提交 1ffb9164 编写于 作者: J Jeff Dike 提交者: Linus Torvalds

uml: remove page_size()

userspace code used to have to call the kernelspace function page_size() in
order to determine the value of the kernel's PAGE_SIZE.  Since this is now
available directly from kern_constants.h as UM_KERN_PAGE_SIZE, page_size() can
be deleted and calls changed to use the constant.
Signed-off-by: NJeff Dike <jdike@linux.intel.com>
Cc: Paolo 'Blaisorblade' Giarrusso <blaisorblade@yahoo.it>
Signed-off-by: NAndrew Morton <akpm@linux-foundation.org>
Signed-off-by: NLinus Torvalds <torvalds@linux-foundation.org>
上级 6e21aec3
...@@ -18,6 +18,7 @@ ...@@ -18,6 +18,7 @@
#include "net_user.h" #include "net_user.h"
#include "os.h" #include "os.h"
#include "um_malloc.h" #include "um_malloc.h"
#include "kern_constants.h"
int tap_open_common(void *dev, char *gate_addr) int tap_open_common(void *dev, char *gate_addr)
{ {
...@@ -215,7 +216,7 @@ static void change(char *dev, char *what, unsigned char *addr, ...@@ -215,7 +216,7 @@ static void change(char *dev, char *what, unsigned char *addr,
sprintf(netmask_buf, "%d.%d.%d.%d", netmask[0], netmask[1], sprintf(netmask_buf, "%d.%d.%d.%d", netmask[0], netmask[1],
netmask[2], netmask[3]); netmask[2], netmask[3]);
output_len = page_size(); output_len = UM_KERN_PAGE_SIZE;
output = um_kmalloc(output_len); output = um_kmalloc(output_len);
if(output == NULL) if(output == NULL)
printk("change : failed to allocate output buffer\n"); printk("change : failed to allocate output buffer\n");
......
...@@ -15,6 +15,7 @@ ...@@ -15,6 +15,7 @@
#include "slip_common.h" #include "slip_common.h"
#include "os.h" #include "os.h"
#include "um_malloc.h" #include "um_malloc.h"
#include "kern_constants.h"
static int slip_user_init(void *data, void *dev) static int slip_user_init(void *data, void *dev)
{ {
...@@ -89,7 +90,7 @@ static int slip_tramp(char **argv, int fd) ...@@ -89,7 +90,7 @@ static int slip_tramp(char **argv, int fd)
goto out_close; goto out_close;
pid = err; pid = err;
output_len = page_size(); output_len = UM_KERN_PAGE_SIZE;
output = um_kmalloc(output_len); output = um_kmalloc(output_len);
if(output == NULL){ if(output == NULL){
printk("slip_tramp : failed to allocate output buffer\n"); printk("slip_tramp : failed to allocate output buffer\n");
......
...@@ -52,7 +52,6 @@ extern void set_tracing(void *t, int tracing); ...@@ -52,7 +52,6 @@ extern void set_tracing(void *t, int tracing);
extern int is_tracing(void *task); extern int is_tracing(void *task);
extern int segv_syscall(void); extern int segv_syscall(void);
extern void kern_finish_exec(void *task, int new_pid, unsigned long stack); extern void kern_finish_exec(void *task, int new_pid, unsigned long stack);
extern int page_size(void);
extern unsigned long page_mask(void); extern unsigned long page_mask(void);
extern int need_finish_fork(void); extern int need_finish_fork(void);
extern void free_stack(unsigned long stack, int order); extern void free_stack(unsigned long stack, int order);
......
...@@ -217,11 +217,6 @@ void cpu_idle(void) ...@@ -217,11 +217,6 @@ void cpu_idle(void)
CHOOSE_MODE(init_idle_tt(), init_idle_skas()); CHOOSE_MODE(init_idle_tt(), init_idle_skas());
} }
int page_size(void)
{
return PAGE_SIZE;
}
void *um_virt_to_phys(struct task_struct *task, unsigned long addr, void *um_virt_to_phys(struct task_struct *task, unsigned long addr,
pte_t *pte_out) pte_t *pte_out)
{ {
......
...@@ -20,6 +20,7 @@ ...@@ -20,6 +20,7 @@
#include "etap.h" #include "etap.h"
#include "os.h" #include "os.h"
#include "um_malloc.h" #include "um_malloc.h"
#include "kern_constants.h"
#define MAX_PACKET ETH_MAX_PACKET #define MAX_PACKET ETH_MAX_PACKET
...@@ -50,10 +51,10 @@ static void etap_change(int op, unsigned char *addr, unsigned char *netmask, ...@@ -50,10 +51,10 @@ static void etap_change(int op, unsigned char *addr, unsigned char *netmask,
n = os_write_file(fd, &change, sizeof(change)); n = os_write_file(fd, &change, sizeof(change));
if(n != sizeof(change)) if(n != sizeof(change))
printk("etap_change - request failed, err = %d\n", -n); printk("etap_change - request failed, err = %d\n", -n);
output = um_kmalloc(page_size()); output = um_kmalloc(UM_KERN_PAGE_SIZE);
if(output == NULL) if(output == NULL)
printk("etap_change : Failed to allocate output buffer\n"); printk("etap_change : Failed to allocate output buffer\n");
read_output(fd, output, page_size()); read_output(fd, output, UM_KERN_PAGE_SIZE);
if(output != NULL){ if(output != NULL){
printk("%s", output); printk("%s", output);
kfree(output); kfree(output);
...@@ -159,7 +160,7 @@ static int etap_open(void *data) ...@@ -159,7 +160,7 @@ static int etap_open(void *data)
err = etap_tramp(pri->dev_name, pri->gate_addr, control_fds[0], err = etap_tramp(pri->dev_name, pri->gate_addr, control_fds[0],
control_fds[1], data_fds[0], data_fds[1]); control_fds[1], data_fds[0], data_fds[1]);
output_len = page_size(); output_len = UM_KERN_PAGE_SIZE;
output = um_kmalloc(output_len); output = um_kmalloc(output_len);
read_output(control_fds[0], output, output_len); read_output(control_fds[0], output, output_len);
......
...@@ -15,6 +15,7 @@ ...@@ -15,6 +15,7 @@
#include "kern_util.h" #include "kern_util.h"
#include "os.h" #include "os.h"
#include "um_malloc.h" #include "um_malloc.h"
#include "kern_constants.h"
struct helper_data { struct helper_data {
void (*pre_exec)(void*); void (*pre_exec)(void*);
...@@ -69,7 +70,7 @@ int run_helper(void (*pre_exec)(void *), void *pre_data, char **argv, ...@@ -69,7 +70,7 @@ int run_helper(void (*pre_exec)(void *), void *pre_data, char **argv,
goto out_close; goto out_close;
} }
sp = stack + page_size() - sizeof(void *); sp = stack + UM_KERN_PAGE_SIZE - sizeof(void *);
data.pre_exec = pre_exec; data.pre_exec = pre_exec;
data.pre_data = pre_data; data.pre_data = pre_data;
data.argv = argv; data.argv = argv;
...@@ -123,7 +124,7 @@ int run_helper_thread(int (*proc)(void *), void *arg, unsigned int flags, ...@@ -123,7 +124,7 @@ int run_helper_thread(int (*proc)(void *), void *arg, unsigned int flags,
if (stack == 0) if (stack == 0)
return -ENOMEM; return -ENOMEM;
sp = stack + (page_size() << stack_order) - sizeof(void *); sp = stack + (UM_KERN_PAGE_SIZE << stack_order) - sizeof(void *);
pid = clone(proc, (void *) sp, flags | SIGCHLD, arg); pid = clone(proc, (void *) sp, flags | SIGCHLD, arg);
if (pid < 0) { if (pid < 0) {
err = -errno; err = -errno;
......
...@@ -244,7 +244,7 @@ void init_new_thread_stack(void *sig_stack, void (*usr1_handler)(int)) ...@@ -244,7 +244,7 @@ void init_new_thread_stack(void *sig_stack, void (*usr1_handler)(int))
if(sig_stack != NULL){ if(sig_stack != NULL){
pages = (1 << UML_CONFIG_KERNEL_STACK_ORDER); pages = (1 << UML_CONFIG_KERNEL_STACK_ORDER);
set_sigstack(sig_stack, pages * page_size()); set_sigstack(sig_stack, pages * UM_KERN_PAGE_SIZE);
flags = SA_ONSTACK; flags = SA_ONSTACK;
} }
if(usr1_handler){ if(usr1_handler){
......
...@@ -33,6 +33,7 @@ ...@@ -33,6 +33,7 @@
#include "uml-config.h" #include "uml-config.h"
#include "process.h" #include "process.h"
#include "longjmp.h" #include "longjmp.h"
#include "kern_constants.h"
int is_skas_winch(int pid, int fd, void *data) int is_skas_winch(int pid, int fd, void *data)
{ {
...@@ -171,7 +172,7 @@ static int userspace_tramp(void *stack) ...@@ -171,7 +172,7 @@ static int userspace_tramp(void *stack)
int fd; int fd;
__u64 offset; __u64 offset;
fd = phys_mapping(to_phys(&__syscall_stub_start), &offset); fd = phys_mapping(to_phys(&__syscall_stub_start), &offset);
addr = mmap64((void *) UML_CONFIG_STUB_CODE, page_size(), addr = mmap64((void *) UML_CONFIG_STUB_CODE, UM_KERN_PAGE_SIZE,
PROT_EXEC, MAP_FIXED | MAP_PRIVATE, fd, offset); PROT_EXEC, MAP_FIXED | MAP_PRIVATE, fd, offset);
if(addr == MAP_FAILED){ if(addr == MAP_FAILED){
printk("mapping mmap stub failed, errno = %d\n", printk("mapping mmap stub failed, errno = %d\n",
...@@ -181,8 +182,8 @@ static int userspace_tramp(void *stack) ...@@ -181,8 +182,8 @@ static int userspace_tramp(void *stack)
if(stack != NULL){ if(stack != NULL){
fd = phys_mapping(to_phys(stack), &offset); fd = phys_mapping(to_phys(stack), &offset);
addr = mmap((void *) UML_CONFIG_STUB_DATA, page_size(), addr = mmap((void *) UML_CONFIG_STUB_DATA,
PROT_READ | PROT_WRITE, UM_KERN_PAGE_SIZE, PROT_READ | PROT_WRITE,
MAP_FIXED | MAP_SHARED, fd, offset); MAP_FIXED | MAP_SHARED, fd, offset);
if(addr == MAP_FAILED){ if(addr == MAP_FAILED){
printk("mapping segfault stack failed, " printk("mapping segfault stack failed, "
...@@ -198,7 +199,7 @@ static int userspace_tramp(void *stack) ...@@ -198,7 +199,7 @@ static int userspace_tramp(void *stack)
(unsigned long) stub_segv_handler - (unsigned long) stub_segv_handler -
(unsigned long) &__syscall_stub_start; (unsigned long) &__syscall_stub_start;
set_sigstack((void *) UML_CONFIG_STUB_DATA, page_size()); set_sigstack((void *) UML_CONFIG_STUB_DATA, UM_KERN_PAGE_SIZE);
sigemptyset(&sa.sa_mask); sigemptyset(&sa.sa_mask);
sigaddset(&sa.sa_mask, SIGIO); sigaddset(&sa.sa_mask, SIGIO);
sigaddset(&sa.sa_mask, SIGWINCH); sigaddset(&sa.sa_mask, SIGWINCH);
......
...@@ -31,6 +31,7 @@ ...@@ -31,6 +31,7 @@
#include "choose-mode.h" #include "choose-mode.h"
#include "mode.h" #include "mode.h"
#include "tempfile.h" #include "tempfile.h"
#include "kern_constants.h"
int protect_memory(unsigned long addr, unsigned long len, int r, int w, int x, int protect_memory(unsigned long addr, unsigned long len, int r, int w, int x,
int must_succeed) int must_succeed)
...@@ -142,7 +143,7 @@ int outer_tramp(void *arg) ...@@ -142,7 +143,7 @@ int outer_tramp(void *arg)
int sig = sigkill; int sig = sigkill;
t = arg; t = arg;
t->pid = clone(t->tramp, (void *) t->temp_stack + page_size()/2, t->pid = clone(t->tramp, (void *) t->temp_stack + UM_KERN_PAGE_SIZE/2,
t->flags, t->tramp_data); t->flags, t->tramp_data);
if(t->pid > 0) wait_for_stop(t->pid, SIGSTOP, PTRACE_CONT, NULL); if(t->pid > 0) wait_for_stop(t->pid, SIGSTOP, PTRACE_CONT, NULL);
kill(os_getpid(), sig); kill(os_getpid(), sig);
......
...@@ -29,28 +29,29 @@ ...@@ -29,28 +29,29 @@
#include "uml-config.h" #include "uml-config.h"
#include "os.h" #include "os.h"
#include "longjmp.h" #include "longjmp.h"
#include "kern_constants.h"
void stack_protections(unsigned long address) void stack_protections(unsigned long address)
{ {
int prot = PROT_READ | PROT_WRITE | PROT_EXEC; int prot = PROT_READ | PROT_WRITE | PROT_EXEC;
if(mprotect((void *) address, page_size(), prot) < 0) if(mprotect((void *) address, UM_KERN_PAGE_SIZE, prot) < 0)
panic("protecting stack failed, errno = %d", errno); panic("protecting stack failed, errno = %d", errno);
} }
void task_protections(unsigned long address) void task_protections(unsigned long address)
{ {
unsigned long guard = address + page_size(); unsigned long guard = address + UM_KERN_PAGE_SIZE;
unsigned long stack = guard + page_size(); unsigned long stack = guard + UM_KERN_PAGE_SIZE;
int prot = 0, pages; int prot = 0, pages;
#ifdef notdef #ifdef notdef
if(mprotect((void *) stack, page_size(), prot) < 0) if(mprotect((void *) stack, UM_KERN_PAGE_SIZE, prot) < 0)
panic("protecting guard page failed, errno = %d", errno); panic("protecting guard page failed, errno = %d", errno);
#endif #endif
pages = (1 << UML_CONFIG_KERNEL_STACK_ORDER) - 2; pages = (1 << UML_CONFIG_KERNEL_STACK_ORDER) - 2;
prot = PROT_READ | PROT_WRITE | PROT_EXEC; prot = PROT_READ | PROT_WRITE | PROT_EXEC;
if(mprotect((void *) stack, pages * page_size(), prot) < 0) if(mprotect((void *) stack, pages * UM_KERN_PAGE_SIZE, prot) < 0)
panic("protecting stack failed, errno = %d", errno); panic("protecting stack failed, errno = %d", errno);
} }
......
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