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3502 | rimsky | 1 | /* |
2 | * Copyright (c) 2008 Pavel Rimsky |
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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 sparc64 |
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30 | * @{ |
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31 | */ |
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32 | /** |
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33 | * @file |
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34 | * @brief SGCN driver. |
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35 | */ |
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36 | |||
4070 | rimsky | 37 | #include <arch.h> |
3502 | rimsky | 38 | #include <arch/drivers/sgcn.h> |
3549 | rimsky | 39 | #include <arch/drivers/kbd.h> |
3502 | rimsky | 40 | #include <genarch/ofw/ofw_tree.h> |
41 | #include <debug.h> |
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4011 | svoboda | 42 | #include <string.h> |
3502 | rimsky | 43 | #include <print.h> |
44 | #include <mm/page.h> |
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4070 | rimsky | 45 | #include <proc/thread.h> |
3502 | rimsky | 46 | #include <console/chardev.h> |
47 | #include <console/console.h> |
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3549 | rimsky | 48 | #include <sysinfo/sysinfo.h> |
3502 | rimsky | 49 | #include <synch/spinlock.h> |
50 | |||
4070 | rimsky | 51 | #define POLL_INTERVAL 10000 |
52 | |||
3502 | rimsky | 53 | /* |
54 | * Physical address at which the SBBC starts. This value has been obtained |
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55 | * by inspecting (using Simics) memory accesses made by OBP. It is valid |
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56 | * for the Simics-simulated Serengeti machine. The author of this code is |
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57 | * not sure whether this value is valid generally. |
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58 | */ |
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59 | #define SBBC_START 0x63000000000 |
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60 | |||
61 | /* offset of SRAM within the SBBC memory */ |
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62 | #define SBBC_SRAM_OFFSET 0x900000 |
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63 | |||
3549 | rimsky | 64 | /* size (in bytes) of the physical memory area which will be mapped */ |
65 | #define MAPPED_AREA_SIZE (128 * 1024) |
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66 | |||
3502 | rimsky | 67 | /* magic string contained at the beginning of SRAM */ |
68 | #define SRAM_TOC_MAGIC "TOCSRAM" |
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69 | |||
70 | /* |
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71 | * Key into the SRAM table of contents which identifies the entry |
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72 | * describing the OBP console buffer. It is worth mentioning |
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73 | * that the OBP console buffer is not the only console buffer |
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74 | * which can be used. It is, however, used because when the kernel |
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75 | * is running, the OBP buffer is not used by OBP any more but OBP |
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76 | * has already made neccessary arangements so that the output will |
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77 | * be read from the OBP buffer and input will go to the OBP buffer. |
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78 | * Therefore HelenOS needs to make no such arrangements any more. |
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79 | */ |
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80 | #define CONSOLE_KEY "OBPCONS" |
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81 | |||
82 | /* magic string contained at the beginning of the console buffer */ |
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83 | #define SGCN_BUFFER_MAGIC "CON" |
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84 | |||
85 | /* |
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86 | * Returns a pointer to the object of a given type which is placed at the given |
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87 | * offset from the SRAM beginning. |
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88 | */ |
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89 | #define SRAM(type, offset) ((type *) (sram_begin + (offset))) |
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90 | |||
91 | /* Returns a pointer to the SRAM table of contents. */ |
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92 | #define SRAM_TOC (SRAM(iosram_toc_t, 0)) |
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93 | |||
94 | /* |
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95 | * Returns a pointer to the object of a given type which is placed at the given |
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96 | * offset from the console buffer beginning. |
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97 | */ |
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98 | #define SGCN_BUFFER(type, offset) \ |
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99 | ((type *) (sgcn_buffer_begin + (offset))) |
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100 | |||
3549 | rimsky | 101 | /** Returns a pointer to the console buffer header. */ |
3502 | rimsky | 102 | #define SGCN_BUFFER_HEADER (SGCN_BUFFER(sgcn_buffer_header_t, 0)) |
103 | |||
3549 | rimsky | 104 | /** defined in drivers/kbd.c */ |
105 | extern kbd_type_t kbd_type; |
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3502 | rimsky | 106 | |
3549 | rimsky | 107 | /** starting address of SRAM, will be set by the init_sram_begin function */ |
3502 | rimsky | 108 | static uintptr_t sram_begin; |
109 | |||
3549 | rimsky | 110 | /** |
3502 | rimsky | 111 | * starting address of the SGCN buffer, will be set by the |
112 | * init_sgcn_buffer_begin function |
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113 | */ |
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114 | static uintptr_t sgcn_buffer_begin; |
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115 | |||
4070 | rimsky | 116 | /* true iff the kernel driver should ignore pressed keys */ |
117 | static bool kbd_disabled; |
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3502 | rimsky | 118 | |
119 | /* |
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120 | * Ensures that writing to the buffer and consequent update of the write pointer |
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121 | * are together one atomic operation. |
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122 | */ |
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123 | SPINLOCK_INITIALIZE(sgcn_output_lock); |
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124 | |||
3514 | rimsky | 125 | /* |
3549 | rimsky | 126 | * Prevents the input buffer read/write pointers from getting to inconsistent |
127 | * state. |
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3514 | rimsky | 128 | */ |
129 | SPINLOCK_INITIALIZE(sgcn_input_lock); |
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3502 | rimsky | 130 | |
131 | |||
3514 | rimsky | 132 | /* functions referenced from definitions of I/O operations structures */ |
133 | static void sgcn_noop(chardev_t *); |
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3852 | jermar | 134 | static void sgcn_putchar(chardev_t *, const char, bool); |
3514 | rimsky | 135 | static char sgcn_key_read(chardev_t *); |
136 | |||
3549 | rimsky | 137 | /** character device operations */ |
138 | static chardev_operations_t sgcn_ops = { |
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3514 | rimsky | 139 | .suspend = sgcn_noop, |
140 | .resume = sgcn_noop, |
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3549 | rimsky | 141 | .read = sgcn_key_read, |
142 | .write = sgcn_putchar |
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3502 | rimsky | 143 | }; |
144 | |||
3549 | rimsky | 145 | /** SGCN character device */ |
146 | chardev_t sgcn_io; |
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3514 | rimsky | 147 | |
3549 | rimsky | 148 | /** |
3908 | decky | 149 | * Set some sysinfo values (SRAM address and SRAM size). |
3549 | rimsky | 150 | */ |
3908 | decky | 151 | static void register_sram(uintptr_t sram_begin_physical) |
3549 | rimsky | 152 | { |
153 | sysinfo_set_item_val("sram.area.size", NULL, MAPPED_AREA_SIZE); |
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3618 | rimsky | 154 | sysinfo_set_item_val("sram.address.physical", NULL, |
155 | sram_begin_physical); |
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3549 | rimsky | 156 | } |
3514 | rimsky | 157 | |
3502 | rimsky | 158 | /** |
159 | * Initializes the starting address of SRAM. |
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160 | * |
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161 | * The SRAM starts 0x900000 + C bytes behind the SBBC start in the |
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162 | * physical memory, where C is the value read from the "iosram-toc" |
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163 | * property of the "/chosen" OBP node. The sram_begin variable will |
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164 | * be set to the virtual address which maps to the SRAM physical |
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3549 | rimsky | 165 | * address. |
166 | * |
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167 | * It also registers the physical area of SRAM and sets some sysinfo |
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168 | * values (SRAM address and SRAM size). |
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3502 | rimsky | 169 | */ |
170 | static void init_sram_begin(void) |
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171 | { |
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172 | ofw_tree_node_t *chosen; |
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173 | ofw_tree_property_t *iosram_toc; |
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3549 | rimsky | 174 | uintptr_t sram_begin_physical; |
3502 | rimsky | 175 | |
176 | chosen = ofw_tree_lookup("/chosen"); |
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177 | if (!chosen) |
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3790 | svoboda | 178 | panic("Cannot find '/chosen'."); |
3502 | rimsky | 179 | |
180 | iosram_toc = ofw_tree_getprop(chosen, "iosram-toc"); |
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181 | if (!iosram_toc) |
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3790 | svoboda | 182 | panic("Cannot find property 'iosram-toc'."); |
3502 | rimsky | 183 | if (!iosram_toc->value) |
3790 | svoboda | 184 | panic("Cannot find SRAM TOC."); |
3502 | rimsky | 185 | |
3549 | rimsky | 186 | sram_begin_physical = SBBC_START + SBBC_SRAM_OFFSET |
187 | + *((uint32_t *) iosram_toc->value); |
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188 | sram_begin = hw_map(sram_begin_physical, MAPPED_AREA_SIZE); |
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189 | |||
3908 | decky | 190 | register_sram(sram_begin_physical); |
3502 | rimsky | 191 | } |
192 | |||
193 | /** |
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194 | * Initializes the starting address of the SGCN buffer. |
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195 | * |
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196 | * The offset of the SGCN buffer within SRAM is obtained from the |
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197 | * SRAM table of contents. The table of contents contains |
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198 | * information about several buffers, among which there is an OBP |
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199 | * console buffer - this one will be used as the SGCN buffer. |
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3549 | rimsky | 200 | * |
201 | * This function also writes the offset of the SGCN buffer within SRAM |
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202 | * under the sram.buffer.offset sysinfo key. |
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3502 | rimsky | 203 | */ |
204 | static void sgcn_buffer_begin_init(void) |
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205 | { |
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206 | init_sram_begin(); |
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207 | |||
208 | ASSERT(strcmp(SRAM_TOC->magic, SRAM_TOC_MAGIC) == 0); |
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209 | |||
210 | /* lookup TOC entry with the correct key */ |
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211 | uint32_t i; |
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212 | for (i = 0; i < MAX_TOC_ENTRIES; i++) { |
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213 | if (strcmp(SRAM_TOC->keys[i].key, CONSOLE_KEY) == 0) |
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214 | break; |
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215 | } |
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216 | ASSERT(i < MAX_TOC_ENTRIES); |
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217 | |||
218 | sgcn_buffer_begin = sram_begin + SRAM_TOC->keys[i].offset; |
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3549 | rimsky | 219 | |
220 | sysinfo_set_item_val("sram.buffer.offset", NULL, |
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221 | SRAM_TOC->keys[i].offset); |
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3502 | rimsky | 222 | } |
223 | |||
224 | /** |
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3514 | rimsky | 225 | * Default suspend/resume operation for the input device. |
226 | */ |
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227 | static void sgcn_noop(chardev_t *d) |
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228 | { |
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229 | } |
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230 | |||
231 | /** |
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3502 | rimsky | 232 | * Writes a single character to the SGCN (circular) output buffer |
233 | * and updates the output write pointer so that SGCN gets to know |
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234 | * that the character has been written. |
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235 | */ |
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236 | static void sgcn_do_putchar(const char c) |
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237 | { |
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238 | uint32_t begin = SGCN_BUFFER_HEADER->out_begin; |
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239 | uint32_t end = SGCN_BUFFER_HEADER->out_end; |
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240 | uint32_t size = end - begin; |
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241 | |||
242 | /* we need pointers to volatile variables */ |
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243 | volatile char *buf_ptr = (volatile char *) |
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244 | SGCN_BUFFER(char, SGCN_BUFFER_HEADER->out_wrptr); |
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245 | volatile uint32_t *out_wrptr_ptr = &(SGCN_BUFFER_HEADER->out_wrptr); |
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246 | volatile uint32_t *out_rdptr_ptr = &(SGCN_BUFFER_HEADER->out_rdptr); |
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247 | |||
248 | /* |
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249 | * Write the character and increment the write pointer modulo the |
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250 | * output buffer size. Note that if we are to rewrite a character |
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251 | * which has not been read by the SGCN controller yet (i.e. the output |
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252 | * buffer is full), we need to wait until the controller reads some more |
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253 | * characters. We wait actively, which means that all threads waiting |
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254 | * for the lock are blocked. However, this situation is |
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255 | * 1) rare - the output buffer is big, so filling the whole |
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256 | * output buffer is improbable |
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257 | * 2) short-lasting - it will take the controller only a fraction |
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258 | * of millisecond to pick the unread characters up |
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259 | * 3) not serious - the blocked threads are those that print something |
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260 | * to user console, which is not a time-critical operation |
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261 | */ |
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262 | uint32_t new_wrptr = (((*out_wrptr_ptr) - begin + 1) % size) + begin; |
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263 | while (*out_rdptr_ptr == new_wrptr) |
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264 | ; |
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265 | *buf_ptr = c; |
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266 | *out_wrptr_ptr = new_wrptr; |
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267 | } |
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268 | |||
269 | /** |
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270 | * SGCN output operation. Prints a single character to the SGCN. If the line |
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271 | * feed character is written ('\n'), the carriage return character ('\r') is |
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272 | * written straight away. |
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273 | */ |
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3844 | decky | 274 | static void sgcn_putchar(struct chardev * cd, const char c, bool silent) |
3502 | rimsky | 275 | { |
3844 | decky | 276 | if (!silent) { |
277 | spinlock_lock(&sgcn_output_lock); |
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278 | |||
279 | sgcn_do_putchar(c); |
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280 | if (c == '\n') |
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281 | sgcn_do_putchar('\r'); |
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282 | |||
283 | spinlock_unlock(&sgcn_output_lock); |
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3502 | rimsky | 284 | } |
285 | } |
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286 | |||
287 | /** |
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3514 | rimsky | 288 | * Called when actively reading the character. Not implemented yet. |
289 | */ |
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290 | static char sgcn_key_read(chardev_t *d) |
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291 | { |
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292 | return (char) 0; |
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293 | } |
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294 | |||
295 | /** |
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3549 | rimsky | 296 | * Grabs the input for kernel. |
297 | */ |
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298 | void sgcn_grab(void) |
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299 | { |
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4070 | rimsky | 300 | kbd_disabled = true; |
3549 | rimsky | 301 | } |
302 | |||
303 | /** |
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304 | * Releases the input so that userspace can use it. |
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305 | */ |
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306 | void sgcn_release(void) |
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307 | { |
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4070 | rimsky | 308 | kbd_disabled = true; |
3549 | rimsky | 309 | } |
310 | |||
311 | /** |
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3514 | rimsky | 312 | * Function regularly called by the keyboard polling thread. Finds out whether |
313 | * there are some unread characters in the input queue. If so, it picks them up |
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314 | * and sends them to the upper layers of HelenOS. |
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315 | */ |
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4070 | rimsky | 316 | static void sgcn_poll() |
3514 | rimsky | 317 | { |
318 | uint32_t begin = SGCN_BUFFER_HEADER->in_begin; |
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319 | uint32_t end = SGCN_BUFFER_HEADER->in_end; |
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320 | uint32_t size = end - begin; |
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4070 | rimsky | 321 | |
3549 | rimsky | 322 | spinlock_lock(&sgcn_input_lock); |
323 | |||
324 | ipl_t ipl = interrupts_disable(); |
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4070 | rimsky | 325 | |
326 | if (kbd_disabled) { |
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327 | interrupts_restore(ipl); |
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328 | return; |
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329 | } |
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3549 | rimsky | 330 | |
3514 | rimsky | 331 | /* we need pointers to volatile variables */ |
332 | volatile char *buf_ptr = (volatile char *) |
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333 | SGCN_BUFFER(char, SGCN_BUFFER_HEADER->in_rdptr); |
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334 | volatile uint32_t *in_wrptr_ptr = &(SGCN_BUFFER_HEADER->in_wrptr); |
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335 | volatile uint32_t *in_rdptr_ptr = &(SGCN_BUFFER_HEADER->in_rdptr); |
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336 | |||
337 | while (*in_rdptr_ptr != *in_wrptr_ptr) { |
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3549 | rimsky | 338 | |
3514 | rimsky | 339 | buf_ptr = (volatile char *) |
340 | SGCN_BUFFER(char, SGCN_BUFFER_HEADER->in_rdptr); |
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3549 | rimsky | 341 | char c = *buf_ptr; |
342 | *in_rdptr_ptr = (((*in_rdptr_ptr) - begin + 1) % size) + begin; |
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343 | |||
344 | if (c == '\r') { |
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345 | c = '\n'; |
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346 | } |
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347 | chardev_push_character(&sgcn_io, c); |
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348 | } |
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4070 | rimsky | 349 | |
350 | interrupts_restore(ipl); |
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3514 | rimsky | 351 | spinlock_unlock(&sgcn_input_lock); |
352 | } |
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353 | |||
354 | /** |
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4070 | rimsky | 355 | * Polling thread function. |
356 | */ |
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357 | static void kkbdpoll(void *arg) { |
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358 | while (1) { |
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359 | if (!silent) { |
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360 | sgcn_poll(); |
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361 | } |
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362 | thread_usleep(POLL_INTERVAL); |
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363 | } |
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364 | } |
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365 | |||
366 | /** |
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3502 | rimsky | 367 | * A public function which initializes I/O from/to Serengeti console |
368 | * and sets it as a default input/output. |
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369 | */ |
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370 | void sgcn_init(void) |
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371 | { |
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372 | sgcn_buffer_begin_init(); |
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3549 | rimsky | 373 | |
374 | kbd_type = KBD_SGCN; |
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375 | |||
376 | sysinfo_set_item_val("kbd", NULL, true); |
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377 | sysinfo_set_item_val("kbd.type", NULL, KBD_SGCN); |
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378 | sysinfo_set_item_val("fb.kind", NULL, 4); |
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4070 | rimsky | 379 | |
380 | thread_t *t = thread_create(kkbdpoll, NULL, TASK, 0, "kkbdpoll", true); |
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381 | if (!t) |
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382 | panic("Cannot create kkbdpoll."); |
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383 | thread_ready(t); |
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3502 | rimsky | 384 | |
3549 | rimsky | 385 | chardev_initialize("sgcn_io", &sgcn_io, &sgcn_ops); |
386 | stdin = &sgcn_io; |
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387 | stdout = &sgcn_io; |
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3502 | rimsky | 388 | } |
389 | |||
390 | /** @} |
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3549 | rimsky | 391 | */ |