Mercurial > repos > blastem
annotate z80_util.c @ 2155:6f58af5bd6fa
Add ROM DB entry for NHL 96 as it is missing SRAM info in the header
author | Michael Pavone <pavone@retrodev.com> |
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date | Thu, 07 Apr 2022 00:49:58 -0700 |
parents | 72540af9c90a |
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rev | line source |
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1 #include <string.h> |
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2 |
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3 void z80_read_8(z80_context *context) |
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4 { |
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5 context->cycles += 3 * context->opts->gen.clock_divider; |
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6 uint8_t *fast = context->fastread[context->scratch1 >> 10]; |
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7 if (fast) { |
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8 context->scratch1 = fast[context->scratch1 & 0x3FF]; |
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9 } else { |
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10 context->scratch1 = read_byte(context->scratch1, (void **)context->mem_pointers, &context->opts->gen, context); |
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11 } |
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12 } |
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13 |
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14 void z80_write_8(z80_context *context) |
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15 { |
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16 context->cycles += 3 * context->opts->gen.clock_divider; |
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17 uint8_t *fast = context->fastwrite[context->scratch2 >> 10]; |
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18 if (fast) { |
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19 fast[context->scratch2 & 0x3FF] = context->scratch1; |
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20 } else { |
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21 write_byte(context->scratch2, context->scratch1, (void **)context->mem_pointers, &context->opts->gen, context); |
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22 } |
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23 } |
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24 |
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25 void z80_io_read8(z80_context *context) |
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26 { |
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27 uint32_t tmp_mask = context->opts->gen.address_mask; |
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28 memmap_chunk const *tmp_map = context->opts->gen.memmap; |
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29 uint32_t tmp_chunks = context->opts->gen.memmap_chunks; |
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30 |
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31 context->opts->gen.address_mask = context->io_mask; |
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32 context->opts->gen.memmap = context->io_map; |
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33 context->opts->gen.memmap_chunks = context->io_chunks; |
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34 |
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35 context->cycles += 4 * context->opts->gen.clock_divider; |
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36 context->scratch1 = read_byte(context->scratch1, (void **)context->mem_pointers, &context->opts->gen, context); |
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37 |
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38 context->opts->gen.address_mask = tmp_mask; |
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39 context->opts->gen.memmap = tmp_map; |
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40 context->opts->gen.memmap_chunks = tmp_chunks; |
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41 } |
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42 |
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43 void z80_io_write8(z80_context *context) |
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44 { |
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45 uint32_t tmp_mask = context->opts->gen.address_mask; |
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46 memmap_chunk const *tmp_map = context->opts->gen.memmap; |
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47 uint32_t tmp_chunks = context->opts->gen.memmap_chunks; |
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48 |
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49 context->opts->gen.address_mask = context->io_mask; |
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50 context->opts->gen.memmap = context->io_map; |
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51 context->opts->gen.memmap_chunks = context->io_chunks; |
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52 |
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53 context->cycles += 4 * context->opts->gen.clock_divider; |
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54 write_byte(context->scratch2, context->scratch1, (void **)context->mem_pointers, &context->opts->gen, context); |
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55 |
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56 context->opts->gen.address_mask = tmp_mask; |
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57 context->opts->gen.memmap = tmp_map; |
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58 context->opts->gen.memmap_chunks = tmp_chunks; |
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59 } |
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60 |
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61 //quick hack until I get a chance to change which init method these get passed to |
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62 static memmap_chunk const * tmp_io_chunks; |
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63 static uint32_t tmp_num_io_chunks, tmp_io_mask; |
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64 void init_z80_opts(z80_options * options, memmap_chunk const * chunks, uint32_t num_chunks, memmap_chunk const * io_chunks, uint32_t num_io_chunks, uint32_t clock_divider, uint32_t io_address_mask) |
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65 { |
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66 memset(options, 0, sizeof(*options)); |
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67 options->gen.memmap = chunks; |
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68 options->gen.memmap_chunks = num_chunks; |
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69 options->gen.address_mask = 0xFFFF; |
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70 options->gen.max_address = 0xFFFF; |
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71 options->gen.clock_divider = clock_divider; |
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72 tmp_io_chunks = io_chunks; |
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73 tmp_num_io_chunks = num_io_chunks; |
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74 tmp_io_mask = io_address_mask; |
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75 } |
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76 |
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77 void z80_options_free(z80_options *opts) |
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78 { |
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79 free(opts); |
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80 } |
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81 |
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82 z80_context * init_z80_context(z80_options *options) |
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83 { |
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84 z80_context *context = calloc(1, sizeof(z80_context)); |
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85 context->opts = options; |
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86 context->io_map = (memmap_chunk *)tmp_io_chunks; |
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87 context->io_chunks = tmp_num_io_chunks; |
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88 context->io_mask = tmp_io_mask; |
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89 context->int_cycle = context->int_end_cycle = context->nmi_cycle = 0xFFFFFFFFU; |
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90 z80_invalidate_code_range(context, 0, 0xFFFF); |
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91 return context; |
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92 } |
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93 |
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94 void z80_sync_cycle(z80_context *context, uint32_t target_cycle) |
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95 { |
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96 if (context->iff1 && context->int_cycle < target_cycle) { |
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97 if (context->cycles > context->int_end_cycle) { |
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98 context->int_cycle = 0xFFFFFFFFU; |
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99 } else { |
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100 target_cycle = context->int_cycle; |
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101 } |
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102 }; |
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103 if (context->nmi_cycle < target_cycle) { |
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104 target_cycle = context->nmi_cycle; |
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105 } |
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106 context->sync_cycle = target_cycle; |
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107 } |
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108 |
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109 void z80_run(z80_context *context, uint32_t target_cycle) |
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110 { |
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111 if (context->reset || context->busack) { |
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112 context->cycles = target_cycle; |
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113 } else if (target_cycle > context->cycles) { |
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114 if (context->busreq) { |
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115 //busreq is sampled at the end of an m-cycle |
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116 //we can approximate that by running for a single m-cycle after a bus request |
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117 target_cycle = context->cycles + 4 * context->opts->gen.clock_divider; |
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118 } |
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119 z80_execute(context, target_cycle); |
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120 if (context->busreq) { |
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121 context->busack = 1; |
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122 } |
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123 } |
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124 } |
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125 |
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126 void z80_assert_reset(z80_context * context, uint32_t cycle) |
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127 { |
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128 z80_run(context, cycle); |
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129 context->reset = 1; |
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130 } |
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131 |
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132 void z80_clear_reset(z80_context * context, uint32_t cycle) |
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133 { |
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134 z80_run(context, cycle); |
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135 if (context->reset) { |
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136 context->imode = 0; |
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137 context->iff1 = context->iff2 = 0; |
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138 context->pc = 0; |
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139 context->reset = 0; |
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140 if (context->busreq) { |
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141 //TODO: Figure out appropriate delay |
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142 context->busack = 1; |
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143 } |
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144 } |
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145 } |
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146 |
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147 #define MAX_MCYCLE_LENGTH 6 |
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148 void z80_assert_busreq(z80_context * context, uint32_t cycle) |
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149 { |
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150 z80_run(context, cycle); |
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151 context->busreq = 1; |
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152 //this is an imperfect aproximation since most M-cycles take less tstates than the max |
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153 //and a short 3-tstate m-cycle can take an unbounded number due to wait states |
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154 if (context->cycles - cycle > MAX_MCYCLE_LENGTH * context->opts->gen.clock_divider) { |
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155 context->busack = 1; |
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156 } |
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157 } |
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158 |
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159 void z80_clear_busreq(z80_context * context, uint32_t cycle) |
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160 { |
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161 z80_run(context, cycle); |
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162 context->busreq = 0; |
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163 context->busack = 0; |
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164 //there appears to be at least a 1 Z80 cycle delay between busreq |
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165 //being released and resumption of execution |
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166 context->cycles += context->opts->gen.clock_divider; |
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167 } |
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168 |
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169 void z80_assert_nmi(z80_context *context, uint32_t cycle) |
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170 { |
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171 context->nmi_cycle = cycle; |
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172 } |
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173 |
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174 uint8_t z80_get_busack(z80_context * context, uint32_t cycle) |
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175 { |
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176 z80_run(context, cycle); |
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177 return context->busack; |
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178 } |
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179 |
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180 void z80_invalidate_code_range(z80_context *context, uint32_t startA, uint32_t endA) |
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181 { |
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182 for(startA &= ~0x3FF; startA < endA; startA += 1024) |
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183 { |
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184 uint8_t *start = get_native_pointer(startA, (void**)context->mem_pointers, &context->opts->gen); |
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185 if (start) { |
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186 uint8_t *end = get_native_pointer(startA + 1023, (void**)context->mem_pointers, &context->opts->gen); |
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187 if (!end || end - start != 1023) { |
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188 start = NULL; |
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189 } |
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190 } |
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191 context->fastread[startA >> 10] = start; |
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192 start = get_native_write_pointer(startA, (void**)context->mem_pointers, &context->opts->gen); |
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193 if (start) { |
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194 uint8_t *end = get_native_write_pointer(startA + 1023, (void**)context->mem_pointers, &context->opts->gen); |
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195 if (!end || end - start != 1023) { |
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196 start = NULL; |
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197 } |
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198 } |
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199 context->fastwrite[startA >> 10] = start; |
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200 } |
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201 } |
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202 |
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203 void z80_adjust_cycles(z80_context * context, uint32_t deduction) |
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204 { |
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205 context->cycles -= deduction; |
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206 if (context->int_cycle != 0xFFFFFFFFU) { |
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207 if (context->int_cycle > deduction) { |
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208 context->int_cycle -= deduction; |
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209 } else { |
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210 context->int_cycle = 0; |
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211 } |
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212 } |
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213 if (context->int_end_cycle != 0xFFFFFFFFU) { |
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214 if (context->int_end_cycle > deduction) { |
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215 context->int_end_cycle -= deduction; |
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216 } else { |
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217 context->int_end_cycle = 0; |
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218 } |
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219 } |
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220 if (context->nmi_cycle != 0xFFFFFFFFU) { |
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221 if (context->nmi_cycle > deduction) { |
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222 context->nmi_cycle -= deduction; |
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223 } else { |
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224 context->nmi_cycle = 0; |
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225 } |
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226 } |
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227 } |
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228 |
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229 void z80_serialize(z80_context *context, serialize_buffer *buf) |
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230 { |
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231 save_int8(buf, context->main[1]);//C |
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232 save_int8(buf, context->main[0]);//B |
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233 save_int8(buf, context->main[3]);//E |
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234 save_int8(buf, context->main[2]);//D |
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235 save_int8(buf, context->main[5]);//L |
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236 save_int8(buf, context->main[4]);//H |
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237 save_int8(buf, context->ix);//IXL |
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238 save_int8(buf, context->ix >> 8);//IXH |
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239 save_int8(buf, context->iy);//IYL |
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240 save_int8(buf, context->iy >> 8);//IYH |
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241 save_int8(buf, context->i); |
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242 save_int8(buf, (context->rhigh & 0x80) | (context->r & 0x7F)); |
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243 save_int8(buf, context->main[7]);//A |
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244 uint8_t f = context->last_flag_result & 0xA8 |
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245 | (context->zflag ? 0x40 : 0) |
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246 | (context->chflags & 8 ? 0x10 : 0) |
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247 | (context->pvflag ? 4 : 0) |
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248 | (context->nflag ? 2 : 0) |
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249 | (context->chflags & 0x80 ? 1 : 0); |
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250 save_int8(buf, f); |
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251 save_int8(buf, context->alt[1]);//C |
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252 save_int8(buf, context->alt[0]);//B |
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253 save_int8(buf, context->alt[3]);//E |
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254 save_int8(buf, context->alt[2]);//D |
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255 save_int8(buf, context->alt[5]);//L |
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256 save_int8(buf, context->alt[4]);//H |
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257 save_int8(buf, 0);//non-existant alt ixl |
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258 save_int8(buf, 0);//non-existant alt ixh |
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259 save_int8(buf, 0);//non-existant alt iyl |
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260 save_int8(buf, 0);//non-existant alt iyh |
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261 save_int8(buf, 0);//non-existant alt i |
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262 save_int8(buf, 0);//non-existant alt r |
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263 save_int8(buf, context->alt[7]);//A |
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264 save_int8(buf, context->alt[6]);//F |
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265 |
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266 save_int16(buf, context->pc); |
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267 save_int16(buf, context->sp); |
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268 save_int8(buf, context->imode); |
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269 save_int8(buf, context->iff1); |
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270 save_int8(buf, context->iff2); |
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271 uint8_t is_nmi = context->nmi_cycle != 0xFFFFFFFF && (context->nmi_cycle < context->int_cycle || !context->iff1); |
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272 save_int8(buf, is_nmi);//int_is_nmi |
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273 save_int8(buf, context->busack); |
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274 save_int32(buf, context->cycles); |
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275 save_int32(buf, is_nmi ? context->nmi_cycle : context->int_cycle);//int_cycle |
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276 save_int32(buf, 0);//int_enable_cycle |
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277 save_int32(buf, context->int_cycle); |
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278 save_int32(buf, context->int_end_cycle); |
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279 save_int32(buf, context->nmi_cycle); |
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280 } |
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281 |
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282 void z80_deserialize(deserialize_buffer *buf, void *vcontext) |
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283 { |
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284 z80_context *context = vcontext; |
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285 context->main[1] = load_int8(buf);//C |
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286 context->main[0] = load_int8(buf);//B |
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287 context->main[3] = load_int8(buf);//E |
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288 context->main[2] = load_int8(buf);//D |
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289 context->main[5] = load_int8(buf);//L |
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290 context->main[4] = load_int8(buf);//H |
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291 context->ix = load_int8(buf);//IXL |
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292 context->ix |= load_int8(buf) << 8;//IXH |
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293 context->iy = load_int8(buf);//IYL |
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294 context->iy |= load_int8(buf) << 8;//IYH |
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295 context->i = load_int8(buf); |
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296 context->r = load_int8(buf); |
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297 context->rhigh = context->r & 0x80; |
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298 context->main[7] = load_int8(buf);//A |
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299 context->last_flag_result = load_int8(buf); |
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300 context->zflag = context->last_flag_result & 0x40; |
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301 context->chflags = context->last_flag_result & 0x10 ? 8 : 0; |
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302 context->pvflag = context->last_flag_result & 4; |
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303 context->nflag = context->last_flag_result & 2; |
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304 context->chflags |= context->last_flag_result & 1 ? 0x80 : 0; |
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305 context->alt[1] = load_int8(buf);//C |
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306 context->alt[0] = load_int8(buf);//B |
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307 context->alt[3] = load_int8(buf);//E |
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308 context->alt[2] = load_int8(buf);//D |
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309 context->alt[5] = load_int8(buf);//L |
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310 context->alt[4] = load_int8(buf);//H |
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311 load_int8(buf);//non-existant alt ixl |
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312 load_int8(buf);//non-existant alt ixh |
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313 load_int8(buf);//non-existant alt iyl |
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314 load_int8(buf);//non-existant alt iyh |
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315 load_int8(buf);//non-existant alt i |
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316 load_int8(buf);//non-existant alt r |
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317 context->alt[7] = load_int8(buf);//A |
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318 context->alt[6] = load_int8(buf);//F |
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319 |
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320 context->pc = load_int16(buf); |
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321 context->sp = load_int16(buf); |
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322 context->imode = load_int8(buf); |
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323 context->iff1 = load_int8(buf); |
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324 context->iff2 = load_int8(buf); |
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325 load_int8(buf);//int_is_nmi |
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326 context->busack = load_int8(buf); |
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327 context->cycles = load_int32(buf); |
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328 load_int32(buf);//int_cycle |
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329 load_int32(buf);//int_enable_cycle |
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330 context->int_cycle = load_int32(buf); |
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331 context->int_end_cycle = load_int32(buf); |
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332 context->nmi_cycle = load_int32(buf); |
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333 } |
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334 |
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335 void zinsert_breakpoint(z80_context * context, uint16_t address, uint8_t * bp_handler) |
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336 { |
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337 } |
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338 |
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339 void zremove_breakpoint(z80_context * context, uint16_t address) |
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340 { |
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341 } |