tty: implement read/write support

This commit is contained in:
2023-06-11 09:23:57 +01:00
parent 557e1dda30
commit abe4af093e
9 changed files with 124 additions and 14 deletions

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@@ -154,7 +154,7 @@ int ml_init(uintptr_t arg)
acpi_init();
#endif
tty_init();
tty_bootstrap();
ml_int_enable();

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@@ -17,3 +17,32 @@ struct char_device *char_device_from_generic(struct device *dev)
dev->dev_type = DEV_TYPE_CHAR;
return CHAR_DEVICE(dev);
}
static kern_status_t char_device_read(struct device *dev, void *buf, size_t size, size_t *bytes_read, socks_flags_t flags)
{
kern_status_t status = KERN_UNSUPPORTED;
struct char_device *cdev = CHAR_DEVICE(dev);
if (cdev->c_ops && cdev->c_ops->read) {
status = cdev->c_ops->read(dev, buf, size, bytes_read, flags);
}
return status;
}
static kern_status_t char_device_write(struct device *dev, const void *buf, size_t size, size_t *bytes_read, socks_flags_t flags)
{
kern_status_t status = KERN_UNSUPPORTED;
struct char_device *cdev = CHAR_DEVICE(dev);
if (cdev->c_ops && cdev->c_ops->write) {
status = cdev->c_ops->write(dev, buf, size, bytes_read, flags);
}
return status;
}
struct device_type_ops char_type_ops = {
.read = char_device_read,
.write = char_device_write,
};

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@@ -19,6 +19,7 @@ static kern_status_t device_object_get_child_named(struct object *, const char *
extern kern_status_t init_driver_tree(void);
extern struct device_type_ops char_type_ops;
extern struct device_type_ops input_type_ops;
extern struct device_type_ops framebuffer_type_ops;
extern struct device_type_ops bus_type_ops;
@@ -26,7 +27,7 @@ extern struct device_type_ops bus_type_ops;
static struct device_type_ops *type_ops[] = {
[DEV_TYPE_UNKNOWN] = NULL,
[DEV_TYPE_BLOCK] = NULL,
[DEV_TYPE_CHAR] = NULL,
[DEV_TYPE_CHAR] = &char_type_ops,
[DEV_TYPE_NET] = NULL,
[DEV_TYPE_INPUT] = &input_type_ops,
[DEV_TYPE_BUS] = &bus_type_ops,
@@ -123,17 +124,24 @@ struct device *generic_device_create(void)
kern_status_t device_read(struct device *dev, void *buf, size_t size, size_t *bytes_read, socks_flags_t flags)
{
switch (dev->dev_type) {
case DEV_TYPE_INPUT:
return input_device_read(dev, buf, size, bytes_read, flags);
default:
return KERN_UNSUPPORTED;
kern_status_t status = KERN_UNSUPPORTED;
if (type_ops[dev->dev_type] && type_ops[dev->dev_type]->read) {
status = type_ops[dev->dev_type]->read(dev, buf, size, bytes_read, flags);
}
return status;
}
kern_status_t device_write(struct device *dev, const void *buf, size_t size, size_t *bytes_written, socks_flags_t flags)
{
return KERN_UNSUPPORTED;
kern_status_t status = KERN_UNSUPPORTED;
if (type_ops[dev->dev_type] && type_ops[dev->dev_type]->write) {
status = type_ops[dev->dev_type]->write(dev, buf, size, bytes_written, flags);
}
return status;
}
struct device *cast_to_device(struct object *obj)

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@@ -88,4 +88,5 @@ kern_status_t input_device_register(struct device *dev)
struct device_type_ops input_type_ops = {
.register_device = input_device_register,
.read = input_device_read,
};

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@@ -41,12 +41,14 @@ enum device_type {
};
struct device_type_ops {
kern_status_t(*read)(struct device *, void *, size_t, size_t *, socks_flags_t);
kern_status_t(*write)(struct device *, const void *, size_t, size_t *, socks_flags_t);
kern_status_t(*register_device)(struct device *);
};
struct block_device_ops {
kern_status_t(*read_blocks)(struct device *, size_t, size_t *, void *, socks_flags_t);
kern_status_t(*write_blocks)(struct device *, size_t, size_t *, const void *, socks_flags_t);
kern_status_t(*read_blocks)(struct device *, void *, size_t, size_t *, socks_flags_t);
kern_status_t(*write_blocks)(struct device *, const void *, size_t, size_t *, socks_flags_t);
kern_status_t(*ioctl)(struct device *, unsigned int, void *);
};
@@ -58,8 +60,8 @@ struct net_device_ops {
};
struct char_device_ops {
kern_status_t(*read)(struct device *, size_t, size_t *, void *, socks_flags_t);
kern_status_t(*write)(struct device *, size_t, size_t *, const void *, socks_flags_t);
kern_status_t(*read)(struct device *, void *, size_t, size_t *, socks_flags_t);
kern_status_t(*write)(struct device *, const void *, size_t, size_t *, socks_flags_t);
};
struct input_device_ops {

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@@ -7,6 +7,9 @@
#include <socks/object.h>
#include <stdint.h>
#define TTY_DEVICE(dev) ((dev)->dev_type == DEV_TYPE_CHAR ? (dev)->chr.c_tty : NULL)
#define TTY_DRIVER(drv) ((struct tty_driver *)((char *)drv - offsetof(struct tty_driver, tty_base)))
struct kext;
/* The TTY system.
@@ -82,9 +85,10 @@ struct tty_device {
unsigned int tty_xcells, tty_ycells;
unsigned int tty_xcur, tty_ycur;
unsigned int tty_iflag, tty_oflag, tty_lflag;
tty_attrib_t tty_curattrib;
};
extern kern_status_t tty_init(void);
extern kern_status_t tty_bootstrap(void);
extern struct device *tty_device_create(void);
extern kern_status_t tty_device_register(struct device *dev, struct tty_driver *owner, struct device *parent);
@@ -98,6 +102,9 @@ static inline struct driver *tty_driver_base(struct tty_driver *drv)
return &drv->tty_base;
}
extern kern_status_t tty_read(struct device *tty, void *buf, size_t max, size_t *nr_read, socks_flags_t flags);
extern kern_status_t tty_write(struct device *tty, const void *buf, size_t len, size_t *nr_written, socks_flags_t flags);
#ifdef __cplusplus
}
#endif

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@@ -2,6 +2,11 @@
#include <socks/device.h>
#include <socks/libc/stdio.h>
static struct char_device_ops tty_ops = {
.read = tty_read,
.write = tty_write,
};
struct device *tty_device_create(void)
{
struct char_device *cdev = char_device_create();
@@ -15,7 +20,9 @@ struct device *tty_device_create(void)
return NULL;
}
cdev->c_ops = &tty_ops;
cdev->c_tty = tty_dev;
return char_device_base(cdev);
}

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@@ -8,7 +8,7 @@ static struct vm_cache tty_driver_cache = {
static struct queue tty_drivers;
static spin_lock_t tty_drivers_lock;
kern_status_t tty_init(void)
kern_status_t tty_bootstrap(void)
{
vm_cache_init(&tty_driver_cache);
tty_drivers = QUEUE_INIT;

56
kernel/tty/tty.c Normal file
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@@ -0,0 +1,56 @@
#include <socks/tty.h>
#include <socks/printk.h>
static void putchar(struct device *tty, int c)
{
struct tty_device *ttydev = TTY_DEVICE(tty);
struct tty_driver *tty_driver = TTY_DRIVER(tty->dev_owner);
struct tty_driver_ops *ops = tty_driver->tty_ops;
if (!ops->tty_putc) {
return;
}
if (tty_driver->tty_type == TTY_DRIVER_SIMPLE) {
ops->tty_putc(tty, c, -1, -1, 0);
return;
}
ops->tty_putc(tty, c, ttydev->tty_xcur, ttydev->tty_ycur, ttydev->tty_curattrib);
ttydev->tty_xcur++;
if (ttydev->tty_xcur >= ttydev->tty_xcells) {
ttydev->tty_xcur = 0;
ttydev->tty_ycur++;
}
if (ttydev->tty_ycur >= ttydev->tty_ycells) {
if (ops->tty_scroll) {
ops->tty_scroll(tty, TTY_SCROLL_DOWN, 1);
} else {
ttydev->tty_xcur = 0;
ttydev->tty_ycur = 0;
}
}
ops->tty_move_cursor(tty, ttydev->tty_xcur, ttydev->tty_ycur);
}
kern_status_t tty_read(struct device *tty, void *buf, size_t max, size_t *nr_read, socks_flags_t flags)
{
printk("tty_read");
return KERN_OK;
}
kern_status_t tty_write(struct device *tty, const void *buf, size_t len, size_t *nr_written, socks_flags_t flags)
{
size_t r = 0;
const char *s = buf;
for (size_t i = 0; i < len; i++) {
putchar(tty, s[i]);
r++;
}
*nr_written = r;
return KERN_OK;
}