Move CMOS handling into separate files in accessors

Signed-off-by: Patrick Georgi <patrick.georgi@secunet.com>
Acked-by: Stefan Reinauer <stefan.reinauer@coreboot.org>


git-svn-id: svn://svn.coreboot.org/coreboot/trunk@6313 2b7e53f0-3cfb-0310-b3e9-8179ed1497e1
This commit is contained in:
Patrick Georgi 2011-01-28 07:54:11 +00:00 committed by Patrick Georgi
parent 49a74437aa
commit 1e916e0766
6 changed files with 168 additions and 151 deletions

View File

@ -31,7 +31,7 @@ CLI_OBJS = cli/nvramtool.o cli/opts.o
OBJS = cmos_lowlevel.o cmos_ops.o common.o compute_ip_checksum.o \
hexdump.o input_file.o layout.o accessors/layout-text.o lbtable.o \
reg_expr.o cbfs.o
reg_expr.o cbfs.o accessors/cmos-hw-unix.o accessors/cmos-mem.o
OBJS += $(CLI_OBJS)

View File

@ -0,0 +1,122 @@
#include <assert.h>
#include "cmos_lowlevel.h"
#if defined(__FreeBSD__)
#include <sys/types.h>
#include <machine/cpufunc.h>
#define OUTB(x, y) do { u_int tmp = (y); outb(tmp, (x)); } while (0)
#define OUTW(x, y) do { u_int tmp = (y); outw(tmp, (x)); } while (0)
#define OUTL(x, y) do { u_int tmp = (y); outl(tmp, (x)); } while (0)
#define INB(x) __extension__ ({ u_int tmp = (x); inb(tmp); })
#define INW(x) __extension__ ({ u_int tmp = (x); inw(tmp); })
#define INL(x) __extension__ ({ u_int tmp = (x); inl(tmp); })
#else
#if defined(__GLIBC__)
#include <sys/io.h>
#endif
#if (defined(__MACH__) && defined(__APPLE__))
#include <DirectIO/darwinio.h>
#endif
#define OUTB outb
#define OUTW outw
#define OUTL outl
#define INB inb
#define INW inw
#define INL inl
#endif
static void cmos_hal_init(void* data);
static unsigned char cmos_hal_read(unsigned addr);
static void cmos_hal_write(unsigned addr, unsigned char value);
static void cmos_set_iopl(int level);
/* no need to initialize anything */
static void cmos_hal_init(__attribute__((unused)) void *data)
{
}
static unsigned char cmos_hal_read(unsigned index)
{
unsigned short port_0, port_1;
assert(!verify_cmos_byte_index(index));
if (index < 128) {
port_0 = 0x70;
port_1 = 0x71;
} else {
port_0 = 0x72;
port_1 = 0x73;
}
OUTB(index, port_0);
return INB(port_1);
}
static void cmos_hal_write(unsigned index, unsigned char value)
{
unsigned short port_0, port_1;
assert(!verify_cmos_byte_index(index));
if (index < 128) {
port_0 = 0x70;
port_1 = 0x71;
} else {
port_0 = 0x72;
port_1 = 0x73;
}
OUTB(index, port_0);
OUTB(value, port_1);
}
/****************************************************************************
* cmos_set_iopl
*
* Set the I/O privilege level of the executing process. Root privileges are
* required for performing this action. A sufficient I/O privilege level
* allows the process to access x86 I/O address space and to disable/reenable
* interrupts while executing in user space. Messing with the I/O privilege
* level is therefore somewhat dangerous.
****************************************************************************/
static void cmos_set_iopl(int level)
{
#if defined(__FreeBSD__)
static int io_fd = -1;
#endif
assert((level >= 0) && (level <= 3));
#if defined(__FreeBSD__)
if (level == 0) {
if (io_fd != -1) {
close(io_fd);
io_fd = -1;
}
} else {
if (io_fd == -1) {
io_fd = open("/dev/io", O_RDWR);
if (io_fd < 0) {
perror("/dev/io");
exit(1);
}
}
}
#else
if (iopl(level)) {
fprintf(stderr, "%s: iopl() system call failed. "
"You must be root to do this.\n", prog_name);
exit(1);
}
#endif
}
cmos_access_t cmos_hal = {
.init = cmos_hal_init,
.read = cmos_hal_read,
.write = cmos_hal_write,
.set_iopl = cmos_set_iopl,
};

View File

@ -0,0 +1,37 @@
#include <assert.h>
#include "cmos_lowlevel.h"
static void mem_hal_init(void* data);
static unsigned char mem_hal_read(unsigned addr);
static void mem_hal_write(unsigned addr, unsigned char value);
static void mem_set_iopl(int level);
static unsigned char* mem_hal_data = (unsigned char*)-1;
static void mem_hal_init(void *data)
{
mem_hal_data = data;
}
static unsigned char mem_hal_read(unsigned index)
{
assert(mem_hal_data != (unsigned char*)-1);
return mem_hal_data[index];
}
static void mem_hal_write(unsigned index, unsigned char value)
{
assert(mem_hal_data != (unsigned char*)-1);
mem_hal_data[index] = value;
}
static void mem_set_iopl(__attribute__ ((unused)) int level)
{
}
cmos_access_t memory_hal = {
.init = mem_hal_init,
.read = mem_hal_read,
.write = mem_hal_write,
.set_iopl = mem_set_iopl,
};

View File

@ -38,98 +38,9 @@
/* Hardware Abstraction Layer: lowlevel byte-wise write access */
typedef struct {
void (*init)(void* data);
unsigned char (*read)(unsigned addr);
void (*write)(unsigned addr, unsigned char value);
void (*set_iopl)(int level);
} cmos_access_t;
static void cmos_hal_init(void* data);
static unsigned char cmos_hal_read(unsigned addr);
static void cmos_hal_write(unsigned addr, unsigned char value);
static void cmos_set_iopl(int level);
static cmos_access_t cmos_hal = {
.init = cmos_hal_init,
.read = cmos_hal_read,
.write = cmos_hal_write,
.set_iopl = cmos_set_iopl,
};
static void mem_hal_init(void* data);
static unsigned char mem_hal_read(unsigned addr);
static void mem_hal_write(unsigned addr, unsigned char value);
static void mem_set_iopl(int level);
static cmos_access_t memory_hal = {
.init = mem_hal_init,
.read = mem_hal_read,
.write = mem_hal_write,
.set_iopl = mem_set_iopl,
};
extern cmos_access_t cmos_hal, memory_hal;
static cmos_access_t *current_access = &cmos_hal;
/* no need to initialize anything */
static void cmos_hal_init(__attribute__((unused)) void *data)
{
}
static unsigned char cmos_hal_read(unsigned index)
{
unsigned short port_0, port_1;
assert(!verify_cmos_byte_index(index));
if (index < 128) {
port_0 = 0x70;
port_1 = 0x71;
} else {
port_0 = 0x72;
port_1 = 0x73;
}
OUTB(index, port_0);
return INB(port_1);
}
static void cmos_hal_write(unsigned index, unsigned char value)
{
unsigned short port_0, port_1;
assert(!verify_cmos_byte_index(index));
if (index < 128) {
port_0 = 0x70;
port_1 = 0x71;
} else {
port_0 = 0x72;
port_1 = 0x73;
}
OUTB(index, port_0);
OUTB(value, port_1);
}
static unsigned char* mem_hal_data = (unsigned char*)-1;
static void mem_hal_init(void *data)
{
mem_hal_data = data;
}
static unsigned char mem_hal_read(unsigned index)
{
assert(mem_hal_data != (unsigned char*)-1);
return mem_hal_data[index];
}
static void mem_hal_write(unsigned index, unsigned char value)
{
assert(mem_hal_data != (unsigned char*)-1);
mem_hal_data[index] = value;
}
void select_hal(hal_t hal, void *data)
{
switch(hal) {
@ -353,42 +264,6 @@ void set_iopl(int level)
current_access->set_iopl(level);
}
static void cmos_set_iopl(int level)
{
#if defined(__FreeBSD__)
static int io_fd = -1;
#endif
assert((level >= 0) && (level <= 3));
#if defined(__FreeBSD__)
if (level == 0) {
if (io_fd != -1) {
close(io_fd);
io_fd = -1;
}
} else {
if (io_fd == -1) {
io_fd = open("/dev/io", O_RDWR);
if (io_fd < 0) {
perror("/dev/io");
exit(1);
}
}
}
#else
if (iopl(level)) {
fprintf(stderr, "%s: iopl() system call failed. "
"You must be root to do this.\n", prog_name);
exit(1);
}
#endif
}
static void mem_set_iopl(__attribute__ ((unused)) int level)
{
}
/****************************************************************************
* verify_cmos_op
*

View File

@ -34,6 +34,13 @@
#include "common.h"
#include "layout.h"
typedef struct {
void (*init)(void* data);
unsigned char (*read)(unsigned addr);
void (*write)(unsigned addr, unsigned char value);
void (*set_iopl)(int level);
} cmos_access_t;
typedef enum { HAL_CMOS, HAL_MEMORY } hal_t;
void select_hal(hal_t hal, void *data);

View File

@ -43,30 +43,6 @@
#include <string.h>
#include <ctype.h>
#if defined(__FreeBSD__)
#include <sys/types.h>
#include <machine/cpufunc.h>
#define OUTB(x, y) do { u_int tmp = (y); outb(tmp, (x)); } while (0)
#define OUTW(x, y) do { u_int tmp = (y); outw(tmp, (x)); } while (0)
#define OUTL(x, y) do { u_int tmp = (y); outl(tmp, (x)); } while (0)
#define INB(x) __extension__ ({ u_int tmp = (x); inb(tmp); })
#define INW(x) __extension__ ({ u_int tmp = (x); inw(tmp); })
#define INL(x) __extension__ ({ u_int tmp = (x); inl(tmp); })
#else
#if defined(__GLIBC__)
#include <sys/io.h>
#endif
#if (defined(__MACH__) && defined(__APPLE__))
#include <DirectIO/darwinio.h>
#endif
#define OUTB outb
#define OUTW outw
#define OUTL outl
#define INB inb
#define INW inw
#define INL inl
#endif
#define FALSE 0
#define TRUE 1