1 | /********************************************************************* |
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2 | * SEGGER Microcontroller GmbH * |
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3 | * The Embedded Experts * |
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4 | ********************************************************************** |
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5 | * * |
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6 | * (c) 2014 - 2024 SEGGER Microcontroller GmbH * |
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7 | * * |
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8 | * www.segger.com Support: support@segger.com * |
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9 | * * |
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10 | ********************************************************************** |
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11 | * * |
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12 | * All rights reserved. * |
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13 | * * |
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14 | * Redistribution and use in source and binary forms, with or * |
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15 | * without modification, are permitted provided that the following * |
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16 | * condition is met: * |
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17 | * * |
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18 | * - Redistributions of source code must retain the above copyright * |
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19 | * notice, this condition and the following disclaimer. * |
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20 | * * |
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21 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND * |
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22 | * CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, * |
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23 | * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF * |
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24 | * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * |
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25 | * DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR * |
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26 | * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * |
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27 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT * |
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28 | * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; * |
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29 | * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF * |
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30 | * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * |
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31 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE * |
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32 | * USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH * |
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33 | * DAMAGE. * |
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34 | * * |
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35 | ********************************************************************** |
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36 | -------------------------- END-OF-HEADER ----------------------------- |
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37 | |
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38 | File : STM32G4xx_Flash.icf |
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39 | Purpose : STM32G4xx linker script for application placement in Flash, |
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40 | for use with the SEGGER Linker. |
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41 | Maps : STM32G431C6Tx, STM32G431C6Ux, STM32G431C8Tx, STM32G431C8Ux, |
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42 | STM32G431CBTx, STM32G431CBUx, STM32G431CBYx, STM32G431K6Tx, |
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43 | STM32G431K6Ux, STM32G431K8Tx, STM32G431K8Ux, STM32G431KBTx, |
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44 | STM32G431KBUx, STM32G431M6Tx, STM32G431M8Tx, STM32G431MBTx, |
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45 | STM32G431R6Ix, STM32G431R6Tx, STM32G431R8Ix, STM32G431R8Tx, |
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46 | STM32G431RBIx, STM32G431RBTx, STM32G431V6Tx, STM32G431V8Tx, |
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47 | STM32G431VBTx, STM32G441CBTx, STM32G441CBUx, STM32G441CBYx, |
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48 | STM32G441KBTx, STM32G441KBUx, STM32G441MBTx, STM32G441RBIx, |
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49 | STM32G441RBTx, STM32G441VBTx, STM32G471CCTx, STM32G471CCUx, |
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50 | STM32G471CETx, STM32G471CEUx, STM32G471MCTx, STM32G471METx, |
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51 | STM32G471MEYx, STM32G471QCTx, STM32G471QETx, STM32G471RCTx, |
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52 | STM32G471RETx, STM32G471VCHx, STM32G471VCIx, STM32G471VCTx, |
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53 | STM32G471VEHx, STM32G471VEIx, STM32G471VETx, STM32G473CBTx, |
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54 | STM32G473CBUx, STM32G473CCTx, STM32G473CCUx, STM32G473CETx, |
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55 | STM32G473CEUx, STM32G473MBTx, STM32G473MCTx, STM32G473METx, |
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56 | STM32G473MEYx, STM32G473PBIx, STM32G473PCIx, STM32G473PEIx, |
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57 | STM32G473QBTx, STM32G473QCTx, STM32G473QETx, STM32G473RBTx, |
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58 | STM32G473RCTx, STM32G473RETx, STM32G473VBHx, STM32G473VBIx, |
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59 | STM32G473VBTx, STM32G473VCHx, STM32G473VCIx, STM32G473VCTx, |
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60 | STM32G473VEHx, STM32G473VEIx, STM32G473VETx, STM32G474CBTx, |
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61 | STM32G474CBUx, STM32G474CCTx, STM32G474CCUx, STM32G474CETx, |
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62 | STM32G474CEUx, STM32G474MBTx, STM32G474MCTx, STM32G474METx, |
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63 | STM32G474MEYx, STM32G474PBIx, STM32G474PCIx, STM32G474PEIx, |
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64 | STM32G474QBTx, STM32G474QCTx, STM32G474QETx, STM32G474RBTx, |
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65 | STM32G474RCTx, STM32G474RETx, STM32G474VBHx, STM32G474VBIx, |
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66 | STM32G474VBTx, STM32G474VCHx, STM32G474VCIx, STM32G474VCTx, |
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67 | STM32G474VEHx, STM32G474VEIx, STM32G474VETx, STM32G483CETx, |
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68 | STM32G483CEUx, STM32G483METx, STM32G483MEYx, STM32G483PEIx, |
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69 | STM32G483QETx, STM32G483RETx, STM32G483VEHx, STM32G483VEIx, |
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70 | STM32G483VETx, STM32G484CETx, STM32G484CEUx, STM32G484METx, |
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71 | STM32G484MEYx, STM32G484PEIx, STM32G484QETx, STM32G484RETx, |
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72 | STM32G484VEHx, STM32G484VEIx, STM32G484VETx, STM32G491CCTx, |
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73 | STM32G491CCUx, STM32G491CETx, STM32G491CEUx, STM32G491KCUx, |
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74 | STM32G491KEUx, STM32G491MCSx, STM32G491MCTx, STM32G491MESx, |
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75 | STM32G491METx, STM32G491RCIx, STM32G491RCTx, STM32G491REIx, |
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76 | STM32G491RETx, STM32G491REYx, STM32G491VCTx, STM32G491VETx, |
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77 | STM32G4A1CETx, STM32G4A1CEUx, STM32G4A1KEUx, STM32G4A1MESx, |
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78 | STM32G4A1METx, STM32G4A1REIx, STM32G4A1RETx, STM32G4A1REYx, |
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79 | STM32G4A1VETx |
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80 | Literature: |
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81 | [1] SEGGER Linker User Guide (https://www.segger.com/doc/UM20005_Linker.html) |
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82 | [2] SEGGER Linker Section Placement (https://wiki.segger.com/SEGGER_Linker_Script_Files) |
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83 | */ |
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84 | |
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85 | define memory with size = 4G; |
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86 | |
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87 | // |
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88 | // Combined regions per memory type |
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89 | // |
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90 | define region FLASH = FLASH1; |
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91 | define region RAM = CCM_RAM1 + RAM1 + RAM2; |
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92 | |
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93 | // |
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94 | // Block definitions |
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95 | // |
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96 | define block vectors { section .vectors }; // Vector table section |
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97 | define block vectors_ram { section .vectors_ram }; // Vector table section |
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98 | define block ctors { section .ctors, section .ctors.*, block with alphabetical order { init_array } }; |
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99 | define block dtors { section .dtors, section .dtors.*, block with reverse alphabetical order { fini_array } }; |
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100 | define block exidx { section .ARM.exidx, section .ARM.exidx.* }; |
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101 | define block tbss { section .tbss, section .tbss.* }; |
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102 | define block tdata { section .tdata, section .tdata.* }; |
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103 | define block tls with fixed order { block tbss, block tdata }; |
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104 | define block tdata_load { copy of block tdata }; |
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105 | define block heap with auto size = __HEAPSIZE__, alignment = 8, readwrite access { }; |
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106 | define block stack with size = __STACKSIZE__, alignment = 8, readwrite access { }; |
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107 | define block stack_process with size = __STACKSIZE_PROCESS__, alignment = 8, /* fill =0xCD, */ readwrite access { }; |
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108 | |
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109 | // |
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110 | // Explicit initialization settings for sections |
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111 | // Packing options for initialize by copy: packing=auto/lzss/zpak/packbits |
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112 | // |
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113 | do not initialize { section .non_init, section .non_init.*, section .*.non_init, section .*.non_init.* }; |
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114 | do not initialize { section .no_init, section .no_init.*, section .*.no_init, section .*.no_init.* }; // Legacy sections, kept for backwards compatibility |
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115 | do not initialize { section .noinit, section .noinit.*, section .*.noinit, section .*.noinit.* }; // Legacy sections, used by some SDKs/HALs |
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116 | do not initialize { block vectors_ram }; |
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117 | initialize by copy with packing=auto { section .data, section .data.*, section .*.data, section .*.data.* }; // Static data sections |
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118 | initialize by copy with packing=auto { section .fast, section .fast.*, section .*.fast, section .*.fast.* }; // "RAM Code" sections |
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119 | |
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120 | initialize by calling __SEGGER_STOP_X_InitLimits { section .data.stop.* }; |
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121 | |
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122 | #define USES_ALLOC_FUNC \ |
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123 | linked symbol malloc || linked symbol aligned_alloc || \ |
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124 | linked symbol calloc || linked symbol realloc |
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125 | |
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126 | initialize by calling __SEGGER_init_heap if USES_ALLOC_FUNC { block heap }; // Init the heap if one is required |
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127 | initialize by calling __SEGGER_init_ctors { block ctors }; // Call constructors for global objects which need to be constructed before reaching main (if any). Make sure this is done after setting up heap. |
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128 | |
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129 | //assert with warning "free() linked into application but there are no calls to an allocation function!" { |
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130 | // linked symbol free => USES_ALLOC_FUNC |
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131 | //}; |
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132 | |
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133 | assert with error "heap is too small!" { USES_ALLOC_FUNC => size of block heap >= 48 }; |
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134 | assert with error "heap size not a multiple of 8!" { USES_ALLOC_FUNC => size of block heap % 8 == 0 }; |
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135 | assert with error "heap not correctly aligned!" { USES_ALLOC_FUNC => start of block heap % 8 == 0 }; |
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136 | |
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137 | // |
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138 | // Explicit placement in FLASHn |
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139 | // |
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140 | place in FLASH1 { section .FLASH1, section .FLASH1.* }; |
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141 | // |
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142 | // FLASH Placement |
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143 | // |
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144 | place at start of FLASH { block vectors }; // Vector table section |
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145 | place in FLASH with minimum size order { block tdata_load, // Thread-local-storage load image |
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146 | block exidx, // ARM exception unwinding block |
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147 | block ctors, // Constructors block |
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148 | block dtors, // Destructors block |
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149 | readonly, // Catch-all for readonly data (e.g. .rodata, .srodata) |
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150 | readexec // Catch-all for (readonly) executable code (e.g. .text) |
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151 | }; |
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152 | |
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153 | // |
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154 | // Explicit placement in RAMn |
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155 | // |
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156 | place in CCM_RAM1 { section .CCM_RAM1, section .CCM_RAM1.* }; |
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157 | place in RAM1 { section .RAM1, section .RAM1.* }; |
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158 | place in RAM2 { section .RAM2, section .RAM2.* }; |
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159 | // |
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160 | // RAM Placement |
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161 | // |
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162 | place at start of RAM { block vectors_ram }; |
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163 | place in RAM { section .fast, section .fast.* }; // "ramfunc" section |
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164 | place in RAM with auto order { block tls, // Thread-local-storage block |
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165 | readwrite, // Catch-all for initialized/uninitialized data sections (e.g. .data, .noinit) |
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166 | zeroinit // Catch-all for zero-initialized data sections (e.g. .bss) |
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167 | }; |
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168 | place in RAM { block heap }; // Heap reserved block |
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169 | place at end of RAM { block stack }; // Stack reserved block at the end |
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