prekern.c revision 1.11 1 1.11 maxv /* $NetBSD: prekern.c,v 1.11 2019/03/19 19:15:57 maxv Exp $ */
2 1.1 maxv
3 1.1 maxv /*
4 1.1 maxv * Copyright (c) 2017 The NetBSD Foundation, Inc. All rights reserved.
5 1.1 maxv *
6 1.1 maxv * This code is derived from software contributed to The NetBSD Foundation
7 1.1 maxv * by Maxime Villard.
8 1.1 maxv *
9 1.1 maxv * Redistribution and use in source and binary forms, with or without
10 1.1 maxv * modification, are permitted provided that the following conditions
11 1.1 maxv * are met:
12 1.1 maxv * 1. Redistributions of source code must retain the above copyright
13 1.1 maxv * notice, this list of conditions and the following disclaimer.
14 1.1 maxv * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 maxv * notice, this list of conditions and the following disclaimer in the
16 1.1 maxv * documentation and/or other materials provided with the distribution.
17 1.1 maxv *
18 1.1 maxv * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
19 1.1 maxv * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
20 1.1 maxv * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21 1.1 maxv * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
22 1.1 maxv * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23 1.1 maxv * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24 1.1 maxv * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25 1.1 maxv * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26 1.1 maxv * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27 1.1 maxv * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 1.1 maxv * POSSIBILITY OF SUCH DAMAGE.
29 1.1 maxv */
30 1.1 maxv
31 1.1 maxv #include "prekern.h"
32 1.1 maxv
33 1.1 maxv #include <machine/reg.h>
34 1.1 maxv #include <machine/specialreg.h>
35 1.1 maxv #include <machine/frame.h>
36 1.1 maxv
37 1.1 maxv #define _KERNEL
38 1.1 maxv #include <machine/bootinfo.h>
39 1.1 maxv #undef _KERNEL
40 1.1 maxv
41 1.1 maxv #include <machine/tss.h>
42 1.1 maxv #include <machine/segments.h>
43 1.1 maxv
44 1.1 maxv int boothowto;
45 1.1 maxv struct bootinfo bootinfo;
46 1.1 maxv
47 1.1 maxv extern paddr_t kernpa_start, kernpa_end;
48 1.1 maxv
49 1.11 maxv static uint8_t idtstore[PAGE_SIZE] __aligned(PAGE_SIZE);
50 1.1 maxv
51 1.1 maxv #define IDTVEC(name) __CONCAT(X, name)
52 1.1 maxv typedef void (vector)(void);
53 1.8 maxv extern vector *x86_exceptions[];
54 1.1 maxv
55 1.1 maxv void fatal(char *msg)
56 1.1 maxv {
57 1.1 maxv print("\n");
58 1.1 maxv print_ext(RED_ON_BLACK, "********** FATAL ***********\n");
59 1.1 maxv print_ext(RED_ON_BLACK, msg);
60 1.1 maxv print("\n");
61 1.1 maxv print_ext(RED_ON_BLACK, "****************************\n");
62 1.1 maxv
63 1.1 maxv while (1);
64 1.1 maxv }
65 1.1 maxv
66 1.1 maxv /* -------------------------------------------------------------------------- */
67 1.1 maxv
68 1.1 maxv struct smallframe {
69 1.1 maxv uint64_t sf_trapno;
70 1.1 maxv uint64_t sf_err;
71 1.1 maxv uint64_t sf_rip;
72 1.1 maxv uint64_t sf_cs;
73 1.1 maxv uint64_t sf_rflags;
74 1.1 maxv uint64_t sf_rsp;
75 1.1 maxv uint64_t sf_ss;
76 1.1 maxv };
77 1.1 maxv
78 1.1 maxv void trap(struct smallframe *);
79 1.1 maxv
80 1.1 maxv static char *trap_type[] = {
81 1.1 maxv "privileged instruction fault", /* 0 T_PRIVINFLT */
82 1.1 maxv "breakpoint trap", /* 1 T_BPTFLT */
83 1.1 maxv "arithmetic trap", /* 2 T_ARITHTRAP */
84 1.1 maxv "asynchronous system trap", /* 3 T_ASTFLT */
85 1.1 maxv "protection fault", /* 4 T_PROTFLT */
86 1.1 maxv "trace trap", /* 5 T_TRCTRAP */
87 1.1 maxv "page fault", /* 6 T_PAGEFLT */
88 1.1 maxv "alignment fault", /* 7 T_ALIGNFLT */
89 1.1 maxv "integer divide fault", /* 8 T_DIVIDE */
90 1.1 maxv "non-maskable interrupt", /* 9 T_NMI */
91 1.1 maxv "overflow trap", /* 10 T_OFLOW */
92 1.1 maxv "bounds check fault", /* 11 T_BOUND */
93 1.1 maxv "FPU not available fault", /* 12 T_DNA */
94 1.1 maxv "double fault", /* 13 T_DOUBLEFLT */
95 1.1 maxv "FPU operand fetch fault", /* 14 T_FPOPFLT */
96 1.1 maxv "invalid TSS fault", /* 15 T_TSSFLT */
97 1.1 maxv "segment not present fault", /* 16 T_SEGNPFLT */
98 1.1 maxv "stack fault", /* 17 T_STKFLT */
99 1.1 maxv "machine check fault", /* 18 T_MCA */
100 1.1 maxv "SSE FP exception", /* 19 T_XMM */
101 1.1 maxv "reserved trap", /* 20 T_RESERVED */
102 1.1 maxv };
103 1.6 maxv static int trap_types = __arraycount(trap_type);
104 1.1 maxv
105 1.1 maxv /*
106 1.1 maxv * Trap handler.
107 1.1 maxv */
108 1.1 maxv void
109 1.1 maxv trap(struct smallframe *sf)
110 1.1 maxv {
111 1.1 maxv uint64_t trapno = sf->sf_trapno;
112 1.1 maxv char *buf;
113 1.1 maxv
114 1.1 maxv if (trapno < trap_types) {
115 1.1 maxv buf = trap_type[trapno];
116 1.1 maxv } else {
117 1.1 maxv buf = "unknown trap";
118 1.1 maxv }
119 1.1 maxv
120 1.1 maxv print("\n");
121 1.1 maxv print_ext(RED_ON_BLACK, "****** FAULT OCCURRED ******\n");
122 1.1 maxv print_ext(RED_ON_BLACK, buf);
123 1.1 maxv print("\n");
124 1.1 maxv print_ext(RED_ON_BLACK, "****************************\n");
125 1.1 maxv
126 1.1 maxv while (1);
127 1.1 maxv }
128 1.1 maxv
129 1.11 maxv /* -------------------------------------------------------------------------- */
130 1.11 maxv
131 1.1 maxv static void
132 1.1 maxv setregion(struct region_descriptor *rd, void *base, uint16_t limit)
133 1.1 maxv {
134 1.1 maxv rd->rd_limit = limit;
135 1.1 maxv rd->rd_base = (uint64_t)base;
136 1.1 maxv }
137 1.1 maxv
138 1.1 maxv static void
139 1.1 maxv setgate(struct gate_descriptor *gd, void *func, int ist, int type, int dpl,
140 1.6 maxv int sel)
141 1.1 maxv {
142 1.1 maxv gd->gd_looffset = (uint64_t)func & 0xffff;
143 1.1 maxv gd->gd_selector = sel;
144 1.1 maxv gd->gd_ist = ist;
145 1.1 maxv gd->gd_type = type;
146 1.1 maxv gd->gd_dpl = dpl;
147 1.1 maxv gd->gd_p = 1;
148 1.1 maxv gd->gd_hioffset = (uint64_t)func >> 16;
149 1.1 maxv gd->gd_zero = 0;
150 1.1 maxv gd->gd_xx1 = 0;
151 1.1 maxv gd->gd_xx2 = 0;
152 1.1 maxv gd->gd_xx3 = 0;
153 1.1 maxv }
154 1.1 maxv
155 1.1 maxv static void
156 1.6 maxv init_idt(void)
157 1.1 maxv {
158 1.1 maxv struct region_descriptor region;
159 1.1 maxv struct gate_descriptor *idt;
160 1.1 maxv size_t i;
161 1.1 maxv
162 1.1 maxv idt = (struct gate_descriptor *)&idtstore;
163 1.1 maxv for (i = 0; i < NCPUIDT; i++) {
164 1.8 maxv setgate(&idt[i], x86_exceptions[i], 0, SDT_SYS386IGT,
165 1.1 maxv SEL_KPL, GSEL(GCODE_SEL, SEL_KPL));
166 1.1 maxv }
167 1.1 maxv
168 1.1 maxv setregion(®ion, &idtstore, PAGE_SIZE - 1);
169 1.1 maxv lidt(®ion);
170 1.1 maxv }
171 1.1 maxv
172 1.1 maxv /* -------------------------------------------------------------------------- */
173 1.1 maxv
174 1.10 maxv #define PREKERN_API_VERSION 2
175 1.9 maxv
176 1.1 maxv struct prekern_args {
177 1.9 maxv int version;
178 1.1 maxv int boothowto;
179 1.1 maxv void *bootinfo;
180 1.1 maxv void *bootspace;
181 1.1 maxv int esym;
182 1.1 maxv int biosextmem;
183 1.1 maxv int biosbasemem;
184 1.1 maxv int cpuid_level;
185 1.1 maxv uint32_t nox_flag;
186 1.1 maxv uint64_t PDPpaddr;
187 1.1 maxv vaddr_t atdevbase;
188 1.1 maxv vaddr_t lwp0uarea;
189 1.1 maxv paddr_t first_avail;
190 1.1 maxv };
191 1.1 maxv
192 1.1 maxv struct prekern_args pkargs;
193 1.1 maxv
194 1.1 maxv static void
195 1.5 maxv init_prekern_args(void)
196 1.1 maxv {
197 1.3 maxv extern struct bootspace bootspace;
198 1.1 maxv extern int esym;
199 1.1 maxv extern int biosextmem;
200 1.1 maxv extern int biosbasemem;
201 1.1 maxv extern int cpuid_level;
202 1.1 maxv extern uint32_t nox_flag;
203 1.1 maxv extern uint64_t PDPpaddr;
204 1.1 maxv extern vaddr_t iom_base;
205 1.1 maxv extern paddr_t stkpa;
206 1.1 maxv extern paddr_t pa_avail;
207 1.1 maxv
208 1.1 maxv memset(&pkargs, 0, sizeof(pkargs));
209 1.9 maxv pkargs.version = PREKERN_API_VERSION;
210 1.1 maxv pkargs.boothowto = boothowto;
211 1.1 maxv pkargs.bootinfo = (void *)&bootinfo;
212 1.1 maxv pkargs.bootspace = &bootspace;
213 1.1 maxv pkargs.esym = esym;
214 1.1 maxv pkargs.biosextmem = biosextmem;
215 1.1 maxv pkargs.biosbasemem = biosbasemem;
216 1.1 maxv pkargs.cpuid_level = cpuid_level;
217 1.1 maxv pkargs.nox_flag = nox_flag;
218 1.1 maxv pkargs.PDPpaddr = PDPpaddr;
219 1.1 maxv pkargs.atdevbase = iom_base;
220 1.3 maxv pkargs.lwp0uarea = bootspace.boot.va + (stkpa - bootspace.boot.pa);
221 1.1 maxv pkargs.first_avail = pa_avail;
222 1.1 maxv
223 1.1 maxv extern vaddr_t stkva;
224 1.1 maxv stkva = pkargs.lwp0uarea + (USPACE - FRAMESIZE);
225 1.1 maxv }
226 1.1 maxv
227 1.1 maxv void
228 1.1 maxv exec_kernel(vaddr_t ent)
229 1.1 maxv {
230 1.1 maxv int (*jumpfunc)(struct prekern_args *);
231 1.1 maxv int ret;
232 1.1 maxv
233 1.1 maxv /*
234 1.1 maxv * Normally, the function does not return. If it does, it means the
235 1.1 maxv * kernel had trouble processing the arguments, and we panic here. The
236 1.1 maxv * return value is here for debug.
237 1.1 maxv */
238 1.1 maxv jumpfunc = (void *)ent;
239 1.1 maxv ret = (*jumpfunc)(&pkargs);
240 1.1 maxv
241 1.1 maxv if (ret == -1) {
242 1.9 maxv fatal("kernel returned: wrong API version");
243 1.1 maxv } else {
244 1.9 maxv fatal("kernel returned: unknown value");
245 1.1 maxv }
246 1.1 maxv }
247 1.1 maxv
248 1.1 maxv /*
249 1.1 maxv * Main entry point of the Prekern.
250 1.1 maxv */
251 1.1 maxv void
252 1.1 maxv init_prekern(paddr_t pa_start)
253 1.1 maxv {
254 1.3 maxv vaddr_t ent;
255 1.1 maxv
256 1.1 maxv init_cons();
257 1.1 maxv print_banner();
258 1.1 maxv
259 1.1 maxv if (kernpa_start == 0 || kernpa_end == 0) {
260 1.1 maxv fatal("init_prekern: unable to locate the kernel");
261 1.1 maxv }
262 1.1 maxv if (kernpa_start != (1UL << 21)) {
263 1.1 maxv fatal("init_prekern: invalid kernpa_start");
264 1.1 maxv }
265 1.1 maxv if (kernpa_start % PAGE_SIZE != 0) {
266 1.1 maxv fatal("init_prekern: kernpa_start not aligned");
267 1.1 maxv }
268 1.1 maxv if (kernpa_end % PAGE_SIZE != 0) {
269 1.1 maxv fatal("init_prekern: kernpa_end not aligned");
270 1.1 maxv }
271 1.1 maxv if (kernpa_end <= kernpa_start) {
272 1.1 maxv fatal("init_prekern: kernpa_end >= kernpa_start");
273 1.1 maxv }
274 1.1 maxv
275 1.1 maxv /*
276 1.1 maxv * Our physical space starts after the end of the kernel.
277 1.1 maxv */
278 1.1 maxv if (pa_start < kernpa_end) {
279 1.1 maxv fatal("init_prekern: physical space inside kernel");
280 1.1 maxv }
281 1.1 maxv mm_init(pa_start);
282 1.1 maxv
283 1.1 maxv /*
284 1.11 maxv * Init the IDT. We mostly don't care about this, it's just here
285 1.11 maxv * to properly handle traps.
286 1.1 maxv */
287 1.1 maxv init_idt();
288 1.1 maxv
289 1.1 maxv print_state(true, "Prekern loaded");
290 1.1 maxv
291 1.1 maxv /*
292 1.7 maxv * Init the PRNG.
293 1.7 maxv */
294 1.7 maxv prng_init();
295 1.7 maxv
296 1.7 maxv /*
297 1.1 maxv * Relocate the kernel.
298 1.1 maxv */
299 1.3 maxv mm_map_kernel();
300 1.3 maxv ent = elf_kernel_reloc();
301 1.4 maxv mm_bootspace_mprotect();
302 1.1 maxv
303 1.1 maxv /*
304 1.1 maxv * Build the arguments.
305 1.1 maxv */
306 1.3 maxv init_prekern_args();
307 1.1 maxv
308 1.1 maxv /*
309 1.1 maxv * Finally, jump into the kernel.
310 1.1 maxv */
311 1.1 maxv print_state(true, "Jumping into the kernel");
312 1.1 maxv jump_kernel(ent);
313 1.1 maxv
314 1.1 maxv fatal("init_prekern: unreachable!");
315 1.1 maxv }
316