1 | /* tc-tic4x.c -- Assemble for the Texas Instruments TMS320C[34]x.
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2 | Copyright (C) 1997,1998, 2002, 2003 Free Software Foundation.
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3 |
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4 | Contributed by Michael P. Hayes (m.hayes@elec.canterbury.ac.nz)
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5 |
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6 | This file is part of GAS, the GNU Assembler.
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7 |
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8 | GAS is free software; you can redistribute it and/or modify
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9 | it under the terms of the GNU General Public License as published by
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10 | the Free Software Foundation; either version 2, or (at your option)
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11 | any later version.
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12 |
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13 | GAS is distributed in the hope that it will be useful,
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14 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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15 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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16 | GNU General Public License for more details.
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17 |
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18 | You should have received a copy of the GNU General Public License
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19 | along with GAS; see the file COPYING. If not, write to
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20 | the Free Software Foundation, 59 Temple Place - Suite 330,
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21 | Boston, MA 02111-1307, USA. */
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22 | /*
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23 | TODOs:
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24 | ------
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25 |
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26 | o .align cannot handle fill-data-width larger than 0xFF/8-bits. It
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27 | should be possible to define a 32-bits pattern.
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28 |
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29 | o .align fills all section with NOP's when used regardless if has
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30 | been used in .text or .data. (However the .align is primarely
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31 | intended used in .text sections. If you require something else,
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32 | use .align <size>,0x00)
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33 |
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34 | o .align: Implement a 'bu' insn if the number of nop's exeeds 4
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35 | within the align frag. if(fragsize>4words) insert bu fragend+1
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36 | first.
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37 |
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38 | o .usect if has symbol on previous line not implemented
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39 |
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40 | o .sym, .eos, .stag, .etag, .member not implemented
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41 |
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42 | o Evaluation of constant floating point expressions (expr.c needs
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43 | work!)
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44 |
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45 | o Support 'abc' constants (that is 0x616263)
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46 | */
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47 |
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48 | #include <stdio.h>
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49 | #include <ctype.h>
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50 |
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51 | #include "as.h"
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52 | #include "opcode/tic4x.h"
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53 | #include "subsegs.h"
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54 | #include "obstack.h"
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55 | #include "symbols.h"
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56 | #include "listing.h"
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57 |
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58 | /* OK, we accept a syntax similar to the other well known C30
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59 | assembly tools. With TIC4X_ALT_SYNTAX defined we are more
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60 | flexible, allowing a more Unix-like syntax: `%' in front of
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61 | register names, `#' in front of immediate constants, and
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62 | not requiring `@' in front of direct addresses. */
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63 |
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64 | #define TIC4X_ALT_SYNTAX
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65 |
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66 | /* Equal to MAX_PRECISION in atof-ieee.c. */
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67 | #define MAX_LITTLENUMS 6 /* (12 bytes) */
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68 |
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69 | /* Handle of the inst mnemonic hash table. */
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70 | static struct hash_control *tic4x_op_hash = NULL;
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71 |
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72 | /* Handle asg pseudo. */
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73 | static struct hash_control *tic4x_asg_hash = NULL;
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74 |
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75 | static unsigned int tic4x_cpu = 0; /* Default to TMS320C40. */
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76 | static unsigned int tic4x_revision = 0; /* CPU revision */
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77 | static unsigned int tic4x_idle2 = 0; /* Idle2 support */
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78 | static unsigned int tic4x_lowpower = 0; /* Lowpower support */
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79 | static unsigned int tic4x_enhanced = 0; /* Enhanced opcode support */
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80 | static unsigned int tic4x_big_model = 0; /* Default to small memory model. */
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81 | static unsigned int tic4x_reg_args = 0; /* Default to args passed on stack. */
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82 | static unsigned long tic4x_oplevel = 0; /* Opcode level */
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83 |
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84 | #define OPTION_CPU 'm'
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85 | #define OPTION_BIG (OPTION_MD_BASE + 1)
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86 | #define OPTION_SMALL (OPTION_MD_BASE + 2)
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87 | #define OPTION_MEMPARM (OPTION_MD_BASE + 3)
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88 | #define OPTION_REGPARM (OPTION_MD_BASE + 4)
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89 | #define OPTION_IDLE2 (OPTION_MD_BASE + 5)
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90 | #define OPTION_LOWPOWER (OPTION_MD_BASE + 6)
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91 | #define OPTION_ENHANCED (OPTION_MD_BASE + 7)
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92 | #define OPTION_REV (OPTION_MD_BASE + 8)
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93 |
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94 | CONST char *md_shortopts = "bm:prs";
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95 | struct option md_longopts[] =
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96 | {
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97 | { "mcpu", required_argument, NULL, OPTION_CPU },
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98 | { "mdsp", required_argument, NULL, OPTION_CPU },
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99 | { "mbig", no_argument, NULL, OPTION_BIG },
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100 | { "msmall", no_argument, NULL, OPTION_SMALL },
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101 | { "mmemparm", no_argument, NULL, OPTION_MEMPARM },
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102 | { "mregparm", no_argument, NULL, OPTION_REGPARM },
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103 | { "midle2", no_argument, NULL, OPTION_IDLE2 },
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104 | { "mlowpower", no_argument, NULL, OPTION_LOWPOWER },
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105 | { "menhanced", no_argument, NULL, OPTION_ENHANCED },
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106 | { "mrev", required_argument, NULL, OPTION_REV },
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107 | { NULL, no_argument, NULL, 0 }
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108 | };
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109 |
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110 | size_t md_longopts_size = sizeof (md_longopts);
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111 |
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112 |
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113 | typedef enum
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114 | {
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115 | M_UNKNOWN, M_IMMED, M_DIRECT, M_REGISTER, M_INDIRECT,
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116 | M_IMMED_F, M_PARALLEL, M_HI
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117 | }
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118 | tic4x_addr_mode_t;
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119 |
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120 | typedef struct tic4x_operand
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121 | {
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122 | tic4x_addr_mode_t mode; /* Addressing mode. */
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123 | expressionS expr; /* Expression. */
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124 | int disp; /* Displacement for indirect addressing. */
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125 | int aregno; /* Aux. register number. */
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126 | LITTLENUM_TYPE fwords[MAX_LITTLENUMS]; /* Float immed. number. */
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127 | }
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128 | tic4x_operand_t;
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129 |
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130 | typedef struct tic4x_insn
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131 | {
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132 | char name[TIC4X_NAME_MAX]; /* Mnemonic of instruction. */
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133 | unsigned int in_use; /* True if in_use. */
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134 | unsigned int parallel; /* True if parallel instruction. */
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135 | unsigned int nchars; /* This is always 4 for the C30. */
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136 | unsigned long opcode; /* Opcode number. */
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137 | expressionS exp; /* Expression required for relocation. */
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138 | int reloc; /* Relocation type required. */
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139 | int pcrel; /* True if relocation PC relative. */
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140 | char *pname; /* Name of instruction in parallel. */
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141 | unsigned int num_operands; /* Number of operands in total. */
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142 | tic4x_inst_t *inst; /* Pointer to first template. */
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143 | tic4x_operand_t operands[TIC4X_OPERANDS_MAX];
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144 | }
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145 | tic4x_insn_t;
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146 |
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147 | static tic4x_insn_t the_insn; /* Info about our instruction. */
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148 | static tic4x_insn_t *insn = &the_insn;
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149 |
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150 | static int tic4x_gen_to_words
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151 | PARAMS ((FLONUM_TYPE, LITTLENUM_TYPE *, int ));
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152 | static char *tic4x_atof
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153 | PARAMS ((char *, char, LITTLENUM_TYPE * ));
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154 | static void tic4x_insert_reg
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155 | PARAMS ((char *, int ));
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156 | static void tic4x_insert_sym
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157 | PARAMS ((char *, int ));
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158 | static char *tic4x_expression
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159 | PARAMS ((char *, expressionS *));
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160 | static char *tic4x_expression_abs
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161 | PARAMS ((char *, int *));
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162 | static void tic4x_emit_char
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163 | PARAMS ((char, int));
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164 | static void tic4x_seg_alloc
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165 | PARAMS ((char *, segT, int, symbolS *));
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166 | static void tic4x_asg
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167 | PARAMS ((int));
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168 | static void tic4x_bss
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169 | PARAMS ((int));
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170 | static void tic4x_globl
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171 | PARAMS ((int));
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172 | static void tic4x_cons
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173 | PARAMS ((int));
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174 | static void tic4x_stringer
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175 | PARAMS ((int));
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176 | static void tic4x_eval
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177 | PARAMS ((int));
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178 | static void tic4x_newblock
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179 | PARAMS ((int));
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180 | static void tic4x_sect
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181 | PARAMS ((int));
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182 | static void tic4x_set
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183 | PARAMS ((int));
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184 | static void tic4x_usect
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185 | PARAMS ((int));
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186 | static void tic4x_version
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187 | PARAMS ((int));
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188 | static void tic4x_init_regtable
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189 | PARAMS ((void));
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190 | static void tic4x_init_symbols
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191 | PARAMS ((void));
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192 | static int tic4x_inst_insert
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193 | PARAMS ((tic4x_inst_t *));
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194 | static tic4x_inst_t *tic4x_inst_make
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195 | PARAMS ((char *, unsigned long, char *));
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196 | static int tic4x_inst_add
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197 | PARAMS ((tic4x_inst_t *));
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198 | void md_begin
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199 | PARAMS ((void));
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200 | void tic4x_end
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201 | PARAMS ((void));
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202 | static int tic4x_indirect_parse
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203 | PARAMS ((tic4x_operand_t *, const tic4x_indirect_t *));
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204 | static char *tic4x_operand_parse
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205 | PARAMS ((char *, tic4x_operand_t *));
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206 | static int tic4x_operands_match
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207 | PARAMS ((tic4x_inst_t *, tic4x_insn_t *, int));
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208 | static void tic4x_insn_check
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209 | PARAMS ((tic4x_insn_t *));
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210 | static void tic4x_insn_output
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211 | PARAMS ((tic4x_insn_t *));
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212 | static int tic4x_operands_parse
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213 | PARAMS ((char *, tic4x_operand_t *, int ));
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214 | void md_assemble
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215 | PARAMS ((char *));
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216 | void tic4x_cleanup
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217 | PARAMS ((void));
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218 | char *md_atof
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219 | PARAMS ((int, char *, int *));
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220 | void md_apply_fix3
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221 | PARAMS ((fixS *, valueT *, segT ));
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222 | void md_convert_frag
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223 | PARAMS ((bfd *, segT, fragS *));
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224 | void md_create_short_jump
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225 | PARAMS ((char *, addressT, addressT, fragS *, symbolS *));
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226 | void md_create_long_jump
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227 | PARAMS ((char *, addressT, addressT, fragS *, symbolS *));
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228 | int md_estimate_size_before_relax
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229 | PARAMS ((register fragS *, segT));
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230 | int md_parse_option
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231 | PARAMS ((int, char *));
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232 | void md_show_usage
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233 | PARAMS ((FILE *));
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234 | int tic4x_unrecognized_line
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235 | PARAMS ((int));
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236 | symbolS *md_undefined_symbol
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237 | PARAMS ((char *));
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238 | void md_operand
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239 | PARAMS ((expressionS *));
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240 | valueT md_section_align
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241 | PARAMS ((segT, valueT));
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242 | static int tic4x_pc_offset
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243 | PARAMS ((unsigned int));
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244 | long md_pcrel_from
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245 | PARAMS ((fixS *));
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246 | int tic4x_do_align
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247 | PARAMS ((int, const char *, int, int));
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248 | void tic4x_start_line
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249 | PARAMS ((void));
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250 | arelent *tc_gen_reloc
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251 | PARAMS ((asection *, fixS *));
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252 |
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253 |
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254 | const pseudo_typeS
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255 | md_pseudo_table[] =
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256 | {
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257 | {"align", s_align_bytes, 32},
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258 | {"ascii", tic4x_stringer, 1},
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259 | {"asciz", tic4x_stringer, 0},
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260 | {"asg", tic4x_asg, 0},
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261 | {"block", s_space, 4},
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262 | {"byte", tic4x_cons, 1},
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263 | {"bss", tic4x_bss, 0},
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264 | {"copy", s_include, 0},
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265 | {"def", tic4x_globl, 0},
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266 | {"equ", tic4x_set, 0},
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267 | {"eval", tic4x_eval, 0},
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268 | {"global", tic4x_globl, 0},
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269 | {"globl", tic4x_globl, 0},
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270 | {"hword", tic4x_cons, 2},
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271 | {"ieee", float_cons, 'i'},
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272 | {"int", tic4x_cons, 4}, /* .int allocates 4 bytes. */
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273 | {"ldouble", float_cons, 'e'},
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274 | {"newblock", tic4x_newblock, 0},
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275 | {"ref", s_ignore, 0}, /* All undefined treated as external. */
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276 | {"set", tic4x_set, 0},
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277 | {"sect", tic4x_sect, 1}, /* Define named section. */
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278 | {"space", s_space, 4},
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279 | {"string", tic4x_stringer, 0},
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280 | {"usect", tic4x_usect, 0}, /* Reserve space in uninit. named sect. */
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281 | {"version", tic4x_version, 0},
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282 | {"word", tic4x_cons, 4}, /* .word allocates 4 bytes. */
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283 | {"xdef", tic4x_globl, 0},
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284 | {NULL, 0, 0},
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285 | };
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286 |
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287 | int md_short_jump_size = 4;
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288 | int md_long_jump_size = 4;
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289 | const int md_reloc_size = RELSZ; /* Coff headers. */
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290 |
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291 | /* This array holds the chars that always start a comment. If the
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292 | pre-processor is disabled, these aren't very useful. */
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293 | #ifdef TIC4X_ALT_SYNTAX
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294 | const char comment_chars[] = ";!";
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295 | #else
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296 | const char comment_chars[] = ";";
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297 | #endif
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298 |
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299 | /* This array holds the chars that only start a comment at the beginning of
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300 | a line. If the line seems to have the form '# 123 filename'
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301 | .line and .file directives will appear in the pre-processed output.
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302 | Note that input_file.c hand checks for '#' at the beginning of the
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303 | first line of the input file. This is because the compiler outputs
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304 | #NO_APP at the beginning of its output.
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305 | Also note that comments like this one will always work. */
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306 | const char line_comment_chars[] = "#*";
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307 |
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308 | /* We needed an unused char for line separation to work around the
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309 | lack of macros, using sed and such. */
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310 | const char line_separator_chars[] = "&";
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311 |
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312 | /* Chars that can be used to separate mant from exp in floating point nums. */
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313 | const char EXP_CHARS[] = "eE";
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314 |
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315 | /* Chars that mean this number is a floating point constant. */
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316 | /* As in 0f12.456 */
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317 | /* or 0d1.2345e12 */
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318 | const char FLT_CHARS[] = "fFilsS";
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319 |
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320 | /* Also be aware that MAXIMUM_NUMBER_OF_CHARS_FOR_FLOAT may have to be
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321 | changed in read.c. Ideally it shouldn't have to know about it at
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322 | all, but nothing is ideal around here. */
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323 |
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324 | /* Flonums returned here. */
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325 | extern FLONUM_TYPE generic_floating_point_number;
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326 |
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327 | /* Precision in LittleNums. */
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328 | #define MAX_PRECISION (4) /* Its a bit overkill for us, but the code
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329 | reqires it... */
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330 | #define S_PRECISION (1) /* Short float constants 16-bit. */
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331 | #define F_PRECISION (2) /* Float and double types 32-bit. */
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332 | #define E_PRECISION (4) /* Extended precision, 64-bit (real 40-bit). */
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333 | #define GUARD (2)
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334 |
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335 | /* Turn generic_floating_point_number into a real short/float/double. */
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336 | static int
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337 | tic4x_gen_to_words (flonum, words, precision)
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338 | FLONUM_TYPE flonum;
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339 | LITTLENUM_TYPE *words;
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340 | int precision;
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341 | {
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342 | int return_value = 0;
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343 | LITTLENUM_TYPE *p; /* Littlenum pointer. */
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344 | int mantissa_bits; /* Bits in mantissa field. */
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345 | int exponent_bits; /* Bits in exponent field. */
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346 | int exponent;
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347 | unsigned int sone; /* Scaled one. */
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348 | unsigned int sfract; /* Scaled fraction. */
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349 | unsigned int smant; /* Scaled mantissa. */
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350 | unsigned int tmp;
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351 | unsigned int mover; /* Mantissa overflow bits */
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352 | unsigned int rbit; /* Round bit. */
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353 | int shift; /* Shift count. */
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354 |
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355 | /* NOTE: Svein Seldal <Svein.Seldal@solidas.com>
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356 | The code in this function is altered slightly to support floats
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357 | with 31-bits mantissas, thus the documentation below may be a
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358 | little bit inaccurate.
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359 |
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360 | By Michael P. Hayes <m.hayes@elec.canterbury.ac.nz>
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361 | Here is how a generic floating point number is stored using
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362 | flonums (an extension of bignums) where p is a pointer to an
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363 | array of LITTLENUMs.
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364 |
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365 | For example 2e-3 is stored with exp = -4 and
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366 | bits[0] = 0x0000
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367 | bits[1] = 0x0000
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368 | bits[2] = 0x4fde
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369 | bits[3] = 0x978d
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370 | bits[4] = 0x126e
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371 | bits[5] = 0x0083
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372 | with low = &bits[2], high = &bits[5], and leader = &bits[5].
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373 |
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374 | This number can be written as
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375 | 0x0083126e978d4fde.00000000 * 65536**-4 or
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376 | 0x0.0083126e978d4fde * 65536**0 or
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377 | 0x0.83126e978d4fde * 2**-8 = 2e-3
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378 |
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379 | Note that low points to the 65536**0 littlenum (bits[2]) and
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380 | leader points to the most significant non-zero littlenum
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381 | (bits[5]).
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382 |
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383 | TMS320C3X floating point numbers are a bit of a strange beast.
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384 | The 32-bit flavour has the 8 MSBs representing the exponent in
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385 | twos complement format (-128 to +127). There is then a sign bit
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386 | followed by 23 bits of mantissa. The mantissa is expressed in
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387 | twos complement format with the binary point after the most
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388 | significant non sign bit. The bit after the binary point is
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389 | suppressed since it is the complement of the sign bit. The
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390 | effective mantissa is thus 24 bits. Zero is represented by an
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391 | exponent of -128.
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392 |
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393 | The 16-bit flavour has the 4 MSBs representing the exponent in
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394 | twos complement format (-8 to +7). There is then a sign bit
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395 | followed by 11 bits of mantissa. The mantissa is expressed in
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396 | twos complement format with the binary point after the most
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397 | significant non sign bit. The bit after the binary point is
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398 | suppressed since it is the complement of the sign bit. The
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399 | effective mantissa is thus 12 bits. Zero is represented by an
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400 | exponent of -8. For example,
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401 |
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402 | number norm mant m x e s i fraction f
|
---|
403 | +0.500 => 1.00000000000 -1 -1 0 1 .00000000000 (1 + 0) * 2^(-1)
|
---|
404 | +0.999 => 1.11111111111 -1 -1 0 1 .11111111111 (1 + 0.99) * 2^(-1)
|
---|
405 | +1.000 => 1.00000000000 0 0 0 1 .00000000000 (1 + 0) * 2^(0)
|
---|
406 | +1.500 => 1.10000000000 0 0 0 1 .10000000000 (1 + 0.5) * 2^(0)
|
---|
407 | +1.999 => 1.11111111111 0 0 0 1 .11111111111 (1 + 0.9) * 2^(0)
|
---|
408 | +2.000 => 1.00000000000 1 1 0 1 .00000000000 (1 + 0) * 2^(1)
|
---|
409 | +4.000 => 1.00000000000 2 2 0 1 .00000000000 (1 + 0) * 2^(2)
|
---|
410 | -0.500 => 1.00000000000 -1 -1 1 0 .10000000000 (-2 + 0) * 2^(-2)
|
---|
411 | -1.000 => 1.00000000000 0 -1 1 0 .00000000000 (-2 + 0) * 2^(-1)
|
---|
412 | -1.500 => 1.10000000000 0 0 1 0 .10000000000 (-2 + 0.5) * 2^(0)
|
---|
413 | -1.999 => 1.11111111111 0 0 1 0 .00000000001 (-2 + 0.11) * 2^(0)
|
---|
414 | -2.000 => 1.00000000000 1 1 1 0 .00000000000 (-2 + 0) * 2^(0)
|
---|
415 | -4.000 => 1.00000000000 2 1 1 0 .00000000000 (-2 + 0) * 2^(1)
|
---|
416 |
|
---|
417 | where e is the exponent, s is the sign bit, i is the implied bit,
|
---|
418 | and f is the fraction stored in the mantissa field.
|
---|
419 |
|
---|
420 | num = (1 + f) * 2^x = m * 2^e if s = 0
|
---|
421 | num = (-2 + f) * 2^x = -m * 2^e if s = 1
|
---|
422 | where 0 <= f < 1.0 and 1.0 <= m < 2.0
|
---|
423 |
|
---|
424 | The fraction (f) and exponent (e) fields for the TMS320C3X format
|
---|
425 | can be derived from the normalised mantissa (m) and exponent (x) using:
|
---|
426 |
|
---|
427 | f = m - 1, e = x if s = 0
|
---|
428 | f = 2 - m, e = x if s = 1 and m != 1.0
|
---|
429 | f = 0, e = x - 1 if s = 1 and m = 1.0
|
---|
430 | f = 0, e = -8 if m = 0
|
---|
431 |
|
---|
432 |
|
---|
433 | OK, the other issue we have to consider is rounding since the
|
---|
434 | mantissa has a much higher potential precision than what we can
|
---|
435 | represent. To do this we add half the smallest storable fraction.
|
---|
436 | We then have to renormalise the number to allow for overflow.
|
---|
437 |
|
---|
438 | To convert a generic flonum into a TMS320C3X floating point
|
---|
439 | number, here's what we try to do....
|
---|
440 |
|
---|
441 | The first thing is to generate a normalised mantissa (m) where
|
---|
442 | 1.0 <= m < 2 and to convert the exponent from base 16 to base 2.
|
---|
443 | We desire the binary point to be placed after the most significant
|
---|
444 | non zero bit. This process is done in two steps: firstly, the
|
---|
445 | littlenum with the most significant non zero bit is located (this
|
---|
446 | is done for us since leader points to this littlenum) and the
|
---|
447 | binary point (which is currently after the LSB of the littlenum
|
---|
448 | pointed to by low) is moved to before the MSB of the littlenum
|
---|
449 | pointed to by leader. This requires the exponent to be adjusted
|
---|
450 | by leader - low + 1. In the earlier example, the new exponent is
|
---|
451 | thus -4 + (5 - 2 + 1) = 0 (base 65536). We now need to convert
|
---|
452 | the exponent to base 2 by multiplying the exponent by 16 (log2
|
---|
453 | 65536). The exponent base 2 is thus also zero.
|
---|
454 |
|
---|
455 | The second step is to hunt for the most significant non zero bit
|
---|
456 | in the leader littlenum. We do this by left shifting a copy of
|
---|
457 | the leader littlenum until bit 16 is set (0x10000) and counting
|
---|
458 | the number of shifts, S, required. The number of shifts then has to
|
---|
459 | be added to correct the exponent (base 2). For our example, this
|
---|
460 | will require 9 shifts and thus our normalised exponent (base 2) is
|
---|
461 | 0 + 9 = 9. Note that the worst case scenario is when the leader
|
---|
462 | littlenum is 1, thus requiring 16 shifts.
|
---|
463 |
|
---|
464 | We now have to left shift the other littlenums by the same amount,
|
---|
465 | propagating the shifted bits into the more significant littlenums.
|
---|
466 | To save a lot of unecessary shifting we only have to consider
|
---|
467 | two or three littlenums, since the greatest number of mantissa
|
---|
468 | bits required is 24 + 1 rounding bit. While two littlenums
|
---|
469 | provide 32 bits of precision, the most significant littlenum
|
---|
470 | may only contain a single significant bit and thus an extra
|
---|
471 | littlenum is required.
|
---|
472 |
|
---|
473 | Denoting the number of bits in the fraction field as F, we require
|
---|
474 | G = F + 2 bits (one extra bit is for rounding, the other gets
|
---|
475 | suppressed). Say we required S shifts to find the most
|
---|
476 | significant bit in the leader littlenum, the number of left shifts
|
---|
477 | required to move this bit into bit position G - 1 is L = G + S - 17.
|
---|
478 | Note that this shift count may be negative for the short floating
|
---|
479 | point flavour (where F = 11 and thus G = 13 and potentially S < 3).
|
---|
480 | If L > 0 we have to shunt the next littlenum into position. Bit
|
---|
481 | 15 (the MSB) of the next littlenum needs to get moved into position
|
---|
482 | L - 1 (If L > 15 we need all the bits of this littlenum and
|
---|
483 | some more from the next one.). We subtract 16 from L and use this
|
---|
484 | as the left shift count; the resultant value we or with the
|
---|
485 | previous result. If L > 0, we repeat this operation. */
|
---|
486 |
|
---|
487 | if (precision != S_PRECISION)
|
---|
488 | words[1] = 0x0000;
|
---|
489 | if (precision == E_PRECISION)
|
---|
490 | words[2] = words[3] = 0x0000;
|
---|
491 |
|
---|
492 | /* 0.0e0 or NaN seen. */
|
---|
493 | if (flonum.low > flonum.leader /* = 0.0e0 */
|
---|
494 | || flonum.sign == 0) /* = NaN */
|
---|
495 | {
|
---|
496 | if(flonum.sign == 0)
|
---|
497 | as_bad ("Nan, using zero.");
|
---|
498 | words[0] = 0x8000;
|
---|
499 | return return_value;
|
---|
500 | }
|
---|
501 |
|
---|
502 | if (flonum.sign == 'P')
|
---|
503 | {
|
---|
504 | /* +INF: Replace with maximum float. */
|
---|
505 | if (precision == S_PRECISION)
|
---|
506 | words[0] = 0x77ff;
|
---|
507 | else
|
---|
508 | {
|
---|
509 | words[0] = 0x7f7f;
|
---|
510 | words[1] = 0xffff;
|
---|
511 | }
|
---|
512 | if (precision == E_PRECISION)
|
---|
513 | {
|
---|
514 | words[2] = 0x7fff;
|
---|
515 | words[3] = 0xffff;
|
---|
516 | }
|
---|
517 | return return_value;
|
---|
518 | }
|
---|
519 | else if (flonum.sign == 'N')
|
---|
520 | {
|
---|
521 | /* -INF: Replace with maximum float. */
|
---|
522 | if (precision == S_PRECISION)
|
---|
523 | words[0] = 0x7800;
|
---|
524 | else
|
---|
525 | words[0] = 0x7f80;
|
---|
526 | if (precision == E_PRECISION)
|
---|
527 | words[2] = 0x8000;
|
---|
528 | return return_value;
|
---|
529 | }
|
---|
530 |
|
---|
531 | exponent = (flonum.exponent + flonum.leader - flonum.low + 1) * 16;
|
---|
532 |
|
---|
533 | if (!(tmp = *flonum.leader))
|
---|
534 | abort (); /* Hmmm. */
|
---|
535 | shift = 0; /* Find position of first sig. bit. */
|
---|
536 | while (tmp >>= 1)
|
---|
537 | shift++;
|
---|
538 | exponent -= (16 - shift); /* Adjust exponent. */
|
---|
539 |
|
---|
540 | if (precision == S_PRECISION) /* Allow 1 rounding bit. */
|
---|
541 | {
|
---|
542 | exponent_bits = 4;
|
---|
543 | mantissa_bits = 11;
|
---|
544 | }
|
---|
545 | else if(precision == F_PRECISION)
|
---|
546 | {
|
---|
547 | exponent_bits = 8;
|
---|
548 | mantissa_bits = 23;
|
---|
549 | }
|
---|
550 | else /* E_PRECISION */
|
---|
551 | {
|
---|
552 | exponent_bits = 8;
|
---|
553 | mantissa_bits = 31;
|
---|
554 | }
|
---|
555 |
|
---|
556 | shift = mantissa_bits - shift;
|
---|
557 |
|
---|
558 | smant = 0;
|
---|
559 | mover = 0;
|
---|
560 | rbit = 0;
|
---|
561 | /* Store the mantissa data into smant and the roundbit into rbit */
|
---|
562 | for (p = flonum.leader; p >= flonum.low && shift > -16; p--)
|
---|
563 | {
|
---|
564 | tmp = shift >= 0 ? *p << shift : *p >> -shift;
|
---|
565 | rbit = shift < 0 ? ((*p >> (-shift-1)) & 0x1) : 0;
|
---|
566 | smant |= tmp;
|
---|
567 | shift -= 16;
|
---|
568 | }
|
---|
569 |
|
---|
570 | /* OK, we've got our scaled mantissa so let's round it up */
|
---|
571 | if(rbit)
|
---|
572 | {
|
---|
573 | /* If the mantissa is going to overflow when added, lets store
|
---|
574 | the extra bit in mover. -- A special case exists when
|
---|
575 | mantissa_bits is 31 (E_PRECISION). Then the first test cannot
|
---|
576 | be trusted, as result is host-dependent, thus the second
|
---|
577 | test. */
|
---|
578 | if( smant == ((unsigned)(1<<(mantissa_bits+1))-1)
|
---|
579 | || smant == (unsigned)-1 ) /* This is to catch E_PRECISION cases */
|
---|
580 | mover=1;
|
---|
581 | smant++;
|
---|
582 | }
|
---|
583 |
|
---|
584 | /* Get the scaled one value */
|
---|
585 | sone = (1 << (mantissa_bits));
|
---|
586 |
|
---|
587 | /* The number may be unnormalised so renormalise it... */
|
---|
588 | if(mover)
|
---|
589 | {
|
---|
590 | smant >>= 1;
|
---|
591 | smant |= sone; /* Insert the bit from mover into smant */
|
---|
592 | exponent++;
|
---|
593 | }
|
---|
594 |
|
---|
595 | /* The binary point is now between bit positions 11 and 10 or 23 and 22,
|
---|
596 | i.e., between mantissa_bits - 1 and mantissa_bits - 2 and the
|
---|
597 | bit at mantissa_bits - 1 should be set. */
|
---|
598 | if (!(sone&smant))
|
---|
599 | abort (); /* Ooops. */
|
---|
600 |
|
---|
601 | if (flonum.sign == '+')
|
---|
602 | sfract = smant - sone; /* smant - 1.0. */
|
---|
603 | else
|
---|
604 | {
|
---|
605 | /* This seems to work. */
|
---|
606 | if (smant == sone)
|
---|
607 | {
|
---|
608 | exponent--;
|
---|
609 | sfract = 0;
|
---|
610 | }
|
---|
611 | else
|
---|
612 | {
|
---|
613 | sfract = -smant & (sone-1); /* 2.0 - smant. */
|
---|
614 | }
|
---|
615 | sfract |= sone; /* Insert sign bit. */
|
---|
616 | }
|
---|
617 |
|
---|
618 | if (abs (exponent) >= (1 << (exponent_bits - 1)))
|
---|
619 | as_bad ("Cannot represent exponent in %d bits", exponent_bits);
|
---|
620 |
|
---|
621 | /* Force exponent to fit in desired field width. */
|
---|
622 | exponent &= (1 << (exponent_bits)) - 1;
|
---|
623 |
|
---|
624 | if (precision == E_PRECISION)
|
---|
625 | {
|
---|
626 | /* Map the float part first (100% equal format as F_PRECISION) */
|
---|
627 | words[0] = exponent << (mantissa_bits+1-24);
|
---|
628 | words[0] |= sfract >> 24;
|
---|
629 | words[1] = sfract >> 8;
|
---|
630 |
|
---|
631 | /* Map the mantissa in the next */
|
---|
632 | words[2] = sfract >> 16;
|
---|
633 | words[3] = sfract & 0xffff;
|
---|
634 | }
|
---|
635 | else
|
---|
636 | {
|
---|
637 | /* Insert the exponent data into the word */
|
---|
638 | sfract |= exponent << (mantissa_bits+1);
|
---|
639 |
|
---|
640 | if (precision == S_PRECISION)
|
---|
641 | words[0] = sfract;
|
---|
642 | else
|
---|
643 | {
|
---|
644 | words[0] = sfract >> 16;
|
---|
645 | words[1] = sfract & 0xffff;
|
---|
646 | }
|
---|
647 | }
|
---|
648 |
|
---|
649 | return return_value;
|
---|
650 | }
|
---|
651 |
|
---|
652 | /* Returns pointer past text consumed. */
|
---|
653 | static char *
|
---|
654 | tic4x_atof (str, what_kind, words)
|
---|
655 | char *str;
|
---|
656 | char what_kind;
|
---|
657 | LITTLENUM_TYPE *words;
|
---|
658 | {
|
---|
659 | /* Extra bits for zeroed low-order bits. The 1st MAX_PRECISION are
|
---|
660 | zeroed, the last contain flonum bits. */
|
---|
661 | static LITTLENUM_TYPE bits[MAX_PRECISION + MAX_PRECISION + GUARD];
|
---|
662 | char *return_value;
|
---|
663 | /* Number of 16-bit words in the format. */
|
---|
664 | int precision;
|
---|
665 | FLONUM_TYPE save_gen_flonum;
|
---|
666 |
|
---|
667 | /* We have to save the generic_floating_point_number because it
|
---|
668 | contains storage allocation about the array of LITTLENUMs where
|
---|
669 | the value is actually stored. We will allocate our own array of
|
---|
670 | littlenums below, but have to restore the global one on exit. */
|
---|
671 | save_gen_flonum = generic_floating_point_number;
|
---|
672 |
|
---|
673 | return_value = str;
|
---|
674 | generic_floating_point_number.low = bits + MAX_PRECISION;
|
---|
675 | generic_floating_point_number.high = NULL;
|
---|
676 | generic_floating_point_number.leader = NULL;
|
---|
677 | generic_floating_point_number.exponent = 0;
|
---|
678 | generic_floating_point_number.sign = '\0';
|
---|
679 |
|
---|
680 | /* Use more LittleNums than seems necessary: the highest flonum may
|
---|
681 | have 15 leading 0 bits, so could be useless. */
|
---|
682 |
|
---|
683 | memset (bits, '\0', sizeof (LITTLENUM_TYPE) * MAX_PRECISION);
|
---|
684 |
|
---|
685 | switch (what_kind)
|
---|
686 | {
|
---|
687 | case 's':
|
---|
688 | case 'S':
|
---|
689 | precision = S_PRECISION;
|
---|
690 | break;
|
---|
691 |
|
---|
692 | case 'd':
|
---|
693 | case 'D':
|
---|
694 | case 'f':
|
---|
695 | case 'F':
|
---|
696 | precision = F_PRECISION;
|
---|
697 | break;
|
---|
698 |
|
---|
699 | case 'E':
|
---|
700 | case 'e':
|
---|
701 | precision = E_PRECISION;
|
---|
702 | break;
|
---|
703 |
|
---|
704 | default:
|
---|
705 | as_bad ("Invalid floating point number");
|
---|
706 | return (NULL);
|
---|
707 | }
|
---|
708 |
|
---|
709 | generic_floating_point_number.high
|
---|
710 | = generic_floating_point_number.low + precision - 1 + GUARD;
|
---|
711 |
|
---|
712 | if (atof_generic (&return_value, ".", EXP_CHARS,
|
---|
713 | &generic_floating_point_number))
|
---|
714 | {
|
---|
715 | as_bad ("Invalid floating point number");
|
---|
716 | return (NULL);
|
---|
717 | }
|
---|
718 |
|
---|
719 | tic4x_gen_to_words (generic_floating_point_number,
|
---|
720 | words, precision);
|
---|
721 |
|
---|
722 | /* Restore the generic_floating_point_number's storage alloc (and
|
---|
723 | everything else). */
|
---|
724 | generic_floating_point_number = save_gen_flonum;
|
---|
725 |
|
---|
726 | return return_value;
|
---|
727 | }
|
---|
728 |
|
---|
729 | static void
|
---|
730 | tic4x_insert_reg (regname, regnum)
|
---|
731 | char *regname;
|
---|
732 | int regnum;
|
---|
733 | {
|
---|
734 | char buf[32];
|
---|
735 | int i;
|
---|
736 |
|
---|
737 | symbol_table_insert (symbol_new (regname, reg_section, (valueT) regnum,
|
---|
738 | &zero_address_frag));
|
---|
739 | for (i = 0; regname[i]; i++)
|
---|
740 | buf[i] = islower (regname[i]) ? toupper (regname[i]) : regname[i];
|
---|
741 | buf[i] = '\0';
|
---|
742 |
|
---|
743 | symbol_table_insert (symbol_new (buf, reg_section, (valueT) regnum,
|
---|
744 | &zero_address_frag));
|
---|
745 | }
|
---|
746 |
|
---|
747 | static void
|
---|
748 | tic4x_insert_sym (symname, value)
|
---|
749 | char *symname;
|
---|
750 | int value;
|
---|
751 | {
|
---|
752 | symbolS *symbolP;
|
---|
753 |
|
---|
754 | symbolP = symbol_new (symname, absolute_section,
|
---|
755 | (valueT) value, &zero_address_frag);
|
---|
756 | SF_SET_LOCAL (symbolP);
|
---|
757 | symbol_table_insert (symbolP);
|
---|
758 | }
|
---|
759 |
|
---|
760 | static char *
|
---|
761 | tic4x_expression (str, exp)
|
---|
762 | char *str;
|
---|
763 | expressionS *exp;
|
---|
764 | {
|
---|
765 | char *s;
|
---|
766 | char *t;
|
---|
767 |
|
---|
768 | t = input_line_pointer; /* Save line pointer. */
|
---|
769 | input_line_pointer = str;
|
---|
770 | expression (exp);
|
---|
771 | s = input_line_pointer;
|
---|
772 | input_line_pointer = t; /* Restore line pointer. */
|
---|
773 | return s; /* Return pointer to where parsing stopped. */
|
---|
774 | }
|
---|
775 |
|
---|
776 | static char *
|
---|
777 | tic4x_expression_abs (str, value)
|
---|
778 | char *str;
|
---|
779 | int *value;
|
---|
780 | {
|
---|
781 | char *s;
|
---|
782 | char *t;
|
---|
783 |
|
---|
784 | t = input_line_pointer; /* Save line pointer. */
|
---|
785 | input_line_pointer = str;
|
---|
786 | *value = get_absolute_expression ();
|
---|
787 | s = input_line_pointer;
|
---|
788 | input_line_pointer = t; /* Restore line pointer. */
|
---|
789 | return s;
|
---|
790 | }
|
---|
791 |
|
---|
792 | static void
|
---|
793 | tic4x_emit_char (c,b)
|
---|
794 | char c;
|
---|
795 | int b;
|
---|
796 | {
|
---|
797 | expressionS exp;
|
---|
798 |
|
---|
799 | exp.X_op = O_constant;
|
---|
800 | exp.X_add_number = c;
|
---|
801 | emit_expr (&exp, b);
|
---|
802 | }
|
---|
803 |
|
---|
804 | static void
|
---|
805 | tic4x_seg_alloc (name, seg, size, symbolP)
|
---|
806 | char *name ATTRIBUTE_UNUSED;
|
---|
807 | segT seg ATTRIBUTE_UNUSED;
|
---|
808 | int size;
|
---|
809 | symbolS *symbolP;
|
---|
810 | {
|
---|
811 | /* Note that the size is in words
|
---|
812 | so we multiply it by 4 to get the number of bytes to allocate. */
|
---|
813 |
|
---|
814 | /* If we have symbol: .usect ".fred", size etc.,
|
---|
815 | the symbol needs to point to the first location reserved
|
---|
816 | by the pseudo op. */
|
---|
817 |
|
---|
818 | if (size)
|
---|
819 | {
|
---|
820 | char *p;
|
---|
821 |
|
---|
822 | p = frag_var (rs_fill, 1, 1, (relax_substateT) 0,
|
---|
823 | (symbolS *) symbolP,
|
---|
824 | size * OCTETS_PER_BYTE, (char *) 0);
|
---|
825 | *p = 0;
|
---|
826 | }
|
---|
827 | }
|
---|
828 |
|
---|
829 | /* .asg ["]character-string["], symbol */
|
---|
830 | static void
|
---|
831 | tic4x_asg (x)
|
---|
832 | int x ATTRIBUTE_UNUSED;
|
---|
833 | {
|
---|
834 | char c;
|
---|
835 | char *name;
|
---|
836 | char *str;
|
---|
837 | char *tmp;
|
---|
838 |
|
---|
839 | SKIP_WHITESPACE ();
|
---|
840 | str = input_line_pointer;
|
---|
841 |
|
---|
842 | /* Skip string expression. */
|
---|
843 | while (*input_line_pointer != ',' && *input_line_pointer)
|
---|
844 | input_line_pointer++;
|
---|
845 | if (*input_line_pointer != ',')
|
---|
846 | {
|
---|
847 | as_bad ("Comma expected\n");
|
---|
848 | return;
|
---|
849 | }
|
---|
850 | *input_line_pointer++ = '\0';
|
---|
851 | name = input_line_pointer;
|
---|
852 | c = get_symbol_end (); /* Get terminator. */
|
---|
853 | tmp = xmalloc (strlen (str) + 1);
|
---|
854 | strcpy (tmp, str);
|
---|
855 | str = tmp;
|
---|
856 | tmp = xmalloc (strlen (name) + 1);
|
---|
857 | strcpy (tmp, name);
|
---|
858 | name = tmp;
|
---|
859 | if (hash_find (tic4x_asg_hash, name))
|
---|
860 | hash_replace (tic4x_asg_hash, name, (PTR) str);
|
---|
861 | else
|
---|
862 | hash_insert (tic4x_asg_hash, name, (PTR) str);
|
---|
863 | *input_line_pointer = c;
|
---|
864 | demand_empty_rest_of_line ();
|
---|
865 | }
|
---|
866 |
|
---|
867 | /* .bss symbol, size */
|
---|
868 | static void
|
---|
869 | tic4x_bss (x)
|
---|
870 | int x ATTRIBUTE_UNUSED;
|
---|
871 | {
|
---|
872 | char c;
|
---|
873 | char *name;
|
---|
874 | char *p;
|
---|
875 | int size;
|
---|
876 | segT current_seg;
|
---|
877 | subsegT current_subseg;
|
---|
878 | symbolS *symbolP;
|
---|
879 |
|
---|
880 | current_seg = now_seg; /* Save current seg. */
|
---|
881 | current_subseg = now_subseg; /* Save current subseg. */
|
---|
882 |
|
---|
883 | SKIP_WHITESPACE ();
|
---|
884 | name = input_line_pointer;
|
---|
885 | c = get_symbol_end (); /* Get terminator. */
|
---|
886 | if (c != ',')
|
---|
887 | {
|
---|
888 | as_bad (".bss size argument missing\n");
|
---|
889 | return;
|
---|
890 | }
|
---|
891 |
|
---|
892 | input_line_pointer =
|
---|
893 | tic4x_expression_abs (++input_line_pointer, &size);
|
---|
894 | if (size < 0)
|
---|
895 | {
|
---|
896 | as_bad (".bss size %d < 0!", size);
|
---|
897 | return;
|
---|
898 | }
|
---|
899 | subseg_set (bss_section, 0);
|
---|
900 | symbolP = symbol_find_or_make (name);
|
---|
901 |
|
---|
902 | if (S_GET_SEGMENT (symbolP) == bss_section)
|
---|
903 | symbol_get_frag (symbolP)->fr_symbol = 0;
|
---|
904 |
|
---|
905 | symbol_set_frag (symbolP, frag_now);
|
---|
906 |
|
---|
907 | p = frag_var (rs_org, 1, 1, (relax_substateT) 0, symbolP,
|
---|
908 | size * OCTETS_PER_BYTE, (char *) 0);
|
---|
909 | *p = 0; /* Fill char. */
|
---|
910 |
|
---|
911 | S_SET_SEGMENT (symbolP, bss_section);
|
---|
912 |
|
---|
913 | /* The symbol may already have been created with a preceding
|
---|
914 | ".globl" directive -- be careful not to step on storage class
|
---|
915 | in that case. Otherwise, set it to static. */
|
---|
916 | if (S_GET_STORAGE_CLASS (symbolP) != C_EXT)
|
---|
917 | S_SET_STORAGE_CLASS (symbolP, C_STAT);
|
---|
918 |
|
---|
919 | subseg_set (current_seg, current_subseg); /* Restore current seg. */
|
---|
920 | demand_empty_rest_of_line ();
|
---|
921 | }
|
---|
922 |
|
---|
923 | static void
|
---|
924 | tic4x_globl (ignore)
|
---|
925 | int ignore ATTRIBUTE_UNUSED;
|
---|
926 | {
|
---|
927 | char *name;
|
---|
928 | int c;
|
---|
929 | symbolS *symbolP;
|
---|
930 |
|
---|
931 | do
|
---|
932 | {
|
---|
933 | name = input_line_pointer;
|
---|
934 | c = get_symbol_end ();
|
---|
935 | symbolP = symbol_find_or_make (name);
|
---|
936 | *input_line_pointer = c;
|
---|
937 | SKIP_WHITESPACE ();
|
---|
938 | S_SET_STORAGE_CLASS (symbolP, C_EXT);
|
---|
939 | if (c == ',')
|
---|
940 | {
|
---|
941 | input_line_pointer++;
|
---|
942 | SKIP_WHITESPACE ();
|
---|
943 | if (*input_line_pointer == '\n')
|
---|
944 | c = '\n';
|
---|
945 | }
|
---|
946 | }
|
---|
947 | while (c == ',');
|
---|
948 |
|
---|
949 | demand_empty_rest_of_line ();
|
---|
950 | }
|
---|
951 |
|
---|
952 | /* Handle .byte, .word. .int, .long */
|
---|
953 | static void
|
---|
954 | tic4x_cons (bytes)
|
---|
955 | int bytes;
|
---|
956 | {
|
---|
957 | register unsigned int c;
|
---|
958 | do
|
---|
959 | {
|
---|
960 | SKIP_WHITESPACE ();
|
---|
961 | if (*input_line_pointer == '"')
|
---|
962 | {
|
---|
963 | input_line_pointer++;
|
---|
964 | while (is_a_char (c = next_char_of_string ()))
|
---|
965 | tic4x_emit_char (c, 4);
|
---|
966 | know (input_line_pointer[-1] == '\"');
|
---|
967 | }
|
---|
968 | else
|
---|
969 | {
|
---|
970 | expressionS exp;
|
---|
971 |
|
---|
972 | input_line_pointer = tic4x_expression (input_line_pointer, &exp);
|
---|
973 | if (exp.X_op == O_constant)
|
---|
974 | {
|
---|
975 | switch (bytes)
|
---|
976 | {
|
---|
977 | case 1:
|
---|
978 | exp.X_add_number &= 255;
|
---|
979 | break;
|
---|
980 | case 2:
|
---|
981 | exp.X_add_number &= 65535;
|
---|
982 | break;
|
---|
983 | }
|
---|
984 | }
|
---|
985 | /* Perhaps we should disallow .byte and .hword with
|
---|
986 | a non constant expression that will require relocation. */
|
---|
987 | emit_expr (&exp, 4);
|
---|
988 | }
|
---|
989 | }
|
---|
990 | while (*input_line_pointer++ == ',');
|
---|
991 |
|
---|
992 | input_line_pointer--; /* Put terminator back into stream. */
|
---|
993 | demand_empty_rest_of_line ();
|
---|
994 | }
|
---|
995 |
|
---|
996 | /* Handle .ascii, .asciz, .string */
|
---|
997 | static void
|
---|
998 | tic4x_stringer (append_zero)
|
---|
999 | int append_zero; /*ex: bytes */
|
---|
1000 | {
|
---|
1001 | int bytes;
|
---|
1002 | register unsigned int c;
|
---|
1003 |
|
---|
1004 | bytes = 0;
|
---|
1005 | do
|
---|
1006 | {
|
---|
1007 | SKIP_WHITESPACE ();
|
---|
1008 | if (*input_line_pointer == '"')
|
---|
1009 | {
|
---|
1010 | input_line_pointer++;
|
---|
1011 | while (is_a_char (c = next_char_of_string ()))
|
---|
1012 | {
|
---|
1013 | tic4x_emit_char (c, 1);
|
---|
1014 | bytes++;
|
---|
1015 | }
|
---|
1016 |
|
---|
1017 | if (append_zero)
|
---|
1018 | {
|
---|
1019 | tic4x_emit_char (c, 1);
|
---|
1020 | bytes++;
|
---|
1021 | }
|
---|
1022 |
|
---|
1023 | know (input_line_pointer[-1] == '\"');
|
---|
1024 | }
|
---|
1025 | else
|
---|
1026 | {
|
---|
1027 | expressionS exp;
|
---|
1028 |
|
---|
1029 | input_line_pointer = tic4x_expression (input_line_pointer, &exp);
|
---|
1030 | if (exp.X_op != O_constant)
|
---|
1031 | {
|
---|
1032 | as_bad("Non-constant symbols not allowed\n");
|
---|
1033 | return;
|
---|
1034 | }
|
---|
1035 | exp.X_add_number &= 255; /* Limit numeber to 8-bit */
|
---|
1036 | emit_expr (&exp, 1);
|
---|
1037 | bytes++;
|
---|
1038 | }
|
---|
1039 | }
|
---|
1040 | while (*input_line_pointer++ == ',');
|
---|
1041 |
|
---|
1042 | /* Fill out the rest of the expression with 0's to fill up a full word */
|
---|
1043 | if ( bytes&0x3 )
|
---|
1044 | tic4x_emit_char (0, 4-(bytes&0x3));
|
---|
1045 |
|
---|
1046 | input_line_pointer--; /* Put terminator back into stream. */
|
---|
1047 | demand_empty_rest_of_line ();
|
---|
1048 | }
|
---|
1049 |
|
---|
1050 | /* .eval expression, symbol */
|
---|
1051 | static void
|
---|
1052 | tic4x_eval (x)
|
---|
1053 | int x ATTRIBUTE_UNUSED;
|
---|
1054 | {
|
---|
1055 | char c;
|
---|
1056 | int value;
|
---|
1057 | char *name;
|
---|
1058 |
|
---|
1059 | SKIP_WHITESPACE ();
|
---|
1060 | input_line_pointer =
|
---|
1061 | tic4x_expression_abs (input_line_pointer, &value);
|
---|
1062 | if (*input_line_pointer++ != ',')
|
---|
1063 | {
|
---|
1064 | as_bad ("Symbol missing\n");
|
---|
1065 | return;
|
---|
1066 | }
|
---|
1067 | name = input_line_pointer;
|
---|
1068 | c = get_symbol_end (); /* Get terminator. */
|
---|
1069 | demand_empty_rest_of_line ();
|
---|
1070 | tic4x_insert_sym (name, value);
|
---|
1071 | }
|
---|
1072 |
|
---|
1073 | /* Reset local labels. */
|
---|
1074 | static void
|
---|
1075 | tic4x_newblock (x)
|
---|
1076 | int x ATTRIBUTE_UNUSED;
|
---|
1077 | {
|
---|
1078 | dollar_label_clear ();
|
---|
1079 | }
|
---|
1080 |
|
---|
1081 | /* .sect "section-name" [, value] */
|
---|
1082 | /* .sect ["]section-name[:subsection-name]["] [, value] */
|
---|
1083 | static void
|
---|
1084 | tic4x_sect (x)
|
---|
1085 | int x ATTRIBUTE_UNUSED;
|
---|
1086 | {
|
---|
1087 | char c;
|
---|
1088 | char *section_name;
|
---|
1089 | char *subsection_name;
|
---|
1090 | char *name;
|
---|
1091 | segT seg;
|
---|
1092 | int num;
|
---|
1093 |
|
---|
1094 | SKIP_WHITESPACE ();
|
---|
1095 | if (*input_line_pointer == '"')
|
---|
1096 | input_line_pointer++;
|
---|
1097 | section_name = input_line_pointer;
|
---|
1098 | c = get_symbol_end (); /* Get terminator. */
|
---|
1099 | input_line_pointer++; /* Skip null symbol terminator. */
|
---|
1100 | name = xmalloc (input_line_pointer - section_name + 1);
|
---|
1101 | strcpy (name, section_name);
|
---|
1102 |
|
---|
1103 | /* TI C from version 5.0 allows a section name to contain a
|
---|
1104 | subsection name as well. The subsection name is separated by a
|
---|
1105 | ':' from the section name. Currently we scan the subsection
|
---|
1106 | name and discard it.
|
---|
1107 | Volker Kuhlmann <v.kuhlmann@elec.canterbury.ac.nz>. */
|
---|
1108 | if (c == ':')
|
---|
1109 | {
|
---|
1110 | subsection_name = input_line_pointer;
|
---|
1111 | c = get_symbol_end (); /* Get terminator. */
|
---|
1112 | input_line_pointer++; /* Skip null symbol terminator. */
|
---|
1113 | as_warn (".sect: subsection name ignored");
|
---|
1114 | }
|
---|
1115 |
|
---|
1116 | /* We might still have a '"' to discard, but the character after a
|
---|
1117 | symbol name will be overwritten with a \0 by get_symbol_end()
|
---|
1118 | [VK]. */
|
---|
1119 |
|
---|
1120 | if (c == ',')
|
---|
1121 | input_line_pointer =
|
---|
1122 | tic4x_expression_abs (input_line_pointer, &num);
|
---|
1123 | else if (*input_line_pointer == ',')
|
---|
1124 | {
|
---|
1125 | input_line_pointer =
|
---|
1126 | tic4x_expression_abs (++input_line_pointer, &num);
|
---|
1127 | }
|
---|
1128 | else
|
---|
1129 | num = 0;
|
---|
1130 |
|
---|
1131 | seg = subseg_new (name, num);
|
---|
1132 | if (line_label != NULL)
|
---|
1133 | {
|
---|
1134 | S_SET_SEGMENT (line_label, seg);
|
---|
1135 | symbol_set_frag (line_label, frag_now);
|
---|
1136 | }
|
---|
1137 |
|
---|
1138 | if (bfd_get_section_flags (stdoutput, seg) == SEC_NO_FLAGS)
|
---|
1139 | {
|
---|
1140 | if (!bfd_set_section_flags (stdoutput, seg, SEC_DATA))
|
---|
1141 | as_warn ("Error setting flags for \"%s\": %s", name,
|
---|
1142 | bfd_errmsg (bfd_get_error ()));
|
---|
1143 | }
|
---|
1144 |
|
---|
1145 | /* If the last character overwritten by get_symbol_end() was an
|
---|
1146 | end-of-line, we must restore it or the end of the line will not be
|
---|
1147 | recognised and scanning extends into the next line, stopping with
|
---|
1148 | an error (blame Volker Kuhlmann <v.kuhlmann@elec.canterbury.ac.nz>
|
---|
1149 | if this is not true). */
|
---|
1150 | if (is_end_of_line[(unsigned char) c])
|
---|
1151 | *(--input_line_pointer) = c;
|
---|
1152 |
|
---|
1153 | demand_empty_rest_of_line ();
|
---|
1154 | }
|
---|
1155 |
|
---|
1156 | /* symbol[:] .set value or .set symbol, value */
|
---|
1157 | static void
|
---|
1158 | tic4x_set (x)
|
---|
1159 | int x ATTRIBUTE_UNUSED;
|
---|
1160 | {
|
---|
1161 | symbolS *symbolP;
|
---|
1162 |
|
---|
1163 | SKIP_WHITESPACE ();
|
---|
1164 | if ((symbolP = line_label) == NULL)
|
---|
1165 | {
|
---|
1166 | char c;
|
---|
1167 | char *name;
|
---|
1168 |
|
---|
1169 | name = input_line_pointer;
|
---|
1170 | c = get_symbol_end (); /* Get terminator. */
|
---|
1171 | if (c != ',')
|
---|
1172 | {
|
---|
1173 | as_bad (".set syntax invalid\n");
|
---|
1174 | ignore_rest_of_line ();
|
---|
1175 | return;
|
---|
1176 | }
|
---|
1177 | symbolP = symbol_find_or_make (name);
|
---|
1178 | }
|
---|
1179 | else
|
---|
1180 | symbol_table_insert (symbolP);
|
---|
1181 |
|
---|
1182 | pseudo_set (symbolP);
|
---|
1183 | demand_empty_rest_of_line ();
|
---|
1184 | }
|
---|
1185 |
|
---|
1186 | /* [symbol] .usect ["]section-name["], size-in-words [, alignment-flag] */
|
---|
1187 | static void
|
---|
1188 | tic4x_usect (x)
|
---|
1189 | int x ATTRIBUTE_UNUSED;
|
---|
1190 | {
|
---|
1191 | char c;
|
---|
1192 | char *name;
|
---|
1193 | char *section_name;
|
---|
1194 | segT seg;
|
---|
1195 | int size, alignment_flag;
|
---|
1196 | segT current_seg;
|
---|
1197 | subsegT current_subseg;
|
---|
1198 |
|
---|
1199 | current_seg = now_seg; /* save current seg. */
|
---|
1200 | current_subseg = now_subseg; /* save current subseg. */
|
---|
1201 |
|
---|
1202 | SKIP_WHITESPACE ();
|
---|
1203 | if (*input_line_pointer == '"')
|
---|
1204 | input_line_pointer++;
|
---|
1205 | section_name = input_line_pointer;
|
---|
1206 | c = get_symbol_end (); /* Get terminator. */
|
---|
1207 | input_line_pointer++; /* Skip null symbol terminator. */
|
---|
1208 | name = xmalloc (input_line_pointer - section_name + 1);
|
---|
1209 | strcpy (name, section_name);
|
---|
1210 |
|
---|
1211 | if (c == ',')
|
---|
1212 | input_line_pointer =
|
---|
1213 | tic4x_expression_abs (input_line_pointer, &size);
|
---|
1214 | else if (*input_line_pointer == ',')
|
---|
1215 | {
|
---|
1216 | input_line_pointer =
|
---|
1217 | tic4x_expression_abs (++input_line_pointer, &size);
|
---|
1218 | }
|
---|
1219 | else
|
---|
1220 | size = 0;
|
---|
1221 |
|
---|
1222 | /* Read a possibly present third argument (alignment flag) [VK]. */
|
---|
1223 | if (*input_line_pointer == ',')
|
---|
1224 | {
|
---|
1225 | input_line_pointer =
|
---|
1226 | tic4x_expression_abs (++input_line_pointer, &alignment_flag);
|
---|
1227 | }
|
---|
1228 | else
|
---|
1229 | alignment_flag = 0;
|
---|
1230 | if (alignment_flag)
|
---|
1231 | as_warn (".usect: non-zero alignment flag ignored");
|
---|
1232 |
|
---|
1233 | seg = subseg_new (name, 0);
|
---|
1234 | if (line_label != NULL)
|
---|
1235 | {
|
---|
1236 | S_SET_SEGMENT (line_label, seg);
|
---|
1237 | symbol_set_frag (line_label, frag_now);
|
---|
1238 | S_SET_VALUE (line_label, frag_now_fix ());
|
---|
1239 | }
|
---|
1240 | seg_info (seg)->bss = 1; /* Uninitialised data. */
|
---|
1241 | if (!bfd_set_section_flags (stdoutput, seg, SEC_ALLOC))
|
---|
1242 | as_warn ("Error setting flags for \"%s\": %s", name,
|
---|
1243 | bfd_errmsg (bfd_get_error ()));
|
---|
1244 | tic4x_seg_alloc (name, seg, size, line_label);
|
---|
1245 |
|
---|
1246 | if (S_GET_STORAGE_CLASS (line_label) != C_EXT)
|
---|
1247 | S_SET_STORAGE_CLASS (line_label, C_STAT);
|
---|
1248 |
|
---|
1249 | subseg_set (current_seg, current_subseg); /* Restore current seg. */
|
---|
1250 | demand_empty_rest_of_line ();
|
---|
1251 | }
|
---|
1252 |
|
---|
1253 | /* .version cpu-version. */
|
---|
1254 | static void
|
---|
1255 | tic4x_version (x)
|
---|
1256 | int x ATTRIBUTE_UNUSED;
|
---|
1257 | {
|
---|
1258 | unsigned int temp;
|
---|
1259 |
|
---|
1260 | input_line_pointer =
|
---|
1261 | tic4x_expression_abs (input_line_pointer, &temp);
|
---|
1262 | if (!IS_CPU_TIC3X (temp) && !IS_CPU_TIC4X (temp))
|
---|
1263 | as_bad ("This assembler does not support processor generation %d",
|
---|
1264 | temp);
|
---|
1265 |
|
---|
1266 | if (tic4x_cpu && temp != tic4x_cpu)
|
---|
1267 | as_warn ("Changing processor generation on fly not supported...");
|
---|
1268 | tic4x_cpu = temp;
|
---|
1269 | demand_empty_rest_of_line ();
|
---|
1270 | }
|
---|
1271 |
|
---|
1272 | static void
|
---|
1273 | tic4x_init_regtable ()
|
---|
1274 | {
|
---|
1275 | unsigned int i;
|
---|
1276 |
|
---|
1277 | for (i = 0; i < tic3x_num_registers; i++)
|
---|
1278 | tic4x_insert_reg (tic3x_registers[i].name,
|
---|
1279 | tic3x_registers[i].regno);
|
---|
1280 |
|
---|
1281 | if (IS_CPU_TIC4X (tic4x_cpu))
|
---|
1282 | {
|
---|
1283 | /* Add additional Tic4x registers, overriding some C3x ones. */
|
---|
1284 | for (i = 0; i < tic4x_num_registers; i++)
|
---|
1285 | tic4x_insert_reg (tic4x_registers[i].name,
|
---|
1286 | tic4x_registers[i].regno);
|
---|
1287 | }
|
---|
1288 | }
|
---|
1289 |
|
---|
1290 | static void
|
---|
1291 | tic4x_init_symbols ()
|
---|
1292 | {
|
---|
1293 | /* The TI tools accept case insensitive versions of these symbols,
|
---|
1294 | we don't !
|
---|
1295 |
|
---|
1296 | For TI C/Asm 5.0
|
---|
1297 |
|
---|
1298 | .TMS320xx 30,31,32,40,or 44 set according to -v flag
|
---|
1299 | .C3X or .C3x 1 or 0 1 if -v30,-v31,or -v32
|
---|
1300 | .C30 1 or 0 1 if -v30
|
---|
1301 | .C31 1 or 0 1 if -v31
|
---|
1302 | .C32 1 or 0 1 if -v32
|
---|
1303 | .C4X or .C4x 1 or 0 1 if -v40, or -v44
|
---|
1304 | .C40 1 or 0 1 if -v40
|
---|
1305 | .C44 1 or 0 1 if -v44
|
---|
1306 |
|
---|
1307 | .REGPARM 1 or 0 1 if -mr option used
|
---|
1308 | .BIGMODEL 1 or 0 1 if -mb option used
|
---|
1309 |
|
---|
1310 | These symbols are currently supported but will be removed in a
|
---|
1311 | later version:
|
---|
1312 | .TMS320C30 1 or 0 1 if -v30,-v31,or -v32
|
---|
1313 | .TMS320C31 1 or 0 1 if -v31
|
---|
1314 | .TMS320C32 1 or 0 1 if -v32
|
---|
1315 | .TMS320C40 1 or 0 1 if -v40, or -v44
|
---|
1316 | .TMS320C44 1 or 0 1 if -v44
|
---|
1317 |
|
---|
1318 | Source: TI: TMS320C3x/C4x Assembly Language Tools User's Guide,
|
---|
1319 | 1997, SPRU035C, p. 3-17/3-18. */
|
---|
1320 | tic4x_insert_sym (".REGPARM", tic4x_reg_args);
|
---|
1321 | tic4x_insert_sym (".MEMPARM", !tic4x_reg_args);
|
---|
1322 | tic4x_insert_sym (".BIGMODEL", tic4x_big_model);
|
---|
1323 | tic4x_insert_sym (".C30INTERRUPT", 0);
|
---|
1324 | tic4x_insert_sym (".TMS320xx", tic4x_cpu == 0 ? 40 : tic4x_cpu);
|
---|
1325 | tic4x_insert_sym (".C3X", tic4x_cpu == 30 || tic4x_cpu == 31 || tic4x_cpu == 32 || tic4x_cpu == 33);
|
---|
1326 | tic4x_insert_sym (".C3x", tic4x_cpu == 30 || tic4x_cpu == 31 || tic4x_cpu == 32 || tic4x_cpu == 33);
|
---|
1327 | tic4x_insert_sym (".C4X", tic4x_cpu == 0 || tic4x_cpu == 40 || tic4x_cpu == 44);
|
---|
1328 | tic4x_insert_sym (".C4x", tic4x_cpu == 0 || tic4x_cpu == 40 || tic4x_cpu == 44);
|
---|
1329 | /* Do we need to have the following symbols also in lower case? */
|
---|
1330 | tic4x_insert_sym (".TMS320C30", tic4x_cpu == 30 || tic4x_cpu == 31 || tic4x_cpu == 32 || tic4x_cpu == 33);
|
---|
1331 | tic4x_insert_sym (".tms320C30", tic4x_cpu == 30 || tic4x_cpu == 31 || tic4x_cpu == 32 || tic4x_cpu == 33);
|
---|
1332 | tic4x_insert_sym (".TMS320C31", tic4x_cpu == 31);
|
---|
1333 | tic4x_insert_sym (".tms320C31", tic4x_cpu == 31);
|
---|
1334 | tic4x_insert_sym (".TMS320C32", tic4x_cpu == 32);
|
---|
1335 | tic4x_insert_sym (".tms320C32", tic4x_cpu == 32);
|
---|
1336 | tic4x_insert_sym (".TMS320C33", tic4x_cpu == 33);
|
---|
1337 | tic4x_insert_sym (".tms320C33", tic4x_cpu == 33);
|
---|
1338 | tic4x_insert_sym (".TMS320C40", tic4x_cpu == 40 || tic4x_cpu == 44 || tic4x_cpu == 0);
|
---|
1339 | tic4x_insert_sym (".tms320C40", tic4x_cpu == 40 || tic4x_cpu == 44 || tic4x_cpu == 0);
|
---|
1340 | tic4x_insert_sym (".TMS320C44", tic4x_cpu == 44);
|
---|
1341 | tic4x_insert_sym (".tms320C44", tic4x_cpu == 44);
|
---|
1342 | tic4x_insert_sym (".TMX320C40", 0); /* C40 first pass silicon ? */
|
---|
1343 | tic4x_insert_sym (".tmx320C40", 0);
|
---|
1344 | }
|
---|
1345 |
|
---|
1346 | /* Insert a new instruction template into hash table. */
|
---|
1347 | static int
|
---|
1348 | tic4x_inst_insert (inst)
|
---|
1349 | tic4x_inst_t *inst;
|
---|
1350 | {
|
---|
1351 | static char prev_name[16];
|
---|
1352 | const char *retval = NULL;
|
---|
1353 |
|
---|
1354 | /* Only insert the first name if have several similar entries. */
|
---|
1355 | if (!strcmp (inst->name, prev_name) || inst->name[0] == '\0')
|
---|
1356 | return 1;
|
---|
1357 |
|
---|
1358 | retval = hash_insert (tic4x_op_hash, inst->name, (PTR) inst);
|
---|
1359 | if (retval != NULL)
|
---|
1360 | fprintf (stderr, "internal error: can't hash `%s': %s\n",
|
---|
1361 | inst->name, retval);
|
---|
1362 | else
|
---|
1363 | strcpy (prev_name, inst->name);
|
---|
1364 | return retval == NULL;
|
---|
1365 | }
|
---|
1366 |
|
---|
1367 | /* Make a new instruction template. */
|
---|
1368 | static tic4x_inst_t *
|
---|
1369 | tic4x_inst_make (name, opcode, args)
|
---|
1370 | char *name;
|
---|
1371 | unsigned long opcode;
|
---|
1372 | char *args;
|
---|
1373 | {
|
---|
1374 | static tic4x_inst_t *insts = NULL;
|
---|
1375 | static char *names = NULL;
|
---|
1376 | static int index = 0;
|
---|
1377 |
|
---|
1378 | if (insts == NULL)
|
---|
1379 | {
|
---|
1380 | /* Allocate memory to store name strings. */
|
---|
1381 | names = (char *) xmalloc (sizeof (char) * 8192);
|
---|
1382 | /* Allocate memory for additional insts. */
|
---|
1383 | insts = (tic4x_inst_t *)
|
---|
1384 | xmalloc (sizeof (tic4x_inst_t) * 1024);
|
---|
1385 | }
|
---|
1386 | insts[index].name = names;
|
---|
1387 | insts[index].opcode = opcode;
|
---|
1388 | insts[index].opmask = 0xffffffff;
|
---|
1389 | insts[index].args = args;
|
---|
1390 | index++;
|
---|
1391 |
|
---|
1392 | do
|
---|
1393 | *names++ = *name++;
|
---|
1394 | while (*name);
|
---|
1395 | *names++ = '\0';
|
---|
1396 |
|
---|
1397 | return &insts[index - 1];
|
---|
1398 | }
|
---|
1399 |
|
---|
1400 | /* Add instruction template, creating dynamic templates as required. */
|
---|
1401 | static int
|
---|
1402 | tic4x_inst_add (insts)
|
---|
1403 | tic4x_inst_t *insts;
|
---|
1404 | {
|
---|
1405 | char *s = insts->name;
|
---|
1406 | char *d;
|
---|
1407 | unsigned int i;
|
---|
1408 | int ok = 1;
|
---|
1409 | char name[16];
|
---|
1410 |
|
---|
1411 | d = name;
|
---|
1412 |
|
---|
1413 | /* We do not care about INSNs that is not a part of our
|
---|
1414 | oplevel setting */
|
---|
1415 | if (!insts->oplevel & tic4x_oplevel)
|
---|
1416 | return ok;
|
---|
1417 |
|
---|
1418 | while (1)
|
---|
1419 | {
|
---|
1420 | switch (*s)
|
---|
1421 | {
|
---|
1422 | case 'B':
|
---|
1423 | case 'C':
|
---|
1424 | /* Dynamically create all the conditional insts. */
|
---|
1425 | for (i = 0; i < tic4x_num_conds; i++)
|
---|
1426 | {
|
---|
1427 | tic4x_inst_t *inst;
|
---|
1428 | int k = 0;
|
---|
1429 | char *c = tic4x_conds[i].name;
|
---|
1430 | char *e = d;
|
---|
1431 |
|
---|
1432 | while (*c)
|
---|
1433 | *e++ = *c++;
|
---|
1434 | c = s + 1;
|
---|
1435 | while (*c)
|
---|
1436 | *e++ = *c++;
|
---|
1437 | *e = '\0';
|
---|
1438 |
|
---|
1439 | /* If instruction found then have already processed it. */
|
---|
1440 | if (hash_find (tic4x_op_hash, name))
|
---|
1441 | return 1;
|
---|
1442 |
|
---|
1443 | do
|
---|
1444 | {
|
---|
1445 | inst = tic4x_inst_make (name, insts[k].opcode +
|
---|
1446 | (tic4x_conds[i].cond <<
|
---|
1447 | (*s == 'B' ? 16 : 23)),
|
---|
1448 | insts[k].args);
|
---|
1449 | if (k == 0) /* Save strcmp() with following func. */
|
---|
1450 | ok &= tic4x_inst_insert (inst);
|
---|
1451 | k++;
|
---|
1452 | }
|
---|
1453 | while (!strcmp (insts->name,
|
---|
1454 | insts[k].name));
|
---|
1455 | }
|
---|
1456 | return ok;
|
---|
1457 | break;
|
---|
1458 |
|
---|
1459 | case '\0':
|
---|
1460 | return tic4x_inst_insert (insts);
|
---|
1461 | break;
|
---|
1462 |
|
---|
1463 | default:
|
---|
1464 | *d++ = *s++;
|
---|
1465 | break;
|
---|
1466 | }
|
---|
1467 | }
|
---|
1468 | }
|
---|
1469 |
|
---|
1470 | /* This function is called once, at assembler startup time. It should
|
---|
1471 | set up all the tables, etc., that the MD part of the assembler will
|
---|
1472 | need. */
|
---|
1473 | void
|
---|
1474 | md_begin ()
|
---|
1475 | {
|
---|
1476 | int ok = 1;
|
---|
1477 | unsigned int i;
|
---|
1478 |
|
---|
1479 | /* Setup the proper opcode level according to the
|
---|
1480 | commandline parameters */
|
---|
1481 | tic4x_oplevel = OP_C3X;
|
---|
1482 |
|
---|
1483 | if ( IS_CPU_TIC4X(tic4x_cpu) )
|
---|
1484 | tic4x_oplevel |= OP_C4X;
|
---|
1485 |
|
---|
1486 | if ( ( tic4x_cpu == 31 && tic4x_revision >= 6)
|
---|
1487 | || (tic4x_cpu == 32 && tic4x_revision >= 2)
|
---|
1488 | || (tic4x_cpu == 33)
|
---|
1489 | || tic4x_enhanced )
|
---|
1490 | tic4x_oplevel |= OP_ENH;
|
---|
1491 |
|
---|
1492 | if ( ( tic4x_cpu == 30 && tic4x_revision >= 7)
|
---|
1493 | || (tic4x_cpu == 31 && tic4x_revision >= 5)
|
---|
1494 | || (tic4x_cpu == 32)
|
---|
1495 | || tic4x_lowpower )
|
---|
1496 | tic4x_oplevel |= OP_LPWR;
|
---|
1497 |
|
---|
1498 | if ( ( tic4x_cpu == 30 && tic4x_revision >= 7)
|
---|
1499 | || (tic4x_cpu == 31 && tic4x_revision >= 5)
|
---|
1500 | || (tic4x_cpu == 32)
|
---|
1501 | || (tic4x_cpu == 33)
|
---|
1502 | || (tic4x_cpu == 40 && tic4x_revision >= 5)
|
---|
1503 | || (tic4x_cpu == 44)
|
---|
1504 | || tic4x_idle2 )
|
---|
1505 | tic4x_oplevel |= OP_IDLE2;
|
---|
1506 |
|
---|
1507 | /* Create hash table for mnemonics. */
|
---|
1508 | tic4x_op_hash = hash_new ();
|
---|
1509 |
|
---|
1510 | /* Create hash table for asg pseudo. */
|
---|
1511 | tic4x_asg_hash = hash_new ();
|
---|
1512 |
|
---|
1513 | /* Add mnemonics to hash table, expanding conditional mnemonics on fly. */
|
---|
1514 | for (i = 0; i < tic4x_num_insts; i++)
|
---|
1515 | ok &= tic4x_inst_add ((void *) &tic4x_insts[i]);
|
---|
1516 |
|
---|
1517 | /* Create dummy inst to avoid errors accessing end of table. */
|
---|
1518 | tic4x_inst_make ("", 0, "");
|
---|
1519 |
|
---|
1520 | if (!ok)
|
---|
1521 | as_fatal ("Broken assembler. No assembly attempted.");
|
---|
1522 |
|
---|
1523 | /* Add registers to symbol table. */
|
---|
1524 | tic4x_init_regtable ();
|
---|
1525 |
|
---|
1526 | /* Add predefined symbols to symbol table. */
|
---|
1527 | tic4x_init_symbols ();
|
---|
1528 | }
|
---|
1529 |
|
---|
1530 | void
|
---|
1531 | tic4x_end ()
|
---|
1532 | {
|
---|
1533 | bfd_set_arch_mach (stdoutput, bfd_arch_tic4x,
|
---|
1534 | IS_CPU_TIC4X (tic4x_cpu) ? bfd_mach_tic4x : bfd_mach_tic3x);
|
---|
1535 | }
|
---|
1536 |
|
---|
1537 | static int
|
---|
1538 | tic4x_indirect_parse (operand, indirect)
|
---|
1539 | tic4x_operand_t *operand;
|
---|
1540 | const tic4x_indirect_t *indirect;
|
---|
1541 | {
|
---|
1542 | char *n = indirect->name;
|
---|
1543 | char *s = input_line_pointer;
|
---|
1544 | char *b;
|
---|
1545 | symbolS *symbolP;
|
---|
1546 | char name[32];
|
---|
1547 |
|
---|
1548 | operand->disp = 0;
|
---|
1549 | for (; *n; n++)
|
---|
1550 | {
|
---|
1551 | switch (*n)
|
---|
1552 | {
|
---|
1553 | case 'a': /* Need to match aux register. */
|
---|
1554 | b = name;
|
---|
1555 | #ifdef TIC4X_ALT_SYNTAX
|
---|
1556 | if (*s == '%')
|
---|
1557 | s++;
|
---|
1558 | #endif
|
---|
1559 | while (isalnum (*s))
|
---|
1560 | *b++ = *s++;
|
---|
1561 | *b++ = '\0';
|
---|
1562 | if (!(symbolP = symbol_find (name)))
|
---|
1563 | return 0;
|
---|
1564 |
|
---|
1565 | if (S_GET_SEGMENT (symbolP) != reg_section)
|
---|
1566 | return 0;
|
---|
1567 |
|
---|
1568 | operand->aregno = S_GET_VALUE (symbolP);
|
---|
1569 | if (operand->aregno >= REG_AR0 && operand->aregno <= REG_AR7)
|
---|
1570 | break;
|
---|
1571 |
|
---|
1572 | as_bad ("Auxiliary register AR0--AR7 required for indirect");
|
---|
1573 | return -1;
|
---|
1574 |
|
---|
1575 | case 'd': /* Need to match constant for disp. */
|
---|
1576 | #ifdef TIC4X_ALT_SYNTAX
|
---|
1577 | if (*s == '%') /* expr() will die if we don't skip this. */
|
---|
1578 | s++;
|
---|
1579 | #endif
|
---|
1580 | s = tic4x_expression (s, &operand->expr);
|
---|
1581 | if (operand->expr.X_op != O_constant)
|
---|
1582 | return 0;
|
---|
1583 | operand->disp = operand->expr.X_add_number;
|
---|
1584 | if (operand->disp < 0 || operand->disp > 255)
|
---|
1585 | {
|
---|
1586 | as_bad ("Bad displacement %d (require 0--255)\n",
|
---|
1587 | operand->disp);
|
---|
1588 | return -1;
|
---|
1589 | }
|
---|
1590 | break;
|
---|
1591 |
|
---|
1592 | case 'y': /* Need to match IR0. */
|
---|
1593 | case 'z': /* Need to match IR1. */
|
---|
1594 | #ifdef TIC4X_ALT_SYNTAX
|
---|
1595 | if (*s == '%')
|
---|
1596 | s++;
|
---|
1597 | #endif
|
---|
1598 | s = tic4x_expression (s, &operand->expr);
|
---|
1599 | if (operand->expr.X_op != O_register)
|
---|
1600 | return 0;
|
---|
1601 | if (operand->expr.X_add_number != REG_IR0
|
---|
1602 | && operand->expr.X_add_number != REG_IR1)
|
---|
1603 | {
|
---|
1604 | as_bad ("Index register IR0,IR1 required for displacement");
|
---|
1605 | return -1;
|
---|
1606 | }
|
---|
1607 |
|
---|
1608 | if (*n == 'y' && operand->expr.X_add_number == REG_IR0)
|
---|
1609 | break;
|
---|
1610 | if (*n == 'z' && operand->expr.X_add_number == REG_IR1)
|
---|
1611 | break;
|
---|
1612 | return 0;
|
---|
1613 |
|
---|
1614 | case '(':
|
---|
1615 | if (*s != '(') /* No displacement, assume to be 1. */
|
---|
1616 | {
|
---|
1617 | operand->disp = 1;
|
---|
1618 | while (*n != ')')
|
---|
1619 | n++;
|
---|
1620 | }
|
---|
1621 | else
|
---|
1622 | s++;
|
---|
1623 | break;
|
---|
1624 |
|
---|
1625 | default:
|
---|
1626 | if (tolower (*s) != *n)
|
---|
1627 | return 0;
|
---|
1628 | s++;
|
---|
1629 | }
|
---|
1630 | }
|
---|
1631 | if (*s != ' ' && *s != ',' && *s != '\0')
|
---|
1632 | return 0;
|
---|
1633 | input_line_pointer = s;
|
---|
1634 | return 1;
|
---|
1635 | }
|
---|
1636 |
|
---|
1637 | static char *
|
---|
1638 | tic4x_operand_parse (s, operand)
|
---|
1639 | char *s;
|
---|
1640 | tic4x_operand_t *operand;
|
---|
1641 | {
|
---|
1642 | unsigned int i;
|
---|
1643 | char c;
|
---|
1644 | int ret;
|
---|
1645 | expressionS *exp = &operand->expr;
|
---|
1646 | char *save = input_line_pointer;
|
---|
1647 | char *str;
|
---|
1648 | char *new;
|
---|
1649 | struct hash_entry *entry = NULL;
|
---|
1650 |
|
---|
1651 | input_line_pointer = s;
|
---|
1652 | SKIP_WHITESPACE ();
|
---|
1653 |
|
---|
1654 | str = input_line_pointer;
|
---|
1655 | c = get_symbol_end (); /* Get terminator. */
|
---|
1656 | new = input_line_pointer;
|
---|
1657 | if (strlen (str) && (entry = hash_find (tic4x_asg_hash, str)) != NULL)
|
---|
1658 | {
|
---|
1659 | *input_line_pointer = c;
|
---|
1660 | input_line_pointer = (char *) entry;
|
---|
1661 | }
|
---|
1662 | else
|
---|
1663 | {
|
---|
1664 | *input_line_pointer = c;
|
---|
1665 | input_line_pointer = str;
|
---|
1666 | }
|
---|
1667 |
|
---|
1668 | operand->mode = M_UNKNOWN;
|
---|
1669 | switch (*input_line_pointer)
|
---|
1670 | {
|
---|
1671 | #ifdef TIC4X_ALT_SYNTAX
|
---|
1672 | case '%':
|
---|
1673 | input_line_pointer = tic4x_expression (++input_line_pointer, exp);
|
---|
1674 | if (exp->X_op != O_register)
|
---|
1675 | as_bad ("Expecting a register name");
|
---|
1676 | operand->mode = M_REGISTER;
|
---|
1677 | break;
|
---|
1678 |
|
---|
1679 | case '^':
|
---|
1680 | /* Denotes high 16 bits. */
|
---|
1681 | input_line_pointer = tic4x_expression (++input_line_pointer, exp);
|
---|
1682 | if (exp->X_op == O_constant)
|
---|
1683 | operand->mode = M_IMMED;
|
---|
1684 | else if (exp->X_op == O_big)
|
---|
1685 | {
|
---|
1686 | if (exp->X_add_number)
|
---|
1687 | as_bad ("Number too large"); /* bignum required */
|
---|
1688 | else
|
---|
1689 | {
|
---|
1690 | tic4x_gen_to_words (generic_floating_point_number,
|
---|
1691 | operand->fwords, S_PRECISION);
|
---|
1692 | operand->mode = M_IMMED_F;
|
---|
1693 | }
|
---|
1694 | }
|
---|
1695 | /* Allow ori ^foo, ar0 to be equivalent to ldi .hi.foo, ar0 */
|
---|
1696 | /* WARNING : The TI C40 assembler cannot do this. */
|
---|
1697 | else if (exp->X_op == O_symbol)
|
---|
1698 | {
|
---|
1699 | operand->mode = M_HI;
|
---|
1700 | break;
|
---|
1701 | }
|
---|
1702 |
|
---|
1703 | case '#':
|
---|
1704 | input_line_pointer = tic4x_expression (++input_line_pointer, exp);
|
---|
1705 | if (exp->X_op == O_constant)
|
---|
1706 | operand->mode = M_IMMED;
|
---|
1707 | else if (exp->X_op == O_big)
|
---|
1708 | {
|
---|
1709 | if (exp->X_add_number > 0)
|
---|
1710 | as_bad ("Number too large"); /* bignum required. */
|
---|
1711 | else
|
---|
1712 | {
|
---|
1713 | tic4x_gen_to_words (generic_floating_point_number,
|
---|
1714 | operand->fwords, S_PRECISION);
|
---|
1715 | operand->mode = M_IMMED_F;
|
---|
1716 | }
|
---|
1717 | }
|
---|
1718 | /* Allow ori foo, ar0 to be equivalent to ldi .lo.foo, ar0 */
|
---|
1719 | /* WARNING : The TI C40 assembler cannot do this. */
|
---|
1720 | else if (exp->X_op == O_symbol)
|
---|
1721 | {
|
---|
1722 | operand->mode = M_IMMED;
|
---|
1723 | break;
|
---|
1724 | }
|
---|
1725 |
|
---|
1726 | else
|
---|
1727 | as_bad ("Expecting a constant value");
|
---|
1728 | break;
|
---|
1729 | case '\\':
|
---|
1730 | #endif
|
---|
1731 | case '@':
|
---|
1732 | input_line_pointer = tic4x_expression (++input_line_pointer, exp);
|
---|
1733 | if (exp->X_op != O_constant && exp->X_op != O_symbol)
|
---|
1734 | as_bad ("Bad direct addressing construct %s", s);
|
---|
1735 | if (exp->X_op == O_constant)
|
---|
1736 | {
|
---|
1737 | if (exp->X_add_number < 0)
|
---|
1738 | as_bad ("Direct value of %ld is not suitable",
|
---|
1739 | (long) exp->X_add_number);
|
---|
1740 | }
|
---|
1741 | operand->mode = M_DIRECT;
|
---|
1742 | break;
|
---|
1743 |
|
---|
1744 | case '*':
|
---|
1745 | ret = -1;
|
---|
1746 | for (i = 0; i < tic4x_num_indirects; i++)
|
---|
1747 | if ((ret = tic4x_indirect_parse (operand, &tic4x_indirects[i])))
|
---|
1748 | break;
|
---|
1749 | if (ret < 0)
|
---|
1750 | break;
|
---|
1751 | if (i < tic4x_num_indirects)
|
---|
1752 | {
|
---|
1753 | operand->mode = M_INDIRECT;
|
---|
1754 | /* Indirect addressing mode number. */
|
---|
1755 | operand->expr.X_add_number = tic4x_indirects[i].modn;
|
---|
1756 | /* Convert *+ARn(0) to *ARn etc. Maybe we should
|
---|
1757 | squeal about silly ones? */
|
---|
1758 | if (operand->expr.X_add_number < 0x08 && !operand->disp)
|
---|
1759 | operand->expr.X_add_number = 0x18;
|
---|
1760 | }
|
---|
1761 | else
|
---|
1762 | as_bad ("Unknown indirect addressing mode");
|
---|
1763 | break;
|
---|
1764 |
|
---|
1765 | default:
|
---|
1766 | operand->mode = M_IMMED; /* Assume immediate. */
|
---|
1767 | str = input_line_pointer;
|
---|
1768 | input_line_pointer = tic4x_expression (input_line_pointer, exp);
|
---|
1769 | if (exp->X_op == O_register)
|
---|
1770 | {
|
---|
1771 | know (exp->X_add_symbol == 0);
|
---|
1772 | know (exp->X_op_symbol == 0);
|
---|
1773 | operand->mode = M_REGISTER;
|
---|
1774 | break;
|
---|
1775 | }
|
---|
1776 | else if (exp->X_op == O_big)
|
---|
1777 | {
|
---|
1778 | if (exp->X_add_number > 0)
|
---|
1779 | as_bad ("Number too large"); /* bignum required. */
|
---|
1780 | else
|
---|
1781 | {
|
---|
1782 | tic4x_gen_to_words (generic_floating_point_number,
|
---|
1783 | operand->fwords, S_PRECISION);
|
---|
1784 | operand->mode = M_IMMED_F;
|
---|
1785 | }
|
---|
1786 | break;
|
---|
1787 | }
|
---|
1788 | #ifdef TIC4X_ALT_SYNTAX
|
---|
1789 | /* Allow ldi foo, ar0 to be equivalent to ldi @foo, ar0. */
|
---|
1790 | else if (exp->X_op == O_symbol)
|
---|
1791 | {
|
---|
1792 | operand->mode = M_DIRECT;
|
---|
1793 | break;
|
---|
1794 | }
|
---|
1795 | #endif
|
---|
1796 | }
|
---|
1797 | if (entry == NULL)
|
---|
1798 | new = input_line_pointer;
|
---|
1799 | input_line_pointer = save;
|
---|
1800 | return new;
|
---|
1801 | }
|
---|
1802 |
|
---|
1803 | static int
|
---|
1804 | tic4x_operands_match (inst, insn, check)
|
---|
1805 | tic4x_inst_t *inst;
|
---|
1806 | tic4x_insn_t *insn;
|
---|
1807 | int check;
|
---|
1808 | {
|
---|
1809 | const char *args = inst->args;
|
---|
1810 | unsigned long opcode = inst->opcode;
|
---|
1811 | int num_operands = insn->num_operands;
|
---|
1812 | tic4x_operand_t *operand = insn->operands;
|
---|
1813 | expressionS *exp = &operand->expr;
|
---|
1814 | int ret = 1;
|
---|
1815 | int reg;
|
---|
1816 |
|
---|
1817 | /* Build the opcode, checking as we go to make sure that the
|
---|
1818 | operands match.
|
---|
1819 |
|
---|
1820 | If an operand matches, we modify insn or opcode appropriately,
|
---|
1821 | and do a "continue". If an operand fails to match, we "break". */
|
---|
1822 |
|
---|
1823 | insn->nchars = 4; /* Instructions always 4 bytes. */
|
---|
1824 | insn->reloc = NO_RELOC;
|
---|
1825 | insn->pcrel = 0;
|
---|
1826 |
|
---|
1827 | if (*args == '\0')
|
---|
1828 | {
|
---|
1829 | insn->opcode = opcode;
|
---|
1830 | return num_operands == 0;
|
---|
1831 | }
|
---|
1832 |
|
---|
1833 | for (;; ++args)
|
---|
1834 | {
|
---|
1835 | switch (*args)
|
---|
1836 | {
|
---|
1837 |
|
---|
1838 | case '\0': /* End of args. */
|
---|
1839 | if (num_operands == 1)
|
---|
1840 | {
|
---|
1841 | insn->opcode = opcode;
|
---|
1842 | return ret;
|
---|
1843 | }
|
---|
1844 | break; /* Too many operands. */
|
---|
1845 |
|
---|
1846 | case '#': /* This is only used for ldp. */
|
---|
1847 | if (operand->mode != M_DIRECT && operand->mode != M_IMMED)
|
---|
1848 | break;
|
---|
1849 | /* While this looks like a direct addressing mode, we actually
|
---|
1850 | use an immediate mode form of ldiu or ldpk instruction. */
|
---|
1851 | if (exp->X_op == O_constant)
|
---|
1852 | {
|
---|
1853 | if( ( IS_CPU_TIC4X (tic4x_cpu) && exp->X_add_number <= 65535 )
|
---|
1854 | || ( IS_CPU_TIC3X (tic4x_cpu) && exp->X_add_number <= 255 ) )
|
---|
1855 | {
|
---|
1856 | INSERTS (opcode, exp->X_add_number, 15, 0);
|
---|
1857 | continue;
|
---|
1858 | }
|
---|
1859 | else
|
---|
1860 | {
|
---|
1861 | if (!check)
|
---|
1862 | as_bad ("Immediate value of %ld is too large for ldf",
|
---|
1863 | (long) exp->X_add_number);
|
---|
1864 | ret = -1;
|
---|
1865 | continue;
|
---|
1866 | }
|
---|
1867 | }
|
---|
1868 | else if (exp->X_op == O_symbol)
|
---|
1869 | {
|
---|
1870 | insn->reloc = BFD_RELOC_HI16;
|
---|
1871 | insn->exp = *exp;
|
---|
1872 | continue;
|
---|
1873 | }
|
---|
1874 | break; /* Not direct (dp) addressing. */
|
---|
1875 |
|
---|
1876 | case '@': /* direct. */
|
---|
1877 | if (operand->mode != M_DIRECT)
|
---|
1878 | break;
|
---|
1879 | if (exp->X_op == O_constant)
|
---|
1880 | {
|
---|
1881 | /* Store only the 16 LSBs of the number. */
|
---|
1882 | INSERTS (opcode, exp->X_add_number, 15, 0);
|
---|
1883 | continue;
|
---|
1884 | }
|
---|
1885 | else if (exp->X_op == O_symbol)
|
---|
1886 | {
|
---|
1887 | insn->reloc = BFD_RELOC_LO16;
|
---|
1888 | insn->exp = *exp;
|
---|
1889 | continue;
|
---|
1890 | }
|
---|
1891 | break; /* Not direct addressing. */
|
---|
1892 |
|
---|
1893 | case 'A':
|
---|
1894 | if (operand->mode != M_REGISTER)
|
---|
1895 | break;
|
---|
1896 | reg = exp->X_add_number;
|
---|
1897 | if (reg >= REG_AR0 && reg <= REG_AR7)
|
---|
1898 | INSERTU (opcode, reg - REG_AR0, 24, 22);
|
---|
1899 | else
|
---|
1900 | {
|
---|
1901 | if (!check)
|
---|
1902 | as_bad ("Destination register must be ARn");
|
---|
1903 | ret = -1;
|
---|
1904 | }
|
---|
1905 | continue;
|
---|
1906 |
|
---|
1907 | case 'B': /* Unsigned integer immediate. */
|
---|
1908 | /* Allow br label or br @label. */
|
---|
1909 | if (operand->mode != M_IMMED && operand->mode != M_DIRECT)
|
---|
1910 | break;
|
---|
1911 | if (exp->X_op == O_constant)
|
---|
1912 | {
|
---|
1913 | if (exp->X_add_number < (1 << 24))
|
---|
1914 | {
|
---|
1915 | INSERTU (opcode, exp->X_add_number, 23, 0);
|
---|
1916 | continue;
|
---|
1917 | }
|
---|
1918 | else
|
---|
1919 | {
|
---|
1920 | if (!check)
|
---|
1921 | as_bad ("Immediate value of %ld is too large",
|
---|
1922 | (long) exp->X_add_number);
|
---|
1923 | ret = -1;
|
---|
1924 | continue;
|
---|
1925 | }
|
---|
1926 | }
|
---|
1927 | if (IS_CPU_TIC4X (tic4x_cpu))
|
---|
1928 | {
|
---|
1929 | insn->reloc = BFD_RELOC_24_PCREL;
|
---|
1930 | insn->pcrel = 1;
|
---|
1931 | }
|
---|
1932 | else
|
---|
1933 | {
|
---|
1934 | insn->reloc = BFD_RELOC_24;
|
---|
1935 | insn->pcrel = 0;
|
---|
1936 | }
|
---|
1937 | insn->exp = *exp;
|
---|
1938 | continue;
|
---|
1939 |
|
---|
1940 | case 'C':
|
---|
1941 | if (!IS_CPU_TIC4X (tic4x_cpu))
|
---|
1942 | break;
|
---|
1943 | if (operand->mode != M_INDIRECT)
|
---|
1944 | break;
|
---|
1945 | /* Require either *+ARn(disp) or *ARn. */
|
---|
1946 | if (operand->expr.X_add_number != 0
|
---|
1947 | && operand->expr.X_add_number != 0x18)
|
---|
1948 | {
|
---|
1949 | if (!check)
|
---|
1950 | as_bad ("Invalid indirect addressing mode");
|
---|
1951 | ret = -1;
|
---|
1952 | continue;
|
---|
1953 | }
|
---|
1954 | INSERTU (opcode, operand->aregno - REG_AR0, 2, 0);
|
---|
1955 | INSERTU (opcode, operand->disp, 7, 3);
|
---|
1956 | continue;
|
---|
1957 |
|
---|
1958 | case 'E':
|
---|
1959 | if (!(operand->mode == M_REGISTER))
|
---|
1960 | break;
|
---|
1961 | INSERTU (opcode, exp->X_add_number, 7, 0);
|
---|
1962 | continue;
|
---|
1963 |
|
---|
1964 | case 'e':
|
---|
1965 | if (!(operand->mode == M_REGISTER))
|
---|
1966 | break;
|
---|
1967 | reg = exp->X_add_number;
|
---|
1968 | if ( (reg >= REG_R0 && reg <= REG_R7)
|
---|
1969 | || (IS_CPU_TIC4X (tic4x_cpu) && reg >= REG_R8 && reg <= REG_R11) )
|
---|
1970 | INSERTU (opcode, reg, 7, 0);
|
---|
1971 | else
|
---|
1972 | {
|
---|
1973 | if (!check)
|
---|
1974 | as_bad ("Register must be Rn");
|
---|
1975 | ret = -1;
|
---|
1976 | }
|
---|
1977 | continue;
|
---|
1978 |
|
---|
1979 | case 'F':
|
---|
1980 | if (operand->mode != M_IMMED_F
|
---|
1981 | && !(operand->mode == M_IMMED && exp->X_op == O_constant))
|
---|
1982 | break;
|
---|
1983 |
|
---|
1984 | if (operand->mode != M_IMMED_F)
|
---|
1985 | {
|
---|
1986 | /* OK, we 've got something like cmpf 0, r0
|
---|
1987 | Why can't they stick in a bloody decimal point ?! */
|
---|
1988 | char string[16];
|
---|
1989 |
|
---|
1990 | /* Create floating point number string. */
|
---|
1991 | sprintf (string, "%d.0", (int) exp->X_add_number);
|
---|
1992 | tic4x_atof (string, 's', operand->fwords);
|
---|
1993 | }
|
---|
1994 |
|
---|
1995 | INSERTU (opcode, operand->fwords[0], 15, 0);
|
---|
1996 | continue;
|
---|
1997 |
|
---|
1998 | case 'G':
|
---|
1999 | if (operand->mode != M_REGISTER)
|
---|
2000 | break;
|
---|
2001 | INSERTU (opcode, exp->X_add_number, 15, 8);
|
---|
2002 | continue;
|
---|
2003 |
|
---|
2004 | case 'g':
|
---|
2005 | if (operand->mode != M_REGISTER)
|
---|
2006 | break;
|
---|
2007 | reg = exp->X_add_number;
|
---|
2008 | if ( (reg >= REG_R0 && reg <= REG_R7)
|
---|
2009 | || (IS_CPU_TIC4X (tic4x_cpu) && reg >= REG_R8 && reg <= REG_R11) )
|
---|
2010 | INSERTU (opcode, reg, 15, 8);
|
---|
2011 | else
|
---|
2012 | {
|
---|
2013 | if (!check)
|
---|
2014 | as_bad ("Register must be Rn");
|
---|
2015 | ret = -1;
|
---|
2016 | }
|
---|
2017 | continue;
|
---|
2018 |
|
---|
2019 | case 'H':
|
---|
2020 | if (operand->mode != M_REGISTER)
|
---|
2021 | break;
|
---|
2022 | reg = exp->X_add_number;
|
---|
2023 | if (reg >= REG_R0 && reg <= REG_R7)
|
---|
2024 | INSERTU (opcode, reg - REG_R0, 18, 16);
|
---|
2025 | else
|
---|
2026 | {
|
---|
2027 | if (!check)
|
---|
2028 | as_bad ("Register must be R0--R7");
|
---|
2029 | ret = -1;
|
---|
2030 | }
|
---|
2031 | continue;
|
---|
2032 |
|
---|
2033 | case 'i':
|
---|
2034 | if ( operand->mode == M_REGISTER
|
---|
2035 | && tic4x_oplevel & OP_ENH )
|
---|
2036 | {
|
---|
2037 | reg = exp->X_add_number;
|
---|
2038 | INSERTU (opcode, reg, 4, 0);
|
---|
2039 | INSERTU (opcode, 7, 7, 5);
|
---|
2040 | continue;
|
---|
2041 | }
|
---|
2042 | /* Fallthrough */
|
---|
2043 |
|
---|
2044 | case 'I':
|
---|
2045 | if (operand->mode != M_INDIRECT)
|
---|
2046 | break;
|
---|
2047 | if (operand->disp != 0 && operand->disp != 1)
|
---|
2048 | {
|
---|
2049 | if (IS_CPU_TIC4X (tic4x_cpu))
|
---|
2050 | break;
|
---|
2051 | if (!check)
|
---|
2052 | as_bad ("Invalid indirect addressing mode displacement %d",
|
---|
2053 | operand->disp);
|
---|
2054 | ret = -1;
|
---|
2055 | continue;
|
---|
2056 | }
|
---|
2057 | INSERTU (opcode, operand->aregno - REG_AR0, 2, 0);
|
---|
2058 | INSERTU (opcode, operand->expr.X_add_number, 7, 3);
|
---|
2059 | continue;
|
---|
2060 |
|
---|
2061 | case 'j':
|
---|
2062 | if ( operand->mode == M_REGISTER
|
---|
2063 | && tic4x_oplevel & OP_ENH )
|
---|
2064 | {
|
---|
2065 | reg = exp->X_add_number;
|
---|
2066 | INSERTU (opcode, reg, 12, 8);
|
---|
2067 | INSERTU (opcode, 7, 15, 13);
|
---|
2068 | continue;
|
---|
2069 | }
|
---|
2070 | /* Fallthrough */
|
---|
2071 |
|
---|
2072 | case 'J':
|
---|
2073 | if (operand->mode != M_INDIRECT)
|
---|
2074 | break;
|
---|
2075 | if (operand->disp != 0 && operand->disp != 1)
|
---|
2076 | {
|
---|
2077 | if (IS_CPU_TIC4X (tic4x_cpu))
|
---|
2078 | break;
|
---|
2079 | if (!check)
|
---|
2080 | as_bad ("Invalid indirect addressing mode displacement %d",
|
---|
2081 | operand->disp);
|
---|
2082 | ret = -1;
|
---|
2083 | continue;
|
---|
2084 | }
|
---|
2085 | INSERTU (opcode, operand->aregno - REG_AR0, 10, 8);
|
---|
2086 | INSERTU (opcode, operand->expr.X_add_number, 15, 11);
|
---|
2087 | continue;
|
---|
2088 |
|
---|
2089 | case 'K':
|
---|
2090 | if (operand->mode != M_REGISTER)
|
---|
2091 | break;
|
---|
2092 | reg = exp->X_add_number;
|
---|
2093 | if (reg >= REG_R0 && reg <= REG_R7)
|
---|
2094 | INSERTU (opcode, reg - REG_R0, 21, 19);
|
---|
2095 | else
|
---|
2096 | {
|
---|
2097 | if (!check)
|
---|
2098 | as_bad ("Register must be R0--R7");
|
---|
2099 | ret = -1;
|
---|
2100 | }
|
---|
2101 | continue;
|
---|
2102 |
|
---|
2103 | case 'L':
|
---|
2104 | if (operand->mode != M_REGISTER)
|
---|
2105 | break;
|
---|
2106 | reg = exp->X_add_number;
|
---|
2107 | if (reg >= REG_R0 && reg <= REG_R7)
|
---|
2108 | INSERTU (opcode, reg - REG_R0, 24, 22);
|
---|
2109 | else
|
---|
2110 | {
|
---|
2111 | if (!check)
|
---|
2112 | as_bad ("Register must be R0--R7");
|
---|
2113 | ret = -1;
|
---|
2114 | }
|
---|
2115 | continue;
|
---|
2116 |
|
---|
2117 | case 'M':
|
---|
2118 | if (operand->mode != M_REGISTER)
|
---|
2119 | break;
|
---|
2120 | reg = exp->X_add_number;
|
---|
2121 | if (reg == REG_R2 || reg == REG_R3)
|
---|
2122 | INSERTU (opcode, reg - REG_R2, 22, 22);
|
---|
2123 | else
|
---|
2124 | {
|
---|
2125 | if (!check)
|
---|
2126 | as_bad ("Destination register must be R2 or R3");
|
---|
2127 | ret = -1;
|
---|
2128 | }
|
---|
2129 | continue;
|
---|
2130 |
|
---|
2131 | case 'N':
|
---|
2132 | if (operand->mode != M_REGISTER)
|
---|
2133 | break;
|
---|
2134 | reg = exp->X_add_number;
|
---|
2135 | if (reg == REG_R0 || reg == REG_R1)
|
---|
2136 | INSERTU (opcode, reg - REG_R0, 23, 23);
|
---|
2137 | else
|
---|
2138 | {
|
---|
2139 | if (!check)
|
---|
2140 | as_bad ("Destination register must be R0 or R1");
|
---|
2141 | ret = -1;
|
---|
2142 | }
|
---|
2143 | continue;
|
---|
2144 |
|
---|
2145 | case 'O':
|
---|
2146 | if (!IS_CPU_TIC4X (tic4x_cpu))
|
---|
2147 | break;
|
---|
2148 | if (operand->mode != M_INDIRECT)
|
---|
2149 | break;
|
---|
2150 | /* Require either *+ARn(disp) or *ARn. */
|
---|
2151 | if (operand->expr.X_add_number != 0
|
---|
2152 | && operand->expr.X_add_number != 0x18)
|
---|
2153 | {
|
---|
2154 | if (!check)
|
---|
2155 | as_bad ("Invalid indirect addressing mode");
|
---|
2156 | ret = -1;
|
---|
2157 | continue;
|
---|
2158 | }
|
---|
2159 | INSERTU (opcode, operand->aregno - REG_AR0, 10, 8);
|
---|
2160 | INSERTU (opcode, operand->disp, 15, 11);
|
---|
2161 | continue;
|
---|
2162 |
|
---|
2163 | case 'P': /* PC relative displacement. */
|
---|
2164 | /* Allow br label or br @label. */
|
---|
2165 | if (operand->mode != M_IMMED && operand->mode != M_DIRECT)
|
---|
2166 | break;
|
---|
2167 | if (exp->X_op == O_constant)
|
---|
2168 | {
|
---|
2169 | if (exp->X_add_number >= -32768 && exp->X_add_number <= 32767)
|
---|
2170 | {
|
---|
2171 | INSERTS (opcode, exp->X_add_number, 15, 0);
|
---|
2172 | continue;
|
---|
2173 | }
|
---|
2174 | else
|
---|
2175 | {
|
---|
2176 | if (!check)
|
---|
2177 | as_bad ("Displacement value of %ld is too large",
|
---|
2178 | (long) exp->X_add_number);
|
---|
2179 | ret = -1;
|
---|
2180 | continue;
|
---|
2181 | }
|
---|
2182 | }
|
---|
2183 | insn->reloc = BFD_RELOC_16_PCREL;
|
---|
2184 | insn->pcrel = 1;
|
---|
2185 | insn->exp = *exp;
|
---|
2186 | continue;
|
---|
2187 |
|
---|
2188 | case 'Q':
|
---|
2189 | if (operand->mode != M_REGISTER)
|
---|
2190 | break;
|
---|
2191 | reg = exp->X_add_number;
|
---|
2192 | INSERTU (opcode, reg, 15, 0);
|
---|
2193 | continue;
|
---|
2194 |
|
---|
2195 | case 'q':
|
---|
2196 | if (operand->mode != M_REGISTER)
|
---|
2197 | break;
|
---|
2198 | reg = exp->X_add_number;
|
---|
2199 | if ( (reg >= REG_R0 && reg <= REG_R7)
|
---|
2200 | || (IS_CPU_TIC4X (tic4x_cpu) && reg >= REG_R8 && reg <= REG_R11) )
|
---|
2201 | INSERTU (opcode, reg, 15, 0);
|
---|
2202 | else
|
---|
2203 | {
|
---|
2204 | if (!check)
|
---|
2205 | as_bad ("Register must be Rn");
|
---|
2206 | ret = -1;
|
---|
2207 | }
|
---|
2208 | continue;
|
---|
2209 |
|
---|
2210 | case 'R':
|
---|
2211 | if (operand->mode != M_REGISTER)
|
---|
2212 | break;
|
---|
2213 | reg = exp->X_add_number;
|
---|
2214 | INSERTU (opcode, reg, 20, 16);
|
---|
2215 | continue;
|
---|
2216 |
|
---|
2217 | case 'r':
|
---|
2218 | if (operand->mode != M_REGISTER)
|
---|
2219 | break;
|
---|
2220 | reg = exp->X_add_number;
|
---|
2221 | if ( (reg >= REG_R0 && reg <= REG_R7)
|
---|
2222 | || (IS_CPU_TIC4X (tic4x_cpu) && reg >= REG_R8 && reg <= REG_R11) )
|
---|
2223 | INSERTU (opcode, reg, 20, 16);
|
---|
2224 | else
|
---|
2225 | {
|
---|
2226 | if (!check)
|
---|
2227 | as_bad ("Register must be Rn");
|
---|
2228 | ret = -1;
|
---|
2229 | }
|
---|
2230 | continue;
|
---|
2231 |
|
---|
2232 | case 'S': /* Short immediate int. */
|
---|
2233 | if (operand->mode != M_IMMED && operand->mode != M_HI)
|
---|
2234 | break;
|
---|
2235 | if (exp->X_op == O_big)
|
---|
2236 | {
|
---|
2237 | if (!check)
|
---|
2238 | as_bad ("Floating point number not valid in expression");
|
---|
2239 | ret = -1;
|
---|
2240 | continue;
|
---|
2241 | }
|
---|
2242 | if (exp->X_op == O_constant)
|
---|
2243 | {
|
---|
2244 | if (exp->X_add_number >= -32768 && exp->X_add_number <= 65535)
|
---|
2245 | {
|
---|
2246 | INSERTS (opcode, exp->X_add_number, 15, 0);
|
---|
2247 | continue;
|
---|
2248 | }
|
---|
2249 | else
|
---|
2250 | {
|
---|
2251 | if (!check)
|
---|
2252 | as_bad ("Signed immediate value %ld too large",
|
---|
2253 | (long) exp->X_add_number);
|
---|
2254 | ret = -1;
|
---|
2255 | continue;
|
---|
2256 | }
|
---|
2257 | }
|
---|
2258 | else if (exp->X_op == O_symbol)
|
---|
2259 | {
|
---|
2260 | if (operand->mode == M_HI)
|
---|
2261 | {
|
---|
2262 | insn->reloc = BFD_RELOC_HI16;
|
---|
2263 | }
|
---|
2264 | else
|
---|
2265 | {
|
---|
2266 | insn->reloc = BFD_RELOC_LO16;
|
---|
2267 | }
|
---|
2268 | insn->exp = *exp;
|
---|
2269 | continue;
|
---|
2270 | }
|
---|
2271 | /* Handle cases like ldi foo - $, ar0 where foo
|
---|
2272 | is a forward reference. Perhaps we should check
|
---|
2273 | for X_op == O_symbol and disallow things like
|
---|
2274 | ldi foo, ar0. */
|
---|
2275 | insn->reloc = BFD_RELOC_16;
|
---|
2276 | insn->exp = *exp;
|
---|
2277 | continue;
|
---|
2278 |
|
---|
2279 | case 'T': /* 5-bit immediate value for tic4x stik. */
|
---|
2280 | if (!IS_CPU_TIC4X (tic4x_cpu))
|
---|
2281 | break;
|
---|
2282 | if (operand->mode != M_IMMED)
|
---|
2283 | break;
|
---|
2284 | if (exp->X_op == O_constant)
|
---|
2285 | {
|
---|
2286 | if (exp->X_add_number < 16 && exp->X_add_number >= -16)
|
---|
2287 | {
|
---|
2288 | INSERTS (opcode, exp->X_add_number, 20, 16);
|
---|
2289 | continue;
|
---|
2290 | }
|
---|
2291 | else
|
---|
2292 | {
|
---|
2293 | if (!check)
|
---|
2294 | as_bad ("Immediate value of %ld is too large",
|
---|
2295 | (long) exp->X_add_number);
|
---|
2296 | ret = -1;
|
---|
2297 | continue;
|
---|
2298 | }
|
---|
2299 | }
|
---|
2300 | break; /* No relocations allowed. */
|
---|
2301 |
|
---|
2302 | case 'U': /* Unsigned integer immediate. */
|
---|
2303 | if (operand->mode != M_IMMED && operand->mode != M_HI)
|
---|
2304 | break;
|
---|
2305 | if (exp->X_op == O_constant)
|
---|
2306 | {
|
---|
2307 | if (exp->X_add_number < (1 << 16) && exp->X_add_number >= 0)
|
---|
2308 | {
|
---|
2309 | INSERTU (opcode, exp->X_add_number, 15, 0);
|
---|
2310 | continue;
|
---|
2311 | }
|
---|
2312 | else
|
---|
2313 | {
|
---|
2314 | if (!check)
|
---|
2315 | as_bad ("Unsigned immediate value %ld too large",
|
---|
2316 | (long) exp->X_add_number);
|
---|
2317 | ret = -1;
|
---|
2318 | continue;
|
---|
2319 | }
|
---|
2320 | }
|
---|
2321 | else if (exp->X_op == O_symbol)
|
---|
2322 | {
|
---|
2323 | if (operand->mode == M_HI)
|
---|
2324 | insn->reloc = BFD_RELOC_HI16;
|
---|
2325 | else
|
---|
2326 | insn->reloc = BFD_RELOC_LO16;
|
---|
2327 |
|
---|
2328 | insn->exp = *exp;
|
---|
2329 | continue;
|
---|
2330 | }
|
---|
2331 | insn->reloc = BFD_RELOC_16;
|
---|
2332 | insn->exp = *exp;
|
---|
2333 | continue;
|
---|
2334 |
|
---|
2335 | case 'V': /* Trap numbers (immediate field). */
|
---|
2336 | if (operand->mode != M_IMMED)
|
---|
2337 | break;
|
---|
2338 | if (exp->X_op == O_constant)
|
---|
2339 | {
|
---|
2340 | if (exp->X_add_number < 512 && IS_CPU_TIC4X (tic4x_cpu))
|
---|
2341 | {
|
---|
2342 | INSERTU (opcode, exp->X_add_number, 8, 0);
|
---|
2343 | continue;
|
---|
2344 | }
|
---|
2345 | else if (exp->X_add_number < 32 && IS_CPU_TIC3X (tic4x_cpu))
|
---|
2346 | {
|
---|
2347 | INSERTU (opcode, exp->X_add_number | 0x20, 4, 0);
|
---|
2348 | continue;
|
---|
2349 | }
|
---|
2350 | else
|
---|
2351 | {
|
---|
2352 | if (!check)
|
---|
2353 | as_bad ("Immediate value of %ld is too large",
|
---|
2354 | (long) exp->X_add_number);
|
---|
2355 | ret = -1;
|
---|
2356 | continue;
|
---|
2357 | }
|
---|
2358 | }
|
---|
2359 | break; /* No relocations allowed. */
|
---|
2360 |
|
---|
2361 | case 'W': /* Short immediate int (0--7). */
|
---|
2362 | if (!IS_CPU_TIC4X (tic4x_cpu))
|
---|
2363 | break;
|
---|
2364 | if (operand->mode != M_IMMED)
|
---|
2365 | break;
|
---|
2366 | if (exp->X_op == O_big)
|
---|
2367 | {
|
---|
2368 | if (!check)
|
---|
2369 | as_bad ("Floating point number not valid in expression");
|
---|
2370 | ret = -1;
|
---|
2371 | continue;
|
---|
2372 | }
|
---|
2373 | if (exp->X_op == O_constant)
|
---|
2374 | {
|
---|
2375 | if (exp->X_add_number >= -256 && exp->X_add_number <= 127)
|
---|
2376 | {
|
---|
2377 | INSERTS (opcode, exp->X_add_number, 7, 0);
|
---|
2378 | continue;
|
---|
2379 | }
|
---|
2380 | else
|
---|
2381 | {
|
---|
2382 | if (!check)
|
---|
2383 | as_bad ("Immediate value %ld too large",
|
---|
2384 | (long) exp->X_add_number);
|
---|
2385 | ret = -1;
|
---|
2386 | continue;
|
---|
2387 | }
|
---|
2388 | }
|
---|
2389 | insn->reloc = BFD_RELOC_16;
|
---|
2390 | insn->exp = *exp;
|
---|
2391 | continue;
|
---|
2392 |
|
---|
2393 | case 'X': /* Expansion register for tic4x. */
|
---|
2394 | if (operand->mode != M_REGISTER)
|
---|
2395 | break;
|
---|
2396 | reg = exp->X_add_number;
|
---|
2397 | if (reg >= REG_IVTP && reg <= REG_TVTP)
|
---|
2398 | INSERTU (opcode, reg - REG_IVTP, 4, 0);
|
---|
2399 | else
|
---|
2400 | {
|
---|
2401 | if (!check)
|
---|
2402 | as_bad ("Register must be ivtp or tvtp");
|
---|
2403 | ret = -1;
|
---|
2404 | }
|
---|
2405 | continue;
|
---|
2406 |
|
---|
2407 | case 'Y': /* Address register for tic4x lda. */
|
---|
2408 | if (operand->mode != M_REGISTER)
|
---|
2409 | break;
|
---|
2410 | reg = exp->X_add_number;
|
---|
2411 | if (reg >= REG_AR0 && reg <= REG_SP)
|
---|
2412 | INSERTU (opcode, reg, 20, 16);
|
---|
2413 | else
|
---|
2414 | {
|
---|
2415 | if (!check)
|
---|
2416 | as_bad ("Register must be address register");
|
---|
2417 | ret = -1;
|
---|
2418 | }
|
---|
2419 | continue;
|
---|
2420 |
|
---|
2421 | case 'Z': /* Expansion register for tic4x. */
|
---|
2422 | if (operand->mode != M_REGISTER)
|
---|
2423 | break;
|
---|
2424 | reg = exp->X_add_number;
|
---|
2425 | if (reg >= REG_IVTP && reg <= REG_TVTP)
|
---|
2426 | INSERTU (opcode, reg - REG_IVTP, 20, 16);
|
---|
2427 | else
|
---|
2428 | {
|
---|
2429 | if (!check)
|
---|
2430 | as_bad ("Register must be ivtp or tvtp");
|
---|
2431 | ret = -1;
|
---|
2432 | }
|
---|
2433 | continue;
|
---|
2434 |
|
---|
2435 | case '*':
|
---|
2436 | if (operand->mode != M_INDIRECT)
|
---|
2437 | break;
|
---|
2438 | INSERTS (opcode, operand->disp, 7, 0);
|
---|
2439 | INSERTU (opcode, operand->aregno - REG_AR0, 10, 8);
|
---|
2440 | INSERTU (opcode, operand->expr.X_add_number, 15, 11);
|
---|
2441 | continue;
|
---|
2442 |
|
---|
2443 | case '|': /* treat as `,' if have ldi_ldi form. */
|
---|
2444 | if (insn->parallel)
|
---|
2445 | {
|
---|
2446 | if (--num_operands < 0)
|
---|
2447 | break; /* Too few operands. */
|
---|
2448 | operand++;
|
---|
2449 | if (operand->mode != M_PARALLEL)
|
---|
2450 | break;
|
---|
2451 | }
|
---|
2452 | /* Fall through. */
|
---|
2453 |
|
---|
2454 | case ',': /* Another operand. */
|
---|
2455 | if (--num_operands < 0)
|
---|
2456 | break; /* Too few operands. */
|
---|
2457 | operand++;
|
---|
2458 | exp = &operand->expr;
|
---|
2459 | continue;
|
---|
2460 |
|
---|
2461 | case ';': /* Another optional operand. */
|
---|
2462 | if (num_operands == 1 || operand[1].mode == M_PARALLEL)
|
---|
2463 | continue;
|
---|
2464 | if (--num_operands < 0)
|
---|
2465 | break; /* Too few operands. */
|
---|
2466 | operand++;
|
---|
2467 | exp = &operand->expr;
|
---|
2468 | continue;
|
---|
2469 |
|
---|
2470 | default:
|
---|
2471 | BAD_CASE (*args);
|
---|
2472 | }
|
---|
2473 | return 0;
|
---|
2474 | }
|
---|
2475 | }
|
---|
2476 |
|
---|
2477 | static void
|
---|
2478 | tic4x_insn_check (insn)
|
---|
2479 | tic4x_insn_t *insn;
|
---|
2480 | {
|
---|
2481 |
|
---|
2482 | if (!strcmp(insn->name, "lda"))
|
---|
2483 | {
|
---|
2484 | if (insn->num_operands < 2 || insn->num_operands > 2)
|
---|
2485 | as_fatal ("Illegal internal LDA insn definition");
|
---|
2486 |
|
---|
2487 | if ( insn->operands[0].mode == M_REGISTER
|
---|
2488 | && insn->operands[1].mode == M_REGISTER
|
---|
2489 | && insn->operands[0].expr.X_add_number == insn->operands[1].expr.X_add_number )
|
---|
2490 | as_bad ("Source and destination register should not be equal");
|
---|
2491 | }
|
---|
2492 | else if( !strcmp(insn->name, "ldi_ldi")
|
---|
2493 | || !strcmp(insn->name, "ldi1_ldi2")
|
---|
2494 | || !strcmp(insn->name, "ldi2_ldi1")
|
---|
2495 | || !strcmp(insn->name, "ldf_ldf")
|
---|
2496 | || !strcmp(insn->name, "ldf1_ldf2")
|
---|
2497 | || !strcmp(insn->name, "ldf2_ldf1") )
|
---|
2498 | {
|
---|
2499 | if ( insn->num_operands < 4 && insn->num_operands > 5 )
|
---|
2500 | as_fatal ("Illegal internal %s insn definition", insn->name);
|
---|
2501 |
|
---|
2502 | if ( insn->operands[1].mode == M_REGISTER
|
---|
2503 | && insn->operands[insn->num_operands-1].mode == M_REGISTER
|
---|
2504 | && insn->operands[1].expr.X_add_number == insn->operands[insn->num_operands-1].expr.X_add_number )
|
---|
2505 | as_warn ("Equal parallell destination registers, one result will be discarded");
|
---|
2506 | }
|
---|
2507 | }
|
---|
2508 |
|
---|
2509 | static void
|
---|
2510 | tic4x_insn_output (insn)
|
---|
2511 | tic4x_insn_t *insn;
|
---|
2512 | {
|
---|
2513 | char *dst;
|
---|
2514 |
|
---|
2515 | /* Grab another fragment for opcode. */
|
---|
2516 | dst = frag_more (insn->nchars);
|
---|
2517 |
|
---|
2518 | /* Put out opcode word as a series of bytes in little endian order. */
|
---|
2519 | md_number_to_chars (dst, insn->opcode, insn->nchars);
|
---|
2520 |
|
---|
2521 | /* Put out the symbol-dependent stuff. */
|
---|
2522 | if (insn->reloc != NO_RELOC)
|
---|
2523 | {
|
---|
2524 | /* Where is the offset into the fragment for this instruction. */
|
---|
2525 | fix_new_exp (frag_now,
|
---|
2526 | dst - frag_now->fr_literal, /* where */
|
---|
2527 | insn->nchars, /* size */
|
---|
2528 | &insn->exp,
|
---|
2529 | insn->pcrel,
|
---|
2530 | insn->reloc);
|
---|
2531 | }
|
---|
2532 | }
|
---|
2533 |
|
---|
2534 | /* Parse the operands. */
|
---|
2535 | int
|
---|
2536 | tic4x_operands_parse (s, operands, num_operands)
|
---|
2537 | char *s;
|
---|
2538 | tic4x_operand_t *operands;
|
---|
2539 | int num_operands;
|
---|
2540 | {
|
---|
2541 | if (!*s)
|
---|
2542 | return num_operands;
|
---|
2543 |
|
---|
2544 | do
|
---|
2545 | s = tic4x_operand_parse (s, &operands[num_operands++]);
|
---|
2546 | while (num_operands < TIC4X_OPERANDS_MAX && *s++ == ',');
|
---|
2547 |
|
---|
2548 | if (num_operands > TIC4X_OPERANDS_MAX)
|
---|
2549 | {
|
---|
2550 | as_bad ("Too many operands scanned");
|
---|
2551 | return -1;
|
---|
2552 | }
|
---|
2553 | return num_operands;
|
---|
2554 | }
|
---|
2555 |
|
---|
2556 | /* Assemble a single instruction. Its label has already been handled
|
---|
2557 | by the generic front end. We just parse mnemonic and operands, and
|
---|
2558 | produce the bytes of data and relocation. */
|
---|
2559 | void
|
---|
2560 | md_assemble (str)
|
---|
2561 | char *str;
|
---|
2562 | {
|
---|
2563 | int ok = 0;
|
---|
2564 | char *s;
|
---|
2565 | int i;
|
---|
2566 | int parsed = 0;
|
---|
2567 | tic4x_inst_t *inst; /* Instruction template. */
|
---|
2568 | tic4x_inst_t *first_inst;
|
---|
2569 |
|
---|
2570 | /* Scan for parallel operators */
|
---|
2571 | if (str)
|
---|
2572 | {
|
---|
2573 | s = str;
|
---|
2574 | while (*s && *s != '|')
|
---|
2575 | s++;
|
---|
2576 |
|
---|
2577 | if (*s && s[1]=='|')
|
---|
2578 | {
|
---|
2579 | if(insn->parallel)
|
---|
2580 | {
|
---|
2581 | as_bad ("Parallel opcode cannot contain more than two instructions");
|
---|
2582 | insn->parallel = 0;
|
---|
2583 | insn->in_use = 0;
|
---|
2584 | return;
|
---|
2585 | }
|
---|
2586 |
|
---|
2587 | /* Lets take care of the first part of the parallel insn */
|
---|
2588 | *s++ = 0;
|
---|
2589 | md_assemble(str);
|
---|
2590 | insn->parallel = 1;
|
---|
2591 | str = ++s;
|
---|
2592 | /* .. and let the second run though here */
|
---|
2593 | }
|
---|
2594 | }
|
---|
2595 |
|
---|
2596 | if (str && insn->parallel)
|
---|
2597 | {
|
---|
2598 | /* Find mnemonic (second part of parallel instruction). */
|
---|
2599 | s = str;
|
---|
2600 | /* Skip past instruction mnemonic. */
|
---|
2601 | while (*s && *s != ' ')
|
---|
2602 | s++;
|
---|
2603 | if (*s) /* Null terminate for hash_find. */
|
---|
2604 | *s++ = '\0'; /* and skip past null. */
|
---|
2605 | strcat (insn->name, "_");
|
---|
2606 | strncat (insn->name, str, TIC4X_NAME_MAX - strlen (insn->name));
|
---|
2607 |
|
---|
2608 | insn->operands[insn->num_operands++].mode = M_PARALLEL;
|
---|
2609 |
|
---|
2610 | if ((i = tic4x_operands_parse
|
---|
2611 | (s, insn->operands, insn->num_operands)) < 0)
|
---|
2612 | {
|
---|
2613 | insn->parallel = 0;
|
---|
2614 | insn->in_use = 0;
|
---|
2615 | return;
|
---|
2616 | }
|
---|
2617 | insn->num_operands = i;
|
---|
2618 | parsed = 1;
|
---|
2619 | }
|
---|
2620 |
|
---|
2621 | if (insn->in_use)
|
---|
2622 | {
|
---|
2623 | if ((insn->inst = (struct tic4x_inst *)
|
---|
2624 | hash_find (tic4x_op_hash, insn->name)) == NULL)
|
---|
2625 | {
|
---|
2626 | as_bad ("Unknown opcode `%s'.", insn->name);
|
---|
2627 | insn->parallel = 0;
|
---|
2628 | insn->in_use = 0;
|
---|
2629 | return;
|
---|
2630 | }
|
---|
2631 |
|
---|
2632 | inst = insn->inst;
|
---|
2633 | first_inst = NULL;
|
---|
2634 | do
|
---|
2635 | {
|
---|
2636 | ok = tic4x_operands_match (inst, insn, 1);
|
---|
2637 | if (ok < 0)
|
---|
2638 | {
|
---|
2639 | if (!first_inst)
|
---|
2640 | first_inst = inst;
|
---|
2641 | ok = 0;
|
---|
2642 | }
|
---|
2643 | } while (!ok && !strcmp (inst->name, inst[1].name) && inst++);
|
---|
2644 |
|
---|
2645 | if (ok > 0)
|
---|
2646 | {
|
---|
2647 | tic4x_insn_check (insn);
|
---|
2648 | tic4x_insn_output (insn);
|
---|
2649 | }
|
---|
2650 | else if (!ok)
|
---|
2651 | {
|
---|
2652 | if (first_inst)
|
---|
2653 | tic4x_operands_match (first_inst, insn, 0);
|
---|
2654 | as_bad ("Invalid operands for %s", insn->name);
|
---|
2655 | }
|
---|
2656 | else
|
---|
2657 | as_bad ("Invalid instruction %s", insn->name);
|
---|
2658 | }
|
---|
2659 |
|
---|
2660 | if (str && !parsed)
|
---|
2661 | {
|
---|
2662 | /* Find mnemonic. */
|
---|
2663 | s = str;
|
---|
2664 | while (*s && *s != ' ') /* Skip past instruction mnemonic. */
|
---|
2665 | s++;
|
---|
2666 | if (*s) /* Null terminate for hash_find. */
|
---|
2667 | *s++ = '\0'; /* and skip past null. */
|
---|
2668 | strncpy (insn->name, str, TIC4X_NAME_MAX - 3);
|
---|
2669 |
|
---|
2670 | if ((i = tic4x_operands_parse (s, insn->operands, 0)) < 0)
|
---|
2671 | {
|
---|
2672 | insn->inst = NULL; /* Flag that error occured. */
|
---|
2673 | insn->parallel = 0;
|
---|
2674 | insn->in_use = 0;
|
---|
2675 | return;
|
---|
2676 | }
|
---|
2677 | insn->num_operands = i;
|
---|
2678 | insn->in_use = 1;
|
---|
2679 | }
|
---|
2680 | else
|
---|
2681 | insn->in_use = 0;
|
---|
2682 | insn->parallel = 0;
|
---|
2683 | }
|
---|
2684 |
|
---|
2685 | void
|
---|
2686 | tic4x_cleanup ()
|
---|
2687 | {
|
---|
2688 | if (insn->in_use)
|
---|
2689 | md_assemble (NULL);
|
---|
2690 | }
|
---|
2691 |
|
---|
2692 | /* Turn a string in input_line_pointer into a floating point constant
|
---|
2693 | of type type, and store the appropriate bytes in *litP. The number
|
---|
2694 | of LITTLENUMS emitted is stored in *sizeP. An error message is
|
---|
2695 | returned, or NULL on OK. */
|
---|
2696 |
|
---|
2697 | char *
|
---|
2698 | md_atof (type, litP, sizeP)
|
---|
2699 | int type;
|
---|
2700 | char *litP;
|
---|
2701 | int *sizeP;
|
---|
2702 | {
|
---|
2703 | int prec;
|
---|
2704 | int ieee;
|
---|
2705 | LITTLENUM_TYPE words[MAX_LITTLENUMS];
|
---|
2706 | LITTLENUM_TYPE *wordP;
|
---|
2707 | unsigned char *t;
|
---|
2708 |
|
---|
2709 | switch (type)
|
---|
2710 | {
|
---|
2711 | case 's': /* .single */
|
---|
2712 | case 'S':
|
---|
2713 | ieee = 0;
|
---|
2714 | prec = 1;
|
---|
2715 | break;
|
---|
2716 |
|
---|
2717 | case 'd': /* .double */
|
---|
2718 | case 'D':
|
---|
2719 | case 'f': /* .float or .single */
|
---|
2720 | case 'F':
|
---|
2721 | ieee = 0;
|
---|
2722 | prec = 2; /* 1 32-bit word */
|
---|
2723 | break;
|
---|
2724 |
|
---|
2725 | case 'i': /* .ieee */
|
---|
2726 | case 'I':
|
---|
2727 | prec = 2;
|
---|
2728 | ieee = 1;
|
---|
2729 | type = 'f'; /* Rewrite type to be usable by atof_ieee() */
|
---|
2730 | break;
|
---|
2731 |
|
---|
2732 | case 'e': /* .ldouble */
|
---|
2733 | case 'E':
|
---|
2734 | prec = 4; /* 2 32-bit words */
|
---|
2735 | ieee = 0;
|
---|
2736 | break;
|
---|
2737 |
|
---|
2738 | default:
|
---|
2739 | *sizeP = 0;
|
---|
2740 | return "Bad call to md_atof()";
|
---|
2741 | }
|
---|
2742 |
|
---|
2743 | if (ieee)
|
---|
2744 | t = atof_ieee (input_line_pointer, type, words);
|
---|
2745 | else
|
---|
2746 | t = tic4x_atof (input_line_pointer, type, words);
|
---|
2747 | if (t)
|
---|
2748 | input_line_pointer = t;
|
---|
2749 | *sizeP = prec * sizeof (LITTLENUM_TYPE);
|
---|
2750 | t = litP;
|
---|
2751 | /* This loops outputs the LITTLENUMs in REVERSE order; in accord with
|
---|
2752 | little endian byte order. */
|
---|
2753 | /* SES: However it is required to put the words (32-bits) out in the
|
---|
2754 | correct order, hence we write 2 and 2 littlenums in little endian
|
---|
2755 | order, while we keep the original order on successive words. */
|
---|
2756 | for(wordP = words; wordP<(words+prec) ; wordP+=2)
|
---|
2757 | {
|
---|
2758 | if (wordP<(words+prec-1)) /* Dump wordP[1] (if we have one) */
|
---|
2759 | {
|
---|
2760 | md_number_to_chars (litP, (valueT) (wordP[1]),
|
---|
2761 | sizeof (LITTLENUM_TYPE));
|
---|
2762 | litP += sizeof (LITTLENUM_TYPE);
|
---|
2763 | }
|
---|
2764 |
|
---|
2765 | /* Dump wordP[0] */
|
---|
2766 | md_number_to_chars (litP, (valueT) (wordP[0]),
|
---|
2767 | sizeof (LITTLENUM_TYPE));
|
---|
2768 | litP += sizeof (LITTLENUM_TYPE);
|
---|
2769 | }
|
---|
2770 | return 0;
|
---|
2771 | }
|
---|
2772 |
|
---|
2773 | void
|
---|
2774 | md_apply_fix3 (fixP, value, seg)
|
---|
2775 | fixS *fixP;
|
---|
2776 | valueT *value;
|
---|
2777 | segT seg ATTRIBUTE_UNUSED;
|
---|
2778 | {
|
---|
2779 | char *buf = fixP->fx_where + fixP->fx_frag->fr_literal;
|
---|
2780 | valueT val = *value;
|
---|
2781 |
|
---|
2782 | switch (fixP->fx_r_type)
|
---|
2783 | {
|
---|
2784 | case BFD_RELOC_HI16:
|
---|
2785 | val >>= 16;
|
---|
2786 | break;
|
---|
2787 |
|
---|
2788 | case BFD_RELOC_LO16:
|
---|
2789 | val &= 0xffff;
|
---|
2790 | break;
|
---|
2791 | default:
|
---|
2792 | break;
|
---|
2793 | }
|
---|
2794 |
|
---|
2795 | switch (fixP->fx_r_type)
|
---|
2796 | {
|
---|
2797 | case BFD_RELOC_32:
|
---|
2798 | buf[3] = val >> 24;
|
---|
2799 | case BFD_RELOC_24:
|
---|
2800 | case BFD_RELOC_24_PCREL:
|
---|
2801 | buf[2] = val >> 16;
|
---|
2802 | case BFD_RELOC_16:
|
---|
2803 | case BFD_RELOC_16_PCREL:
|
---|
2804 | case BFD_RELOC_LO16:
|
---|
2805 | case BFD_RELOC_HI16:
|
---|
2806 | buf[1] = val >> 8;
|
---|
2807 | buf[0] = val;
|
---|
2808 | break;
|
---|
2809 |
|
---|
2810 | case NO_RELOC:
|
---|
2811 | default:
|
---|
2812 | as_bad ("Bad relocation type: 0x%02x", fixP->fx_r_type);
|
---|
2813 | break;
|
---|
2814 | }
|
---|
2815 |
|
---|
2816 | if (fixP->fx_addsy == NULL && fixP->fx_pcrel == 0) fixP->fx_done = 1;
|
---|
2817 | }
|
---|
2818 |
|
---|
2819 | /* Should never be called for tic4x. */
|
---|
2820 | void
|
---|
2821 | md_convert_frag (headers, sec, fragP)
|
---|
2822 | bfd *headers ATTRIBUTE_UNUSED;
|
---|
2823 | segT sec ATTRIBUTE_UNUSED;
|
---|
2824 | fragS *fragP ATTRIBUTE_UNUSED;
|
---|
2825 | {
|
---|
2826 | as_fatal ("md_convert_frag");
|
---|
2827 | }
|
---|
2828 |
|
---|
2829 | /* Should never be called for tic4x. */
|
---|
2830 | void
|
---|
2831 | md_create_short_jump (ptr, from_addr, to_addr, frag, to_symbol)
|
---|
2832 | char *ptr ATTRIBUTE_UNUSED;
|
---|
2833 | addressT from_addr ATTRIBUTE_UNUSED;
|
---|
2834 | addressT to_addr ATTRIBUTE_UNUSED;
|
---|
2835 | fragS *frag ATTRIBUTE_UNUSED;
|
---|
2836 | symbolS *to_symbol ATTRIBUTE_UNUSED;
|
---|
2837 | {
|
---|
2838 | as_fatal ("md_create_short_jmp\n");
|
---|
2839 | }
|
---|
2840 |
|
---|
2841 | /* Should never be called for tic4x. */
|
---|
2842 | void
|
---|
2843 | md_create_long_jump (ptr, from_addr, to_addr, frag, to_symbol)
|
---|
2844 | char *ptr ATTRIBUTE_UNUSED;
|
---|
2845 | addressT from_addr ATTRIBUTE_UNUSED;
|
---|
2846 | addressT to_addr ATTRIBUTE_UNUSED;
|
---|
2847 | fragS *frag ATTRIBUTE_UNUSED;
|
---|
2848 | symbolS *to_symbol ATTRIBUTE_UNUSED;
|
---|
2849 | {
|
---|
2850 | as_fatal ("md_create_long_jump\n");
|
---|
2851 | }
|
---|
2852 |
|
---|
2853 | /* Should never be called for tic4x. */
|
---|
2854 | int
|
---|
2855 | md_estimate_size_before_relax (fragP, segtype)
|
---|
2856 | register fragS *fragP ATTRIBUTE_UNUSED;
|
---|
2857 | segT segtype ATTRIBUTE_UNUSED;
|
---|
2858 | {
|
---|
2859 | as_fatal ("md_estimate_size_before_relax\n");
|
---|
2860 | return 0;
|
---|
2861 | }
|
---|
2862 |
|
---|
2863 |
|
---|
2864 | int
|
---|
2865 | md_parse_option (c, arg)
|
---|
2866 | int c;
|
---|
2867 | char *arg;
|
---|
2868 | {
|
---|
2869 | switch (c)
|
---|
2870 | {
|
---|
2871 | case OPTION_CPU: /* cpu brand */
|
---|
2872 | if (tolower (*arg) == 'c')
|
---|
2873 | arg++;
|
---|
2874 | tic4x_cpu = atoi (arg);
|
---|
2875 | if (!IS_CPU_TIC3X (tic4x_cpu) && !IS_CPU_TIC4X (tic4x_cpu))
|
---|
2876 | as_warn ("Unsupported processor generation %d", tic4x_cpu);
|
---|
2877 | break;
|
---|
2878 |
|
---|
2879 | case OPTION_REV: /* cpu revision */
|
---|
2880 | tic4x_revision = atoi (arg);
|
---|
2881 | break;
|
---|
2882 |
|
---|
2883 | case 'b':
|
---|
2884 | as_warn ("Option -b is depreciated, please use -mbig");
|
---|
2885 | case OPTION_BIG: /* big model */
|
---|
2886 | tic4x_big_model = 1;
|
---|
2887 | break;
|
---|
2888 |
|
---|
2889 | case 'p':
|
---|
2890 | as_warn ("Option -p is depreciated, please use -mmemparm");
|
---|
2891 | case OPTION_MEMPARM: /* push args */
|
---|
2892 | tic4x_reg_args = 0;
|
---|
2893 | break;
|
---|
2894 |
|
---|
2895 | case 'r':
|
---|
2896 | as_warn ("Option -r is depreciated, please use -mregparm");
|
---|
2897 | case OPTION_REGPARM: /* register args */
|
---|
2898 | tic4x_reg_args = 1;
|
---|
2899 | break;
|
---|
2900 |
|
---|
2901 | case 's':
|
---|
2902 | as_warn ("Option -s is depreciated, please use -msmall");
|
---|
2903 | case OPTION_SMALL: /* small model */
|
---|
2904 | tic4x_big_model = 0;
|
---|
2905 | break;
|
---|
2906 |
|
---|
2907 | case OPTION_IDLE2:
|
---|
2908 | tic4x_idle2 = 1;
|
---|
2909 | break;
|
---|
2910 |
|
---|
2911 | case OPTION_LOWPOWER:
|
---|
2912 | tic4x_lowpower = 1;
|
---|
2913 | break;
|
---|
2914 |
|
---|
2915 | case OPTION_ENHANCED:
|
---|
2916 | tic4x_enhanced = 1;
|
---|
2917 | break;
|
---|
2918 |
|
---|
2919 | default:
|
---|
2920 | return 0;
|
---|
2921 | }
|
---|
2922 |
|
---|
2923 | return 1;
|
---|
2924 | }
|
---|
2925 |
|
---|
2926 | void
|
---|
2927 | md_show_usage (stream)
|
---|
2928 | FILE *stream;
|
---|
2929 | {
|
---|
2930 | fprintf (stream,
|
---|
2931 | _("\nTIC4X options:\n"
|
---|
2932 | " -mcpu=CPU -mCPU select architecture variant. CPU can be:\n"
|
---|
2933 | " 30 - TMS320C30\n"
|
---|
2934 | " 31 - TMS320C31, TMS320LC31\n"
|
---|
2935 | " 32 - TMS320C32\n"
|
---|
2936 | " 33 - TMS320VC33\n"
|
---|
2937 | " 40 - TMS320C40\n"
|
---|
2938 | " 44 - TMS320C44\n"
|
---|
2939 | " -mrev=REV set cpu hardware revision (integer numbers).\n"
|
---|
2940 | " Combinations of -mcpu and -mrev will enable/disable\n"
|
---|
2941 | " the appropriate options (-midle2, -mlowpower and\n"
|
---|
2942 | " -menhanced) according to the selected type\n"
|
---|
2943 | " -mbig select big memory model\n"
|
---|
2944 | " -msmall select small memory model (default)\n"
|
---|
2945 | " -mregparm select register parameters (default)\n"
|
---|
2946 | " -mmemparm select memory parameters\n"
|
---|
2947 | " -midle2 enable IDLE2 support\n"
|
---|
2948 | " -mlowpower enable LOPOWER and MAXSPEED support\n"
|
---|
2949 | " -menhanced enable enhanced opcode support\n"));
|
---|
2950 | }
|
---|
2951 |
|
---|
2952 | /* This is called when a line is unrecognized. This is used to handle
|
---|
2953 | definitions of TI C3x tools style local labels $n where n is a single
|
---|
2954 | decimal digit. */
|
---|
2955 | int
|
---|
2956 | tic4x_unrecognized_line (c)
|
---|
2957 | int c;
|
---|
2958 | {
|
---|
2959 | int lab;
|
---|
2960 | char *s;
|
---|
2961 |
|
---|
2962 | if (c != '$' || !isdigit (input_line_pointer[0]))
|
---|
2963 | return 0;
|
---|
2964 |
|
---|
2965 | s = input_line_pointer;
|
---|
2966 |
|
---|
2967 | /* Let's allow multiple digit local labels. */
|
---|
2968 | lab = 0;
|
---|
2969 | while (isdigit (*s))
|
---|
2970 | {
|
---|
2971 | lab = lab * 10 + *s - '0';
|
---|
2972 | s++;
|
---|
2973 | }
|
---|
2974 |
|
---|
2975 | if (dollar_label_defined (lab))
|
---|
2976 | {
|
---|
2977 | as_bad ("Label \"$%d\" redefined", lab);
|
---|
2978 | return 0;
|
---|
2979 | }
|
---|
2980 |
|
---|
2981 | define_dollar_label (lab);
|
---|
2982 | colon (dollar_label_name (lab, 0));
|
---|
2983 | input_line_pointer = s + 1;
|
---|
2984 |
|
---|
2985 | return 1;
|
---|
2986 | }
|
---|
2987 |
|
---|
2988 | /* Handle local labels peculiar to us referred to in an expression. */
|
---|
2989 | symbolS *
|
---|
2990 | md_undefined_symbol (name)
|
---|
2991 | char *name;
|
---|
2992 | {
|
---|
2993 | /* Look for local labels of the form $n. */
|
---|
2994 | if (name[0] == '$' && isdigit (name[1]))
|
---|
2995 | {
|
---|
2996 | symbolS *symbolP;
|
---|
2997 | char *s = name + 1;
|
---|
2998 | int lab = 0;
|
---|
2999 |
|
---|
3000 | while (isdigit ((unsigned char) *s))
|
---|
3001 | {
|
---|
3002 | lab = lab * 10 + *s - '0';
|
---|
3003 | s++;
|
---|
3004 | }
|
---|
3005 | if (dollar_label_defined (lab))
|
---|
3006 | {
|
---|
3007 | name = dollar_label_name (lab, 0);
|
---|
3008 | symbolP = symbol_find (name);
|
---|
3009 | }
|
---|
3010 | else
|
---|
3011 | {
|
---|
3012 | name = dollar_label_name (lab, 1);
|
---|
3013 | symbolP = symbol_find_or_make (name);
|
---|
3014 | }
|
---|
3015 |
|
---|
3016 | return symbolP;
|
---|
3017 | }
|
---|
3018 | return NULL;
|
---|
3019 | }
|
---|
3020 |
|
---|
3021 | /* Parse an operand that is machine-specific. */
|
---|
3022 | void
|
---|
3023 | md_operand (expressionP)
|
---|
3024 | expressionS *expressionP ATTRIBUTE_UNUSED;
|
---|
3025 | {
|
---|
3026 | }
|
---|
3027 |
|
---|
3028 | /* Round up a section size to the appropriate boundary---do we need this? */
|
---|
3029 | valueT
|
---|
3030 | md_section_align (segment, size)
|
---|
3031 | segT segment ATTRIBUTE_UNUSED;
|
---|
3032 | valueT size;
|
---|
3033 | {
|
---|
3034 | return size; /* Byte (i.e., 32-bit) alignment is fine? */
|
---|
3035 | }
|
---|
3036 |
|
---|
3037 | static int
|
---|
3038 | tic4x_pc_offset (op)
|
---|
3039 | unsigned int op;
|
---|
3040 | {
|
---|
3041 | /* Determine the PC offset for a C[34]x instruction.
|
---|
3042 | This could be simplified using some boolean algebra
|
---|
3043 | but at the expense of readability. */
|
---|
3044 | switch (op >> 24)
|
---|
3045 | {
|
---|
3046 | case 0x60: /* br */
|
---|
3047 | case 0x62: /* call (C4x) */
|
---|
3048 | case 0x64: /* rptb (C4x) */
|
---|
3049 | return 1;
|
---|
3050 | case 0x61: /* brd */
|
---|
3051 | case 0x63: /* laj */
|
---|
3052 | case 0x65: /* rptbd (C4x) */
|
---|
3053 | return 3;
|
---|
3054 | case 0x66: /* swi */
|
---|
3055 | case 0x67:
|
---|
3056 | return 0;
|
---|
3057 | default:
|
---|
3058 | break;
|
---|
3059 | }
|
---|
3060 |
|
---|
3061 | switch ((op & 0xffe00000) >> 20)
|
---|
3062 | {
|
---|
3063 | case 0x6a0: /* bB */
|
---|
3064 | case 0x720: /* callB */
|
---|
3065 | case 0x740: /* trapB */
|
---|
3066 | return 1;
|
---|
3067 |
|
---|
3068 | case 0x6a2: /* bBd */
|
---|
3069 | case 0x6a6: /* bBat */
|
---|
3070 | case 0x6aa: /* bBaf */
|
---|
3071 | case 0x722: /* lajB */
|
---|
3072 | case 0x748: /* latB */
|
---|
3073 | case 0x798: /* rptbd */
|
---|
3074 | return 3;
|
---|
3075 |
|
---|
3076 | default:
|
---|
3077 | break;
|
---|
3078 | }
|
---|
3079 |
|
---|
3080 | switch ((op & 0xfe200000) >> 20)
|
---|
3081 | {
|
---|
3082 | case 0x6e0: /* dbB */
|
---|
3083 | return 1;
|
---|
3084 |
|
---|
3085 | case 0x6e2: /* dbBd */
|
---|
3086 | return 3;
|
---|
3087 |
|
---|
3088 | default:
|
---|
3089 | break;
|
---|
3090 | }
|
---|
3091 |
|
---|
3092 | return 0;
|
---|
3093 | }
|
---|
3094 |
|
---|
3095 | /* Exactly what point is a PC-relative offset relative TO?
|
---|
3096 | With the C3x we have the following:
|
---|
3097 | DBcond, Bcond disp + PC + 1 => PC
|
---|
3098 | DBcondD, BcondD disp + PC + 3 => PC
|
---|
3099 | */
|
---|
3100 | long
|
---|
3101 | md_pcrel_from (fixP)
|
---|
3102 | fixS *fixP;
|
---|
3103 | {
|
---|
3104 | unsigned char *buf = fixP->fx_where + fixP->fx_frag->fr_literal;
|
---|
3105 | unsigned int op;
|
---|
3106 |
|
---|
3107 | op = (buf[3] << 24) | (buf[2] << 16) | (buf[1] << 8) | buf[0];
|
---|
3108 |
|
---|
3109 | return ((fixP->fx_where + fixP->fx_frag->fr_address) >> 2) +
|
---|
3110 | tic4x_pc_offset (op);
|
---|
3111 | }
|
---|
3112 |
|
---|
3113 | /* Fill the alignment area with NOP's on .text, unless fill-data
|
---|
3114 | was specified. */
|
---|
3115 | int
|
---|
3116 | tic4x_do_align (alignment, fill, len, max)
|
---|
3117 | int alignment ATTRIBUTE_UNUSED;
|
---|
3118 | const char *fill ATTRIBUTE_UNUSED;
|
---|
3119 | int len ATTRIBUTE_UNUSED;
|
---|
3120 | int max ATTRIBUTE_UNUSED;
|
---|
3121 | {
|
---|
3122 | unsigned long nop = NOP_OPCODE;
|
---|
3123 |
|
---|
3124 | /* Because we are talking lwords, not bytes, adjust aligment to do words */
|
---|
3125 | alignment += 2;
|
---|
3126 |
|
---|
3127 | if (alignment != 0 && !need_pass_2)
|
---|
3128 | {
|
---|
3129 | if (fill == NULL)
|
---|
3130 | {
|
---|
3131 | /*if (subseg_text_p (now_seg))*/ /* FIXME: doesnt work for .text for some reason */
|
---|
3132 | frag_align_pattern( alignment, (const char *)&nop, sizeof(nop), max);
|
---|
3133 | return 1;
|
---|
3134 | /*else
|
---|
3135 | frag_align (alignment, 0, max);*/
|
---|
3136 | }
|
---|
3137 | else if (len <= 1)
|
---|
3138 | frag_align (alignment, *fill, max);
|
---|
3139 | else
|
---|
3140 | frag_align_pattern (alignment, fill, len, max);
|
---|
3141 | }
|
---|
3142 |
|
---|
3143 | /* Return 1 to skip the default aligment function */
|
---|
3144 | return 1;
|
---|
3145 | }
|
---|
3146 |
|
---|
3147 | /* Look for and remove parallel instruction operator ||. */
|
---|
3148 | void
|
---|
3149 | tic4x_start_line ()
|
---|
3150 | {
|
---|
3151 | char *s = input_line_pointer;
|
---|
3152 |
|
---|
3153 | SKIP_WHITESPACE ();
|
---|
3154 |
|
---|
3155 | /* If parallel instruction prefix found at start of line, skip it. */
|
---|
3156 | if (*input_line_pointer == '|' && input_line_pointer[1] == '|')
|
---|
3157 | {
|
---|
3158 | if (insn->in_use)
|
---|
3159 | {
|
---|
3160 | insn->parallel = 1;
|
---|
3161 | input_line_pointer ++;
|
---|
3162 | *input_line_pointer = ' ';
|
---|
3163 | /* So line counters get bumped. */
|
---|
3164 | input_line_pointer[-1] = '\n';
|
---|
3165 | }
|
---|
3166 | }
|
---|
3167 | else
|
---|
3168 | {
|
---|
3169 | if (insn->in_use)
|
---|
3170 | md_assemble (NULL);
|
---|
3171 | input_line_pointer = s;
|
---|
3172 | }
|
---|
3173 | }
|
---|
3174 |
|
---|
3175 | arelent *
|
---|
3176 | tc_gen_reloc (seg, fixP)
|
---|
3177 | asection *seg ATTRIBUTE_UNUSED;
|
---|
3178 | fixS *fixP;
|
---|
3179 | {
|
---|
3180 | arelent *reloc;
|
---|
3181 |
|
---|
3182 | reloc = (arelent *) xmalloc (sizeof (arelent));
|
---|
3183 |
|
---|
3184 | reloc->sym_ptr_ptr = (asymbol **) xmalloc (sizeof (asymbol *));
|
---|
3185 | *reloc->sym_ptr_ptr = symbol_get_bfdsym (fixP->fx_addsy);
|
---|
3186 | reloc->address = fixP->fx_frag->fr_address + fixP->fx_where;
|
---|
3187 | reloc->address /= OCTETS_PER_BYTE;
|
---|
3188 | reloc->howto = bfd_reloc_type_lookup (stdoutput, fixP->fx_r_type);
|
---|
3189 | if (reloc->howto == (reloc_howto_type *) NULL)
|
---|
3190 | {
|
---|
3191 | as_bad_where (fixP->fx_file, fixP->fx_line,
|
---|
3192 | "Reloc %d not supported by object file format",
|
---|
3193 | (int) fixP->fx_r_type);
|
---|
3194 | return NULL;
|
---|
3195 | }
|
---|
3196 |
|
---|
3197 | if (fixP->fx_r_type == BFD_RELOC_HI16)
|
---|
3198 | reloc->addend = fixP->fx_offset;
|
---|
3199 | else
|
---|
3200 | reloc->addend = fixP->fx_addnumber;
|
---|
3201 |
|
---|
3202 | return reloc;
|
---|
3203 | }
|
---|