From 80224770316966e4339d414c60aea6a5020caa16 Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 00:36:31 +0800 Subject: dcd_pic: add readme --- src/portable/microchip/pic/README.md | 51 ++++++++++++++++++++++++++++++++++++ 1 file changed, 51 insertions(+) create mode 100644 src/portable/microchip/pic/README.md (limited to 'src/portable') diff --git a/src/portable/microchip/pic/README.md b/src/portable/microchip/pic/README.md new file mode 100644 index 000000000..7ba6a4a96 --- /dev/null +++ b/src/portable/microchip/pic/README.md @@ -0,0 +1,51 @@ +# Microchip PIC Chipidea FS Driver + +This driver adds support for Microchip PIC microcontrollers with full-speed Chipidea USB peripheral to the TinyUSB stack. It supports the following families: + +- PIC32MX (untested) +- PIC32MM +- PIC32MK (untested) +- PIC24FJ +- PIC24EP (untested) +- dsPIC33EP (untested) + +Currently only the device mode is supported. + + +## Important Notes + +### Handling of shared VBUS & GPIO pin + +Some PICs have the USB VBUS pin bonded with a GPIO pin in the chip package. This driver does **NOT** handle the potential conflict between the VBUS and GPIO functionalities. + +Developers must ensure that the GPIO pin is tristated when the VBUS pin is managed by the USB peripheral in order to prevent damaging the chip. + +This design choice allows developers the flexibility to use the GPIO functionality for controlling VBUS in device mode if desired. + + +## TODO + +### Handle USB remote wakeup timing correctly + +The Chipidea FS IP doesn't handle the RESUME signal automatically and it must be managed in software. It needs to be asserted for exactly 10ms, and this is impossible to do without per-device support due to BSP differences. For now, a simple for-based loop is used. + +### 8-bit PIC support + +The 8-bit PICs also uses the Chipidea FS IP. Technically it's possible to support them as well. + +Possible difficulties: +- Memory size constraints (1KB/8KB ballpark) +- A third BDT layout (now we have two) +- Different compiler-specific directives +- Compiler bugs if you use SDCC + + +## Author +[ReimuNotMoe](https://github.com/ReimuNotMoe) at SudoMaker, Ltd. + + +## Credits + +This driver is based on: +- Microchip's USB driver (usb_device.c) +- TinyUSB's NXP KHCI driver (dcd_khci.c) -- cgit v1.3.1 From 99e6b32a7da695f16a2fed93c59bfa0d5a1952dc Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 00:36:42 +0800 Subject: dcd_pic: change license header and credit people accordingly --- src/portable/microchip/pic/dcd_pic.c | 7 +++++-- 1 file changed, 5 insertions(+), 2 deletions(-) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index d40c4794a..461c65259 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -1,8 +1,11 @@ /* * The MIT License (MIT) * - * Copyright (c) 2020 Koji Kitayama - * Copyright (c) 2022 Reimu NotMoe + * Copyright (c) 2022-2024 SudoMaker, Ltd. + * Author: Mike Yang (Reimu NotMoe) + * + * Based on usb_device.c - Copyright (c) 2015 Microchip Technology Inc. + * Based on dcd_khci.c - Copyright (c) 2020 Koji Kitayama * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal -- cgit v1.3.1 From 8907a817a2a782423bf8d6db2136147b6e334225 Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 00:50:32 +0800 Subject: dcd_pic: handle bus resume correctly --- src/portable/microchip/pic/dcd_pic.c | 58 ++++++++++++++++++++++++++++++------ 1 file changed, 49 insertions(+), 9 deletions(-) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index 461c65259..0dac18523 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -741,8 +741,11 @@ void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) //--------------------------------------------------------------------+ void dcd_int_handler(uint8_t rhport) { - uint32_t is = U1IR; - uint32_t msk = U1IE; + uint32_t is, msk; + + // Part 1 - "USB interrupts" + is = U1IR; + msk = U1IE; U1IR = is & ~msk; is &= msk; @@ -750,7 +753,7 @@ void dcd_int_handler(uint8_t rhport) if (is & _U1IR_UERRIF_MASK) { uint32_t es = U1EIR; U1EIR = es; - U1IR = is; /* discard any pending events */ + U1IR = is; /* discard any pending events */ } if (is & _U1IR_URSTIF_MASK) { @@ -761,29 +764,66 @@ void dcd_int_handler(uint8_t rhport) if (is & _U1IR_IDLEIF_MASK) { // Note Host usually has extra delay after bus reset (without SOF), which could falsely // detected as Sleep event. Though usbd has debouncing logic so we are good + + /* + * NOTE: Do not clear U1OTGIRbits.ACTVIF here! + * Reason: + * ACTVIF is only generated once an IDLEIF has been generated. + * This is a 1:1 ratio interrupt generation. + * For every IDLEIF, there will be only one ACTVIF regardless of + * the number of subsequent bus transitions. + * + * If the ACTIF is cleared here, a problem could occur when: + * [ IDLE ][bus activity -> + * <--- 3 ms -----> ^ + * ^ ACTVIF=1 + * IDLEIF=1 + * # # # # (#=Program polling flags) + * ^ + * This polling loop will see both + * IDLEIF=1 and ACTVIF=1. + * However, the program services IDLEIF first + * because ACTIVIE=0. + * If this routine clears the only ACTIVIF, + * then it can never get out of the suspend + * mode. + */ + U1OTGIESET = _U1OTGIE_ACTVIE_MASK; U1IR = _U1IR_IDLEIF_MASK; process_bus_sleep(rhport); } - if (is & _U1IR_RESUMEIF_MASK) { - U1IR = _U1IR_RESUMEIF_MASK; - process_bus_resume(rhport); - } - if (is & _U1IR_SOFIF_MASK) { U1IR = _U1IR_SOFIF_MASK; dcd_event_bus_signal(rhport, DCD_EVENT_SOF, true); } if (is & _U1IR_STALLIF_MASK) { - U1IR = _U1IR_STALLIF_MASK; process_stall(rhport); + U1IR = _U1IR_STALLIF_MASK; } if (is & _U1IR_TRNIF_MASK) { process_tokdne(rhport); } + // Part 2 - "USB OTG interrupts" + is = U1OTGIR; + msk = U1OTGIE; + + U1OTGIR = is & ~msk; + is &= msk; + + if (is & _U1OTGIR_ACTVIF_MASK) { +#if TU_PIC_INT_SIZE == 4 + U1OTGIECLR = _U1OTGIE_ACTVIE_MASK; +#else + U1OTGIE &= ~_U1OTGIE_ACTVIE_MASK; +#endif + U1OTGIR = _U1OTGIR_ACTVIF_MASK; + process_bus_resume(rhport); + } + intr_clear(rhport); } -- cgit v1.3.1 From f409472998cfba4f6be0534912c1afd48e0d6816 Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 00:57:22 +0800 Subject: dcd_pic: handle remote wakeup more correctly --- src/portable/microchip/pic/dcd_pic.c | 19 ++++++++++++++++++- 1 file changed, 18 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index 0dac18523..9ffeb0811 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -532,8 +532,25 @@ void dcd_remote_wakeup(uint8_t rhport) #else U1CONbits.RESUME = 1; #endif - unsigned cnt = 25000000 / 1000; + + // FIXME: Assert RESUME signal correctly, requires device-specific handling + // For now we use a hardcoded cycle-based delay which attempts to delay 10ms + // at the most common CPU frequencies. On PIC32s we assume the loop body + // takes 3 cycles. On 16-bit PICs we assume the XC16 compiler is in use and + // use its `__delay_ms' function. + +#if CFG_TUSB_MCU == OPT_MCU_PIC32MM + uint32_t cnt = 24000000 / 1000 / 3; + while (cnt--) asm volatile("nop"); +#elif CFG_TUSB_MCU == OPT_MCU_PIC32MX + uint32_t cnt = 40000000 / 1000 / 3; while (cnt--) asm volatile("nop"); +#elif CFG_TUSB_MCU == OPT_MCU_PIC32MK + uint32_t cnt = 120000000 / 1000 / 3; + while (cnt--) asm volatile("nop"); +#else + __delay_ms(10); +#endif #if TU_PIC_INT_SIZE == 4 U1CONCLR = _U1CON_RESUME_MASK; -- cgit v1.3.1 From 0192b2a9b0a8a7a300326c27ebd59f15cb34790e Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 00:59:45 +0800 Subject: dcd_pic: implement dcd_deinit() --- src/portable/microchip/pic/dcd_pic.c | 13 +++++++++++++ 1 file changed, 13 insertions(+) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index 9ffeb0811..04c54059f 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -508,6 +508,19 @@ bool dcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { return true; } +bool dcd_deinit(uint8_t rhport) +{ + U1CON = 0; + U1IE = 0; + U1OTGIE = 0; +#if TU_PIC_INT_SIZE == 4 + U1PWRCCLR = _U1PWRC_USUSPEND_MASK | _U1PWRC_USBPWR_MASK; +#else + U1PWRC &= ~(_U1PWRC_USUSPEND_MASK | _U1PWRC_USBPWR_MASK); +#endif + return true; +} + void dcd_int_enable(uint8_t rhport) { intr_enable(rhport); -- cgit v1.3.1 From 6e1140683140eb7bb80dfae0d207a920dec6d12c Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 01:02:10 +0800 Subject: dcd_pic: handle EP0 timeout/stall correctly --- src/portable/microchip/pic/dcd_pic.c | 13 ++++++++++++- 1 file changed, 12 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index 04c54059f..4e0bd735e 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -316,12 +316,23 @@ static void prepare_next_setup_packet(uint8_t rhport) { const unsigned out_odd = _dcd.endpoint[0][0].odd; const unsigned in_odd = _dcd.endpoint[0][1].odd; - TU_ASSERT(0 == _dcd.bdt[0][0][out_odd].own, ); + + // Abandon any previous control transfers that might have been using EP0. + // Ordinarily, nothing actually needs abandoning, since the previous control + // transfer would have completed successfully prior to the host sending the + // next SETUP packet. However, in a timeout error case, or after an EP0 + // STALL event, one or more UOWN bits might still be set. If so, we should + // clear the UOWN bits, so the EP0 IN/OUT endpoints are in a known inactive + // state, ready for re-arming by the `dcd_edpt_xfer' function that will be + // called next. _dcd.bdt[0][0][out_odd].data = 0; + _dcd.bdt[0][0][out_odd].own = 0; _dcd.bdt[0][0][out_odd ^ 1].data = 1; _dcd.bdt[0][1][in_odd].data = 1; + _dcd.bdt[0][1][in_odd].own = 0; _dcd.bdt[0][1][in_odd ^ 1].data = 0; + _dcd.bdt[0][1][in_odd ^ 1].own = 0; dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_OUT), _dcd.setup_packet, sizeof(_dcd.setup_packet)); } -- cgit v1.3.1 From a4169114ec6acb07cf8e26a1718e61c0c7af69fa Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 01:04:29 +0800 Subject: dcd_pic: let the user manage shared GPIO/VBUS pin --- src/portable/microchip/pic/dcd_pic.c | 4 ---- 1 file changed, 4 deletions(-) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index 4e0bd735e..a4fa0e840 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -489,10 +489,6 @@ bool dcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { intr_disable(rhport); intr_clear(rhport); -#if CFG_TUSB_MCU == OPT_MCU_PIC32MM - TRISBbits.TRISB6 = 1; -#endif - tu_memclr(&_dcd, sizeof(_dcd)); #if TU_PIC_INT_SIZE == 4 -- cgit v1.3.1 From 655092d568720188a3a34b9376a7ebcf274dab79 Mon Sep 17 00:00:00 2001 From: Reimu NotMoe Date: Fri, 27 Dec 2024 04:17:26 +0800 Subject: dcd_pic: check USBBUSY bit on PIC32s --- src/portable/microchip/pic/dcd_pic.c | 3 +++ 1 file changed, 3 insertions(+) (limited to 'src/portable') diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index a4fa0e840..b4a698199 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -492,6 +492,9 @@ bool dcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { tu_memclr(&_dcd, sizeof(_dcd)); #if TU_PIC_INT_SIZE == 4 + // The USBBUSY bit is present on PIC32s and we're required to check it + // prior to powering on the USB peripheral (see DS61126F page 27) + while (U1PWRCbits.USBBUSY); U1PWRCSET = _U1PWRC_USBPWR_MASK; #else U1PWRCbits.USBPWR = 1; -- cgit v1.3.1 From b91d5ebb4509d02d108e249197884913698aac1c Mon Sep 17 00:00:00 2001 From: pschatzmann Date: Sat, 4 Jan 2025 22:20:46 +0100 Subject: rp2040 correct dcd_edpt_iso_activate --- src/portable/raspberrypi/rp2040/dcd_rp2040.c | 6 ++++++ 1 file changed, 6 insertions(+) (limited to 'src/portable') diff --git a/src/portable/raspberrypi/rp2040/dcd_rp2040.c b/src/portable/raspberrypi/rp2040/dcd_rp2040.c index af08b549d..b91dd38d5 100644 --- a/src/portable/raspberrypi/rp2040/dcd_rp2040.c +++ b/src/portable/raspberrypi/rp2040/dcd_rp2040.c @@ -496,6 +496,12 @@ bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) { (void) rhport; const uint8_t ep_addr = ep_desc->bEndpointAddress; + + // init w/o allocate + const uint16_t mps = ep_desc->wMaxPacketSize; + uint16_t size = (uint16_t)tu_div_ceil(mps, 64) * 64u; + hw_endpoint_init(ep_addr, size, TUSB_XFER_ISOCHRONOUS); + // Fill in endpoint control register with buffer offset struct hw_endpoint* ep = hw_endpoint_get_by_addr(ep_addr); TU_ASSERT(ep->hw_data_buf != NULL); // must be inited and buffer allocated -- cgit v1.3.1 From f7fa4d0edb2eccfe494d1499a6fc4ef3e039309b Mon Sep 17 00:00:00 2001 From: Jannis Konrad Date: Wed, 5 Feb 2025 17:35:02 +0100 Subject: ch32v3 fs: signal bus speed --- src/portable/wch/dcd_ch32_usbfs.c | 3 ++- 1 file changed, 2 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/wch/dcd_ch32_usbfs.c b/src/portable/wch/dcd_ch32_usbfs.c index 4e8e25a00..d7674b5a3 100644 --- a/src/portable/wch/dcd_ch32_usbfs.c +++ b/src/portable/wch/dcd_ch32_usbfs.c @@ -192,7 +192,8 @@ void dcd_int_handler(uint8_t rhport) { data.xfer[0][TUSB_DIR_OUT].max_size = 64; data.xfer[0][TUSB_DIR_IN].max_size = 64; - dcd_event_bus_signal(rhport, DCD_EVENT_BUS_RESET, true); + //dcd_event_bus_reset(rhport, (USBOTG_FS->BASE_CTRL & USBFS_CTRL_LOW_SPEED) ? 1 : 0, true); + dcd_event_bus_reset(rhport, (USBOTG_FS->UDEV_CTRL & USBFS_UDEV_CTRL_LOW_SPEED) ? 1 : 0, true); USBOTG_FS->DEV_ADDR = 0x00; EP_RX_CTRL(0) = USBFS_EP_R_RES_ACK; -- cgit v1.3.1 From 169d2d7a1fd120d8d0267eaf0a7dcc5e47059100 Mon Sep 17 00:00:00 2001 From: Jannis Konrad Date: Thu, 6 Feb 2025 08:50:25 +0100 Subject: use speed enum --- src/portable/wch/dcd_ch32_usbfs.c | 4 ++-- 1 file changed, 2 insertions(+), 2 deletions(-) (limited to 'src/portable') diff --git a/src/portable/wch/dcd_ch32_usbfs.c b/src/portable/wch/dcd_ch32_usbfs.c index d7674b5a3..c248ba14e 100644 --- a/src/portable/wch/dcd_ch32_usbfs.c +++ b/src/portable/wch/dcd_ch32_usbfs.c @@ -192,8 +192,8 @@ void dcd_int_handler(uint8_t rhport) { data.xfer[0][TUSB_DIR_OUT].max_size = 64; data.xfer[0][TUSB_DIR_IN].max_size = 64; - //dcd_event_bus_reset(rhport, (USBOTG_FS->BASE_CTRL & USBFS_CTRL_LOW_SPEED) ? 1 : 0, true); - dcd_event_bus_reset(rhport, (USBOTG_FS->UDEV_CTRL & USBFS_UDEV_CTRL_LOW_SPEED) ? 1 : 0, true); + //dcd_event_bus_reset(rhport, (USBOTG_FS->BASE_CTRL & USBFS_CTRL_LOW_SPEED) ? TUSB_SPEED_LOW : TUSB_SPEED_FULL, true); + dcd_event_bus_reset(rhport, (USBOTG_FS->UDEV_CTRL & USBFS_UDEV_CTRL_LOW_SPEED) ? TUSB_SPEED_LOW : TUSB_SPEED_FULL, true); USBOTG_FS->DEV_ADDR = 0x00; EP_RX_CTRL(0) = USBFS_EP_R_RES_ACK; -- cgit v1.3.1 From 93ff3daa116471e41615b85cd7d466cc48bc2148 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 28 Feb 2025 16:41:51 +0700 Subject: fix(hcd_rp2040) assert/panic endpoint already active: when a device reset while having on-going control transfer --- src/portable/raspberrypi/rp2040/hcd_rp2040.c | 48 +++++++++++++++------------- src/portable/raspberrypi/rp2040/rp2040_usb.c | 2 +- 2 files changed, 27 insertions(+), 23 deletions(-) (limited to 'src/portable') diff --git a/src/portable/raspberrypi/rp2040/hcd_rp2040.c b/src/portable/raspberrypi/rp2040/hcd_rp2040.c index 2c0a3fd49..478c6e789 100644 --- a/src/portable/raspberrypi/rp2040/hcd_rp2040.c +++ b/src/portable/raspberrypi/rp2040/hcd_rp2040.c @@ -459,28 +459,33 @@ tusb_speed_t hcd_port_speed_get(uint8_t rhport) } // Close all opened endpoint belong to this device -void hcd_device_close(uint8_t rhport, uint8_t dev_addr) -{ +void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { pico_trace("hcd_device_close %d\n", dev_addr); (void) rhport; - if (dev_addr == 0) return; - - for (size_t i = 1; i < TU_ARRAY_SIZE(ep_pool); i++) - { - hw_endpoint_t* ep = &ep_pool[i]; + // reset epx if it is currently active with unplugged device + if (epx.configured && epx.active && epx.dev_addr == dev_addr) { + epx.configured = false; + *epx.endpoint_control = 0; + *epx.buffer_control = 0; + hw_endpoint_reset_transfer(&epx); + } - if (ep->dev_addr == dev_addr && ep->configured) - { - // in case it is an interrupt endpoint, disable it - usb_hw_clear->int_ep_ctrl = (1 << (ep->interrupt_num + 1)); - usb_hw->int_ep_addr_ctrl[ep->interrupt_num] = 0; - - // unconfigure the endpoint - ep->configured = false; - *ep->endpoint_control = 0; - *ep->buffer_control = 0; - hw_endpoint_reset_transfer(ep); + // dev0 only has ep0 + if (dev_addr != 0) { + for (size_t i = 1; i < TU_ARRAY_SIZE(ep_pool); i++) { + hw_endpoint_t *ep = &ep_pool[i]; + if (ep->dev_addr == dev_addr && ep->configured) { + // in case it is an interrupt endpoint, disable it + usb_hw_clear->int_ep_ctrl = (1 << (ep->interrupt_num + 1)); + usb_hw->int_ep_addr_ctrl[ep->interrupt_num] = 0; + + // unconfigure the endpoint + ep->configured = false; + *ep->endpoint_control = 0; + *ep->buffer_control = 0; + hw_endpoint_reset_transfer(ep); + } } } } @@ -557,7 +562,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * } // If a normal transfer (non-interrupt) then initiate using - // sie ctrl registers. Otherwise interrupt ep registers should + // sie ctrl registers. Otherwise, interrupt ep registers should // already be configured if ( ep == &epx ) { @@ -597,13 +602,12 @@ bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet (void) rhport; // Copy data into setup packet buffer - for ( uint8_t i = 0; i < 8; i++ ) - { + for (uint8_t i = 0; i < 8; i++) { usbh_dpram->setup_packet[i] = setup_packet[i]; } // Configure EP0 struct with setup info for the trans complete - struct hw_endpoint * ep = _hw_endpoint_allocate(0); + struct hw_endpoint * ep = _hw_endpoint_allocate( (uint8_t) TUSB_XFER_CONTROL); TU_ASSERT(ep); // EPX should be inactive diff --git a/src/portable/raspberrypi/rp2040/rp2040_usb.c b/src/portable/raspberrypi/rp2040/rp2040_usb.c index 43f48da39..9d0bd762d 100644 --- a/src/portable/raspberrypi/rp2040/rp2040_usb.c +++ b/src/portable/raspberrypi/rp2040/rp2040_usb.c @@ -110,7 +110,7 @@ void __tusb_irq_path_func(_hw_endpoint_buffer_control_update32)(struct hw_endpoi *ep->buffer_control = value & ~USB_BUF_CTRL_AVAIL; // 4.1.2.5.1 Con-current access: 12 cycles (should be good for 48*12Mhz = 576Mhz) after write to buffer control // Don't need delay in host mode as host is in charge - if ( !is_host_mode()) { + if (!is_host_mode()) { busy_wait_at_least_cycles(12); } } -- cgit v1.3.1 From 102c1991d0abcfba9275830c48706ac34d7734d5 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 5 Mar 2025 22:26:28 +0700 Subject: rp2040: abort transfer if active in iso_activate() add hw_endpoint_abort_xfer() --- src/portable/raspberrypi/rp2040/dcd_rp2040.c | 59 ++++++++++++++++------------ 1 file changed, 33 insertions(+), 26 deletions(-) (limited to 'src/portable') diff --git a/src/portable/raspberrypi/rp2040/dcd_rp2040.c b/src/portable/raspberrypi/rp2040/dcd_rp2040.c index b91dd38d5..358ce84bc 100644 --- a/src/portable/raspberrypi/rp2040/dcd_rp2040.c +++ b/src/portable/raspberrypi/rp2040/dcd_rp2040.c @@ -148,6 +148,32 @@ static void hw_endpoint_xfer(uint8_t ep_addr, uint8_t* buffer, uint16_t total_by hw_endpoint_xfer_start(ep, buffer, total_bytes); } +static void hw_endpoint_abort_xfer(struct hw_endpoint* ep) { + // Abort any pending transfer + // Due to Errata RP2040-E2: ABORT flag is only applicable for B2 and later (unusable for B0, B1). + // Which means we are not guaranteed to safely abort pending transfer on B0 and B1. + const uint8_t dir = tu_edpt_dir(ep->ep_addr); + const uint8_t epnum = tu_edpt_number(ep->ep_addr); + const uint32_t abort_mask = TU_BIT((epnum << 1) | (dir ? 0 : 1)); + if (rp2040_chip_version() >= 2) { + usb_hw_set->abort = abort_mask; + while ((usb_hw->abort_done & abort_mask) != abort_mask) {} + } + + uint32_t buf_ctrl = USB_BUF_CTRL_SEL; // reset to buffer 0 + if (ep->next_pid) { + buf_ctrl |= USB_BUF_CTRL_DATA1_PID; + } + + _hw_endpoint_buffer_control_set_value32(ep, buf_ctrl); + hw_endpoint_reset_transfer(ep); + + if (rp2040_chip_version() >= 2) { + usb_hw_clear->abort_done = abort_mask; + usb_hw_clear->abort = abort_mask; + } +} + static void __tusb_irq_path_func(hw_handle_buff_status)(void) { uint32_t remaining_buffers = usb_hw->buf_status; pico_trace("buf_status = 0x%08lx\r\n", remaining_buffers); @@ -178,25 +204,10 @@ TU_ATTR_ALWAYS_INLINE static inline void reset_ep0(void) { // setup transfer. Also clear a stall in case for (uint8_t dir = 0; dir < 2; dir++) { struct hw_endpoint* ep = hw_endpoint_get_by_num(0, dir); + ep->next_pid = 1u; if (ep->active) { - // Abort any pending transfer from a prior control transfer per USB specs - // Due to Errata RP2040-E2: ABORT flag is only applicable for B2 and later (unusable for B0, B1). - // Which means we are not guaranteed to safely abort pending transfer on B0 and B1. - uint32_t const abort_mask = (dir ? USB_EP_ABORT_EP0_IN_BITS : USB_EP_ABORT_EP0_OUT_BITS); - if (rp2040_chip_version() >= 2) { - usb_hw_set->abort = abort_mask; - while ((usb_hw->abort_done & abort_mask) != abort_mask) {} - } - - _hw_endpoint_buffer_control_set_value32(ep, USB_BUF_CTRL_DATA1_PID | USB_BUF_CTRL_SEL); - hw_endpoint_reset_transfer(ep); - - if (rp2040_chip_version() >= 2) { - usb_hw_clear->abort_done = abort_mask; - usb_hw_clear->abort = abort_mask; - } + hw_endpoint_abort_xfer(ep); // Abort any pending transfer per USB specs } - ep->next_pid = 1u; } } @@ -495,18 +506,14 @@ bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet // New API: Configure and enable an ISO endpoint according to descriptor bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) { (void) rhport; - const uint8_t ep_addr = ep_desc->bEndpointAddress; + struct hw_endpoint* ep = hw_endpoint_get_by_addr(ep_desc->bEndpointAddress); + TU_ASSERT(ep->hw_data_buf != NULL); // must be inited and allocated previously - // init w/o allocate - const uint16_t mps = ep_desc->wMaxPacketSize; - uint16_t size = (uint16_t)tu_div_ceil(mps, 64) * 64u; - hw_endpoint_init(ep_addr, size, TUSB_XFER_ISOCHRONOUS); + if (ep->active) { + hw_endpoint_abort_xfer(ep); // abort any pending transfer + } - // Fill in endpoint control register with buffer offset - struct hw_endpoint* ep = hw_endpoint_get_by_addr(ep_addr); - TU_ASSERT(ep->hw_data_buf != NULL); // must be inited and buffer allocated ep->wMaxPacketSize = ep_desc->wMaxPacketSize; - hw_endpoint_enable(ep); return true; } -- cgit v1.3.1 From 65e44e0a51272f9d75719d90955f19209dbf1ea2 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 6 Mar 2025 22:46:21 +0700 Subject: fix(dwc2) host driver conflict with max3421e --- examples/host/bare_api/src/tusb_config.h | 3 ++- examples/host/cdc_msc_hid/src/tusb_config.h | 3 ++- examples/host/cdc_msc_hid_freertos/src/tusb_config.h | 3 ++- examples/host/device_info/src/tusb_config.h | 3 ++- examples/host/hid_controller/src/tusb_config.h | 3 ++- examples/host/msc_file_explorer/src/tusb_config.h | 3 ++- src/portable/synopsys/dwc2/hcd_dwc2.c | 2 +- 7 files changed, 13 insertions(+), 7 deletions(-) (limited to 'src/portable') diff --git a/examples/host/bare_api/src/tusb_config.h b/examples/host/bare_api/src/tusb_config.h index fab233be0..a03675c5f 100644 --- a/examples/host/bare_api/src/tusb_config.h +++ b/examples/host/bare_api/src/tusb_config.h @@ -69,9 +69,10 @@ // Enable Host stack #define CFG_TUH_ENABLED 1 +// #define CFG_TUH_MAX3421 1 // use max3421 as host controller + #if CFG_TUSB_MCU == OPT_MCU_RP2040 // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller - // #define CFG_TUH_MAX3421 1 // use max3421 as host controller // host roothub port is 1 if using either pio-usb or max3421 #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) diff --git a/examples/host/cdc_msc_hid/src/tusb_config.h b/examples/host/cdc_msc_hid/src/tusb_config.h index a59a0ffb9..cc8d6e5c4 100644 --- a/examples/host/cdc_msc_hid/src/tusb_config.h +++ b/examples/host/cdc_msc_hid/src/tusb_config.h @@ -69,9 +69,10 @@ // Enable Host stack #define CFG_TUH_ENABLED 1 +// #define CFG_TUH_MAX3421 1 // use max3421 as host controller + #if CFG_TUSB_MCU == OPT_MCU_RP2040 // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller - // #define CFG_TUH_MAX3421 1 // use max3421 as host controller // host roothub port is 1 if using either pio-usb or max3421 #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) diff --git a/examples/host/cdc_msc_hid_freertos/src/tusb_config.h b/examples/host/cdc_msc_hid_freertos/src/tusb_config.h index 02de4197b..682265f59 100644 --- a/examples/host/cdc_msc_hid_freertos/src/tusb_config.h +++ b/examples/host/cdc_msc_hid_freertos/src/tusb_config.h @@ -74,9 +74,10 @@ // Enable Host stack #define CFG_TUH_ENABLED 1 +// #define CFG_TUH_MAX3421 1 // use max3421 as host controller + #if CFG_TUSB_MCU == OPT_MCU_RP2040 // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller - // #define CFG_TUH_MAX3421 1 // use max3421 as host controller // host roothub port is 1 if using either pio-usb or max3421 #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) diff --git a/examples/host/device_info/src/tusb_config.h b/examples/host/device_info/src/tusb_config.h index 5190b5b1f..db02a97db 100644 --- a/examples/host/device_info/src/tusb_config.h +++ b/examples/host/device_info/src/tusb_config.h @@ -74,9 +74,10 @@ // Enable Host stack #define CFG_TUH_ENABLED 1 +// #define CFG_TUH_MAX3421 1 // use max3421 as host controller + #if CFG_TUSB_MCU == OPT_MCU_RP2040 // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller - // #define CFG_TUH_MAX3421 1 // use max3421 as host controller // host roothub port is 1 if using either pio-usb or max3421 #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) diff --git a/examples/host/hid_controller/src/tusb_config.h b/examples/host/hid_controller/src/tusb_config.h index 3ac591d8f..351fe0178 100644 --- a/examples/host/hid_controller/src/tusb_config.h +++ b/examples/host/hid_controller/src/tusb_config.h @@ -69,9 +69,10 @@ // Enable Host stack #define CFG_TUH_ENABLED 1 +// #define CFG_TUH_MAX3421 1 // use max3421 as host controller + #if CFG_TUSB_MCU == OPT_MCU_RP2040 // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller - // #define CFG_TUH_MAX3421 1 // use max3421 as host controller // host roothub port is 1 if using either pio-usb or max3421 #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) diff --git a/examples/host/msc_file_explorer/src/tusb_config.h b/examples/host/msc_file_explorer/src/tusb_config.h index c798b4383..c1829c300 100644 --- a/examples/host/msc_file_explorer/src/tusb_config.h +++ b/examples/host/msc_file_explorer/src/tusb_config.h @@ -69,9 +69,10 @@ // Enable Host stack #define CFG_TUH_ENABLED 1 +// #define CFG_TUH_MAX3421 1 // use max3421 as host controller + #if CFG_TUSB_MCU == OPT_MCU_RP2040 // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller - // #define CFG_TUH_MAX3421 1 // use max3421 as host controller // host roothub port is 1 if using either pio-usb or max3421 #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) diff --git a/src/portable/synopsys/dwc2/hcd_dwc2.c b/src/portable/synopsys/dwc2/hcd_dwc2.c index ebbb6200a..b13479b02 100644 --- a/src/portable/synopsys/dwc2/hcd_dwc2.c +++ b/src/portable/synopsys/dwc2/hcd_dwc2.c @@ -26,7 +26,7 @@ #include "tusb_option.h" -#if CFG_TUH_ENABLED && defined(TUP_USBIP_DWC2) +#if CFG_TUH_ENABLED && defined(TUP_USBIP_DWC2) && !CFG_TUH_MAX3421 #if !(CFG_TUH_DWC2_SLAVE_ENABLE || CFG_TUH_DWC2_DMA_ENABLE) #error DWC2 require either CFG_TUH_DWC2_SLAVE_ENABLE or CFG_TUH_DWC2_DMA_ENABLE to be enabled -- cgit v1.3.1 From 585bcbfcdd5e24e25dd8d42b51446824b8143602 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Sun, 16 Mar 2025 00:07:15 +0100 Subject: Fix 2 IAR warnings. Signed-off-by: HiFiPhile --- src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c | 5 +++-- 1 file changed, 3 insertions(+), 2 deletions(-) (limited to 'src/portable') diff --git a/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c b/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c index 7d5cfb5b0..7c637ce0c 100644 --- a/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c +++ b/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c @@ -297,7 +297,7 @@ bool dcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { dcd_reg->EPLISTSTART = (uint32_t) _dcd.ep; dcd_reg->DATABUFSTART = tu_align((uint32_t) &_dcd, TU_BIT(22)); // 22-bit alignment - dcd_reg->INTSTAT |= dcd_reg->INTSTAT; // clear all pending interrupt + dcd_reg->INTSTAT = dcd_reg->INTSTAT; // clear all pending interrupt dcd_reg->INTEN = INT_DEVICE_STATUS_MASK; dcd_reg->DEVCMDSTAT |= DEVCMDSTAT_DEVICE_ENABLE_MASK | DEVCMDSTAT_DEVICE_CONNECT_MASK | DEVCMDSTAT_RESET_CHANGE_MASK | DEVCMDSTAT_CONNECT_CHANGE_MASK | DEVCMDSTAT_SUSPEND_CHANGE_MASK; @@ -563,7 +563,8 @@ void dcd_int_handler(uint8_t rhport) uint32_t const cmd_stat = dcd_reg->DEVCMDSTAT; - uint32_t int_status = dcd_reg->INTSTAT & dcd_reg->INTEN; + uint32_t int_status = dcd_reg->INTSTAT; + int_status &= dcd_reg->INTEN; dcd_reg->INTSTAT = int_status; // Acknowledge handled interrupt if (int_status == 0) return; -- cgit v1.3.1 From 65e01fff2e7ab5302baa45bdd81a1d774e269452 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 25 Mar 2025 16:15:58 +0700 Subject: add tuh_edpt_close() API, it will abort any pending transfer implement hcd_edpt_close() for pio-usb and max3421e, also move max3421e api into its own header. --- examples/host/bare_api/src/main.c | 254 +++++++++++-------------- src/host/hcd.h | 3 + src/host/usbh.c | 6 + src/host/usbh.h | 7 + src/portable/analog/max3421/hcd_max3421.c | 40 ++-- src/portable/analog/max3421/hcd_max3421.h | 63 ++++++ src/portable/raspberrypi/pio_usb/hcd_pio_usb.c | 5 + tools/get_deps.py | 4 +- 8 files changed, 218 insertions(+), 164 deletions(-) create mode 100644 src/portable/analog/max3421/hcd_max3421.h (limited to 'src/portable') diff --git a/examples/host/bare_api/src/main.c b/examples/host/bare_api/src/main.c index f582f4f5a..0c76ff0c9 100644 --- a/examples/host/bare_api/src/main.c +++ b/examples/host/bare_api/src/main.c @@ -55,16 +55,15 @@ uint8_t* get_hid_buf(uint8_t daddr); void free_hid_buf(uint8_t daddr); /*------------- MAIN -------------*/ -int main(void) -{ +int main(void) { board_init(); printf("TinyUSB Bare API Example\r\n"); // init host stack on configured roothub port tusb_rhport_init_t host_init = { - .role = TUSB_ROLE_HOST, - .speed = TUSB_SPEED_AUTO + .role = TUSB_ROLE_HOST, + .speed = TUSB_SPEED_AUTO }; tusb_init(BOARD_TUH_RHPORT, &host_init); @@ -72,8 +71,7 @@ int main(void) board_init_after_tusb(); } - while (1) - { + while (1) { // tinyusb host task tuh_task(); led_blinking_task(); @@ -85,8 +83,7 @@ int main(void) /*------------- TinyUSB Callbacks -------------*/ // Invoked when device is mounted (configured) -void tuh_mount_cb (uint8_t daddr) -{ +void tuh_mount_cb(uint8_t daddr) { printf("Device attached, address = %d\r\n", daddr); // Get Device Descriptor @@ -95,8 +92,7 @@ void tuh_mount_cb (uint8_t daddr) } /// Invoked when device is unmounted (bus reset/unplugged) -void tuh_umount_cb(uint8_t daddr) -{ +void tuh_umount_cb(uint8_t daddr) { printf("Device removed, address = %d\r\n", daddr); free_hid_buf(daddr); } @@ -104,11 +100,8 @@ void tuh_umount_cb(uint8_t daddr) //--------------------------------------------------------------------+ // Device Descriptor //--------------------------------------------------------------------+ - -void print_device_descriptor(tuh_xfer_t* xfer) -{ - if ( XFER_RESULT_SUCCESS != xfer->result ) - { +void print_device_descriptor(tuh_xfer_t *xfer) { + if (XFER_RESULT_SUCCESS != xfer->result) { printf("Failed to get device descriptor\r\n"); return; } @@ -131,33 +124,29 @@ void print_device_descriptor(tuh_xfer_t* xfer) // Get String descriptor using Sync API uint16_t temp_buf[128]; - printf(" iManufacturer %u " , desc_device.iManufacturer); - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_manufacturer_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf)) ) - { + printf(" iManufacturer %u ", desc_device.iManufacturer); + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_manufacturer_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) { print_utf16(temp_buf, TU_ARRAY_SIZE(temp_buf)); } printf("\r\n"); - printf(" iProduct %u " , desc_device.iProduct); - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_product_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) - { + printf(" iProduct %u ", desc_device.iProduct); + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_product_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) { print_utf16(temp_buf, TU_ARRAY_SIZE(temp_buf)); } printf("\r\n"); - printf(" iSerialNumber %u " , desc_device.iSerialNumber); - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_serial_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) - { + printf(" iSerialNumber %u ", desc_device.iSerialNumber); + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_serial_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) { print_utf16(temp_buf, TU_ARRAY_SIZE(temp_buf)); } printf("\r\n"); - printf(" bNumConfigurations %u\r\n" , desc_device.bNumConfigurations); + printf(" bNumConfigurations %u\r\n", desc_device.bNumConfigurations); // Get configuration descriptor with sync API - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_configuration_sync(daddr, 0, temp_buf, sizeof(temp_buf))) - { - parse_config_descriptor(daddr, (tusb_desc_configuration_t*) temp_buf); + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_configuration_sync(daddr, 0, temp_buf, sizeof(temp_buf))) { + parse_config_descriptor(daddr, (tusb_desc_configuration_t *) temp_buf); } } @@ -171,37 +160,33 @@ uint16_t count_interface_total_len(tusb_desc_interface_t const* desc_itf, uint8_ void open_hid_interface(uint8_t daddr, tusb_desc_interface_t const *desc_itf, uint16_t max_len); // simple configuration parser to open and listen to HID Endpoint IN -void parse_config_descriptor(uint8_t dev_addr, tusb_desc_configuration_t const* desc_cfg) -{ - uint8_t const* desc_end = ((uint8_t const*) desc_cfg) + tu_le16toh(desc_cfg->wTotalLength); - uint8_t const* p_desc = tu_desc_next(desc_cfg); +void parse_config_descriptor(uint8_t dev_addr, tusb_desc_configuration_t const *desc_cfg) { + uint8_t const *desc_end = ((uint8_t const *) desc_cfg) + tu_le16toh(desc_cfg->wTotalLength); + uint8_t const *p_desc = tu_desc_next(desc_cfg); // parse each interfaces - while( p_desc < desc_end ) - { + while (p_desc < desc_end) { uint8_t assoc_itf_count = 1; // Class will always starts with Interface Association (if any) and then Interface descriptor - if ( TUSB_DESC_INTERFACE_ASSOCIATION == tu_desc_type(p_desc) ) - { - tusb_desc_interface_assoc_t const * desc_iad = (tusb_desc_interface_assoc_t const *) p_desc; + if (TUSB_DESC_INTERFACE_ASSOCIATION == tu_desc_type(p_desc)) { + tusb_desc_interface_assoc_t const *desc_iad = (tusb_desc_interface_assoc_t const *) p_desc; assoc_itf_count = desc_iad->bInterfaceCount; - p_desc = tu_desc_next(p_desc); // next to Interface + p_desc = tu_desc_next(p_desc);// next to Interface } // must be interface from now - if( TUSB_DESC_INTERFACE != tu_desc_type(p_desc) ) return; - tusb_desc_interface_t const* desc_itf = (tusb_desc_interface_t const*) p_desc; + if (TUSB_DESC_INTERFACE != tu_desc_type(p_desc)) { return; } + tusb_desc_interface_t const *desc_itf = (tusb_desc_interface_t const *) p_desc; - uint16_t const drv_len = count_interface_total_len(desc_itf, assoc_itf_count, (uint16_t) (desc_end-p_desc)); + uint16_t const drv_len = count_interface_total_len(desc_itf, assoc_itf_count, (uint16_t) (desc_end - p_desc)); // probably corrupted descriptor - if(drv_len < sizeof(tusb_desc_interface_t)) return; + if (drv_len < sizeof(tusb_desc_interface_t)) { return; } // only open and listen to HID endpoint IN - if (desc_itf->bInterfaceClass == TUSB_CLASS_HID) - { + if (desc_itf->bInterfaceClass == TUSB_CLASS_HID) { open_hid_interface(dev_addr, desc_itf, drv_len); } @@ -210,25 +195,21 @@ void parse_config_descriptor(uint8_t dev_addr, tusb_desc_configuration_t const* } } -uint16_t count_interface_total_len(tusb_desc_interface_t const* desc_itf, uint8_t itf_count, uint16_t max_len) -{ - uint8_t const* p_desc = (uint8_t const*) desc_itf; +uint16_t count_interface_total_len(tusb_desc_interface_t const *desc_itf, uint8_t itf_count, uint16_t max_len) { + uint8_t const *p_desc = (uint8_t const *) desc_itf; uint16_t len = 0; - while (itf_count--) - { + while (itf_count--) { // Next on interface desc len += tu_desc_len(desc_itf); p_desc = tu_desc_next(p_desc); - while (len < max_len) - { + while (len < max_len) { // return on IAD regardless of itf count - if ( tu_desc_type(p_desc) == TUSB_DESC_INTERFACE_ASSOCIATION ) return len; + if (tu_desc_type(p_desc) == TUSB_DESC_INTERFACE_ASSOCIATION) { return len; } - if ( (tu_desc_type(p_desc) == TUSB_DESC_INTERFACE) && - ((tusb_desc_interface_t const*) p_desc)->bAlternateSetting == 0 ) - { + if ((tu_desc_type(p_desc) == TUSB_DESC_INTERFACE) && + ((tusb_desc_interface_t const *) p_desc)->bAlternateSetting == 0) { break; } @@ -246,46 +227,45 @@ uint16_t count_interface_total_len(tusb_desc_interface_t const* desc_itf, uint8_ void hid_report_received(tuh_xfer_t* xfer); -void open_hid_interface(uint8_t daddr, tusb_desc_interface_t const *desc_itf, uint16_t max_len) -{ +void open_hid_interface(uint8_t daddr, tusb_desc_interface_t const *desc_itf, uint16_t max_len) { // len = interface + hid + n*endpoints uint16_t const drv_len = (uint16_t) (sizeof(tusb_desc_interface_t) + sizeof(tusb_hid_descriptor_hid_t) + desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); // corrupted descriptor - if (max_len < drv_len) return; + if (max_len < drv_len) { return; } uint8_t const *p_desc = (uint8_t const *) desc_itf; // HID descriptor p_desc = tu_desc_next(p_desc); tusb_hid_descriptor_hid_t const *desc_hid = (tusb_hid_descriptor_hid_t const *) p_desc; - if(HID_DESC_TYPE_HID != desc_hid->bDescriptorType) return; + if (HID_DESC_TYPE_HID != desc_hid->bDescriptorType) { return; } // Endpoint descriptor p_desc = tu_desc_next(p_desc); - tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) p_desc; - - for(int i = 0; i < desc_itf->bNumEndpoints; i++) - { - if (TUSB_DESC_ENDPOINT != desc_ep->bDescriptorType) return; - - if(tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) - { - // skip if failed to open endpoint - if ( ! tuh_edpt_open(daddr, desc_ep) ) return; - - uint8_t* buf = get_hid_buf(daddr); - if (!buf) return; // out of memory - - tuh_xfer_t xfer = - { - .daddr = daddr, - .ep_addr = desc_ep->bEndpointAddress, - .buflen = 64, - .buffer = buf, - .complete_cb = hid_report_received, - .user_data = (uintptr_t) buf, // since buffer is not available in callback, use user data to store the buffer + tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) p_desc; + + for (int i = 0; i < desc_itf->bNumEndpoints; i++) { + if (TUSB_DESC_ENDPOINT != desc_ep->bDescriptorType) { return; } + + if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { + if (!tuh_edpt_open(daddr, desc_ep)) { + return; // skip if failed to open endpoint + } + + uint8_t *buf = get_hid_buf(daddr); + if (!buf) { + return;// out of memory + } + + tuh_xfer_t xfer = { + .daddr = daddr, + .ep_addr = desc_ep->bEndpointAddress, + .buflen = 64, + .buffer = buf, + .complete_cb = hid_report_received, + .user_data = (uintptr_t) buf,// since buffer is not available in callback, use user data to store the buffer }; // submit transfer for this EP @@ -299,18 +279,17 @@ void open_hid_interface(uint8_t daddr, tusb_desc_interface_t const *desc_itf, ui } } -void hid_report_received(tuh_xfer_t* xfer) -{ +void hid_report_received(tuh_xfer_t *xfer) { // Note: not all field in xfer is available for use (i.e filled by tinyusb stack) in callback to save sram // For instance, xfer->buffer is NULL. We have used user_data to store buffer when submitted callback - uint8_t* buf = (uint8_t*) xfer->user_data; + uint8_t *buf = (uint8_t *) xfer->user_data; - if (xfer->result == XFER_RESULT_SUCCESS) - { + if (xfer->result == XFER_RESULT_SUCCESS) { printf("[dev %u: ep %02x] HID Report:", xfer->daddr, xfer->ep_addr); - for(uint32_t i=0; iactual_len; i++) - { - if (i%16 == 0) printf("\r\n "); + for (uint32_t i = 0; i < xfer->actual_len; i++) { + if (i % 16 == 0) { + printf("\r\n "); + } printf("%02X ", buf[i]); } printf("\r\n"); @@ -329,12 +308,9 @@ void hid_report_received(tuh_xfer_t* xfer) //--------------------------------------------------------------------+ // get an buffer from pool -uint8_t* get_hid_buf(uint8_t daddr) -{ - for(size_t i=0; i> 6 & 0x1F)); - *utf8++ = (uint8_t)(0x80 | (chr >> 0 & 0x3F)); - } else { - // TODO: Verify surrogate. - *utf8++ = (uint8_t)(0xE0 | (chr >> 12 & 0x0F)); - *utf8++ = (uint8_t)(0x80 | (chr >> 6 & 0x3F)); - *utf8++ = (uint8_t)(0x80 | (chr >> 0 & 0x3F)); - } - // TODO: Handle UTF-16 code points that take two entries. + // TODO: Check for runover. + (void) utf8_len; + // Get the UTF-16 length out of the data itself. + + for (size_t i = 0; i < utf16_len; i++) { + uint16_t chr = utf16[i]; + if (chr < 0x80) { + *utf8++ = chr & 0xffu; + } else if (chr < 0x800) { + *utf8++ = (uint8_t) (0xC0 | (chr >> 6 & 0x1F)); + *utf8++ = (uint8_t) (0x80 | (chr >> 0 & 0x3F)); + } else { + // TODO: Verify surrogate. + *utf8++ = (uint8_t) (0xE0 | (chr >> 12 & 0x0F)); + *utf8++ = (uint8_t) (0x80 | (chr >> 6 & 0x3F)); + *utf8++ = (uint8_t) (0x80 | (chr >> 0 & 0x3F)); } + // TODO: Handle UTF-16 code points that take two entries. + } } // Count how many bytes a utf-16-le encoded string will take in utf-8. static int _count_utf8_bytes(const uint16_t *buf, size_t len) { - size_t total_bytes = 0; - for (size_t i = 0; i < len; i++) { - uint16_t chr = buf[i]; - if (chr < 0x80) { - total_bytes += 1; - } else if (chr < 0x800) { - total_bytes += 2; - } else { - total_bytes += 3; - } - // TODO: Handle UTF-16 code points that take two entries. + size_t total_bytes = 0; + for (size_t i = 0; i < len; i++) { + uint16_t chr = buf[i]; + if (chr < 0x80) { + total_bytes += 1; + } else if (chr < 0x800) { + total_bytes += 2; + } else { + total_bytes += 3; } - return (int) total_bytes; + // TODO: Handle UTF-16 code points that take two entries. + } + return (int) total_bytes; } static void print_utf16(uint16_t *temp_buf, size_t buf_len) { - if ((temp_buf[0] & 0xff) == 0) return; // empty - size_t utf16_len = ((temp_buf[0] & 0xff) - 2) / sizeof(uint16_t); - size_t utf8_len = (size_t) _count_utf8_bytes(temp_buf + 1, utf16_len); - _convert_utf16le_to_utf8(temp_buf + 1, utf16_len, (uint8_t *) temp_buf, sizeof(uint16_t) * buf_len); - ((uint8_t*) temp_buf)[utf8_len] = '\0'; + if ((temp_buf[0] & 0xff) == 0) return;// empty + size_t utf16_len = ((temp_buf[0] & 0xff) - 2) / sizeof(uint16_t); + size_t utf8_len = (size_t) _count_utf8_bytes(temp_buf + 1, utf16_len); + _convert_utf16le_to_utf8(temp_buf + 1, utf16_len, (uint8_t *) temp_buf, sizeof(uint16_t) * buf_len); + ((uint8_t *) temp_buf)[utf8_len] = '\0'; - printf("%s", (char*)temp_buf); + printf("%s", (char *) temp_buf); } diff --git a/src/host/hcd.h b/src/host/hcd.h index 56b6fdb5d..aa9e9cf3b 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -165,6 +165,9 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr); // Open an endpoint bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * ep_desc); +// Close an endpoint +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr); + // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen); diff --git a/src/host/usbh.c b/src/host/usbh.c index 308916c9b..5925a7be0 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -994,6 +994,12 @@ bool tuh_edpt_open(uint8_t dev_addr, tusb_desc_endpoint_t const* desc_ep) { return hcd_edpt_open(usbh_get_rhport(dev_addr), dev_addr, desc_ep); } +bool tuh_edpt_close(uint8_t daddr, uint8_t ep_addr) { + TU_VERIFY(0 != tu_edpt_number(ep_addr)); // cannot close EP0 + tuh_edpt_abort_xfer(daddr, ep_addr); // abort any pending transfer + return hcd_edpt_close(usbh_get_rhport(daddr), daddr, ep_addr); +} + bool usbh_edpt_busy(uint8_t dev_addr, uint8_t ep_addr) { usbh_device_t* dev = get_device(dev_addr); TU_VERIFY(dev); diff --git a/src/host/usbh.h b/src/host/usbh.h index d95bb9b57..4829a8183 100644 --- a/src/host/usbh.h +++ b/src/host/usbh.h @@ -33,6 +33,10 @@ #include "common/tusb_common.h" +#if CFG_TUH_MAX3421 +#include "portable/analog/max3421/hcd_max3421.h" +#endif + //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ @@ -227,6 +231,9 @@ bool tuh_edpt_xfer(tuh_xfer_t* xfer); // Open a non-control endpoint bool tuh_edpt_open(uint8_t daddr, tusb_desc_endpoint_t const * desc_ep); +// Close a non-control endpoint, it will abort any pending transfer +bool tuh_edpt_close(uint8_t daddr, uint8_t ep_addr); + // Abort a queued transfer. Note: it can only abort transfer that has not been started // Return true if a queued transfer is aborted, false if there is no transfer to abort bool tuh_edpt_abort_xfer(uint8_t daddr, uint8_t ep_addr); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index c5e924266..3fbf950a4 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -252,28 +252,6 @@ static tuh_configure_max3421_t _tuh_cfg = { .pinctl = 0, // default: negative edge interrupt }; -//--------------------------------------------------------------------+ -// API: SPI transfer with MAX3421E -// - spi_cs_api(), spi_xfer_api(), int_api(): must be implemented by application -// - reg_read(), reg_write(): is implemented by this driver, can be used by application -//--------------------------------------------------------------------+ - -// API to control MAX3421 SPI CS -extern void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); - -// API to transfer data with MAX3421 SPI -// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only -extern bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes); - -// API to enable/disable MAX3421 INTR pin interrupt -extern void tuh_max3421_int_api(uint8_t rhport, bool enabled); - -// API to read MAX3421's register. Implemented by TinyUSB -uint8_t tuh_max3421_reg_read(uint8_t rhport, uint8_t reg, bool in_isr); - -// API to write MAX3421's register. Implemented by TinyUSB -bool tuh_max3421_reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr); - //--------------------------------------------------------------------+ // SPI Commands and Helper //--------------------------------------------------------------------+ @@ -632,6 +610,9 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e if (daddr == 0 && ep_num == 0) { ep = &_hcd_data.ep[0]; }else { + if (NULL != find_ep_not_addr0(daddr, ep_num, ep_dir)) { + return false; // endpoint already opened + } ep = allocate_ep(); TU_ASSERT(ep); ep->daddr = daddr; @@ -645,6 +626,21 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; + uint8_t const ep_num = tu_edpt_number(ep_addr); + tusb_dir_t const ep_dir = tu_edpt_dir(ep_addr); + max3421_ep_t * ep = find_ep_not_addr0(daddr, ep_num, ep_dir); + + if (!ep) { + return false; // not opened + } + + tu_memclr(ep, sizeof(max3421_ep_t)); + + return true; +} + /* The microcontroller repeatedly writes the SNDFIFO register R2 to load the FIFO with up to 64 data bytes. * Then the microcontroller writes the SNDBC register, which this does three things: * 1. Tells the MAX3421E SIE (Serial Interface Engine) how many bytes in the FIFO to send. diff --git a/src/portable/analog/max3421/hcd_max3421.h b/src/portable/analog/max3421/hcd_max3421.h new file mode 100644 index 000000000..4631fa21a --- /dev/null +++ b/src/portable/analog/max3421/hcd_max3421.h @@ -0,0 +1,63 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2025 Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ +#ifndef TUSB_HCD_MAX3421_H +#define TUSB_HCD_MAX3421_H + +#ifdef __cplusplus + extern "C" { +#endif + +//--------------------------------------------------------------------+ +// SPI transfer API with MAX3421E are implemented by application +// - spi_cs_api(), spi_xfer_api(), int_api() +//--------------------------------------------------------------------+ + +// API to control MAX3421 SPI CS +extern void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); + +// API to transfer data with MAX3421 SPI +// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only +extern bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes); + +// API to enable/disable MAX3421 INTR pin interrupt +extern void tuh_max3421_int_api(uint8_t rhport, bool enabled); + +//--------------------------------------------------------------------+ +// API for read/write MAX3421 registers +// are implemented by this driver, can be used by application +//--------------------------------------------------------------------+ + +// API to read MAX3421's register. Implemented by TinyUSB +uint8_t tuh_max3421_reg_read(uint8_t rhport, uint8_t reg, bool in_isr); + +// API to write MAX3421's register. Implemented by TinyUSB +bool tuh_max3421_reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr); + +#ifdef __cplusplus + } +#endif + +#endif diff --git a/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c b/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c index 6422afff1..225a44dcf 100644 --- a/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c +++ b/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c @@ -122,6 +122,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return pio_usb_host_endpoint_open(pio_rhport, dev_addr, (uint8_t const *) desc_ep, need_pre); } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + uint8_t const pio_rhport = RHPORT_PIO(rhport); + return pio_usb_host_endpoint_close(pio_rhport, daddr, ep_addr); +} + bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t *buffer, uint16_t buflen) { uint8_t const pio_rhport = RHPORT_PIO(rhport); return pio_usb_host_endpoint_transfer(pio_rhport, dev_addr, ep_addr, buffer, buflen); diff --git a/tools/get_deps.py b/tools/get_deps.py index 3f529bd7e..ba9dc23ce 100755 --- a/tools/get_deps.py +++ b/tools/get_deps.py @@ -58,8 +58,8 @@ deps_optional = { 'hw/mcu/nxp/mcux-sdk': ['https://github.com/hathach/mcux-sdk.git', '144f1eb7ea8c06512e12f12b27383601c0272410', 'kinetis_k kinetis_k32l2 kinetis_kl lpc51 lpc54 lpc55 mcx imxrt'], - 'hw/mcu/raspberry_pi/Pico-PIO-USB': ['https://github.com/sekigon-gonnoc/Pico-PIO-USB.git', - '0ca3657d55ea20e7fa4483bbd21ce951bc1d6fa5', + 'hw/mcu/raspberry_pi/Pico-PIO-USB': ['https://github.com/hathach/Pico-PIO-USB.git', + '810653f66adadba3e0e4b4b56d5167ac4f7fdbf7', 'rp2040'], 'hw/mcu/renesas/fsp': ['https://github.com/renesas/fsp.git', 'edcc97d684b6f716728a60d7a6fea049d9870bd6', -- cgit v1.3.1 From 901ce2ad93b39c08e8e6b7e5b3f4dbd0b9df879e Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 26 Mar 2025 21:13:01 +0700 Subject: hcd/ehci: hcd_edpt_open() return false if ep is already opened. implement hcd_edpt_close() --- hw/bsp/imxrt/family.c | 4 +- src/device/usbd.c | 9 +- src/host/usbh.c | 2 +- src/portable/ehci/ehci.c | 259 ++++++++++++++++++++------------------ src/portable/ehci/ehci.h | 314 +++++++++++++++++++++++------------------------ test/hil/hil_test.py | 3 +- 6 files changed, 301 insertions(+), 290 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/imxrt/family.c b/hw/bsp/imxrt/family.c index 7b89cc76d..7e4734a66 100644 --- a/hw/bsp/imxrt/family.c +++ b/hw/bsp/imxrt/family.c @@ -61,7 +61,7 @@ - Define CFG_TUSB_MEM_SECTION=__attribute__((section("NonCacheable"))) */ -static void BOARD_ConfigMPU(void); +// static void BOARD_ConfigMPU(void); // needed by fsl_flexspi_nor_boot TU_ATTR_USED const uint8_t dcd_data[] = {0x00}; @@ -456,7 +456,7 @@ static void BOARD_ConfigMPU(void) { #elif __CORTEX_M == 4 -void BOARD_ConfigMPU(void) { +static void BOARD_ConfigMPU(void) { #if defined(__CC_ARM) || defined(__ARMCC_VERSION) extern uint32_t Image$$RW_m_ncache$$Base[]; /* RW_m_ncache_unused is a auxiliary region which is used to get the whole size of noncache section */ diff --git a/src/device/usbd.c b/src/device/usbd.c index fb5cec49d..9c381d5e0 100644 --- a/src/device/usbd.c +++ b/src/device/usbd.c @@ -561,8 +561,7 @@ static void usbd_reset(uint8_t rhport) { } bool tud_task_event_ready(void) { - // Skip if stack is not initialized - if (!tud_inited()) return false; + TU_VERIFY(tud_inited()); // Skip if stack is not initialized return !osal_queue_empty(_usbd_q); } @@ -684,7 +683,9 @@ void tud_task_ext(uint32_t timeout_ms, bool in_isr) { case USBD_EVENT_FUNC_CALL: TU_LOG_USBD("\r\n"); - if (event.func_call.func) event.func_call.func(event.func_call.param); + if (event.func_call.func) { + event.func_call.func(event.func_call.param); + } break; case DCD_EVENT_SOF: @@ -701,7 +702,7 @@ void tud_task_ext(uint32_t timeout_ms, bool in_isr) { #if CFG_TUSB_OS != OPT_OS_NONE && CFG_TUSB_OS != OPT_OS_PICO // return if there is no more events, for application to run other background - if (osal_queue_empty(_usbd_q)) return; + if (osal_queue_empty(_usbd_q)) { return; } #endif } } diff --git a/src/host/usbh.c b/src/host/usbh.c index 5925a7be0..e60db53da 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -520,7 +520,7 @@ void tuh_task_ext(uint32_t timeout_ms, bool in_isr) { // Loop until there is no more events in the queue while (1) { hcd_event_t event; - if (!osal_queue_receive(_usbh_q, &event, timeout_ms)) return; + if (!osal_queue_receive(_usbh_q, &event, timeout_ms)) { return; } switch (event.event_id) { case HCD_EVENT_DEVICE_ATTACH: diff --git a/src/portable/ehci/ehci.c b/src/portable/ehci/ehci.c index 01bbf62bf..292a352fb 100644 --- a/src/portable/ehci/ehci.c +++ b/src/portable/ehci/ehci.c @@ -62,8 +62,7 @@ #define QHD_MAX (CFG_TUH_DEVICE_MAX*CFG_TUH_ENDPOINT_MAX + CFG_TUH_HUB) #define QTD_MAX QHD_MAX -typedef struct -{ +typedef struct { ehci_link_t period_framelist[FRAMELIST_SIZE]; // TODO only implement 1 ms & 2 ms & 4 ms, 8 ms (framelist) @@ -139,6 +138,12 @@ static ehci_qhd_t* qhd_get_from_addr (uint8_t dev_addr, uint8_t ep_addr); static void qhd_init(ehci_qhd_t *p_qhd, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc); static void qhd_attach_qtd(ehci_qhd_t *qhd, ehci_qtd_t *qtd); static void qhd_remove_qtd(ehci_qhd_t *qhd); +TU_ATTR_ALWAYS_INLINE static inline bool qhd_is_periodic(ehci_qhd_t const *qhd) { + return qhd->int_smask != 0; +} +TU_ATTR_ALWAYS_INLINE static inline uint8_t qhd_ep_addr(ehci_qhd_t const *qhd) { + return tu_edpt_addr(qhd->ep_number, qhd->pid); +} TU_ATTR_ALWAYS_INLINE static inline ehci_qtd_t* qtd_control(uint8_t dev_addr); TU_ATTR_ALWAYS_INLINE static inline ehci_qtd_t* qtd_find_free (void); @@ -146,9 +151,10 @@ static void qtd_init (ehci_qtd_t* qtd, void const* buffer, uint16_t total_bytes) TU_ATTR_ALWAYS_INLINE static inline ehci_link_t* list_get_period_head(uint8_t rhport, uint32_t interval_ms); TU_ATTR_ALWAYS_INLINE static inline ehci_qhd_t* list_get_async_head(uint8_t rhport); -TU_ATTR_ALWAYS_INLINE static inline void list_insert (ehci_link_t *current, ehci_link_t *new, uint8_t new_type); TU_ATTR_ALWAYS_INLINE static inline ehci_link_t* list_next (ehci_link_t const *p_link); -static void list_remove_qhd_by_daddr(ehci_link_t* list_head, uint8_t dev_addr); +TU_ATTR_ALWAYS_INLINE static inline void list_insert (ehci_link_t *current, ehci_link_t *entry, uint8_t type); +TU_ATTR_ALWAYS_INLINE static inline void list_remove(ehci_link_t* head, ehci_link_t* prev, ehci_qhd_t* qhd); +static void list_remove_qhd_by_addr(ehci_link_t *list_head, uint8_t dev_addr, uint8_t ep_addr); static void ehci_disable_schedule(ehci_registers_t* regs, bool is_period) { // maybe have a timeout for status @@ -175,15 +181,12 @@ static void ehci_enable_schedule(ehci_registers_t* regs, bool is_period) { //--------------------------------------------------------------------+ // HCD API //--------------------------------------------------------------------+ - -uint32_t hcd_frame_number(uint8_t rhport) -{ +uint32_t hcd_frame_number(uint8_t rhport) { (void) rhport; return (ehci_data.uframe_number + ehci_data.regs->frame_index) >> 3; } -void hcd_port_reset(uint8_t rhport) -{ +void hcd_port_reset(uint8_t rhport) { (void) rhport; ehci_registers_t* regs = ehci_data.regs; @@ -204,8 +207,7 @@ void hcd_port_reset(uint8_t rhport) regs->portsc = portsc; } -void hcd_port_reset_end(uint8_t rhport) -{ +void hcd_port_reset_end(uint8_t rhport) { (void) rhport; ehci_registers_t* regs = ehci_data.regs; @@ -221,32 +223,29 @@ void hcd_port_reset_end(uint8_t rhport) regs->portsc = portsc; } -bool hcd_port_connect_status(uint8_t rhport) -{ +bool hcd_port_connect_status(uint8_t rhport) { (void) rhport; return ehci_data.regs->portsc_bm.current_connect_status; } -tusb_speed_t hcd_port_speed_get(uint8_t rhport) -{ +tusb_speed_t hcd_port_speed_get(uint8_t rhport) { (void) rhport; return (tusb_speed_t) ehci_data.regs->portsc_bm.nxp_port_speed; // NXP specific port speed } // Close all opened endpoint belong to this device -void hcd_device_close(uint8_t rhport, uint8_t daddr) -{ +void hcd_device_close(uint8_t rhport, uint8_t daddr) { // skip dev0 if (daddr == 0) { return; } - // Remove from async list - list_remove_qhd_by_daddr((ehci_link_t *) list_get_async_head(rhport), daddr); + // Remove from async list all endpoints of this device + list_remove_qhd_by_addr((ehci_link_t *) list_get_async_head(rhport), daddr, TUSB_INDEX_INVALID_8); - // Remove from all interval period list - for(uint8_t i = 0; i < TU_ARRAY_SIZE(ehci_data.period_head_arr); i++) { - list_remove_qhd_by_daddr((ehci_link_t *) &ehci_data.period_head_arr[i], daddr); + // Remove from all interval period list of this device + for (uint8_t i = 0; i < TU_ARRAY_SIZE(ehci_data.period_head_arr); i++) { + list_remove_qhd_by_addr((ehci_link_t *) &ehci_data.period_head_arr[i], daddr, TUSB_INDEX_INVALID_8); } // Async doorbell (EHCI 4.8.2 for operational details) @@ -358,12 +357,10 @@ bool ehci_init(uint8_t rhport, uint32_t capability_reg, uint32_t operatial_reg) } #if 0 -static void ehci_stop(uint8_t rhport) -{ +static void ehci_stop(uint8_t rhport) { (void) rhport; ehci_registers_t* regs = ehci_data.regs; - regs->command_bm.run_stop = 0; // USB Spec: controller has to stop within 16 uframe = 2 frames @@ -375,41 +372,44 @@ static void ehci_stop(uint8_t rhport) // Endpoint API //--------------------------------------------------------------------+ -bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) -{ - (void) rhport; - +bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { // TODO not support ISO yet TU_ASSERT (ep_desc->bmAttributes.xfer != TUSB_XFER_ISOCHRONOUS); //------------- Prepare Queue Head -------------// - ehci_qhd_t *p_qhd = (ep_desc->bEndpointAddress == 0) ? qhd_control(dev_addr) : qhd_find_free(); + ehci_qhd_t *p_qhd; + if (ep_desc->bEndpointAddress == 0) { + p_qhd = qhd_control(dev_addr); + } else { + TU_VERIFY(NULL == qhd_get_from_addr(dev_addr, ep_desc->bEndpointAddress)); // ep not opened yet + p_qhd = qhd_find_free(); + } TU_ASSERT(p_qhd); - qhd_init(p_qhd, dev_addr, ep_desc); - // control of dev0 is always present as async head - if ( dev_addr == 0 ) return true; + // control of dev0 always exists as async head + if (dev_addr == 0) { + return true; + } // Insert to list ehci_link_t * list_head = NULL; - - switch (ep_desc->bmAttributes.xfer) - { + switch (ep_desc->bmAttributes.xfer) { case TUSB_XFER_CONTROL: case TUSB_XFER_BULK: - list_head = (ehci_link_t*) list_get_async_head(rhport); - break; + list_head = (ehci_link_t *) list_get_async_head(rhport); + break; case TUSB_XFER_INTERRUPT: list_head = list_get_period_head(rhport, p_qhd->interval_ms); - break; + break; case TUSB_XFER_ISOCHRONOUS: // TODO iso is not supported - break; + break; - default: break; + default: + break; } TU_ASSERT(list_head); @@ -421,8 +421,23 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return true; } -bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) -{ +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + ehci_qhd_t* qhd = qhd_get_from_addr(daddr, ep_addr); + TU_VERIFY(qhd != NULL); + + ehci_link_t * list_head; + if (qhd_is_periodic(qhd)) { + // interrupt endpoint + list_head = list_get_period_head(rhport, qhd->interval_ms);; + } else { + list_head = (ehci_link_t *) list_get_async_head(rhport); + } + + list_remove_qhd_by_addr(list_head, daddr, ep_addr); + return true; +} + +bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { (void) rhport; ehci_qhd_t* qhd = &ehci_data.control[dev_addr].qhd; @@ -444,14 +459,14 @@ bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet return true; } -bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) -{ +bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { (void) rhport; uint8_t const epnum = tu_edpt_number(ep_addr); uint8_t const dir = tu_edpt_dir(ep_addr); ehci_qhd_t* qhd = qhd_get_from_addr(dev_addr, ep_addr); + TU_VERIFY(qhd != NULL); ehci_qtd_t* qtd; if (epnum == 0) { @@ -540,8 +555,7 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { // This isr mean it is safe to modify previously removed queue head from async list. // In tinyusb, queue head is only removed when device is unplugged. TU_ATTR_ALWAYS_INLINE static inline -void async_advance_isr(uint8_t rhport) -{ +void async_advance_isr(uint8_t rhport) { (void) rhport; ehci_qhd_t *qhd_pool = ehci_data.qhd_pool; @@ -612,8 +626,7 @@ void qhd_xfer_complete_isr(ehci_qhd_t * qhd) { } TU_ATTR_ALWAYS_INLINE static inline -void proccess_async_xfer_isr(ehci_qhd_t * const list_head) -{ +void proccess_async_xfer_isr(ehci_qhd_t * const list_head) { ehci_qhd_t *qhd = list_head; do { @@ -623,8 +636,7 @@ void proccess_async_xfer_isr(ehci_qhd_t * const list_head) } TU_ATTR_ALWAYS_INLINE static inline -void process_period_xfer_isr(uint8_t rhport, uint32_t interval_ms) -{ +void process_period_xfer_isr(uint8_t rhport, uint32_t interval_ms) { uint32_t const period_1ms_addr = (uint32_t) list_get_period_head(rhport, 1u); ehci_link_t next_link = *list_get_period_head(rhport, interval_ms); @@ -726,51 +738,55 @@ TU_ATTR_ALWAYS_INLINE static inline ehci_link_t* list_next(ehci_link_t const *p_ return (ehci_link_t*) tu_align32(p_link->address); } -TU_ATTR_ALWAYS_INLINE static inline void list_insert(ehci_link_t *current, ehci_link_t *new, uint8_t new_type) -{ - new->address = current->address; - current->address = ((uint32_t) new) | (new_type << 1); +TU_ATTR_ALWAYS_INLINE static inline void list_insert(ehci_link_t *current, ehci_link_t *entry, uint8_t type) { + entry->address = current->address; + current->address = ((uint32_t) entry) | (type << 1); +} + +// Remove a queue head from the list. +// Per EHCI 4.8.2 the removed qhd's next is linked to list head (which always reachable by Host Controller) +// TODO support iTD/siTD +TU_ATTR_ALWAYS_INLINE static inline void list_remove(ehci_link_t* head, ehci_link_t* prev, ehci_qhd_t* qhd) { + // TODO deactivate all TD, wait for QHD to inactive before removal + prev->address = qhd->next.address; + + // link the removed qhd's next to list head + qhd->next.address = ((uint32_t) head) | (EHCI_QTYPE_QHD << 1); + + if (qhd_is_periodic(qhd)) { + // period list queue element is guarantee to be free in the next frame (1 ms) + qhd->used = 0; + } else { + // async list use async advance handshake. Mark as removing, will completely re-usable when async advance isr occurs + qhd->removing = 1; + } + + hcd_dcache_clean(qhd, sizeof(ehci_qhd_t)); + hcd_dcache_clean(prev, sizeof(ehci_qhd_t)); } -// Remove all queue head belong to this device address -static void list_remove_qhd_by_daddr(ehci_link_t* list_head, uint8_t dev_addr) { - ehci_link_t* prev = list_head; +// Remove queue head belong to this device address +static void list_remove_qhd_by_addr(ehci_link_t *list_head, uint8_t dev_addr, uint8_t ep_addr) { + ehci_link_t *prev = list_head; while (prev && !prev->terminate) { - ehci_qhd_t* qhd = (ehci_qhd_t*) (uintptr_t) list_next(prev); + ehci_qhd_t *qhd = (ehci_qhd_t *) (uintptr_t) list_next(prev); // done if loop back to head - if ( (uintptr_t) qhd == (uintptr_t) list_head) { + if ((uintptr_t) qhd == (uintptr_t) list_head) { break; } - if ( qhd->dev_addr == dev_addr ) { - // TODO deactivate all TD, wait for QHD to inactive before removal - prev->address = qhd->next.address; - - // EHCI 4.8.2 link the removed qhd's next to async head (which always reachable by Host Controller) - qhd->next.address = ((uint32_t) list_head) | (EHCI_QTYPE_QHD << 1); - - if ( qhd->int_smask ) - { - // period list queue element is guarantee to be free in the next frame (1 ms) - qhd->used = 0; - }else - { - // async list use async advance handshake - // mark as removing, will completely re-usable when async advance isr occurs - qhd->removing = 1; - } - - hcd_dcache_clean(qhd, sizeof(ehci_qhd_t)); - hcd_dcache_clean(prev, sizeof(ehci_qhd_t)); - }else { + // ep_addr is 0xff means all endpoints of this device address + if (qhd->dev_addr == dev_addr && + (ep_addr == TUSB_INDEX_INVALID_8 || qhd_ep_addr(qhd) == ep_addr)) { + list_remove(list_head, prev, qhd); + } else { prev = list_next(prev); } } } - //--------------------------------------------------------------------+ // Queue Header helper //--------------------------------------------------------------------+ @@ -782,8 +798,10 @@ TU_ATTR_ALWAYS_INLINE static inline ehci_qhd_t* qhd_control(uint8_t dev_addr) { // Find a free queue head TU_ATTR_ALWAYS_INLINE static inline ehci_qhd_t *qhd_find_free(void) { - for ( uint32_t i = 0; i < QHD_MAX; i++ ) { - if ( !ehci_data.qhd_pool[i].used ) return &ehci_data.qhd_pool[i]; + for (uint32_t i = 0; i < QHD_MAX; i++) { + if (!ehci_data.qhd_pool[i].used) { + return &ehci_data.qhd_pool[i]; + } } return NULL; } @@ -800,10 +818,9 @@ static ehci_qhd_t *qhd_get_from_addr(uint8_t dev_addr, uint8_t ep_addr) { } ehci_qhd_t *qhd_pool = ehci_data.qhd_pool; - - for ( uint32_t i = 0; i < QHD_MAX; i++ ) { - if ( (qhd_pool[i].dev_addr == dev_addr) && - ep_addr == tu_edpt_addr(qhd_pool[i].ep_number, qhd_pool[i].pid) ) { + for (uint32_t i = 0; i < QHD_MAX; i++) { + if ((qhd_pool[i].dev_addr == dev_addr) && + ep_addr == qhd_ep_addr(&qhd_pool[i])) { return &qhd_pool[i]; } } @@ -812,8 +829,7 @@ static ehci_qhd_t *qhd_get_from_addr(uint8_t dev_addr, uint8_t ep_addr) { } // Init queue head with endpoint descriptor -static void qhd_init(ehci_qhd_t *p_qhd, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) -{ +static void qhd_init(ehci_qhd_t *p_qhd, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { // address 0 is used as async head, which always on the list --> cannot be cleared (ehci halted otherwise) if (dev_addr != 0) { tu_memclr(p_qhd, sizeof(ehci_qhd_t)); @@ -830,39 +846,43 @@ static void qhd_init(ehci_qhd_t *p_qhd, uint8_t dev_addr, tusb_desc_endpoint_t c p_qhd->ep_number = tu_edpt_number(ep_desc->bEndpointAddress); p_qhd->ep_speed = devtree_info.speed; p_qhd->data_toggle_control= (xfer_type == TUSB_XFER_CONTROL) ? 1 : 0; - p_qhd->head_list_flag = (dev_addr == 0) ? 1 : 0; // addr0's endpoint is the static asyn list head + p_qhd->head_list_flag = (dev_addr == 0) ? 1 : 0; // addr0's endpoint is the static async list head p_qhd->max_packet_size = tu_edpt_packet_size(ep_desc); p_qhd->fl_ctrl_ep_flag = ((xfer_type == TUSB_XFER_CONTROL) && (p_qhd->ep_speed != TUSB_SPEED_HIGH)) ? 1 : 0; p_qhd->nak_reload = 0; - // Bulk/Control -> smask = cmask = 0 - // TODO Isochronous - if (TUSB_XFER_INTERRUPT == xfer_type) - { - if (TUSB_SPEED_HIGH == p_qhd->ep_speed) - { - TU_ASSERT( interval <= 16, ); - if ( interval < 4) // sub millisecond interval - { - p_qhd->interval_ms = 0; - p_qhd->int_smask = (interval == 1) ? TU_BIN8(11111111) : - (interval == 2) ? TU_BIN8(10101010) : TU_BIN8(01000100); - }else - { - p_qhd->interval_ms = (uint8_t) tu_min16( 1 << (interval-4), 255 ); - p_qhd->int_smask = TU_BIT(interval % 8); + switch (xfer_type) { + case TUSB_XFER_CONTROL: + case TUSB_XFER_BULK: + p_qhd->int_smask = p_qhd->fl_int_cmask = 0; + break; + + case TUSB_XFER_INTERRUPT: + if (TUSB_SPEED_HIGH == p_qhd->ep_speed) { + TU_ASSERT(interval <= 16, ); + if (interval < 4) { + // sub millisecond interval + p_qhd->interval_ms = 0; + p_qhd->int_smask = (interval == 1) ? TU_BIN8(11111111) : + (interval == 2) ? TU_BIN8(10101010): TU_BIN8(01000100); + } else { + p_qhd->interval_ms = (uint8_t) tu_min16(1 << (interval - 4), 255); + p_qhd->int_smask = TU_BIT(interval % 8); + } + } else { + TU_ASSERT(0 != interval, ); + // Full/Low: 4.12.2.1 (EHCI) case 1 schedule start split at 1 us & complete split at 2,3,4 uframes + p_qhd->int_smask = 0x01; + p_qhd->fl_int_cmask = TU_BIN8(11100); + p_qhd->interval_ms = interval; } - }else - { - TU_ASSERT( 0 != interval, ); - // Full/Low: 4.12.2.1 (EHCI) case 1 schedule start split at 1 us & complete split at 2,3,4 uframes - p_qhd->int_smask = 0x01; - p_qhd->fl_int_cmask = TU_BIN8(11100); - p_qhd->interval_ms = interval; - } - }else - { - p_qhd->int_smask = p_qhd->fl_int_cmask = 0; + break; + + case TUSB_XFER_ISOCHRONOUS: + // TODO not support ISO yet + break; + + default: break; } p_qhd->fl_hub_addr = devtree_info.hub_addr; @@ -880,8 +900,7 @@ static void qhd_init(ehci_qhd_t *p_qhd, uint8_t dev_addr, tusb_desc_endpoint_t c p_qhd->qtd_overlay.next.terminate = 1; p_qhd->qtd_overlay.alternate.terminate = 1; - if (TUSB_XFER_BULK == xfer_type && p_qhd->ep_speed == TUSB_SPEED_HIGH && p_qhd->pid == EHCI_PID_OUT) - { + if (TUSB_XFER_BULK == xfer_type && p_qhd->ep_speed == TUSB_SPEED_HIGH && p_qhd->pid == EHCI_PID_OUT) { p_qhd->qtd_overlay.ping_err = 1; // do PING for Highspeed Bulk OUT, EHCI section 4.11 } } diff --git a/src/portable/ehci/ehci.h b/src/portable/ehci/ehci.h index 457adc1d3..87659701b 100644 --- a/src/portable/ehci/ehci.h +++ b/src/portable/ehci/ehci.h @@ -49,15 +49,14 @@ // TODO merge OHCI with EHCI enum { - EHCI_MAX_ITD = 4, + EHCI_MAX_ITD = 4, EHCI_MAX_SITD = 16 }; //--------------------------------------------------------------------+ // EHCI Data Structure //--------------------------------------------------------------------+ -enum -{ +enum { EHCI_QTYPE_ITD = 0 , EHCI_QTYPE_QHD , EHCI_QTYPE_SITD , @@ -65,8 +64,7 @@ enum }; /// EHCI PID -enum -{ +enum { EHCI_PID_OUT = 0 , EHCI_PID_IN , EHCI_PID_SETUP @@ -74,187 +72,182 @@ enum /// Link pointer typedef union { - uint32_t address; - struct { - uint32_t terminate : 1; - uint32_t type : 2; - }; -}ehci_link_t; + uint32_t address; + struct { + uint32_t terminate : 1; + uint32_t type : 2; + }; +} ehci_link_t; TU_VERIFY_STATIC( sizeof(ehci_link_t) == 4, "size is not correct" ); /// Queue Element Transfer Descriptor /// Qtd is used to declare overlay in ehci_qhd_t -> cannot be declared with TU_ATTR_ALIGNED(32) -typedef struct -{ - // Word 0: Next QTD Pointer - ehci_link_t next; - - // Word 1: Alternate Next QTD Pointer (not used) - union{ - ehci_link_t alternate; - struct { - uint32_t : 5; - uint32_t used : 1; - uint32_t : 10; - uint32_t expected_bytes : 16; - }; - }; - - // Word 2: qTQ Token - volatile uint32_t ping_err : 1 ; ///< For Highspeed: 0 Out, 1 Ping. Full/Slow used as error indicator - volatile uint32_t non_hs_split_state : 1 ; ///< Used by HC to track the state of split transaction - volatile uint32_t non_hs_missed_uframe : 1 ; ///< HC misses a complete split transaction - volatile uint32_t xact_err : 1 ; ///< Error (Timeout, CRC, Bad PID ... ) - volatile uint32_t babble_err : 1 ; ///< Babble detected, also set Halted bit to 1 - volatile uint32_t buffer_err : 1 ; ///< Data overrun/underrun error - volatile uint32_t halted : 1 ; ///< Serious error or STALL received - volatile uint32_t active : 1 ; ///< Start transfer, clear by HC when complete - - uint32_t pid : 2 ; ///< 0: OUT, 1: IN, 2 Setup - volatile uint32_t err_count : 2 ; ///< Error Counter of consecutive errors - volatile uint32_t current_page : 3 ; ///< Index into the qTD buffer pointer list - uint32_t int_on_complete : 1 ; ///< Interrupt on complete - volatile uint32_t total_bytes : 15 ; ///< Transfer bytes, decreased during transaction - volatile uint32_t data_toggle : 1 ; ///< Data Toggle bit - - - /// Buffer Page Pointer List, Each element in the list is a 4K page aligned, physical memory address. The lower 12 bits in each pointer are reserved (except for the first one) as each memory pointer must reference the start of a 4K page - uint32_t buffer[5]; +typedef struct { + // Word 0 Next QTD Pointer + ehci_link_t next; + + // Word 1 Alternate Next QTD Pointer (not used) + union { + ehci_link_t alternate; + struct { + uint32_t : 5; + uint32_t used : 1; + uint32_t : 10; + uint32_t expected_bytes : 16; + }; + }; + + // Word 2 qTQ Token + volatile uint32_t ping_err : 1; // For Highspeed: 0 Out, 1 Ping. Full/Slow used as error indicator + volatile uint32_t non_hs_split_state : 1; // Used by HC to track the state of split transaction + volatile uint32_t non_hs_missed_uframe : 1; // HC misses a complete split transaction + volatile uint32_t xact_err : 1; // Error (Timeout, CRC, Bad PID ... ) + volatile uint32_t babble_err : 1; // Babble detected, also set Halted bit to 1 + volatile uint32_t buffer_err : 1; // Data overrun/underrun error + volatile uint32_t halted : 1; // Serious error or STALL received + volatile uint32_t active : 1; // Start transfer, clear by HC when complete + + uint32_t pid : 2; // 0: OUT, 1: IN, 2 Setup + volatile uint32_t err_count : 2; // Error Counter of consecutive errors + volatile uint32_t current_page : 3; // Index into the qTD buffer pointer list + uint32_t int_on_complete : 1; // Interrupt on complete + volatile uint32_t total_bytes : 15; // Transfer bytes, decreased during transaction + volatile uint32_t data_toggle : 1; // Data Toggle bit + + // Buffer Page Pointer List, Each element in the list is a 4K page aligned, physical memory address. + // The lower 12 bits in each pointer are reserved (except for the first one) as each memory pointer must reference the start of a 4K page + uint32_t buffer[5]; } ehci_qtd_t; TU_VERIFY_STATIC( sizeof(ehci_qtd_t) == 32, "size is not correct" ); /// Queue Head -typedef struct TU_ATTR_ALIGNED(32) -{ - // Word 0: Next QHD - ehci_link_t next; - - // Word 1: Endpoint Characteristics - uint32_t dev_addr : 7 ; ///< device address - uint32_t fl_inactive_next_xact : 1 ; ///< Only valid for Periodic with Full/Slow speed - uint32_t ep_number : 4 ; ///< EP number - uint32_t ep_speed : 2 ; ///< 0: Full, 1: Low, 2: High - uint32_t data_toggle_control : 1 ; ///< 0: use DT in qHD, 1: use DT in qTD - uint32_t head_list_flag : 1 ; ///< Head of the queue - uint32_t max_packet_size : 11 ; ///< Max packet size - uint32_t fl_ctrl_ep_flag : 1 ; ///< 1 if is Full/Low speed control endpoint - uint32_t nak_reload : 4 ; ///< Used by HC - - // Word 2: Endpoint Capabilities - uint32_t int_smask : 8 ; ///< Interrupt Schedule Mask - uint32_t fl_int_cmask : 8 ; ///< Split Completion Mask for Full/Slow speed - uint32_t fl_hub_addr : 7 ; ///< Hub Address for Full/Slow speed - uint32_t fl_hub_port : 7 ; ///< Hub Port for Full/Slow speed - uint32_t mult : 2 ; ///< Transaction per micro frame - - // Word 3: Current qTD Pointer - volatile uint32_t qtd_addr; - - // Word 4-11: Transfer Overlay - volatile ehci_qtd_t qtd_overlay; - - //--------------------------------------------------------------------+ +typedef struct TU_ATTR_ALIGNED(32) { + // Word 0 Next QHD + ehci_link_t next; + + // Word 1 Endpoint Characteristics + uint32_t dev_addr : 7; // device address + uint32_t fl_inactive_next_xact : 1; // Only valid for Periodic with Full/Slow speed + uint32_t ep_number : 4; // EP number + uint32_t ep_speed : 2; // Full (0), Low (1), High (2) + uint32_t data_toggle_control : 1; // 0 use DT in qHD, 1 use DT in qTD + uint32_t head_list_flag : 1; // Head of the queue + uint32_t max_packet_size : 11; // Max packet size + uint32_t fl_ctrl_ep_flag : 1; // 1 if is Full/Low speed control endpoint + uint32_t nak_reload : 4; // Used by HC + + // Word 2 Endpoint Capabilities + uint32_t int_smask : 8; // Interrupt Schedule Mask + uint32_t fl_int_cmask : 8; // Split Completion Mask for Full/Slow speed + uint32_t fl_hub_addr : 7; // Hub Address for Full/Slow speed + uint32_t fl_hub_port : 7; // Hub Port for Full/Slow speed + uint32_t mult : 2; // Transaction per micro frame + + // Word 3 Current qTD Pointer + volatile uint32_t qtd_addr; + + // Word 4-11 Transfer Overlay + volatile ehci_qtd_t qtd_overlay; + + //--------------------------------------------------------------------+ /// Due to the fact QHD is 32 bytes aligned but occupies only 48 bytes - /// thus there are 16 bytes padding free that we can make use of. + /// thus there are 16 bytes padding free that we can make use of. //--------------------------------------------------------------------+ - uint8_t used; - uint8_t removing; // removed from asyn list, waiting for async advance - uint8_t pid; - uint8_t interval_ms; // polling interval in frames (or millisecond) + uint8_t used; + uint8_t removing;// removed from asyn list, waiting for async advance + uint8_t pid; + uint8_t interval_ms;// polling interval in frames (or millisecond) - uint8_t TU_RESERVED[4]; + uint8_t TU_RESERVED[4]; // Attached TD management, note usbh will only queue 1 TD per QHD. // buffer for dcache invalidate since td's buffer is modified by HC and finding initial buffer address is not trivial uint32_t attached_buffer; - ehci_qtd_t * volatile attached_qtd; + ehci_qtd_t *volatile attached_qtd; } ehci_qhd_t; - TU_VERIFY_STATIC( sizeof(ehci_qhd_t) == 64, "size is not correct" ); /// Highspeed Isochronous Transfer Descriptor (section 3.3) typedef struct TU_ATTR_ALIGNED(32) { - // Word 0: Next Link Pointer - ehci_link_t next; - - // Word 1-8: iTD Transaction Status and Control List - struct { - // iTD Control - volatile uint32_t offset : 12 ; ///< This field is a value that is an offset, expressed in bytes, from the beginning of a buffer. - volatile uint32_t page_select : 3 ; ///< These bits are set by software to indicate which of the buffer page pointers the offset field in this slot should be concatenated to produce the starting memory address for this transaction. The valid range of values for this field is 0 to 6 - uint32_t int_on_complete : 1 ; ///< If this bit is set to a one, it specifies that when this transaction completes, the Host Controller should issue an interrupt at the next interrupt threshold - volatile uint32_t length : 12 ; ///< For an OUT, this field is the number of data bytes the host controller will send during the transaction. The host controller is not required to update this field to reflect the actual number of bytes transferred during the transfer - ///< For an IN, the initial value of the field is the number of bytes the host expects the endpoint to deliver. During the status update, the host controller writes back the number of bytes successfully received. The value in this register is the actual byte count - // iTD Status - volatile uint32_t error : 1 ; ///< Set to a one by the Host Controller during status update in the case where the host did not receive a valid response from the device (Timeout, CRC, Bad PID, etc.). This bit may only be set for isochronous IN transactions. - volatile uint32_t babble_err : 1 ; ///< Set to a 1 by the Host Controller during status update when a babble is detected during the transaction - volatile uint32_t buffer_err : 1 ; ///< Set to a 1 by the Host Controller during status update to indicate that the Host Controller is unable to keep up with the reception of incoming data (overrun) or is unable to supply data fast enough during transmission (underrun). - volatile uint32_t active : 1 ; ///< Set to 1 by software to enable the execution of an isochronous transaction by the Host Controller - } xact[8]; - - // Word 9-15 Buffer Page Pointer List (Plus) - uint32_t BufferPointer[7]; - -// // FIXME: Store meta data into buffer pointer reserved for saving memory -// /*---------- HCD Area ----------*/ -// uint32_t used; -// uint32_t IhdIdx; -// uint32_t reserved[6]; + // Word 0: Next Link Pointer + ehci_link_t next; + + // Word 1-8: iTD Transaction Status and Control List + struct { + // iTD Control + volatile uint32_t offset : 12; // offset in bytes, from the beginning of a buffer. + volatile uint32_t page_select : 3; // buffer page pointers the offset field in this slot should be concatenated to produce the starting memory address for this transaction. The valid range of values for this field is 0 to 6 + uint32_t int_on_complete : 1; // If this bit is set to a one, it specifies that when this transaction completes, the Host Controller should issue an interrupt at the next interrupt threshold + volatile uint32_t length : 12; // For an OUT, this field is the number of data bytes the host controller will send during the transaction. The host controller is not required to update this field to reflect the actual number of bytes transferred during the transfer + // For an IN, the initial value of the field is the number of bytes the host expects the endpoint to deliver. During the status update, the host controller writes back the number of bytes successfully received. The value in this register is the actual byte count + // iTD Status + volatile uint32_t error : 1; // Set to a one by the Host Controller during status update in the case where the host did not receive a valid response from the device (Timeout, CRC, Bad PID, etc.). This bit may only be set for isochronous IN transactions. + volatile uint32_t babble_err : 1; // Set to a 1 by the Host Controller during status update when a babble is detected during the transaction + volatile uint32_t buffer_err : 1; // Set to a 1 by the Host Controller during status update to indicate that the Host Controller is unable to keep up with the reception of incoming data (overrun) or is unable to supply data fast enough during transmission (underrun). + volatile uint32_t active : 1; // Set to 1 by software to enable the execution of an isochronous transaction by the Host Controller + } xact[8]; + + // Word 9-15 Buffer Page Pointer List (Plus) + uint32_t BufferPointer[7]; + + // FIXME: Store meta data into buffer pointer reserved for saving memory + //---------- HCD Area ---------- + // uint32_t used; + // uint32_t IhdIdx; + // uint32_t reserved[6]; } ehci_itd_t; - TU_VERIFY_STATIC( sizeof(ehci_itd_t) == 64, "size is not correct" ); /// Split (Full-Speed) Isochronous Transfer Descriptor -typedef struct TU_ATTR_ALIGNED(32) -{ +typedef struct TU_ATTR_ALIGNED(32) { // Word 0: Next Link Pointer - ehci_link_t next; - - // Word 1: siTD Endpoint Characteristics - uint32_t dev_addr : 7; ///< This field selects the specific device serving as the data source or sink. - uint32_t : 1; ///< reserved - uint32_t ep_number : 4; ///< This 4-bit field selects the particular endpoint number on the device serving as the data source or sink. - uint32_t : 4; ///< This field is reserved and should be set to zero. - uint32_t hub_addr : 7; ///< This field holds the device address of the transaction translators’ hub. - uint32_t : 1; ///< reserved - uint32_t port_number : 7; ///< This field is the port number of the recipient transaction translator. - uint32_t direction : 1; ///< 0 = OUT; 1 = IN. This field encodes whether the full-speed transaction should be an IN or OUT. - - // Word 2: Micro-frame Schedule Control - uint8_t int_smask ; ///< This field (along with the Activeand SplitX-statefields in the Statusbyte) are used to determine during which micro-frames the host controller should execute complete-split transactions - uint8_t fl_int_cmask; ///< This field (along with the Activeand SplitX-statefields in the Statusbyte) are used to determine during which micro-frames the host controller should execute start-split transactions. - uint16_t reserved ; ///< reserved - - // Word 3: siTD Transfer Status and Control - // Status [7:0] TODO identical to qTD Token'status --> refactor later - volatile uint32_t : 1 ; // reserved - volatile uint32_t split_state : 1 ; - volatile uint32_t missed_uframe : 1 ; - volatile uint32_t xact_err : 1 ; - volatile uint32_t babble_err : 1 ; - volatile uint32_t buffer_err : 1 ; - volatile uint32_t error : 1 ; - volatile uint32_t active : 1 ; - // Micro-frame Schedule Control - volatile uint32_t cmask_progress : 8 ; ///< This field is used by the host controller to record which split-completes have been executed. See Section 4.12.3.3.2 for behavioral requirements. - volatile uint32_t total_bytes : 10 ; ///< This field is initialized by software to the total number of bytes expected in this transfer. Maximum value is 1023 - volatile uint32_t : 4 ; ///< reserved - volatile uint32_t page_select : 1 ; ///< Used to indicate which data page pointer should be concatenated with the CurrentOffsetfield to construct a data buffer pointer - uint32_t int_on_complete : 1 ; ///< Do not interrupt when transaction is complete. 1 = Do interrupt when transaction is complete - uint32_t : 0 ; // padding to the end of current storage unit - - /// Word 4-5: Buffer Pointer List - uint32_t buffer[2]; // buffer[1] TP: Transaction Position - T-Count: Transaction Count - - /*---------- Word 6 ----------*/ - ehci_link_t back; - - /// SITD is 32-byte aligned but occupies only 28 --> 4 bytes for storing extra data - uint8_t used; - uint8_t ihd_idx; - uint8_t reserved2[2]; + ehci_link_t next; + + // Word 1: siTD Endpoint Characteristics + uint32_t dev_addr : 7; ///< This field selects the specific device serving as the data source or sink. + uint32_t : 1; ///< reserved + uint32_t ep_number : 4; ///< This 4-bit field selects the particular endpoint number on the device serving as the data source or sink. + uint32_t : 4; ///< This field is reserved and should be set to zero. + uint32_t hub_addr : 7; ///< This field holds the device address of the transaction translators’ hub. + uint32_t : 1; ///< reserved + uint32_t port_number : 7; ///< This field is the port number of the recipient transaction translator. + uint32_t direction : 1; ///< 0 = OUT; 1 = IN. This field encodes whether the full-speed transaction should be an IN or OUT. + + // Word 2: Micro-frame Schedule Control + uint8_t int_smask ; ///< This field (along with the Activeand SplitX-statefields in the Statusbyte) are used to determine during which micro-frames the host controller should execute complete-split transactions + uint8_t fl_int_cmask; ///< This field (along with the Activeand SplitX-statefields in the Statusbyte) are used to determine during which micro-frames the host controller should execute start-split transactions. + uint16_t reserved ; ///< reserved + + // Word 3: siTD Transfer Status and Control + // Status [7:0] TODO identical to qTD Token'status --> refactor later + volatile uint32_t : 1 ; // reserved + volatile uint32_t split_state : 1 ; + volatile uint32_t missed_uframe : 1 ; + volatile uint32_t xact_err : 1 ; + volatile uint32_t babble_err : 1 ; + volatile uint32_t buffer_err : 1 ; + volatile uint32_t error : 1 ; + volatile uint32_t active : 1 ; + // Micro-frame Schedule Control + volatile uint32_t cmask_progress : 8 ; ///< This field is used by the host controller to record which split-completes have been executed. See Section 4.12.3.3.2 for behavioral requirements. + volatile uint32_t total_bytes : 10 ; ///< This field is initialized by software to the total number of bytes expected in this transfer. Maximum value is 1023 + volatile uint32_t : 4 ; ///< reserved + volatile uint32_t page_select : 1 ; ///< Used to indicate which data page pointer should be concatenated with the CurrentOffsetfield to construct a data buffer pointer + uint32_t int_on_complete : 1 ; ///< Do not interrupt when transaction is complete. 1 = Do interrupt when transaction is complete + uint32_t : 0 ; // padding to the end of current storage unit + + /// Word 4-5: Buffer Pointer List + uint32_t buffer[2]; // buffer[1] TP: Transaction Position - T-Count: Transaction Count + + /*---------- Word 6 ----------*/ + ehci_link_t back; + + /// SITD is 32-byte aligned but occupies only 28 --> 4 bytes for storing extra data + uint8_t used; + uint8_t ihd_idx; + uint8_t reserved2[2]; } ehci_sitd_t; TU_VERIFY_STATIC( sizeof(ehci_sitd_t) == 32, "size is not correct" ); @@ -315,8 +308,7 @@ enum { EHCI_PORTSC_MASK_OVER_CURRENT_CHANGE }; -typedef volatile struct -{ +typedef volatile struct { union { uint32_t command; // 0x00 diff --git a/test/hil/hil_test.py b/test/hil/hil_test.py index 662bb3a1f..8b89de66c 100755 --- a/test/hil/hil_test.py +++ b/test/hil/hil_test.py @@ -340,8 +340,8 @@ def test_host_device_info(board): ser.close() if len(data) == 0: assert False, 'No data from device' - lines = data.decode('utf-8', errors='ignore').splitlines() + enum_dev_sn = [] for l in lines: vid_pid_sn = re.search(r'ID ([0-9a-fA-F]+):([0-9a-fA-F]+) SN (\w+)', l) @@ -353,7 +353,6 @@ def test_host_device_info(board): failed_msg = f'Expected {declared_devs}, Enumerated {enum_dev_sn}' print('\n'.join(lines)) assert False, failed_msg - return 0 -- cgit v1.3.1 From e511d00f34b2832ae32ad0b2418a0878c7c4e7d6 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 26 Mar 2025 22:11:44 +0700 Subject: added hcd_edpt_close() stub for other ports --- src/portable/mentor/musb/hcd_musb.c | 5 +++ src/portable/nxp/khci/hcd_khci.c | 5 +++ src/portable/ohci/ohci.c | 6 +++- src/portable/raspberrypi/rp2040/hcd_rp2040.c | 6 +++- src/portable/renesas/rusb2/hcd_rusb2.c | 5 +++ src/portable/synopsys/dwc2/hcd_dwc2.c | 5 +++ src/portable/template/hcd_template.c | 49 ++++++++-------------------- 7 files changed, 44 insertions(+), 37 deletions(-) (limited to 'src/portable') diff --git a/src/portable/mentor/musb/hcd_musb.c b/src/portable/mentor/musb/hcd_musb.c index 1c0740193..811043d74 100644 --- a/src/portable/mentor/musb/hcd_musb.c +++ b/src/portable/mentor/musb/hcd_musb.c @@ -804,6 +804,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t *buffer, uint16_t buflen) { (void)rhport; diff --git a/src/portable/nxp/khci/hcd_khci.c b/src/portable/nxp/khci/hcd_khci.c index 056dbf40b..c3c901c5d 100644 --- a/src/portable/nxp/khci/hcd_khci.c +++ b/src/portable/nxp/khci/hcd_khci.c @@ -541,6 +541,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + /* The address of buffer must be aligned to 4 byte boundary. And it must be at least 4 bytes long. * DMA writes data in 4 byte unit */ bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) diff --git a/src/portable/ohci/ohci.c b/src/portable/ohci/ohci.c index ce35eab70..672ad0443 100644 --- a/src/portable/ohci/ohci.c +++ b/src/portable/ohci/ohci.c @@ -451,7 +451,6 @@ static void td_insert_to_ed(ohci_ed_t* p_ed, ohci_gtd_t * p_gtd) //--------------------------------------------------------------------+ // Endpoint API //--------------------------------------------------------------------+ - bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { (void) rhport; @@ -486,6 +485,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { (void) rhport; diff --git a/src/portable/raspberrypi/rp2040/hcd_rp2040.c b/src/portable/raspberrypi/rp2040/hcd_rp2040.c index 478c6e789..cd8c905d5 100644 --- a/src/portable/raspberrypi/rp2040/hcd_rp2040.c +++ b/src/portable/raspberrypi/rp2040/hcd_rp2040.c @@ -514,7 +514,6 @@ void hcd_int_disable(uint8_t rhport) //--------------------------------------------------------------------+ // Endpoint API //--------------------------------------------------------------------+ - bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { (void) rhport; @@ -535,6 +534,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { (void) rhport; diff --git a/src/portable/renesas/rusb2/hcd_rusb2.c b/src/portable/renesas/rusb2/hcd_rusb2.c index 4c81b05be..3e4b36981 100644 --- a/src/portable/renesas/rusb2/hcd_rusb2.c +++ b/src/portable/renesas/rusb2/hcd_rusb2.c @@ -718,6 +718,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t *buffer, uint16_t buflen) { bool r; diff --git a/src/portable/synopsys/dwc2/hcd_dwc2.c b/src/portable/synopsys/dwc2/hcd_dwc2.c index b13479b02..f0cea529e 100644 --- a/src/portable/synopsys/dwc2/hcd_dwc2.c +++ b/src/portable/synopsys/dwc2/hcd_dwc2.c @@ -506,6 +506,11 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_endpoint_t* return true; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + // clean up channel after part of transfer is done but the whole urb is not complete static void channel_xfer_out_wrapup(dwc2_regs_t* dwc2, uint8_t ch_id) { hcd_xfer_t* xfer = &_hcd_data.xfer[ch_id]; diff --git a/src/portable/template/hcd_template.c b/src/portable/template/hcd_template.c index d8bca196f..1202c4ef4 100644 --- a/src/portable/template/hcd_template.c +++ b/src/portable/template/hcd_template.c @@ -36,24 +36,19 @@ // optional hcd configuration, called by tuh_configure() bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { - (void) rhport; - (void) cfg_id; - (void) cfg_param; - + (void) rhport; (void) cfg_id; (void) cfg_param; return false; } // Initialize controller to host mode bool hcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { - (void) rhport; - (void) rh_init; + (void) rhport; (void) rh_init; return false; } // Interrupt Handler void hcd_int_handler(uint8_t rhport, bool in_isr) { - (void) rhport; - (void) in_isr; + (void) rhport; (void) in_isr; } // Enable USB interrupt @@ -69,7 +64,6 @@ void hcd_int_disable(uint8_t rhport) { // Get frame number (1ms) uint32_t hcd_frame_number(uint8_t rhport) { (void) rhport; - return 0; } @@ -80,7 +74,6 @@ uint32_t hcd_frame_number(uint8_t rhport) { // Get the current connect status of roothub port bool hcd_port_connect_status(uint8_t rhport) { (void) rhport; - return false; } @@ -98,14 +91,12 @@ void hcd_port_reset_end(uint8_t rhport) { // Get port link speed tusb_speed_t hcd_port_speed_get(uint8_t rhport) { (void) rhport; - return TUSB_SPEED_FULL; } // HCD closes all opened endpoints belong to this device void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { - (void) rhport; - (void) dev_addr; + (void) rhport; (void) dev_addr; } //--------------------------------------------------------------------+ @@ -114,49 +105,37 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { // Open an endpoint bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { - (void) rhport; - (void) dev_addr; - (void) ep_desc; - + (void) rhport; (void) dev_addr; (void) ep_desc; return false; } +bool hcd_edpt_close(uint8_t rhport, uint8_t daddr, uint8_t ep_addr) { + (void) rhport; (void) daddr; (void) ep_addr; + return false; // TODO not implemented yet +} + // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { - (void) rhport; - (void) dev_addr; - (void) ep_addr; - (void) buffer; - (void) buflen; - + (void) rhport; (void) dev_addr; (void) ep_addr; (void) buffer; (void) buflen; return false; } // Abort a queued transfer. Note: it can only abort transfer that has not been started // Return true if a queued transfer is aborted, false if there is no transfer to abort bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { - (void) rhport; - (void) dev_addr; - (void) ep_addr; - + (void) rhport; (void) dev_addr; (void) ep_addr; return false; } // Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { - (void) rhport; - (void) dev_addr; - (void) setup_packet; - + (void) rhport; (void) dev_addr; (void) setup_packet; return false; } // clear stall, data toggle is also reset to DATA0 bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { - (void) rhport; - (void) dev_addr; - (void) ep_addr; - + (void) rhport; (void) dev_addr; (void) ep_addr; return false; } -- cgit v1.3.1 From 4787cd5f546eabad630fc5c22f37f67a076ac37e Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 3 Apr 2025 18:11:33 +0700 Subject: fix(hcd) hcd_edpt_open() return true if endpoint is already opened. --- examples/host/device_info/src/main.c | 31 ++++++++++++++++++++----------- src/host/hcd.h | 1 + src/portable/analog/max3421/hcd_max3421.c | 2 +- src/portable/ehci/ehci.c | 4 +++- 4 files changed, 25 insertions(+), 13 deletions(-) (limited to 'src/portable') diff --git a/examples/host/device_info/src/main.c b/examples/host/device_info/src/main.c index ac4c46a11..e924a137b 100644 --- a/examples/host/device_info/src/main.c +++ b/examples/host/device_info/src/main.c @@ -124,13 +124,18 @@ void tuh_mount_cb(uint8_t daddr) { } printf("Device %u: ID %04x:%04x SN ", daddr, desc.device.idVendor, desc.device.idProduct); - xfer_result = tuh_descriptor_get_serial_string_sync(daddr, LANGUAGE_ID, desc.serial, sizeof(desc.serial)); + + xfer_result = XFER_RESULT_FAILED; + if (desc.device.iSerialNumber != 0) { + xfer_result = tuh_descriptor_get_serial_string_sync(daddr, LANGUAGE_ID, desc.serial, sizeof(desc.serial)); + } if (XFER_RESULT_SUCCESS != xfer_result) { uint16_t* serial = (uint16_t*)(uintptr_t) desc.serial; - serial[0] = 'n'; - serial[1] = '/'; - serial[2] = 'a'; - serial[3] = 0; + serial[0] = (uint16_t) ((TUSB_DESC_STRING << 8) | (2 * 3 + 2)); + serial[1] = 'n'; + serial[2] = '/'; + serial[3] = 'a'; + serial[4] = 0; } print_utf16((uint16_t*)(uintptr_t) desc.serial, sizeof(desc.serial)/2); printf("\r\n"); @@ -150,16 +155,20 @@ void tuh_mount_cb(uint8_t daddr) { // Get String descriptor using Sync API printf(" iManufacturer %u ", desc.device.iManufacturer); - xfer_result = tuh_descriptor_get_manufacturer_string_sync(daddr, LANGUAGE_ID, desc.buf, sizeof(desc.buf)); - if (XFER_RESULT_SUCCESS == xfer_result) { - print_utf16((uint16_t*)(uintptr_t) desc.buf, sizeof(desc.buf)/2); + if (desc.device.iManufacturer != 0) { + xfer_result = tuh_descriptor_get_manufacturer_string_sync(daddr, LANGUAGE_ID, desc.buf, sizeof(desc.buf)); + if (XFER_RESULT_SUCCESS == xfer_result) { + print_utf16((uint16_t*)(uintptr_t) desc.buf, sizeof(desc.buf)/2); + } } printf("\r\n"); printf(" iProduct %u ", desc.device.iProduct); - xfer_result = tuh_descriptor_get_product_string_sync(daddr, LANGUAGE_ID, desc.buf, sizeof(desc.buf)); - if (XFER_RESULT_SUCCESS == xfer_result) { - print_utf16((uint16_t*)(uintptr_t) desc.buf, sizeof(desc.buf)/2); + if (desc.device.iProduct != 0) { + xfer_result = tuh_descriptor_get_product_string_sync(daddr, LANGUAGE_ID, desc.buf, sizeof(desc.buf)); + if (XFER_RESULT_SUCCESS == xfer_result) { + print_utf16((uint16_t*)(uintptr_t) desc.buf, sizeof(desc.buf)/2); + } } printf("\r\n"); diff --git a/src/host/hcd.h b/src/host/hcd.h index aa9e9cf3b..b20d96d54 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -163,6 +163,7 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr); //--------------------------------------------------------------------+ // Open an endpoint +// return true if successfully opened or endpoint is currently opened bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * ep_desc); // Close an endpoint diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 3fbf950a4..bb33200f2 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -611,7 +611,7 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e ep = &_hcd_data.ep[0]; }else { if (NULL != find_ep_not_addr0(daddr, ep_num, ep_dir)) { - return false; // endpoint already opened + return true; // already opened } ep = allocate_ep(); TU_ASSERT(ep); diff --git a/src/portable/ehci/ehci.c b/src/portable/ehci/ehci.c index 292a352fb..7451f69a3 100644 --- a/src/portable/ehci/ehci.c +++ b/src/portable/ehci/ehci.c @@ -381,7 +381,9 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const if (ep_desc->bEndpointAddress == 0) { p_qhd = qhd_control(dev_addr); } else { - TU_VERIFY(NULL == qhd_get_from_addr(dev_addr, ep_desc->bEndpointAddress)); // ep not opened yet + if (NULL != qhd_get_from_addr(dev_addr, ep_desc->bEndpointAddress)) { + return true; // already opened + } p_qhd = qhd_find_free(); } TU_ASSERT(p_qhd); -- cgit v1.3.1 From 255ccf26ea29eb16be41f7715426c10be69b6e30 Mon Sep 17 00:00:00 2001 From: Maxime Vincent Date: Fri, 4 Apr 2025 14:21:20 +0200 Subject: dwc2/host: clear SOF flag in handle_sof_irq() --- src/portable/synopsys/dwc2/hcd_dwc2.c | 1 + 1 file changed, 1 insertion(+) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/hcd_dwc2.c b/src/portable/synopsys/dwc2/hcd_dwc2.c index f0cea529e..7cbef05b7 100644 --- a/src/portable/synopsys/dwc2/hcd_dwc2.c +++ b/src/portable/synopsys/dwc2/hcd_dwc2.c @@ -1182,6 +1182,7 @@ static void handle_channel_irq(uint8_t rhport, bool in_isr) { static bool handle_sof_irq(uint8_t rhport, bool in_isr) { (void) in_isr; dwc2_regs_t* dwc2 = DWC2_REG(rhport); + dwc2->gintsts = GINTSTS_SOF; // Clear the SOF interrupt flag bool more_isr = false; -- cgit v1.3.1