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Line 50... | Line 50... | ||
50 | int res; |
50 | int res; |
51 | int c; |
51 | int c; |
52 | ipcarg_t phonead; |
52 | ipcarg_t phonead; |
53 | 53 | ||
54 | ipcarg_t retval, arg1, arg2; |
54 | ipcarg_t retval, arg1, arg2; |
55 | 55 | ||
- | 56 | /* Counter of unsatisfied calls */ |
|
56 | fifo_count_t callers_counter = 0; |
57 | fifo_count_t callers_counter = 0; |
57 | - | ||
- | 58 | /* Fifo with callid's of unsatisfied calls requred for answer */ |
|
58 | FIFO_INITIALIZE_STATIC(callers_buffer, ipc_callid_t, KBD_REQUEST_MAX); |
59 | FIFO_INITIALIZE_STATIC(callers_buffer, ipc_callid_t, KBD_REQUEST_MAX); |
59 | 60 | ||
60 | printf("Uspace kbd service started.\n"); |
61 | printf("Uspace kbd service started.\n"); |
61 | 62 | ||
62 | /* Initialize arch dependent parts */ |
63 | /* Initialize arch dependent parts */ |
Line 78... | Line 79... | ||
78 | 79 | ||
79 | while (1) { |
80 | while (1) { |
80 | callid = ipc_wait_for_call(&call, 0); |
81 | callid = ipc_wait_for_call(&call, 0); |
81 | // printf("%s:Call phone=%lX..", NAME, call.in_phone_hash); |
82 | // printf("%s:Call phone=%lX..", NAME, call.in_phone_hash); |
82 | switch (IPC_GET_METHOD(call)) { |
83 | switch (IPC_GET_METHOD(call)) { |
83 | case IPC_M_PHONE_HUNGUP: |
84 | case IPC_M_PHONE_HUNGUP: |
84 | if (connected) { |
85 | if (connected) { |
- | 86 | /* If nobody's connected, clear keybuffer and dont store new keys */ |
|
85 | if (--connected == 0) { |
87 | if (--connected == 0) { |
86 | callers_counter = 0; |
88 | callers_counter = 0; |
87 | callers_buffer.head = callers_buffer.tail = 0; |
89 | callers_buffer.head = callers_buffer.tail = 0; |
88 | key_buffer_free(); |
90 | key_buffer_free(); |
- | 91 | } |
|
- | 92 | ||
- | 93 | printf("%s: Phone hung up.\n", NAME); |
|
- | 94 | } else { |
|
- | 95 | printf("%s: Oops, got phone hung up, but nobody connected.\n", NAME); |
|
89 | } |
96 | } |
90 | } |
97 | |
91 | - | ||
92 | printf("%s: Phone hung up.\n", NAME); |
- | |
93 | retval = 0; |
- | |
94 | break; |
- | |
95 | case IPC_M_CONNECT_TO_ME: |
- | |
96 | printf("%s: Somebody connecting phid=%zd.\n", NAME, IPC_GET_ARG3(call)); |
- | |
97 | retval = 0; |
- | |
98 | break; |
- | |
99 | case IPC_M_CONNECT_ME_TO: |
- | |
100 | // printf("%s: Connect me (%P) to: %zd\n",NAME, IPC_GET_ARG3(call), IPC_GET_ARG1(call)); |
- | |
101 | if (connected) { |
- | |
102 | retval = ELIMIT; |
- | |
103 | } else { |
- | |
104 | retval = 0; |
98 | retval = 0; |
105 | connected = 1; |
- | |
106 | } |
- | |
107 | break; |
99 | break; |
108 | case IPC_M_INTERRUPT: |
100 | case IPC_M_CONNECT_TO_ME: |
109 | if (connected) { |
- | |
110 | kbd_arch_process(IPC_GET_ARG2(call)); |
- | |
111 | } |
- | |
112 | //printf("%s: GOT INTERRUPT: %c\n", NAME, IPC_GET_ARG2(call)); |
101 | printf("%s: Somebody connecting phid=%zd.\n", NAME, IPC_GET_ARG3(call)); |
113 | if (!callers_counter) |
102 | retval = 0; |
114 | break; |
103 | break; |
115 | /* Small trick - interrupt does not need answer so we can change callid to caller awaiting key */ |
- | |
116 | callers_counter--; |
- | |
117 | callid = fifo_pop(callers_buffer); |
- | |
118 | case KBD_GETCHAR: |
104 | case IPC_M_CONNECT_ME_TO: |
119 | // printf("%s: Getchar: ", NAME); |
105 | // printf("%s: Connect me (%P) to: %zd\n",NAME, IPC_GET_ARG3(call), IPC_GET_ARG1(call)); |
120 | retval = 0; |
- | |
121 | arg1 = 0; |
- | |
122 | if (!key_buffer_pop((char *)&arg1)) { |
- | |
123 | if (callers_counter < KBD_REQUEST_MAX) { |
- | |
124 | callers_counter++; |
- | |
125 | fifo_push(callers_buffer, callid); |
106 | /* Only one connected client allowed */ |
126 | } else { |
107 | if (connected) { |
127 | retval = ELIMIT; |
108 | retval = ELIMIT; |
- | 109 | } else { |
|
- | 110 | retval = 0; |
|
- | 111 | connected = 1; |
|
128 | } |
112 | } |
- | 113 | break; |
|
- | 114 | case IPC_M_INTERRUPT: |
|
- | 115 | if (connected) { |
|
- | 116 | /* recode scancode and store it into key buffer */ |
|
- | 117 | kbd_arch_process(IPC_GET_ARG2(call)); |
|
- | 118 | //printf("%s: GOT INTERRUPT: %c\n", NAME, IPC_GET_ARG2(call)); |
|
- | 119 | ||
- | 120 | /* Some callers could awaiting keypress - if its true, we have to send keys to them. |
|
- | 121 | * One interrupt can store more than one key into buffer. */ |
|
- | 122 | retval = 0; |
|
- | 123 | arg2 = 0xbeef; |
|
- | 124 | while ((callers_counter) && (!key_buffer_empty())) { |
|
- | 125 | callers_counter--; |
|
- | 126 | if (!key_buffer_pop((char *)&arg1)) { |
|
- | 127 | printf("%s: KeyBuffer empty but it should not be.\n"); |
|
- | 128 | break; |
|
- | 129 | } |
|
- | 130 | ipc_answer_fast(fifo_pop(callers_buffer), retval, arg1, arg2); |
|
- | 131 | } |
|
- | 132 | } |
|
- | 133 | break; |
|
- | 134 | case KBD_GETCHAR: |
|
- | 135 | // printf("%s: Getchar: ", NAME); |
|
- | 136 | retval = 0; |
|
- | 137 | arg1 = 0; |
|
- | 138 | if (!key_buffer_pop((char *)&arg1)) { |
|
- | 139 | if (callers_counter < KBD_REQUEST_MAX) { |
|
- | 140 | callers_counter++; |
|
- | 141 | fifo_push(callers_buffer, callid); |
|
- | 142 | } else { |
|
- | 143 | retval = ELIMIT; |
|
- | 144 | } |
|
129 | continue; |
145 | continue; |
130 | }; |
146 | }; |
131 | arg2 = 0xbeef; |
147 | arg2 = 0xbeef; |
132 | // printf("GetChar return %c\n", arg1); |
148 | // printf("GetChar return %c\n", arg1); |
133 | 149 | ||
134 | break; |
150 | break; |
135 | default: |
151 | default: |
136 | printf("%s: Unknown method: %zd\n", NAME, IPC_GET_METHOD(call)); |
152 | printf("%s: Unknown method: %zd\n", NAME, IPC_GET_METHOD(call)); |
137 | retval = ENOENT; |
153 | retval = ENOENT; |
138 | break; |
154 | break; |
139 | } |
155 | } |
- | 156 | ||
140 | if (! (callid & IPC_CALLID_NOTIFICATION)) { |
157 | if (! (callid & IPC_CALLID_NOTIFICATION)) { |
141 | // printf("%s: Answering\n", NAME); |
- | |
142 | ipc_answer_fast(callid, retval, arg1, arg2); |
158 | ipc_answer_fast(callid, retval, arg1, arg2); |
143 | } |
159 | } |
144 | } |
160 | } |
145 | } |
161 | } |
- | 162 |