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Line 39... Line 39...
39
#include <synch/waitq.h>
39
#include <synch/waitq.h>
40
#include <synch/spinlock.h>
40
#include <synch/spinlock.h>
41
#include <arch/types.h>
41
#include <arch/types.h>
42
#include <ddi/irq.h>
42
#include <ddi/irq.h>
43
#include <ddi/ddi.h>
43
#include <ddi/ddi.h>
44
#include <event/event.h>
44
#include <ipc/event.h>
45
#include <ipc/irq.h>
45
#include <ipc/irq.h>
46
#include <arch.h>
46
#include <arch.h>
47
#include <func.h>
47
#include <func.h>
48
#include <print.h>
48
#include <print.h>
49
#include <putchar.h>
49
#include <putchar.h>
50
#include <atomic.h>
50
#include <atomic.h>
51
#include <syscall/copy.h>
51
#include <syscall/copy.h>
52
#include <errno.h>
52
#include <errno.h>
-
 
53
#include <string.h>
53
 
54
 
54
#define KLOG_SIZE     PAGE_SIZE
55
#define KLOG_PAGES    4
-
 
56
#define KLOG_LENGTH   (KLOG_PAGES * PAGE_SIZE / sizeof(wchar_t))
55
#define KLOG_LATENCY  8
57
#define KLOG_LATENCY  8
56
 
58
 
57
/** Kernel log cyclic buffer */
59
/** Kernel log cyclic buffer */
58
static wchar_t klog[KLOG_SIZE] __attribute__ ((aligned (PAGE_SIZE)));
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static wchar_t klog[KLOG_LENGTH] __attribute__ ((aligned (PAGE_SIZE)));
59
 
61
 
60
/** Kernel log initialized */
62
/** Kernel log initialized */
61
static bool klog_inited = false;
63
static bool klog_inited = false;
62
/** First kernel log characters */
64
/** First kernel log characters */
63
static index_t klog_start = 0;
65
static index_t klog_start = 0;
Line 91... Line 93...
91
void klog_init(void)
93
void klog_init(void)
92
{
94
{
93
    void *faddr = (void *) KA2PA(klog);
95
    void *faddr = (void *) KA2PA(klog);
94
   
96
   
95
    ASSERT((uintptr_t) faddr % FRAME_SIZE == 0);
97
    ASSERT((uintptr_t) faddr % FRAME_SIZE == 0);
96
    ASSERT(KLOG_SIZE % FRAME_SIZE == 0);
-
 
97
   
98
   
98
    klog_parea.pbase = (uintptr_t) faddr;
99
    klog_parea.pbase = (uintptr_t) faddr;
99
    klog_parea.frames = SIZE2FRAMES(sizeof(klog));
100
    klog_parea.frames = SIZE2FRAMES(sizeof(klog));
100
    ddi_parea_register(&klog_parea);
101
    ddi_parea_register(&klog_parea);
101
   
102
   
102
    sysinfo_set_item_val("klog.faddr", NULL, (unative_t) faddr);
103
    sysinfo_set_item_val("klog.faddr", NULL, (unative_t) faddr);
103
    sysinfo_set_item_val("klog.pages", NULL, SIZE2FRAMES(sizeof(klog)));
104
    sysinfo_set_item_val("klog.pages", NULL, KLOG_PAGES);
104
   
105
   
105
    spinlock_lock(&klog_lock);
106
    spinlock_lock(&klog_lock);
106
    klog_inited = true;
107
    klog_inited = true;
107
    spinlock_unlock(&klog_lock);
108
    spinlock_unlock(&klog_lock);
108
}
109
}
Line 152... Line 153...
152
 *
153
 *
153
 * @param indev Input character device.
154
 * @param indev Input character device.
154
 * @return Character read.
155
 * @return Character read.
155
 *
156
 *
156
 */
157
 */
157
uint8_t _getc(indev_t *indev)
158
wchar_t _getc(indev_t *indev)
158
{
159
{
159
    if (atomic_get(&haltstate)) {
160
    if (atomic_get(&haltstate)) {
160
        /* If we are here, we are hopefully on the processor that
161
        /* If we are here, we are hopefully on the processor that
161
         * issued the 'halt' command, so proceed to read the character
162
         * issued the 'halt' command, so proceed to read the character
162
         * directly from input
163
         * directly from input
Line 176... Line 177...
176
    }
177
    }
177
   
178
   
178
    waitq_sleep(&indev->wq);
179
    waitq_sleep(&indev->wq);
179
    ipl_t ipl = interrupts_disable();
180
    ipl_t ipl = interrupts_disable();
180
    spinlock_lock(&indev->lock);
181
    spinlock_lock(&indev->lock);
181
    uint8_t ch = indev->buffer[(indev->index - indev->counter) % INDEV_BUFLEN];
182
    wchar_t ch = indev->buffer[(indev->index - indev->counter) % INDEV_BUFLEN];
182
    indev->counter--;
183
    indev->counter--;
183
    spinlock_unlock(&indev->lock);
184
    spinlock_unlock(&indev->lock);
184
    interrupts_restore(ipl);
185
    interrupts_restore(ipl);
185
   
186
   
186
    return ch;
187
    return ch;
Line 190... Line 191...
190
 *
191
 *
191
 * Read characters from input character device until first occurrence
192
 * Read characters from input character device until first occurrence
192
 * of newline character.
193
 * of newline character.
193
 *
194
 *
194
 * @param indev  Input character device.
195
 * @param indev  Input character device.
195
 * @param buf    Buffer where to store string terminated by '\0'.
196
 * @param buf    Buffer where to store string terminated by NULL.
196
 * @param buflen Size of the buffer.
197
 * @param buflen Size of the buffer.
197
 *
198
 *
198
 * @return Number of characters read.
199
 * @return Number of characters read.
199
 *
200
 *
200
 */
201
 */
201
count_t gets(indev_t *indev, char *buf, size_t buflen)
202
count_t gets(indev_t *indev, char *buf, size_t buflen)
202
{
203
{
203
    index_t index = 0;
204
    size_t offset = 0;
-
 
205
    count_t count = 0;
-
 
206
    buf[offset] = 0;
204
   
207
   
205
    while (index < buflen) {
208
    wchar_t ch;
206
        char ch = _getc(indev);
209
    while ((ch = _getc(indev)) != '\n') {
207
        if (ch == '\b') {
210
        if (ch == '\b') {
208
            if (index > 0) {
211
            if (count > 0) {
209
                index--;
-
 
210
                /* Space backspace, space */
212
                /* Space, backspace, space */
211
                putchar('\b');
213
                putchar('\b');
212
                putchar(' ');
214
                putchar(' ');
213
                putchar('\b');
215
                putchar('\b');
-
 
216
               
-
 
217
                count--;
-
 
218
                offset = str_lsize(buf, count);
-
 
219
                buf[offset] = 0;
214
            }
220
            }
215
            continue;
-
 
216
        }
-
 
217
        putchar(ch);
-
 
218
       
-
 
219
        if (ch == '\n') { /* end of string => write 0, return */
-
 
220
            buf[index] = '\0';
-
 
221
            return (count_t) index;
-
 
222
        }
221
        }
-
 
222
        if (chr_encode(ch, buf, &offset, buflen - 1) == EOK) {
-
 
223
            putchar(ch);
-
 
224
            count++;
223
        buf[index++] = ch;
225
            buf[offset] = 0;
-
 
226
        }
224
    }
227
    }
225
   
228
   
226
    return (count_t) index;
229
    return count;
227
}
230
}
228
 
231
 
229
/** Get character from input device & echo it to screen */
232
/** Get character from input device & echo it to screen */
230
uint8_t getc(indev_t *indev)
233
wchar_t getc(indev_t *indev)
231
{
234
{
232
    uint8_t ch = _getc(indev);
235
    wchar_t ch = _getc(indev);
233
    putchar(ch);
236
    putchar(ch);
234
    return ch;
237
    return ch;
235
}
238
}
236
 
239
 
237
void klog_update(void)
240
void klog_update(void)
Line 252... Line 255...
252
   
255
   
253
    if ((klog_stored > 0) && (stdout) && (stdout->op->write)) {
256
    if ((klog_stored > 0) && (stdout) && (stdout->op->write)) {
254
        /* Print charaters stored in kernel log */
257
        /* Print charaters stored in kernel log */
255
        index_t i;
258
        index_t i;
256
        for (i = klog_len - klog_stored; i < klog_len; i++)
259
        for (i = klog_len - klog_stored; i < klog_len; i++)
257
            stdout->op->write(stdout, klog[(klog_start + i) % KLOG_SIZE], silent);
260
            stdout->op->write(stdout, klog[(klog_start + i) % KLOG_LENGTH], silent);
258
        klog_stored = 0;
261
        klog_stored = 0;
259
    }
262
    }
260
   
263
   
261
    /* Store character in the cyclic kernel log */
264
    /* Store character in the cyclic kernel log */
262
    klog[(klog_start + klog_len) % KLOG_SIZE] = ch;
265
    klog[(klog_start + klog_len) % KLOG_LENGTH] = ch;
263
    if (klog_len < KLOG_SIZE)
266
    if (klog_len < KLOG_LENGTH)
264
        klog_len++;
267
        klog_len++;
265
    else
268
    else
266
        klog_start = (klog_start + 1) % KLOG_SIZE;
269
        klog_start = (klog_start + 1) % KLOG_LENGTH;
267
   
270
   
268
    if ((stdout) && (stdout->op->write))
271
    if ((stdout) && (stdout->op->write))
269
        stdout->op->write(stdout, ch, silent);
272
        stdout->op->write(stdout, ch, silent);
270
    else {
273
    else {
271
        /* The character is just in the kernel log */
274
        /* The character is just in the kernel log */
Line 293... Line 296...
293
/** Print using kernel facility
296
/** Print using kernel facility
294
 *
297
 *
295
 * Print to kernel log.
298
 * Print to kernel log.
296
 *
299
 *
297
 */
300
 */
298
unative_t sys_klog(int fd, const void * buf, size_t count)
301
unative_t sys_klog(int fd, const void *buf, size_t size)
299
{
302
{
300
    char *data;
303
    char *data;
301
    int rc;
304
    int rc;
302
   
305
   
303
    if (count > PAGE_SIZE)
306
    if (size > PAGE_SIZE)
304
        return ELIMIT;
307
        return ELIMIT;
305
   
308
   
306
    if (count > 0) {
309
    if (size > 0) {
307
        data = (char *) malloc(count + 1, 0);
310
        data = (char *) malloc(size + 1, 0);
308
        if (!data)
311
        if (!data)
309
            return ENOMEM;
312
            return ENOMEM;
310
       
313
       
311
        rc = copy_from_uspace(data, buf, count);
314
        rc = copy_from_uspace(data, buf, size);
312
        if (rc) {
315
        if (rc) {
313
            free(data);
316
            free(data);
314
            return rc;
317
            return rc;
315
        }
318
        }
316
        data[count] = 0;
319
        data[size] = 0;
317
       
320
       
318
        printf("%s", data);
321
        printf("%s", data);
319
        free(data);
322
        free(data);
320
    } else
323
    } else
321
        klog_update();
324
        klog_update();
322
   
325
   
323
    return count;
326
    return size;
324
}
327
}
325
 
328
 
326
/** @}
329
/** @}
327
 */
330
 */