353 lines
14 KiB
Text
353 lines
14 KiB
Text
/*
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* Copyright (c) 2020 Raspberry Pi (Trading) Ltd.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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%skeleton "lalr1.cc" /* -*- C++ -*- */
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%require "3.4.2"
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%defines
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%define api.token.constructor
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%define api.value.type variant
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/*%define parse.assert*/
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%define api.location.file "location.h"
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%define parse.lac full
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/* define parse.trace*/
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%define parse.error verbose
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%no-lines
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%locations
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%code requires {
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#include <string>
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#include <fstream>
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#include <sstream>
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#include "pio_types.h"
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struct pio_assembler;
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#ifdef _MSC_VER
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#pragma warning(disable : 4065) // default only switch statement
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#endif
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}
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// The parsing context.
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%param { pio_assembler& pioasm }
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%code {
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#include "pio_assembler.h"
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#ifdef _MSC_VER
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#pragma warning(disable : 4244) // possible loss of data (valid warning, but there is a software check / missing cast)
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#endif
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}
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%define api.token.prefix {TOK_}
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%token
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END 0 "end of file"
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NEWLINE "end of line"
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COMMA ","
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COLON ":"
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LPAREN "("
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RPAREN ")"
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LBRACKET "["
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RBRACKET "]"
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PLUS "+"
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MINUS "-"
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MULTIPLY "*"
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DIVIDE "/"
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OR "|"
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AND "&"
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XOR "^"
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POST_DECREMENT "--"
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NOT_EQUAL "!="
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NOT "!"
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REVERSE "::"
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EQUAL "="
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PROGRAM ".program"
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WRAP_TARGET ".wrap_target"
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WRAP ".wrap"
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DEFINE ".define"
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SIDE_SET ".side_set"
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WORD ".word"
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ORIGIN ".origin"
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LANG_OPT ".lang_opt"
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JMP "jmp"
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WAIT "wait"
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IN "in"
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OUT "out"
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PUSH "push"
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PULL "pull"
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MOV "mov"
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IRQ "irq"
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SET "set"
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NOP "nop"
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PIN "pin"
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GPIO "gpio"
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OSRE "osre"
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PINS "pins"
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NULL "null"
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PINDIRS "pindirs"
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BLOCK "block"
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NOBLOCK "noblock"
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IFEMPTY "ifempty"
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IFFULL "iffull"
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NOWAIT "nowait"
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CLEAR "clear"
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REL "rel"
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X "x"
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Y "y"
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EXEC "exec"
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PC "pc"
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ISR "isr"
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OSR "osr"
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OPTIONAL "opt"
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SIDE "side"
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STATUS "status"
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PUBLIC "public"
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;
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%token
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<std::string> ID "identifier"
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<std::string> STRING "string"
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<std::string> NON_WS "text"
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<std::string> CODE_BLOCK_START "code block"
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<std::string> CODE_BLOCK_CONTENTS "%}" // bit ugly but if there is no end this is what we will be missing
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<std::string> UNKNOWN_DIRECTIVE
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<int> INT "integer"
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;
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%left REVERSE
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%left PLUS MINUS
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%left MULTIPLY DIVIDE
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%left AND OR XOR
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%printer { yyo << "..."; } <*>;
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%%
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file:
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lines END { if (pioasm.error_count || pioasm.write_output()) YYABORT; }
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;
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lines:
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line
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| lines NEWLINE line;
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line:
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PROGRAM ID { if (!pioasm.add_program(@$, $2)) { std::stringstream msg; msg << "program " << $2 << " already exists"; error(@$, msg.str()); abort(); } }
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| directive
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| instruction { pioasm.get_current_program(@1, "instruction").add_instruction($1); }
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| label_decl instruction { auto &p = pioasm.get_current_program(@2, "instruction"); p.add_label($1); p.add_instruction($2); }
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| label_decl { pioasm.get_current_program(@1, "label").add_label($1); }
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| code_block
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| %empty
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| error { if (pioasm.error_count > 6) { std::cerr << "\ntoo many errors; aborting.\n"; YYABORT; } }
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;
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code_block:
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CODE_BLOCK_START CODE_BLOCK_CONTENTS { std::string of = $1; if (of.empty()) of = output_format::default_name; pioasm.get_current_program(@$, "code block", false, false).add_code_block( code_block(@$, of, $2)); }
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%type <std::shared_ptr<symbol>> label_decl;
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label_decl:
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symbol_def COLON { $1->is_label = true; $$ = $1; }
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directive:
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DEFINE symbol_def expression { $2->is_label = false; $2->value = $3; pioasm.get_current_program(@1, ".define", false, false).add_symbol($2); }
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| ORIGIN value { pioasm.get_current_program(@1, ".origin", true).set_origin(@$, $2); }
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| SIDE_SET value OPTIONAL PINDIRS { pioasm.get_current_program(@1, ".side_set", true).set_sideset(@$, $2, true, true); }
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| SIDE_SET value OPTIONAL { pioasm.get_current_program(@1, ".side_set", true).set_sideset(@$, $2, true, false); }
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| SIDE_SET value PINDIRS { pioasm.get_current_program(@1, ".side_set", true).set_sideset(@$, $2, false, true); }
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| SIDE_SET value { pioasm.get_current_program(@1, ".side_set", true).set_sideset(@$, $2, false, false); }
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| WRAP_TARGET { pioasm.get_current_program(@1, ".wrap_target").set_wrap_target(@$); }
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| WRAP { pioasm.get_current_program(@1, ".wrap").set_wrap(@$); }
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| WORD value { pioasm.get_current_program(@1, "instruction").add_instruction(std::shared_ptr<instruction>(new instr_word(@$, $2))); }
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| LANG_OPT NON_WS NON_WS EQUAL INT { pioasm.get_current_program(@1, ".lang_opt").add_lang_opt($2, $3, std::to_string($5)); }
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| LANG_OPT NON_WS NON_WS EQUAL STRING { pioasm.get_current_program(@1, ".lang_opt").add_lang_opt($2, $3, $5); }
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| LANG_OPT NON_WS NON_WS EQUAL NON_WS { pioasm.get_current_program(@1, ".lang_opt").add_lang_opt($2, $3, $5); }
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| LANG_OPT error { error(@$, "expected format is .lang_opt language option_name = option_value"); }
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| UNKNOWN_DIRECTIVE { std::stringstream msg; msg << "unknown directive " << $1; throw syntax_error(@$, msg.str()); }
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;
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/* value is a more limited top level expression... requiring parenthesis */
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%type <std::shared_ptr<resolvable>> value;
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value: INT { $$ = resolvable_int(@$, $1); }
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| ID { $$ = std::shared_ptr<resolvable>(new name_ref(@$, $1)); }
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| LPAREN expression RPAREN { $$ = $2; }
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%type <std::shared_ptr<resolvable>> expression;
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expression:
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value
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| expression PLUS expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::add, $1, $3)); }
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| expression MINUS expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::subtract, $1, $3)); }
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| expression MULTIPLY expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::multiply, $1, $3)); }
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| expression DIVIDE expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::divide, $1, $3)); }
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| expression OR expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::or_, $1, $3)); }
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| expression AND expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::and_, $1, $3)); }
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| expression XOR expression { $$ = std::shared_ptr<binary_operation>(new binary_operation(@$, binary_operation::xor_, $1, $3)); }
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| MINUS expression { $$ = std::shared_ptr<unary_operation>(new unary_operation(@$, unary_operation::negate, $2)); }
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| REVERSE expression { $$ = std::shared_ptr<unary_operation>(new unary_operation(@$, unary_operation::reverse, $2)); }
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%type <std::shared_ptr<instruction>> instruction;
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instruction:
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base_instruction sideset delay { $$ = $1; $$->sideset = $2; $$->delay = $3; }
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| base_instruction delay sideset { $$ = $1; $$->delay = $2; $$->sideset = $3; }
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| base_instruction sideset { $$ = $1; $$->sideset = $2; $$->delay = resolvable_int(@$, 0); }
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| base_instruction delay { $$ = $1; $$->delay = $2; }
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| base_instruction { $$ = $1; $$->delay = resolvable_int(@$, 0); }
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%type <std::shared_ptr<instruction>> base_instruction;
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base_instruction:
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NOP { $$ = std::shared_ptr<instruction>(new instr_nop(@$)); }
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| JMP condition comma expression { $$ = std::shared_ptr<instruction>(new instr_jmp(@$, $2, $4)); }
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| WAIT value wait_source { $$ = std::shared_ptr<instruction>(new instr_wait(@$, $2, $3)); }
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| WAIT value COMMA value { std::stringstream msg; location l; l.begin = @2.end; l.end = @3.end; msg << "expected irq, gpio or pin after the polarity value and before the \",\""; throw yy::parser::syntax_error(l, msg.str()); }
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| WAIT wait_source { $$ = std::shared_ptr<instruction>(new instr_wait(@$, resolvable_int(@$, 1), $2)); }
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| IN in_source comma value { $$ = std::shared_ptr<instruction>(new instr_in(@$, $2, $4)); }
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| OUT out_target comma value { $$ = std::shared_ptr<instruction>(new instr_out(@$, $2, $4)); }
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| PUSH if_full blocking { $$ = std::shared_ptr<instruction>(new instr_push(@$, $2, $3)); }
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| PULL if_empty blocking { $$ = std::shared_ptr<instruction>(new instr_pull(@$, $2, $3)); }
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| MOV mov_target comma mov_op mov_source { $$ = std::shared_ptr<instruction>(new instr_mov(@$, $2, $5, $4)); }
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| IRQ irq_modifiers value REL { $$ = std::shared_ptr<instruction>(new instr_irq(@$, $2, $3, true)); }
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| IRQ irq_modifiers value { $$ = std::shared_ptr<instruction>(new instr_irq(@$, $2, $3)); }
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| SET set_target comma value { $$ = std::shared_ptr<instruction>(new instr_set(@$, $2, $4)); }
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;
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%type <std::shared_ptr<resolvable>> delay;
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delay:
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LBRACKET expression RBRACKET { $$ = $2; }
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%type <std::shared_ptr<resolvable>> sideset;
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sideset:
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SIDE value { $$ = $2; }
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%type <enum condition> condition;
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condition:
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NOT X { $$ = condition::xz; }
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| X POST_DECREMENT { $$ = condition::xnz__; }
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| NOT Y { $$ = condition::yz; }
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| Y POST_DECREMENT { $$ = condition::ynz__; }
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| X NOT_EQUAL Y { $$ = condition::xney; }
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| PIN { $$ = condition::pin; }
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| NOT OSRE { $$ = condition::osrez; }
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| %empty { $$ = condition::al; }
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%type <std::shared_ptr<wait_source>> wait_source;
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wait_source:
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IRQ comma value REL { $$ = std::shared_ptr<wait_source>(new wait_source(wait_source::irq, $3, true)); }
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| IRQ comma value { $$ = std::shared_ptr<wait_source>(new wait_source(wait_source::irq, $3, false)); }
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| GPIO comma value { $$ = std::shared_ptr<wait_source>(new wait_source(wait_source::gpio, $3)); }
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| PIN comma value { $$ = std::shared_ptr<wait_source>(new wait_source(wait_source::pin, $3)); }
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comma: COMMA | %empty /* not a huge fan of forcing commas */
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%type <enum in_out_set> in_source;
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in_source: PINS { $$ = in_out_set::in_out_set_pins; }
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| X { $$ = in_out_set::in_out_set_x; }
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| Y { $$ = in_out_set::in_out_set_y; }
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| NULL { $$ = in_out_set::in_out_null; }
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| ISR { $$ = in_out_set::in_out_isr; }
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| OSR { $$ = in_out_set::in_osr; }
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| STATUS { $$ = in_out_set::in_status; }
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%type <enum in_out_set> out_target;
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out_target: PINS { $$ = in_out_set::in_out_set_pins; }
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| X { $$ = in_out_set::in_out_set_x; }
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| Y { $$ = in_out_set::in_out_set_y; }
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| NULL { $$ = in_out_set::in_out_null; }
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| PINDIRS { $$ = in_out_set::in_out_set_pindirs; }
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| ISR { $$ = in_out_set::in_out_isr; }
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| PC { $$ = in_out_set::out_set_pc; }
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| EXEC { $$ = in_out_set::out_exec; }
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%type <enum mov> mov_target;
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mov_target: PINS { $$ = mov::pins; }
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| X { $$ = mov::x; }
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| Y { $$ = mov::y; }
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| EXEC { $$ = mov::exec; }
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| PC { $$ = mov::pc; }
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| ISR { $$ = mov::isr; }
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| OSR { $$ = mov::osr; }
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%type <enum mov> mov_source;
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mov_source: PINS { $$ = mov::pins; }
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| X { $$ = mov::x; }
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| Y { $$ = mov::y; }
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| NULL { $$ = mov::null; }
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| STATUS { $$ = mov::status; }
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| ISR { $$ = mov::isr; }
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| OSR { $$ = mov::osr; }
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%type <enum mov_op> mov_op;
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mov_op:
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NOT { $$ = mov_op::invert; }
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| REVERSE { $$ = mov_op::bit_reverse; }
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| %empty { $$ = mov_op::none; }
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%type <enum in_out_set> set_target;
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set_target:
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PINS { $$ = in_out_set::in_out_set_pins; }
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| X { $$ = in_out_set::in_out_set_x; }
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| Y { $$ = in_out_set::in_out_set_y; }
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| PINDIRS { $$ = in_out_set::in_out_set_pindirs; }
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%type <bool> if_full;
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if_full:
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IFFULL { $$ = true; }
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| %empty { $$ = false; }
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%type <bool> if_empty;
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if_empty:
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IFEMPTY { $$ = true; }
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| %empty { $$ = false; }
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%type <bool> blocking;
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blocking:
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BLOCK { $$ = true; }
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| NOBLOCK { $$ = false; }
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| %empty { $$ = true; }
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%type <enum irq> irq_modifiers;
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irq_modifiers:
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CLEAR { $$ = irq::clear; }
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| WAIT { $$ = irq::set_wait; }
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| NOWAIT { $$ = irq::set; }
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| SET { $$ = irq::set; }
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| %empty { $$ = irq::set; }
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%type <std::shared_ptr<symbol>> symbol_def;
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symbol_def:
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ID { $$ = std::shared_ptr<symbol>(new symbol(@$, $1)); }
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| PUBLIC ID { $$ = std::shared_ptr<symbol>(new symbol(@$, $2, true)); }
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| MULTIPLY ID { $$ = std::shared_ptr<symbol>(new symbol(@$, $2, true)); }
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%%
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void yy::parser::error(const location_type& l, const std::string& m)
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{
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if (l.begin.filename) {
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std::cerr << l << ": " << m << '\n';
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pioasm.error_count++;
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if (l.begin.line == l.end.line && *l.begin.filename == *l.end.filename) {
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std::ifstream file(l.begin.filename->c_str());
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std::string line;
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for(int i = 0; i < l.begin.line; ++i) {
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std::getline(file, line);
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}
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fprintf(stderr, "%5d | %s\n", l.begin.line, line.c_str());
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fprintf(stderr, "%5s | %*s", "", l.begin.column, "^");
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for (int i = l.begin.column; i < l.end.column - 1; i++) {
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putc ('~', stderr);
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}
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putc ('\n', stderr);
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}
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} else {
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std::cerr << m << '\n';
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}
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}
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