source: mainline/kernel/generic/src/main/main.c@ 6645a14

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 6645a14 was 6f20277, checked in by Martin Decky <martin@…>, 14 years ago

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1/*
2 * Copyright (c) 2001-2004 Jakub Jermar
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup main
30 * @{
31 */
32
33/**
34 * @file
35 * @brief Main initialization kernel function for all processors.
36 *
37 * During kernel boot, all processors, after architecture dependent
38 * initialization, start executing code found in this file. After
39 * bringing up all subsystems, control is passed to scheduler().
40 *
41 * The bootstrap processor starts executing main_bsp() while
42 * the application processors start executing main_ap().
43 *
44 * @see scheduler()
45 * @see main_bsp()
46 * @see main_ap()
47 */
48
49#include <arch/asm.h>
50#include <context.h>
51#include <print.h>
52#include <panic.h>
53#include <debug.h>
54#include <config.h>
55#include <time/clock.h>
56#include <time/timeout.h>
57#include <proc/scheduler.h>
58#include <proc/thread.h>
59#include <proc/task.h>
60#include <main/kinit.h>
61#include <main/version.h>
62#include <console/kconsole.h>
63#include <console/console.h>
64#include <cpu.h>
65#include <align.h>
66#include <interrupt.h>
67#include <mm/frame.h>
68#include <mm/page.h>
69#include <genarch/mm/page_pt.h>
70#include <mm/tlb.h>
71#include <mm/as.h>
72#include <mm/slab.h>
73#include <mm/reserve.h>
74#include <synch/waitq.h>
75#include <synch/futex.h>
76#include <arch/arch.h>
77#include <arch.h>
78#include <arch/faddr.h>
79#include <ipc/ipc.h>
80#include <macros.h>
81#include <adt/btree.h>
82#include <smp/smp.h>
83#include <ddi/ddi.h>
84#include <main/main.h>
85#include <ipc/event.h>
86#include <sysinfo/sysinfo.h>
87#include <sysinfo/stats.h>
88
89/** Global configuration structure. */
90config_t config;
91
92/** Initial user-space tasks */
93init_t init = {
94 .cnt = 0
95};
96
97/** Boot allocations. */
98ballocs_t ballocs = {
99 .base = (uintptr_t) NULL,
100 .size = 0
101};
102
103context_t ctx;
104
105/** Lowest safe stack virtual address. */
106uintptr_t stack_safe = 0;
107
108/*
109 * These two functions prevent stack from underflowing during the
110 * kernel boot phase when SP is set to the very top of the reserved
111 * space. The stack could get corrupted by a fooled compiler-generated
112 * pop sequence otherwise.
113 */
114static void main_bsp_separated_stack(void);
115
116#ifdef CONFIG_SMP
117static void main_ap_separated_stack(void);
118#endif
119
120/** Main kernel routine for bootstrap CPU.
121 *
122 * The code here still runs on the boot stack, which knows nothing about
123 * preemption counts. Because of that, this function cannot directly call
124 * functions that disable or enable preemption (e.g. spinlock_lock()). The
125 * primary task of this function is to calculate address of a new stack and
126 * switch to it.
127 *
128 * Assuming interrupts_disable().
129 *
130 */
131NO_TRACE void main_bsp(void)
132{
133 config.cpu_count = 1;
134 config.cpu_active = 1;
135
136 config.base = hardcoded_load_address;
137 config.kernel_size = ALIGN_UP(hardcoded_ktext_size +
138 hardcoded_kdata_size, PAGE_SIZE);
139 config.stack_size = STACK_SIZE;
140
141 /* Initialy the stack is placed just after the kernel */
142 config.stack_base = config.base + config.kernel_size;
143
144 /* Avoid placing stack on top of init */
145 size_t i;
146 for (i = 0; i < init.cnt; i++) {
147 if (PA_OVERLAPS(config.stack_base, config.stack_size,
148 init.tasks[i].addr, init.tasks[i].size))
149 config.stack_base = ALIGN_UP(init.tasks[i].addr +
150 init.tasks[i].size, config.stack_size);
151 }
152
153 /* Avoid placing stack on top of boot allocations. */
154 if (ballocs.size) {
155 if (PA_OVERLAPS(config.stack_base, config.stack_size,
156 ballocs.base, ballocs.size))
157 config.stack_base = ALIGN_UP(ballocs.base +
158 ballocs.size, PAGE_SIZE);
159 }
160
161 if (config.stack_base < stack_safe)
162 config.stack_base = ALIGN_UP(stack_safe, PAGE_SIZE);
163
164 context_save(&ctx);
165 context_set(&ctx, FADDR(main_bsp_separated_stack),
166 config.stack_base, STACK_SIZE);
167 context_restore(&ctx);
168 /* not reached */
169}
170
171/** Main kernel routine for bootstrap CPU using new stack.
172 *
173 * Second part of main_bsp().
174 *
175 */
176void main_bsp_separated_stack(void)
177{
178 /* Keep this the first thing. */
179 the_initialize(THE);
180
181 version_print();
182
183 LOG("\nconfig.base=%p config.kernel_size=%zu"
184 "\nconfig.stack_base=%p config.stack_size=%zu",
185 (void *) config.base, config.kernel_size,
186 (void *) config.stack_base, config.stack_size);
187
188#ifdef CONFIG_KCONSOLE
189 /*
190 * kconsole data structures must be initialized very early
191 * because other subsystems will register their respective
192 * commands.
193 */
194 kconsole_init();
195#endif
196
197 /*
198 * Exception handler initialization, before architecture
199 * starts adding its own handlers
200 */
201 exc_init();
202
203 /*
204 * Memory management subsystems initialization.
205 */
206 arch_pre_mm_init();
207 frame_init();
208
209 /* Initialize at least 1 memory segment big enough for slab to work. */
210 slab_cache_init();
211 sysinfo_init();
212 btree_init();
213 as_init();
214 page_init();
215 tlb_init();
216 ddi_init();
217 arch_post_mm_init();
218 reserve_init();
219 arch_pre_smp_init();
220 smp_init();
221
222 /* Slab must be initialized after we know the number of processors. */
223 slab_enable_cpucache();
224
225 uint64_t size;
226 const char *size_suffix;
227 bin_order_suffix(zones_total_size(), &size, &size_suffix, false);
228 printf("Detected %u CPU(s), %" PRIu64 " %s free memory\n",
229 config.cpu_count, size, size_suffix);
230
231 cpu_init();
232
233 calibrate_delay_loop();
234 clock_counter_init();
235 timeout_init();
236 scheduler_init();
237 task_init();
238 thread_init();
239 futex_init();
240
241 if (init.cnt > 0) {
242 size_t i;
243 for (i = 0; i < init.cnt; i++)
244 LOG("init[%zu].addr=%p, init[%zu].size=%zu",
245 i, (void *) init.tasks[i].addr, i, init.tasks[i].size);
246 } else
247 printf("No init binaries found.\n");
248
249 ipc_init();
250 event_init();
251 klog_init();
252 stats_init();
253
254 /*
255 * Create kernel task.
256 */
257 task_t *kernel = task_create(AS_KERNEL, "kernel");
258 if (!kernel)
259 panic("Cannot create kernel task.");
260
261 /*
262 * Create the first thread.
263 */
264 thread_t *kinit_thread =
265 thread_create(kinit, NULL, kernel, 0, "kinit", true);
266 if (!kinit_thread)
267 panic("Cannot create kinit thread.");
268 thread_ready(kinit_thread);
269
270 /*
271 * This call to scheduler() will return to kinit,
272 * starting the thread of kernel threads.
273 */
274 scheduler();
275 /* not reached */
276}
277
278#ifdef CONFIG_SMP
279
280/** Main kernel routine for application CPUs.
281 *
282 * Executed by application processors, temporary stack
283 * is at ctx.sp which was set during BSP boot.
284 * This function passes control directly to
285 * main_ap_separated_stack().
286 *
287 * Assuming interrupts_disable()'d.
288 *
289 */
290void main_ap(void)
291{
292 /*
293 * Incrementing the active CPU counter will guarantee that the
294 * *_init() functions can find out that they need to
295 * do initialization for AP only.
296 */
297 config.cpu_active++;
298
299 /*
300 * The THE structure is well defined because ctx.sp is used as stack.
301 */
302 the_initialize(THE);
303
304 arch_pre_mm_init();
305 frame_init();
306 page_init();
307 tlb_init();
308 arch_post_mm_init();
309
310 cpu_init();
311 calibrate_delay_loop();
312 arch_post_cpu_init();
313
314 the_copy(THE, (the_t *) CPU->stack);
315
316 /*
317 * If we woke kmp up before we left the kernel stack, we could
318 * collide with another CPU coming up. To prevent this, we
319 * switch to this cpu's private stack prior to waking kmp up.
320 */
321 context_save(&CPU->saved_context);
322 context_set(&CPU->saved_context, FADDR(main_ap_separated_stack),
323 (uintptr_t) CPU->stack, STACK_SIZE);
324 context_restore(&CPU->saved_context);
325 /* not reached */
326}
327
328/** Main kernel routine for application CPUs using new stack.
329 *
330 * Second part of main_ap().
331 *
332 */
333void main_ap_separated_stack(void)
334{
335 /*
336 * Configure timeouts for this cpu.
337 */
338 timeout_init();
339
340 waitq_wakeup(&ap_completion_wq, WAKEUP_FIRST);
341 scheduler();
342 /* not reached */
343}
344
345#endif /* CONFIG_SMP */
346
347/** @}
348 */
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