cd296721a9
This updates scripts/dtc to commit 317a5d9 "dtc: zero out new label objects" from git://git.jdl.com/software/dtc.git. This adds features such as: * /bits/ syntax for cell data. * Math expressions within cell data. * The ability to delete properties or nodes. * Support for #line directives in the input file, which allows the use of cpp on *.dts. * -i command-line option (/include/ path) * -W/-E command-line options for error/warning control. * Removal of spew to STDOUT containing the filename being compiled. * Many additions to the libfdt API. Signed-off-by: Stephen Warren <swarren@nvidia.com> Acked-by: Jon Loeliger <jdl@jdl.com> Signed-off-by: Rob Herring <rob.herring@calxeda.com>
533 lines
10 KiB
Plaintext
533 lines
10 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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YYLTYPE yylloc;
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extern int yylex(void);
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extern void print_error(char const *fmt, ...);
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extern void yyerror(char const *s);
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extern struct boot_info *the_boot_info;
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extern int treesource_error;
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static unsigned long long eval_literal(const char *s, int base, int bits);
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static unsigned char eval_char_literal(const char *s);
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%}
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%union {
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char *propnodename;
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char *literal;
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char *labelref;
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unsigned int cbase;
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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 <literal> DT_LITERAL
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%token <literal> DT_CHAR_LITERAL
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%token <cbase> DT_BASE
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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_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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print_error("label or path, '%s', not found", $2);
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$$ = $1;
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}
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| devicetree DT_DEL_NODE DT_REF ';'
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{
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struct node *target = get_node_by_ref($1, $3);
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if (!target)
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print_error("label or path, '%s', not found", $3);
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else
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delete_node(target);
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$$ = $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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$$ = data_add_marker($1, REF_PATH, $2);
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}
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| propdataprefix DT_INCBIN '(' DT_STRING ',' integer_prim ',' integer_prim ')'
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{
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FILE *f = srcfile_relative_open($4.val, NULL);
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struct data d;
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if ($6 != 0)
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if (fseek(f, $6, SEEK_SET) != 0)
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print_error("Couldn't seek to offset %llu in \"%s\": %s",
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(unsigned long long)$6,
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$4.val,
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strerror(errno));
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d = data_copy_file(f, $8);
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$$ = 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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$$ = data_add_marker($1, LABEL, $2);
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}
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;
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arrayprefix:
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DT_BITS DT_LITERAL '<'
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{
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$$.data = empty_data;
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$$.bits = eval_literal($2, 0, 7);
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if (($$.bits != 8) &&
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($$.bits != 16) &&
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($$.bits != 32) &&
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($$.bits != 64))
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{
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print_error("Only 8, 16, 32 and 64-bit elements"
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" are currently supported");
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$$.bits = 32;
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}
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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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print_error(
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"integer value out of range "
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"%016lx (%d bits)", $1.bits);
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}
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$$.data = data_append_integer($1.data, $2, $1.bits);
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}
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| arrayprefix DT_REF
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{
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uint64_t val = ~0ULL >> (64 - $1.bits);
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if ($1.bits == 32)
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$1.data = data_add_marker($1.data,
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REF_PHANDLE,
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$2);
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else
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print_error("References are only allowed in "
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"arrays with 32-bit elements.");
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$$.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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$$.data = data_add_marker($1.data, LABEL, $2);
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}
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;
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integer_prim:
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DT_LITERAL
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{
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$$ = eval_literal($1, 0, 64);
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}
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| DT_CHAR_LITERAL
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{
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$$ = eval_char_literal($1);
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}
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| '(' integer_expr ')'
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{
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$$ = $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 { $$ = $1 * $3; }
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| integer_mul '/' integer_unary { $$ = $1 / $3; }
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| integer_mul '%' integer_unary { $$ = $1 % $3; }
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| integer_unary
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;
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integer_unary:
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integer_prim
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| '-' integer_unary { $$ = -$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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$$ = chain_node($1, $2);
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}
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| subnode propdef
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{
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print_error("syntax error: properties must precede subnodes");
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YYERROR;
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}
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;
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subnode:
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DT_PROPNODENAME nodedef
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{
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$$ = 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 print_error(char const *fmt, ...)
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{
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va_list va;
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va_start(va, fmt);
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srcpos_verror(&yylloc, fmt, va);
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va_end(va);
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treesource_error = 1;
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}
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void yyerror(char const *s) {
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print_error("%s", s);
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}
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static unsigned long long eval_literal(const char *s, int base, int bits)
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{
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unsigned long long val;
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char *e;
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errno = 0;
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val = strtoull(s, &e, base);
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if (*e) {
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size_t uls = strspn(e, "UL");
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if (e[uls])
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print_error("bad characters in literal");
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}
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if ((errno == ERANGE)
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|| ((bits < 64) && (val >= (1ULL << bits))))
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print_error("literal out of range");
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else if (errno != 0)
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print_error("bad literal");
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return val;
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}
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static unsigned char eval_char_literal(const char *s)
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{
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int i = 1;
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char c = s[0];
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if (c == '\0')
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{
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print_error("empty character literal");
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return 0;
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}
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/*
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* If the first character in the character literal is a \ then process
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* the remaining characters as an escape encoding. If the first
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* character is neither an escape or a terminator it should be the only
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* character in the literal and will be returned.
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*/
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if (c == '\\')
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c = get_escape_char(s, &i);
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if (s[i] != '\0')
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print_error("malformed character literal");
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return c;
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}
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