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| 3438 | svoboda | 1 | /* |
| 2 | * Copyright (c) 2008 Jiri Svoboda |
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| 3 | * All rights reserved. |
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| 4 | * |
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| 5 | * Redistribution and use in source and binary forms, with or without |
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| 6 | * modification, are permitted provided that the following conditions |
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| 7 | * are met: |
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| 8 | * |
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| 9 | * - Redistributions of source code must retain the above copyright |
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| 10 | * notice, this list of conditions and the following disclaimer. |
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| 11 | * - Redistributions in binary form must reproduce the above copyright |
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| 12 | * notice, this list of conditions and the following disclaimer in the |
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| 13 | * documentation and/or other materials provided with the distribution. |
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| 14 | * - The name of the author may not be used to endorse or promote products |
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| 15 | * derived from this software without specific prior written permission. |
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| 16 | * |
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| 17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
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| 18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
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| 19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. |
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| 20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, |
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| 21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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| 22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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| 23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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| 24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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| 25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF |
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| 26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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| 27 | */ |
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| 28 | |||
| 29 | /** @addtogroup generic |
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| 30 | * @{ |
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| 31 | */ |
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| 32 | |||
| 33 | /** |
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| 34 | * @file |
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| 35 | * @brief Udebug IPC message handling. |
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| 36 | */ |
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| 37 | |||
| 38 | #include <print.h> |
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| 39 | #include <proc/task.h> |
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| 40 | #include <proc/thread.h> |
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| 41 | #include <arch.h> |
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| 42 | #include <errno.h> |
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| 43 | #include <ipc/ipc.h> |
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| 44 | #include <syscall/copy.h> |
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| 45 | #include <udebug/udebug.h> |
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| 46 | #include <udebug/udebug_ops.h> |
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| 47 | #include <udebug/udebug_ipc.h> |
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| 48 | |||
| 49 | int udebug_request_preprocess(call_t *call, phone_t *phone) |
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| 50 | { |
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| 51 | switch (IPC_GET_ARG1(call->data)) { |
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| 52 | /* future UDEBUG_M_REGS_WRITE, UDEBUG_M_MEM_WRITE: */ |
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| 53 | default: |
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| 54 | break; |
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| 55 | } |
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| 56 | |||
| 57 | return 0; |
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| 58 | } |
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| 59 | |||
| 60 | static void udebug_receive_begin(call_t *call) |
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| 61 | { |
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| 62 | int rc; |
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| 63 | |||
| 64 | rc = udebug_begin(call); |
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| 65 | if (rc < 0) { |
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| 66 | IPC_SET_RETVAL(call->data, rc); |
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| 67 | ipc_answer(&TASK->kernel_box, call); |
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| 68 | return; |
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| 69 | } |
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| 70 | |||
| 71 | if (rc != 0) { |
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| 72 | IPC_SET_RETVAL(call->data, 0); |
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| 73 | ipc_answer(&TASK->kernel_box, call); |
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| 74 | } |
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| 75 | } |
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| 76 | |||
| 77 | static void udebug_receive_end(call_t *call) |
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| 78 | { |
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| 79 | int rc; |
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| 80 | |||
| 81 | rc = udebug_end(); |
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| 82 | |||
| 83 | IPC_SET_RETVAL(call->data, rc); |
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| 84 | ipc_answer(&TASK->kernel_box, call); |
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| 85 | } |
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| 86 | |||
| 87 | static void udebug_receive_set_evmask(call_t *call) |
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| 88 | { |
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| 89 | int rc; |
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| 90 | udebug_evmask_t mask; |
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| 91 | |||
| 92 | mask = IPC_GET_ARG2(call->data); |
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| 93 | rc = udebug_set_evmask(mask); |
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| 94 | |||
| 95 | IPC_SET_RETVAL(call->data, rc); |
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| 96 | ipc_answer(&TASK->kernel_box, call); |
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| 97 | } |
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| 98 | |||
| 99 | |||
| 100 | static void udebug_receive_go(call_t *call) |
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| 101 | { |
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| 102 | thread_t *t; |
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| 103 | int rc; |
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| 104 | |||
| 105 | //printf("debug_go()\n"); |
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| 106 | |||
| 107 | t = (thread_t *)IPC_GET_ARG2(call->data); |
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| 108 | |||
| 109 | rc = udebug_go(t, call); |
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| 110 | if (rc < 0) { |
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| 111 | IPC_SET_RETVAL(call->data, rc); |
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| 112 | ipc_answer(&TASK->kernel_box, call); |
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| 113 | return; |
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| 114 | } |
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| 115 | } |
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| 116 | |||
| 117 | static void udebug_receive_stop(call_t *call) |
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| 118 | { |
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| 119 | thread_t *t; |
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| 120 | int rc; |
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| 121 | |||
| 122 | printf("debug_stop()\n"); |
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| 123 | |||
| 124 | t = (thread_t *)IPC_GET_ARG2(call->data); |
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| 125 | |||
| 126 | rc = udebug_stop(t, call); |
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| 127 | IPC_SET_RETVAL(call->data, rc); |
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| 128 | ipc_answer(&TASK->kernel_box, call); |
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| 129 | } |
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| 130 | |||
| 131 | static void udebug_receive_thread_read(call_t *call) |
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| 132 | { |
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| 133 | unative_t uspace_addr; |
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| 134 | unative_t to_copy; |
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| 135 | unsigned total_bytes; |
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| 136 | unsigned buf_size; |
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| 137 | void *buffer; |
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| 138 | size_t n; |
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| 139 | int rc; |
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| 140 | |||
| 141 | uspace_addr = IPC_GET_ARG2(call->data); /* Destination address */ |
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| 142 | buf_size = IPC_GET_ARG3(call->data); /* Dest. buffer size */ |
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| 143 | |||
| 144 | /* |
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| 145 | * Read thread list. Variable n will be filled with actual number |
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| 146 | * of threads times thread-id size. |
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| 147 | */ |
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| 148 | rc = udebug_thread_read(&buffer, buf_size, &n); |
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| 149 | if (rc < 0) { |
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| 150 | IPC_SET_RETVAL(call->data, rc); |
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| 151 | ipc_answer(&TASK->kernel_box, call); |
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| 152 | return; |
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| 153 | } |
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| 154 | |||
| 155 | total_bytes = n; |
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| 156 | |||
| 157 | /* Copy MAX(buf_size, total_bytes) bytes */ |
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| 158 | |||
| 159 | if (buf_size > total_bytes) |
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| 160 | to_copy = total_bytes; |
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| 161 | else |
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| 162 | to_copy = buf_size; |
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| 163 | |||
| 164 | /* |
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| 165 | * Make use of call->buffer to transfer data to caller's userspace |
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| 166 | */ |
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| 167 | |||
| 168 | IPC_SET_RETVAL(call->data, 0); |
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| 169 | /* ARG1=dest, ARG2=size as in IPC_M_DATA_READ so that |
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| 170 | same code in process_answer() can be used |
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| 171 | (no way to distinguish method in answer) */ |
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| 172 | IPC_SET_ARG1(call->data, uspace_addr); |
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| 173 | IPC_SET_ARG2(call->data, to_copy); |
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| 174 | |||
| 175 | IPC_SET_ARG3(call->data, total_bytes); |
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| 176 | call->buffer = buffer; |
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| 177 | |||
| 178 | ipc_answer(&TASK->kernel_box, call); |
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| 179 | } |
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| 180 | |||
| 181 | static void udebug_receive_args_read(call_t *call) |
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| 182 | { |
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| 183 | thread_t *t; |
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| 184 | unative_t uspace_addr; |
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| 185 | int rc; |
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| 186 | void *buffer; |
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| 187 | |||
| 188 | t = (thread_t *)IPC_GET_ARG2(call->data); |
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| 189 | |||
| 190 | rc = udebug_args_read(t, &buffer); |
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| 191 | if (rc != EOK) { |
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| 192 | IPC_SET_RETVAL(call->data, rc); |
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| 193 | ipc_answer(&TASK->kernel_box, call); |
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| 194 | return; |
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| 195 | } |
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| 196 | |||
| 197 | /* |
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| 198 | * Make use of call->buffer to transfer data to caller's userspace |
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| 199 | */ |
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| 200 | |||
| 201 | uspace_addr = IPC_GET_ARG3(call->data); |
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| 202 | |||
| 203 | IPC_SET_RETVAL(call->data, 0); |
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| 204 | /* ARG1=dest, ARG2=size as in IPC_M_DATA_READ so that |
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| 205 | same code in process_answer() can be used |
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| 206 | (no way to distinguish method in answer) */ |
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| 207 | IPC_SET_ARG1(call->data, uspace_addr); |
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| 208 | IPC_SET_ARG2(call->data, 6 * sizeof(unative_t)); |
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| 209 | call->buffer = buffer; |
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| 210 | |||
| 211 | ipc_answer(&TASK->kernel_box, call); |
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| 212 | } |
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| 213 | |||
| 214 | static void udebug_receive_mem_read(call_t *call) |
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| 215 | { |
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| 216 | unative_t uspace_dst; |
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| 217 | unative_t uspace_src; |
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| 218 | unsigned size; |
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| 219 | void *buffer; |
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| 220 | int rc; |
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| 221 | |||
| 222 | uspace_dst = IPC_GET_ARG2(call->data); |
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| 223 | uspace_src = IPC_GET_ARG3(call->data); |
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| 224 | size = IPC_GET_ARG4(call->data); |
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| 225 | |||
| 226 | rc = udebug_mem_read(uspace_src, size, &buffer); |
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| 227 | if (rc < 0) { |
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| 228 | IPC_SET_RETVAL(call->data, rc); |
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| 229 | ipc_answer(&TASK->kernel_box, call); |
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| 230 | return; |
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| 231 | } |
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| 232 | |||
| 233 | IPC_SET_RETVAL(call->data, 0); |
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| 234 | /* ARG1=dest, ARG2=size as in IPC_M_DATA_READ so that |
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| 235 | same code in process_answer() can be used |
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| 236 | (no way to distinguish method in answer) */ |
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| 237 | IPC_SET_ARG1(call->data, uspace_dst); |
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| 238 | IPC_SET_ARG2(call->data, size); |
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| 239 | call->buffer = buffer; |
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| 240 | |||
| 241 | ipc_answer(&TASK->kernel_box, call); |
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| 242 | } |
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| 243 | |||
| 244 | /** |
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| 245 | * Handle a debug call received on the kernel answerbox. |
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| 246 | * |
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| 247 | * This is called by the kbox servicing thread. |
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| 248 | */ |
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| 249 | void udebug_call_receive(call_t *call) |
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| 250 | { |
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| 251 | int debug_method; |
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| 252 | |||
| 253 | debug_method = IPC_GET_ARG1(call->data); |
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| 254 | |||
| 255 | if (debug_method != UDEBUG_M_BEGIN) { |
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| 256 | /* |
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| 257 | * Verify that the sender is this task's debugger. |
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| 258 | * Note that this is the only thread that could change |
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| 259 | * TASK->debugger. Therefore no locking is necessary |
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| 260 | * and the sender can be safely considered valid until |
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| 261 | * control exits this function. |
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| 262 | */ |
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| 263 | if (TASK->udebug.debugger != call->sender) { |
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| 264 | IPC_SET_RETVAL(call->data, EINVAL); |
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| 265 | ipc_answer(&TASK->kernel_box, call); |
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| 266 | return; |
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| 267 | } |
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| 268 | } |
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| 269 | |||
| 270 | switch (debug_method) { |
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| 271 | case UDEBUG_M_BEGIN: |
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| 272 | udebug_receive_begin(call); |
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| 273 | break; |
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| 274 | case UDEBUG_M_END: |
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| 275 | udebug_receive_end(call); |
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| 276 | break; |
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| 277 | case UDEBUG_M_SET_EVMASK: |
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| 278 | udebug_receive_set_evmask(call); |
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| 279 | break; |
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| 280 | case UDEBUG_M_GO: |
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| 281 | udebug_receive_go(call); |
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| 282 | break; |
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| 283 | case UDEBUG_M_STOP: |
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| 284 | udebug_receive_stop(call); |
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| 285 | break; |
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| 286 | case UDEBUG_M_THREAD_READ: |
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| 287 | udebug_receive_thread_read(call); |
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| 288 | break; |
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| 289 | case UDEBUG_M_ARGS_READ: |
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| 290 | udebug_receive_args_read(call); |
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| 291 | break; |
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| 292 | case UDEBUG_M_MEM_READ: |
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| 293 | udebug_receive_mem_read(call); |
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| 294 | break; |
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| 295 | } |
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| 296 | } |
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| 297 | |||
| 298 | /** @} |
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| 299 | */ |