mirror of
https://github.com/edk2-porting/linux-next.git
synced 2024-12-30 16:13:54 +08:00
91feabc2e2
Sync to upstream dtc commit b06e55c88b9b ("Prevent crash on modulo by zero"). This adds the following commits from upstream: b06e55c Prevent crash on modulo by zero b433450 Fix some bugs in processing of line directives d728ad5 Fix crash on nul character in string escape sequence 1ab2205 Gracefully handle bad octal literals 1937095 Prevent crash on division by zero d0b3ab0 libfdt: Fix undefined behaviour in fdt_offset_ptr() d4c7c25 libfdt: check for potential overrun in _fdt_splice() f58799b libfdt: Add some missing symbols to version.lds af9f26d Remove duplicated -Werror in dtc Makefile 604e61e fdt: Add functions to retrieve strings 8702bd1 fdt: Add a function to get the index of a string 2218387 fdt: Add a function to count strings 554fde2 libfdt: fix comment block of fdt_get_property_namelen() e5e6df7 fdtdump: Fix bug printing bytestrings with negative values 067829e Remove redundant fdtdump test code 897a429 Move fdt_path_offset alias tests to right tests section 2d1417c Add simple .travis.yml f6dbc6c guess output file format 5e78dff guess input file format based on file content or file name 8b927bf tests: convert `echo -n` to `printf` 64c46b0 Fix crash with poorly defined #size-cells Cc: Grant Likely <grant.likely@linaro.org> Tested-by: Frank Rowand <frank.rowand@sonymobile.com> Reviewed-by: Frank Rowand <frank.rowand@sonymobile.com> Signed-off-by: Rob Herring <robh@kernel.org>
494 lines
9.1 KiB
Plaintext
494 lines
9.1 KiB
Plaintext
/*
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* (C) Copyright David Gibson <dwg@au1.ibm.com>, IBM Corporation. 2005.
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*
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of the
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* License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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* USA
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*/
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%{
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#include <stdio.h>
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#include "dtc.h"
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#include "srcpos.h"
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extern int yylex(void);
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extern void yyerror(char const *s);
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#define ERROR(loc, ...) \
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do { \
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srcpos_error((loc), "Error", __VA_ARGS__); \
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treesource_error = true; \
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} while (0)
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extern struct boot_info *the_boot_info;
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extern bool treesource_error;
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%}
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%union {
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char *propnodename;
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char *labelref;
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uint8_t byte;
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struct data data;
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struct {
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struct data data;
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int bits;
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} array;
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struct property *prop;
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struct property *proplist;
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struct node *node;
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struct node *nodelist;
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struct reserve_info *re;
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uint64_t integer;
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}
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%token DT_V1
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%token DT_MEMRESERVE
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%token DT_LSHIFT DT_RSHIFT DT_LE DT_GE DT_EQ DT_NE DT_AND DT_OR
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%token DT_BITS
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%token DT_DEL_PROP
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%token DT_DEL_NODE
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%token <propnodename> DT_PROPNODENAME
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%token <integer> DT_LITERAL
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%token <integer> DT_CHAR_LITERAL
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%token <byte> DT_BYTE
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%token <data> DT_STRING
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%token <labelref> DT_LABEL
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%token <labelref> DT_REF
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%token DT_INCBIN
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%type <data> propdata
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%type <data> propdataprefix
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%type <re> memreserve
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%type <re> memreserves
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%type <array> arrayprefix
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%type <data> bytestring
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%type <prop> propdef
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%type <proplist> proplist
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%type <node> devicetree
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%type <node> nodedef
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%type <node> subnode
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%type <nodelist> subnodes
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%type <integer> integer_prim
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%type <integer> integer_unary
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%type <integer> integer_mul
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%type <integer> integer_add
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%type <integer> integer_shift
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%type <integer> integer_rela
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%type <integer> integer_eq
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%type <integer> integer_bitand
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%type <integer> integer_bitxor
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%type <integer> integer_bitor
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%type <integer> integer_and
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%type <integer> integer_or
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%type <integer> integer_trinary
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%type <integer> integer_expr
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%%
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sourcefile:
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DT_V1 ';' memreserves devicetree
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{
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the_boot_info = build_boot_info($3, $4,
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guess_boot_cpuid($4));
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}
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;
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memreserves:
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/* empty */
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{
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$$ = NULL;
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}
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| memreserve memreserves
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{
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$$ = chain_reserve_entry($1, $2);
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}
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;
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memreserve:
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DT_MEMRESERVE integer_prim integer_prim ';'
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{
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$$ = build_reserve_entry($2, $3);
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}
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| DT_LABEL memreserve
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{
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add_label(&$2->labels, $1);
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$$ = $2;
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}
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;
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devicetree:
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'/' nodedef
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{
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$$ = name_node($2, "");
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}
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| devicetree '/' nodedef
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{
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$$ = merge_nodes($1, $3);
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}
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| devicetree DT_LABEL DT_REF nodedef
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{
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struct node *target = get_node_by_ref($1, $3);
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add_label(&target->labels, $2);
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if (target)
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merge_nodes(target, $4);
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else
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ERROR(&@3, "Label or path %s not found", $3);
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$$ = $1;
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}
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| devicetree DT_REF nodedef
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{
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struct node *target = get_node_by_ref($1, $2);
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if (target)
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merge_nodes(target, $3);
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else
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ERROR(&@2, "Label or path %s not found", $2);
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$$ = $1;
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}
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| devicetree DT_DEL_NODE DT_REF ';'
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{
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struct node *target = get_node_by_ref($1, $3);
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if (target)
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delete_node(target);
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else
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ERROR(&@3, "Label or path %s not found", $3);
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$$ = $1;
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}
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;
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nodedef:
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'{' proplist subnodes '}' ';'
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{
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$$ = build_node($2, $3);
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}
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;
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proplist:
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/* empty */
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{
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$$ = NULL;
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}
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| proplist propdef
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{
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$$ = chain_property($2, $1);
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}
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;
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propdef:
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DT_PROPNODENAME '=' propdata ';'
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{
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$$ = build_property($1, $3);
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}
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| DT_PROPNODENAME ';'
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{
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$$ = build_property($1, empty_data);
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}
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| DT_DEL_PROP DT_PROPNODENAME ';'
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{
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$$ = build_property_delete($2);
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}
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| DT_LABEL propdef
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{
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add_label(&$2->labels, $1);
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$$ = $2;
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}
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;
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propdata:
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propdataprefix DT_STRING
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{
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$$ = data_merge($1, $2);
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}
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| propdataprefix arrayprefix '>'
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{
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$$ = data_merge($1, $2.data);
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}
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| propdataprefix '[' bytestring ']'
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{
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$$ = data_merge($1, $3);
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}
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| propdataprefix DT_REF
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{
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$$ = data_add_marker($1, REF_PATH, $2);
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}
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| propdataprefix DT_INCBIN '(' DT_STRING ',' integer_prim ',' integer_prim ')'
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{
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FILE *f = srcfile_relative_open($4.val, NULL);
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struct data d;
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if ($6 != 0)
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if (fseek(f, $6, SEEK_SET) != 0)
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die("Couldn't seek to offset %llu in \"%s\": %s",
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(unsigned long long)$6, $4.val,
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strerror(errno));
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d = data_copy_file(f, $8);
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$$ = data_merge($1, d);
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fclose(f);
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}
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| propdataprefix DT_INCBIN '(' DT_STRING ')'
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{
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FILE *f = srcfile_relative_open($4.val, NULL);
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struct data d = empty_data;
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d = data_copy_file(f, -1);
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$$ = data_merge($1, d);
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fclose(f);
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}
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| propdata DT_LABEL
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{
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$$ = data_add_marker($1, LABEL, $2);
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}
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;
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propdataprefix:
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/* empty */
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{
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$$ = empty_data;
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}
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| propdata ','
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{
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$$ = $1;
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}
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| propdataprefix DT_LABEL
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{
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$$ = data_add_marker($1, LABEL, $2);
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}
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;
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arrayprefix:
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DT_BITS DT_LITERAL '<'
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{
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unsigned long long bits;
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bits = $2;
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if ((bits != 8) && (bits != 16) &&
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(bits != 32) && (bits != 64)) {
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ERROR(&@2, "Array elements must be"
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" 8, 16, 32 or 64-bits");
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bits = 32;
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}
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$$.data = empty_data;
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$$.bits = bits;
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}
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| '<'
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{
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$$.data = empty_data;
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$$.bits = 32;
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}
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| arrayprefix integer_prim
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{
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if ($1.bits < 64) {
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uint64_t mask = (1ULL << $1.bits) - 1;
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/*
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* Bits above mask must either be all zero
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* (positive within range of mask) or all one
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* (negative and sign-extended). The second
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* condition is true if when we set all bits
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* within the mask to one (i.e. | in the
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* mask), all bits are one.
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*/
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if (($2 > mask) && (($2 | mask) != -1ULL))
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ERROR(&@2, "Value out of range for"
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" %d-bit array element", $1.bits);
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}
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$$.data = data_append_integer($1.data, $2, $1.bits);
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}
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| arrayprefix DT_REF
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{
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uint64_t val = ~0ULL >> (64 - $1.bits);
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if ($1.bits == 32)
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$1.data = data_add_marker($1.data,
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REF_PHANDLE,
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$2);
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else
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ERROR(&@2, "References are only allowed in "
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"arrays with 32-bit elements.");
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$$.data = data_append_integer($1.data, val, $1.bits);
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}
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| arrayprefix DT_LABEL
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{
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$$.data = data_add_marker($1.data, LABEL, $2);
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}
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;
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integer_prim:
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DT_LITERAL
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| DT_CHAR_LITERAL
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| '(' integer_expr ')'
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{
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$$ = $2;
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}
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;
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integer_expr:
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integer_trinary
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;
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integer_trinary:
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integer_or
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| integer_or '?' integer_expr ':' integer_trinary { $$ = $1 ? $3 : $5; }
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;
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integer_or:
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integer_and
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| integer_or DT_OR integer_and { $$ = $1 || $3; }
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;
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integer_and:
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integer_bitor
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| integer_and DT_AND integer_bitor { $$ = $1 && $3; }
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;
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integer_bitor:
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integer_bitxor
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| integer_bitor '|' integer_bitxor { $$ = $1 | $3; }
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;
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integer_bitxor:
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integer_bitand
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| integer_bitxor '^' integer_bitand { $$ = $1 ^ $3; }
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;
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integer_bitand:
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integer_eq
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| integer_bitand '&' integer_eq { $$ = $1 & $3; }
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;
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integer_eq:
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integer_rela
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| integer_eq DT_EQ integer_rela { $$ = $1 == $3; }
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| integer_eq DT_NE integer_rela { $$ = $1 != $3; }
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;
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integer_rela:
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integer_shift
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| integer_rela '<' integer_shift { $$ = $1 < $3; }
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| integer_rela '>' integer_shift { $$ = $1 > $3; }
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| integer_rela DT_LE integer_shift { $$ = $1 <= $3; }
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| integer_rela DT_GE integer_shift { $$ = $1 >= $3; }
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;
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integer_shift:
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integer_shift DT_LSHIFT integer_add { $$ = $1 << $3; }
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| integer_shift DT_RSHIFT integer_add { $$ = $1 >> $3; }
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| integer_add
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;
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integer_add:
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integer_add '+' integer_mul { $$ = $1 + $3; }
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| integer_add '-' integer_mul { $$ = $1 - $3; }
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| integer_mul
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;
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integer_mul:
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integer_mul '*' integer_unary { $$ = $1 * $3; }
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| integer_mul '/' integer_unary
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{
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if ($3 != 0) {
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$$ = $1 / $3;
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} else {
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ERROR(&@$, "Division by zero");
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$$ = 0;
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}
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}
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| integer_mul '%' integer_unary
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{
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if ($3 != 0) {
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$$ = $1 % $3;
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} else {
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ERROR(&@$, "Division by zero");
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$$ = 0;
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}
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}
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| integer_unary
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;
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integer_unary:
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integer_prim
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| '-' integer_unary { $$ = -$2; }
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| '~' integer_unary { $$ = ~$2; }
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| '!' integer_unary { $$ = !$2; }
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;
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bytestring:
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/* empty */
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{
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$$ = empty_data;
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}
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| bytestring DT_BYTE
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{
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$$ = data_append_byte($1, $2);
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}
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| bytestring DT_LABEL
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{
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$$ = data_add_marker($1, LABEL, $2);
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}
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;
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subnodes:
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/* empty */
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{
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$$ = NULL;
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}
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| subnode subnodes
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{
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$$ = chain_node($1, $2);
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}
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| subnode propdef
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{
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ERROR(&@2, "Properties must precede subnodes");
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YYERROR;
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}
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;
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subnode:
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DT_PROPNODENAME nodedef
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{
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$$ = name_node($2, $1);
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}
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| DT_DEL_NODE DT_PROPNODENAME ';'
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{
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$$ = name_node(build_node_delete(), $2);
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}
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| DT_LABEL subnode
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{
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add_label(&$2->labels, $1);
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$$ = $2;
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}
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;
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%%
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void yyerror(char const *s)
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{
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ERROR(&yylloc, "%s", s);
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}
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