|
{DW_OP_consts, "DW_OP_consts", dw_op_consts},
|
||||||
|
// DWARF expression stack operations
|
||||||
|
{DW_OP_dup, "DW_OP_dup", dw_op_dup},
|
||||||
|
{DW_OP_drop, "DW_OP_drop", dw_op_drop},
|
||||||
|
{DW_OP_over, "DW_OP_over", dw_op_over},
|
||||||
|
{DW_OP_pick, "DW_OP_pick", dw_op_pick},
|
||||||
|
{DW_OP_swap, "DW_OP_swap", dw_op_swap},
|
||||||
|
{DW_OP_rot, "DW_OP_rot", dw_op_rot},
|
||||||
|
{DW_OP_xderef, "DW_OP_xderef", dw_op_notimpl},
|
||||||
|
// Arithmetic and Logical Operations
|
||||||
|
{DW_OP_abs, "DW_OP_abs", dw_op_abs},
|
||||||
|
{DW_OP_and, "DW_OP_and", dw_op_and},
|
||||||
|
{DW_OP_div, "DW_OP_div", dw_op_div},
|
||||||
|
{DW_OP_minus, "DW_OP_minus", dw_op_minus},
|
||||||
|
{DW_OP_mod, "DW_OP_mod", dw_op_mod},
|
||||||
|
{DW_OP_mul, "DW_OP_mul", dw_op_mul},
|
||||||
|
{DW_OP_neg, "DW_OP_neg", dw_op_neg},
|
||||||
|
{DW_OP_not, "DW_OP_not", dw_op_not},
|
||||||
|
{DW_OP_or, "DW_OP_or", dw_op_or},
|
||||||
|
{DW_OP_plus, "DW_OP_plus", dw_op_plus},
|
||||||
|
{DW_OP_plus_uconst, "DW_OP_plus_uconst",dw_op_plus_uconst},
|
||||||
|
// not implemented for now
|
||||||
|
{DW_OP_shl, "DW_OP_shl", dw_op_notimpl},
|
||||||
|
{DW_OP_shr, "DW_OP_shr", dw_op_notimpl},
|
||||||
|
{DW_OP_shra, "DW_OP_shra", dw_op_notimpl},
|
||||||
|
{DW_OP_xor, "DW_OP_xor", dw_op_notimpl},
|
||||||
|
{DW_OP_bra, "DW_OP_bra", dw_op_notimpl},
|
||||||
|
{DW_OP_eq, "DW_OP_eq", dw_op_notimpl},
|
||||||
|
{DW_OP_ge, "DW_OP_ge", dw_op_notimpl},
|
||||||
|
{DW_OP_gt, "DW_OP_gt", dw_op_notimpl},
|
||||||
|
{DW_OP_le, "DW_OP_le", dw_op_notimpl},
|
||||||
|
{DW_OP_lt, "DW_OP_lt", dw_op_notimpl},
|
||||||
|
{DW_OP_ne, "DW_OP_ne", dw_op_notimpl},
|
||||||
|
{DW_OP_skip, "DW_OP_skip", dw_op_notimpl},
|
||||||
|
//DWARF5 2.5.1.1 Literal Encodings
|
||||||
|
{DW_OP_lit0, "DW_OP_lit0", dw_op_lit_x},
|
||||||
|
{DW_OP_lit1, "DW_OP_lit1", dw_op_lit_x},
|
||||||
|
{DW_OP_lit2, "DW_OP_lit2", dw_op_lit_x},
|
||||||
|
{DW_OP_lit3, "DW_OP_lit3", dw_op_lit_x},
|
||||||
|
{DW_OP_lit4, "DW_OP_lit4", dw_op_lit_x},
|
||||||
|
{DW_OP_lit5, "DW_OP_lit5", dw_op_lit_x},
|
||||||
|
{DW_OP_lit6, "DW_OP_lit6", dw_op_lit_x},
|
||||||
|
{DW_OP_lit7, "DW_OP_lit7", dw_op_lit_x},
|
||||||
|
{DW_OP_lit8, "DW_OP_lit8", dw_op_lit_x},
|
||||||
|
{DW_OP_lit9, "DW_OP_lit9", dw_op_lit_x},
|
||||||
|
{DW_OP_lit10, "DW_OP_lit10", dw_op_lit_x},
|
||||||
|
{DW_OP_lit11, "DW_OP_lit11", dw_op_lit_x},
|
||||||
|
{DW_OP_lit12, "DW_OP_lit12", dw_op_lit_x},
|
||||||
|
{DW_OP_lit13, "DW_OP_lit13", dw_op_lit_x},
|
||||||
|
{DW_OP_lit14, "DW_OP_lit14", dw_op_lit_x},
|
||||||
|
{DW_OP_lit15, "DW_OP_lit15", dw_op_lit_x},
|
||||||
|
{DW_OP_lit16, "DW_OP_lit16", dw_op_lit_x},
|
||||||
|
{DW_OP_lit17, "DW_OP_lit17", dw_op_lit_x},
|
||||||
|
{DW_OP_lit18, "DW_OP_lit18", dw_op_lit_x},
|
||||||
|
{DW_OP_lit19, "DW_OP_lit19", dw_op_lit_x},
|
||||||
|
{DW_OP_lit20, "DW_OP_lit20", dw_op_lit_x},
|
||||||
|
{DW_OP_lit21, "DW_OP_lit21", dw_op_lit_x},
|
||||||
|
{DW_OP_lit22, "DW_OP_lit22", dw_op_lit_x},
|
||||||
|
{DW_OP_lit23, "DW_OP_lit23", dw_op_lit_x},
|
||||||
|
{DW_OP_lit24, "DW_OP_lit24", dw_op_lit_x},
|
||||||
|
{DW_OP_lit25, "DW_OP_lit25", dw_op_lit_x},
|
||||||
|
{DW_OP_lit26, "DW_OP_lit26", dw_op_lit_x},
|
||||||
|
{DW_OP_lit27, "DW_OP_lit27", dw_op_lit_x},
|
||||||
|
{DW_OP_lit28, "DW_OP_lit28", dw_op_lit_x},
|
||||||
|
{DW_OP_lit29, "DW_OP_lit29", dw_op_lit_x},
|
||||||
|
{DW_OP_lit30, "DW_OP_lit30", dw_op_lit_x},
|
||||||
|
{DW_OP_lit31, "DW_OP_lit31", dw_op_lit_x},
|
||||||
|
// Register location descriptions.
|
||||||
|
// GP Registers
|
||||||
|
{DW_OP_reg0, "DW_OP_reg0", dw_op_reg_x},
|
||||||
|
{DW_OP_reg1, "DW_OP_reg1", dw_op_reg_x},
|
||||||
|
{DW_OP_reg2, "DW_OP_reg2", dw_op_reg_x},
|
||||||
|
{DW_OP_reg3, "DW_OP_reg3", dw_op_reg_x},
|
||||||
|
{DW_OP_reg4, "DW_OP_reg4", dw_op_reg_x},
|
||||||
|
{DW_OP_reg5, "DW_OP_reg5", dw_op_reg_x},
|
||||||
|
{DW_OP_reg6, "DW_OP_reg6", dw_op_reg_x},
|
||||||
|
{DW_OP_reg7, "DW_OP_reg7", dw_op_reg_x},
|
||||||
|
// Extended GP Registers
|
||||||
|
{DW_OP_reg8, "DW_OP_reg8", dw_op_reg_x},
|
||||||
|
{DW_OP_reg9, "DW_OP_reg9", dw_op_reg_x},
|
||||||
|
{DW_OP_reg10, "DW_OP_reg10", dw_op_reg_x},
|
||||||
|
{DW_OP_reg11, "DW_OP_reg11", dw_op_reg_x},
|
||||||
|
{DW_OP_reg12, "DW_OP_reg12", dw_op_reg_x},
|
||||||
|
{DW_OP_reg13, "DW_OP_reg13", dw_op_reg_x},
|
||||||
|
{DW_OP_reg14, "DW_OP_reg14", dw_op_reg_x},
|
||||||
|
{DW_OP_reg15, "DW_OP_reg15", dw_op_reg_x},
|
||||||
|
{DW_OP_reg16, "DW_OP_reg16", dw_op_reg_x}, // Return Address (RA) mapped to RIP
|
||||||
|
// SSE Vector Registers
|
||||||
|
{DW_OP_reg17, "DW_OP_reg17", dw_op_reg_x},
|
||||||
|
{DW_OP_reg18, "DW_OP_reg18", dw_op_reg_x},
|
||||||
|
{DW_OP_reg19, "DW_OP_reg19", dw_op_reg_x},
|
||||||
|
{DW_OP_reg20, "DW_OP_reg20", dw_op_reg_x},
|
||||||
|
{DW_OP_reg21, "DW_OP_reg21", dw_op_reg_x},
|
||||||
|
{DW_OP_reg22, "DW_OP_reg22", dw_op_reg_x},
|
||||||
|
{DW_OP_reg23, "DW_OP_reg23", dw_op_reg_x},
|
||||||
|
{DW_OP_reg24, "DW_OP_reg24", dw_op_reg_x},
|
||||||
|
{DW_OP_reg25, "DW_OP_reg25", dw_op_reg_x},
|
||||||
|
{DW_OP_reg26, "DW_OP_reg26", dw_op_reg_x},
|
||||||
|
{DW_OP_reg27, "DW_OP_reg27", dw_op_reg_x},
|
||||||
|
{DW_OP_reg28, "DW_OP_reg28", dw_op_reg_x},
|
||||||
|
{DW_OP_reg29, "DW_OP_reg29", dw_op_reg_x},
|
||||||
|
{DW_OP_reg30, "DW_OP_reg30", dw_op_reg_x},
|
||||||
|
{DW_OP_reg31, "DW_OP_reg31", dw_op_reg_x},
|
||||||
|
// Register values.
|
||||||
|
// GP Registers
|
||||||
|
{DW_OP_breg0, "DW_OP_breg0", dw_op_breg_x},
|
||||||
|
{DW_OP_breg1, "DW_OP_breg1", dw_op_breg_x},
|
||||||
|
{DW_OP_breg2, "DW_OP_breg2", dw_op_breg_x},
|
||||||
|
{DW_OP_breg3, "DW_OP_breg3", dw_op_breg_x},
|
||||||
|
{DW_OP_breg4, "DW_OP_breg4", dw_op_breg_x},
|
||||||
|
{DW_OP_breg5, "DW_OP_breg5", dw_op_breg_x},
|
||||||
|
{DW_OP_breg6, "DW_OP_breg6", dw_op_breg_x},
|
||||||
|
{DW_OP_breg7, "DW_OP_breg7", dw_op_breg_x},
|
||||||
|
// Extended GP Registers
|
||||||
|
{DW_OP_breg8, "DW_OP_breg8", dw_op_breg_x},
|
||||||
|
{DW_OP_breg9, "DW_OP_breg9", dw_op_breg_x},
|
||||||
|
{DW_OP_breg10, "DW_OP_breg10", dw_op_breg_x},
|
||||||
|
{DW_OP_breg11, "DW_OP_breg11", dw_op_breg_x},
|
||||||
|
{DW_OP_breg12, "DW_OP_breg12", dw_op_breg_x},
|
||||||
|
{DW_OP_breg13, "DW_OP_breg13", dw_op_breg_x},
|
||||||
|
{DW_OP_breg14, "DW_OP_breg14", dw_op_breg_x},
|
||||||
|
{DW_OP_breg15, "DW_OP_breg15", dw_op_breg_x},
|
||||||
|
{DW_OP_breg16, "DW_OP_breg16", dw_op_breg_x}, // Return Address (RA) mapped to RIP
|
||||||
|
// SSE Vector Registers
|
||||||
|
{DW_OP_breg17, "DW_OP_breg17", dw_op_breg_x},
|
||||||
|
{DW_OP_breg18, "DW_OP_breg18", dw_op_breg_x},
|
||||||
|
{DW_OP_breg19, "DW_OP_breg19", dw_op_breg_x},
|
||||||
|
{DW_OP_breg20, "DW_OP_breg20", dw_op_breg_x},
|
||||||
|
{DW_OP_breg21, "DW_OP_breg21", dw_op_breg_x},
|
||||||
|
{DW_OP_breg22, "DW_OP_breg22", dw_op_breg_x},
|
||||||
|
{DW_OP_breg23, "DW_OP_breg23", dw_op_breg_x},
|
||||||
|
{DW_OP_breg24, "DW_OP_breg24", dw_op_breg_x},
|
||||||
|
{DW_OP_breg25, "DW_OP_breg25", dw_op_breg_x},
|
||||||
|
{DW_OP_breg26, "DW_OP_breg26", dw_op_breg_x},
|
||||||
|
{DW_OP_breg27, "DW_OP_breg27", dw_op_breg_x},
|
||||||
|
{DW_OP_breg28, "DW_OP_breg28", dw_op_breg_x},
|
||||||
|
{DW_OP_breg29, "DW_OP_breg29", dw_op_breg_x},
|
||||||
|
{DW_OP_breg30, "DW_OP_breg30", dw_op_breg_x},
|
||||||
|
{DW_OP_breg31, "DW_OP_breg31", dw_op_breg_x},
|
||||||
|
|
||||||
|
{DW_OP_regx, "DW_OP_regx", dw_op_reg_x},
|
||||||
|
// The DW_OP_fbreg operation provides a signed LEB128 offset from the address specified by the location description in the DW_AT_frame_base
|
||||||
|
// attribute of the current function. This is typically a stack pointer register plus or minus some offset
|
||||||
|
{DW_OP_fbreg, "DW_OP_fbreg", dw_op_notimpl},
|
||||||
|
{DW_OP_bregx, "DW_OP_bregx", dw_op_breg_x},
|
||||||
|
{DW_OP_call_frame_cfa, "DW_OP_call_frame_cfa", dw_op_notimpl},
|
||||||
|
{DW_OP_stack_value, "DW_OP_stack_value", dw_op_stack_value},
|
||||||
// This opcode has two operands, the first one is uleb128 length and the second is block of that length, containing either a
|
// This opcode has two operands, the first one is uleb128 length and the second is block of that length, containing either a
|
||||||
// simple register or DWARF expression
|
// simple register or DWARF expression
|
||||||
{0xF3, -1, 0, "DW_OP_GNU_entry_value"},
|
{DW_OP_GNU_entry_value, "DW_OP_GNU_entry_value", dw_op_notimpl},
|
||||||
};
|
};
|
||||||
|
|
||||||
const dwarf_op_map* find_op_map(int op)
|
const dwarf_op_map* find_op_map(int op)
|
||||||
|
|||||||
@@ -10,10 +10,16 @@ typedef bool (*dwarf_operation)(pst_context* ctx, const dwarf_op_map* map, Dwarf
|
|||||||
|
|
||||||
typedef struct __dwarf_op_map {
|
typedef struct __dwarf_op_map {
|
||||||
int op_num; // DWARF Operation DW_OP_XXX
|
int op_num; // DWARF Operation DW_OP_XXX
|
||||||
int regno; // platform-dependent register number if present
|
// int regno; // platform-dependent register number if present
|
||||||
const char* regname; // register name if 'regno' specified
|
// const char* regname; // register name if 'regno' specified
|
||||||
const char* op_name; // string representation of an operation
|
const char* op_name; // string representation of an operation
|
||||||
dwarf_operation operation; // function which handles operation
|
dwarf_operation operation; // function which handles operation
|
||||||
} dwarf_op_map;
|
} dwarf_op_map;
|
||||||
|
|
||||||
|
typedef struct __dwarf_reg_map {
|
||||||
|
int regno; // platform-dependent register number
|
||||||
|
const char* regname; // register name if
|
||||||
|
const char* dwarf_name; // name of DWARF operation
|
||||||
|
} dwarf_reg_map;
|
||||||
|
|
||||||
const dwarf_op_map* find_op_map(int op);
|
const dwarf_op_map* find_op_map(int op);
|
||||||
|
|||||||
+15
-29
@@ -111,29 +111,6 @@ void print_framereg(int regno)
|
|||||||
}
|
}
|
||||||
*/
|
*/
|
||||||
|
|
||||||
bool __pst_handler::calc_expression(Dwarf_Op *exprs, int expr_len, dwarf_stack* stack, Dwarf_Attribute* attr)
|
|
||||||
{
|
|
||||||
for (int i = 0; i < expr_len; i++) {
|
|
||||||
const dwarf_op_map* map = find_op_map(exprs[i].atom);
|
|
||||||
if(!map) {
|
|
||||||
ctx.log(SEVERITY_ERROR, "Unknown operation type 0x%hhX(0x%lX, 0x%lX)", exprs[i].atom, exprs[i].number, exprs[i].number2);
|
|
||||||
return false;
|
|
||||||
}
|
|
||||||
|
|
||||||
if(map->op_num == DW_OP_stack_value && stack->Size() > 0) {
|
|
||||||
return true;
|
|
||||||
}
|
|
||||||
|
|
||||||
if(!map->operation(&ctx, map, exprs[i].number, exprs[i].number2)) {
|
|
||||||
ctx.log(SEVERITY_ERROR, "Failed to calculate %s(0x%lX, 0x%lX) operation", map->op_name, exprs[i].number, exprs[i].number2);
|
|
||||||
return false;
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
return true;
|
|
||||||
}
|
|
||||||
|
|
||||||
|
|
||||||
bool __pst_parameter::handle_type(Dwarf_Attribute* param, bool is_return)
|
bool __pst_parameter::handle_type(Dwarf_Attribute* param, bool is_return)
|
||||||
{
|
{
|
||||||
Dwarf_Attribute attr_mem;
|
Dwarf_Attribute attr_mem;
|
||||||
@@ -221,6 +198,10 @@ bool __pst_parameter::handle_dwarf(Dwarf_Die* result)
|
|||||||
handle_type(attr);
|
handle_type(attr);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
Dwarf_Addr pc;
|
||||||
|
unw_get_reg(&ctx->cursor, UNW_REG_IP, &pc);
|
||||||
|
Dwarf_Addr offset = pc - ctx->base_addr;
|
||||||
|
|
||||||
// determine location of parameter in stack/heap or CPU registers
|
// determine location of parameter in stack/heap or CPU registers
|
||||||
attr = dwarf_attr(result, DW_AT_location, &attr_mem);
|
attr = dwarf_attr(result, DW_AT_location, &attr_mem);
|
||||||
if(attr) {
|
if(attr) {
|
||||||
@@ -230,10 +211,8 @@ bool __pst_parameter::handle_dwarf(Dwarf_Die* result)
|
|||||||
if (dwarf_getlocation(attr, &expr, &exprlen) == 0) {
|
if (dwarf_getlocation(attr, &expr, &exprlen) == 0) {
|
||||||
char str[1024]; str[0] = 0;
|
char str[1024]; str[0] = 0;
|
||||||
ctx->print_expr_block (expr, exprlen, str, sizeof(str), attr);
|
ctx->print_expr_block (expr, exprlen, str, sizeof(str), attr);
|
||||||
ctx->log(SEVERITY_DEBUG, "Found DW_AT_location expression: %s", str);
|
ctx->log(SEVERITY_DEBUG, "DW_AT_location expression: %s", str);
|
||||||
// if(expr[0].atom >= DW_OP_reg0 && expr[0].atom <= DW_OP_bregx) {
|
ctx->calc_expression(expr, exprlen, attr);
|
||||||
// print_framereg(expr[0].atom);
|
|
||||||
// }
|
|
||||||
}
|
}
|
||||||
} else if(dwarf_hasform(attr, DW_FORM_sec_offset)) {
|
} else if(dwarf_hasform(attr, DW_FORM_sec_offset)) {
|
||||||
Dwarf_Addr base, start, end;
|
Dwarf_Addr base, start, end;
|
||||||
@@ -241,10 +220,17 @@ bool __pst_parameter::handle_dwarf(Dwarf_Die* result)
|
|||||||
Dwarf_Op *expr;
|
Dwarf_Op *expr;
|
||||||
size_t exprlen;
|
size_t exprlen;
|
||||||
|
|
||||||
|
// handle list of possible locations of parameter
|
||||||
for(int i = 0; (off = dwarf_getlocations (attr, off, &base, &start, &end, &expr, &exprlen)) > 0; ++i) {
|
for(int i = 0; (off = dwarf_getlocations (attr, off, &base, &start, &end, &expr, &exprlen)) > 0; ++i) {
|
||||||
|
if(offset >= start && offset <= end) {
|
||||||
|
// actual location, try to calculate Location expression and retrieve value of parameter
|
||||||
char str[1024]; str[0] = 0;
|
char str[1024]; str[0] = 0;
|
||||||
ctx->print_expr_block (expr, exprlen, str, sizeof(str), attr);
|
ctx->print_expr_block (expr, exprlen, str, sizeof(str), attr);
|
||||||
ctx->log(SEVERITY_DEBUG, "[%d] low_offset: 0x%" PRIx64 ", high_offset: 0x%" PRIx64 " ==> %s", i, start, end, str);
|
ctx->log(SEVERITY_DEBUG, "Location list expression: [%d] low_offset: 0x%" PRIx64 ", high_offset: 0x%" PRIx64 " ==> %s", i, start, end, str);
|
||||||
|
ctx->calc_expression(expr, exprlen, attr);
|
||||||
|
} else {
|
||||||
|
// Location skipped due to don't match current PC offset
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
} else {
|
} else {
|
||||||
@@ -561,7 +547,7 @@ bool __pst_handler::unwind()
|
|||||||
ctx.print("[%-2d] ", idx);
|
ctx.print("[%-2d] ", idx);
|
||||||
#endif
|
#endif
|
||||||
module = dwfl_addrmodule(dwfl, addr);
|
module = dwfl_addrmodule(dwfl, addr);
|
||||||
get_frame();
|
//get_frame();
|
||||||
pst_function fun(&ctx);
|
pst_function fun(&ctx);
|
||||||
if(fun.unwind(dwfl, module, pc)) {
|
if(fun.unwind(dwfl, module, pc)) {
|
||||||
if(get_dwarf_function(fun)) {
|
if(get_dwarf_function(fun)) {
|
||||||
|
|||||||
Reference in New Issue
Block a user