mirror of
https://github.com/fish-shell/fish-shell.git
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551 lines
15 KiB
C++
551 lines
15 KiB
C++
#include "parse_productions.h"
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using namespace parse_productions;
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#define NO_PRODUCTION ((production_option_idx_t)(-1))
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static bool production_is_empty(const production_t production)
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{
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return production[0] == token_type_invalid;
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}
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/* Empty productions are allowed but must be first. Validate that the given production is in the valid range, i.e. it is either not empty or there is a non-empty production after it */
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static bool production_is_valid(const production_options_t production_list, production_option_idx_t which)
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{
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if (which < 0 || which >= MAX_PRODUCTIONS)
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return false;
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bool nonempty_found = false;
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for (int i=which; i < MAX_PRODUCTIONS; i++)
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{
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if (! production_is_empty(production_list[i]))
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{
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nonempty_found = true;
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break;
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}
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}
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return nonempty_found;
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}
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#define PRODUCTIONS(sym) static const production_options_t productions_##sym
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#define RESOLVE(sym) static production_option_idx_t resolve_##sym (const parse_token_t &token1, const parse_token_t &token2)
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#define RESOLVE_ONLY(sym) static production_option_idx_t resolve_##sym (const parse_token_t &input1, const parse_token_t &input2) { return 0; }
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#define KEYWORD(x) ((x) + LAST_TOKEN_OR_SYMBOL + 1)
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/* A job_list is a list of jobs, separated by semicolons or newlines */
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PRODUCTIONS(job_list) =
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{
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{},
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{symbol_job, symbol_job_list},
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{parse_token_type_end, symbol_job_list}
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};
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RESOLVE(job_list)
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{
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switch (token1.type)
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{
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case parse_token_type_string:
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// some keywords are special
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switch (token1.keyword)
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{
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case parse_keyword_end:
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case parse_keyword_else:
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case parse_keyword_case:
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// End this job list
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return 0;
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default:
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// Normal string
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return 1;
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}
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case parse_token_type_pipe:
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case parse_token_type_redirection:
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case parse_token_type_background:
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return 1;
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case parse_token_type_end:
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// Empty line
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return 2;
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case parse_token_type_terminate:
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// no more commands, just transition to empty
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return 0;
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default:
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return NO_PRODUCTION;
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}
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}
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/* A job is a non-empty list of statements, separated by pipes. (Non-empty is useful for cases like if statements, where we require a command). To represent "non-empty", we require a statement, followed by a possibly empty job_continuation */
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PRODUCTIONS(job) =
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{
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{symbol_statement, symbol_job_continuation}
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};
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RESOLVE_ONLY(job)
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PRODUCTIONS(job_continuation) =
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{
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{},
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{parse_token_type_pipe, symbol_statement, symbol_job_continuation}
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};
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RESOLVE(job_continuation)
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{
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switch (token1.type)
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{
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case parse_token_type_pipe:
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// Pipe, continuation
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return 1;
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default:
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// Not a pipe, no job continuation
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return 0;
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}
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}
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/* A statement is a normal command, or an if / while / and etc */
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PRODUCTIONS(statement) =
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{
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{symbol_boolean_statement},
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{symbol_block_statement},
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{symbol_if_statement},
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{symbol_switch_statement},
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{symbol_decorated_statement}
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};
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RESOLVE(statement)
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{
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/* The only block-like builtin that takes any parameters is 'function' So go to decorated statements if the subsequent token looks like '--'.
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The logic here is subtle:
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If we are 'begin', then we expect to be invoked with no arguments.
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If we are 'function', then we are a non-block if we are invoked with -h or --help
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If we are anything else, we require an argument, so do the same thing if the subsequent token is a statement terminator.
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*/
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if (token1.type == parse_token_type_string)
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{
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// If we are a function, then look for help arguments
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// Othewrise, if the next token looks like an option (starts with a dash), then parse it as a decorated statement
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if (token1.keyword == parse_keyword_function && token2.is_help_argument)
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{
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return 4;
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}
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else if (token1.keyword != parse_keyword_function && token2.has_dash_prefix)
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{
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return 4;
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}
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// Likewise if the next token doesn't look like an argument at all. This corresponds to e.g. a "naked if".
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bool naked_invocation_invokes_help = (token1.keyword != parse_keyword_begin && token1.keyword != parse_keyword_end);
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if (naked_invocation_invokes_help && (token2.type == parse_token_type_end || token2.type == parse_token_type_terminate))
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{
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return 4;
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}
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}
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switch (token1.type)
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{
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case parse_token_type_string:
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switch (token1.keyword)
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{
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case parse_keyword_and:
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case parse_keyword_or:
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case parse_keyword_not:
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return 0;
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case parse_keyword_for:
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case parse_keyword_while:
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case parse_keyword_function:
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case parse_keyword_begin:
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return 1;
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case parse_keyword_if:
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return 2;
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case parse_keyword_else:
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return NO_PRODUCTION;
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case parse_keyword_switch:
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return 3;
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case parse_keyword_end:
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return NO_PRODUCTION;
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// All other keywords fall through to decorated statement
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default:
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return 4;
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}
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break;
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case parse_token_type_pipe:
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case parse_token_type_redirection:
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case parse_token_type_background:
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case parse_token_type_terminate:
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return NO_PRODUCTION;
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//parse_error(L"statement", token);
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default:
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return NO_PRODUCTION;
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}
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}
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PRODUCTIONS(if_statement) =
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{
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{symbol_if_clause, symbol_else_clause, symbol_end_command, symbol_arguments_or_redirections_list}
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};
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RESOLVE_ONLY(if_statement)
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PRODUCTIONS(if_clause) =
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{
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{ KEYWORD(parse_keyword_if), symbol_job, parse_token_type_end, symbol_job_list }
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};
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RESOLVE_ONLY(if_clause)
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PRODUCTIONS(else_clause) =
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{
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{ },
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{ KEYWORD(parse_keyword_else), symbol_else_continuation }
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};
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RESOLVE(else_clause)
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{
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switch (token1.keyword)
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{
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case parse_keyword_else:
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return 1;
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default:
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return 0;
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}
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}
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PRODUCTIONS(else_continuation) =
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{
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{symbol_if_clause, symbol_else_clause},
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{parse_token_type_end, symbol_job_list}
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};
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RESOLVE(else_continuation)
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{
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switch (token1.keyword)
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{
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case parse_keyword_if:
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return 0;
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default:
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return 1;
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}
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}
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PRODUCTIONS(switch_statement) =
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{
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{ KEYWORD(parse_keyword_switch), parse_token_type_string, parse_token_type_end, symbol_case_item_list, symbol_end_command, symbol_arguments_or_redirections_list}
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};
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RESOLVE_ONLY(switch_statement)
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PRODUCTIONS(case_item_list) =
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{
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{},
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{symbol_case_item, symbol_case_item_list},
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{parse_token_type_end, symbol_case_item_list}
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};
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RESOLVE(case_item_list)
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{
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if (token1.keyword == parse_keyword_case) return 1;
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else if (token1.type == parse_token_type_end) return 2; //empty line
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else return 0;
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}
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PRODUCTIONS(case_item) =
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{
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{KEYWORD(parse_keyword_case), symbol_argument_list, parse_token_type_end, symbol_job_list}
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};
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RESOLVE_ONLY(case_item)
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PRODUCTIONS(argument_list) =
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{
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{},
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{symbol_argument, symbol_argument_list}
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};
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RESOLVE(argument_list)
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{
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switch (token1.type)
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{
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case parse_token_type_string:
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return 1;
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default:
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return 0;
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}
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}
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PRODUCTIONS(block_statement) =
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{
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{symbol_block_header, parse_token_type_end, symbol_job_list, symbol_end_command, symbol_arguments_or_redirections_list}
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};
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RESOLVE_ONLY(block_statement)
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PRODUCTIONS(block_header) =
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{
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{symbol_for_header},
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{symbol_while_header},
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{symbol_function_header},
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{symbol_begin_header}
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};
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RESOLVE(block_header)
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{
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switch (token1.keyword)
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{
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case parse_keyword_for:
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return 0;
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case parse_keyword_while:
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return 1;
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case parse_keyword_function:
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return 2;
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case parse_keyword_begin:
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return 3;
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default:
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return NO_PRODUCTION;
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}
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}
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PRODUCTIONS(for_header) =
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{
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{KEYWORD(parse_keyword_for), parse_token_type_string, KEYWORD(parse_keyword_in), symbol_argument_list}
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};
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RESOLVE_ONLY(for_header)
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PRODUCTIONS(while_header) =
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{
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{KEYWORD(parse_keyword_while), symbol_job}
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};
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RESOLVE_ONLY(while_header)
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PRODUCTIONS(begin_header) =
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{
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{KEYWORD(parse_keyword_begin)}
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};
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RESOLVE_ONLY(begin_header)
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PRODUCTIONS(function_header) =
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{
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{KEYWORD(parse_keyword_function), symbol_argument, symbol_argument_list}
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};
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RESOLVE_ONLY(function_header)
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/* A boolean statement is AND or OR or NOT */
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PRODUCTIONS(boolean_statement) =
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{
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{KEYWORD(parse_keyword_and), symbol_statement},
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{KEYWORD(parse_keyword_or), symbol_statement},
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{KEYWORD(parse_keyword_not), symbol_statement}
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};
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RESOLVE(boolean_statement)
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{
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switch (token1.keyword)
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{
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case parse_keyword_and:
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return 0;
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case parse_keyword_or:
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return 1;
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case parse_keyword_not:
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return 2;
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default:
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return NO_PRODUCTION;
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}
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}
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PRODUCTIONS(decorated_statement) =
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{
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{symbol_plain_statement},
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{KEYWORD(parse_keyword_command), symbol_plain_statement},
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{KEYWORD(parse_keyword_builtin), symbol_plain_statement},
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};
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RESOLVE(decorated_statement)
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{
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/* If this is e.g. 'command --help' then the command is 'command' and not a decoration. If the second token is not a string, then this is a naked 'command' and we should execute it as undecorated. */
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if (token2.type != parse_token_type_string || token2.has_dash_prefix)
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{
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return 0;
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}
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switch (token1.keyword)
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{
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default:
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return 0;
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case parse_keyword_command:
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return 1;
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case parse_keyword_builtin:
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return 2;
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}
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}
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PRODUCTIONS(plain_statement) =
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{
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{parse_token_type_string, symbol_arguments_or_redirections_list, symbol_optional_background}
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};
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RESOLVE_ONLY(plain_statement)
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PRODUCTIONS(arguments_or_redirections_list) =
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{
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{},
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{symbol_argument_or_redirection, symbol_arguments_or_redirections_list}
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};
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RESOLVE(arguments_or_redirections_list)
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{
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switch (token1.type)
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{
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case parse_token_type_string:
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case parse_token_type_redirection:
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return 1;
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default:
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return 0;
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}
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}
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PRODUCTIONS(argument_or_redirection) =
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{
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{symbol_argument},
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{symbol_redirection}
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};
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RESOLVE(argument_or_redirection)
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{
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switch (token1.type)
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{
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case parse_token_type_string:
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return 0;
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case parse_token_type_redirection:
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return 1;
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default:
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return NO_PRODUCTION;
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}
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}
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PRODUCTIONS(argument) =
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{
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{parse_token_type_string}
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};
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RESOLVE_ONLY(argument)
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PRODUCTIONS(redirection) =
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{
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{parse_token_type_redirection, parse_token_type_string}
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};
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RESOLVE_ONLY(redirection)
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PRODUCTIONS(optional_background) =
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{
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{},
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{ parse_token_type_background }
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};
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RESOLVE(optional_background)
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{
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switch (token1.type)
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{
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case parse_token_type_background:
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return 1;
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default:
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return 0;
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}
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}
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PRODUCTIONS(end_command) =
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{
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{KEYWORD(parse_keyword_end)}
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};
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RESOLVE_ONLY(end_command)
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#define TEST(sym) case (symbol_##sym): production_list = & productions_ ## sym ; resolver = resolve_ ## sym ; break;
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const production_t *parse_productions::production_for_token(parse_token_type_t node_type, const parse_token_t &input1, const parse_token_t &input2, production_option_idx_t *out_which_production, wcstring *out_error_text)
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{
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bool log_it = false;
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if (log_it)
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{
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fprintf(stderr, "Resolving production for %ls with input token <%ls>\n", token_type_description(node_type).c_str(), input1.describe().c_str());
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}
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/* Fetch the list of productions and the function to resolve them */
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const production_options_t *production_list = NULL;
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production_option_idx_t (*resolver)(const parse_token_t &input1, const parse_token_t &input2) = NULL;
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switch (node_type)
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{
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TEST(job_list)
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TEST(job)
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TEST(statement)
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TEST(job_continuation)
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TEST(boolean_statement)
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TEST(block_statement)
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TEST(if_statement)
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TEST(if_clause)
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TEST(else_clause)
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TEST(else_continuation)
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TEST(switch_statement)
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TEST(decorated_statement)
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TEST(case_item_list)
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TEST(case_item)
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TEST(argument_list)
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TEST(block_header)
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TEST(for_header)
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TEST(while_header)
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TEST(begin_header)
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TEST(function_header)
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TEST(plain_statement)
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TEST(arguments_or_redirections_list)
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TEST(argument_or_redirection)
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TEST(argument)
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TEST(redirection)
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TEST(optional_background)
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TEST(end_command)
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case parse_token_type_string:
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case parse_token_type_pipe:
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case parse_token_type_redirection:
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case parse_token_type_background:
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case parse_token_type_end:
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case parse_token_type_terminate:
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fprintf(stderr, "Terminal token type %ls passed to %s\n", token_type_description(node_type).c_str(), __FUNCTION__);
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PARSER_DIE();
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break;
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case parse_special_type_parse_error:
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case parse_special_type_tokenizer_error:
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case parse_special_type_comment:
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fprintf(stderr, "Special type %ls passed to %s\n", token_type_description(node_type).c_str(), __FUNCTION__);
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PARSER_DIE();
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break;
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case token_type_invalid:
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fprintf(stderr, "token_type_invalid passed to %s\n", __FUNCTION__);
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PARSER_DIE();
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break;
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}
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PARSE_ASSERT(production_list != NULL);
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PARSE_ASSERT(resolver != NULL);
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const production_t *result = NULL;
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production_option_idx_t which = resolver(input1, input2);
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if (log_it)
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{
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fprintf(stderr, "\tresolved to %u\n", (unsigned)which);
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}
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if (which == NO_PRODUCTION)
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{
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if (log_it)
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{
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fprintf(stderr, "Node type '%ls' has no production for input '%ls' (in %s)\n", token_type_description(node_type).c_str(), input1.describe().c_str(), __FUNCTION__);
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}
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result = NULL;
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}
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else
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{
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PARSE_ASSERT(production_is_valid(*production_list, which));
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result = &((*production_list)[which]);
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}
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*out_which_production = which;
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return result;
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}
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