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diff --git a/lib/chibios-contrib/ext/mcux-sdk/devices/MK26F18/gcc/MK26FN2M0xxx18_flash.ld b/lib/chibios-contrib/ext/mcux-sdk/devices/MK26F18/gcc/MK26FN2M0xxx18_flash.ld
new file mode 100644
index 000000000..2512fe54f
--- /dev/null
+++ b/lib/chibios-contrib/ext/mcux-sdk/devices/MK26F18/gcc/MK26FN2M0xxx18_flash.ld
@@ -0,0 +1,225 @@
1/*
2** ###################################################################
3** Processors: MK26FN2M0CAC18
4** MK26FN2M0VLQ18
5** MK26FN2M0VMD18
6** MK26FN2M0VMI18
7**
8** Compiler: GNU C Compiler
9** Reference manual: MK26P169M180SF5RM, Rev. 1, Mar 2015
10** Version: rev. 2.0, 2015-03-25
11** Build: b190916
12**
13** Abstract:
14** Linker file for the GNU C Compiler
15**
16** Copyright 2016 Freescale Semiconductor, Inc.
17** Copyright 2016-2019 NXP
18** All rights reserved.
19**
20** SPDX-License-Identifier: BSD-3-Clause
21**
22** http: www.nxp.com
23** mail: [email protected]
24**
25** ###################################################################
26*/
27
28/* Entry Point */
29ENTRY(Reset_Handler)
30
31HEAP_SIZE = DEFINED(__heap_size__) ? __heap_size__ : 0x0400;
32STACK_SIZE = DEFINED(__stack_size__) ? __stack_size__ : 0x0400;
33
34/* Specify the memory areas */
35MEMORY
36{
37 m_interrupts (RX) : ORIGIN = 0x00000000, LENGTH = 0x00000400
38 m_flash_config (RX) : ORIGIN = 0x00000400, LENGTH = 0x00000010
39 m_text (RX) : ORIGIN = 0x00000410, LENGTH = 0x001FFBF0
40 m_data (RW) : ORIGIN = 0x1FFF0000, LENGTH = 0x00010000
41 m_data_2 (RW) : ORIGIN = 0x20000000, LENGTH = 0x00030000
42}
43
44/* Define output sections */
45SECTIONS
46{
47 /* The startup code goes first into internal flash */
48 .interrupts :
49 {
50 . = ALIGN(4);
51 KEEP(*(.isr_vector)) /* Startup code */
52 . = ALIGN(4);
53 } > m_interrupts
54
55 .flash_config :
56 {
57 . = ALIGN(4);
58 KEEP(*(.FlashConfig)) /* Flash Configuration Field (FCF) */
59 . = ALIGN(4);
60 } > m_flash_config
61
62 /* The program code and other data goes into internal flash */
63 .text :
64 {
65 . = ALIGN(4);
66 *(.text) /* .text sections (code) */
67 *(.text*) /* .text* sections (code) */
68 *(.rodata) /* .rodata sections (constants, strings, etc.) */
69 *(.rodata*) /* .rodata* sections (constants, strings, etc.) */
70 *(.glue_7) /* glue arm to thumb code */
71 *(.glue_7t) /* glue thumb to arm code */
72 *(.eh_frame)
73 KEEP (*(.init))
74 KEEP (*(.fini))
75 . = ALIGN(4);
76 } > m_text
77
78 .ARM.extab :
79 {
80 *(.ARM.extab* .gnu.linkonce.armextab.*)
81 } > m_text
82
83 .ARM :
84 {
85 __exidx_start = .;
86 *(.ARM.exidx*)
87 __exidx_end = .;
88 } > m_text
89
90 .ctors :
91 {
92 __CTOR_LIST__ = .;
93 /* gcc uses crtbegin.o to find the start of
94 the constructors, so we make sure it is
95 first. Because this is a wildcard, it
96 doesn't matter if the user does not
97 actually link against crtbegin.o; the
98 linker won't look for a file to match a
99 wildcard. The wildcard also means that it
100 doesn't matter which directory crtbegin.o
101 is in. */
102 KEEP (*crtbegin.o(.ctors))
103 KEEP (*crtbegin?.o(.ctors))
104 /* We don't want to include the .ctor section from
105 from the crtend.o file until after the sorted ctors.
106 The .ctor section from the crtend file contains the
107 end of ctors marker and it must be last */
108 KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors))
109 KEEP (*(SORT(.ctors.*)))
110 KEEP (*(.ctors))
111 __CTOR_END__ = .;
112 } > m_text
113
114 .dtors :
115 {
116 __DTOR_LIST__ = .;
117 KEEP (*crtbegin.o(.dtors))
118 KEEP (*crtbegin?.o(.dtors))
119 KEEP (*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors))
120 KEEP (*(SORT(.dtors.*)))
121 KEEP (*(.dtors))
122 __DTOR_END__ = .;
123 } > m_text
124
125 .preinit_array :
126 {
127 PROVIDE_HIDDEN (__preinit_array_start = .);
128 KEEP (*(.preinit_array*))
129 PROVIDE_HIDDEN (__preinit_array_end = .);
130 } > m_text
131
132 .init_array :
133 {
134 PROVIDE_HIDDEN (__init_array_start = .);
135 KEEP (*(SORT(.init_array.*)))
136 KEEP (*(.init_array*))
137 PROVIDE_HIDDEN (__init_array_end = .);
138 } > m_text
139
140 .fini_array :
141 {
142 PROVIDE_HIDDEN (__fini_array_start = .);
143 KEEP (*(SORT(.fini_array.*)))
144 KEEP (*(.fini_array*))
145 PROVIDE_HIDDEN (__fini_array_end = .);
146 } > m_text
147
148 __etext = .; /* define a global symbol at end of code */
149 __DATA_ROM = .; /* Symbol is used by startup for data initialization */
150
151 .data : AT(__DATA_ROM)
152 {
153 . = ALIGN(4);
154 __DATA_RAM = .;
155 __data_start__ = .; /* create a global symbol at data start */
156 *(.data) /* .data sections */
157 *(.data*) /* .data* sections */
158 KEEP(*(.jcr*))
159 . = ALIGN(4);
160 __data_end__ = .; /* define a global symbol at data end */
161 } > m_data
162
163 __NDATA_ROM = __DATA_ROM + (__data_end__ - __data_start__);
164 .ncache.init : AT(__NDATA_ROM)
165 {
166 __noncachedata_start__ = .; /* create a global symbol at ncache data start */
167 *(NonCacheable.init)
168 . = ALIGN(4);
169 __noncachedata_init_end__ = .; /* create a global symbol at initialized ncache data end */
170 } > m_data
171
172 . = __noncachedata_init_end__;
173 .ncache :
174 {
175 *(NonCacheable)
176 . = ALIGN(4);
177 __noncachedata_end__ = .; /* define a global symbol at ncache data end */
178 } > m_data
179
180 __DATA_END = __NDATA_ROM + (__noncachedata_init_end__ - __noncachedata_start__);
181 text_end = ORIGIN(m_text) + LENGTH(m_text);
182 ASSERT(__DATA_END <= text_end, "region m_text overflowed with text and data")
183
184 /* Uninitialized data section */
185 .bss :
186 {
187 /* This is used by the startup in order to initialize the .bss section */
188 . = ALIGN(4);
189 __START_BSS = .;
190 __bss_start__ = .;
191 *(.bss)
192 *(.bss*)
193 *(COMMON)
194 . = ALIGN(4);
195 __bss_end__ = .;
196 __END_BSS = .;
197 } > m_data
198
199 .heap :
200 {
201 . = ALIGN(8);
202 __end__ = .;
203 PROVIDE(end = .);
204 __HeapBase = .;
205 . += HEAP_SIZE;
206 __HeapLimit = .;
207 __heap_limit = .; /* Add for _sbrk */
208 } > m_data_2
209
210 .stack :
211 {
212 . = ALIGN(8);
213 . += STACK_SIZE;
214 } > m_data_2
215
216 /* Initializes stack on the end of block */
217 __StackTop = ORIGIN(m_data_2) + LENGTH(m_data_2);
218 __StackLimit = __StackTop - STACK_SIZE;
219 PROVIDE(__stack = __StackTop);
220
221 .ARM.attributes 0 : { *(.ARM.attributes) }
222
223 ASSERT(__StackLimit >= __HeapLimit, "region m_data_2 overflowed with stack and heap")
224}
225