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gbowne1-ad
| Author | SHA1 | Date | |
|---|---|---|---|
| cca6aafd65 | |||
| 49c1bad935 |
66
kernel/hid.c
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66
kernel/hid.c
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#include "hid.h"
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#include "usb.h"
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#include "mouse.h"
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#include "keyboard.h"
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#include "print.h"
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#include <stdint.h>
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#include <stdbool.h>
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// Global variables
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static bool hid_initialized = false;
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void hid_init(void) {
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if (hid_initialized) return;
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hid_initialized = true;
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// Initialize keyboard and mouse HID handling
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keyboard_init();
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// Assume USB mouse has been initialized and is connected.
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usb_hid_init(); // Initializes USB HID for both keyboard and mouse
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}
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void hid_process_report(uint8_t* report, uint8_t length) {
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// Process the HID report based on its type
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if (length == 8) { // Assuming a standard 8-byte report for HID keyboard
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keyboard_hid_report_t* k_report = (keyboard_hid_report_t*) report;
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hid_process_keyboard_report(k_report);
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} else if (length == 3) { // Assuming a standard 3-byte report for HID mouse
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mouse_hid_report_t* m_report = (mouse_hid_report_t*) report;
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hid_process_mouse_report(m_report);
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}
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}
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// Handle HID keyboard report
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void hid_process_keyboard_report(const keyboard_hid_report_t* report) {
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// Iterate over the keycodes and process key presses
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for (int i = 0; i < 6; i++) {
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uint8_t keycode = report->keycodes[i];
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if (keycode != 0) {
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char key = scancode_map[keycode];
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if (key) {
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keyboard_buffer_add(key);
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}
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}
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}
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}
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// Handle HID mouse report
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void hid_process_mouse_report(const mouse_hid_report_t* report) {
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// Process mouse movement and button clicks
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mouse_data.x += report->x;
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mouse_data.y += report->y;
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mouse_data.left_button = (report->buttons & 0x01) != 0;
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mouse_data.right_button = (report->buttons & 0x02) != 0;
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// Print mouse movement for debugging
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print_hex(mouse_data.x, 1, 1);
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print_hex(mouse_data.y, 1, 1);
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print_hex(report->buttons, 1, 1);
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}
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// Parse the HID descriptor (for parsing USB HID device descriptors)
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bool hid_parse_descriptor(uint8_t* descriptor, uint32_t length) {
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// HID descriptors are defined in the USB HID specification, we'll need to parse them here.
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// For now, just return true assuming we have a valid descriptor.
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return true;
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}
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46
kernel/hid.h
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46
kernel/hid.h
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#ifndef HID_H
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#define HID_H
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#include <stdint.h>
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#include <stdbool.h>
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// HID Report types
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#define HID_REPORT_INPUT 0x01
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#define HID_REPORT_OUTPUT 0x02
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#define HID_REPORT_FEATURE 0x03
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// HID usage page constants (USB HID)
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#define HID_USAGE_PAGE_GENERIC 0x01
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#define HID_USAGE_KEYBOARD 0x06
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#define HID_USAGE_MOUSE 0x02
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// HID keyboard and mouse data
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typedef struct {
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uint8_t modifier; // Modifier keys (shift, ctrl, alt, etc.)
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uint8_t reserved; // Reserved byte
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uint8_t keycodes[6]; // Keycodes for keys pressed
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} keyboard_hid_report_t;
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typedef struct {
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uint8_t buttons; // Mouse buttons (bitwise: 0x01 = left, 0x02 = right, 0x04 = middle)
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int8_t x; // X axis movement
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int8_t y; // Y axis movement
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int8_t wheel; // Mouse wheel
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} mouse_hid_report_t;
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// Initialize the HID subsystem
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void hid_init(void);
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// Process an incoming HID report
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void hid_process_report(uint8_t* report, uint8_t length);
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// Process HID keyboard report
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void hid_process_keyboard_report(const keyboard_hid_report_t* report);
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// Process HID mouse report
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void hid_process_mouse_report(const mouse_hid_report_t* report);
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// USB HID report descriptor parsing
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bool hid_parse_descriptor(uint8_t* descriptor, uint32_t length);
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#endif // HID_H
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