mirror of
https://github.com/switchbrew/libnx.git
synced 2025-06-21 12:32:40 +02:00
Imported usbComms from elsewhere. Removed usb_dev.h since the .c for it was previously removed. In usbDsInitialize(), skip calling _usbDsSetVidPidBcd() when deviceinfo is NULL.
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38cc12f02c
commit
9377851197
@ -24,7 +24,7 @@ VERSION := $(LIBNX_MAJOR).$(LIBNX_MINOR).$(LIBNX_PATCH)
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#---------------------------------------------------------------------------------
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TARGET := nx
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#BUILD := build
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SOURCES := source/arm source/system source/kernel source/services source/gfx
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SOURCES := source/arm source/system source/kernel source/services source/gfx source/devices
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DATA := data
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INCLUDES := include
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@ -37,6 +37,8 @@ extern "C" {
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#include <switch/gfx/gfxproducer.h>
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#include <switch/gfx/ioctl.h>
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#include <switch/devices/usb_comms.h>
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#ifdef __cplusplus
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}
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#endif
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6
nx/include/switch/devices/usb_comms.h
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6
nx/include/switch/devices/usb_comms.h
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@ -0,0 +1,6 @@
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Result usbCommsInitialize(void);
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void usbCommsExit(void);
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size_t usbCommsRead(void* buffer, size_t size);
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size_t usbCommsWrite(const void* buffer, size_t size);
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@ -1,13 +0,0 @@
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/// Switch-as-device<>host USB comms for serial, uses usbDs. Do not directly use usbDs when using this.
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/// WARNING: This doesn't always work properly.
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/// usbDevInitialize will not return until the newline data transfer to the host finishes, aka when the host reads that data.
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Result usbDevInitialize(void);
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void usbDevExit(void);
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/// These will throw fatal-error when any errors occur. These return the actual transfer size.
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/// Note that if you use usbDevRead() where size is <0x200(wMaxPacketSize), any data after that in an USB packet will be discarded. That remaining data in a packet won't be readable by calling usbDevRead again.
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/// These will not return until the data transfer finishes.
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size_t usbDevRead(void* buffer, size_t size);
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size_t usbDevWrite(const void* buffer, size_t size);
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297
nx/source/devices/usb_comms.c
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297
nx/source/devices/usb_comms.c
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@ -0,0 +1,297 @@
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#include <string.h>
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#include <malloc.h>
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#include <switch.h>
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static bool g_usbCommsInitialized = false;
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static UsbDsInterface* interface = NULL;
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static UsbDsEndpoint *g_usbComms_endpoint_in = NULL, *g_usbComms_endpoint_out = NULL;
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static u8 *g_usbComms_endpoint_in_buffer = NULL, *g_usbComms_endpoint_out_buffer = NULL;
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static Result _usbCommsInit(void);
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static Result _usbCommsWrite(const void* buffer, size_t size, size_t *transferredSize);
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Result usbCommsInitialize(void)
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{
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if (g_usbCommsInitialized) return 0;
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Result ret=0;
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ret = usbDsInitialize(USBCOMPLEXID_Default, NULL);
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if (R_SUCCEEDED(ret)) {
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//The buffer for PostBufferAsync commands must be 0x1000-byte aligned.
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g_usbComms_endpoint_in_buffer = memalign(0x1000, 0x1000);
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if (g_usbComms_endpoint_in_buffer==NULL) ret = MAKERESULT(MODULE_LIBNX, LIBNX_OUTOFMEM);
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if (R_SUCCEEDED(ret)) {
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g_usbComms_endpoint_out_buffer = memalign(0x1000, 0x1000);
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if (g_usbComms_endpoint_out_buffer==NULL) ret = MAKERESULT(MODULE_LIBNX, LIBNX_OUTOFMEM);
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}
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if (R_SUCCEEDED(ret)) {
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memset(g_usbComms_endpoint_in_buffer, 0, 0x1000);
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memset(g_usbComms_endpoint_out_buffer, 0, 0x1000);
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ret = _usbCommsInit();
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if (ret != 0) {
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ret += 2000<<9;
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}
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}
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if (R_FAILED(ret)) {
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usbDsExit();
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if (g_usbComms_endpoint_in_buffer) {
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free(g_usbComms_endpoint_in_buffer);
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g_usbComms_endpoint_in_buffer = NULL;
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}
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if (g_usbComms_endpoint_out) {
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free(g_usbComms_endpoint_out_buffer);
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g_usbComms_endpoint_out_buffer = NULL;
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}
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}
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}
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else {
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ret += 1000<<9;
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}
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if (R_SUCCEEDED(ret)) g_usbCommsInitialized=true;
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return ret;
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}
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void usbCommsExit(void)
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{
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if (!g_usbCommsInitialized) return;
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usbDsExit();
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g_usbCommsInitialized = false;
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g_usbComms_endpoint_in = NULL;
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g_usbComms_endpoint_out = NULL;
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if (g_usbComms_endpoint_in_buffer) {
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free(g_usbComms_endpoint_in_buffer);
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g_usbComms_endpoint_in_buffer = NULL;
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}
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if (g_usbComms_endpoint_out) {
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free(g_usbComms_endpoint_out_buffer);
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g_usbComms_endpoint_out_buffer = NULL;
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}
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}
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static Result _usbCommsInit(void)
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{
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Result ret=0;
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struct usb_interface_descriptor interface_descriptor = {
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.bLength = USB_DT_INTERFACE_SIZE,
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.bDescriptorType = USB_DT_INTERFACE,
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.bInterfaceNumber = USBDS_DEFAULT_InterfaceNumber,
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.bInterfaceClass = USB_CLASS_VENDOR_SPEC,
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.bInterfaceSubClass = USB_CLASS_VENDOR_SPEC,
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.bInterfaceProtocol = USB_CLASS_VENDOR_SPEC,
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};
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struct usb_endpoint_descriptor endpoint_descriptor_in = {
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.bLength = USB_DT_ENDPOINT_SIZE,
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.bDescriptorType = USB_DT_ENDPOINT,
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.bEndpointAddress = USB_ENDPOINT_IN,
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.bmAttributes = USB_TRANSFER_TYPE_BULK,
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.wMaxPacketSize = 0x200,
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};
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struct usb_endpoint_descriptor endpoint_descriptor_out = {
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.bLength = USB_DT_ENDPOINT_SIZE,
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.bDescriptorType = USB_DT_ENDPOINT,
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.bEndpointAddress = USB_ENDPOINT_OUT,
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.bmAttributes = USB_TRANSFER_TYPE_BULK,
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.wMaxPacketSize = 0x200,
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};
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//Setup interface.
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ret = usbDsGetDsInterface(&interface, &interface_descriptor, "usb");
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if (R_FAILED(ret)) return ret;
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//Setup endpoints.
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ret = usbDsInterface_GetDsEndpoint(interface, &g_usbComms_endpoint_in, &endpoint_descriptor_in);//device->host
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if (R_FAILED(ret)) return ret;
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ret = usbDsInterface_GetDsEndpoint(interface, &g_usbComms_endpoint_out, &endpoint_descriptor_out);//host->device
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if (R_FAILED(ret)) return ret;
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ret = usbDsInterface_EnableInterface(interface);
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if (R_FAILED(ret)) return ret;
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return ret;
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}
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static Result _usbCommsRead(void* buffer, size_t size, size_t *transferredSize)
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{
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Result ret=0;
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u32 urbId=0;
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u8 *bufptr = (u8*)buffer;
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u8 *transfer_buffer = NULL;
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u8 transfer_type=0;
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s32 tmpindex=0;
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u32 chunksize=0;
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u32 tmp_transferredSize = 0;
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size_t total_transferredSize=0;
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usbDsReportData reportdata;
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//Makes sure endpoints are ready for data-transfer / wait for init if needed.
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ret = usbDsWaitReady();
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if (R_FAILED(ret)) return ret;
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while(size)
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{
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if(((u64)bufptr) & 0xfff)//When bufptr isn't page-aligned copy the data into g_usbComms_endpoint_in_buffer and transfer that, otherwise use the bufptr directly.
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{
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transfer_buffer = g_usbComms_endpoint_out_buffer;
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memset(g_usbComms_endpoint_out_buffer, 0, 0x1000);
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chunksize = 0x1000;
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chunksize-= ((u64)bufptr) & 0xfff;//After this transfer, bufptr will be page-aligned(if size is large enough for another transfer).
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if (size<chunksize) chunksize = size;
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transfer_type = 0;
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}
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else
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{
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transfer_buffer = bufptr;
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chunksize = size;
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transfer_type = 1;
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}
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//Start a host->device transfer.
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ret = usbDsEndpoint_PostBufferAsync(g_usbComms_endpoint_out, transfer_buffer, chunksize, &urbId);
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if (R_FAILED(ret)) return ret;
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//Wait for the transfer to finish.
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svcWaitSynchronization(&tmpindex, &g_usbComms_endpoint_out->CompletionEvent, 1, U64_MAX);
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svcClearEvent(g_usbComms_endpoint_out->CompletionEvent);
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ret = usbDsEndpoint_GetReportData(g_usbComms_endpoint_out, &reportdata);
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if (R_FAILED(ret)) return ret;
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ret = usbDsParseReportData(&reportdata, urbId, NULL, &tmp_transferredSize);
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if (R_FAILED(ret)) return ret;
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if (tmp_transferredSize > chunksize) tmp_transferredSize = chunksize;
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total_transferredSize+= (size_t)tmp_transferredSize;
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if (transfer_type==0) memcpy(bufptr, transfer_buffer, tmp_transferredSize);
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bufptr+= tmp_transferredSize;
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size-= tmp_transferredSize;
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if(tmp_transferredSize < chunksize)break;
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}
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if (transferredSize) *transferredSize = total_transferredSize;
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return ret;
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}
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static Result _usbCommsWrite(const void* buffer, size_t size, size_t *transferredSize)
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{
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Result ret=0;
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u32 urbId=0;
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u32 chunksize=0;
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u8 *bufptr = (u8*)buffer;
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u8 *transfer_buffer = NULL;
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s32 tmpindex=0;
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u32 tmp_transferredSize = 0;
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size_t total_transferredSize=0;
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usbDsReportData reportdata;
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//Makes sure endpoints are ready for data-transfer / wait for init if needed.
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ret = usbDsWaitReady();
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if (R_FAILED(ret)) return ret;
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while(size)
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{
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if(((u64)bufptr) & 0xfff)//When bufptr isn't page-aligned copy the data into g_usbComms_endpoint_in_buffer and transfer that, otherwise use the bufptr directly.
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{
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transfer_buffer = g_usbComms_endpoint_in_buffer;
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memset(g_usbComms_endpoint_in_buffer, 0, 0x1000);
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chunksize = 0x1000;
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chunksize-= ((u64)bufptr) & 0xfff;//After this transfer, bufptr will be page-aligned(if size is large enough for another transfer).
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if (size<chunksize) chunksize = size;
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memcpy(g_usbComms_endpoint_in_buffer, bufptr, chunksize);
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}
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else
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{
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transfer_buffer = bufptr;
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chunksize = size;
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}
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//Start a device->host transfer.
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ret = usbDsEndpoint_PostBufferAsync(g_usbComms_endpoint_in, transfer_buffer, chunksize, &urbId);
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if(R_FAILED(ret))return ret;
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//Wait for the transfer to finish.
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svcWaitSynchronization(&tmpindex, &g_usbComms_endpoint_in->CompletionEvent, 1, U64_MAX);
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svcClearEvent(g_usbComms_endpoint_in->CompletionEvent);
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ret = usbDsEndpoint_GetReportData(g_usbComms_endpoint_in, &reportdata);
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if (R_FAILED(ret)) return ret;
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ret = usbDsParseReportData(&reportdata, urbId, NULL, &tmp_transferredSize);
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if (R_FAILED(ret)) return ret;
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if (tmp_transferredSize > chunksize) tmp_transferredSize = chunksize;
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total_transferredSize+= (size_t)tmp_transferredSize;
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bufptr+= tmp_transferredSize;
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size-= tmp_transferredSize;
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if (tmp_transferredSize < chunksize) break;
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}
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if (transferredSize) *transferredSize = total_transferredSize;
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return ret;
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}
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size_t usbCommsRead(void* buffer, size_t size)
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{
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size_t transferredSize=0;
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u32 state=0;
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Result ret, ret2;
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ret = _usbCommsRead(buffer, size, &transferredSize);
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if (R_FAILED(ret)) {
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ret2 = usbDsGetState(&state);
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if (R_SUCCEEDED(ret2)) {
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if (state!=5) ret = _usbCommsRead(buffer, size, &transferredSize); //If state changed during transfer, try again. usbDsWaitReady() will be called from this.
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}
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if (R_FAILED(ret))fatalSimple(ret);
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}
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return transferredSize;
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}
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size_t usbCommsWrite(const void* buffer, size_t size)
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{
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size_t transferredSize=0;
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u32 state=0;
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Result ret, ret2;
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ret = _usbCommsWrite(buffer, size, &transferredSize);
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if (R_FAILED(ret)) {
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ret2 = usbDsGetState(&state);
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if (R_SUCCEEDED(ret2)) {
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if (state!=5) ret = _usbCommsWrite(buffer, size, &transferredSize); //If state changed during transfer, try again. usbDsWaitReady() will be called from this.
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}
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if (R_FAILED(ret))fatalSimple(ret);
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}
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return transferredSize;
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}
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@ -30,7 +30,7 @@ Result usbDsInitialize(usbComplexId complexId, const usbDsDeviceInfo* deviceinfo
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if (R_SUCCEEDED(rc))rc = _usbDsBindClientProcess(CUR_PROCESS_HANDLE);
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if (R_SUCCEEDED(rc))rc = _usbDsGetEvent(g_usbDsServiceSession, &g_usbDsStateChangeEvent, 3);// GetStateChangeEvent
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if (R_SUCCEEDED(rc) && kernelAbove200()) {
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if (R_SUCCEEDED(rc) && deviceinfo && kernelAbove200()) {
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rc = _usbDsSetVidPidBcd(deviceinfo);
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}
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