blob: 41b26e592d3843a5ef34a8668817ec27e75f1154 [file] [log] [blame]
Rusty Russellf938d2c2007-07-26 10:41:02 -07001/*P:400 This contains run_guest() which actually calls into the Host<->Guest
2 * Switcher and analyzes the return, such as determining if the Guest wants the
3 * Host to do something. This file also contains useful helper routines, and a
4 * couple of non-obvious setup and teardown pieces which were implemented after
5 * days of debugging pain. :*/
Rusty Russelld7e28ff2007-07-19 01:49:23 -07006#include <linux/module.h>
7#include <linux/stringify.h>
8#include <linux/stddef.h>
9#include <linux/io.h>
10#include <linux/mm.h>
11#include <linux/vmalloc.h>
12#include <linux/cpu.h>
13#include <linux/freezer.h>
Jes Sorensen625efab2007-10-22 11:03:28 +100014#include <linux/highmem.h>
Rusty Russelld7e28ff2007-07-19 01:49:23 -070015#include <asm/paravirt.h>
Rusty Russelld7e28ff2007-07-19 01:49:23 -070016#include <asm/pgtable.h>
17#include <asm/uaccess.h>
18#include <asm/poll.h>
Rusty Russelld7e28ff2007-07-19 01:49:23 -070019#include <asm/asm-offsets.h>
Rusty Russelld7e28ff2007-07-19 01:49:23 -070020#include "lg.h"
21
Rusty Russelld7e28ff2007-07-19 01:49:23 -070022
23static struct vm_struct *switcher_vma;
24static struct page **switcher_page;
25
Rusty Russelld7e28ff2007-07-19 01:49:23 -070026/* This One Big lock protects all inter-guest data structures. */
27DEFINE_MUTEX(lguest_lock);
Rusty Russelld7e28ff2007-07-19 01:49:23 -070028
Rusty Russellbff672e2007-07-26 10:41:04 -070029/*H:010 We need to set up the Switcher at a high virtual address. Remember the
30 * Switcher is a few hundred bytes of assembler code which actually changes the
31 * CPU to run the Guest, and then changes back to the Host when a trap or
32 * interrupt happens.
33 *
34 * The Switcher code must be at the same virtual address in the Guest as the
35 * Host since it will be running as the switchover occurs.
36 *
37 * Trying to map memory at a particular address is an unusual thing to do, so
Jes Sorensen625efab2007-10-22 11:03:28 +100038 * it's not a simple one-liner. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -070039static __init int map_switcher(void)
40{
41 int i, err;
42 struct page **pagep;
43
Rusty Russellbff672e2007-07-26 10:41:04 -070044 /*
45 * Map the Switcher in to high memory.
46 *
47 * It turns out that if we choose the address 0xFFC00000 (4MB under the
48 * top virtual address), it makes setting up the page tables really
49 * easy.
50 */
51
52 /* We allocate an array of "struct page"s. map_vm_area() wants the
53 * pages in this form, rather than just an array of pointers. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -070054 switcher_page = kmalloc(sizeof(switcher_page[0])*TOTAL_SWITCHER_PAGES,
55 GFP_KERNEL);
56 if (!switcher_page) {
57 err = -ENOMEM;
58 goto out;
59 }
60
Rusty Russellbff672e2007-07-26 10:41:04 -070061 /* Now we actually allocate the pages. The Guest will see these pages,
62 * so we make sure they're zeroed. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -070063 for (i = 0; i < TOTAL_SWITCHER_PAGES; i++) {
64 unsigned long addr = get_zeroed_page(GFP_KERNEL);
65 if (!addr) {
66 err = -ENOMEM;
67 goto free_some_pages;
68 }
69 switcher_page[i] = virt_to_page(addr);
70 }
71
Rusty Russellbff672e2007-07-26 10:41:04 -070072 /* Now we reserve the "virtual memory area" we want: 0xFFC00000
73 * (SWITCHER_ADDR). We might not get it in theory, but in practice
74 * it's worked so far. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -070075 switcher_vma = __get_vm_area(TOTAL_SWITCHER_PAGES * PAGE_SIZE,
76 VM_ALLOC, SWITCHER_ADDR, VMALLOC_END);
77 if (!switcher_vma) {
78 err = -ENOMEM;
79 printk("lguest: could not map switcher pages high\n");
80 goto free_pages;
81 }
82
Rusty Russellbff672e2007-07-26 10:41:04 -070083 /* This code actually sets up the pages we've allocated to appear at
84 * SWITCHER_ADDR. map_vm_area() takes the vma we allocated above, the
85 * kind of pages we're mapping (kernel pages), and a pointer to our
86 * array of struct pages. It increments that pointer, but we don't
87 * care. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -070088 pagep = switcher_page;
89 err = map_vm_area(switcher_vma, PAGE_KERNEL, &pagep);
90 if (err) {
91 printk("lguest: map_vm_area failed: %i\n", err);
92 goto free_vma;
93 }
Rusty Russellbff672e2007-07-26 10:41:04 -070094
Jes Sorensen625efab2007-10-22 11:03:28 +100095 /* Now the Switcher is mapped at the right address, we can't fail!
96 * Copy in the compiled-in Switcher code (from <arch>_switcher.S). */
Rusty Russelld7e28ff2007-07-19 01:49:23 -070097 memcpy(switcher_vma->addr, start_switcher_text,
98 end_switcher_text - start_switcher_text);
99
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700100 printk(KERN_INFO "lguest: mapped switcher at %p\n",
101 switcher_vma->addr);
Rusty Russellbff672e2007-07-26 10:41:04 -0700102 /* And we succeeded... */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700103 return 0;
104
105free_vma:
106 vunmap(switcher_vma->addr);
107free_pages:
108 i = TOTAL_SWITCHER_PAGES;
109free_some_pages:
110 for (--i; i >= 0; i--)
111 __free_pages(switcher_page[i], 0);
112 kfree(switcher_page);
113out:
114 return err;
115}
Rusty Russellbff672e2007-07-26 10:41:04 -0700116/*:*/
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700117
Rusty Russellbff672e2007-07-26 10:41:04 -0700118/* Cleaning up the mapping when the module is unloaded is almost...
119 * too easy. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700120static void unmap_switcher(void)
121{
122 unsigned int i;
123
Rusty Russellbff672e2007-07-26 10:41:04 -0700124 /* vunmap() undoes *both* map_vm_area() and __get_vm_area(). */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700125 vunmap(switcher_vma->addr);
Rusty Russellbff672e2007-07-26 10:41:04 -0700126 /* Now we just need to free the pages we copied the switcher into */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700127 for (i = 0; i < TOTAL_SWITCHER_PAGES; i++)
128 __free_pages(switcher_page[i], 0);
129}
130
Rusty Russelldde79782007-07-26 10:41:03 -0700131/*L:305
132 * Dealing With Guest Memory.
133 *
134 * When the Guest gives us (what it thinks is) a physical address, we can use
Rusty Russell3c6b5bf2007-10-22 11:03:26 +1000135 * the normal copy_from_user() & copy_to_user() on the corresponding place in
136 * the memory region allocated by the Launcher.
Rusty Russelldde79782007-07-26 10:41:03 -0700137 *
138 * But we can't trust the Guest: it might be trying to access the Launcher
139 * code. We have to check that the range is below the pfn_limit the Launcher
140 * gave us. We have to make sure that addr + len doesn't give us a false
141 * positive by overflowing, too. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700142int lguest_address_ok(const struct lguest *lg,
143 unsigned long addr, unsigned long len)
144{
145 return (addr+len) / PAGE_SIZE < lg->pfn_limit && (addr+len >= addr);
146}
147
Rusty Russelldde79782007-07-26 10:41:03 -0700148/* This is a convenient routine to get a 32-bit value from the Guest (a very
149 * common operation). Here we can see how useful the kill_lguest() routine we
150 * met in the Launcher can be: we return a random value (0) instead of needing
151 * to return an error. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700152u32 lgread_u32(struct lguest *lg, unsigned long addr)
153{
154 u32 val = 0;
155
Rusty Russelldde79782007-07-26 10:41:03 -0700156 /* Don't let them access lguest binary. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700157 if (!lguest_address_ok(lg, addr, sizeof(val))
Rusty Russell3c6b5bf2007-10-22 11:03:26 +1000158 || get_user(val, (u32 *)(lg->mem_base + addr)) != 0)
159 kill_guest(lg, "bad read address %#lx: pfn_limit=%u membase=%p", addr, lg->pfn_limit, lg->mem_base);
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700160 return val;
161}
162
Rusty Russelldde79782007-07-26 10:41:03 -0700163/* Same thing for writing a value. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700164void lgwrite_u32(struct lguest *lg, unsigned long addr, u32 val)
165{
166 if (!lguest_address_ok(lg, addr, sizeof(val))
Rusty Russell3c6b5bf2007-10-22 11:03:26 +1000167 || put_user(val, (u32 *)(lg->mem_base + addr)) != 0)
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700168 kill_guest(lg, "bad write address %#lx", addr);
169}
170
Rusty Russelldde79782007-07-26 10:41:03 -0700171/* This routine is more generic, and copies a range of Guest bytes into a
172 * buffer. If the copy_from_user() fails, we fill the buffer with zeroes, so
173 * the caller doesn't end up using uninitialized kernel memory. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700174void lgread(struct lguest *lg, void *b, unsigned long addr, unsigned bytes)
175{
176 if (!lguest_address_ok(lg, addr, bytes)
Rusty Russell3c6b5bf2007-10-22 11:03:26 +1000177 || copy_from_user(b, lg->mem_base + addr, bytes) != 0) {
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700178 /* copy_from_user should do this, but as we rely on it... */
179 memset(b, 0, bytes);
180 kill_guest(lg, "bad read address %#lx len %u", addr, bytes);
181 }
182}
183
Rusty Russelldde79782007-07-26 10:41:03 -0700184/* Similarly, our generic routine to copy into a range of Guest bytes. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700185void lgwrite(struct lguest *lg, unsigned long addr, const void *b,
186 unsigned bytes)
187{
188 if (!lguest_address_ok(lg, addr, bytes)
Rusty Russell3c6b5bf2007-10-22 11:03:26 +1000189 || copy_to_user(lg->mem_base + addr, b, bytes) != 0)
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700190 kill_guest(lg, "bad write address %#lx len %u", addr, bytes);
191}
Rusty Russelldde79782007-07-26 10:41:03 -0700192/* (end of memory access helper routines) :*/
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700193
Rusty Russellbff672e2007-07-26 10:41:04 -0700194/*H:030 Let's jump straight to the the main loop which runs the Guest.
195 * Remember, this is called by the Launcher reading /dev/lguest, and we keep
196 * going around and around until something interesting happens. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700197int run_guest(struct lguest *lg, unsigned long __user *user)
198{
Rusty Russellbff672e2007-07-26 10:41:04 -0700199 /* We stop running once the Guest is dead. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700200 while (!lg->dead) {
Rusty Russellcc6d4fb2007-10-22 11:03:30 +1000201 /* First we run any hypercalls the Guest wants done. */
202 if (lg->hcall)
203 do_hypercalls(lg);
204
Rusty Russellbff672e2007-07-26 10:41:04 -0700205 /* It's possible the Guest did a SEND_DMA hypercall to the
206 * Launcher, in which case we return from the read() now. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700207 if (lg->dma_is_pending) {
208 if (put_user(lg->pending_dma, user) ||
209 put_user(lg->pending_key, user+1))
210 return -EFAULT;
211 return sizeof(unsigned long)*2;
212 }
213
Rusty Russellbff672e2007-07-26 10:41:04 -0700214 /* Check for signals */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700215 if (signal_pending(current))
216 return -ERESTARTSYS;
217
218 /* If Waker set break_out, return to Launcher. */
219 if (lg->break_out)
220 return -EAGAIN;
221
Rusty Russellbff672e2007-07-26 10:41:04 -0700222 /* Check if there are any interrupts which can be delivered
223 * now: if so, this sets up the hander to be executed when we
224 * next run the Guest. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700225 maybe_do_interrupt(lg);
226
Rusty Russellbff672e2007-07-26 10:41:04 -0700227 /* All long-lived kernel loops need to check with this horrible
228 * thing called the freezer. If the Host is trying to suspend,
229 * it stops us. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700230 try_to_freeze();
231
Rusty Russellbff672e2007-07-26 10:41:04 -0700232 /* Just make absolutely sure the Guest is still alive. One of
233 * those hypercalls could have been fatal, for example. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700234 if (lg->dead)
235 break;
236
Rusty Russellbff672e2007-07-26 10:41:04 -0700237 /* If the Guest asked to be stopped, we sleep. The Guest's
238 * clock timer or LHCALL_BREAK from the Waker will wake us. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700239 if (lg->halted) {
240 set_current_state(TASK_INTERRUPTIBLE);
241 schedule();
242 continue;
243 }
244
Rusty Russellbff672e2007-07-26 10:41:04 -0700245 /* OK, now we're ready to jump into the Guest. First we put up
246 * the "Do Not Disturb" sign: */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700247 local_irq_disable();
248
Jes Sorensen625efab2007-10-22 11:03:28 +1000249 /* Actually run the Guest until something happens. */
250 lguest_arch_run_guest(lg);
Rusty Russellbff672e2007-07-26 10:41:04 -0700251
252 /* Now we're ready to be interrupted or moved to other CPUs */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700253 local_irq_enable();
254
Jes Sorensen625efab2007-10-22 11:03:28 +1000255 /* Now we deal with whatever happened to the Guest. */
256 lguest_arch_handle_trap(lg);
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700257 }
Jes Sorensen625efab2007-10-22 11:03:28 +1000258
Rusty Russellbff672e2007-07-26 10:41:04 -0700259 /* The Guest is dead => "No such file or directory" */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700260 return -ENOENT;
261}
262
Rusty Russellbff672e2007-07-26 10:41:04 -0700263/*H:000
264 * Welcome to the Host!
265 *
266 * By this point your brain has been tickled by the Guest code and numbed by
267 * the Launcher code; prepare for it to be stretched by the Host code. This is
268 * the heart. Let's begin at the initialization routine for the Host's lg
269 * module.
270 */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700271static int __init init(void)
272{
273 int err;
274
Rusty Russellbff672e2007-07-26 10:41:04 -0700275 /* Lguest can't run under Xen, VMI or itself. It does Tricky Stuff. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700276 if (paravirt_enabled()) {
Jeremy Fitzhardinge93b1eab2007-10-16 11:51:29 -0700277 printk("lguest is afraid of %s\n", pv_info.name);
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700278 return -EPERM;
279 }
280
Rusty Russellbff672e2007-07-26 10:41:04 -0700281 /* First we put the Switcher up in very high virtual memory. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700282 err = map_switcher();
283 if (err)
Rusty Russellc18acd72007-10-22 11:03:35 +1000284 goto out;
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700285
Rusty Russellbff672e2007-07-26 10:41:04 -0700286 /* Now we set up the pagetable implementation for the Guests. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700287 err = init_pagetables(switcher_page, SHARED_SWITCHER_PAGES);
Rusty Russellc18acd72007-10-22 11:03:35 +1000288 if (err)
289 goto unmap;
Rusty Russellbff672e2007-07-26 10:41:04 -0700290
291 /* The I/O subsystem needs some things initialized. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700292 lguest_io_init();
293
Rusty Russellc18acd72007-10-22 11:03:35 +1000294 /* We might need to reserve an interrupt vector. */
295 err = init_interrupts();
296 if (err)
297 goto free_pgtables;
298
Rusty Russellbff672e2007-07-26 10:41:04 -0700299 /* /dev/lguest needs to be registered. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700300 err = lguest_device_init();
Rusty Russellc18acd72007-10-22 11:03:35 +1000301 if (err)
302 goto free_interrupts;
Rusty Russellbff672e2007-07-26 10:41:04 -0700303
Jes Sorensen625efab2007-10-22 11:03:28 +1000304 /* Finally we do some architecture-specific setup. */
305 lguest_arch_host_init();
Rusty Russellbff672e2007-07-26 10:41:04 -0700306
307 /* All good! */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700308 return 0;
Rusty Russellc18acd72007-10-22 11:03:35 +1000309
310free_interrupts:
311 free_interrupts();
312free_pgtables:
313 free_pagetables();
314unmap:
315 unmap_switcher();
316out:
317 return err;
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700318}
319
Rusty Russellbff672e2007-07-26 10:41:04 -0700320/* Cleaning up is just the same code, backwards. With a little French. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700321static void __exit fini(void)
322{
323 lguest_device_remove();
Rusty Russellc18acd72007-10-22 11:03:35 +1000324 free_interrupts();
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700325 free_pagetables();
326 unmap_switcher();
Rusty Russellbff672e2007-07-26 10:41:04 -0700327
Jes Sorensen625efab2007-10-22 11:03:28 +1000328 lguest_arch_host_fini();
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700329}
Jes Sorensen625efab2007-10-22 11:03:28 +1000330/*:*/
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700331
Rusty Russellbff672e2007-07-26 10:41:04 -0700332/* The Host side of lguest can be a module. This is a nice way for people to
333 * play with it. */
Rusty Russelld7e28ff2007-07-19 01:49:23 -0700334module_init(init);
335module_exit(fini);
336MODULE_LICENSE("GPL");
337MODULE_AUTHOR("Rusty Russell <rusty@rustcorp.com.au>");