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1
/*
1
/*
2
 * Copyright (c) 2006 Ondrej Palkovsky
2
 * Copyright (c) 2006 Ondrej Palkovsky
3
 * All rights reserved.
3
 * All rights reserved.
4
 *
4
 *
5
 * Redistribution and use in source and binary forms, with or without
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
6
 * modification, are permitted provided that the following conditions
7
 * are met:
7
 * are met:
8
 *
8
 *
9
 * - Redistributions of source code must retain the above copyright
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
15
 *   derived from this software without specific prior written permission.
16
 *
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
27
 */
28
 
28
 
29
/** @addtogroup genericipc
29
/** @addtogroup genericipc
30
 * @{
30
 * @{
31
 */
31
 */
32
/** @file
32
/** @file
33
 */
33
 */
34
 
34
 
35
#include <arch.h>
35
#include <arch.h>
36
#include <proc/task.h>
36
#include <proc/task.h>
37
#include <proc/thread.h>
37
#include <proc/thread.h>
38
#include <errno.h>
38
#include <errno.h>
39
#include <memstr.h>
39
#include <memstr.h>
40
#include <debug.h>
40
#include <debug.h>
41
#include <ipc/ipc.h>
41
#include <ipc/ipc.h>
42
#include <ipc/sysipc.h>
42
#include <ipc/sysipc.h>
43
#include <ipc/irq.h>
43
#include <ipc/irq.h>
44
#include <ipc/ipcrsc.h>
44
#include <ipc/ipcrsc.h>
45
#include <arch/interrupt.h>
45
#include <arch/interrupt.h>
46
#include <print.h>
46
#include <print.h>
47
#include <syscall/copy.h>
47
#include <syscall/copy.h>
48
#include <security/cap.h>
48
#include <security/cap.h>
49
#include <mm/as.h>
49
#include <mm/as.h>
50
#include <print.h>
50
#include <print.h>
51
 
51
 
52
/**
52
/**
53
 * Maximum buffer size allowed for IPC_M_DATA_WRITE and IPC_M_DATA_READ
53
 * Maximum buffer size allowed for IPC_M_DATA_WRITE and IPC_M_DATA_READ
54
 * requests.
54
 * requests.
55
 */
55
 */
56
#define DATA_XFER_LIMIT     (64 * 1024)
56
#define DATA_XFER_LIMIT     (64 * 1024)
57
 
57
 
58
#define GET_CHECK_PHONE(phone, phoneid, err) \
58
#define GET_CHECK_PHONE(phone, phoneid, err) \
59
{ \
59
{ \
60
    if (phoneid > IPC_MAX_PHONES) { \
60
    if (phoneid > IPC_MAX_PHONES) { \
61
        err; \
61
        err; \
62
    } \
62
    } \
63
    phone = &TASK->phones[phoneid]; \
63
    phone = &TASK->phones[phoneid]; \
64
}
64
}
65
 
65
 
66
#define STRUCT_TO_USPACE(dst, src)  copy_to_uspace(dst, src, sizeof(*(src)))
66
#define STRUCT_TO_USPACE(dst, src)  copy_to_uspace(dst, src, sizeof(*(src)))
67
 
67
 
68
/** Decide if the method is a system method.
68
/** Decide if the method is a system method.
69
 *
69
 *
70
 * @param method    Method to be decided.
70
 * @param method    Method to be decided.
71
 *
71
 *
72
 * @return      Return 1 if the method is a system method.
72
 * @return      Return 1 if the method is a system method.
73
 *          Otherwise return 0.
73
 *          Otherwise return 0.
74
 */
74
 */
75
static inline int method_is_system(unative_t method)
75
static inline int method_is_system(unative_t method)
76
{
76
{
77
    if (method <= IPC_M_LAST_SYSTEM)
77
    if (method <= IPC_M_LAST_SYSTEM)
78
        return 1;
78
        return 1;
79
    return 0;
79
    return 0;
80
}
80
}
81
 
81
 
82
/** Decide if the message with this method is forwardable.
82
/** Decide if the message with this method is forwardable.
83
 *
83
 *
84
 * - some system messages may be forwarded, for some of them
84
 * - some system messages may be forwarded, for some of them
85
 *   it is useless
85
 *   it is useless
86
 *
86
 *
87
 * @param method    Method to be decided.
87
 * @param method    Method to be decided.
88
 *
88
 *
89
 * @return      Return 1 if the method is forwardable.
89
 * @return      Return 1 if the method is forwardable.
90
 *          Otherwise return 0.
90
 *          Otherwise return 0.
91
 */
91
 */
92
static inline int method_is_forwardable(unative_t method)
92
static inline int method_is_forwardable(unative_t method)
93
{
93
{
94
    switch (method) {
94
    switch (method) {
95
    case IPC_M_PHONE_HUNGUP:
95
    case IPC_M_PHONE_HUNGUP:
96
        /* This message is meant only for the original recipient. */
96
        /* This message is meant only for the original recipient. */
97
        return 0;
97
        return 0;
98
    default:
98
    default:
99
        return 1;
99
        return 1;
100
    }
100
    }
101
}
101
}
102
 
102
 
103
/** Decide if the message with this method is immutable on forward.
103
/** Decide if the message with this method is immutable on forward.
104
 *
104
 *
105
 * - some system messages may be forwarded but their content cannot be altered
105
 * - some system messages may be forwarded but their content cannot be altered
106
 *
106
 *
107
 * @param method    Method to be decided.
107
 * @param method    Method to be decided.
108
 *
108
 *
109
 * @return      Return 1 if the method is immutable on forward.
109
 * @return      Return 1 if the method is immutable on forward.
110
 *          Otherwise return 0.
110
 *          Otherwise return 0.
111
 */
111
 */
112
static inline int method_is_immutable(unative_t method)
112
static inline int method_is_immutable(unative_t method)
113
{
113
{
114
    switch (method) {
114
    switch (method) {
115
    case IPC_M_SHARE_OUT:
115
    case IPC_M_SHARE_OUT:
116
    case IPC_M_SHARE_IN:
116
    case IPC_M_SHARE_IN:
117
    case IPC_M_DATA_WRITE:
117
    case IPC_M_DATA_WRITE:
118
    case IPC_M_DATA_READ:
118
    case IPC_M_DATA_READ:
119
        return 1;
119
        return 1;
120
        break;
120
        break;
121
    default:
121
    default:
122
        return 0;
122
        return 0;
123
    }
123
    }
124
}
124
}
125
 
125
 
126
 
126
 
127
/***********************************************************************
127
/***********************************************************************
128
 * Functions that preprocess answer before sending it to the recepient.
128
 * Functions that preprocess answer before sending it to the recepient.
129
 ***********************************************************************/
129
 ***********************************************************************/
130
 
130
 
131
/** Decide if the caller (e.g. ipc_answer()) should save the old call contents
131
/** Decide if the caller (e.g. ipc_answer()) should save the old call contents
132
 * for answer_preprocess().
132
 * for answer_preprocess().
133
 *
133
 *
134
 * @param call      Call structure to be decided.
134
 * @param call      Call structure to be decided.
135
 *
135
 *
136
 * @return      Return 1 if the old call contents should be saved.
136
 * @return      Return 1 if the old call contents should be saved.
137
 *          Return 0 otherwise.
137
 *          Return 0 otherwise.
138
 */
138
 */
139
static inline int answer_need_old(call_t *call)
139
static inline int answer_need_old(call_t *call)
140
{
140
{
141
    switch (IPC_GET_METHOD(call->data)) {
141
    switch (IPC_GET_METHOD(call->data)) {
142
    case IPC_M_CONNECT_TO_ME:
142
    case IPC_M_CONNECT_TO_ME:
143
    case IPC_M_CONNECT_ME_TO:
143
    case IPC_M_CONNECT_ME_TO:
144
    case IPC_M_SHARE_OUT:
144
    case IPC_M_SHARE_OUT:
145
    case IPC_M_SHARE_IN:
145
    case IPC_M_SHARE_IN:
146
    case IPC_M_DATA_WRITE:
146
    case IPC_M_DATA_WRITE:
147
    case IPC_M_DATA_READ:
147
    case IPC_M_DATA_READ:
148
        return 1;
148
        return 1;
149
    default:
149
    default:
150
        return 0;
150
        return 0;
151
    }
151
    }
152
}
152
}
153
 
153
 
154
/** Interpret process answer as control information.
154
/** Interpret process answer as control information.
155
 *
155
 *
156
 * This function is called directly after sys_ipc_answer().
156
 * This function is called directly after sys_ipc_answer().
157
 *
157
 *
158
 * @param answer    Call structure with the answer.
158
 * @param answer    Call structure with the answer.
159
 * @param olddata   Saved data of the request.
159
 * @param olddata   Saved data of the request.
160
 *
160
 *
161
 * @return      Return 0 on success or an error code.
161
 * @return      Return 0 on success or an error code.
162
 */
162
 */
163
static inline int answer_preprocess(call_t *answer, ipc_data_t *olddata)
163
static inline int answer_preprocess(call_t *answer, ipc_data_t *olddata)
164
{
164
{
165
    int phoneid;
165
    int phoneid;
166
 
166
 
167
    if ((native_t) IPC_GET_RETVAL(answer->data) == EHANGUP) {
167
    if ((native_t) IPC_GET_RETVAL(answer->data) == EHANGUP) {
168
        /* In case of forward, hangup the forwared phone,
168
        /* In case of forward, hangup the forwared phone,
169
         * not the originator
169
         * not the originator
170
         */
170
         */
171
        spinlock_lock(&answer->data.phone->lock);
171
        spinlock_lock(&answer->data.phone->lock);
172
        spinlock_lock(&TASK->answerbox.lock);
172
        spinlock_lock(&TASK->answerbox.lock);
173
        if (answer->data.phone->state == IPC_PHONE_CONNECTED) {
173
        if (answer->data.phone->state == IPC_PHONE_CONNECTED) {
174
            list_remove(&answer->data.phone->link);
174
            list_remove(&answer->data.phone->link);
175
            answer->data.phone->state = IPC_PHONE_SLAMMED;
175
            answer->data.phone->state = IPC_PHONE_SLAMMED;
176
        }
176
        }
177
        spinlock_unlock(&TASK->answerbox.lock);
177
        spinlock_unlock(&TASK->answerbox.lock);
178
        spinlock_unlock(&answer->data.phone->lock);
178
        spinlock_unlock(&answer->data.phone->lock);
179
    }
179
    }
180
 
180
 
181
    if (!olddata)
181
    if (!olddata)
182
        return 0;
182
        return 0;
183
 
183
 
184
    if (IPC_GET_METHOD(*olddata) == IPC_M_CONNECT_TO_ME) {
184
    if (IPC_GET_METHOD(*olddata) == IPC_M_CONNECT_TO_ME) {
185
        phoneid = IPC_GET_ARG5(*olddata);
185
        phoneid = IPC_GET_ARG5(*olddata);
186
        if (IPC_GET_RETVAL(answer->data)) {
186
        if (IPC_GET_RETVAL(answer->data)) {
187
            /* The connection was not accepted */
187
            /* The connection was not accepted */
188
            phone_dealloc(phoneid);
188
            phone_dealloc(phoneid);
189
        } else {
189
        } else {
190
            /* The connection was accepted */
190
            /* The connection was accepted */
191
            phone_connect(phoneid, &answer->sender->answerbox);
191
            phone_connect(phoneid, &answer->sender->answerbox);
192
            /* Set 'phone hash' as arg5 of response */
192
            /* Set 'phone hash' as arg5 of response */
193
            IPC_SET_ARG5(answer->data,
193
            IPC_SET_ARG5(answer->data,
194
                (unative_t) &TASK->phones[phoneid]);
194
                (unative_t) &TASK->phones[phoneid]);
195
        }
195
        }
196
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_CONNECT_ME_TO) {
196
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_CONNECT_ME_TO) {
197
        /* If the users accepted call, connect */
197
        /* If the users accepted call, connect */
198
        if (!IPC_GET_RETVAL(answer->data)) {
198
        if (!IPC_GET_RETVAL(answer->data)) {
199
            ipc_phone_connect((phone_t *) IPC_GET_ARG5(*olddata),
199
            ipc_phone_connect((phone_t *) IPC_GET_ARG5(*olddata),
200
                &TASK->answerbox);
200
                &TASK->answerbox);
201
        }
201
        }
202
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_SHARE_OUT) {
202
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_SHARE_OUT) {
203
        if (!IPC_GET_RETVAL(answer->data)) {
203
        if (!IPC_GET_RETVAL(answer->data)) {
204
            /* Accepted, handle as_area receipt */
204
            /* Accepted, handle as_area receipt */
205
            ipl_t ipl;
205
            ipl_t ipl;
206
            int rc;
206
            int rc;
207
            as_t *as;
207
            as_t *as;
208
           
208
           
209
            ipl = interrupts_disable();
209
            ipl = interrupts_disable();
210
            spinlock_lock(&answer->sender->lock);
210
            spinlock_lock(&answer->sender->lock);
211
            as = answer->sender->as;
211
            as = answer->sender->as;
212
            spinlock_unlock(&answer->sender->lock);
212
            spinlock_unlock(&answer->sender->lock);
213
            interrupts_restore(ipl);
213
            interrupts_restore(ipl);
214
           
214
           
215
            rc = as_area_share(as, IPC_GET_ARG1(*olddata),
215
            rc = as_area_share(as, IPC_GET_ARG1(*olddata),
216
                IPC_GET_ARG2(*olddata), AS,
216
                IPC_GET_ARG2(*olddata), AS,
217
                IPC_GET_ARG1(answer->data), IPC_GET_ARG3(*olddata));
217
                IPC_GET_ARG1(answer->data), IPC_GET_ARG3(*olddata));
218
            IPC_SET_RETVAL(answer->data, rc);
218
            IPC_SET_RETVAL(answer->data, rc);
219
            return rc;
219
            return rc;
220
        }
220
        }
221
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_SHARE_IN) {
221
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_SHARE_IN) {
222
        if (!IPC_GET_RETVAL(answer->data)) {
222
        if (!IPC_GET_RETVAL(answer->data)) {
223
            ipl_t ipl;
223
            ipl_t ipl;
224
            as_t *as;
224
            as_t *as;
225
            int rc;
225
            int rc;
226
           
226
           
227
            ipl = interrupts_disable();
227
            ipl = interrupts_disable();
228
            spinlock_lock(&answer->sender->lock);
228
            spinlock_lock(&answer->sender->lock);
229
            as = answer->sender->as;
229
            as = answer->sender->as;
230
            spinlock_unlock(&answer->sender->lock);
230
            spinlock_unlock(&answer->sender->lock);
231
            interrupts_restore(ipl);
231
            interrupts_restore(ipl);
232
           
232
           
233
            rc = as_area_share(AS, IPC_GET_ARG1(answer->data),
233
            rc = as_area_share(AS, IPC_GET_ARG1(answer->data),
234
                IPC_GET_ARG2(*olddata), as, IPC_GET_ARG1(*olddata),
234
                IPC_GET_ARG2(*olddata), as, IPC_GET_ARG1(*olddata),
235
                IPC_GET_ARG2(answer->data));
235
                IPC_GET_ARG2(answer->data));
236
            IPC_SET_RETVAL(answer->data, rc);
236
            IPC_SET_RETVAL(answer->data, rc);
237
        }
237
        }
238
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_DATA_READ) {
238
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_DATA_READ) {
239
        ASSERT(!answer->buffer);
239
        ASSERT(!answer->buffer);
240
        if (!IPC_GET_RETVAL(answer->data)) {
240
        if (!IPC_GET_RETVAL(answer->data)) {
241
            /* The recipient agreed to send data. */
241
            /* The recipient agreed to send data. */
242
            uintptr_t src = IPC_GET_ARG1(answer->data);
242
            uintptr_t src = IPC_GET_ARG1(answer->data);
243
            uintptr_t dst = IPC_GET_ARG1(*olddata);
243
            uintptr_t dst = IPC_GET_ARG1(*olddata);
244
            size_t max_size = IPC_GET_ARG2(*olddata);
244
            size_t max_size = IPC_GET_ARG2(*olddata);
245
            size_t size = IPC_GET_ARG2(answer->data);
245
            size_t size = IPC_GET_ARG2(answer->data);
246
            if (size <= max_size) {
246
            if (size <= max_size) {
247
                /*
247
                /*
248
                 * Copy the destination VA so that this piece of
248
                 * Copy the destination VA so that this piece of
249
                 * information is not lost.
249
                 * information is not lost.
250
                 */
250
                 */
251
                IPC_SET_ARG1(answer->data, dst);
251
                IPC_SET_ARG1(answer->data, dst);
252
 
252
 
253
                answer->buffer = malloc(size, 0);
253
                answer->buffer = malloc(size, 0);
254
                int rc = copy_from_uspace(answer->buffer,
254
                int rc = copy_from_uspace(answer->buffer,
255
                    (void *) src, size);
255
                    (void *) src, size);
256
                if (rc) {
256
                if (rc) {
257
                    IPC_SET_RETVAL(answer->data, rc);
257
                    IPC_SET_RETVAL(answer->data, rc);
258
                    free(answer->buffer);
258
                    free(answer->buffer);
259
                    answer->buffer = NULL;
259
                    answer->buffer = NULL;
260
                }
260
                }
261
            } else {
261
            } else {
262
                IPC_SET_RETVAL(answer->data, ELIMIT);
262
                IPC_SET_RETVAL(answer->data, ELIMIT);
263
            }
263
            }
264
        }
264
        }
265
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_DATA_WRITE) {
265
    } else if (IPC_GET_METHOD(*olddata) == IPC_M_DATA_WRITE) {
266
        ASSERT(answer->buffer);
266
        ASSERT(answer->buffer);
267
        if (!IPC_GET_RETVAL(answer->data)) {
267
        if (!IPC_GET_RETVAL(answer->data)) {
268
            /* The recipient agreed to receive data. */
268
            /* The recipient agreed to receive data. */
269
            int rc;
269
            int rc;
270
            uintptr_t dst;
270
            uintptr_t dst;
271
            uintptr_t size;
271
            uintptr_t size;
272
            uintptr_t max_size;
272
            uintptr_t max_size;
273
 
273
 
274
            dst = IPC_GET_ARG1(answer->data);
274
            dst = IPC_GET_ARG1(answer->data);
275
            size = IPC_GET_ARG2(answer->data);
275
            size = IPC_GET_ARG2(answer->data);
276
            max_size = IPC_GET_ARG2(*olddata);
276
            max_size = IPC_GET_ARG2(*olddata);
277
 
277
 
278
            if (size <= max_size) {
278
            if (size <= max_size) {
279
                rc = copy_to_uspace((void *) dst,
279
                rc = copy_to_uspace((void *) dst,
280
                    answer->buffer, size);
280
                    answer->buffer, size);
281
                if (rc)
281
                if (rc)
282
                    IPC_SET_RETVAL(answer->data, rc);
282
                    IPC_SET_RETVAL(answer->data, rc);
283
            } else {
283
            } else {
284
                IPC_SET_RETVAL(answer->data, ELIMIT);
284
                IPC_SET_RETVAL(answer->data, ELIMIT);
285
            }
285
            }
286
        }
286
        }
287
        free(answer->buffer);
287
        free(answer->buffer);
288
        answer->buffer = NULL;
288
        answer->buffer = NULL;
289
    }
289
    }
290
    return 0;
290
    return 0;
291
}
291
}
292
 
292
 
293
static task_t *get_lock_callee_task(phone_t *phone)
293
static task_t *get_lock_callee_task(phone_t *phone)
294
{
294
{
295
    answerbox_t *answerbox;
295
    answerbox_t *answerbox;
296
    task_t *ta;
296
    task_t *ta;
297
 
297
 
298
    // FIXME: locking!!!
298
    // FIXME: locking!!!
299
 
299
 
300
    answerbox = phone->callee;
300
    answerbox = phone->callee;
301
    ta = answerbox->task;
301
    ta = answerbox->task;
302
 
302
 
303
    spinlock_lock(&ta->lock);
303
    spinlock_lock(&ta->lock);
304
 
304
 
305
    return ta;
305
    return ta;
306
}
306
}
307
 
307
 
308
#include <console/klog.h>
308
#include <console/klog.h>
309
 
309
 
310
static void debug_begin(call_t *call, phone_t *phone)
310
static int debug_begin(call_t *call, phone_t *phone)
311
{
311
{
312
    task_t *ta;
312
    task_t *ta;
313
 
313
 
314
    klog_printf("debug_begin()");
314
    klog_printf("debug_begin()");
315
   
315
 
316
    ta = get_lock_callee_task(phone);
316
    ta = get_lock_callee_task(phone);
317
    klog_printf("debugging task %llu\n", ta->taskid);
317
    klog_printf("debugging task %llu", ta->taskid);
318
 
318
 
319
    if (ta->being_debugged != false) {
319
    if (ta->being_debugged != false) {
320
        IPC_SET_RETVAL(call->data, EBUSY);
-
 
321
        ipc_answer(&ta->answerbox, call);
-
 
322
 
-
 
323
        spinlock_unlock(&ta->lock);
320
        spinlock_unlock(&ta->lock);
-
 
321
        klog_printf("debug_begin(): busy error");
324
        return;
322
        return EBUSY;
325
    }
323
    }
326
 
324
 
327
    ta->being_debugged = true;
325
    ta->being_debugged = true;
328
    ta->stop_request = true;
326
    ta->stop_request = true;
329
    ta->debug_begin_call = call;
327
    ta->debug_begin_call = call;
-
 
328
 
-
 
329
    if (ta->not_stoppable_count == 0) {
-
 
330
        ta->debug_begin_call = NULL;
-
 
331
        ta->stop_request = false;
-
 
332
        spinlock_unlock(&ta->lock);
-
 
333
        klog_printf("debug_begin(): immediate backsend");
-
 
334
        return 1; /* actually we need backsend with 0 retval */
-
 
335
    }
-
 
336
 
330
    spinlock_unlock(&ta->lock);
337
    spinlock_unlock(&ta->lock);
331
 
338
 
332
    klog_printf("debug_begin() done");
339
    klog_printf("debug_begin() done (wait for stoppability)");
-
 
340
    return 0;
333
}
341
}
334
 
342
 
335
static void debug_go(call_t *call, phone_t *phone)
343
static void debug_go(call_t *call, phone_t *phone)
336
{
344
{
337
    thread_t *t;
345
    thread_t *t;
338
    link_t *l;
346
    link_t *l;
339
    task_t *ta;
347
    task_t *ta;
340
 
348
 
341
    klog_printf("debug_go()");
349
    klog_printf("debug_go()");
342
    ta = get_lock_callee_task(phone);
350
    ta = get_lock_callee_task(phone);
343
 
351
 
-
 
352
    ta->debug_go_call = call;
-
 
353
 
344
    l = ta->th_head.next;
354
    l = ta->th_head.next;
345
    if (l != &TASK->th_head) {
355
    if (l != &TASK->th_head) {
346
        t = list_get_instance(l, thread_t, th_link);
356
        t = list_get_instance(l, thread_t, th_link);
-
 
357
        klog_printf("debug_go(): waitq_wakeup");
347
        waitq_wakeup(&t->go_wq, WAKEUP_FIRST);
358
        waitq_wakeup(&t->go_wq, WAKEUP_FIRST);
348
    }
359
    }
349
 
360
 
350
    ta->debug_go_call = call;
-
 
351
    spinlock_unlock(&ta->lock);
361
    spinlock_unlock(&ta->lock);
352
}
362
}
353
 
363
 
354
 
364
 
355
/** Called before the request is sent.
365
/** Called before the request is sent.
356
 *
366
 *
357
 * @param call      Call structure with the request.
367
 * @param call      Call structure with the request.
358
 * @param phone     Phone that the call will be sent through.
368
 * @param phone     Phone that the call will be sent through.
359
 *
369
 *
360
 * @return      Return 0 on success, ELIMIT or EPERM on error.
370
 * @return      Return 0 on success, ELIMIT or EPERM on error.
361
 */
371
 */
362
static int request_preprocess(call_t *call, phone_t *phone)
372
static int request_preprocess(call_t *call, phone_t *phone)
363
{
373
{
364
    int newphid;
374
    int newphid;
365
    size_t size;
375
    size_t size;
366
    uintptr_t src;
376
    uintptr_t src;
367
    int rc;
377
    int rc;
368
 
378
 
369
    switch (IPC_GET_METHOD(call->data)) {
379
    switch (IPC_GET_METHOD(call->data)) {
370
    case IPC_M_CONNECT_ME_TO:
380
    case IPC_M_CONNECT_ME_TO:
371
        newphid = phone_alloc();
381
        newphid = phone_alloc();
372
        if (newphid < 0)
382
        if (newphid < 0)
373
            return ELIMIT;
383
            return ELIMIT;
374
        /* Set arg5 for server */
384
        /* Set arg5 for server */
375
        IPC_SET_ARG5(call->data, (unative_t) &TASK->phones[newphid]);
385
        IPC_SET_ARG5(call->data, (unative_t) &TASK->phones[newphid]);
376
        call->flags |= IPC_CALL_CONN_ME_TO;
386
        call->flags |= IPC_CALL_CONN_ME_TO;
377
        call->priv = newphid;
387
        call->priv = newphid;
378
        break;
388
        break;
379
    case IPC_M_SHARE_OUT:
389
    case IPC_M_SHARE_OUT:
380
        size = as_area_get_size(IPC_GET_ARG1(call->data));
390
        size = as_area_get_size(IPC_GET_ARG1(call->data));
381
        if (!size)
391
        if (!size)
382
            return EPERM;
392
            return EPERM;
383
        IPC_SET_ARG2(call->data, size);
393
        IPC_SET_ARG2(call->data, size);
384
        break;
394
        break;
385
    case IPC_M_DATA_READ:
395
    case IPC_M_DATA_READ:
386
        size = IPC_GET_ARG2(call->data);
396
        size = IPC_GET_ARG2(call->data);
387
        if ((size <= 0 || (size > DATA_XFER_LIMIT)))
397
        if ((size <= 0 || (size > DATA_XFER_LIMIT)))
388
            return ELIMIT;
398
            return ELIMIT;
389
        break;
399
        break;
390
    case IPC_M_DATA_WRITE:
400
    case IPC_M_DATA_WRITE:
391
        src = IPC_GET_ARG1(call->data);
401
        src = IPC_GET_ARG1(call->data);
392
        size = IPC_GET_ARG2(call->data);
402
        size = IPC_GET_ARG2(call->data);
393
       
403
       
394
        if ((size <= 0) || (size > DATA_XFER_LIMIT))
404
        if ((size <= 0) || (size > DATA_XFER_LIMIT))
395
            return ELIMIT;
405
            return ELIMIT;
396
       
406
       
397
        call->buffer = (uint8_t *) malloc(size, 0);
407
        call->buffer = (uint8_t *) malloc(size, 0);
398
        rc = copy_from_uspace(call->buffer, (void *) src, size);
408
        rc = copy_from_uspace(call->buffer, (void *) src, size);
399
        if (rc != 0) {
409
        if (rc != 0) {
400
            free(call->buffer);
410
            free(call->buffer);
401
            return rc;
411
            return rc;
402
        }
412
        }
403
        break;
413
        break;
404
    case IPC_M_DEBUG_BEGIN:
414
    case IPC_M_DEBUG_BEGIN:
-
 
415
        /* actually need possibility of backsend with 0 result code */
405
        debug_begin(call, phone);
416
        rc = debug_begin(call, phone);
-
 
417
        if (rc != 0) return rc;
406
        break;
418
        break;
407
    case IPC_M_DEBUG_GO:
419
    case IPC_M_DEBUG_GO:
408
        debug_go(call, phone);
420
        debug_go(call, phone);
409
        break;
421
        break;
410
    default:
422
    default:
411
        break;
423
        break;
412
    }
424
    }
413
    return 0;
425
    return 0;
414
}
426
}
415
 
427
 
416
/*******************************************************************************
428
/*******************************************************************************
417
 * Functions called to process received call/answer before passing it to uspace.
429
 * Functions called to process received call/answer before passing it to uspace.
418
 *******************************************************************************/
430
 *******************************************************************************/
419
 
431
 
420
/** Do basic kernel processing of received call answer.
432
/** Do basic kernel processing of received call answer.
421
 *
433
 *
422
 * @param call      Call structure with the answer.
434
 * @param call      Call structure with the answer.
423
 */
435
 */
424
static void process_answer(call_t *call)
436
static void process_answer(call_t *call)
425
{
437
{
426
    if (((native_t) IPC_GET_RETVAL(call->data) == EHANGUP) &&
438
    if (((native_t) IPC_GET_RETVAL(call->data) == EHANGUP) &&
427
        (call->flags & IPC_CALL_FORWARDED))
439
        (call->flags & IPC_CALL_FORWARDED))
428
        IPC_SET_RETVAL(call->data, EFORWARD);
440
        IPC_SET_RETVAL(call->data, EFORWARD);
429
 
441
 
430
    if (call->flags & IPC_CALL_CONN_ME_TO) {
442
    if (call->flags & IPC_CALL_CONN_ME_TO) {
431
        if (IPC_GET_RETVAL(call->data))
443
        if (IPC_GET_RETVAL(call->data))
432
            phone_dealloc(call->priv);
444
            phone_dealloc(call->priv);
433
        else
445
        else
434
            IPC_SET_ARG5(call->data, call->priv);
446
            IPC_SET_ARG5(call->data, call->priv);
435
    }
447
    }
436
 
448
 
437
    if (call->buffer) {
449
    if (call->buffer) {
438
        /* This must be an affirmative answer to IPC_M_DATA_READ. */
450
        /* This must be an affirmative answer to IPC_M_DATA_READ. */
439
        uintptr_t dst = IPC_GET_ARG1(call->data);
451
        uintptr_t dst = IPC_GET_ARG1(call->data);
440
        size_t size = IPC_GET_ARG2(call->data);
452
        size_t size = IPC_GET_ARG2(call->data);
441
        int rc = copy_to_uspace((void *) dst, call->buffer, size);
453
        int rc = copy_to_uspace((void *) dst, call->buffer, size);
442
        if (rc)
454
        if (rc)
443
            IPC_SET_RETVAL(call->data, rc);
455
            IPC_SET_RETVAL(call->data, rc);
444
        free(call->buffer);
456
        free(call->buffer);
445
        call->buffer = NULL;
457
        call->buffer = NULL;
446
    }
458
    }
447
}
459
}
448
 
460
 
449
/** Do basic kernel processing of received call request.
461
/** Do basic kernel processing of received call request.
450
 *
462
 *
451
 * @param box       Destination answerbox structure.
463
 * @param box       Destination answerbox structure.
452
 * @param call      Call structure with the request.
464
 * @param call      Call structure with the request.
453
 *
465
 *
454
 * @return      Return 0 if the call should be passed to userspace.
466
 * @return      Return 0 if the call should be passed to userspace.
455
 *          Return -1 if the call should be ignored.
467
 *          Return -1 if the call should be ignored.
456
 */
468
 */
457
static int process_request(answerbox_t *box, call_t *call)
469
static int process_request(answerbox_t *box, call_t *call)
458
{
470
{
459
    int phoneid;
471
    int phoneid;
460
 
472
 
461
    if (IPC_GET_METHOD(call->data) == IPC_M_CONNECT_TO_ME) {
473
    if (IPC_GET_METHOD(call->data) == IPC_M_CONNECT_TO_ME) {
462
        phoneid = phone_alloc();
474
        phoneid = phone_alloc();
463
        if (phoneid < 0) { /* Failed to allocate phone */
475
        if (phoneid < 0) { /* Failed to allocate phone */
464
            IPC_SET_RETVAL(call->data, ELIMIT);
476
            IPC_SET_RETVAL(call->data, ELIMIT);
465
            ipc_answer(box, call);
477
            ipc_answer(box, call);
466
            return -1;
478
            return -1;
467
        }
479
        }
468
        IPC_SET_ARG5(call->data, phoneid);
480
        IPC_SET_ARG5(call->data, phoneid);
469
    }
481
    }
470
    switch (IPC_GET_METHOD(call->data)) {
482
    switch (IPC_GET_METHOD(call->data)) {
471
    case IPC_M_DEBUG_BEGIN:
483
    case IPC_M_DEBUG_BEGIN:
472
    case IPC_M_DEBUG_END:
484
    case IPC_M_DEBUG_END:
473
    case IPC_M_DEBUG_GO:
485
    case IPC_M_DEBUG_GO:
474
    case IPC_M_DEBUG_STOP:
486
    case IPC_M_DEBUG_STOP:
475
    case IPC_M_DEBUG_GUARD:
487
    case IPC_M_DEBUG_GUARD:
476
        return -1;
488
        return -1;
477
    default:
489
    default:
478
        break;
490
        break;
479
    }
491
    }
480
    return 0;
492
    return 0;
481
}
493
}
482
 
494
 
483
/** Make a fast call over IPC, wait for reply and return to user.
495
/** Make a fast call over IPC, wait for reply and return to user.
484
 *
496
 *
485
 * This function can handle only three arguments of payload, but is faster than
497
 * This function can handle only three arguments of payload, but is faster than
486
 * the generic function (i.e. sys_ipc_call_sync_slow()).
498
 * the generic function (i.e. sys_ipc_call_sync_slow()).
487
 *
499
 *
488
 * @param phoneid   Phone handle for the call.
500
 * @param phoneid   Phone handle for the call.
489
 * @param method    Method of the call.
501
 * @param method    Method of the call.
490
 * @param arg1      Service-defined payload argument.
502
 * @param arg1      Service-defined payload argument.
491
 * @param arg2      Service-defined payload argument.
503
 * @param arg2      Service-defined payload argument.
492
 * @param arg3      Service-defined payload argument.
504
 * @param arg3      Service-defined payload argument.
493
 * @param data      Address of userspace structure where the reply call will
505
 * @param data      Address of userspace structure where the reply call will
494
 *          be stored.
506
 *          be stored.
495
 *
507
 *
496
 * @return      Returns 0 on success.
508
 * @return      Returns 0 on success.
497
 *          Return ENOENT if there is no such phone handle.
509
 *          Return ENOENT if there is no such phone handle.
498
 */
510
 */
499
unative_t sys_ipc_call_sync_fast(unative_t phoneid, unative_t method,
511
unative_t sys_ipc_call_sync_fast(unative_t phoneid, unative_t method,
500
    unative_t arg1, unative_t arg2, unative_t arg3, ipc_data_t *data)
512
    unative_t arg1, unative_t arg2, unative_t arg3, ipc_data_t *data)
501
{
513
{
502
    call_t call;
514
    call_t call;
503
    phone_t *phone;
515
    phone_t *phone;
504
    int res;
516
    int res;
505
    int rc;
517
    int rc;
506
 
518
 
507
    GET_CHECK_PHONE(phone, phoneid, return ENOENT);
519
    GET_CHECK_PHONE(phone, phoneid, return ENOENT);
508
 
520
 
509
    ipc_call_static_init(&call);
521
    ipc_call_static_init(&call);
510
    IPC_SET_METHOD(call.data, method);
522
    IPC_SET_METHOD(call.data, method);
511
    IPC_SET_ARG1(call.data, arg1);
523
    IPC_SET_ARG1(call.data, arg1);
512
    IPC_SET_ARG2(call.data, arg2);
524
    IPC_SET_ARG2(call.data, arg2);
513
    IPC_SET_ARG3(call.data, arg3);
525
    IPC_SET_ARG3(call.data, arg3);
514
    /*
526
    /*
515
     * To achieve deterministic behavior, zero out arguments that are beyond
527
     * To achieve deterministic behavior, zero out arguments that are beyond
516
     * the limits of the fast version.
528
     * the limits of the fast version.
517
     */
529
     */
518
    IPC_SET_ARG4(call.data, 0);
530
    IPC_SET_ARG4(call.data, 0);
519
    IPC_SET_ARG5(call.data, 0);
531
    IPC_SET_ARG5(call.data, 0);
520
 
532
 
521
    if (!(res = request_preprocess(&call, phone))) {
533
    if (!(res = request_preprocess(&call, phone))) {
522
        ipc_call_sync(phone, &call);
534
        ipc_call_sync(phone, &call);
523
        process_answer(&call);
535
        process_answer(&call);
524
    } else {
536
    } else {
525
        IPC_SET_RETVAL(call.data, res);
537
        IPC_SET_RETVAL(call.data, res);
526
    }
538
    }
527
    rc = STRUCT_TO_USPACE(&data->args, &call.data.args);
539
    rc = STRUCT_TO_USPACE(&data->args, &call.data.args);
528
    if (rc != 0)
540
    if (rc != 0)
529
        return rc;
541
        return rc;
530
 
542
 
531
    return 0;
543
    return 0;
532
}
544
}
533
 
545
 
534
/** Make a synchronous IPC call allowing to transmit the entire payload.
546
/** Make a synchronous IPC call allowing to transmit the entire payload.
535
 *
547
 *
536
 * @param phoneid   Phone handle for the call.
548
 * @param phoneid   Phone handle for the call.
537
 * @param question  Userspace address of call data with the request.
549
 * @param question  Userspace address of call data with the request.
538
 * @param reply     Userspace address of call data where to store the
550
 * @param reply     Userspace address of call data where to store the
539
 *          answer.
551
 *          answer.
540
 *
552
 *
541
 * @return      Zero on success or an error code.
553
 * @return      Zero on success or an error code.
542
 */
554
 */
543
unative_t sys_ipc_call_sync_slow(unative_t phoneid, ipc_data_t *question,
555
unative_t sys_ipc_call_sync_slow(unative_t phoneid, ipc_data_t *question,
544
    ipc_data_t *reply)
556
    ipc_data_t *reply)
545
{
557
{
546
    call_t call;
558
    call_t call;
547
    phone_t *phone;
559
    phone_t *phone;
548
    int res;
560
    int res;
549
    int rc;
561
    int rc;
550
 
562
 
551
    ipc_call_static_init(&call);
563
    ipc_call_static_init(&call);
552
    rc = copy_from_uspace(&call.data.args, &question->args,
564
    rc = copy_from_uspace(&call.data.args, &question->args,
553
        sizeof(call.data.args));
565
        sizeof(call.data.args));
554
    if (rc != 0)
566
    if (rc != 0)
555
        return (unative_t) rc;
567
        return (unative_t) rc;
556
 
568
 
557
    GET_CHECK_PHONE(phone, phoneid, return ENOENT);
569
    GET_CHECK_PHONE(phone, phoneid, return ENOENT);
558
 
570
 
559
    if (!(res = request_preprocess(&call, phone))) {
571
    if (!(res = request_preprocess(&call, phone))) {
560
        ipc_call_sync(phone, &call);
572
        ipc_call_sync(phone, &call);
561
        process_answer(&call);
573
        process_answer(&call);
562
    } else
574
    } else
563
        IPC_SET_RETVAL(call.data, res);
575
        IPC_SET_RETVAL(call.data, res);
564
 
576
 
565
    rc = STRUCT_TO_USPACE(&reply->args, &call.data.args);
577
    rc = STRUCT_TO_USPACE(&reply->args, &call.data.args);
566
    if (rc != 0)
578
    if (rc != 0)
567
        return rc;
579
        return rc;
568
 
580
 
569
    return 0;
581
    return 0;
570
}
582
}
571
 
583
 
572
/** Check that the task did not exceed the allowed limit of asynchronous calls.
584
/** Check that the task did not exceed the allowed limit of asynchronous calls.
573
 *
585
 *
574
 * @return      Return 0 if limit not reached or -1 if limit exceeded.
586
 * @return      Return 0 if limit not reached or -1 if limit exceeded.
575
 */
587
 */
576
static int check_call_limit(void)
588
static int check_call_limit(void)
577
{
589
{
578
    if (atomic_preinc(&TASK->active_calls) > IPC_MAX_ASYNC_CALLS) {
590
    if (atomic_preinc(&TASK->active_calls) > IPC_MAX_ASYNC_CALLS) {
579
        atomic_dec(&TASK->active_calls);
591
        atomic_dec(&TASK->active_calls);
580
        return -1;
592
        return -1;
581
    }
593
    }
582
    return 0;
594
    return 0;
583
}
595
}
584
 
596
 
585
/** Make a fast asynchronous call over IPC.
597
/** Make a fast asynchronous call over IPC.
586
 *
598
 *
587
 * This function can only handle four arguments of payload, but is faster than
599
 * This function can only handle four arguments of payload, but is faster than
588
 * the generic function sys_ipc_call_async_slow().
600
 * the generic function sys_ipc_call_async_slow().
589
 *
601
 *
590
 * @param phoneid   Phone handle for the call.
602
 * @param phoneid   Phone handle for the call.
591
 * @param method    Method of the call.
603
 * @param method    Method of the call.
592
 * @param arg1      Service-defined payload argument.
604
 * @param arg1      Service-defined payload argument.
593
 * @param arg2      Service-defined payload argument.
605
 * @param arg2      Service-defined payload argument.
594
 * @param arg3      Service-defined payload argument.
606
 * @param arg3      Service-defined payload argument.
595
 * @param arg4      Service-defined payload argument.
607
 * @param arg4      Service-defined payload argument.
596
 *
608
 *
597
 * @return      Return call hash on success.
609
 * @return      Return call hash on success.
598
 *          Return IPC_CALLRET_FATAL in case of a fatal error and
610
 *          Return IPC_CALLRET_FATAL in case of a fatal error and
599
 *          IPC_CALLRET_TEMPORARY if there are too many pending
611
 *          IPC_CALLRET_TEMPORARY if there are too many pending
600
 *          asynchronous requests; answers should be handled first.
612
 *          asynchronous requests; answers should be handled first.
601
 */
613
 */
602
unative_t sys_ipc_call_async_fast(unative_t phoneid, unative_t method,
614
unative_t sys_ipc_call_async_fast(unative_t phoneid, unative_t method,
603
    unative_t arg1, unative_t arg2, unative_t arg3, unative_t arg4)
615
    unative_t arg1, unative_t arg2, unative_t arg3, unative_t arg4)
604
{
616
{
605
    call_t *call;
617
    call_t *call;
606
    phone_t *phone;
618
    phone_t *phone;
607
    int res;
619
    int res;
608
 
620
 
609
    if (check_call_limit())
621
    if (check_call_limit())
610
        return IPC_CALLRET_TEMPORARY;
622
        return IPC_CALLRET_TEMPORARY;
611
 
623
 
612
    GET_CHECK_PHONE(phone, phoneid, return IPC_CALLRET_FATAL);
624
    GET_CHECK_PHONE(phone, phoneid, return IPC_CALLRET_FATAL);
613
 
625
 
614
    call = ipc_call_alloc(0);
626
    call = ipc_call_alloc(0);
615
    IPC_SET_METHOD(call->data, method);
627
    IPC_SET_METHOD(call->data, method);
616
    IPC_SET_ARG1(call->data, arg1);
628
    IPC_SET_ARG1(call->data, arg1);
617
    IPC_SET_ARG2(call->data, arg2);
629
    IPC_SET_ARG2(call->data, arg2);
618
    IPC_SET_ARG3(call->data, arg3);
630
    IPC_SET_ARG3(call->data, arg3);
619
    IPC_SET_ARG4(call->data, arg4);
631
    IPC_SET_ARG4(call->data, arg4);
620
    /*
632
    /*
621
     * To achieve deterministic behavior, zero out arguments that are beyond
633
     * To achieve deterministic behavior, zero out arguments that are beyond
622
     * the limits of the fast version.
634
     * the limits of the fast version.
623
     */
635
     */
624
    IPC_SET_ARG5(call->data, 0);
636
    IPC_SET_ARG5(call->data, 0);
625
 
637
 
626
    if (!(res = request_preprocess(call, phone)))
638
    if (!(res = request_preprocess(call, phone)))
627
        ipc_call(phone, call);
639
        ipc_call(phone, call);
628
    else
640
    else
629
        ipc_backsend_err(phone, call, res);
641
        ipc_backsend_err(phone, call, res);
630
 
642
 
631
    return (unative_t) call;
643
    return (unative_t) call;
632
}
644
}
633
 
645
 
634
/** Make an asynchronous IPC call allowing to transmit the entire payload.
646
/** Make an asynchronous IPC call allowing to transmit the entire payload.
635
 *
647
 *
636
 * @param phoneid   Phone handle for the call.
648
 * @param phoneid   Phone handle for the call.
637
 * @param data      Userspace address of call data with the request.
649
 * @param data      Userspace address of call data with the request.
638
 *
650
 *
639
 * @return      See sys_ipc_call_async_fast().
651
 * @return      See sys_ipc_call_async_fast().
640
 */
652
 */
641
unative_t sys_ipc_call_async_slow(unative_t phoneid, ipc_data_t *data)
653
unative_t sys_ipc_call_async_slow(unative_t phoneid, ipc_data_t *data)
642
{
654
{
643
    call_t *call;
655
    call_t *call;
644
    phone_t *phone;
656
    phone_t *phone;
645
    int res;
657
    int res;
646
    int rc;
658
    int rc;
647
 
659
 
648
    if (check_call_limit())
660
    if (check_call_limit())
649
        return IPC_CALLRET_TEMPORARY;
661
        return IPC_CALLRET_TEMPORARY;
650
 
662
 
651
    GET_CHECK_PHONE(phone, phoneid, return IPC_CALLRET_FATAL);
663
    GET_CHECK_PHONE(phone, phoneid, return IPC_CALLRET_FATAL);
652
 
664
 
653
    call = ipc_call_alloc(0);
665
    call = ipc_call_alloc(0);
654
    rc = copy_from_uspace(&call->data.args, &data->args,
666
    rc = copy_from_uspace(&call->data.args, &data->args,
655
        sizeof(call->data.args));
667
        sizeof(call->data.args));
656
    if (rc != 0) {
668
    if (rc != 0) {
657
        ipc_call_free(call);
669
        ipc_call_free(call);
658
        return (unative_t) rc;
670
        return (unative_t) rc;
659
    }
671
    }
660
    if (!(res = request_preprocess(call, phone)))
672
    if (!(res = request_preprocess(call, phone)))
661
        ipc_call(phone, call);
673
        ipc_call(phone, call);
662
    else
674
    else
663
        ipc_backsend_err(phone, call, res);
675
        ipc_backsend_err(phone, call, res);
664
 
676
 
665
    return (unative_t) call;
677
    return (unative_t) call;
666
}
678
}
667
 
679
 
668
/** Forward a received call to another destination.
680
/** Forward a received call to another destination.
669
 *
681
 *
670
 * @param callid    Hash of the call to forward.
682
 * @param callid    Hash of the call to forward.
671
 * @param phoneid   Phone handle to use for forwarding.
683
 * @param phoneid   Phone handle to use for forwarding.
672
 * @param method    New method to use for the forwarded call.
684
 * @param method    New method to use for the forwarded call.
673
 * @param arg1      New value of the first argument for the forwarded call.
685
 * @param arg1      New value of the first argument for the forwarded call.
674
 * @param arg2      New value of the second argument for the forwarded call.
686
 * @param arg2      New value of the second argument for the forwarded call.
675
 * @param mode      Flags that specify mode of the forward operation.
687
 * @param mode      Flags that specify mode of the forward operation.
676
 *
688
 *
677
 * @return      Return 0 on succes, otherwise return an error code.
689
 * @return      Return 0 on succes, otherwise return an error code.
678
 *
690
 *
679
 * In case the original method is a system method, ARG1, ARG2 and ARG3 are
691
 * In case the original method is a system method, ARG1, ARG2 and ARG3 are
680
 * overwritten in the forwarded message with the new method and the new arg1 and
692
 * overwritten in the forwarded message with the new method and the new arg1 and
681
 * arg2, respectively. Otherwise the METHOD, ARG1 and ARG2 are rewritten with
693
 * arg2, respectively. Otherwise the METHOD, ARG1 and ARG2 are rewritten with
682
 * the new method, arg1 and arg2, respectively. Also note there is a set of
694
 * the new method, arg1 and arg2, respectively. Also note there is a set of
683
 * immutable methods, for which the new method and argument is not set and
695
 * immutable methods, for which the new method and argument is not set and
684
 * these values are ignored.
696
 * these values are ignored.
685
 *
697
 *
686
 * Warning: When implementing support for changing additional payload
698
 * Warning: When implementing support for changing additional payload
687
 *      arguments, make sure that ARG5 is not rewritten for certain
699
 *      arguments, make sure that ARG5 is not rewritten for certain
688
 *      system IPC
700
 *      system IPC
689
 */
701
 */
690
unative_t sys_ipc_forward_fast(unative_t callid, unative_t phoneid,
702
unative_t sys_ipc_forward_fast(unative_t callid, unative_t phoneid,
691
    unative_t method, unative_t arg1, unative_t arg2, int mode)
703
    unative_t method, unative_t arg1, unative_t arg2, int mode)
692
{
704
{
693
    call_t *call;
705
    call_t *call;
694
    phone_t *phone;
706
    phone_t *phone;
695
 
707
 
696
    call = get_call(callid);
708
    call = get_call(callid);
697
    if (!call)
709
    if (!call)
698
        return ENOENT;
710
        return ENOENT;
699
 
711
 
700
    call->flags |= IPC_CALL_FORWARDED;
712
    call->flags |= IPC_CALL_FORWARDED;
701
 
713
 
702
    GET_CHECK_PHONE(phone, phoneid, {
714
    GET_CHECK_PHONE(phone, phoneid, {
703
        IPC_SET_RETVAL(call->data, EFORWARD);
715
        IPC_SET_RETVAL(call->data, EFORWARD);
704
        ipc_answer(&TASK->answerbox, call);
716
        ipc_answer(&TASK->answerbox, call);
705
        return ENOENT;
717
        return ENOENT;
706
    });    
718
    });    
707
 
719
 
708
    if (!method_is_forwardable(IPC_GET_METHOD(call->data))) {
720
    if (!method_is_forwardable(IPC_GET_METHOD(call->data))) {
709
        IPC_SET_RETVAL(call->data, EFORWARD);
721
        IPC_SET_RETVAL(call->data, EFORWARD);
710
        ipc_answer(&TASK->answerbox, call);
722
        ipc_answer(&TASK->answerbox, call);
711
        return EPERM;
723
        return EPERM;
712
    }
724
    }
713
 
725
 
714
    /*
726
    /*
715
     * Userspace is not allowed to change method of system methods on
727
     * Userspace is not allowed to change method of system methods on
716
     * forward, allow changing ARG1, ARG2 and ARG3 by means of method,
728
     * forward, allow changing ARG1, ARG2 and ARG3 by means of method,
717
     * arg1 and arg2.
729
     * arg1 and arg2.
718
     * If the method is immutable, don't change anything.
730
     * If the method is immutable, don't change anything.
719
     */
731
     */
720
    if (!method_is_immutable(IPC_GET_METHOD(call->data))) {
732
    if (!method_is_immutable(IPC_GET_METHOD(call->data))) {
721
        if (method_is_system(IPC_GET_METHOD(call->data))) {
733
        if (method_is_system(IPC_GET_METHOD(call->data))) {
722
            if (IPC_GET_METHOD(call->data) == IPC_M_CONNECT_TO_ME)
734
            if (IPC_GET_METHOD(call->data) == IPC_M_CONNECT_TO_ME)
723
                phone_dealloc(IPC_GET_ARG5(call->data));
735
                phone_dealloc(IPC_GET_ARG5(call->data));
724
 
736
 
725
            IPC_SET_ARG1(call->data, method);
737
            IPC_SET_ARG1(call->data, method);
726
            IPC_SET_ARG2(call->data, arg1);
738
            IPC_SET_ARG2(call->data, arg1);
727
            IPC_SET_ARG3(call->data, arg2);
739
            IPC_SET_ARG3(call->data, arg2);
728
        } else {
740
        } else {
729
            IPC_SET_METHOD(call->data, method);
741
            IPC_SET_METHOD(call->data, method);
730
            IPC_SET_ARG1(call->data, arg1);
742
            IPC_SET_ARG1(call->data, arg1);
731
            IPC_SET_ARG2(call->data, arg2);
743
            IPC_SET_ARG2(call->data, arg2);
732
        }
744
        }
733
    }
745
    }
734
 
746
 
735
    return ipc_forward(call, phone, &TASK->answerbox, mode);
747
    return ipc_forward(call, phone, &TASK->answerbox, mode);
736
}
748
}
737
 
749
 
738
/** Answer an IPC call - fast version.
750
/** Answer an IPC call - fast version.
739
 *
751
 *
740
 * This function can handle only two return arguments of payload, but is faster
752
 * This function can handle only two return arguments of payload, but is faster
741
 * than the generic sys_ipc_answer().
753
 * than the generic sys_ipc_answer().
742
 *
754
 *
743
 * @param callid    Hash of the call to be answered.
755
 * @param callid    Hash of the call to be answered.
744
 * @param retval    Return value of the answer.
756
 * @param retval    Return value of the answer.
745
 * @param arg1      Service-defined return value.
757
 * @param arg1      Service-defined return value.
746
 * @param arg2      Service-defined return value.
758
 * @param arg2      Service-defined return value.
747
 * @param arg3      Service-defined return value.
759
 * @param arg3      Service-defined return value.
748
 * @param arg4      Service-defined return value.
760
 * @param arg4      Service-defined return value.
749
 *
761
 *
750
 * @return      Return 0 on success, otherwise return an error code.   
762
 * @return      Return 0 on success, otherwise return an error code.   
751
 */
763
 */
752
unative_t sys_ipc_answer_fast(unative_t callid, unative_t retval,
764
unative_t sys_ipc_answer_fast(unative_t callid, unative_t retval,
753
    unative_t arg1, unative_t arg2, unative_t arg3, unative_t arg4)
765
    unative_t arg1, unative_t arg2, unative_t arg3, unative_t arg4)
754
{
766
{
755
    call_t *call;
767
    call_t *call;
756
    ipc_data_t saved_data;
768
    ipc_data_t saved_data;
757
    int saveddata = 0;
769
    int saveddata = 0;
758
    int rc;
770
    int rc;
759
 
771
 
760
    /* Do not answer notification callids */
772
    /* Do not answer notification callids */
761
    if (callid & IPC_CALLID_NOTIFICATION)
773
    if (callid & IPC_CALLID_NOTIFICATION)
762
        return 0;
774
        return 0;
763
 
775
 
764
    call = get_call(callid);
776
    call = get_call(callid);
765
    if (!call)
777
    if (!call)
766
        return ENOENT;
778
        return ENOENT;
767
 
779
 
768
    if (answer_need_old(call)) {
780
    if (answer_need_old(call)) {
769
        memcpy(&saved_data, &call->data, sizeof(call->data));
781
        memcpy(&saved_data, &call->data, sizeof(call->data));
770
        saveddata = 1;
782
        saveddata = 1;
771
    }
783
    }
772
 
784
 
773
    IPC_SET_RETVAL(call->data, retval);
785
    IPC_SET_RETVAL(call->data, retval);
774
    IPC_SET_ARG1(call->data, arg1);
786
    IPC_SET_ARG1(call->data, arg1);
775
    IPC_SET_ARG2(call->data, arg2);
787
    IPC_SET_ARG2(call->data, arg2);
776
    IPC_SET_ARG3(call->data, arg3);
788
    IPC_SET_ARG3(call->data, arg3);
777
    IPC_SET_ARG4(call->data, arg4);
789
    IPC_SET_ARG4(call->data, arg4);
778
    /*
790
    /*
779
     * To achieve deterministic behavior, zero out arguments that are beyond
791
     * To achieve deterministic behavior, zero out arguments that are beyond
780
     * the limits of the fast version.
792
     * the limits of the fast version.
781
     */
793
     */
782
    IPC_SET_ARG5(call->data, 0);
794
    IPC_SET_ARG5(call->data, 0);
783
    rc = answer_preprocess(call, saveddata ? &saved_data : NULL);
795
    rc = answer_preprocess(call, saveddata ? &saved_data : NULL);
784
 
796
 
785
    ipc_answer(&TASK->answerbox, call);
797
    ipc_answer(&TASK->answerbox, call);
786
    return rc;
798
    return rc;
787
}
799
}
788
 
800
 
789
/** Answer an IPC call.
801
/** Answer an IPC call.
790
 *
802
 *
791
 * @param callid    Hash of the call to be answered.
803
 * @param callid    Hash of the call to be answered.
792
 * @param data      Userspace address of call data with the answer.
804
 * @param data      Userspace address of call data with the answer.
793
 *
805
 *
794
 * @return      Return 0 on success, otherwise return an error code.
806
 * @return      Return 0 on success, otherwise return an error code.
795
 */
807
 */
796
unative_t sys_ipc_answer_slow(unative_t callid, ipc_data_t *data)
808
unative_t sys_ipc_answer_slow(unative_t callid, ipc_data_t *data)
797
{
809
{
798
    call_t *call;
810
    call_t *call;
799
    ipc_data_t saved_data;
811
    ipc_data_t saved_data;
800
    int saveddata = 0;
812
    int saveddata = 0;
801
    int rc;
813
    int rc;
802
 
814
 
803
    /* Do not answer notification callids */
815
    /* Do not answer notification callids */
804
    if (callid & IPC_CALLID_NOTIFICATION)
816
    if (callid & IPC_CALLID_NOTIFICATION)
805
        return 0;
817
        return 0;
806
 
818
 
807
    call = get_call(callid);
819
    call = get_call(callid);
808
    if (!call)
820
    if (!call)
809
        return ENOENT;
821
        return ENOENT;
810
 
822
 
811
    if (answer_need_old(call)) {
823
    if (answer_need_old(call)) {
812
        memcpy(&saved_data, &call->data, sizeof(call->data));
824
        memcpy(&saved_data, &call->data, sizeof(call->data));
813
        saveddata = 1;
825
        saveddata = 1;
814
    }
826
    }
815
    rc = copy_from_uspace(&call->data.args, &data->args,
827
    rc = copy_from_uspace(&call->data.args, &data->args,
816
        sizeof(call->data.args));
828
        sizeof(call->data.args));
817
    if (rc != 0)
829
    if (rc != 0)
818
        return rc;
830
        return rc;
819
 
831
 
820
    rc = answer_preprocess(call, saveddata ? &saved_data : NULL);
832
    rc = answer_preprocess(call, saveddata ? &saved_data : NULL);
821
   
833
   
822
    ipc_answer(&TASK->answerbox, call);
834
    ipc_answer(&TASK->answerbox, call);
823
 
835
 
824
    return rc;
836
    return rc;
825
}
837
}
826
 
838
 
827
/** Hang up a phone.
839
/** Hang up a phone.
828
 *
840
 *
829
 * @param       Phone handle of the phone to be hung up.
841
 * @param       Phone handle of the phone to be hung up.
830
 *
842
 *
831
 * @return      Return 0 on success or an error code.
843
 * @return      Return 0 on success or an error code.
832
 */
844
 */
833
unative_t sys_ipc_hangup(int phoneid)
845
unative_t sys_ipc_hangup(int phoneid)
834
{
846
{
835
    phone_t *phone;
847
    phone_t *phone;
836
 
848
 
837
    GET_CHECK_PHONE(phone, phoneid, return ENOENT);
849
    GET_CHECK_PHONE(phone, phoneid, return ENOENT);
838
 
850
 
839
    if (ipc_phone_hangup(phone))
851
    if (ipc_phone_hangup(phone))
840
        return -1;
852
        return -1;
841
 
853
 
842
    return 0;
854
    return 0;
843
}
855
}
844
 
856
 
845
/** Wait for an incoming IPC call or an answer.
857
/** Wait for an incoming IPC call or an answer.
846
 *
858
 *
847
 * @param calldata  Pointer to buffer where the call/answer data is stored.
859
 * @param calldata  Pointer to buffer where the call/answer data is stored.
848
 * @param usec      Timeout. See waitq_sleep_timeout() for explanation.
860
 * @param usec      Timeout. See waitq_sleep_timeout() for explanation.
849
 * @param flags     Select mode of sleep operation. See waitq_sleep_timeout()
861
 * @param flags     Select mode of sleep operation. See waitq_sleep_timeout()
850
 *          for explanation.
862
 *          for explanation.
851
 *
863
 *
852
 * @return      Hash of the call.
864
 * @return      Hash of the call.
853
 *          If IPC_CALLID_NOTIFICATION bit is set in the hash, the
865
 *          If IPC_CALLID_NOTIFICATION bit is set in the hash, the
854
 *          call is a notification. IPC_CALLID_ANSWERED denotes an
866
 *          call is a notification. IPC_CALLID_ANSWERED denotes an
855
 *          answer.
867
 *          answer.
856
 */
868
 */
857
unative_t sys_ipc_wait_for_call(ipc_data_t *calldata, uint32_t usec, int flags)
869
unative_t sys_ipc_wait_for_call(ipc_data_t *calldata, uint32_t usec, int flags)
858
{
870
{
859
    call_t *call;
871
    call_t *call;
860
 
872
 
861
restart:   
873
restart:   
862
    call = ipc_wait_for_call(&TASK->answerbox, usec,
874
    call = ipc_wait_for_call(&TASK->answerbox, usec,
863
        flags | SYNCH_FLAGS_INTERRUPTIBLE);
875
        flags | SYNCH_FLAGS_INTERRUPTIBLE);
864
    if (!call)
876
    if (!call)
865
        return 0;
877
        return 0;
866
 
878
 
867
    if (call->flags & IPC_CALL_NOTIF) {
879
    if (call->flags & IPC_CALL_NOTIF) {
868
        ASSERT(! (call->flags & IPC_CALL_STATIC_ALLOC));
880
        ASSERT(! (call->flags & IPC_CALL_STATIC_ALLOC));
869
 
881
 
870
        /* Set in_phone_hash to the interrupt counter */
882
        /* Set in_phone_hash to the interrupt counter */
871
        call->data.phone = (void *) call->priv;
883
        call->data.phone = (void *) call->priv;
872
       
884
       
873
        STRUCT_TO_USPACE(calldata, &call->data);
885
        STRUCT_TO_USPACE(calldata, &call->data);
874
 
886
 
875
        ipc_call_free(call);
887
        ipc_call_free(call);
876
       
888
       
877
        return ((unative_t) call) | IPC_CALLID_NOTIFICATION;
889
        return ((unative_t) call) | IPC_CALLID_NOTIFICATION;
878
    }
890
    }
879
 
891
 
880
    if (call->flags & IPC_CALL_ANSWERED) {
892
    if (call->flags & IPC_CALL_ANSWERED) {
881
        process_answer(call);
893
        process_answer(call);
882
 
894
 
883
        ASSERT(! (call->flags & IPC_CALL_STATIC_ALLOC));
895
        ASSERT(! (call->flags & IPC_CALL_STATIC_ALLOC));
884
 
896
 
885
        atomic_dec(&TASK->active_calls);
897
        atomic_dec(&TASK->active_calls);
886
 
898
 
887
        if (call->flags & IPC_CALL_DISCARD_ANSWER) {
899
        if (call->flags & IPC_CALL_DISCARD_ANSWER) {
888
            ipc_call_free(call);
900
            ipc_call_free(call);
889
            goto restart;
901
            goto restart;
890
        }
902
        }
891
 
903
 
892
        STRUCT_TO_USPACE(&calldata->args, &call->data.args);
904
        STRUCT_TO_USPACE(&calldata->args, &call->data.args);
893
        ipc_call_free(call);
905
        ipc_call_free(call);
894
 
906
 
895
        return ((unative_t) call) | IPC_CALLID_ANSWERED;
907
        return ((unative_t) call) | IPC_CALLID_ANSWERED;
896
    }
908
    }
897
 
909
 
898
    if (process_request(&TASK->answerbox, call))
910
    if (process_request(&TASK->answerbox, call))
899
        goto restart;
911
        goto restart;
900
 
912
 
901
    /* Include phone address('id') of the caller in the request,
913
    /* Include phone address('id') of the caller in the request,
902
     * copy whole call->data, not only call->data.args */
914
     * copy whole call->data, not only call->data.args */
903
    if (STRUCT_TO_USPACE(calldata, &call->data)) {
915
    if (STRUCT_TO_USPACE(calldata, &call->data)) {
904
        return 0;
916
        return 0;
905
    }
917
    }
906
    return (unative_t)call;
918
    return (unative_t)call;
907
}
919
}
908
 
920
 
909
/** Connect an IRQ handler to a task.
921
/** Connect an IRQ handler to a task.
910
 *
922
 *
911
 * @param inr       IRQ number.
923
 * @param inr       IRQ number.
912
 * @param devno     Device number.
924
 * @param devno     Device number.
913
 * @param method    Method to be associated with the notification.
925
 * @param method    Method to be associated with the notification.
914
 * @param ucode     Uspace pointer to the top-half pseudocode.
926
 * @param ucode     Uspace pointer to the top-half pseudocode.
915
 *
927
 *
916
 * @return      EPERM or a return code returned by ipc_irq_register().
928
 * @return      EPERM or a return code returned by ipc_irq_register().
917
 */
929
 */
918
unative_t sys_ipc_register_irq(inr_t inr, devno_t devno, unative_t method,
930
unative_t sys_ipc_register_irq(inr_t inr, devno_t devno, unative_t method,
919
    irq_code_t *ucode)
931
    irq_code_t *ucode)
920
{
932
{
921
    if (!(cap_get(TASK) & CAP_IRQ_REG))
933
    if (!(cap_get(TASK) & CAP_IRQ_REG))
922
        return EPERM;
934
        return EPERM;
923
 
935
 
924
    return ipc_irq_register(&TASK->answerbox, inr, devno, method, ucode);
936
    return ipc_irq_register(&TASK->answerbox, inr, devno, method, ucode);
925
}
937
}
926
 
938
 
927
/** Disconnect an IRQ handler from a task.
939
/** Disconnect an IRQ handler from a task.
928
 *
940
 *
929
 * @param inr       IRQ number.
941
 * @param inr       IRQ number.
930
 * @param devno     Device number.
942
 * @param devno     Device number.
931
 *
943
 *
932
 * @return      Zero on success or EPERM on error..
944
 * @return      Zero on success or EPERM on error..
933
 */
945
 */
934
unative_t sys_ipc_unregister_irq(inr_t inr, devno_t devno)
946
unative_t sys_ipc_unregister_irq(inr_t inr, devno_t devno)
935
{
947
{
936
    if (!(cap_get(TASK) & CAP_IRQ_REG))
948
    if (!(cap_get(TASK) & CAP_IRQ_REG))
937
        return EPERM;
949
        return EPERM;
938
 
950
 
939
    ipc_irq_unregister(&TASK->answerbox, inr, devno);
951
    ipc_irq_unregister(&TASK->answerbox, inr, devno);
940
 
952
 
941
    return 0;
953
    return 0;
942
}
954
}
943
 
955
 
944
#include <console/klog.h>
956
#include <console/klog.h>
945
 
957
 
946
/**
958
/**
947
 * Syscall connect to a task by id.
959
 * Syscall connect to a task by id.
948
 *
960
 *
949
 * @return      Phone id on success, or negative error code.
961
 * @return      Phone id on success, or negative error code.
950
 */
962
 */
951
unative_t sys_ipc_connect_task(sysarg64_t *uspace_taskid_arg)
963
unative_t sys_ipc_connect_task(sysarg64_t *uspace_taskid_arg)
952
{
964
{
953
    sysarg64_t taskid_arg;
965
    sysarg64_t taskid_arg;
954
    int rc;
966
    int rc;
955
   
967
   
956
    rc = copy_from_uspace(&taskid_arg, uspace_taskid_arg, sizeof(sysarg64_t));
968
    rc = copy_from_uspace(&taskid_arg, uspace_taskid_arg, sizeof(sysarg64_t));
957
    if (rc != 0)
969
    if (rc != 0)
958
        return (unative_t) rc;
970
        return (unative_t) rc;
959
 
971
 
960
    klog_printf("sys_ipc_connect_kbox(%lld, %d)", taskid_arg.value);
972
    klog_printf("sys_ipc_connect_kbox(%lld, %d)", taskid_arg.value);
961
 
973
 
962
    return ipc_connect_task(taskid_arg.value);
974
    return ipc_connect_task(taskid_arg.value);
963
}
975
}
964
 
976
 
965
/** @}
977
/** @}
966
 */
978
 */
967
 
979