Student project by David Berlin and Boris Dogadov made for the Embedded Systems Workshop course given in Tel-Aviv University on 2010 by Sivan Toledo. Visit the project website for more details: http://davidberlin.co.il/sadna/ .

Dependencies:   EthernetNetIf NTPClient_NetServices mbed HTTPServer HTTPClient CyaSSL

Committer:
sivan_toledo
Date:
Mon Apr 25 12:31:46 2011 +0000
Revision:
1:b05231650f32
Parent:
0:3e7d6f496a67

        

Who changed what in which revision?

UserRevisionLine numberNew contents of line
sivan_toledo 0:3e7d6f496a67 1
sivan_toledo 0:3e7d6f496a67 2 /*
sivan_toledo 0:3e7d6f496a67 3 Copyright (c) 2010 Peter Barrett
sivan_toledo 0:3e7d6f496a67 4
sivan_toledo 0:3e7d6f496a67 5 Permission is hereby granted, free of charge, to any person obtaining a copy
sivan_toledo 0:3e7d6f496a67 6 of this software and associated documentation files (the "Software"), to deal
sivan_toledo 0:3e7d6f496a67 7 in the Software without restriction, including without limitation the rights
sivan_toledo 0:3e7d6f496a67 8 to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
sivan_toledo 0:3e7d6f496a67 9 copies of the Software, and to permit persons to whom the Software is
sivan_toledo 0:3e7d6f496a67 10 furnished to do so, subject to the following conditions:
sivan_toledo 0:3e7d6f496a67 11
sivan_toledo 0:3e7d6f496a67 12 The above copyright notice and this permission notice shall be included in
sivan_toledo 0:3e7d6f496a67 13 all copies or substantial portions of the Software.
sivan_toledo 0:3e7d6f496a67 14
sivan_toledo 0:3e7d6f496a67 15 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
sivan_toledo 0:3e7d6f496a67 16 IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
sivan_toledo 0:3e7d6f496a67 17 FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
sivan_toledo 0:3e7d6f496a67 18 AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
sivan_toledo 0:3e7d6f496a67 19 LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
sivan_toledo 0:3e7d6f496a67 20 OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
sivan_toledo 0:3e7d6f496a67 21 THE SOFTWARE.
sivan_toledo 0:3e7d6f496a67 22 */
sivan_toledo 0:3e7d6f496a67 23
sivan_toledo 0:3e7d6f496a67 24 #include "mbed.h"
sivan_toledo 0:3e7d6f496a67 25 #include "USBHost.h"
sivan_toledo 0:3e7d6f496a67 26
sivan_toledo 0:3e7d6f496a67 27 // Config (default uses x bytes)
sivan_toledo 0:3e7d6f496a67 28 #define MAX_DEVICES 8 // Max number of devices
sivan_toledo 0:3e7d6f496a67 29 #define MAX_ENDPOINTS_TOTAL 16 // Max number of endpoints total
sivan_toledo 0:3e7d6f496a67 30 #define MAX_ENDPOINTS_PER_DEVICE 8 // Max number of endpoints for any one device
sivan_toledo 0:3e7d6f496a67 31
sivan_toledo 0:3e7d6f496a67 32 #define USBLOG 1
sivan_toledo 0:3e7d6f496a67 33 #if USBLOG
sivan_toledo 0:3e7d6f496a67 34 #define LOG(...) printf(__VA_ARGS__)
sivan_toledo 0:3e7d6f496a67 35 #else
sivan_toledo 0:3e7d6f496a67 36 #define LOG(...) do {} while(0)
sivan_toledo 0:3e7d6f496a67 37 #endif
sivan_toledo 0:3e7d6f496a67 38
sivan_toledo 0:3e7d6f496a67 39 // USB host structures
sivan_toledo 0:3e7d6f496a67 40
sivan_toledo 0:3e7d6f496a67 41 #define USB_RAM_SIZE 16*1024 // AHB SRAM block 1 TODO MACHINE DEPENDENT
sivan_toledo 0:3e7d6f496a67 42 #define USB_RAM_BASE 0x2007C000
sivan_toledo 0:3e7d6f496a67 43
sivan_toledo 0:3e7d6f496a67 44 #define TOKEN_SETUP 0
sivan_toledo 0:3e7d6f496a67 45 #define TOKEN_IN 1
sivan_toledo 0:3e7d6f496a67 46 #define TOKEN_OUT 2
sivan_toledo 0:3e7d6f496a67 47
sivan_toledo 0:3e7d6f496a67 48 // Status flags from hub
sivan_toledo 0:3e7d6f496a67 49 #define PORT_CONNECTION 0
sivan_toledo 0:3e7d6f496a67 50 #define PORT_ENABLE 1
sivan_toledo 0:3e7d6f496a67 51 #define PORT_SUSPEND 2
sivan_toledo 0:3e7d6f496a67 52 #define PORT_OVER_CURRENT 3
sivan_toledo 0:3e7d6f496a67 53 #define PORT_RESET 4
sivan_toledo 0:3e7d6f496a67 54 #define PORT_POWER 8
sivan_toledo 0:3e7d6f496a67 55 #define PORT_LOW_SPEED 9
sivan_toledo 0:3e7d6f496a67 56
sivan_toledo 0:3e7d6f496a67 57 #define C_PORT_CONNECTION 16
sivan_toledo 0:3e7d6f496a67 58 #define C_PORT_ENABLE 17
sivan_toledo 0:3e7d6f496a67 59 #define C_PORT_SUSPEND 18
sivan_toledo 0:3e7d6f496a67 60 #define C_PORT_OVER_CURRENT 19
sivan_toledo 0:3e7d6f496a67 61 #define C_PORT_RESET 20
sivan_toledo 0:3e7d6f496a67 62
sivan_toledo 0:3e7d6f496a67 63 typedef struct {
sivan_toledo 0:3e7d6f496a67 64 u8 bm_request_type;
sivan_toledo 0:3e7d6f496a67 65 u8 b_request;
sivan_toledo 0:3e7d6f496a67 66 u16 w_value;
sivan_toledo 0:3e7d6f496a67 67 u16 w_index;
sivan_toledo 0:3e7d6f496a67 68 u16 w_length;
sivan_toledo 0:3e7d6f496a67 69 } Setup;
sivan_toledo 0:3e7d6f496a67 70
sivan_toledo 0:3e7d6f496a67 71
sivan_toledo 0:3e7d6f496a67 72 // Hub stuff is kept private just to keep api simple
sivan_toledo 0:3e7d6f496a67 73 int SetPortFeature(int device, int feature, int index);
sivan_toledo 0:3e7d6f496a67 74 int ClearPortFeature(int device, int feature, int index);
sivan_toledo 0:3e7d6f496a67 75 int SetPortPower(int device, int port);
sivan_toledo 0:3e7d6f496a67 76 int SetPortReset(int device, int port);
sivan_toledo 0:3e7d6f496a67 77 int GetPortStatus(int device, int port, u32* status);
sivan_toledo 0:3e7d6f496a67 78
sivan_toledo 0:3e7d6f496a67 79 //===================================================================
sivan_toledo 0:3e7d6f496a67 80 //===================================================================
sivan_toledo 0:3e7d6f496a67 81 // Hardware defines
sivan_toledo 0:3e7d6f496a67 82
sivan_toledo 0:3e7d6f496a67 83 // HcControl
sivan_toledo 0:3e7d6f496a67 84 #define PeriodicListEnable 0x00000004
sivan_toledo 0:3e7d6f496a67 85 #define IsochronousEnable 0x00000008
sivan_toledo 0:3e7d6f496a67 86 #define ControlListEnable 0x00000010
sivan_toledo 0:3e7d6f496a67 87 #define BulkListEnable 0x00000020
sivan_toledo 0:3e7d6f496a67 88 #define OperationalMask 0x00000080
sivan_toledo 0:3e7d6f496a67 89 #define HostControllerFunctionalState 0x000000C0
sivan_toledo 0:3e7d6f496a67 90
sivan_toledo 0:3e7d6f496a67 91 // HcCommandStatus
sivan_toledo 0:3e7d6f496a67 92 #define HostControllerReset 0x00000001
sivan_toledo 0:3e7d6f496a67 93 #define ControlListFilled 0x00000002
sivan_toledo 0:3e7d6f496a67 94 #define BulkListFilled 0x00000004
sivan_toledo 0:3e7d6f496a67 95
sivan_toledo 0:3e7d6f496a67 96 // HcInterruptStatus Register
sivan_toledo 0:3e7d6f496a67 97 #define WritebackDoneHead 0x00000002
sivan_toledo 0:3e7d6f496a67 98 #define StartofFrame 0x00000004
sivan_toledo 0:3e7d6f496a67 99 #define ResumeDetected 0x00000008
sivan_toledo 0:3e7d6f496a67 100 #define UnrecoverableError 0x00000010
sivan_toledo 0:3e7d6f496a67 101 #define FrameNumberOverflow 0x00000020
sivan_toledo 0:3e7d6f496a67 102 #define RootHubStatusChange 0x00000040
sivan_toledo 0:3e7d6f496a67 103 #define OwnershipChange 0x00000080
sivan_toledo 0:3e7d6f496a67 104 #define MasterInterruptEnable 0x80000000
sivan_toledo 0:3e7d6f496a67 105
sivan_toledo 0:3e7d6f496a67 106 // HcRhStatus
sivan_toledo 0:3e7d6f496a67 107 #define SetGlobalPower 0x00010000
sivan_toledo 0:3e7d6f496a67 108 #define DeviceRemoteWakeupEnable 0x00008000
sivan_toledo 0:3e7d6f496a67 109
sivan_toledo 0:3e7d6f496a67 110 // HcRhPortStatus (hub 0, port 1)
sivan_toledo 0:3e7d6f496a67 111 #define CurrentConnectStatus 0x00000001
sivan_toledo 0:3e7d6f496a67 112 #define PortEnableStatus 0x00000002
sivan_toledo 0:3e7d6f496a67 113 #define PortSuspendStatus 0x00000004
sivan_toledo 0:3e7d6f496a67 114 #define PortOverCurrentIndicator 0x00000008
sivan_toledo 0:3e7d6f496a67 115 #define PortResetStatus 0x00000010
sivan_toledo 0:3e7d6f496a67 116
sivan_toledo 0:3e7d6f496a67 117 #define PortPowerStatus 0x00000100
sivan_toledo 0:3e7d6f496a67 118 #define LowspeedDevice 0x00000200
sivan_toledo 0:3e7d6f496a67 119 #define HighspeedDevice 0x00000400
sivan_toledo 0:3e7d6f496a67 120
sivan_toledo 0:3e7d6f496a67 121 #define ConnectStatusChange (CurrentConnectStatus << 16)
sivan_toledo 0:3e7d6f496a67 122 #define PortResetStatusChange (PortResetStatus << 16)
sivan_toledo 0:3e7d6f496a67 123
sivan_toledo 0:3e7d6f496a67 124
sivan_toledo 0:3e7d6f496a67 125 #define TD_ROUNDING (u32)0x00040000
sivan_toledo 0:3e7d6f496a67 126 #define TD_SETUP (u32)0x00000000
sivan_toledo 0:3e7d6f496a67 127 #define TD_IN (u32)0x00100000
sivan_toledo 0:3e7d6f496a67 128 #define TD_OUT (u32)0x00080000
sivan_toledo 0:3e7d6f496a67 129 #define TD_DELAY_INT(x) (u32)((x) << 21)
sivan_toledo 0:3e7d6f496a67 130 #define TD_TOGGLE_0 (u32)0x02000000
sivan_toledo 0:3e7d6f496a67 131 #define TD_TOGGLE_1 (u32)0x03000000
sivan_toledo 0:3e7d6f496a67 132 #define TD_CC (u32)0xF0000000
sivan_toledo 0:3e7d6f496a67 133
sivan_toledo 0:3e7d6f496a67 134 // HostController EndPoint Descriptor
sivan_toledo 0:3e7d6f496a67 135 typedef struct {
sivan_toledo 0:3e7d6f496a67 136 volatile u32 Control;
sivan_toledo 0:3e7d6f496a67 137 volatile u32 TailTd;
sivan_toledo 0:3e7d6f496a67 138 volatile u32 HeadTd;
sivan_toledo 0:3e7d6f496a67 139 volatile u32 Next;
sivan_toledo 0:3e7d6f496a67 140 } HCED;
sivan_toledo 0:3e7d6f496a67 141
sivan_toledo 0:3e7d6f496a67 142 // HostController Transfer Descriptor
sivan_toledo 0:3e7d6f496a67 143 typedef struct {
sivan_toledo 0:3e7d6f496a67 144 volatile u32 Control;
sivan_toledo 0:3e7d6f496a67 145 volatile u32 CurrBufPtr;
sivan_toledo 0:3e7d6f496a67 146 volatile u32 Next;
sivan_toledo 0:3e7d6f496a67 147 volatile u32 BufEnd;
sivan_toledo 0:3e7d6f496a67 148 } HCTD;
sivan_toledo 0:3e7d6f496a67 149
sivan_toledo 0:3e7d6f496a67 150 // Host Controller Communication Area
sivan_toledo 0:3e7d6f496a67 151 typedef struct {
sivan_toledo 0:3e7d6f496a67 152 volatile u32 InterruptTable[32];
sivan_toledo 0:3e7d6f496a67 153 volatile u16 FrameNumber;
sivan_toledo 0:3e7d6f496a67 154 volatile u16 FrameNumberPad;
sivan_toledo 0:3e7d6f496a67 155 volatile u32 DoneHead;
sivan_toledo 0:3e7d6f496a67 156 volatile u8 Reserved[120];
sivan_toledo 0:3e7d6f496a67 157 } HCCA;
sivan_toledo 0:3e7d6f496a67 158
sivan_toledo 0:3e7d6f496a67 159 //====================================================================================
sivan_toledo 0:3e7d6f496a67 160 //====================================================================================
sivan_toledo 0:3e7d6f496a67 161
sivan_toledo 0:3e7d6f496a67 162 class HostController;
sivan_toledo 0:3e7d6f496a67 163 class Endpoint;
sivan_toledo 0:3e7d6f496a67 164 class Device;
sivan_toledo 0:3e7d6f496a67 165
sivan_toledo 0:3e7d6f496a67 166 // must be 3*16 bytes long
sivan_toledo 0:3e7d6f496a67 167 class Endpoint
sivan_toledo 0:3e7d6f496a67 168 {
sivan_toledo 0:3e7d6f496a67 169 public:
sivan_toledo 0:3e7d6f496a67 170 HCED EndpointDescriptor; // Pointer to EndpointDescriptor == Pointer to Endpoint
sivan_toledo 0:3e7d6f496a67 171 HCTD TDHead;
sivan_toledo 0:3e7d6f496a67 172
sivan_toledo 0:3e7d6f496a67 173 enum State
sivan_toledo 0:3e7d6f496a67 174 {
sivan_toledo 0:3e7d6f496a67 175 Free,
sivan_toledo 0:3e7d6f496a67 176 NotQueued,
sivan_toledo 0:3e7d6f496a67 177 Idle,
sivan_toledo 0:3e7d6f496a67 178 SetupQueued,
sivan_toledo 0:3e7d6f496a67 179 DataQueued,
sivan_toledo 0:3e7d6f496a67 180 StatusQueued,
sivan_toledo 0:3e7d6f496a67 181 CallbackPending
sivan_toledo 0:3e7d6f496a67 182 };
sivan_toledo 0:3e7d6f496a67 183
sivan_toledo 0:3e7d6f496a67 184 volatile u8 CurrentState;
sivan_toledo 0:3e7d6f496a67 185 u8 Flags; // 0x80 In, 0x03 mask endpoint type
sivan_toledo 0:3e7d6f496a67 186
sivan_toledo 0:3e7d6f496a67 187 u16 Length;
sivan_toledo 0:3e7d6f496a67 188 u8* Data;
sivan_toledo 0:3e7d6f496a67 189 USBCallback Callback; // Must be a multiple of 16 bytes long
sivan_toledo 0:3e7d6f496a67 190 void* UserData;
sivan_toledo 0:3e7d6f496a67 191
sivan_toledo 0:3e7d6f496a67 192 int Address()
sivan_toledo 0:3e7d6f496a67 193 {
sivan_toledo 0:3e7d6f496a67 194 int ep = (EndpointDescriptor.Control >> 7) & 0xF;
sivan_toledo 0:3e7d6f496a67 195 if (ep)
sivan_toledo 0:3e7d6f496a67 196 ep |= Flags & 0x80;
sivan_toledo 0:3e7d6f496a67 197 return ep;
sivan_toledo 0:3e7d6f496a67 198 }
sivan_toledo 0:3e7d6f496a67 199
sivan_toledo 0:3e7d6f496a67 200 int Device()
sivan_toledo 0:3e7d6f496a67 201 {
sivan_toledo 0:3e7d6f496a67 202 return EndpointDescriptor.Control & 0x7F;
sivan_toledo 0:3e7d6f496a67 203 }
sivan_toledo 0:3e7d6f496a67 204
sivan_toledo 0:3e7d6f496a67 205 int Status()
sivan_toledo 0:3e7d6f496a67 206 {
sivan_toledo 0:3e7d6f496a67 207 return (TDHead.Control >> 28) & 0xF;
sivan_toledo 0:3e7d6f496a67 208 }
sivan_toledo 0:3e7d6f496a67 209
sivan_toledo 0:3e7d6f496a67 210 u32 Enqueue(u32 head)
sivan_toledo 0:3e7d6f496a67 211 {
sivan_toledo 0:3e7d6f496a67 212 if (CurrentState == NotQueued)
sivan_toledo 0:3e7d6f496a67 213 {
sivan_toledo 0:3e7d6f496a67 214 EndpointDescriptor.Next = head;
sivan_toledo 0:3e7d6f496a67 215 head = (u32)&EndpointDescriptor;
sivan_toledo 0:3e7d6f496a67 216 CurrentState = Idle;
sivan_toledo 0:3e7d6f496a67 217 }
sivan_toledo 0:3e7d6f496a67 218 return head;
sivan_toledo 0:3e7d6f496a67 219 }
sivan_toledo 0:3e7d6f496a67 220 };
sivan_toledo 0:3e7d6f496a67 221
sivan_toledo 0:3e7d6f496a67 222 class Device
sivan_toledo 0:3e7d6f496a67 223 {
sivan_toledo 0:3e7d6f496a67 224 public:
sivan_toledo 0:3e7d6f496a67 225 u8 _endpointMap[MAX_ENDPOINTS_PER_DEVICE*2];
sivan_toledo 0:3e7d6f496a67 226 u8 Hub;
sivan_toledo 0:3e7d6f496a67 227 u8 Port;
sivan_toledo 0:3e7d6f496a67 228 u8 Addr;
sivan_toledo 0:3e7d6f496a67 229 u8 Pad;
sivan_toledo 0:3e7d6f496a67 230
sivan_toledo 0:3e7d6f496a67 231 // Only if this device is a hub
sivan_toledo 0:3e7d6f496a67 232 u8 HubPortCount; // nonzero if this is a hub
sivan_toledo 0:3e7d6f496a67 233 u8 HubInterruptData;
sivan_toledo 0:3e7d6f496a67 234 u8 HubMap;
sivan_toledo 0:3e7d6f496a67 235 u8 HubMask;
sivan_toledo 0:3e7d6f496a67 236
sivan_toledo 0:3e7d6f496a67 237 int Flags; // 1 = Disconnected
sivan_toledo 0:3e7d6f496a67 238
sivan_toledo 0:3e7d6f496a67 239 Setup SetupBuffer;
sivan_toledo 0:3e7d6f496a67 240
sivan_toledo 0:3e7d6f496a67 241 // Allocate endpoint zero
sivan_toledo 0:3e7d6f496a67 242 int Init(DeviceDescriptor* d, int hub, int port, int addr, int lowSpeed)
sivan_toledo 0:3e7d6f496a67 243 {
sivan_toledo 0:3e7d6f496a67 244 Hub = hub;
sivan_toledo 0:3e7d6f496a67 245 Port = port;
sivan_toledo 0:3e7d6f496a67 246 Addr = addr;
sivan_toledo 0:3e7d6f496a67 247 Flags = lowSpeed;
sivan_toledo 0:3e7d6f496a67 248 memset(_endpointMap,0xFF,sizeof(_endpointMap));
sivan_toledo 0:3e7d6f496a67 249 return 0;
sivan_toledo 0:3e7d6f496a67 250 }
sivan_toledo 0:3e7d6f496a67 251
sivan_toledo 0:3e7d6f496a67 252 int SetEndpointIndex(int ep, int endpointIndex)
sivan_toledo 0:3e7d6f496a67 253 {
sivan_toledo 0:3e7d6f496a67 254 for (int i = 0; i < MAX_ENDPOINTS_PER_DEVICE*2; i += 2)
sivan_toledo 0:3e7d6f496a67 255 {
sivan_toledo 0:3e7d6f496a67 256 if (_endpointMap[i] == 0xFF) // Add endpoint to map
sivan_toledo 0:3e7d6f496a67 257 {
sivan_toledo 0:3e7d6f496a67 258 _endpointMap[i] = ep;
sivan_toledo 0:3e7d6f496a67 259 _endpointMap[i+1] = endpointIndex;
sivan_toledo 0:3e7d6f496a67 260 return 0;
sivan_toledo 0:3e7d6f496a67 261 }
sivan_toledo 0:3e7d6f496a67 262 }
sivan_toledo 0:3e7d6f496a67 263 return ERR_ENDPOINT_NONE_LEFT;
sivan_toledo 0:3e7d6f496a67 264 }
sivan_toledo 0:3e7d6f496a67 265
sivan_toledo 0:3e7d6f496a67 266 int GetEndpointIndex(int ep)
sivan_toledo 0:3e7d6f496a67 267 {
sivan_toledo 0:3e7d6f496a67 268 for (int i = 0; i < MAX_ENDPOINTS_PER_DEVICE*2; i += 2)
sivan_toledo 0:3e7d6f496a67 269 {
sivan_toledo 0:3e7d6f496a67 270 if (_endpointMap[i] == ep)
sivan_toledo 0:3e7d6f496a67 271 return _endpointMap[i+1];
sivan_toledo 0:3e7d6f496a67 272 if (_endpointMap[i] == 0xFF)
sivan_toledo 0:3e7d6f496a67 273 break;
sivan_toledo 0:3e7d6f496a67 274 }
sivan_toledo 0:3e7d6f496a67 275 return -1;
sivan_toledo 0:3e7d6f496a67 276 }
sivan_toledo 0:3e7d6f496a67 277 };
sivan_toledo 0:3e7d6f496a67 278
sivan_toledo 0:3e7d6f496a67 279 class HostController
sivan_toledo 0:3e7d6f496a67 280 {
sivan_toledo 0:3e7d6f496a67 281 public:
sivan_toledo 0:3e7d6f496a67 282 HCCA CommunicationArea;
sivan_toledo 0:3e7d6f496a67 283 Endpoint Endpoints[MAX_ENDPOINTS_TOTAL]; // Multiple of 16
sivan_toledo 0:3e7d6f496a67 284
sivan_toledo 0:3e7d6f496a67 285 Endpoint EndpointZero; // For device enumeration
sivan_toledo 0:3e7d6f496a67 286 HCTD _commonTail;
sivan_toledo 0:3e7d6f496a67 287 Setup _setupZero;
sivan_toledo 0:3e7d6f496a67 288
sivan_toledo 0:3e7d6f496a67 289 Device Devices[MAX_DEVICES];
sivan_toledo 0:3e7d6f496a67 290 u32 _frameNumber; // 32 bit ms counter
sivan_toledo 0:3e7d6f496a67 291
sivan_toledo 0:3e7d6f496a67 292 u8 _callbacksPending; // Endpoints with callbacks are pending, set from ISR via ProcessDoneQueue
sivan_toledo 0:3e7d6f496a67 293 u8 _rootHubStatusChange; // Root hub status has changed, set from ISR
sivan_toledo 0:3e7d6f496a67 294 u8 _unused0;
sivan_toledo 0:3e7d6f496a67 295 u8 _unused1;
sivan_toledo 0:3e7d6f496a67 296
sivan_toledo 0:3e7d6f496a67 297 u8 _connectPending; // Reset has initiated a connect
sivan_toledo 0:3e7d6f496a67 298 u8 _connectCountdown; // Number of ms left after reset before we can connect
sivan_toledo 0:3e7d6f496a67 299 u8 _connectHub; // Will connect on this hub
sivan_toledo 0:3e7d6f496a67 300 u8 _connectPort; // ... and this port
sivan_toledo 0:3e7d6f496a67 301
sivan_toledo 0:3e7d6f496a67 302 u8 SRAM[0]; // Start of free SRAM
sivan_toledo 0:3e7d6f496a67 303
sivan_toledo 0:3e7d6f496a67 304 void Loop()
sivan_toledo 0:3e7d6f496a67 305 {
sivan_toledo 0:3e7d6f496a67 306 u16 elapsed = CommunicationArea.FrameNumber - (u16)_frameNumber; // extend to 32 bits
sivan_toledo 0:3e7d6f496a67 307 _frameNumber += elapsed;
sivan_toledo 0:3e7d6f496a67 308
sivan_toledo 0:3e7d6f496a67 309 // Do callbacks, if any
sivan_toledo 0:3e7d6f496a67 310 while (_callbacksPending)
sivan_toledo 0:3e7d6f496a67 311 {
sivan_toledo 0:3e7d6f496a67 312 for (int i = 0; i < MAX_ENDPOINTS_TOTAL; i++)
sivan_toledo 0:3e7d6f496a67 313 {
sivan_toledo 0:3e7d6f496a67 314 Endpoint* endpoint = Endpoints + i;
sivan_toledo 0:3e7d6f496a67 315 if (endpoint->CurrentState == Endpoint::CallbackPending)
sivan_toledo 0:3e7d6f496a67 316 {
sivan_toledo 0:3e7d6f496a67 317 _callbacksPending--;
sivan_toledo 0:3e7d6f496a67 318 endpoint->CurrentState = Endpoint::Idle;
sivan_toledo 0:3e7d6f496a67 319 endpoint->Callback(endpoint->Device(),endpoint->Address(),endpoint->Status(),endpoint->Data,endpoint->Length,endpoint->UserData);
sivan_toledo 0:3e7d6f496a67 320 }
sivan_toledo 0:3e7d6f496a67 321 }
sivan_toledo 0:3e7d6f496a67 322 }
sivan_toledo 0:3e7d6f496a67 323
sivan_toledo 0:3e7d6f496a67 324 // Deal with changes on the root hub
sivan_toledo 0:3e7d6f496a67 325 if (_rootHubStatusChange)
sivan_toledo 0:3e7d6f496a67 326 {
sivan_toledo 0:3e7d6f496a67 327 u32 status = LPC_USB->HcRhPortStatus1;
sivan_toledo 0:3e7d6f496a67 328 _rootHubStatusChange = 0;
sivan_toledo 0:3e7d6f496a67 329 if (status >> 16)
sivan_toledo 0:3e7d6f496a67 330 {
sivan_toledo 0:3e7d6f496a67 331 HubStatusChange(0,1,status);
sivan_toledo 0:3e7d6f496a67 332 LPC_USB->HcRhPortStatus1 = status & 0xFFFF0000; // clear status changes
sivan_toledo 0:3e7d6f496a67 333 }
sivan_toledo 0:3e7d6f496a67 334 }
sivan_toledo 0:3e7d6f496a67 335
sivan_toledo 0:3e7d6f496a67 336 // Connect after reset timeout
sivan_toledo 0:3e7d6f496a67 337 if (_connectCountdown)
sivan_toledo 0:3e7d6f496a67 338 {
sivan_toledo 0:3e7d6f496a67 339 if (elapsed >= _connectCountdown)
sivan_toledo 0:3e7d6f496a67 340 {
sivan_toledo 0:3e7d6f496a67 341 _connectCountdown = 0;
sivan_toledo 0:3e7d6f496a67 342 Connect(_connectHub,_connectPort & 0x7F,_connectPort & 0x80);
sivan_toledo 0:3e7d6f496a67 343 } else
sivan_toledo 0:3e7d6f496a67 344 _connectCountdown -= elapsed;
sivan_toledo 0:3e7d6f496a67 345 }
sivan_toledo 0:3e7d6f496a67 346 }
sivan_toledo 0:3e7d6f496a67 347
sivan_toledo 0:3e7d6f496a67 348 // HubInterrupt - bitmap in dev->HubInterruptData
sivan_toledo 0:3e7d6f496a67 349 void HubInterrupt(int device)
sivan_toledo 0:3e7d6f496a67 350 {
sivan_toledo 0:3e7d6f496a67 351 Device* dev = &Devices[device-1];
sivan_toledo 0:3e7d6f496a67 352 for (int i = 0; i < dev->HubPortCount; i++)
sivan_toledo 0:3e7d6f496a67 353 {
sivan_toledo 0:3e7d6f496a67 354 int port = i+1;
sivan_toledo 0:3e7d6f496a67 355 if (dev->HubInterruptData & (1 << port))
sivan_toledo 0:3e7d6f496a67 356 {
sivan_toledo 0:3e7d6f496a67 357 u32 status = 0;
sivan_toledo 0:3e7d6f496a67 358 GetPortStatus(device,port,&status);
sivan_toledo 0:3e7d6f496a67 359
sivan_toledo 0:3e7d6f496a67 360 if (status >> 16)
sivan_toledo 0:3e7d6f496a67 361 {
sivan_toledo 0:3e7d6f496a67 362 if (_connectPending && (status & ConnectStatusChange))
sivan_toledo 0:3e7d6f496a67 363 continue; // Don't connect again until previous device has been added and addressed
sivan_toledo 0:3e7d6f496a67 364
sivan_toledo 0:3e7d6f496a67 365 HubStatusChange(device,port,status);
sivan_toledo 0:3e7d6f496a67 366 if (status & ConnectStatusChange)
sivan_toledo 0:3e7d6f496a67 367 ClearPortFeature(device,C_PORT_CONNECTION,port);
sivan_toledo 0:3e7d6f496a67 368 if (status & PortResetStatusChange)
sivan_toledo 0:3e7d6f496a67 369 ClearPortFeature(device,C_PORT_RESET,port);
sivan_toledo 0:3e7d6f496a67 370 }
sivan_toledo 0:3e7d6f496a67 371 }
sivan_toledo 0:3e7d6f496a67 372 }
sivan_toledo 0:3e7d6f496a67 373 }
sivan_toledo 0:3e7d6f496a67 374
sivan_toledo 0:3e7d6f496a67 375 static void HubInterruptCallback(int device, int endpoint, int status, u8* data, int len, void* userData)
sivan_toledo 0:3e7d6f496a67 376 {
sivan_toledo 0:3e7d6f496a67 377 HostController* controller = (HostController*)userData;
sivan_toledo 0:3e7d6f496a67 378 if (status == 0)
sivan_toledo 0:3e7d6f496a67 379 controller->HubInterrupt(device);
sivan_toledo 0:3e7d6f496a67 380 USBInterruptTransfer(device,endpoint,data,1,HubInterruptCallback,userData);
sivan_toledo 0:3e7d6f496a67 381 }
sivan_toledo 0:3e7d6f496a67 382
sivan_toledo 0:3e7d6f496a67 383 int InitHub(int device)
sivan_toledo 0:3e7d6f496a67 384 {
sivan_toledo 0:3e7d6f496a67 385 u8 buf[16];
sivan_toledo 0:3e7d6f496a67 386 int r= USBControlTransfer(device,DEVICE_TO_HOST | REQUEST_TYPE_CLASS | RECIPIENT_DEVICE,GET_DESCRIPTOR,(DESCRIPTOR_TYPE_HUB << 8),0,buf,sizeof(buf));
sivan_toledo 0:3e7d6f496a67 387 if (r < 0)
sivan_toledo 0:3e7d6f496a67 388 return ERR_HUB_INIT_FAILED;
sivan_toledo 0:3e7d6f496a67 389
sivan_toledo 0:3e7d6f496a67 390 // turn on power on the hubs ports
sivan_toledo 0:3e7d6f496a67 391 Device* dev = &Devices[device-1];
sivan_toledo 0:3e7d6f496a67 392 int ports = buf[2];
sivan_toledo 0:3e7d6f496a67 393 dev->HubPortCount = ports;
sivan_toledo 0:3e7d6f496a67 394 for (int i = 0; i < ports; i++)
sivan_toledo 0:3e7d6f496a67 395 SetPortPower(device,i+1);
sivan_toledo 0:3e7d6f496a67 396
sivan_toledo 0:3e7d6f496a67 397 // Enable hub change interrupts
sivan_toledo 0:3e7d6f496a67 398 return USBInterruptTransfer(device,0x81,&dev->HubInterruptData,1,HubInterruptCallback,this);
sivan_toledo 0:3e7d6f496a67 399 }
sivan_toledo 0:3e7d6f496a67 400
sivan_toledo 0:3e7d6f496a67 401 int AddEndpoint(int device, int ep, int attributes, int maxPacketSize, int interval)
sivan_toledo 0:3e7d6f496a67 402 {
sivan_toledo 0:3e7d6f496a67 403 LOG("AddEndpoint D:%02X A:%02X T:%02X P:%04X I:%02X\n",device,ep,attributes,maxPacketSize,interval);
sivan_toledo 0:3e7d6f496a67 404 Device* dev = &Devices[device-1];
sivan_toledo 0:3e7d6f496a67 405 Endpoint* endpoint = AllocateEndpoint(device,ep,attributes,maxPacketSize);
sivan_toledo 0:3e7d6f496a67 406 if (!endpoint)
sivan_toledo 0:3e7d6f496a67 407 return ERR_ENDPOINT_NONE_LEFT;
sivan_toledo 0:3e7d6f496a67 408 dev->SetEndpointIndex(ep,endpoint - Endpoints);
sivan_toledo 0:3e7d6f496a67 409 endpoint->EndpointDescriptor.Control |= dev->Flags; // Map in slow speed
sivan_toledo 0:3e7d6f496a67 410 return 0; // TODO ed->bInterval
sivan_toledo 0:3e7d6f496a67 411 }
sivan_toledo 0:3e7d6f496a67 412
sivan_toledo 0:3e7d6f496a67 413 int AddEndpoint(int device, EndpointDescriptor* ed)
sivan_toledo 0:3e7d6f496a67 414 {
sivan_toledo 0:3e7d6f496a67 415 return AddEndpoint(device,ed->bEndpointAddress,ed->bmAttributes,ed->wMaxPacketSize,ed->bInterval);
sivan_toledo 0:3e7d6f496a67 416 }
sivan_toledo 0:3e7d6f496a67 417
sivan_toledo 0:3e7d6f496a67 418 // allocate a endpoint
sivan_toledo 0:3e7d6f496a67 419 Endpoint* AllocateEndpoint(int device, int endpointAddress, int type, int maxPacketSize)
sivan_toledo 0:3e7d6f496a67 420 {
sivan_toledo 0:3e7d6f496a67 421 for (int i = 0; i < MAX_ENDPOINTS_TOTAL; i++)
sivan_toledo 0:3e7d6f496a67 422 {
sivan_toledo 0:3e7d6f496a67 423 Endpoint* ep = &Endpoints[i];
sivan_toledo 0:3e7d6f496a67 424 if (ep->CurrentState == 0)
sivan_toledo 0:3e7d6f496a67 425 {
sivan_toledo 0:3e7d6f496a67 426 //LOG("Allocated endpoint %d to %02X:%02X\n",i,device,endpointAddress);
sivan_toledo 0:3e7d6f496a67 427 ep->Flags = (endpointAddress & 0x80) | (type & 3);
sivan_toledo 0:3e7d6f496a67 428 ep->CurrentState = Endpoint::NotQueued;
sivan_toledo 0:3e7d6f496a67 429 ep->EndpointDescriptor.Control = (maxPacketSize << 16) | ((endpointAddress & 0x7F) << 7) | device;
sivan_toledo 0:3e7d6f496a67 430 return ep;
sivan_toledo 0:3e7d6f496a67 431 }
sivan_toledo 0:3e7d6f496a67 432 }
sivan_toledo 0:3e7d6f496a67 433 return 0;
sivan_toledo 0:3e7d6f496a67 434 }
sivan_toledo 0:3e7d6f496a67 435
sivan_toledo 0:3e7d6f496a67 436 Endpoint* GetEndpoint(int device, int ep)
sivan_toledo 0:3e7d6f496a67 437 {
sivan_toledo 0:3e7d6f496a67 438 if (device == 0)
sivan_toledo 0:3e7d6f496a67 439 {
sivan_toledo 0:3e7d6f496a67 440 //printf("WARNING: USING DEVICE 0\n");
sivan_toledo 0:3e7d6f496a67 441 return &EndpointZero;
sivan_toledo 0:3e7d6f496a67 442 }
sivan_toledo 0:3e7d6f496a67 443 if (device > MAX_DEVICES)
sivan_toledo 0:3e7d6f496a67 444 return 0;
sivan_toledo 0:3e7d6f496a67 445 int i = Devices[device-1].GetEndpointIndex(ep);
sivan_toledo 0:3e7d6f496a67 446 if (i == -1)
sivan_toledo 0:3e7d6f496a67 447 return 0;
sivan_toledo 0:3e7d6f496a67 448 return Endpoints + i;
sivan_toledo 0:3e7d6f496a67 449 }
sivan_toledo 0:3e7d6f496a67 450
sivan_toledo 0:3e7d6f496a67 451 int Transfer(Endpoint* endpoint, int token, u8* data, int len, int state)
sivan_toledo 0:3e7d6f496a67 452 {
sivan_toledo 0:3e7d6f496a67 453 //LOG("Transfer %02X T:%d Len:%d S:%d\n",endpoint->Address(),token,len,state);
sivan_toledo 0:3e7d6f496a67 454
sivan_toledo 0:3e7d6f496a67 455 int toggle = 0;
sivan_toledo 0:3e7d6f496a67 456 if (endpoint->Address() == 0)
sivan_toledo 0:3e7d6f496a67 457 toggle = (token == TOKEN_SETUP) ? TD_TOGGLE_0 : TD_TOGGLE_1;
sivan_toledo 0:3e7d6f496a67 458
sivan_toledo 0:3e7d6f496a67 459 if (token != TOKEN_SETUP)
sivan_toledo 0:3e7d6f496a67 460 token = (token == TOKEN_IN ? TD_IN : TD_OUT);
sivan_toledo 0:3e7d6f496a67 461
sivan_toledo 0:3e7d6f496a67 462 HCTD* head = &endpoint->TDHead;
sivan_toledo 0:3e7d6f496a67 463 HCTD* tail = &_commonTail;
sivan_toledo 0:3e7d6f496a67 464
sivan_toledo 0:3e7d6f496a67 465 head->Control = TD_ROUNDING | token | TD_DELAY_INT(0) | toggle | TD_CC;
sivan_toledo 0:3e7d6f496a67 466 head->CurrBufPtr = (u32)data;
sivan_toledo 0:3e7d6f496a67 467 head->BufEnd = (u32)(data + len - 1);
sivan_toledo 0:3e7d6f496a67 468 head->Next = (u32)tail;
sivan_toledo 0:3e7d6f496a67 469
sivan_toledo 0:3e7d6f496a67 470 HCED* ed = &endpoint->EndpointDescriptor;
sivan_toledo 0:3e7d6f496a67 471 ed->HeadTd = (u32)head | (ed->HeadTd & 0x00000002); // carry toggle
sivan_toledo 0:3e7d6f496a67 472 ed->TailTd = (u32)tail;
sivan_toledo 0:3e7d6f496a67 473
sivan_toledo 0:3e7d6f496a67 474 //HCTD* td = head;
sivan_toledo 0:3e7d6f496a67 475 //LOG("%04X TD %08X %08X %08X Next:%08X\n",CommunicationArea.FrameNumber,td->Control,td->CurrBufPtr,td->BufEnd,td->Next);
sivan_toledo 0:3e7d6f496a67 476 //LOG("%04X ED %08X %08X %08X\n",CommunicationArea.FrameNumber,ed->Control,ed->HeadTd,ed->TailTd);
sivan_toledo 0:3e7d6f496a67 477
sivan_toledo 0:3e7d6f496a67 478 switch (endpoint->Flags & 3)
sivan_toledo 0:3e7d6f496a67 479 {
sivan_toledo 0:3e7d6f496a67 480 case ENDPOINT_CONTROL:
sivan_toledo 0:3e7d6f496a67 481 LPC_USB->HcControlHeadED = endpoint->Enqueue(LPC_USB->HcControlHeadED); // May change state NotQueued->Idle
sivan_toledo 0:3e7d6f496a67 482 endpoint->CurrentState = state; // Get in before an int
sivan_toledo 0:3e7d6f496a67 483 LPC_USB->HcCommandStatus = LPC_USB->HcCommandStatus | ControlListFilled;
sivan_toledo 0:3e7d6f496a67 484 LPC_USB->HcControl = LPC_USB->HcControl | ControlListEnable;
sivan_toledo 0:3e7d6f496a67 485 break;
sivan_toledo 0:3e7d6f496a67 486
sivan_toledo 0:3e7d6f496a67 487 case ENDPOINT_BULK:
sivan_toledo 0:3e7d6f496a67 488 LPC_USB->HcBulkHeadED = endpoint->Enqueue(LPC_USB->HcBulkHeadED);
sivan_toledo 0:3e7d6f496a67 489 endpoint->CurrentState = state;
sivan_toledo 0:3e7d6f496a67 490 LPC_USB->HcCommandStatus = LPC_USB->HcCommandStatus | BulkListFilled;
sivan_toledo 0:3e7d6f496a67 491 LPC_USB->HcControl = LPC_USB->HcControl | BulkListEnable;
sivan_toledo 0:3e7d6f496a67 492 break;
sivan_toledo 0:3e7d6f496a67 493
sivan_toledo 0:3e7d6f496a67 494 case ENDPOINT_INTERRUPT:
sivan_toledo 0:3e7d6f496a67 495 CommunicationArea.InterruptTable[0] = endpoint->Enqueue(CommunicationArea.InterruptTable[0]);
sivan_toledo 0:3e7d6f496a67 496 endpoint->CurrentState = state;
sivan_toledo 0:3e7d6f496a67 497 LPC_USB->HcControl |= PeriodicListEnable;
sivan_toledo 0:3e7d6f496a67 498 break;
sivan_toledo 0:3e7d6f496a67 499 }
sivan_toledo 0:3e7d6f496a67 500 return 0;
sivan_toledo 0:3e7d6f496a67 501 }
sivan_toledo 0:3e7d6f496a67 502
sivan_toledo 0:3e7d6f496a67 503 // Remove an endpoint from an active queue
sivan_toledo 0:3e7d6f496a67 504 bool Remove(HCED* ed, volatile HCED** queue)
sivan_toledo 0:3e7d6f496a67 505 {
sivan_toledo 0:3e7d6f496a67 506 if (*queue == 0)
sivan_toledo 0:3e7d6f496a67 507 return false;
sivan_toledo 0:3e7d6f496a67 508 if (*queue == (volatile HCED*)ed)
sivan_toledo 0:3e7d6f496a67 509 {
sivan_toledo 0:3e7d6f496a67 510 *queue = (volatile HCED*)ed->Next; // At head of queue
sivan_toledo 0:3e7d6f496a67 511 return true;
sivan_toledo 0:3e7d6f496a67 512 }
sivan_toledo 0:3e7d6f496a67 513
sivan_toledo 0:3e7d6f496a67 514 volatile HCED* head = *queue;
sivan_toledo 0:3e7d6f496a67 515 while (head)
sivan_toledo 0:3e7d6f496a67 516 {
sivan_toledo 0:3e7d6f496a67 517 if (head->Next == (u32)ed)
sivan_toledo 0:3e7d6f496a67 518 {
sivan_toledo 0:3e7d6f496a67 519 head->Next = ed->Next;
sivan_toledo 0:3e7d6f496a67 520 return true;
sivan_toledo 0:3e7d6f496a67 521 }
sivan_toledo 0:3e7d6f496a67 522 head = (volatile HCED*)head->Next;
sivan_toledo 0:3e7d6f496a67 523 }
sivan_toledo 0:3e7d6f496a67 524 return false;
sivan_toledo 0:3e7d6f496a67 525 }
sivan_toledo 0:3e7d6f496a67 526
sivan_toledo 0:3e7d6f496a67 527 void Release(Endpoint* endpoint)
sivan_toledo 0:3e7d6f496a67 528 {
sivan_toledo 0:3e7d6f496a67 529 if (endpoint->CurrentState == Endpoint::NotQueued)
sivan_toledo 0:3e7d6f496a67 530 {
sivan_toledo 0:3e7d6f496a67 531 // Never event used it, nothing to do
sivan_toledo 0:3e7d6f496a67 532 }
sivan_toledo 0:3e7d6f496a67 533 else
sivan_toledo 0:3e7d6f496a67 534 {
sivan_toledo 0:3e7d6f496a67 535 HCED* ed = (HCED*)endpoint;
sivan_toledo 0:3e7d6f496a67 536 ed->Control |= 0x4000; // SKIP
sivan_toledo 0:3e7d6f496a67 537 switch (endpoint->Flags & 0x03)
sivan_toledo 0:3e7d6f496a67 538 {
sivan_toledo 0:3e7d6f496a67 539 case ENDPOINT_CONTROL:
sivan_toledo 0:3e7d6f496a67 540 Remove(ed,(volatile HCED**)&LPC_USB->HcControlHeadED);
sivan_toledo 0:3e7d6f496a67 541 break;
sivan_toledo 0:3e7d6f496a67 542 case ENDPOINT_BULK:
sivan_toledo 0:3e7d6f496a67 543 Remove(ed,(volatile HCED**)&LPC_USB->HcBulkHeadED);
sivan_toledo 0:3e7d6f496a67 544 break;
sivan_toledo 0:3e7d6f496a67 545 case ENDPOINT_INTERRUPT:
sivan_toledo 0:3e7d6f496a67 546 for (int i = 0; i < 32; i++)
sivan_toledo 0:3e7d6f496a67 547 Remove(ed,(volatile HCED**)&CommunicationArea.InterruptTable[i]);
sivan_toledo 0:3e7d6f496a67 548 break;
sivan_toledo 0:3e7d6f496a67 549 }
sivan_toledo 0:3e7d6f496a67 550
sivan_toledo 0:3e7d6f496a67 551 u16 fn = CommunicationArea.FrameNumber;
sivan_toledo 0:3e7d6f496a67 552 while (fn == CommunicationArea.FrameNumber)
sivan_toledo 0:3e7d6f496a67 553 ; // Wait for next frame
sivan_toledo 0:3e7d6f496a67 554
sivan_toledo 0:3e7d6f496a67 555 }
sivan_toledo 0:3e7d6f496a67 556
sivan_toledo 0:3e7d6f496a67 557 // In theory, the endpoint is now dead.
sivan_toledo 0:3e7d6f496a67 558 // TODO: Will Callbacks ever be pending? BUGBUG
sivan_toledo 0:3e7d6f496a67 559 memset(endpoint,0,sizeof(Endpoint));
sivan_toledo 0:3e7d6f496a67 560 }
sivan_toledo 0:3e7d6f496a67 561
sivan_toledo 0:3e7d6f496a67 562 // Pop the last TD from the list
sivan_toledo 0:3e7d6f496a67 563 HCTD* Reverse(HCTD* current)
sivan_toledo 0:3e7d6f496a67 564 {
sivan_toledo 0:3e7d6f496a67 565 HCTD *result = NULL,*temp;
sivan_toledo 0:3e7d6f496a67 566 while (current)
sivan_toledo 0:3e7d6f496a67 567 {
sivan_toledo 0:3e7d6f496a67 568 temp = (HCTD*)current->Next;
sivan_toledo 0:3e7d6f496a67 569 current->Next = (u32)result;
sivan_toledo 0:3e7d6f496a67 570 result = current;
sivan_toledo 0:3e7d6f496a67 571 current = temp;
sivan_toledo 0:3e7d6f496a67 572 }
sivan_toledo 0:3e7d6f496a67 573 return result;
sivan_toledo 0:3e7d6f496a67 574 }
sivan_toledo 0:3e7d6f496a67 575
sivan_toledo 0:3e7d6f496a67 576 // Called from interrupt...
sivan_toledo 0:3e7d6f496a67 577 // Control endpoints use a state machine to progress through the transfers
sivan_toledo 0:3e7d6f496a67 578 void ProcessDoneQueue(u32 tdList)
sivan_toledo 0:3e7d6f496a67 579 {
sivan_toledo 0:3e7d6f496a67 580 HCTD* list = Reverse((HCTD*)tdList);
sivan_toledo 0:3e7d6f496a67 581 while (list)
sivan_toledo 0:3e7d6f496a67 582 {
sivan_toledo 0:3e7d6f496a67 583 Endpoint* endpoint = (Endpoint*)(list-1);
sivan_toledo 0:3e7d6f496a67 584 list = (HCTD*)list->Next;
sivan_toledo 0:3e7d6f496a67 585 int ep = endpoint->Address();
sivan_toledo 0:3e7d6f496a67 586 bool in = endpoint->Flags & 0x80;
sivan_toledo 0:3e7d6f496a67 587 int status = (endpoint->TDHead.Control >> 28) & 0xF;
sivan_toledo 0:3e7d6f496a67 588
sivan_toledo 0:3e7d6f496a67 589 //LOG("ProcessDoneQueue %02X %08X\n",ep,endpoint->TDHead.Control);
sivan_toledo 0:3e7d6f496a67 590
sivan_toledo 0:3e7d6f496a67 591 if (status != 0)
sivan_toledo 0:3e7d6f496a67 592 {
sivan_toledo 0:3e7d6f496a67 593 LOG("ProcessDoneQueue status %02X %d\n",ep,status);
sivan_toledo 0:3e7d6f496a67 594 endpoint->CurrentState = Endpoint::Idle;
sivan_toledo 0:3e7d6f496a67 595 } else {
sivan_toledo 0:3e7d6f496a67 596 switch (endpoint->CurrentState)
sivan_toledo 0:3e7d6f496a67 597 {
sivan_toledo 0:3e7d6f496a67 598 case Endpoint::SetupQueued:
sivan_toledo 0:3e7d6f496a67 599 if (endpoint->Length == 0)
sivan_toledo 0:3e7d6f496a67 600 Transfer(endpoint,in ? TOKEN_OUT : TOKEN_IN,0,0,Endpoint::StatusQueued); // Skip Data Phase
sivan_toledo 0:3e7d6f496a67 601 else
sivan_toledo 0:3e7d6f496a67 602 Transfer(endpoint,in ? TOKEN_IN : TOKEN_OUT,endpoint->Data,endpoint->Length, Endpoint::DataQueued); // Setup is done, now Data
sivan_toledo 0:3e7d6f496a67 603 break;
sivan_toledo 0:3e7d6f496a67 604
sivan_toledo 0:3e7d6f496a67 605 case Endpoint::DataQueued:
sivan_toledo 0:3e7d6f496a67 606 if (endpoint->TDHead.CurrBufPtr)
sivan_toledo 0:3e7d6f496a67 607 endpoint->Length = endpoint->TDHead.CurrBufPtr - (u32)endpoint->Data;
sivan_toledo 0:3e7d6f496a67 608
sivan_toledo 0:3e7d6f496a67 609 if (ep == 0)
sivan_toledo 0:3e7d6f496a67 610 Transfer(endpoint,in ? TOKEN_OUT : TOKEN_IN,0,0,Endpoint::StatusQueued); // Data is done, now Status, Control only
sivan_toledo 0:3e7d6f496a67 611 else
sivan_toledo 0:3e7d6f496a67 612 endpoint->CurrentState = Endpoint::Idle;
sivan_toledo 0:3e7d6f496a67 613 break;
sivan_toledo 0:3e7d6f496a67 614
sivan_toledo 0:3e7d6f496a67 615 case Endpoint::StatusQueued: // Transaction is done
sivan_toledo 0:3e7d6f496a67 616 endpoint->CurrentState = Endpoint::Idle;
sivan_toledo 0:3e7d6f496a67 617 break;
sivan_toledo 0:3e7d6f496a67 618 }
sivan_toledo 0:3e7d6f496a67 619 }
sivan_toledo 0:3e7d6f496a67 620
sivan_toledo 0:3e7d6f496a67 621 // Complete, flag if we need a callback
sivan_toledo 0:3e7d6f496a67 622 if (endpoint->Callback && endpoint->CurrentState == Endpoint::Idle)
sivan_toledo 0:3e7d6f496a67 623 {
sivan_toledo 0:3e7d6f496a67 624 endpoint->CurrentState = Endpoint::CallbackPending;
sivan_toledo 0:3e7d6f496a67 625 _callbacksPending++;
sivan_toledo 0:3e7d6f496a67 626 }
sivan_toledo 0:3e7d6f496a67 627 }
sivan_toledo 0:3e7d6f496a67 628 }
sivan_toledo 0:3e7d6f496a67 629
sivan_toledo 0:3e7d6f496a67 630 // Hack to reset devices that don't want to connect
sivan_toledo 0:3e7d6f496a67 631 int AddDevice(int hub, int port, bool isLowSpeed)
sivan_toledo 0:3e7d6f496a67 632 {
sivan_toledo 0:3e7d6f496a67 633 int device = AddDeviceCore(hub,port,isLowSpeed);
sivan_toledo 0:3e7d6f496a67 634 if (device < 0)
sivan_toledo 0:3e7d6f496a67 635 {
sivan_toledo 0:3e7d6f496a67 636 LOG("========RETRY ADD DEVICE========\n"); // This will go for ever.. TODO power cycle root?
sivan_toledo 0:3e7d6f496a67 637 Disconnect(hub,port); // Could not read descriptor at assigned address, reset this port and try again
sivan_toledo 0:3e7d6f496a67 638 ResetPort(hub,port); // Cheap bluetooth dongles often need this on a hotplug
sivan_toledo 0:3e7d6f496a67 639 return -1;
sivan_toledo 0:3e7d6f496a67 640 }
sivan_toledo 0:3e7d6f496a67 641 return device;
sivan_toledo 0:3e7d6f496a67 642 }
sivan_toledo 0:3e7d6f496a67 643
sivan_toledo 0:3e7d6f496a67 644 int AddDeviceCore(int hub, int port, bool isLowSpeed)
sivan_toledo 0:3e7d6f496a67 645 {
sivan_toledo 0:3e7d6f496a67 646 int lowSpeed = isLowSpeed ? 0x2000 : 0;
sivan_toledo 0:3e7d6f496a67 647 DeviceDescriptor desc;
sivan_toledo 0:3e7d6f496a67 648 EndpointZero.EndpointDescriptor.Control = (8 << 16) | lowSpeed; // MaxPacketSize == 8
sivan_toledo 0:3e7d6f496a67 649 int r = GetDescriptor(0,DESCRIPTOR_TYPE_DEVICE,0,(u8*)&desc,8);
sivan_toledo 0:3e7d6f496a67 650 if (r < 0)
sivan_toledo 0:3e7d6f496a67 651 {
sivan_toledo 0:3e7d6f496a67 652 LOG("FAILED TO LOAD DESCRIPTOR FOR DEVICE 0\n");
sivan_toledo 0:3e7d6f496a67 653 return r;
sivan_toledo 0:3e7d6f496a67 654 }
sivan_toledo 0:3e7d6f496a67 655
sivan_toledo 0:3e7d6f496a67 656 EndpointZero.EndpointDescriptor.Control = (desc.bMaxPacketSize << 16) | lowSpeed; // Actual MaxPacketSize
sivan_toledo 0:3e7d6f496a67 657 r = GetDescriptor(0,DESCRIPTOR_TYPE_DEVICE,0,(u8*)&desc,sizeof(desc));
sivan_toledo 0:3e7d6f496a67 658 if (r < 0)
sivan_toledo 0:3e7d6f496a67 659 return r;
sivan_toledo 0:3e7d6f496a67 660
sivan_toledo 0:3e7d6f496a67 661 LOG("\nClass %02X found %04X:%04X\n\n",desc.bDeviceClass,desc.idVendor,desc.idProduct);
sivan_toledo 0:3e7d6f496a67 662
sivan_toledo 0:3e7d6f496a67 663 // Now assign the device an address, move off EndpointZero
sivan_toledo 0:3e7d6f496a67 664 int device = 0;
sivan_toledo 0:3e7d6f496a67 665 for (int i = 0; i < MAX_DEVICES; i++)
sivan_toledo 0:3e7d6f496a67 666 {
sivan_toledo 0:3e7d6f496a67 667 if (Devices[i].Port == 0)
sivan_toledo 0:3e7d6f496a67 668 {
sivan_toledo 0:3e7d6f496a67 669 device = i+1;
sivan_toledo 0:3e7d6f496a67 670 break;
sivan_toledo 0:3e7d6f496a67 671 }
sivan_toledo 0:3e7d6f496a67 672 }
sivan_toledo 0:3e7d6f496a67 673 if (!device)
sivan_toledo 0:3e7d6f496a67 674 return ERR_DEVICE_NONE_LEFT;
sivan_toledo 0:3e7d6f496a67 675
sivan_toledo 0:3e7d6f496a67 676 r = SetAddress(0,device);
sivan_toledo 0:3e7d6f496a67 677 if (r)
sivan_toledo 0:3e7d6f496a67 678 return r;
sivan_toledo 0:3e7d6f496a67 679 DelayMS(2);
sivan_toledo 0:3e7d6f496a67 680
sivan_toledo 0:3e7d6f496a67 681 // Now at a nonzero address, create control endpoint
sivan_toledo 0:3e7d6f496a67 682 Device* dev = &Devices[device-1];
sivan_toledo 0:3e7d6f496a67 683 dev->Init(&desc,hub,port,device,lowSpeed);
sivan_toledo 0:3e7d6f496a67 684 AddEndpoint(device,0,ENDPOINT_CONTROL,desc.bMaxPacketSize,0);
sivan_toledo 0:3e7d6f496a67 685 _connectPending = 0;
sivan_toledo 0:3e7d6f496a67 686
sivan_toledo 0:3e7d6f496a67 687 // Verify this all works
sivan_toledo 0:3e7d6f496a67 688 r = GetDescriptor(device,DESCRIPTOR_TYPE_DEVICE,0,(u8*)&desc,sizeof(desc));
sivan_toledo 0:3e7d6f496a67 689 if (r < 0)
sivan_toledo 0:3e7d6f496a67 690 return r;
sivan_toledo 0:3e7d6f496a67 691
sivan_toledo 0:3e7d6f496a67 692 // Set to interface 0 by default
sivan_toledo 0:3e7d6f496a67 693 // Calls LoadDevice if interface is found
sivan_toledo 0:3e7d6f496a67 694 r = SetConfigurationAndInterface(device,1,0,&desc);
sivan_toledo 0:3e7d6f496a67 695
sivan_toledo 0:3e7d6f496a67 696 if (desc.bDeviceClass == CLASS_HUB)
sivan_toledo 0:3e7d6f496a67 697 InitHub(device); // Handle hubs in this code
sivan_toledo 0:3e7d6f496a67 698
sivan_toledo 0:3e7d6f496a67 699 return device;
sivan_toledo 0:3e7d6f496a67 700 }
sivan_toledo 0:3e7d6f496a67 701
sivan_toledo 0:3e7d6f496a67 702 // Walk descriptors and create endpoints for a given device
sivan_toledo 0:3e7d6f496a67 703 // TODO configuration !=1, alternate settings etc.
sivan_toledo 0:3e7d6f496a67 704 int SetConfigurationAndInterface(int device, int configuration, int interfaceNumber, DeviceDescriptor* desc)
sivan_toledo 0:3e7d6f496a67 705 {
sivan_toledo 0:3e7d6f496a67 706 u8 buffer[255];
sivan_toledo 0:3e7d6f496a67 707 int err = GetDescriptor(device,DESCRIPTOR_TYPE_CONFIGURATION,0,buffer,sizeof(buffer));
sivan_toledo 0:3e7d6f496a67 708 if (err < 0)
sivan_toledo 0:3e7d6f496a67 709 return err;
sivan_toledo 0:3e7d6f496a67 710
sivan_toledo 0:3e7d6f496a67 711 err = SetConfiguration(device,configuration);
sivan_toledo 0:3e7d6f496a67 712 if (err < 0)
sivan_toledo 0:3e7d6f496a67 713 return err;
sivan_toledo 0:3e7d6f496a67 714
sivan_toledo 0:3e7d6f496a67 715 // Add the endpoints for this interface
sivan_toledo 0:3e7d6f496a67 716 int len = buffer[2] | (buffer[3] << 8);
sivan_toledo 0:3e7d6f496a67 717 u8* d = buffer;
sivan_toledo 0:3e7d6f496a67 718 u8* end = d + len;
sivan_toledo 0:3e7d6f496a67 719 InterfaceDescriptor* found = 0;
sivan_toledo 0:3e7d6f496a67 720 while (d < end)
sivan_toledo 0:3e7d6f496a67 721 {
sivan_toledo 0:3e7d6f496a67 722 if (d[1] == DESCRIPTOR_TYPE_INTERFACE)
sivan_toledo 0:3e7d6f496a67 723 {
sivan_toledo 0:3e7d6f496a67 724 InterfaceDescriptor* id = (InterfaceDescriptor*)d;
sivan_toledo 0:3e7d6f496a67 725 if (id->bInterfaceNumber == interfaceNumber)
sivan_toledo 0:3e7d6f496a67 726 {
sivan_toledo 0:3e7d6f496a67 727 found = id;
sivan_toledo 0:3e7d6f496a67 728 d += d[0];
sivan_toledo 0:3e7d6f496a67 729 while (d < end && d[1] != DESCRIPTOR_TYPE_INTERFACE)
sivan_toledo 0:3e7d6f496a67 730 {
sivan_toledo 0:3e7d6f496a67 731 switch (d[1])
sivan_toledo 0:3e7d6f496a67 732 {
sivan_toledo 0:3e7d6f496a67 733 case DESCRIPTOR_TYPE_ENDPOINT:
sivan_toledo 0:3e7d6f496a67 734 AddEndpoint(device,(EndpointDescriptor*)d);
sivan_toledo 0:3e7d6f496a67 735 break;
sivan_toledo 0:3e7d6f496a67 736 default:
sivan_toledo 0:3e7d6f496a67 737 LOG("Skipping descriptor %02X (%d bytes)\n",d[1],d[0]);
sivan_toledo 0:3e7d6f496a67 738 }
sivan_toledo 0:3e7d6f496a67 739 d += d[0];
sivan_toledo 0:3e7d6f496a67 740 }
sivan_toledo 0:3e7d6f496a67 741 }
sivan_toledo 0:3e7d6f496a67 742 }
sivan_toledo 0:3e7d6f496a67 743 d += d[0];
sivan_toledo 0:3e7d6f496a67 744 }
sivan_toledo 0:3e7d6f496a67 745
sivan_toledo 0:3e7d6f496a67 746 if (!found)
sivan_toledo 0:3e7d6f496a67 747 return ERR_INTERFACE_NOT_FOUND;
sivan_toledo 0:3e7d6f496a67 748 OnLoadDevice(device,desc,found);
sivan_toledo 0:3e7d6f496a67 749 return 0;
sivan_toledo 0:3e7d6f496a67 750 }
sivan_toledo 0:3e7d6f496a67 751
sivan_toledo 0:3e7d6f496a67 752 void Init()
sivan_toledo 0:3e7d6f496a67 753 {
sivan_toledo 0:3e7d6f496a67 754 LOG("USB INIT (Controller is %d bytes)\n",sizeof(*this));
sivan_toledo 0:3e7d6f496a67 755 memset(this,0,sizeof(HostController));
sivan_toledo 0:3e7d6f496a67 756 EndpointZero.CurrentState = Endpoint::NotQueued;
sivan_toledo 0:3e7d6f496a67 757 HWInit(&CommunicationArea);
sivan_toledo 0:3e7d6f496a67 758 DelayMS(10);
sivan_toledo 0:3e7d6f496a67 759 }
sivan_toledo 0:3e7d6f496a67 760
sivan_toledo 0:3e7d6f496a67 761 void ResetPort(int hub, int port)
sivan_toledo 0:3e7d6f496a67 762 {
sivan_toledo 0:3e7d6f496a67 763 LOG("ResetPort Hub:%d Port:%d\n",hub,port);
sivan_toledo 0:3e7d6f496a67 764 _connectPending++; // Only reset/add 1 device at a time
sivan_toledo 0:3e7d6f496a67 765 if (hub == 0)
sivan_toledo 0:3e7d6f496a67 766 LPC_USB->HcRhPortStatus1 = PortResetStatus; // Reset Root Hub, port 1
sivan_toledo 0:3e7d6f496a67 767 else
sivan_toledo 0:3e7d6f496a67 768 SetPortReset(hub,port); // or reset other hub
sivan_toledo 0:3e7d6f496a67 769 }
sivan_toledo 0:3e7d6f496a67 770
sivan_toledo 0:3e7d6f496a67 771 void Disconnect(int hub, int port)
sivan_toledo 0:3e7d6f496a67 772 {
sivan_toledo 0:3e7d6f496a67 773 LOG("Disconnect Hub:%d Port:%d\n",hub,port); // Mark a device for destruction
sivan_toledo 0:3e7d6f496a67 774 for (int i = 0; i < MAX_DEVICES; i++)
sivan_toledo 0:3e7d6f496a67 775 {
sivan_toledo 0:3e7d6f496a67 776 Device* dev = Devices + i;
sivan_toledo 0:3e7d6f496a67 777 if (dev->Port == port && dev->Hub == hub)
sivan_toledo 0:3e7d6f496a67 778 {
sivan_toledo 0:3e7d6f496a67 779 // Disconnect everything that is attached to this device if it is a hub
sivan_toledo 0:3e7d6f496a67 780 for (int p = 0; p < dev->HubPortCount; p++)
sivan_toledo 0:3e7d6f496a67 781 Disconnect(i+1,p+1);
sivan_toledo 0:3e7d6f496a67 782
sivan_toledo 0:3e7d6f496a67 783 // Now release endpoints
sivan_toledo 0:3e7d6f496a67 784 for (int j = 1; j < MAX_ENDPOINTS_PER_DEVICE*2; j += 2)
sivan_toledo 0:3e7d6f496a67 785 {
sivan_toledo 0:3e7d6f496a67 786 u8 endpointIndex = dev->_endpointMap[j];
sivan_toledo 0:3e7d6f496a67 787 if (endpointIndex != 0xFF)
sivan_toledo 0:3e7d6f496a67 788 Release(Endpoints + endpointIndex);
sivan_toledo 0:3e7d6f496a67 789 }
sivan_toledo 0:3e7d6f496a67 790 dev->Port = 0; // Device is now free
sivan_toledo 0:3e7d6f496a67 791 dev->Flags = 0;
sivan_toledo 0:3e7d6f496a67 792 return;
sivan_toledo 0:3e7d6f496a67 793 }
sivan_toledo 0:3e7d6f496a67 794 }
sivan_toledo 0:3e7d6f496a67 795 }
sivan_toledo 0:3e7d6f496a67 796
sivan_toledo 0:3e7d6f496a67 797 // called after reset
sivan_toledo 0:3e7d6f496a67 798 void Connect(int hub, int port, bool lowspeed)
sivan_toledo 0:3e7d6f496a67 799 {
sivan_toledo 0:3e7d6f496a67 800 LOG("Connect Hub:%d Port:%d %s\n",hub,port,lowspeed ? "slow" : "full");
sivan_toledo 0:3e7d6f496a67 801 AddDevice(hub,port,lowspeed);
sivan_toledo 0:3e7d6f496a67 802 }
sivan_toledo 0:3e7d6f496a67 803
sivan_toledo 0:3e7d6f496a67 804 // Called from interrupt
sivan_toledo 0:3e7d6f496a67 805 void HubStatusChange(int hub, int port, u32 status)
sivan_toledo 0:3e7d6f496a67 806 {
sivan_toledo 0:3e7d6f496a67 807 LOG("HubStatusChange Hub:%d Port:%d %08X\n",hub,port,status);
sivan_toledo 0:3e7d6f496a67 808 if (status & ConnectStatusChange)
sivan_toledo 0:3e7d6f496a67 809 {
sivan_toledo 0:3e7d6f496a67 810 if (status & CurrentConnectStatus) // Connecting
sivan_toledo 0:3e7d6f496a67 811 ResetPort(hub,port); // Reset to initiate connect (state machine?)
sivan_toledo 0:3e7d6f496a67 812 else
sivan_toledo 0:3e7d6f496a67 813 Disconnect(hub,port);
sivan_toledo 0:3e7d6f496a67 814 }
sivan_toledo 0:3e7d6f496a67 815
sivan_toledo 0:3e7d6f496a67 816 if (status & PortResetStatusChange)
sivan_toledo 0:3e7d6f496a67 817 {
sivan_toledo 0:3e7d6f496a67 818 if (!(status & PortResetStatus))
sivan_toledo 0:3e7d6f496a67 819 {
sivan_toledo 0:3e7d6f496a67 820 _connectCountdown = 200; // Schedule a connection in 200ms
sivan_toledo 0:3e7d6f496a67 821 if (status & LowspeedDevice)
sivan_toledo 0:3e7d6f496a67 822 port |= 0x80;
sivan_toledo 0:3e7d6f496a67 823 _connectHub = hub;
sivan_toledo 0:3e7d6f496a67 824 _connectPort = port;
sivan_toledo 0:3e7d6f496a67 825 }
sivan_toledo 0:3e7d6f496a67 826 }
sivan_toledo 0:3e7d6f496a67 827 }
sivan_toledo 0:3e7d6f496a67 828
sivan_toledo 0:3e7d6f496a67 829 #define HOST_CLK_EN (1<<0)
sivan_toledo 0:3e7d6f496a67 830 #define PORTSEL_CLK_EN (1<<3)
sivan_toledo 0:3e7d6f496a67 831 #define AHB_CLK_EN (1<<4)
sivan_toledo 0:3e7d6f496a67 832 #define CLOCK_MASK (HOST_CLK_EN | PORTSEL_CLK_EN | AHB_CLK_EN)
sivan_toledo 0:3e7d6f496a67 833
sivan_toledo 0:3e7d6f496a67 834 #define FRAMEINTERVAL (12000-1) // 1ms
sivan_toledo 0:3e7d6f496a67 835 #define DEFAULT_FMINTERVAL ((((6 * (FRAMEINTERVAL - 210)) / 7) << 16) | FRAMEINTERVAL)
sivan_toledo 0:3e7d6f496a67 836
sivan_toledo 0:3e7d6f496a67 837 void DelayMS(int ms)
sivan_toledo 0:3e7d6f496a67 838 {
sivan_toledo 0:3e7d6f496a67 839 u16 f = ms + CommunicationArea.FrameNumber;
sivan_toledo 0:3e7d6f496a67 840 while (f != CommunicationArea.FrameNumber)
sivan_toledo 0:3e7d6f496a67 841 ;
sivan_toledo 0:3e7d6f496a67 842 }
sivan_toledo 0:3e7d6f496a67 843
sivan_toledo 0:3e7d6f496a67 844 static void HWInit(HCCA* cca)
sivan_toledo 0:3e7d6f496a67 845 {
sivan_toledo 0:3e7d6f496a67 846 NVIC_DisableIRQ(USB_IRQn);
sivan_toledo 0:3e7d6f496a67 847
sivan_toledo 0:3e7d6f496a67 848 // turn on power for USB
sivan_toledo 0:3e7d6f496a67 849 LPC_SC->PCONP |= (1UL<<31);
sivan_toledo 0:3e7d6f496a67 850 // Enable USB host clock, port selection and AHB clock
sivan_toledo 0:3e7d6f496a67 851 LPC_USB->USBClkCtrl |= CLOCK_MASK;
sivan_toledo 0:3e7d6f496a67 852 // Wait for clocks to become available
sivan_toledo 0:3e7d6f496a67 853 while ((LPC_USB->USBClkSt & CLOCK_MASK) != CLOCK_MASK)
sivan_toledo 0:3e7d6f496a67 854 ;
sivan_toledo 0:3e7d6f496a67 855
sivan_toledo 0:3e7d6f496a67 856 // We are a Host
sivan_toledo 0:3e7d6f496a67 857 LPC_USB->OTGStCtrl |= 1;
sivan_toledo 0:3e7d6f496a67 858 LPC_USB->USBClkCtrl &= ~PORTSEL_CLK_EN; // we don't need port selection clock until we do OTG
sivan_toledo 0:3e7d6f496a67 859
sivan_toledo 0:3e7d6f496a67 860 // configure USB pins
sivan_toledo 0:3e7d6f496a67 861 LPC_PINCON->PINSEL1 &= ~((3<<26)|(3<<28));
sivan_toledo 0:3e7d6f496a67 862 LPC_PINCON->PINSEL1 |= ((1<<26)|(1<<28)); // USB D+/D-
sivan_toledo 0:3e7d6f496a67 863
sivan_toledo 0:3e7d6f496a67 864 LPC_PINCON->PINSEL3 &= ~((3 << 6) | (3 << 22)); // USB_PPWR, USB_OVRCR
sivan_toledo 0:3e7d6f496a67 865 LPC_PINCON->PINSEL3 |= ((2 << 6) | (2 << 22));
sivan_toledo 0:3e7d6f496a67 866
sivan_toledo 0:3e7d6f496a67 867 LPC_PINCON->PINSEL4 &= ~(3 << 18); // USB_CONNECT
sivan_toledo 0:3e7d6f496a67 868 LPC_PINCON->PINSEL4 |= (1 << 18);
sivan_toledo 0:3e7d6f496a67 869
sivan_toledo 0:3e7d6f496a67 870 // Reset OHCI block
sivan_toledo 0:3e7d6f496a67 871 LPC_USB->HcControl = 0;
sivan_toledo 0:3e7d6f496a67 872 LPC_USB->HcControlHeadED = 0;
sivan_toledo 0:3e7d6f496a67 873 LPC_USB->HcBulkHeadED = 0;
sivan_toledo 0:3e7d6f496a67 874
sivan_toledo 0:3e7d6f496a67 875 LPC_USB->HcCommandStatus = HostControllerReset;
sivan_toledo 0:3e7d6f496a67 876 LPC_USB->HcFmInterval = DEFAULT_FMINTERVAL;
sivan_toledo 0:3e7d6f496a67 877 LPC_USB->HcPeriodicStart = FRAMEINTERVAL*90/100;
sivan_toledo 0:3e7d6f496a67 878
sivan_toledo 0:3e7d6f496a67 879 LPC_USB->HcControl = (LPC_USB->HcControl & (~HostControllerFunctionalState)) | OperationalMask;
sivan_toledo 0:3e7d6f496a67 880 LPC_USB->HcRhStatus = SetGlobalPower;
sivan_toledo 0:3e7d6f496a67 881
sivan_toledo 0:3e7d6f496a67 882 LPC_USB->HcHCCA = (u32)cca;
sivan_toledo 0:3e7d6f496a67 883 LPC_USB->HcInterruptStatus |= LPC_USB->HcInterruptStatus;
sivan_toledo 0:3e7d6f496a67 884 LPC_USB->HcInterruptEnable = MasterInterruptEnable | WritebackDoneHead | RootHubStatusChange | FrameNumberOverflow;
sivan_toledo 0:3e7d6f496a67 885
sivan_toledo 0:3e7d6f496a67 886 LPC_USB->HcRhDescriptorB |= 0xFFFF;
sivan_toledo 0:3e7d6f496a67 887
sivan_toledo 0:3e7d6f496a67 888 NVIC_SetPriority(USB_IRQn, 0);
sivan_toledo 0:3e7d6f496a67 889 NVIC_EnableIRQ(USB_IRQn);
sivan_toledo 0:3e7d6f496a67 890 while (cca->FrameNumber < 10)
sivan_toledo 0:3e7d6f496a67 891 ; // 10ms delay before diving in
sivan_toledo 0:3e7d6f496a67 892 }
sivan_toledo 0:3e7d6f496a67 893 };
sivan_toledo 0:3e7d6f496a67 894
sivan_toledo 0:3e7d6f496a67 895 //====================================================================================
sivan_toledo 0:3e7d6f496a67 896 //====================================================================================
sivan_toledo 0:3e7d6f496a67 897 // Host controller instance and Interrupt handler
sivan_toledo 0:3e7d6f496a67 898
sivan_toledo 0:3e7d6f496a67 899 static HostController _controller __attribute__((at(USB_RAM_BASE)));
sivan_toledo 0:3e7d6f496a67 900
sivan_toledo 0:3e7d6f496a67 901 extern "C" void USB_IRQHandler(void) __irq;
sivan_toledo 0:3e7d6f496a67 902 void USB_IRQHandler (void) __irq
sivan_toledo 0:3e7d6f496a67 903 {
sivan_toledo 0:3e7d6f496a67 904 u32 int_status = LPC_USB->HcInterruptStatus;
sivan_toledo 0:3e7d6f496a67 905
sivan_toledo 0:3e7d6f496a67 906 if (int_status & RootHubStatusChange) // Root hub status change
sivan_toledo 0:3e7d6f496a67 907 _controller._rootHubStatusChange++; // Just flag the controller, will be processed in USBLoop
sivan_toledo 0:3e7d6f496a67 908
sivan_toledo 0:3e7d6f496a67 909 u32 head = 0;
sivan_toledo 0:3e7d6f496a67 910 if (int_status & WritebackDoneHead)
sivan_toledo 0:3e7d6f496a67 911 {
sivan_toledo 0:3e7d6f496a67 912 head = _controller.CommunicationArea.DoneHead; // Writeback Done
sivan_toledo 0:3e7d6f496a67 913 _controller.CommunicationArea.DoneHead = 0;
sivan_toledo 0:3e7d6f496a67 914 }
sivan_toledo 0:3e7d6f496a67 915 LPC_USB->HcInterruptStatus = int_status;
sivan_toledo 0:3e7d6f496a67 916
sivan_toledo 0:3e7d6f496a67 917 if (head)
sivan_toledo 0:3e7d6f496a67 918 _controller.ProcessDoneQueue(head); // TODO - low bit can be set BUGBUG
sivan_toledo 0:3e7d6f496a67 919 }
sivan_toledo 0:3e7d6f496a67 920
sivan_toledo 0:3e7d6f496a67 921 //====================================================================================
sivan_toledo 0:3e7d6f496a67 922 //====================================================================================
sivan_toledo 0:3e7d6f496a67 923 // API Methods
sivan_toledo 0:3e7d6f496a67 924
sivan_toledo 0:3e7d6f496a67 925 void USBInit()
sivan_toledo 0:3e7d6f496a67 926 {
sivan_toledo 0:3e7d6f496a67 927 return _controller.Init();
sivan_toledo 0:3e7d6f496a67 928 }
sivan_toledo 0:3e7d6f496a67 929
sivan_toledo 0:3e7d6f496a67 930 void USBLoop()
sivan_toledo 0:3e7d6f496a67 931 {
sivan_toledo 0:3e7d6f496a67 932 return _controller.Loop();
sivan_toledo 0:3e7d6f496a67 933 }
sivan_toledo 0:3e7d6f496a67 934
sivan_toledo 0:3e7d6f496a67 935 u8* USBGetBuffer(u32* len)
sivan_toledo 0:3e7d6f496a67 936 {
sivan_toledo 0:3e7d6f496a67 937 *len = USB_RAM_SIZE - sizeof(HostController);
sivan_toledo 0:3e7d6f496a67 938 return _controller.SRAM;
sivan_toledo 0:3e7d6f496a67 939 }
sivan_toledo 0:3e7d6f496a67 940
sivan_toledo 0:3e7d6f496a67 941 void Disconnect()
sivan_toledo 0:3e7d6f496a67 942 {
sivan_toledo 0:3e7d6f496a67 943 _controller.Disconnect(0,1);
sivan_toledo 0:3e7d6f496a67 944 }
sivan_toledo 0:3e7d6f496a67 945
sivan_toledo 0:3e7d6f496a67 946 static Setup* GetSetup(int device)
sivan_toledo 0:3e7d6f496a67 947 {
sivan_toledo 0:3e7d6f496a67 948 if (device == 0)
sivan_toledo 0:3e7d6f496a67 949 return &_controller._setupZero;
sivan_toledo 0:3e7d6f496a67 950
sivan_toledo 0:3e7d6f496a67 951 if (device < 1 || device > MAX_DEVICES)
sivan_toledo 0:3e7d6f496a67 952 return 0;
sivan_toledo 0:3e7d6f496a67 953 return &_controller.Devices[device-1].SetupBuffer;
sivan_toledo 0:3e7d6f496a67 954 }
sivan_toledo 0:3e7d6f496a67 955
sivan_toledo 0:3e7d6f496a67 956 // Loop until IO on endpoint is complete
sivan_toledo 0:3e7d6f496a67 957 static int WaitIODone(Endpoint* endpoint)
sivan_toledo 0:3e7d6f496a67 958 {
sivan_toledo 0:3e7d6f496a67 959 if (endpoint->CurrentState == Endpoint::NotQueued)
sivan_toledo 0:3e7d6f496a67 960 return 0;
sivan_toledo 0:3e7d6f496a67 961 while (endpoint->CurrentState != Endpoint::Idle)
sivan_toledo 0:3e7d6f496a67 962 USBLoop(); // May generate callbacks, mount or unmount devices etc
sivan_toledo 0:3e7d6f496a67 963 int status = endpoint->Status();
sivan_toledo 0:3e7d6f496a67 964 if (status == 0)
sivan_toledo 0:3e7d6f496a67 965 return endpoint->Length;
sivan_toledo 0:3e7d6f496a67 966 return -status;
sivan_toledo 0:3e7d6f496a67 967 }
sivan_toledo 0:3e7d6f496a67 968
sivan_toledo 0:3e7d6f496a67 969 int USBTransfer(int device, int ep, u8 flags, u8* data, int length, USBCallback callback, void* userData)
sivan_toledo 0:3e7d6f496a67 970 {
sivan_toledo 0:3e7d6f496a67 971 Endpoint* endpoint = _controller.GetEndpoint(device,ep);
sivan_toledo 0:3e7d6f496a67 972 if (!endpoint)
sivan_toledo 0:3e7d6f496a67 973 return ERR_ENDPOINT_NOT_FOUND;
sivan_toledo 0:3e7d6f496a67 974
sivan_toledo 0:3e7d6f496a67 975 WaitIODone(endpoint);
sivan_toledo 0:3e7d6f496a67 976 endpoint->Flags = flags;
sivan_toledo 0:3e7d6f496a67 977 endpoint->Data = data;
sivan_toledo 0:3e7d6f496a67 978 endpoint->Length = length;
sivan_toledo 0:3e7d6f496a67 979 endpoint->Callback = callback;
sivan_toledo 0:3e7d6f496a67 980 endpoint->UserData = userData;
sivan_toledo 0:3e7d6f496a67 981 if (ep == 0)
sivan_toledo 0:3e7d6f496a67 982 _controller.Transfer(endpoint,TOKEN_SETUP,(u8*)GetSetup(device),8,Endpoint::SetupQueued);
sivan_toledo 0:3e7d6f496a67 983 else
sivan_toledo 0:3e7d6f496a67 984 _controller.Transfer(endpoint,flags & 0x80 ? TOKEN_IN : TOKEN_OUT,data,length,Endpoint::DataQueued);
sivan_toledo 0:3e7d6f496a67 985 if (callback)
sivan_toledo 0:3e7d6f496a67 986 return IO_PENDING;
sivan_toledo 0:3e7d6f496a67 987 return WaitIODone(endpoint);
sivan_toledo 0:3e7d6f496a67 988 }
sivan_toledo 0:3e7d6f496a67 989
sivan_toledo 0:3e7d6f496a67 990 int USBControlTransfer(int device, int request_type, int request, int value, int index, u8* data, int length, USBCallback callback, void * userData)
sivan_toledo 0:3e7d6f496a67 991 {
sivan_toledo 0:3e7d6f496a67 992 Setup* setup = GetSetup(device);
sivan_toledo 0:3e7d6f496a67 993 if (!setup)
sivan_toledo 0:3e7d6f496a67 994 return ERR_DEVICE_NOT_FOUND;
sivan_toledo 0:3e7d6f496a67 995
sivan_toledo 0:3e7d6f496a67 996 // Async control calls may overwrite setup buffer of previous call, so we need to wait before setting up next call
sivan_toledo 0:3e7d6f496a67 997 WaitIODone(_controller.GetEndpoint(device,0));
sivan_toledo 0:3e7d6f496a67 998
sivan_toledo 0:3e7d6f496a67 999 setup->bm_request_type = request_type;
sivan_toledo 0:3e7d6f496a67 1000 setup->b_request = request;
sivan_toledo 0:3e7d6f496a67 1001 setup->w_value = value;
sivan_toledo 0:3e7d6f496a67 1002 setup->w_index = index;
sivan_toledo 0:3e7d6f496a67 1003 setup->w_length = length;
sivan_toledo 0:3e7d6f496a67 1004 return USBTransfer(device,0,request_type & DEVICE_TO_HOST,data,length,callback,userData);
sivan_toledo 0:3e7d6f496a67 1005 }
sivan_toledo 0:3e7d6f496a67 1006
sivan_toledo 0:3e7d6f496a67 1007 int USBInterruptTransfer(int device, int ep, u8* data, int length, USBCallback callback, void* userData)
sivan_toledo 0:3e7d6f496a67 1008 {
sivan_toledo 0:3e7d6f496a67 1009 return USBTransfer(device,ep,(ep & 0x80) | ENDPOINT_INTERRUPT,data,length,callback,userData);
sivan_toledo 0:3e7d6f496a67 1010 }
sivan_toledo 0:3e7d6f496a67 1011
sivan_toledo 0:3e7d6f496a67 1012 int USBBulkTransfer(int device, int ep, u8* data, int length, USBCallback callback, void* userData)
sivan_toledo 0:3e7d6f496a67 1013 {
sivan_toledo 0:3e7d6f496a67 1014 return USBTransfer(device,ep,(ep & 0x80) | ENDPOINT_BULK,data,length,callback,userData);
sivan_toledo 0:3e7d6f496a67 1015 }
sivan_toledo 0:3e7d6f496a67 1016
sivan_toledo 0:3e7d6f496a67 1017 int GetDescriptor(int device, int descType,int descIndex, u8* data, int length)
sivan_toledo 0:3e7d6f496a67 1018 {
sivan_toledo 0:3e7d6f496a67 1019 return USBControlTransfer(device,DEVICE_TO_HOST | RECIPIENT_DEVICE, GET_DESCRIPTOR,(descType << 8)|(descIndex), 0, data, length, 0);
sivan_toledo 0:3e7d6f496a67 1020 }
sivan_toledo 0:3e7d6f496a67 1021
sivan_toledo 0:3e7d6f496a67 1022 int GetString(int device, int index, char* dst, int length)
sivan_toledo 0:3e7d6f496a67 1023 {
sivan_toledo 0:3e7d6f496a67 1024 u8 buffer[255];
sivan_toledo 0:3e7d6f496a67 1025 int le = GetDescriptor(device,DESCRIPTOR_TYPE_STRING,index,buffer,sizeof(buffer));
sivan_toledo 0:3e7d6f496a67 1026 if (le < 0)
sivan_toledo 0:3e7d6f496a67 1027 return le;
sivan_toledo 0:3e7d6f496a67 1028 if (length < 1)
sivan_toledo 0:3e7d6f496a67 1029 return -1;
sivan_toledo 0:3e7d6f496a67 1030 length <<= 1;
sivan_toledo 0:3e7d6f496a67 1031 if (le > length)
sivan_toledo 0:3e7d6f496a67 1032 le = length;
sivan_toledo 0:3e7d6f496a67 1033 for (int j = 2; j < le; j += 2)
sivan_toledo 0:3e7d6f496a67 1034 *dst++ = buffer[j];
sivan_toledo 0:3e7d6f496a67 1035 *dst = 0;
sivan_toledo 0:3e7d6f496a67 1036 return (le>>1)-1;
sivan_toledo 0:3e7d6f496a67 1037 }
sivan_toledo 0:3e7d6f496a67 1038
sivan_toledo 0:3e7d6f496a67 1039 int SetAddress(int device, int new_addr)
sivan_toledo 0:3e7d6f496a67 1040 {
sivan_toledo 0:3e7d6f496a67 1041 return USBControlTransfer(device,HOST_TO_DEVICE | RECIPIENT_DEVICE, SET_ADDRESS, new_addr, 0, 0, 0, 0);
sivan_toledo 0:3e7d6f496a67 1042 }
sivan_toledo 0:3e7d6f496a67 1043
sivan_toledo 0:3e7d6f496a67 1044 int SetConfiguration(int device, int configNum)
sivan_toledo 0:3e7d6f496a67 1045 {
sivan_toledo 0:3e7d6f496a67 1046 return USBControlTransfer(device,HOST_TO_DEVICE | RECIPIENT_DEVICE, SET_CONFIGURATION, configNum, 0, 0, 0, 0);
sivan_toledo 0:3e7d6f496a67 1047 }
sivan_toledo 0:3e7d6f496a67 1048
sivan_toledo 0:3e7d6f496a67 1049 int SetInterface(int device, int ifNum, int altNum)
sivan_toledo 0:3e7d6f496a67 1050 {
sivan_toledo 0:3e7d6f496a67 1051 return USBControlTransfer(device,HOST_TO_DEVICE | RECIPIENT_INTERFACE, SET_INTERFACE, altNum, ifNum, 0, 0, 0);
sivan_toledo 0:3e7d6f496a67 1052 }
sivan_toledo 0:3e7d6f496a67 1053
sivan_toledo 0:3e7d6f496a67 1054 // HUB stuff
sivan_toledo 0:3e7d6f496a67 1055 int SetPortFeature(int device, int feature, int index)
sivan_toledo 0:3e7d6f496a67 1056 {
sivan_toledo 0:3e7d6f496a67 1057 return USBControlTransfer(device,HOST_TO_DEVICE | REQUEST_TYPE_CLASS | RECIPIENT_OTHER,SET_FEATURE,feature,index,0,0);
sivan_toledo 0:3e7d6f496a67 1058 }
sivan_toledo 0:3e7d6f496a67 1059
sivan_toledo 0:3e7d6f496a67 1060 int ClearPortFeature(int device, int feature, int index)
sivan_toledo 0:3e7d6f496a67 1061 {
sivan_toledo 0:3e7d6f496a67 1062 return USBControlTransfer(device,HOST_TO_DEVICE | REQUEST_TYPE_CLASS | RECIPIENT_OTHER,CLEAR_FEATURE,feature,index,0,0);
sivan_toledo 0:3e7d6f496a67 1063 }
sivan_toledo 0:3e7d6f496a67 1064
sivan_toledo 0:3e7d6f496a67 1065 int SetPortPower(int device, int port)
sivan_toledo 0:3e7d6f496a67 1066 {
sivan_toledo 0:3e7d6f496a67 1067 int r = SetPortFeature(device,PORT_POWER,port);
sivan_toledo 0:3e7d6f496a67 1068 _controller.DelayMS(20); // 80ms to turn on a hubs power... DESCRIPTOR? todo
sivan_toledo 0:3e7d6f496a67 1069 return r;
sivan_toledo 0:3e7d6f496a67 1070 }
sivan_toledo 0:3e7d6f496a67 1071
sivan_toledo 0:3e7d6f496a67 1072 void ClearPortPower()
sivan_toledo 0:3e7d6f496a67 1073 {
sivan_toledo 0:3e7d6f496a67 1074 LPC_USB->HcRhPortStatus1 |= ConnectStatusChange;
sivan_toledo 0:3e7d6f496a67 1075 }
sivan_toledo 0:3e7d6f496a67 1076
sivan_toledo 0:3e7d6f496a67 1077 int SetPortReset(int device, int port)
sivan_toledo 0:3e7d6f496a67 1078 {
sivan_toledo 0:3e7d6f496a67 1079 return SetPortFeature(device,PORT_RESET,port);
sivan_toledo 0:3e7d6f496a67 1080 }
sivan_toledo 0:3e7d6f496a67 1081
sivan_toledo 0:3e7d6f496a67 1082 int GetPortStatus(int device, int port, u32* status)
sivan_toledo 0:3e7d6f496a67 1083 {
sivan_toledo 0:3e7d6f496a67 1084 return USBControlTransfer(device,DEVICE_TO_HOST | REQUEST_TYPE_CLASS | RECIPIENT_OTHER,GET_STATUS,0,port,(u8*)status,4);
sivan_toledo 0:3e7d6f496a67 1085 }
sivan_toledo 0:3e7d6f496a67 1086
sivan_toledo 0:3e7d6f496a67 1087 void Reset()
sivan_toledo 0:3e7d6f496a67 1088 {
sivan_toledo 0:3e7d6f496a67 1089 LPC_USB->HcCommandStatus |= 1;
sivan_toledo 0:3e7d6f496a67 1090 }