diff options
| author | HiFiPhile <[email protected]> | 2024-05-09 13:45:44 +0200 |
|---|---|---|
| committer | HiFiPhile <[email protected]> | 2024-05-09 13:45:44 +0200 |
| commit | fd1cde9b894e5312e6c6f9da63cfea5aa05d83d2 (patch) | |
| tree | 5f43ffeecb05d80788cbe0bbc43913202a922a2a /src/class | |
| parent | d0bff6fd3ec9fc133032dea84732451d93d202b4 (diff) | |
| parent | 74e57499baac36c4cccf76549259905162031e41 (diff) | |
Merge branch 'master' into pr/2181
Diffstat (limited to 'src/class')
40 files changed, 3566 insertions, 1871 deletions
diff --git a/src/class/audio/audio.h b/src/class/audio/audio.h index 70d431282..d6f3e22e2 100644 --- a/src/class/audio/audio.h +++ b/src/class/audio/audio.h @@ -924,6 +924,31 @@ typedef struct TU_ATTR_PACKED { } subrange[numSubRanges]; \ } +// 6.1 Interrupt Data Message Format +typedef struct TU_ATTR_PACKED +{ + uint8_t bInfo; + uint8_t bAttribute; + union + { + uint16_t wValue; + struct + { + uint8_t wValue_cn_or_mcn; + uint8_t wValue_cs; + }; + }; + union + { + uint16_t wIndex; + struct + { + uint8_t wIndex_ep_or_int; + uint8_t wIndex_entity_id; + }; + }; +} audio_interrupt_data_t; + /** @} */ #ifdef __cplusplus diff --git a/src/class/audio/audio_device.c b/src/class/audio/audio_device.c index 1a7ce7870..9ba38a20c 100644 --- a/src/class/audio/audio_device.c +++ b/src/class/audio/audio_device.c @@ -96,13 +96,6 @@ #define USE_LINEAR_BUFFER 1 #endif -// Temporarily put the check here for stm32_fsdev -#ifdef TUP_USBIP_FSDEV - #define USE_ISO_EP_ALLOCATION 1 -#else - #define USE_ISO_EP_ALLOCATION 0 -#endif - // Declaration of buffers // Check for maximum supported numbers @@ -110,24 +103,36 @@ #error Maximum number of audio functions restricted to three! #endif +// Put sw_buf in USB section only if necessary +#if USE_LINEAR_BUFFER || CFG_TUD_AUDIO_ENABLE_ENCODING +#define IN_SW_BUF_MEM_SECTION +#else +#define IN_SW_BUF_MEM_SECTION CFG_TUD_MEM_SECTION +#endif +#if USE_LINEAR_BUFFER || CFG_TUD_AUDIO_ENABLE_DECODING +#define OUT_SW_BUF_MEM_SECTION +#else +#define OUT_SW_BUF_MEM_SECTION CFG_TUD_MEM_SECTION +#endif + // EP IN software buffers and mutexes #if CFG_TUD_AUDIO_ENABLE_EP_IN && !CFG_TUD_AUDIO_ENABLE_ENCODING #if CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_in_sw_buf_1[CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ]; + IN_SW_BUF_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_in_sw_buf_1[CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ]; #if CFG_FIFO_MUTEX osal_mutex_def_t ep_in_ff_mutex_wr_1; // No need for read mutex as only USB driver reads from FIFO #endif #endif // CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ > 0 #if CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_EP_IN_SW_BUF_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_in_sw_buf_2[CFG_TUD_AUDIO_FUNC_2_EP_IN_SW_BUF_SZ]; + IN_SW_BUF_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_in_sw_buf_2[CFG_TUD_AUDIO_FUNC_2_EP_IN_SW_BUF_SZ]; #if CFG_FIFO_MUTEX osal_mutex_def_t ep_in_ff_mutex_wr_2; // No need for read mutex as only USB driver reads from FIFO #endif #endif // CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_EP_IN_SW_BUF_SZ > 0 #if CFG_TUD_AUDIO > 2 && CFG_TUD_AUDIO_FUNC_3_EP_IN_SW_BUF_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_in_sw_buf_3[CFG_TUD_AUDIO_FUNC_3_EP_IN_SW_BUF_SZ]; + IN_SW_BUF_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_in_sw_buf_3[CFG_TUD_AUDIO_FUNC_3_EP_IN_SW_BUF_SZ]; #if CFG_FIFO_MUTEX osal_mutex_def_t ep_in_ff_mutex_wr_3; // No need for read mutex as only USB driver reads from FIFO #endif @@ -154,21 +159,21 @@ // EP OUT software buffers and mutexes #if CFG_TUD_AUDIO_ENABLE_EP_OUT && !CFG_TUD_AUDIO_ENABLE_DECODING #if CFG_TUD_AUDIO_FUNC_1_EP_OUT_SW_BUF_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_out_sw_buf_1[CFG_TUD_AUDIO_FUNC_1_EP_OUT_SW_BUF_SZ]; + OUT_SW_BUF_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_out_sw_buf_1[CFG_TUD_AUDIO_FUNC_1_EP_OUT_SW_BUF_SZ]; #if CFG_FIFO_MUTEX osal_mutex_def_t ep_out_ff_mutex_rd_1; // No need for write mutex as only USB driver writes into FIFO #endif #endif // CFG_TUD_AUDIO_FUNC_1_EP_OUT_SW_BUF_SZ > 0 #if CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_EP_OUT_SW_BUF_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_out_sw_buf_2[CFG_TUD_AUDIO_FUNC_2_EP_OUT_SW_BUF_SZ]; + OUT_SW_BUF_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_out_sw_buf_2[CFG_TUD_AUDIO_FUNC_2_EP_OUT_SW_BUF_SZ]; #if CFG_FIFO_MUTEX osal_mutex_def_t ep_out_ff_mutex_rd_2; // No need for write mutex as only USB driver writes into FIFO #endif #endif // CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_EP_OUT_SW_BUF_SZ > 0 #if CFG_TUD_AUDIO > 2 && CFG_TUD_AUDIO_FUNC_3_EP_OUT_SW_BUF_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_out_sw_buf_3[CFG_TUD_AUDIO_FUNC_3_EP_OUT_SW_BUF_SZ]; + OUT_SW_BUF_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t audio_ep_out_sw_buf_3[CFG_TUD_AUDIO_FUNC_3_EP_OUT_SW_BUF_SZ]; #if CFG_FIFO_MUTEX osal_mutex_def_t ep_out_ff_mutex_rd_3; // No need for write mutex as only USB driver writes into FIFO #endif @@ -217,7 +222,7 @@ uint8_t alt_setting_3[CFG_TUD_AUDIO_FUNC_3_N_AS_INT]; // Software encoding/decoding support FIFOs #if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_ENABLE_ENCODING #if CFG_TUD_AUDIO_FUNC_1_TX_SUPP_SW_FIFO_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t tx_supp_ff_buf_1[CFG_TUD_AUDIO_FUNC_1_N_TX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_1_TX_SUPP_SW_FIFO_SZ]; + CFG_TUSB_MEM_ALIGN uint8_t tx_supp_ff_buf_1[CFG_TUD_AUDIO_FUNC_1_N_TX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_1_TX_SUPP_SW_FIFO_SZ]; tu_fifo_t tx_supp_ff_1[CFG_TUD_AUDIO_FUNC_1_N_TX_SUPP_SW_FIFO]; #if CFG_FIFO_MUTEX osal_mutex_def_t tx_supp_ff_mutex_wr_1[CFG_TUD_AUDIO_FUNC_1_N_TX_SUPP_SW_FIFO]; // No need for read mutex as only USB driver reads from FIFO @@ -225,7 +230,7 @@ uint8_t alt_setting_3[CFG_TUD_AUDIO_FUNC_3_N_AS_INT]; #endif #if CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_TX_SUPP_SW_FIFO_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t tx_supp_ff_buf_2[CFG_TUD_AUDIO_FUNC_2_N_TX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_2_TX_SUPP_SW_FIFO_SZ]; + CFG_TUSB_MEM_ALIGN uint8_t tx_supp_ff_buf_2[CFG_TUD_AUDIO_FUNC_2_N_TX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_2_TX_SUPP_SW_FIFO_SZ]; tu_fifo_t tx_supp_ff_2[CFG_TUD_AUDIO_FUNC_2_N_TX_SUPP_SW_FIFO]; #if CFG_FIFO_MUTEX osal_mutex_def_t tx_supp_ff_mutex_wr_2[CFG_TUD_AUDIO_FUNC_2_N_TX_SUPP_SW_FIFO]; // No need for read mutex as only USB driver reads from FIFO @@ -233,7 +238,7 @@ uint8_t alt_setting_3[CFG_TUD_AUDIO_FUNC_3_N_AS_INT]; #endif #if CFG_TUD_AUDIO > 2 && CFG_TUD_AUDIO_FUNC_3_TX_SUPP_SW_FIFO_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t tx_supp_ff_buf_3[CFG_TUD_AUDIO_FUNC_3_N_TX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_3_TX_SUPP_SW_FIFO_SZ]; + CFG_TUSB_MEM_ALIGN uint8_t tx_supp_ff_buf_3[CFG_TUD_AUDIO_FUNC_3_N_TX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_3_TX_SUPP_SW_FIFO_SZ]; tu_fifo_t tx_supp_ff_3[CFG_TUD_AUDIO_FUNC_3_N_TX_SUPP_SW_FIFO]; #if CFG_FIFO_MUTEX osal_mutex_def_t tx_supp_ff_mutex_wr_3[CFG_TUD_AUDIO_FUNC_3_N_TX_SUPP_SW_FIFO]; // No need for read mutex as only USB driver reads from FIFO @@ -243,7 +248,7 @@ uint8_t alt_setting_3[CFG_TUD_AUDIO_FUNC_3_N_AS_INT]; #if CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_DECODING #if CFG_TUD_AUDIO_FUNC_1_RX_SUPP_SW_FIFO_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t rx_supp_ff_buf_1[CFG_TUD_AUDIO_FUNC_1_N_RX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_1_RX_SUPP_SW_FIFO_SZ]; + CFG_TUSB_MEM_ALIGN uint8_t rx_supp_ff_buf_1[CFG_TUD_AUDIO_FUNC_1_N_RX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_1_RX_SUPP_SW_FIFO_SZ]; tu_fifo_t rx_supp_ff_1[CFG_TUD_AUDIO_FUNC_1_N_RX_SUPP_SW_FIFO]; #if CFG_FIFO_MUTEX osal_mutex_def_t rx_supp_ff_mutex_rd_1[CFG_TUD_AUDIO_FUNC_1_N_RX_SUPP_SW_FIFO]; // No need for write mutex as only USB driver writes into FIFO @@ -251,7 +256,7 @@ uint8_t alt_setting_3[CFG_TUD_AUDIO_FUNC_3_N_AS_INT]; #endif #if CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_RX_SUPP_SW_FIFO_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t rx_supp_ff_buf_2[CFG_TUD_AUDIO_FUNC_2_N_RX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_2_RX_SUPP_SW_FIFO_SZ]; + CFG_TUSB_MEM_ALIGN uint8_t rx_supp_ff_buf_2[CFG_TUD_AUDIO_FUNC_2_N_RX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_2_RX_SUPP_SW_FIFO_SZ]; tu_fifo_t rx_supp_ff_2[CFG_TUD_AUDIO_FUNC_2_N_RX_SUPP_SW_FIFO]; #if CFG_FIFO_MUTEX osal_mutex_def_t rx_supp_ff_mutex_rd_2[CFG_TUD_AUDIO_FUNC_2_N_RX_SUPP_SW_FIFO]; // No need for write mutex as only USB driver writes into FIFO @@ -259,7 +264,7 @@ uint8_t alt_setting_3[CFG_TUD_AUDIO_FUNC_3_N_AS_INT]; #endif #if CFG_TUD_AUDIO > 2 && CFG_TUD_AUDIO_FUNC_3_RX_SUPP_SW_FIFO_SZ > 0 - CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN uint8_t rx_supp_ff_buf_3[CFG_TUD_AUDIO_FUNC_3_N_RX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_3_RX_SUPP_SW_FIFO_SZ]; + CFG_TUSB_MEM_ALIGN uint8_t rx_supp_ff_buf_3[CFG_TUD_AUDIO_FUNC_3_N_RX_SUPP_SW_FIFO][CFG_TUD_AUDIO_FUNC_3_RX_SUPP_SW_FIFO_SZ]; tu_fifo_t rx_supp_ff_3[CFG_TUD_AUDIO_FUNC_3_N_RX_SUPP_SW_FIFO]; #if CFG_FIFO_MUTEX osal_mutex_def_t rx_supp_ff_mutex_rd_3[CFG_TUD_AUDIO_FUNC_3_N_RX_SUPP_SW_FIFO]; // No need for write mutex as only USB driver writes into FIFO @@ -289,10 +294,12 @@ typedef struct #endif -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN - uint8_t ep_int_ctr; // Audio control interrupt EP. +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP + uint8_t ep_int; // Audio control interrupt EP. #endif + bool mounted; // Device opened + /*------------- From this point, data is not cleared by bus reset -------------*/ uint16_t desc_length; // Length of audio function descriptor @@ -346,8 +353,8 @@ typedef struct #endif // Audio control interrupt buffer - no FIFO - 6 Bytes according to UAC 2 specification (p. 74) -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN - CFG_TUSB_MEM_ALIGN uint8_t ep_int_ctr_buf[CFG_TUD_AUDIO_INT_CTR_EP_IN_SW_BUFFER_SIZE]; +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP + CFG_TUSB_MEM_ALIGN uint8_t ep_int_buf[6]; #endif // Decoding parameters - parameters are set when alternate AS interface is set by host @@ -364,14 +371,21 @@ typedef struct #endif #endif +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + uint32_t sample_rate_tx; + uint16_t packet_sz_tx[3]; + uint8_t bclock_id_tx; + uint8_t interval_tx; +#endif + // Encoding parameters - parameters are set when alternate AS interface is set by host -#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_ENABLE_ENCODING +#if CFG_TUD_AUDIO_ENABLE_EP_IN && (CFG_TUD_AUDIO_ENABLE_ENCODING || CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL) audio_format_type_t format_type_tx; uint8_t n_channels_tx; + uint8_t n_bytes_per_sampe_tx; #if CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING audio_data_format_type_I_t format_type_I_tx; - uint8_t n_bytes_per_sampe_tx; uint8_t n_channels_per_ff_tx; uint8_t n_ff_used_tx; #endif @@ -444,7 +458,7 @@ static bool audiod_verify_itf_exists(uint8_t itf, uint8_t *func_id); static bool audiod_verify_ep_exists(uint8_t ep, uint8_t *func_id); static uint8_t audiod_get_audio_fct_idx(audiod_function_t * audio); -#if CFG_TUD_AUDIO_ENABLE_ENCODING || CFG_TUD_AUDIO_ENABLE_DECODING +#if (CFG_TUD_AUDIO_ENABLE_EP_IN && (CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL || CFG_TUD_AUDIO_ENABLE_ENCODING)) || (CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_DECODING) static void audiod_parse_for_AS_params(audiod_function_t* audio, uint8_t const * p_desc, uint8_t const * p_desc_end, uint8_t const as_itf); static inline uint8_t tu_desc_subtype(void const* desc) @@ -453,6 +467,11 @@ static inline uint8_t tu_desc_subtype(void const* desc) } #endif +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL +static bool audiod_calc_tx_packet_sz(audiod_function_t* audio); +static uint16_t audiod_tx_packet_size(const uint16_t* norminal_size, uint16_t data_count, uint16_t fifo_depth, uint16_t max_size); +#endif + #if CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP static bool set_fb_params_freq(audiod_function_t* audio, uint32_t sample_freq, uint32_t mclk_freq); #endif @@ -462,23 +481,7 @@ bool tud_audio_n_mounted(uint8_t func_id) TU_VERIFY(func_id < CFG_TUD_AUDIO); audiod_function_t* audio = &_audiod_fct[func_id]; -#if CFG_TUD_AUDIO_ENABLE_EP_OUT - if (audio->ep_out == 0) return false; -#endif - -#if CFG_TUD_AUDIO_ENABLE_EP_IN - if (audio->ep_in == 0) return false; -#endif - -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN - if (audio->ep_int_ctr == 0) return false; -#endif - -#if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP - if (audio->ep_fb == 0) return false; -#endif - - return true; + return audio->mounted; } //--------------------------------------------------------------------+ @@ -631,73 +634,55 @@ static bool audiod_rx_done_cb(uint8_t rhport, audiod_function_t* audio, uint16_t // Decoding according to 2.3.1.5 Audio Streams // Helper function -static inline uint8_t * audiod_interleaved_copy_bytes_fast_decode(uint16_t const nBytesToCopy, void * dst, uint8_t * dst_end, uint8_t * src, uint8_t const n_ff_used) +static inline void * audiod_interleaved_copy_bytes_fast_decode(uint16_t const nBytesPerSample, void * dst, const void * dst_end, void * src, uint8_t const n_ff_used) { + // Due to one FIFO contains 2 channels, data always aligned to (nBytesPerSample * 2) + uint16_t * dst16 = dst; + uint16_t * src16 = src; + const uint16_t * dst_end16 = dst_end; + uint32_t * dst32 = dst; + uint32_t * src32 = src; + const uint32_t * dst_end32 = dst_end; - // This function is an optimized version of - // while((uint8_t *)dst < dst_end) - // { - // memcpy(dst, src, nBytesToCopy); - // dst = (uint8_t *)dst + nBytesToCopy; - // src += nBytesToCopy * n_ff_used; - // } - - // Optimize for fast half word copies - typedef struct{ - uint16_t val; - } __attribute((__packed__)) unaligned_uint16_t; - - // Optimize for fast word copies - typedef struct{ - uint32_t val; - } __attribute((__packed__)) unaligned_uint32_t; - - switch (nBytesToCopy) + if (nBytesPerSample == 1) { - case 1: - while((uint8_t *)dst < dst_end) - { - *(uint8_t *)dst++ = *src; - src += n_ff_used; - } - break; - - case 2: - while((uint8_t *)dst < dst_end) - { - *(unaligned_uint16_t*)dst = *(unaligned_uint16_t*)src; - dst += 2; - src += 2 * n_ff_used; - } - break; - - case 3: - while((uint8_t *)dst < dst_end) - { - // memcpy(dst, src, 3); - // dst = (uint8_t *)dst + 3; - // src += 3 * n_ff_used; - - // TODO: Is there a faster way to copy 3 bytes? - *(uint8_t *)dst++ = *src++; - *(uint8_t *)dst++ = *src++; - *(uint8_t *)dst++ = *src++; - - src += 3 * (n_ff_used - 1); - } - break; - - case 4: - while((uint8_t *)dst < dst_end) - { - *(unaligned_uint32_t*)dst = *(unaligned_uint32_t*)src; - dst += 4; - src += 4 * n_ff_used; - } - break; + while(dst16 < dst_end16) + { + *dst16++ = *src16++; + src16 += n_ff_used - 1; + } + return src16; + } + else if (nBytesPerSample == 2) + { + while(dst32 < dst_end32) + { + *dst32++ = *src32++; + src32 += n_ff_used - 1; + } + return src32; + } + else if (nBytesPerSample == 3) + { + while(dst16 < dst_end16) + { + *dst16++ = *src16++; + *dst16++ = *src16++; + *dst16++ = *src16++; + src16 += 3 * (n_ff_used - 1); + } + return src16; + } + else // nBytesPerSample == 4 + { + while(dst32 < dst_end32) + { + *dst32++ = *src32++; + *dst32++ = *src32++; + src32 += 2 * (n_ff_used - 1); + } + return src32; } - - return src; } static bool audiod_decode_type_I_pcm(uint8_t rhport, audiod_function_t* audio, uint16_t n_bytes_received) @@ -819,27 +804,32 @@ tu_fifo_t* tud_audio_n_get_tx_support_ff(uint8_t func_id, uint8_t ff_idx) #endif -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN - -// If no interrupt transmit is pending bytes get written into buffer and a transmit is scheduled - once transmit completed tud_audio_int_ctr_done_cb() is called in inform user -uint16_t tud_audio_int_ctr_n_write(uint8_t func_id, uint8_t const* buffer, uint16_t len) +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP +// If no interrupt transmit is pending bytes get written into buffer and a transmit is scheduled - once transmit completed tud_audio_int_done_cb() is called in inform user +bool tud_audio_int_n_write(uint8_t func_id, const audio_interrupt_data_t * data) { TU_VERIFY(func_id < CFG_TUD_AUDIO && _audiod_fct[func_id].p_desc != NULL); - // We write directly into the EP's buffer - abort if previous transfer not complete - TU_VERIFY(!usbd_edpt_busy(_audiod_fct[func_id].rhport, _audiod_fct[func_id].ep_int_ctr)); + TU_VERIFY(_audiod_fct[func_id].ep_int != 0); - TU_VERIFY(tu_memcpy_s(_audiod_fct[func_id].ep_int_ctr_buf, CFG_TUD_AUDIO_INT_CTR_EP_IN_SW_BUFFER_SIZE, buffer, len)==0); + // We write directly into the EP's buffer - abort if previous transfer not complete + TU_VERIFY(usbd_edpt_claim(_audiod_fct[func_id].rhport, _audiod_fct[func_id].ep_int)); - // Schedule transmit - TU_VERIFY(usbd_edpt_xfer(_audiod_fct[func_id].rhport, _audiod_fct[func_id].ep_int_ctr, _audiod_fct[func_id].ep_int_ctr_buf, len)); + // Check length + if (tu_memcpy_s(_audiod_fct[func_id].ep_int_buf, sizeof(_audiod_fct[func_id].ep_int_buf), data, sizeof(audio_interrupt_data_t)) == 0) + { + // Schedule transmit + TU_ASSERT(usbd_edpt_xfer(_audiod_fct[func_id].rhport, _audiod_fct[func_id].ep_int, _audiod_fct[func_id].ep_int_buf, sizeof(_audiod_fct[func_id].ep_int_buf)), 0); + } else + { + // Release endpoint since we don't make any transfer + usbd_edpt_release(_audiod_fct[func_id].rhport, _audiod_fct[func_id].ep_int); + } return true; } - #endif - // This function is called once a transmit of an audio packet was successfully completed. Here, we encode samples and place it in IN EP's buffer for next transmission. // If you prefer your own (more efficient) implementation suiting your purpose set CFG_TUD_AUDIO_ENABLE_ENCODING = 0 and use tud_audio_n_write. @@ -904,9 +894,12 @@ static bool audiod_tx_done_cb(uint8_t rhport, audiod_function_t * audio) #else // No support FIFOs, if no linear buffer required schedule transmit, else put data into linear buffer and schedule - +#if CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + // packet_sz_tx is based on total packet size, here we want size for each support buffer. + n_bytes_tx = audiod_tx_packet_size(audio->packet_sz_tx, tu_fifo_count(&audio->ep_in_ff), audio->ep_in_ff.depth, audio->ep_in_sz); +#else n_bytes_tx = tu_min16(tu_fifo_count(&audio->ep_in_ff), audio->ep_in_sz); // Limit up to max packet size, more can not be done for ISO - +#endif #if USE_LINEAR_BUFFER_TX tu_fifo_read_n(&audio->ep_in_ff, audio->lin_buf_in, n_bytes_tx); TU_VERIFY(usbd_edpt_xfer(rhport, audio->ep_in, audio->lin_buf_in, n_bytes_tx)); @@ -944,64 +937,55 @@ range [-1, +1) * */ // Helper function -static inline uint8_t * audiod_interleaved_copy_bytes_fast_encode(uint16_t const nBytesToCopy, uint8_t * src, uint8_t * src_end, uint8_t * dst, uint8_t const n_ff_used) +static inline void * audiod_interleaved_copy_bytes_fast_encode(uint16_t const nBytesPerSample, void * src, const void * src_end, void * dst, uint8_t const n_ff_used) { - // Optimize for fast half word copies - typedef struct{ - uint16_t val; - } __attribute((__packed__)) unaligned_uint16_t; - - // Optimize for fast word copies - typedef struct{ - uint32_t val; - } __attribute((__packed__)) unaligned_uint32_t; + // Due to one FIFO contains 2 channels, data always aligned to (nBytesPerSample * 2) + uint16_t * dst16 = dst; + uint16_t * src16 = src; + const uint16_t * src_end16 = src_end; + uint32_t * dst32 = dst; + uint32_t * src32 = src; + const uint32_t * src_end32 = src_end; - switch (nBytesToCopy) + if (nBytesPerSample == 1) { - case 1: - while(src < src_end) - { - *dst = *src++; - dst += n_ff_used; - } - break; - - case 2: - while(src < src_end) - { - *(unaligned_uint16_t*)dst = *(unaligned_uint16_t*)src; - src += 2; - dst += 2 * n_ff_used; - } - break; - - case 3: - while(src < src_end) - { - // memcpy(dst, src, 3); - // src = (uint8_t *)src + 3; - // dst += 3 * n_ff_used; - - // TODO: Is there a faster way to copy 3 bytes? - *dst++ = *src++; - *dst++ = *src++; - *dst++ = *src++; - - dst += 3 * (n_ff_used - 1); - } - break; - - case 4: - while(src < src_end) - { - *(unaligned_uint32_t*)dst = *(unaligned_uint32_t*)src; - src += 4; - dst += 4 * n_ff_used; - } - break; + while(src16 < src_end16) + { + *dst16++ = *src16++; + dst16 += n_ff_used - 1; + } + return dst16; + } + else if (nBytesPerSample == 2) + { + while(src32 < src_end32) + { + *dst32++ = *src32++; + dst32 += n_ff_used - 1; + } + return dst32; + } + else if (nBytesPerSample == 3) + { + while(src16 < src_end16) + { + *dst16++ = *src16++; + *dst16++ = *src16++; + *dst16++ = *src16++; + dst16 += 3 * (n_ff_used - 1); + } + return dst16; + } + else // nBytesPerSample == 4 + { + while(src32 < src_end32) + { + *dst32++ = *src32++; + *dst32++ = *src32++; + dst32 += 2 * (n_ff_used - 1); + } + return dst32; } - - return dst; } static uint16_t audiod_encode_type_I_pcm(uint8_t rhport, audiod_function_t* audio) @@ -1014,8 +998,6 @@ static uint16_t audiod_encode_type_I_pcm(uint8_t rhport, audiod_function_t* audi // Determine amount of samples uint8_t const n_ff_used = audio->n_ff_used_tx; - uint16_t const nBytesToCopy = audio->n_channels_per_ff_tx * audio->n_bytes_per_sampe_tx; - uint16_t const capPerFF = audio->ep_in_sz / n_ff_used; // Sample capacity per FIFO in bytes uint16_t nBytesPerFFToSend = tu_fifo_count(&audio->tx_supp_ff[0]); uint8_t cnt_ff; @@ -1028,14 +1010,23 @@ static uint16_t audiod_encode_type_I_pcm(uint8_t rhport, audiod_function_t* audi } } - // Check if there is enough +#if CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + const uint16_t norm_packet_sz_tx[3] = {audio->packet_sz_tx[0] / n_ff_used, + audio->packet_sz_tx[1] / n_ff_used, + audio->packet_sz_tx[2] / n_ff_used}; + // packet_sz_tx is based on total packet size, here we want size for each support buffer. + nBytesPerFFToSend = audiod_tx_packet_size(norm_packet_sz_tx, nBytesPerFFToSend, audio->tx_supp_ff[0].depth, audio->ep_in_sz / n_ff_used); + // Check if there is enough data + if (nBytesPerFFToSend == 0) return 0; +#else + // Check if there is enough data if (nBytesPerFFToSend == 0) return 0; - // Limit to maximum sample number - THIS IS A POSSIBLE ERROR SOURCE IF TOO MANY SAMPLE WOULD NEED TO BE SENT BUT CAN NOT! - nBytesPerFFToSend = tu_min16(nBytesPerFFToSend, capPerFF); - + nBytesPerFFToSend = tu_min16(nBytesPerFFToSend, audio->ep_in_sz / n_ff_used); // Round to full number of samples (flooring) - nBytesPerFFToSend = (nBytesPerFFToSend / nBytesToCopy) * nBytesToCopy; + uint16_t const nSlotSize = audio->n_channels_per_ff_tx * audio->n_bytes_per_sampe_tx; + nBytesPerFFToSend = (nBytesPerFFToSend / nSlotSize) * nSlotSize; +#endif // Encode uint8_t * dst; @@ -1298,7 +1289,7 @@ void audiod_init(void) #endif // CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_ENABLE_ENCODING // Set encoding parameters for Type_I formats -#if CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING switch (i) { #if CFG_TUD_AUDIO_FUNC_1_TX_SUPP_SW_FIFO_SZ > 0 @@ -1398,6 +1389,10 @@ void audiod_init(void) } } +bool audiod_deinit(void) { + return false; // TODO not implemented yet +} + void audiod_reset(uint8_t rhport) { (void) rhport; @@ -1441,10 +1436,11 @@ uint16_t audiod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uin // Verify version is correct - this check can be omitted TU_VERIFY(itf_desc->bInterfaceProtocol == AUDIO_INT_PROTOCOL_CODE_V2); - // Verify interrupt control EP is enabled if demanded by descriptor - this should be best some static check however - this check can be omitted - if (itf_desc->bNumEndpoints == 1) // 0 or 1 EPs are allowed + // Verify interrupt control EP is enabled if demanded by descriptor + TU_ASSERT(itf_desc->bNumEndpoints <= 1); // 0 or 1 EPs are allowed + if (itf_desc->bNumEndpoints == 1) { - TU_VERIFY(CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN > 0); + TU_ASSERT(CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP); } // Alternate setting MUST be zero - this check can be omitted @@ -1477,83 +1473,143 @@ uint16_t audiod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uin #endif } -#if USE_ISO_EP_ALLOCATION +#ifdef TUP_DCD_EDPT_ISO_ALLOC + { #if CFG_TUD_AUDIO_ENABLE_EP_IN - uint8_t ep_in = 0; - uint16_t ep_in_size = 0; + uint8_t ep_in = 0; + uint16_t ep_in_size = 0; #endif #if CFG_TUD_AUDIO_ENABLE_EP_OUT - uint8_t ep_out = 0; - uint16_t ep_out_size = 0; + uint8_t ep_out = 0; + uint16_t ep_out_size = 0; #endif #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP - uint8_t ep_fb = 0; + uint8_t ep_fb = 0; #endif - - uint8_t const *p_desc = _audiod_fct[i].p_desc; - uint8_t const *p_desc_end = p_desc + _audiod_fct[i].desc_length - TUD_AUDIO_DESC_IAD_LEN; - while (p_desc < p_desc_end) - { - if (tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT) + uint8_t const *p_desc = _audiod_fct[i].p_desc; + uint8_t const *p_desc_end = p_desc + _audiod_fct[i].desc_length - TUD_AUDIO_DESC_IAD_LEN; + while (p_desc < p_desc_end) { - tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) p_desc; - if (desc_ep->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) + if (tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT) { - #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP - // Explicit feedback EP - if (desc_ep->bmAttributes.usage == 1) + tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) p_desc; + if (desc_ep->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) { - ep_fb = desc_ep->bEndpointAddress; - } + #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP + // Explicit feedback EP + if (desc_ep->bmAttributes.usage == 1) + { + ep_fb = desc_ep->bEndpointAddress; + } #endif - // Data EP - if (desc_ep->bmAttributes.usage == 0) - { - if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) + // Data EP + if (desc_ep->bmAttributes.usage == 0) { + if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) + { #if CFG_TUD_AUDIO_ENABLE_EP_IN - ep_in = desc_ep->bEndpointAddress; - ep_in_size = TU_MAX(tu_edpt_packet_size(desc_ep), ep_in_size); + ep_in = desc_ep->bEndpointAddress; + ep_in_size = TU_MAX(tu_edpt_packet_size(desc_ep), ep_in_size); #endif - } else - { + } else + { #if CFG_TUD_AUDIO_ENABLE_EP_OUT - ep_out = desc_ep->bEndpointAddress; - ep_out_size = TU_MAX(tu_edpt_packet_size(desc_ep), ep_out_size); + ep_out = desc_ep->bEndpointAddress; + ep_out_size = TU_MAX(tu_edpt_packet_size(desc_ep), ep_out_size); #endif + } } - } + } } + + p_desc = tu_desc_next(p_desc); } - p_desc = tu_desc_next(p_desc); - } #if CFG_TUD_AUDIO_ENABLE_EP_IN - if (ep_in) - { - usbd_edpt_iso_alloc(rhport, ep_in, ep_in_size); - } + if (ep_in) + { + usbd_edpt_iso_alloc(rhport, ep_in, ep_in_size); + } #endif #if CFG_TUD_AUDIO_ENABLE_EP_OUT - if (ep_out) - { - usbd_edpt_iso_alloc(rhport, ep_out, ep_out_size); - } + if (ep_out) + { + usbd_edpt_iso_alloc(rhport, ep_out, ep_out_size); + } #endif #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP - if (ep_fb) + if (ep_fb) + { + usbd_edpt_iso_alloc(rhport, ep_fb, 4); + } + #endif + } +#endif // TUP_DCD_EDPT_ISO_ALLOC + +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL { - usbd_edpt_iso_alloc(rhport, ep_fb, 4); + uint8_t const *p_desc = _audiod_fct[i].p_desc; + uint8_t const *p_desc_end = p_desc + _audiod_fct[i].desc_length - TUD_AUDIO_DESC_IAD_LEN; + // Condition modified from p_desc < p_desc_end to prevent gcc>=12 strict-overflow warning + while (p_desc_end - p_desc > 0) + { + if (tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT) + { + tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) p_desc; + if (desc_ep->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) + { + if (desc_ep->bmAttributes.usage == 0) + { + if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) + { + _audiod_fct[i].interval_tx = desc_ep->bInterval; + } + } + } + } else + if (tu_desc_type(p_desc) == TUSB_DESC_CS_INTERFACE && tu_desc_subtype(p_desc) == AUDIO_CS_AC_INTERFACE_OUTPUT_TERMINAL) + { + if(tu_unaligned_read16(p_desc + 4) == AUDIO_TERM_TYPE_USB_STREAMING) + { + _audiod_fct[i].bclock_id_tx = p_desc[8]; + } + } + p_desc = tu_desc_next(p_desc); + } } - #endif +#endif // CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL -#endif // USE_ISO_EP_ALLOCATION +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP + { + uint8_t const *p_desc = _audiod_fct[i].p_desc; + uint8_t const *p_desc_end = p_desc + _audiod_fct[i].desc_length - TUD_AUDIO_DESC_IAD_LEN; + // Condition modified from p_desc < p_desc_end to prevent gcc>=12 strict-overflow warning + while (p_desc_end - p_desc > 0) + { + // For each endpoint + if (tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT) + { + tusb_desc_endpoint_t const* desc_ep = (tusb_desc_endpoint_t const *) p_desc; + uint8_t const ep_addr = desc_ep->bEndpointAddress; + // If endpoint is input-direction and interrupt-type + if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN && desc_ep->bmAttributes.xfer == TUSB_XFER_INTERRUPT) + { + // Store endpoint number and open endpoint + _audiod_fct[i].ep_int = ep_addr; + TU_ASSERT(usbd_edpt_open(_audiod_fct[i].rhport, desc_ep)); + } + } + p_desc = tu_desc_next(p_desc); + } + } +#endif + _audiod_fct[i].mounted = true; break; } } @@ -1615,7 +1671,7 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * if (audio->ep_in_as_intf_num == itf) { audio->ep_in_as_intf_num = 0; - #if !USE_ISO_EP_ALLOCATION + #ifndef TUP_DCD_EDPT_ISO_ALLOC usbd_edpt_close(rhport, audio->ep_in); #endif @@ -1634,6 +1690,11 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * audio->ep_in = 0; // Necessary? + #if CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + audio->packet_sz_tx[0] = 0; + audio->packet_sz_tx[1] = 0; + audio->packet_sz_tx[2] = 0; + #endif } #endif // CFG_TUD_AUDIO_ENABLE_EP_IN @@ -1641,7 +1702,7 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * if (audio->ep_out_as_intf_num == itf) { audio->ep_out_as_intf_num = 0; - #if !USE_ISO_EP_ALLOCATION + #ifndef TUP_DCD_EDPT_ISO_ALLOC usbd_edpt_close(rhport, audio->ep_out); #endif @@ -1662,7 +1723,7 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * // Close corresponding feedback EP #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP - #if !USE_ISO_EP_ALLOCATION + #ifndef TUP_DCD_EDPT_ISO_ALLOC usbd_edpt_close(rhport, audio->ep_fb); #endif audio->ep_fb = 0; @@ -1684,7 +1745,7 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * // Find correct interface if (tu_desc_type(p_desc) == TUSB_DESC_INTERFACE && ((tusb_desc_interface_t const * )p_desc)->bInterfaceNumber == itf && ((tusb_desc_interface_t const * )p_desc)->bAlternateSetting == alt) { -#if CFG_TUD_AUDIO_ENABLE_ENCODING || CFG_TUD_AUDIO_ENABLE_DECODING +#if (CFG_TUD_AUDIO_ENABLE_EP_IN && (CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL || CFG_TUD_AUDIO_ENABLE_ENCODING)) || (CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_DECODING) uint8_t const * p_desc_parse_for_params = p_desc; #endif // From this point forward follow the EP descriptors associated to the current alternate setting interface - Open EPs if necessary @@ -1694,7 +1755,7 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * if (tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT) { tusb_desc_endpoint_t const* desc_ep = (tusb_desc_endpoint_t const *) p_desc; -#if USE_ISO_EP_ALLOCATION +#ifdef TUP_DCD_EDPT_ISO_ALLOC TU_ASSERT(usbd_edpt_iso_activate(rhport, desc_ep)); #else TU_ASSERT(usbd_edpt_open(rhport, desc_ep)); @@ -1713,12 +1774,13 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * audio->ep_in_sz = tu_edpt_packet_size(desc_ep); // If software encoding is enabled, parse for the corresponding parameters - doing this here means only AS interfaces with EPs get scanned for parameters - #if CFG_TUD_AUDIO_ENABLE_ENCODING + #if CFG_TUD_AUDIO_ENABLE_ENCODING || CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL audiod_parse_for_AS_params(audio, p_desc_parse_for_params, p_desc_end, itf); // Reconfigure size of support FIFOs - this is necessary to avoid samples to get split in case of a wrap - #if CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING - const uint16_t active_fifo_depth = (uint16_t) ((audio->tx_supp_ff_sz_max / audio->n_bytes_per_sampe_tx) * audio->n_bytes_per_sampe_tx); + #if CFG_TUD_AUDIO_ENABLE_ENCODING && CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING + const uint16_t active_fifo_depth = (uint16_t) ((audio->tx_supp_ff_sz_max / (audio->n_channels_per_ff_tx * audio->n_bytes_per_sampe_tx)) + * (audio->n_channels_per_ff_tx * audio->n_bytes_per_sampe_tx)); for (uint8_t cnt = 0; cnt < audio->n_tx_supp_ff; cnt++) { tu_fifo_config(&audio->tx_supp_ff[cnt], audio->tx_supp_ff[cnt].buffer, active_fifo_depth, 1, true); @@ -1850,6 +1912,10 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * if (disable) usbd_sof_enable(rhport, false); #endif +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + audiod_calc_tx_packet_sz(audio); +#endif + tud_control_status(rhport, p_request); return true; @@ -1949,7 +2015,10 @@ static bool audiod_control_request(uint8_t rhport, tusb_control_request_t const case TUSB_REQ_SET_INTERFACE: return audiod_set_interface(rhport, p_request); - // Unknown/Unsupported request + case TUSB_REQ_CLEAR_FEATURE: + return true; + + // Unknown/Unsupported request default: TU_BREAKPOINT(); return false; } } @@ -2070,10 +2139,10 @@ bool audiod_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint3 { audiod_function_t* audio = &_audiod_fct[func_id]; -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP // Data transmission of control interrupt finished - if (audio->ep_int_ctr == ep_addr) + if (audio->ep_int == ep_addr) { // According to USB2 specification, maximum payload of interrupt EP is 8 bytes on low speed, 64 bytes on full speed, and 1024 bytes on high speed (but only if an alternate interface other than 0 is used - see specification p. 49) // In case there is nothing to send we have to return a NAK - this is taken care of by PHY ??? @@ -2082,7 +2151,8 @@ bool audiod_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint3 // I assume here, that things above are handled by PHY // All transmission is done - what remains to do is to inform job was completed - if (tud_audio_int_ctr_done_cb) TU_VERIFY(tud_audio_int_ctr_done_cb(rhport, (uint16_t) xferred_bytes)); + if (tud_audio_int_done_cb) tud_audio_int_done_cb(rhport); + return true; } #endif @@ -2292,6 +2362,19 @@ bool tud_audio_buffer_and_schedule_control_xfer(uint8_t rhport, tusb_control_req // Copy into buffer TU_VERIFY(0 == tu_memcpy_s(_audiod_fct[func_id].ctrl_buf, _audiod_fct[func_id].ctrl_buf_sz, data, (size_t)len)); +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + // Find data for sampling_frequency_control + if (p_request->bmRequestType_bit.type == TUSB_REQ_TYPE_CLASS && p_request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_INTERFACE) + { + uint8_t entityID = TU_U16_HIGH(p_request->wIndex); + uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue); + if (_audiod_fct[func_id].bclock_id_tx == entityID && ctrlSel == AUDIO_CS_CTRL_SAM_FREQ && p_request->bRequest == AUDIO_CS_REQ_CUR) + { + _audiod_fct[func_id].sample_rate_tx = tu_unaligned_read32(_audiod_fct[func_id].ctrl_buf); + } + } +#endif + // Schedule transmit return tud_control_xfer(rhport, p_request, (void*)_audiod_fct[func_id].ctrl_buf, len); } @@ -2431,7 +2514,7 @@ static bool audiod_verify_ep_exists(uint8_t ep, uint8_t *func_id) return false; } -#if CFG_TUD_AUDIO_ENABLE_ENCODING || CFG_TUD_AUDIO_ENABLE_DECODING +#if (CFG_TUD_AUDIO_ENABLE_EP_IN && (CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL || CFG_TUD_AUDIO_ENABLE_ENCODING)) || (CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_DECODING) // p_desc points to the AS interface of alternate setting zero // itf is the interface number of the corresponding interface - we check if the interface belongs to EP in or EP out to see if it is a TX or RX parameter // Currently, only AS interfaces with an EP (in or out) are supposed to be parsed for! @@ -2469,7 +2552,7 @@ static void audiod_parse_for_AS_params(audiod_function_t* audio, uint8_t const * } #endif -#if CFG_TUD_AUDIO_ENABLE_EP_OUT +#if CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_DECODING if (as_itf == audio->ep_out_as_intf_num) { audio->n_channels_rx = ((audio_desc_cs_as_interface_t const * )p_desc)->bNrChannels; @@ -2482,7 +2565,7 @@ static void audiod_parse_for_AS_params(audiod_function_t* audio, uint8_t const * } // Look for a Type I Format Type Descriptor(2.3.1.6 - Audio Formats) -#if CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING || CFG_TUD_AUDIO_ENABLE_TYPE_I_DECODING +#if CFG_TUD_AUDIO_ENABLE_TYPE_I_ENCODING || CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL || CFG_TUD_AUDIO_ENABLE_TYPE_I_DECODING if (tu_desc_type(p_desc) == TUSB_DESC_CS_INTERFACE && tu_desc_subtype(p_desc) == AUDIO_CS_AS_INTERFACE_FORMAT_TYPE && ((audio_desc_type_I_format_t const * )p_desc)->bFormatType == AUDIO_FORMAT_TYPE_I) { #if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_ENABLE_EP_OUT @@ -2502,7 +2585,7 @@ static void audiod_parse_for_AS_params(audiod_function_t* audio, uint8_t const * } #endif -#if CFG_TUD_AUDIO_ENABLE_EP_OUT +#if CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_DECODING if (as_itf == audio->ep_out_as_intf_num) { audio->n_bytes_per_sampe_rx = ((audio_desc_type_I_format_t const * )p_desc)->bSubslotSize; @@ -2518,6 +2601,96 @@ static void audiod_parse_for_AS_params(audiod_function_t* audio, uint8_t const * } #endif +#if CFG_TUD_AUDIO_ENABLE_EP_IN && CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL + +static bool audiod_calc_tx_packet_sz(audiod_function_t* audio) +{ + TU_VERIFY(audio->format_type_tx == AUDIO_FORMAT_TYPE_I); + TU_VERIFY(audio->n_channels_tx); + TU_VERIFY(audio->n_bytes_per_sampe_tx); + TU_VERIFY(audio->interval_tx); + TU_VERIFY(audio->sample_rate_tx); + + const uint8_t interval = (tud_speed_get() == TUSB_SPEED_FULL) ? audio->interval_tx : 1 << (audio->interval_tx - 1); + + const uint16_t sample_normimal = (uint16_t)(audio->sample_rate_tx * interval / ((tud_speed_get() == TUSB_SPEED_FULL) ? 1000 : 8000)); + const uint16_t sample_reminder = (uint16_t)(audio->sample_rate_tx * interval % ((tud_speed_get() == TUSB_SPEED_FULL) ? 1000 : 8000)); + + const uint16_t packet_sz_tx_min = (uint16_t)((sample_normimal - 1) * audio->n_channels_tx * audio->n_bytes_per_sampe_tx); + const uint16_t packet_sz_tx_norm = (uint16_t)(sample_normimal * audio->n_channels_tx * audio->n_bytes_per_sampe_tx); + const uint16_t packet_sz_tx_max = (uint16_t)((sample_normimal + 1) * audio->n_channels_tx * audio->n_bytes_per_sampe_tx); + + // Endpoint size must larger than packet size + TU_ASSERT(packet_sz_tx_max <= audio->ep_in_sz); + + // Frmt20.pdf 2.3.1.1 USB Packets + if (sample_reminder) + { + // All virtual frame packets must either contain INT(nav) audio slots (small VFP) or INT(nav)+1 (large VFP) audio slots + audio->packet_sz_tx[0] = packet_sz_tx_norm; + audio->packet_sz_tx[1] = packet_sz_tx_norm; + audio->packet_sz_tx[2] = packet_sz_tx_max; + } else + { + // In the case where nav = INT(nav), ni may vary between INT(nav)-1 (small VFP), INT(nav) + // (medium VFP) and INT(nav)+1 (large VFP). + audio->packet_sz_tx[0] = packet_sz_tx_min; + audio->packet_sz_tx[1] = packet_sz_tx_norm; + audio->packet_sz_tx[2] = packet_sz_tx_max; + } + + return true; +} + +static uint16_t audiod_tx_packet_size(const uint16_t* norminal_size, uint16_t data_count, uint16_t fifo_depth, uint16_t max_depth) +{ + // Flow control need a FIFO size of at least 4*Navg + if(norminal_size[1] && norminal_size[1] <= fifo_depth * 4) + { + // Use blackout to prioritize normal size packet + static int ctrl_blackout = 0; + uint16_t packet_size; + uint16_t slot_size = norminal_size[2] - norminal_size[1]; + if (data_count < norminal_size[0]) + { + // If you get here frequently, then your I2S clock deviation is too big ! + packet_size = 0; + } else + if (data_count < fifo_depth / 2 - slot_size && !ctrl_blackout) + { + packet_size = norminal_size[0]; + ctrl_blackout = 10; + } else + if (data_count > fifo_depth / 2 + slot_size && !ctrl_blackout) + { + packet_size = norminal_size[2]; + if(norminal_size[0] == norminal_size[1]) + { + // nav > INT(nav), eg. 44.1k, 88.2k + ctrl_blackout = 0; + } else + { + // nav = INT(nav), eg. 48k, 96k + ctrl_blackout = 10; + } + } else + { + packet_size = norminal_size[1]; + if (ctrl_blackout) + { + ctrl_blackout--; + } + } + // Normally this cap is not necessary + return tu_min16(packet_size, max_depth); + } else + { + return tu_min16(data_count, max_depth); + } +} + +#endif + #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP bool tud_audio_n_fb_set(uint8_t func_id, uint32_t feedback) diff --git a/src/class/audio/audio_device.h b/src/class/audio/audio_device.h index 7c88b99fc..b16514fd4 100644 --- a/src/class/audio/audio_device.h +++ b/src/class/audio/audio_device.h @@ -181,6 +181,11 @@ #endif #endif +// (For TYPE-I format only) Flow control is necessary to allow IN ep send correct amount of data, unless it's a virtual device where data is perfectly synchronized to USB clock. +#ifndef CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL +#define CFG_TUD_AUDIO_EP_IN_FLOW_CONTROL 1 +#endif + // Enable/disable feedback EP (required for asynchronous RX applications) #ifndef CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP #define CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP 0 // Feedback - 0 or 1 @@ -191,13 +196,9 @@ #define CFG_TUD_AUDIO_ENABLE_FEEDBACK_FORMAT_CORRECTION 0 // 0 or 1 #endif -// Audio interrupt control EP size - disabled if 0 -#ifndef CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN -#define CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN 0 // Audio interrupt control - if required - 6 Bytes according to UAC 2 specification (p. 74) -#endif - -#ifndef CFG_TUD_AUDIO_INT_CTR_EP_IN_SW_BUFFER_SIZE -#define CFG_TUD_AUDIO_INT_CTR_EP_IN_SW_BUFFER_SIZE 6 // Buffer size of audio control interrupt EP - 6 Bytes according to UAC 2 specification (p. 74) +// Enable/disable interrupt EP (required for notifying host of control changes) +#ifndef CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP +#define CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP 0 // Feedback - 0 or 1 #endif // Use software encoding/decoding @@ -388,10 +389,11 @@ uint16_t tud_audio_n_write_support_ff (uint8_t func_id, uint8_t ff_i tu_fifo_t* tud_audio_n_get_tx_support_ff (uint8_t func_id, uint8_t ff_idx); #endif -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN -uint16_t tud_audio_int_ctr_n_write (uint8_t func_id, uint8_t const* buffer, uint16_t len); +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP +bool tud_audio_int_n_write (uint8_t func_id, const audio_interrupt_data_t * data); #endif + //--------------------------------------------------------------------+ // Application API (Interface0) //--------------------------------------------------------------------+ @@ -431,8 +433,8 @@ static inline tu_fifo_t* tud_audio_get_tx_support_ff (uint8_t ff_idx); // INT CTR API -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN -static inline uint16_t tud_audio_int_ctr_write (uint8_t const* buffer, uint16_t len); +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP +static inline bool tud_audio_int_write (const audio_interrupt_data_t * data); #endif // Buffer control EP data and schedule a transmit @@ -531,8 +533,8 @@ TU_ATTR_WEAK TU_ATTR_FAST_FUNC void tud_audio_feedback_interval_isr(uint8_t func #endif // CFG_TUD_AUDIO_ENABLE_EP_OUT && CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN -TU_ATTR_WEAK bool tud_audio_int_ctr_done_cb(uint8_t rhport, uint16_t n_bytes_copied); +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP +TU_ATTR_WEAK void tud_audio_int_done_cb(uint8_t rhport); #endif // Invoked when audio set interface request received @@ -663,10 +665,10 @@ static inline tu_fifo_t* tud_audio_get_tx_support_ff(uint8_t ff_idx) #endif -#if CFG_TUD_AUDIO_INT_CTR_EPSIZE_IN -static inline uint16_t tud_audio_int_ctr_write(uint8_t const* buffer, uint16_t len) +#if CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP +static inline bool tud_audio_int_write(const audio_interrupt_data_t * data) { - return tud_audio_int_ctr_n_write(0, buffer, len); + return tud_audio_int_n_write(0, data); } #endif @@ -683,6 +685,7 @@ static inline bool tud_audio_fb_set(uint32_t feedback) // Internal Class Driver API //--------------------------------------------------------------------+ void audiod_init (void); +bool audiod_deinit (void); void audiod_reset (uint8_t rhport); uint16_t audiod_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool audiod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/bth/bth_device.c b/src/class/bth/bth_device.c index c5c74d26a..cbf6e1332 100755 --- a/src/class/bth/bth_device.c +++ b/src/class/bth/bth_device.c @@ -91,11 +91,14 @@ bool tud_bt_acl_data_send(void *event, uint16_t event_len) //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void btd_init(void) -{ +void btd_init(void) { tu_memclr(&_btd_itf, sizeof(_btd_itf)); } +bool btd_deinit(void) { + return true; +} + void btd_reset(uint8_t rhport) { (void)rhport; @@ -204,7 +207,9 @@ bool btd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t c request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_DEVICE) { // HCI command packet addressing for single function Primary Controllers - TU_VERIFY(request->bRequest == 0 && request->wValue == 0 && request->wIndex == 0); + // also compatible with historical mode if enabled + TU_VERIFY((request->bRequest == 0 && request->wValue == 0 && request->wIndex == 0) || + (CFG_TUD_BTH_HISTORICAL_COMPATIBLE && request->bRequest == 0xe0)); } else if (request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_INTERFACE) { diff --git a/src/class/bth/bth_device.h b/src/class/bth/bth_device.h index 921bd7a1a..4f6350839 100755 --- a/src/class/bth/bth_device.h +++ b/src/class/bth/bth_device.h @@ -36,10 +36,17 @@ #ifndef CFG_TUD_BTH_EVENT_EPSIZE #define CFG_TUD_BTH_EVENT_EPSIZE 16 #endif + #ifndef CFG_TUD_BTH_DATA_EPSIZE #define CFG_TUD_BTH_DATA_EPSIZE 64 #endif +// Allow BTH class to work in historically compatibility mode where the bRequest is always 0xe0. +// See Bluetooth Core v5.3, Vol. 4, Part B, Section 2.2 +#ifndef CFG_TUD_BTH_HISTORICAL_COMPATIBLE +#define CFG_TUD_BTH_HISTORICAL_COMPATIBLE 0 +#endif + typedef struct TU_ATTR_PACKED { uint16_t op_code; @@ -97,6 +104,7 @@ bool tud_bt_acl_data_send(void *acl_data, uint16_t data_len); // Internal Class Driver API //--------------------------------------------------------------------+ void btd_init (void); +bool btd_deinit (void); void btd_reset (uint8_t rhport); uint16_t btd_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool btd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const *request); diff --git a/src/class/cdc/cdc.h b/src/class/cdc/cdc.h index 4658e43af..5cbd658fe 100644 --- a/src/class/cdc/cdc.h +++ b/src/class/cdc/cdc.h @@ -136,8 +136,7 @@ typedef enum{ //--------------------------------------------------------------------+ /// Communication Interface Management Element Request Codes -typedef enum -{ +typedef enum { CDC_REQUEST_SEND_ENCAPSULATED_COMMAND = 0x00, ///< is used to issue a command in the format of the supported control protocol of the Communications Class interface CDC_REQUEST_GET_ENCAPSULATED_RESPONSE = 0x01, ///< is used to request a response in the format of the supported control protocol of the Communications Class interface. CDC_REQUEST_SET_COMM_FEATURE = 0x02, @@ -180,37 +179,38 @@ typedef enum CDC_REQUEST_GET_ATM_VC_STATISTICS = 0x53, CDC_REQUEST_MDLM_SEMANTIC_MODEL = 0x60, -}cdc_management_request_t; +} cdc_management_request_t; -enum -{ +typedef enum { CDC_CONTROL_LINE_STATE_DTR = 0x01, CDC_CONTROL_LINE_STATE_RTS = 0x02, -}; +} cdc_control_line_state_t; -enum -{ - CDC_LINE_CONDING_STOP_BITS_1 = 0, // 1 bit - CDC_LINE_CONDING_STOP_BITS_1_5 = 1, // 1.5 bits - CDC_LINE_CONDING_STOP_BITS_2 = 2, // 2 bits -}; +typedef enum { + CDC_LINE_CODING_STOP_BITS_1 = 0, // 1 bit + CDC_LINE_CODING_STOP_BITS_1_5 = 1, // 1.5 bits + CDC_LINE_CODING_STOP_BITS_2 = 2, // 2 bits +} cdc_line_coding_stopbits_t; -enum -{ +// TODO Backward compatible for typos. Maybe removed in the future release +#define CDC_LINE_CONDING_STOP_BITS_1 CDC_LINE_CODING_STOP_BITS_1 +#define CDC_LINE_CONDING_STOP_BITS_1_5 CDC_LINE_CODING_STOP_BITS_1_5 +#define CDC_LINE_CONDING_STOP_BITS_2 CDC_LINE_CODING_STOP_BITS_2 + +typedef enum { CDC_LINE_CODING_PARITY_NONE = 0, CDC_LINE_CODING_PARITY_ODD = 1, CDC_LINE_CODING_PARITY_EVEN = 2, CDC_LINE_CODING_PARITY_MARK = 3, CDC_LINE_CODING_PARITY_SPACE = 4, -}; +} cdc_line_coding_parity_t; //--------------------------------------------------------------------+ // Management Element Notification (Notification Endpoint) //--------------------------------------------------------------------+ /// 6.3 Notification Codes -typedef enum -{ +typedef enum { CDC_NOTIF_NETWORK_CONNECTION = 0x00, ///< This notification allows the device to notify the host about network connection status. CDC_NOTIF_RESPONSE_AVAILABLE = 0x01, ///< This notification allows the device to notify the hostthat a response is available. This response can be retrieved with a subsequent \ref CDC_REQUEST_GET_ENCAPSULATED_RESPONSE request. CDC_NOTIF_AUX_JACK_HOOK_STATE = 0x08, diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index f658df4d0..2e0a0c30d 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -33,13 +33,17 @@ #include "cdc_device.h" +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUD_CDC_LOG_LEVEL + #define CFG_TUD_CDC_LOG_LEVEL CFG_TUD_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUD_CDC_LOG_LEVEL, __VA_ARGS__) + //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ -enum -{ - BULK_PACKET_SIZE = (TUD_OPT_HIGH_SPEED ? 512 : 64) -}; +#define BULK_PACKET_SIZE (TUD_OPT_HIGH_SPEED ? 512 : 64) typedef struct { @@ -143,7 +147,7 @@ uint32_t tud_cdc_n_available(uint8_t itf) uint32_t tud_cdc_n_read(uint8_t itf, void* buffer, uint32_t bufsize) { cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - uint32_t num_read = tu_fifo_read_n(&p_cdc->rx_ff, buffer, (uint16_t) bufsize); + uint32_t num_read = tu_fifo_read_n(&p_cdc->rx_ff, buffer, (uint16_t) TU_MIN(bufsize, UINT16_MAX)); _prep_out_transaction(p_cdc); return num_read; } @@ -166,12 +170,14 @@ void tud_cdc_n_read_flush (uint8_t itf) uint32_t tud_cdc_n_write(uint8_t itf, void const* buffer, uint32_t bufsize) { cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - uint16_t ret = tu_fifo_write_n(&p_cdc->tx_ff, buffer, (uint16_t) bufsize); + uint16_t ret = tu_fifo_write_n(&p_cdc->tx_ff, buffer, (uint16_t) TU_MIN(bufsize, UINT16_MAX)); // flush if queue more than packet size - // may need to suppress -Wunreachable-code since most of the time CFG_TUD_CDC_TX_BUFSIZE < BULK_PACKET_SIZE - if ( (tu_fifo_count(&p_cdc->tx_ff) >= BULK_PACKET_SIZE) || ((CFG_TUD_CDC_TX_BUFSIZE < BULK_PACKET_SIZE) && tu_fifo_full(&p_cdc->tx_ff)) ) - { + if ( tu_fifo_count(&p_cdc->tx_ff) >= BULK_PACKET_SIZE + #if CFG_TUD_CDC_TX_BUFSIZE < BULK_PACKET_SIZE + || tu_fifo_full(&p_cdc->tx_ff) // check full if fifo size is less than packet size + #endif + ) { tud_cdc_n_write_flush(itf); } @@ -246,9 +252,37 @@ void cdcd_init(void) // In this way, the most current data is prioritized. tu_fifo_config(&p_cdc->tx_ff, p_cdc->tx_ff_buf, TU_ARRAY_SIZE(p_cdc->tx_ff_buf), 1, true); - tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, osal_mutex_create(&p_cdc->rx_ff_mutex)); - tu_fifo_config_mutex(&p_cdc->tx_ff, osal_mutex_create(&p_cdc->tx_ff_mutex), NULL); + #if OSAL_MUTEX_REQUIRED + osal_mutex_t mutex_rd = osal_mutex_create(&p_cdc->rx_ff_mutex); + osal_mutex_t mutex_wr = osal_mutex_create(&p_cdc->tx_ff_mutex); + TU_ASSERT(mutex_rd != NULL && mutex_wr != NULL, ); + + tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, mutex_rd); + tu_fifo_config_mutex(&p_cdc->tx_ff, mutex_wr, NULL); + #endif + } +} + +bool cdcd_deinit(void) { + #if OSAL_MUTEX_REQUIRED + for(uint8_t i=0; i<CFG_TUD_CDC; i++) { + cdcd_interface_t* p_cdc = &_cdcd_itf[i]; + osal_mutex_t mutex_rd = p_cdc->rx_ff.mutex_rd; + osal_mutex_t mutex_wr = p_cdc->tx_ff.mutex_wr; + + if (mutex_rd) { + osal_mutex_delete(mutex_rd); + tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, NULL); + } + + if (mutex_wr) { + osal_mutex_delete(mutex_wr); + tu_fifo_config_mutex(&p_cdc->tx_ff, NULL, NULL); + } } + #endif + + return true; } void cdcd_reset(uint8_t rhport) @@ -353,7 +387,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t case CDC_REQUEST_SET_LINE_CODING: if (stage == CONTROL_STAGE_SETUP) { - TU_LOG2(" Set Line Coding\r\n"); + TU_LOG_DRV(" Set Line Coding\r\n"); tud_control_xfer(rhport, request, &p_cdc->line_coding, sizeof(cdc_line_coding_t)); } else if ( stage == CONTROL_STAGE_ACK) @@ -365,7 +399,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t case CDC_REQUEST_GET_LINE_CODING: if (stage == CONTROL_STAGE_SETUP) { - TU_LOG2(" Get Line Coding\r\n"); + TU_LOG_DRV(" Get Line Coding\r\n"); tud_control_xfer(rhport, request, &p_cdc->line_coding, sizeof(cdc_line_coding_t)); } break; @@ -390,7 +424,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t // Disable fifo overwriting if DTR bit is set tu_fifo_set_overwritable(&p_cdc->tx_ff, !dtr); - TU_LOG2(" Set Control Line State: DTR = %d, RTS = %d\r\n", dtr, rts); + TU_LOG_DRV(" Set Control Line State: DTR = %d, RTS = %d\r\n", dtr, rts); // Invoke callback if ( tud_cdc_line_state_cb ) tud_cdc_line_state_cb(itf, dtr, rts); @@ -403,7 +437,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t } else if (stage == CONTROL_STAGE_ACK) { - TU_LOG2(" Send Break\r\n"); + TU_LOG_DRV(" Send Break\r\n"); if ( tud_cdc_send_break_cb ) tud_cdc_send_break_cb(itf, request->wValue); } break; diff --git a/src/class/cdc/cdc_device.h b/src/class/cdc/cdc_device.h index a6e07aa5c..20e908451 100644 --- a/src/class/cdc/cdc_device.h +++ b/src/class/cdc/cdc_device.h @@ -247,6 +247,7 @@ static inline bool tud_cdc_write_clear(void) // INTERNAL USBD-CLASS DRIVER API //--------------------------------------------------------------------+ void cdcd_init (void); +bool cdcd_deinit (void); void cdcd_reset (uint8_t rhport); uint16_t cdcd_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool cdcd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index ce9f27c33..133a10f6e 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -22,6 +22,9 @@ * THE SOFTWARE. * * This file is part of the TinyUSB stack. + * + * Contribution + * - Heiko Kuester: CH34x support */ #include "tusb_option.h" @@ -29,13 +32,16 @@ #if (CFG_TUH_ENABLED && CFG_TUH_CDC) #include "host/usbh.h" -#include "host/usbh_classdriver.h" +#include "host/usbh_pvt.h" #include "cdc_host.h" -// Debug level, TUSB_CFG_DEBUG must be at least this level for debug message -#define CDCH_DEBUG 2 -#define TU_LOG_DRV(...) TU_LOG(CDCH_DEBUG, __VA_ARGS__) +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUH_CDC_LOG_LEVEL + #define CFG_TUH_CDC_LOG_LEVEL CFG_TUH_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUH_CDC_LOG_LEVEL, __VA_ARGS__) //--------------------------------------------------------------------+ // Host CDC Interface @@ -47,12 +53,18 @@ typedef struct { uint8_t bInterfaceSubClass; uint8_t bInterfaceProtocol; + uint8_t ep_notif; uint8_t serial_drid; // Serial Driver ID + bool mounted; // Enumeration is complete cdc_acm_capability_t acm_capability; - uint8_t ep_notif; - uint8_t line_state; // DTR (bit0), RTS (bit1) TU_ATTR_ALIGNED(4) cdc_line_coding_t line_coding; // Baudrate, stop bits, parity, data width + uint8_t line_state; // DTR (bit0), RTS (bit1) + + #if CFG_TUH_CDC_FTDI || CFG_TUH_CDC_CP210X || CFG_TUH_CDC_CH34X + cdc_line_coding_t requested_line_coding; + // 1 byte padding + #endif tuh_xfer_cb_t user_control_cb; @@ -66,7 +78,6 @@ typedef struct { uint8_t rx_ff_buf[CFG_TUH_CDC_TX_BUFSIZE]; CFG_TUH_MEM_ALIGN uint8_t rx_ep_buf[CFG_TUH_CDC_TX_EPSIZE]; } stream; - } cdch_interface_t; CFG_TUH_MEM_SECTION @@ -77,47 +88,60 @@ static cdch_interface_t cdch_data[CFG_TUH_CDC]; //--------------------------------------------------------------------+ //------------- ACM prototypes -------------// +static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); static void acm_process_config(tuh_xfer_t* xfer); +static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool acm_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); static bool acm_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); static bool acm_set_control_line_state(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); //------------- FTDI prototypes -------------// #if CFG_TUH_CDC_FTDI #include "serial/ftdi_sio.h" -static uint16_t const ftdi_pids[] = { TU_FTDI_PID_LIST }; -enum { - FTDI_PID_COUNT = sizeof(ftdi_pids) / sizeof(ftdi_pids[0]) -}; - -// Store last request baudrate since divisor to baudrate is not easy -static uint32_t _ftdi_requested_baud; +static uint16_t const ftdi_vid_pid_list[][2] = {CFG_TUH_CDC_FTDI_VID_PID_LIST}; static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); static void ftdi_process_config(tuh_xfer_t* xfer); -static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); #endif //------------- CP210X prototypes -------------// #if CFG_TUH_CDC_CP210X #include "serial/cp210x.h" -static uint16_t const cp210x_pids[] = { TU_CP210X_PID_LIST }; -enum { - CP210X_PID_COUNT = sizeof(cp210x_pids) / sizeof(cp210x_pids[0]) -}; +static uint16_t const cp210x_vid_pid_list[][2] = {CFG_TUH_CDC_CP210X_VID_PID_LIST}; static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); static void cp210x_process_config(tuh_xfer_t* xfer); -static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); static bool cp210x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +#endif + +//------------- CH34x prototypes -------------// +#if CFG_TUH_CDC_CH34X +#include "serial/ch34x.h" + +static uint16_t const ch34x_vid_pid_list[][2] = {CFG_TUH_CDC_CH34X_VID_PID_LIST}; + +static bool ch34x_open(uint8_t daddr, tusb_desc_interface_t const* itf_desc, uint16_t max_len); +static void ch34x_process_config(tuh_xfer_t* xfer); + +static bool ch34x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); #endif +//------------- Common -------------// enum { SERIAL_DRIVER_ACM = 0, @@ -128,60 +152,96 @@ enum { #if CFG_TUH_CDC_CP210X SERIAL_DRIVER_CP210X, #endif + +#if CFG_TUH_CDC_CH34X + SERIAL_DRIVER_CH34X, +#endif + + SERIAL_DRIVER_COUNT }; typedef struct { + uint16_t const (*vid_pid_list)[2]; + uint16_t const vid_pid_count; + bool (*const open)(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); void (*const process_set_config)(tuh_xfer_t* xfer); bool (*const set_control_line_state)(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); bool (*const set_baudrate)(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + bool (*const set_data_format)(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + bool (*const set_line_coding)(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); } cdch_serial_driver_t; // Note driver list must be in the same order as SERIAL_DRIVER enum static const cdch_serial_driver_t serial_drivers[] = { - { .process_set_config = acm_process_config, - .set_control_line_state = acm_set_control_line_state, - .set_baudrate = acm_set_baudrate + { + .vid_pid_list = NULL, + .vid_pid_count = 0, + .open = acm_open, + .process_set_config = acm_process_config, + .set_control_line_state = acm_set_control_line_state, + .set_baudrate = acm_set_baudrate, + .set_data_format = acm_set_data_format, + .set_line_coding = acm_set_line_coding }, #if CFG_TUH_CDC_FTDI - { .process_set_config = ftdi_process_config, - .set_control_line_state = ftdi_sio_set_modem_ctrl, - .set_baudrate = ftdi_sio_set_baudrate + { + .vid_pid_list = ftdi_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(ftdi_vid_pid_list), + .open = ftdi_open, + .process_set_config = ftdi_process_config, + .set_control_line_state = ftdi_sio_set_modem_ctrl, + .set_baudrate = ftdi_sio_set_baudrate, + .set_data_format = ftdi_set_data_format, + .set_line_coding = ftdi_set_line_coding }, #endif #if CFG_TUH_CDC_CP210X - { .process_set_config = cp210x_process_config, - .set_control_line_state = cp210x_set_modem_ctrl, - .set_baudrate = cp210x_set_baudrate + { + .vid_pid_list = cp210x_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(cp210x_vid_pid_list), + .open = cp210x_open, + .process_set_config = cp210x_process_config, + .set_control_line_state = cp210x_set_modem_ctrl, + .set_baudrate = cp210x_set_baudrate, + .set_data_format = cp210x_set_data_format, + .set_line_coding = cp210x_set_line_coding }, #endif -}; -enum { - SERIAL_DRIVER_COUNT = sizeof(serial_drivers) / sizeof(serial_drivers[0]) + #if CFG_TUH_CDC_CH34X + { + .vid_pid_list = ch34x_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(ch34x_vid_pid_list), + .open = ch34x_open, + .process_set_config = ch34x_process_config, + .set_control_line_state = ch34x_set_modem_ctrl, + .set_baudrate = ch34x_set_baudrate, + .set_data_format = ch34x_set_data_format, + .set_line_coding = ch34x_set_line_coding + }, + #endif }; +TU_VERIFY_STATIC(TU_ARRAY_SIZE(serial_drivers) == SERIAL_DRIVER_COUNT, "Serial driver count mismatch"); + //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ -static inline cdch_interface_t* get_itf(uint8_t idx) -{ +static inline cdch_interface_t* get_itf(uint8_t idx) { TU_ASSERT(idx < CFG_TUH_CDC, NULL); cdch_interface_t* p_cdc = &cdch_data[idx]; return (p_cdc->daddr != 0) ? p_cdc : NULL; } -static inline uint8_t get_idx_by_ep_addr(uint8_t daddr, uint8_t ep_addr) -{ - for(uint8_t i=0; i<CFG_TUH_CDC; i++) - { +static inline uint8_t get_idx_by_ep_addr(uint8_t daddr, uint8_t ep_addr) { + for(uint8_t i=0; i<CFG_TUH_CDC; i++) { cdch_interface_t* p_cdc = &cdch_data[i]; if ( (p_cdc->daddr == daddr) && - (ep_addr == p_cdc->ep_notif || ep_addr == p_cdc->stream.rx.ep_addr || ep_addr == p_cdc->stream.tx.ep_addr)) - { + (ep_addr == p_cdc->ep_notif || ep_addr == p_cdc->stream.rx.ep_addr || ep_addr == p_cdc->stream.tx.ep_addr)) { return i; } } @@ -189,14 +249,10 @@ static inline uint8_t get_idx_by_ep_addr(uint8_t daddr, uint8_t ep_addr) return TUSB_INDEX_INVALID_8; } - -static cdch_interface_t* make_new_itf(uint8_t daddr, tusb_desc_interface_t const *itf_desc) -{ - for(uint8_t i=0; i<CFG_TUH_CDC; i++) - { +static cdch_interface_t* make_new_itf(uint8_t daddr, tusb_desc_interface_t const *itf_desc) { + for(uint8_t i=0; i<CFG_TUH_CDC; i++) { if (cdch_data[i].daddr == 0) { cdch_interface_t* p_cdc = &cdch_data[i]; - p_cdc->daddr = daddr; p_cdc->bInterfaceNumber = itf_desc->bInterfaceNumber; p_cdc->bInterfaceSubClass = itf_desc->bInterfaceSubClass; @@ -217,20 +273,16 @@ static void cdch_internal_control_complete(tuh_xfer_t* xfer); // APPLICATION API //--------------------------------------------------------------------+ -uint8_t tuh_cdc_itf_get_index(uint8_t daddr, uint8_t itf_num) -{ - for(uint8_t i=0; i<CFG_TUH_CDC; i++) - { +uint8_t tuh_cdc_itf_get_index(uint8_t daddr, uint8_t itf_num) { + for (uint8_t i = 0; i < CFG_TUH_CDC; i++) { const cdch_interface_t* p_cdc = &cdch_data[i]; - if (p_cdc->daddr == daddr && p_cdc->bInterfaceNumber == itf_num) return i; } return TUSB_INDEX_INVALID_8; } -bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info) -{ +bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc && info); @@ -252,30 +304,27 @@ bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info) return true; } -bool tuh_cdc_mounted(uint8_t idx) -{ +bool tuh_cdc_mounted(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); - return p_cdc != NULL; + TU_VERIFY(p_cdc); + return p_cdc->mounted; } -bool tuh_cdc_get_dtr(uint8_t idx) -{ +bool tuh_cdc_get_dtr(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return (p_cdc->line_state & CDC_CONTROL_LINE_STATE_DTR) ? true : false; } -bool tuh_cdc_get_rts(uint8_t idx) -{ +bool tuh_cdc_get_rts(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return (p_cdc->line_state & CDC_CONTROL_LINE_STATE_RTS) ? true : false; } -bool tuh_cdc_get_local_line_coding(uint8_t idx, cdc_line_coding_t* line_coding) -{ +bool tuh_cdc_get_local_line_coding(uint8_t idx, cdc_line_coding_t* line_coding) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); @@ -288,32 +337,28 @@ bool tuh_cdc_get_local_line_coding(uint8_t idx, cdc_line_coding_t* line_coding) // Write //--------------------------------------------------------------------+ -uint32_t tuh_cdc_write(uint8_t idx, void const* buffer, uint32_t bufsize) -{ +uint32_t tuh_cdc_write(uint8_t idx, void const* buffer, uint32_t bufsize) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_write(&p_cdc->stream.tx, buffer, bufsize); } -uint32_t tuh_cdc_write_flush(uint8_t idx) -{ +uint32_t tuh_cdc_write_flush(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_write_xfer(&p_cdc->stream.tx); } -bool tuh_cdc_write_clear(uint8_t idx) -{ +bool tuh_cdc_write_clear(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_clear(&p_cdc->stream.tx); } -uint32_t tuh_cdc_write_available(uint8_t idx) -{ +uint32_t tuh_cdc_write_available(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); @@ -324,32 +369,28 @@ uint32_t tuh_cdc_write_available(uint8_t idx) // Read //--------------------------------------------------------------------+ -uint32_t tuh_cdc_read (uint8_t idx, void* buffer, uint32_t bufsize) -{ +uint32_t tuh_cdc_read (uint8_t idx, void* buffer, uint32_t bufsize) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_read(&p_cdc->stream.rx, buffer, bufsize); } -uint32_t tuh_cdc_read_available(uint8_t idx) -{ +uint32_t tuh_cdc_read_available(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_read_available(&p_cdc->stream.rx); } -bool tuh_cdc_peek(uint8_t idx, uint8_t* ch) -{ +bool tuh_cdc_peek(uint8_t idx, uint8_t* ch) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_peek(&p_cdc->stream.rx, ch); } -bool tuh_cdc_read_clear (uint8_t idx) -{ +bool tuh_cdc_read_clear (uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); @@ -362,28 +403,25 @@ bool tuh_cdc_read_clear (uint8_t idx) // Control Endpoint API //--------------------------------------------------------------------+ -// internal control complete to update state such as line state, encoding -static void cdch_internal_control_complete(tuh_xfer_t* xfer) -{ - uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); +static void process_internal_control_complete(tuh_xfer_t* xfer, uint8_t itf_num) { uint8_t idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); cdch_interface_t* p_cdc = get_itf(idx); TU_ASSERT(p_cdc, ); + uint16_t const value = tu_le16toh(xfer->setup->wValue); - if (xfer->result == XFER_RESULT_SUCCESS) - { + if (xfer->result == XFER_RESULT_SUCCESS) { switch (p_cdc->serial_drid) { case SERIAL_DRIVER_ACM: switch (xfer->setup->bRequest) { case CDC_REQUEST_SET_CONTROL_LINE_STATE: - p_cdc->line_state = (uint8_t) tu_le16toh(xfer->setup->wValue); + p_cdc->line_state = (uint8_t) value; break; case CDC_REQUEST_SET_LINE_CODING: { uint16_t const len = tu_min16(sizeof(cdc_line_coding_t), tu_le16toh(xfer->setup->wLength)); memcpy(&p_cdc->line_coding, xfer->buffer, len); - } break; + } default: break; } @@ -393,12 +431,11 @@ static void cdch_internal_control_complete(tuh_xfer_t* xfer) case SERIAL_DRIVER_FTDI: switch (xfer->setup->bRequest) { case FTDI_SIO_MODEM_CTRL: - p_cdc->line_state = (uint8_t) (tu_le16toh(xfer->setup->wValue) & 0x00ff); + p_cdc->line_state = (uint8_t) value; break; case FTDI_SIO_SET_BAUD_RATE: - // convert from divisor to baudrate is not supported - p_cdc->line_coding.bit_rate = _ftdi_requested_baud; + p_cdc->line_coding.bit_rate = p_cdc->requested_line_coding.bit_rate; break; default: break; @@ -410,15 +447,61 @@ static void cdch_internal_control_complete(tuh_xfer_t* xfer) case SERIAL_DRIVER_CP210X: switch(xfer->setup->bRequest) { case CP210X_SET_MHS: - p_cdc->line_state = (uint8_t) (tu_le16toh(xfer->setup->wValue) & 0x00ff); + p_cdc->line_state = (uint8_t) value; break; case CP210X_SET_BAUDRATE: { uint32_t baudrate; memcpy(&baudrate, xfer->buffer, sizeof(uint32_t)); p_cdc->line_coding.bit_rate = tu_le32toh(baudrate); + break; } + + default: break; + } + break; + #endif + + #if CFG_TUH_CDC_CH34X + case SERIAL_DRIVER_CH34X: + switch (xfer->setup->bRequest) { + case CH34X_REQ_WRITE_REG: + // register write request + switch (value) { + case CH34X_REG16_DIVISOR_PRESCALER: + // baudrate + p_cdc->line_coding.bit_rate = p_cdc->requested_line_coding.bit_rate; + break; + + case CH32X_REG16_LCR2_LCR: + // data format + p_cdc->line_coding.stop_bits = p_cdc->requested_line_coding.stop_bits; + p_cdc->line_coding.parity = p_cdc->requested_line_coding.parity; + p_cdc->line_coding.data_bits = p_cdc->requested_line_coding.data_bits; + break; + + default: break; + } + break; + + case CH34X_REQ_MODEM_CTRL: { + // set modem controls RTS/DTR request. Note: signals are inverted + uint16_t const modem_signal = ~value; + if (modem_signal & CH34X_BIT_RTS) { + p_cdc->line_state |= CDC_CONTROL_LINE_STATE_RTS; + } else { + p_cdc->line_state &= (uint8_t) ~CDC_CONTROL_LINE_STATE_RTS; + } + + if (modem_signal & CH34X_BIT_DTR) { + p_cdc->line_state |= CDC_CONTROL_LINE_STATE_DTR; + } else { + p_cdc->line_state &= (uint8_t) ~CDC_CONTROL_LINE_STATE_DTR; + } break; + } + + default: break; } break; #endif @@ -433,14 +516,20 @@ static void cdch_internal_control_complete(tuh_xfer_t* xfer) } } +// internal control complete to update state such as line state, encoding +static void cdch_internal_control_complete(tuh_xfer_t* xfer) { + uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); + process_internal_control_complete(xfer, itf_num); +} + bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - if ( complete_cb ) { + if (complete_cb) { return driver->set_control_line_state(p_cdc, line_state, complete_cb, user_data); - }else { + } else { // blocking xfer_result_t result = XFER_RESULT_INVALID; bool ret = driver->set_control_line_state(p_cdc, line_state, complete_cb, (uintptr_t) &result); @@ -451,7 +540,6 @@ bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_c } TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); - p_cdc->line_state = (uint8_t) line_state; return true; } @@ -462,9 +550,9 @@ bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - if ( complete_cb ) { + if (complete_cb) { return driver->set_baudrate(p_cdc, baudrate, complete_cb, user_data); - }else { + } else { // blocking xfer_result_t result = XFER_RESULT_INVALID; bool ret = driver->set_baudrate(p_cdc, baudrate, complete_cb, (uintptr_t) &result); @@ -475,25 +563,23 @@ bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete } TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); - p_cdc->line_coding.bit_rate = baudrate; return true; } } -bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +bool tuh_cdc_set_data_format(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { cdch_interface_t* p_cdc = get_itf(idx); - // only ACM support this set line coding request - TU_VERIFY(p_cdc && p_cdc->serial_drid == SERIAL_DRIVER_ACM); - TU_VERIFY(p_cdc->acm_capability.support_line_request); + TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - if ( complete_cb ) { - return acm_set_line_coding(p_cdc, line_coding, complete_cb, user_data); - }else { + if (complete_cb) { + return driver->set_data_format(p_cdc, stop_bits, parity, data_bits, complete_cb, user_data); + } else { // blocking xfer_result_t result = XFER_RESULT_INVALID; - bool ret = acm_set_line_coding(p_cdc, line_coding, complete_cb, (uintptr_t) &result); + bool ret = driver->set_data_format(p_cdc, stop_bits, parity, data_bits, complete_cb, (uintptr_t) &result); if (user_data) { // user_data is not NULL, return result via user_data @@ -501,7 +587,31 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, } TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.stop_bits = stop_bits; + p_cdc->line_coding.parity = parity; + p_cdc->line_coding.data_bits = data_bits; + return true; + } +} + +bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + cdch_interface_t* p_cdc = get_itf(idx); + TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; + + if ( complete_cb ) { + return driver->set_line_coding(p_cdc, line_coding, complete_cb, user_data); + } else { + // blocking + xfer_result_t result = XFER_RESULT_INVALID; + bool ret = driver->set_line_coding(p_cdc, line_coding, complete_cb, (uintptr_t) &result); + if (user_data) { + // user_data is not NULL, return result via user_data + *((xfer_result_t*) user_data) = result; + } + + TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); p_cdc->line_coding = *line_coding; return true; } @@ -511,39 +621,44 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, // CLASS-USBH API //--------------------------------------------------------------------+ -void cdch_init(void) -{ +bool cdch_init(void) { + TU_LOG_DRV("sizeof(cdch_interface_t) = %u\r\n", sizeof(cdch_interface_t)); tu_memclr(cdch_data, sizeof(cdch_data)); - - for(size_t i=0; i<CFG_TUH_CDC; i++) - { + for (size_t i = 0; i < CFG_TUH_CDC; i++) { cdch_interface_t* p_cdc = &cdch_data[i]; - tu_edpt_stream_init(&p_cdc->stream.tx, true, true, false, - p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, - p_cdc->stream.tx_ep_buf, CFG_TUH_CDC_TX_EPSIZE); + p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, + p_cdc->stream.tx_ep_buf, CFG_TUH_CDC_TX_EPSIZE); tu_edpt_stream_init(&p_cdc->stream.rx, true, false, false, - p_cdc->stream.rx_ff_buf, CFG_TUH_CDC_RX_BUFSIZE, - p_cdc->stream.rx_ep_buf, CFG_TUH_CDC_RX_EPSIZE); + p_cdc->stream.rx_ff_buf, CFG_TUH_CDC_RX_BUFSIZE, + p_cdc->stream.rx_ep_buf, CFG_TUH_CDC_RX_EPSIZE); } + + return true; } -void cdch_close(uint8_t daddr) -{ - for(uint8_t idx=0; idx<CFG_TUH_CDC; idx++) - { +bool cdch_deinit(void) { + for (size_t i = 0; i < CFG_TUH_CDC; i++) { + cdch_interface_t* p_cdc = &cdch_data[i]; + tu_edpt_stream_deinit(&p_cdc->stream.tx); + tu_edpt_stream_deinit(&p_cdc->stream.rx); + } + return true; +} + +void cdch_close(uint8_t daddr) { + for (uint8_t idx = 0; idx < CFG_TUH_CDC; idx++) { cdch_interface_t* p_cdc = &cdch_data[idx]; - if (p_cdc->daddr == daddr) - { + if (p_cdc->daddr == daddr) { TU_LOG_DRV(" CDCh close addr = %u index = %u\r\n", daddr, idx); // Invoke application callback if (tuh_cdc_umount_cb) tuh_cdc_umount_cb(idx); - //tu_memclr(p_cdc, sizeof(cdch_interface_t)); p_cdc->daddr = 0; p_cdc->bInterfaceNumber = 0; + p_cdc->mounted = false; tu_edpt_stream_close(&p_cdc->stream.tx); tu_edpt_stream_close(&p_cdc->stream.rx); } @@ -567,16 +682,11 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t // - xferred_bytes is multiple of EP Packet size and not zero tu_edpt_stream_write_zlp_if_needed(&p_cdc->stream.tx, xferred_bytes); } - } - else if ( ep_addr == p_cdc->stream.rx.ep_addr ) { + } else if ( ep_addr == p_cdc->stream.rx.ep_addr ) { #if CFG_TUH_CDC_FTDI if (p_cdc->serial_drid == SERIAL_DRIVER_FTDI) { // FTDI reserve 2 bytes for status - // FTDI status -// uint8_t status[2] = { -// p_cdc->stream.rx.ep_buf[0], -// p_cdc->stream.rx.ep_buf[1] -// }; + // uint8_t status[2] = {p_cdc->stream.rx.ep_buf[0], p_cdc->stream.rx.ep_buf[1]}; tu_edpt_stream_read_xfer_complete_offset(&p_cdc->stream.rx, xferred_bytes, 2); }else #endif @@ -602,22 +712,15 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t // Enumeration //--------------------------------------------------------------------+ -static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); - -static bool open_ep_stream_pair(cdch_interface_t* p_cdc, tusb_desc_endpoint_t const *desc_ep) -{ - for(size_t i=0; i<2; i++) - { +static bool open_ep_stream_pair(cdch_interface_t* p_cdc, tusb_desc_endpoint_t const* desc_ep) { + for (size_t i = 0; i < 2; i++) { TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType && - TUSB_XFER_BULK == desc_ep->bmAttributes.xfer); - + TUSB_XFER_BULK == desc_ep->bmAttributes.xfer); TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); - if ( tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN ) - { + if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_open(&p_cdc->stream.rx, p_cdc->daddr, desc_ep); - }else - { + } else { tu_edpt_stream_open(&p_cdc->stream.tx, p_cdc->daddr, desc_ep); } @@ -627,49 +730,36 @@ static bool open_ep_stream_pair(cdch_interface_t* p_cdc, tusb_desc_endpoint_t co return true; } -bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) -{ +bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { (void) rhport; - // Only support ACM subclass + // For CDC: only support ACM subclass // Note: Protocol 0xFF can be RNDIS device - if ( TUSB_CLASS_CDC == itf_desc->bInterfaceClass && - CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == itf_desc->bInterfaceSubClass) - { + if (TUSB_CLASS_CDC == itf_desc->bInterfaceClass && + CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == itf_desc->bInterfaceSubClass) { return acm_open(daddr, itf_desc, max_len); } - #if CFG_TUH_CDC_FTDI || CFG_TUH_CDC_CP210X - else if ( 0xff == itf_desc->bInterfaceClass ) - { + else if (SERIAL_DRIVER_COUNT > 1 && + TUSB_CLASS_VENDOR_SPECIFIC == itf_desc->bInterfaceClass) { uint16_t vid, pid; TU_VERIFY(tuh_vid_pid_get(daddr, &vid, &pid)); - #if CFG_TUH_CDC_FTDI - if (TU_FTDI_VID == vid) { - for (size_t i = 0; i < FTDI_PID_COUNT; i++) { - if (ftdi_pids[i] == pid) { - return ftdi_open(daddr, itf_desc, max_len); - } - } - } - #endif - - #if CFG_TUH_CDC_CP210X - if (TU_CP210X_VID == vid) { - for (size_t i = 0; i < CP210X_PID_COUNT; i++) { - if (cp210x_pids[i] == pid) { - return cp210x_open(daddr, itf_desc, max_len); + for (size_t dr = 1; dr < SERIAL_DRIVER_COUNT; dr++) { + cdch_serial_driver_t const* driver = &serial_drivers[dr]; + for (size_t i = 0; i < driver->vid_pid_count; i++) { + if (driver->vid_pid_list[i][0] == vid && driver->vid_pid_list[i][1] == pid) { + return driver->open(daddr, itf_desc, max_len); } } } - #endif } - #endif return false; } static void set_config_complete(cdch_interface_t * p_cdc, uint8_t idx, uint8_t itf_num) { + TU_LOG_DRV("CDCh Set Configure complete\r\n"); + p_cdc->mounted = true; if (tuh_cdc_mount_cb) tuh_cdc_mount_cb(idx); // Prepare for incoming data @@ -679,9 +769,7 @@ static void set_config_complete(cdch_interface_t * p_cdc, uint8_t idx, uint8_t i usbh_driver_set_config_complete(p_cdc->daddr, itf_num); } - -bool cdch_set_config(uint8_t daddr, uint8_t itf_num) -{ +bool cdch_set_config(uint8_t daddr, uint8_t itf_num) { tusb_control_request_t request; request.wIndex = tu_htole16((uint16_t) itf_num); @@ -710,94 +798,84 @@ enum { CONFIG_ACM_COMPLETE, }; -static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) -{ - uint8_t const * p_desc_end = ((uint8_t const*) itf_desc) + max_len; +static bool acm_open(uint8_t daddr, tusb_desc_interface_t const* itf_desc, uint16_t max_len) { + uint8_t const* p_desc_end = ((uint8_t const*) itf_desc) + max_len; - cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc); + cdch_interface_t* p_cdc = make_new_itf(daddr, itf_desc); TU_VERIFY(p_cdc); - p_cdc->serial_drid = SERIAL_DRIVER_ACM; //------------- Control Interface -------------// - uint8_t const * p_desc = tu_desc_next(itf_desc); + uint8_t const* p_desc = tu_desc_next(itf_desc); // Communication Functional Descriptors - while( (p_desc < p_desc_end) && (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc)) ) - { - if ( CDC_FUNC_DESC_ABSTRACT_CONTROL_MANAGEMENT == cdc_functional_desc_typeof(p_desc) ) - { + while ((p_desc < p_desc_end) && (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc))) { + if (CDC_FUNC_DESC_ABSTRACT_CONTROL_MANAGEMENT == cdc_functional_desc_typeof(p_desc)) { // save ACM bmCapabilities - p_cdc->acm_capability = ((cdc_desc_func_acm_t const *) p_desc)->bmCapabilities; + p_cdc->acm_capability = ((cdc_desc_func_acm_t const*) p_desc)->bmCapabilities; } p_desc = tu_desc_next(p_desc); } // Open notification endpoint of control interface if any - if (itf_desc->bNumEndpoints == 1) - { + if (itf_desc->bNumEndpoints == 1) { TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(p_desc)); - tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) p_desc; + tusb_desc_endpoint_t const* desc_ep = (tusb_desc_endpoint_t const*) p_desc; - TU_ASSERT( tuh_edpt_open(daddr, desc_ep) ); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); p_cdc->ep_notif = desc_ep->bEndpointAddress; p_desc = tu_desc_next(p_desc); } //------------- Data Interface (if any) -------------// - if ( (TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && - (TUSB_CLASS_CDC_DATA == ((tusb_desc_interface_t const *) p_desc)->bInterfaceClass) ) - { + if ((TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && + (TUSB_CLASS_CDC_DATA == ((tusb_desc_interface_t const*) p_desc)->bInterfaceClass)) { // next to endpoint descriptor p_desc = tu_desc_next(p_desc); // data endpoints expected to be in pairs - TU_ASSERT(open_ep_stream_pair(p_cdc, (tusb_desc_endpoint_t const *) p_desc)); + TU_ASSERT(open_ep_stream_pair(p_cdc, (tusb_desc_endpoint_t const*) p_desc)); } return true; } -static void acm_process_config(tuh_xfer_t* xfer) -{ +static void acm_process_config(tuh_xfer_t* xfer) { uintptr_t const state = xfer->user_data; uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); - cdch_interface_t * p_cdc = get_itf(idx); - TU_ASSERT(p_cdc, ); + cdch_interface_t* p_cdc = get_itf(idx); + TU_ASSERT(p_cdc,); - switch(state) - { + switch (state) { case CONFIG_ACM_SET_CONTROL_LINE_STATE: #if CFG_TUH_CDC_LINE_CONTROL_ON_ENUM - if (p_cdc->acm_capability.support_line_request) - { - TU_ASSERT(acm_set_control_line_state(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, acm_process_config, - CONFIG_ACM_SET_LINE_CODING), ); + if (p_cdc->acm_capability.support_line_request) { + TU_ASSERT(acm_set_control_line_state(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, acm_process_config, CONFIG_ACM_SET_LINE_CODING),); break; } - #endif + #endif TU_ATTR_FALLTHROUGH; case CONFIG_ACM_SET_LINE_CODING: - #ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM - if (p_cdc->acm_capability.support_line_request) - { + #ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM + if (p_cdc->acm_capability.support_line_request) { cdc_line_coding_t line_coding = CFG_TUH_CDC_LINE_CODING_ON_ENUM; - TU_ASSERT(acm_set_line_coding(p_cdc, &line_coding, acm_process_config, CONFIG_ACM_COMPLETE), ); + TU_ASSERT(acm_set_line_coding(p_cdc, &line_coding, acm_process_config, CONFIG_ACM_COMPLETE),); break; } - #endif + #endif TU_ATTR_FALLTHROUGH; case CONFIG_ACM_COMPLETE: // itf_num+1 to account for data interface as well - set_config_complete(p_cdc, idx, itf_num+1); + set_config_complete(p_cdc, idx, itf_num + 1); break; - default: break; + default: + break; } } @@ -865,6 +943,19 @@ static bool acm_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const return true; } +static bool acm_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_LOG_DRV("CDC ACM Set Data Format\r\n"); + + cdc_line_coding_t line_coding; + line_coding.bit_rate = p_cdc->line_coding.bit_rate; + line_coding.stop_bits = stop_bits; + line_coding.parity = parity; + line_coding.data_bits = data_bits; + + return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data); +} + static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { TU_VERIFY(p_cdc->acm_capability.support_line_request); cdc_line_coding_t line_coding = p_cdc->line_coding; @@ -894,7 +985,6 @@ static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint TU_VERIFY(p_cdc); TU_LOG_DRV("FTDI opened\r\n"); - p_cdc->serial_drid = SERIAL_DRIVER_FTDI; // endpoint pair @@ -930,13 +1020,32 @@ static bool ftdi_sio_set_request(cdch_interface_t* p_cdc, uint8_t command, uint1 return tuh_control_xfer(&xfer); } -static bool ftdi_sio_reset(cdch_interface_t* p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool ftdi_sio_reset(cdch_interface_t* p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { return ftdi_sio_set_request(p_cdc, FTDI_SIO_RESET, FTDI_SIO_RESET_SIO, complete_cb, user_data); } -static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool ftdi_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + (void) p_cdc; + (void) stop_bits; + (void) parity; + (void) data_bits; + (void) complete_cb; + (void) user_data; + // TODO not implemented yet + return false; +} + +static bool ftdi_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + (void) p_cdc; + (void) line_coding; + (void) complete_cb; + (void) user_data; + // TODO not implemented yet + return false; +} + +static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { TU_LOG_DRV("CDC FTDI Set Control Line State\r\n"); p_cdc->user_control_cb = complete_cb; TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_MODEM_CTRL, 0x0300 | line_state, @@ -944,8 +1053,7 @@ static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state return true; } -static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) -{ +static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) { const uint8_t divfrac[8] = { 0, 3, 2, 4, 1, 5, 6, 7 }; uint32_t divisor; @@ -965,18 +1073,16 @@ static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) return divisor; } -static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud) -{ +static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud) { return ftdi_232bm_baud_base_to_divisor(baud, 48000000u); } -static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { uint16_t const divisor = (uint16_t) ftdi_232bm_baud_to_divisor(baudrate); - TU_LOG_DRV("CDC FTDI Set BaudRate = %lu, divisor = 0x%04x\n", baudrate, divisor); + TU_LOG_DRV("CDC FTDI Set BaudRate = %" PRIu32 ", divisor = 0x%04x\r\n", baudrate, divisor); p_cdc->user_control_cb = complete_cb; - _ftdi_requested_baud = baudrate; + p_cdc->requested_line_coding.bit_rate = baudrate; TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_SET_BAUD_RATE, divisor, complete_cb ? cdch_internal_control_complete : NULL, user_data)); @@ -998,8 +1104,7 @@ static void ftdi_process_config(tuh_xfer_t* xfer) { case CONFIG_FTDI_MODEM_CTRL: #if CFG_TUH_CDC_LINE_CONTROL_ON_ENUM - TU_ASSERT( - ftdi_sio_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, ftdi_process_config, CONFIG_FTDI_SET_BAUDRATE),); + TU_ASSERT(ftdi_sio_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, ftdi_process_config, CONFIG_FTDI_SET_BAUDRATE),); break; #else TU_ATTR_FALLTHROUGH; @@ -1107,16 +1212,36 @@ static bool cp210x_ifc_enable(cdch_interface_t* p_cdc, uint16_t enabled, tuh_xfe return cp210x_set_request(p_cdc, CP210X_IFC_ENABLE, enabled, NULL, 0, complete_cb, user_data); } +static bool cp210x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + // TODO implement later + (void) p_cdc; + (void) line_coding; + (void) complete_cb; + (void) user_data; + return false; +} + static bool cp210x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - TU_LOG_DRV("CDC CP210x Set BaudRate = %lu\n", baudrate); + TU_LOG_DRV("CDC CP210x Set BaudRate = %" PRIu32 "\r\n", baudrate); uint32_t baud_le = tu_htole32(baudrate); p_cdc->user_control_cb = complete_cb; return cp210x_set_request(p_cdc, CP210X_SET_BAUDRATE, 0, (uint8_t *) &baud_le, 4, complete_cb ? cdch_internal_control_complete : NULL, user_data); } -static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool cp210x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + (void) p_cdc; + (void) stop_bits; + (void) parity; + (void) data_bits; + (void) complete_cb; + (void) user_data; + // TODO not implemented yet + return false; +} + +static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { TU_LOG_DRV("CDC CP210x Set Control Line State\r\n"); p_cdc->user_control_cb = complete_cb; return cp210x_set_request(p_cdc, CP210X_SET_MHS, 0x0300 | line_state, NULL, 0, @@ -1156,8 +1281,7 @@ static void cp210x_process_config(tuh_xfer_t* xfer) { case CONFIG_CP210X_SET_DTR_RTS: #if CFG_TUH_CDC_LINE_CONTROL_ON_ENUM - TU_ASSERT( - cp210x_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, cp210x_process_config, CONFIG_CP210X_COMPLETE),); + TU_ASSERT(cp210x_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, cp210x_process_config, CONFIG_CP210X_COMPLETE),); break; #else TU_ATTR_FALLTHROUGH; @@ -1173,4 +1297,374 @@ static void cp210x_process_config(tuh_xfer_t* xfer) { #endif +//--------------------------------------------------------------------+ +// CH34x (CH340 & CH341) +//--------------------------------------------------------------------+ + +#if CFG_TUH_CDC_CH34X + +static uint8_t ch34x_get_lcr(uint8_t stop_bits, uint8_t parity, uint8_t data_bits); +static uint16_t ch34x_get_divisor_prescaler(uint32_t baval); + +//------------- control request -------------// + +static bool ch34x_set_request(cdch_interface_t* p_cdc, uint8_t direction, uint8_t request, uint16_t value, + uint16_t index, uint8_t* buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + tusb_control_request_t const request_setup = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_DEVICE, + .type = TUSB_REQ_TYPE_VENDOR, + .direction = direction & 0x01u + }, + .bRequest = request, + .wValue = tu_htole16 (value), + .wIndex = tu_htole16 (index), + .wLength = tu_htole16 (length) + }; + + // use usbh enum buf since application variable does not live long enough + uint8_t* enum_buf = NULL; + + if (buffer && length > 0) { + enum_buf = usbh_get_enum_buf(); + if (direction == TUSB_DIR_OUT) { + tu_memcpy_s(enum_buf, CFG_TUH_ENUMERATION_BUFSIZE, buffer, length); + } + } + + tuh_xfer_t xfer = { + .daddr = p_cdc->daddr, + .ep_addr = 0, + .setup = &request_setup, + .buffer = enum_buf, + .complete_cb = complete_cb, + .user_data = user_data + }; + + return tuh_control_xfer(&xfer); +} + +static inline bool ch34x_control_out(cdch_interface_t* p_cdc, uint8_t request, uint16_t value, uint16_t index, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_set_request(p_cdc, TUSB_DIR_OUT, request, value, index, NULL, 0, complete_cb, user_data); +} + +static inline bool ch34x_control_in(cdch_interface_t* p_cdc, uint8_t request, uint16_t value, uint16_t index, + uint8_t* buffer, uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_set_request(p_cdc, TUSB_DIR_IN, request, value, index, buffer, buffersize, + complete_cb, user_data); +} + +static inline bool ch34x_write_reg(cdch_interface_t* p_cdc, uint16_t reg, uint16_t reg_value, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_control_out(p_cdc, CH34X_REQ_WRITE_REG, reg, reg_value, complete_cb, user_data); +} + +//static bool ch34x_read_reg_request ( cdch_interface_t* p_cdc, uint16_t reg, +// uint8_t *buffer, uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data ) +//{ +// return ch34x_control_in ( p_cdc, CH34X_REQ_READ_REG, reg, 0, buffer, buffersize, complete_cb, user_data ); +//} + +static bool ch34x_write_reg_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + uint16_t const div_ps = ch34x_get_divisor_prescaler(baudrate); + TU_VERIFY(div_ps); + TU_ASSERT(ch34x_write_reg(p_cdc, CH34X_REG16_DIVISOR_PRESCALER, div_ps, + complete_cb, user_data)); + return true; +} + +//------------- Driver API -------------// + +// internal control complete to update state such as line state, encoding +static void ch34x_control_complete(tuh_xfer_t* xfer) { + // CH34x only has 1 interface and use wIndex as payload and not for bInterfaceNumber + process_internal_control_complete(xfer, 0); +} + +static bool ch34x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + p_cdc->requested_line_coding.stop_bits = stop_bits; + p_cdc->requested_line_coding.parity = parity; + p_cdc->requested_line_coding.data_bits = data_bits; + + uint8_t const lcr = ch34x_get_lcr(stop_bits, parity, data_bits); + TU_VERIFY(lcr); + TU_ASSERT (ch34x_control_out(p_cdc, CH34X_REQ_WRITE_REG, CH32X_REG16_LCR2_LCR, lcr, + complete_cb ? ch34x_control_complete : NULL, user_data)); + return true; +} + +static bool ch34x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + p_cdc->requested_line_coding.bit_rate = baudrate; + p_cdc->user_control_cb = complete_cb; + TU_ASSERT(ch34x_write_reg_baudrate(p_cdc, baudrate, + complete_cb ? ch34x_control_complete : NULL, user_data)); + return true; +} + +static void ch34x_set_line_coding_stage1_complete(tuh_xfer_t* xfer) { + // CH34x only has 1 interface and use wIndex as payload and not for bInterfaceNumber + uint8_t const itf_num = 0; + uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); + cdch_interface_t* p_cdc = get_itf(idx); + TU_ASSERT(p_cdc, ); + + if (xfer->result == XFER_RESULT_SUCCESS) { + // stage 1 success, continue to stage 2 + p_cdc->line_coding.bit_rate = p_cdc->requested_line_coding.bit_rate; + TU_ASSERT(ch34x_set_data_format(p_cdc, p_cdc->requested_line_coding.stop_bits, p_cdc->requested_line_coding.parity, + p_cdc->requested_line_coding.data_bits, ch34x_control_complete, xfer->user_data), ); + } else { + // stage 1 failed, notify user + xfer->complete_cb = p_cdc->user_control_cb; + if (xfer->complete_cb) { + xfer->complete_cb(xfer); + } + } +} + +// 2 stages: set baudrate (stage1) + set data format (stage2) +static bool ch34x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + p_cdc->requested_line_coding = *line_coding; + p_cdc->user_control_cb = complete_cb; + + if (complete_cb) { + // stage 1 set baudrate + TU_ASSERT(ch34x_write_reg_baudrate(p_cdc, line_coding->bit_rate, + ch34x_set_line_coding_stage1_complete, user_data)); + } else { + // sync call + xfer_result_t result; + + // stage 1 set baudrate + TU_ASSERT(ch34x_write_reg_baudrate(p_cdc, line_coding->bit_rate, NULL, (uintptr_t) &result)); + TU_VERIFY(result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.bit_rate = line_coding->bit_rate; + + // stage 2 set data format + TU_ASSERT(ch34x_set_data_format(p_cdc, line_coding->stop_bits, line_coding->parity, line_coding->data_bits, + NULL, (uintptr_t) &result)); + TU_VERIFY(result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.stop_bits = line_coding->stop_bits; + p_cdc->line_coding.parity = line_coding->parity; + p_cdc->line_coding.data_bits = line_coding->data_bits; + + // update transfer result, user_data is expected to point to xfer_result_t + if (user_data) { + *((xfer_result_t*) user_data) = result; + } + } + + return true; +} + +static bool ch34x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + uint8_t control = 0; + if (line_state & CDC_CONTROL_LINE_STATE_RTS) { + control |= CH34X_BIT_RTS; + } + if (line_state & CDC_CONTROL_LINE_STATE_DTR) { + control |= CH34X_BIT_DTR; + } + + // CH34x signals are inverted + control = ~control; + + p_cdc->user_control_cb = complete_cb; + TU_ASSERT (ch34x_control_out(p_cdc, CH34X_REQ_MODEM_CTRL, control, 0, + complete_cb ? ch34x_control_complete : NULL, user_data)); + return true; +} + +//------------- Enumeration -------------// +enum { + CONFIG_CH34X_READ_VERSION = 0, + CONFIG_CH34X_SERIAL_INIT, + CONFIG_CH34X_SPECIAL_REG_WRITE, + CONFIG_CH34X_FLOW_CONTROL, + CONFIG_CH34X_MODEM_CONTROL, + CONFIG_CH34X_COMPLETE +}; + +static bool ch34x_open(uint8_t daddr, tusb_desc_interface_t const* itf_desc, uint16_t max_len) { + // CH34x Interface includes 1 vendor interface + 2 bulk + 1 interrupt endpoints + TU_VERIFY (itf_desc->bNumEndpoints == 3); + TU_VERIFY (sizeof(tusb_desc_interface_t) + 3 * sizeof(tusb_desc_endpoint_t) <= max_len); + + cdch_interface_t* p_cdc = make_new_itf(daddr, itf_desc); + TU_VERIFY (p_cdc); + + TU_LOG_DRV ("CH34x opened\r\n"); + p_cdc->serial_drid = SERIAL_DRIVER_CH34X; + + tusb_desc_endpoint_t const* desc_ep = (tusb_desc_endpoint_t const*) tu_desc_next(itf_desc); + + // data endpoints expected to be in pairs + TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep)); + desc_ep += 2; + + // Interrupt endpoint: not used for now + TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(desc_ep) && + TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); + p_cdc->ep_notif = desc_ep->bEndpointAddress; + + return true; +} + +static void ch34x_process_config(tuh_xfer_t* xfer) { + // CH34x only has 1 interface and use wIndex as payload and not for bInterfaceNumber + uint8_t const itf_num = 0; + uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); + cdch_interface_t* p_cdc = get_itf(idx); + uintptr_t const state = xfer->user_data; + uint8_t buffer[2]; // TODO remove + TU_ASSERT (p_cdc,); + TU_ASSERT (xfer->result == XFER_RESULT_SUCCESS,); + + switch (state) { + case CONFIG_CH34X_READ_VERSION: + TU_LOG_DRV("[%u] CDCh CH34x attempt to read Chip Version\r\n", p_cdc->daddr); + TU_ASSERT (ch34x_control_in(p_cdc, CH34X_REQ_READ_VERSION, 0, 0, buffer, 2, ch34x_process_config, CONFIG_CH34X_SERIAL_INIT),); + break; + + case CONFIG_CH34X_SERIAL_INIT: { + // handle version read data, set CH34x line coding (incl. baudrate) + uint8_t const version = xfer->buffer[0]; + TU_LOG_DRV("[%u] CDCh CH34x Chip Version = %02x\r\n", p_cdc->daddr, version); + // only versions >= 0x30 are tested, below 0x30 seems having other programming, see drivers from WCH vendor, Linux kernel and FreeBSD + TU_ASSERT (version >= 0x30,); + // init CH34x with line coding + cdc_line_coding_t const line_coding = CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X; + uint16_t const div_ps = ch34x_get_divisor_prescaler(line_coding.bit_rate); + TU_ASSERT(div_ps, ); + uint8_t const lcr = ch34x_get_lcr(line_coding.stop_bits, line_coding.parity, line_coding.data_bits); + TU_ASSERT(lcr, ); + TU_ASSERT (ch34x_control_out(p_cdc, CH34X_REQ_SERIAL_INIT, tu_u16(lcr, 0x9c), div_ps, + ch34x_process_config, CONFIG_CH34X_SPECIAL_REG_WRITE),); + break; + } + + case CONFIG_CH34X_SPECIAL_REG_WRITE: + // overtake line coding and do special reg write, purpose unknown, overtaken from WCH driver + p_cdc->line_coding = ((cdc_line_coding_t) CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X); + TU_ASSERT (ch34x_write_reg(p_cdc, TU_U16(CH341_REG_0x0F, CH341_REG_0x2C), 0x0007, ch34x_process_config, CONFIG_CH34X_FLOW_CONTROL),); + break; + + case CONFIG_CH34X_FLOW_CONTROL: + // no hardware flow control + TU_ASSERT (ch34x_write_reg(p_cdc, TU_U16(CH341_REG_0x27, CH341_REG_0x27), 0x0000, ch34x_process_config, CONFIG_CH34X_MODEM_CONTROL),); + break; + + case CONFIG_CH34X_MODEM_CONTROL: + // !always! set modem controls RTS/DTR (CH34x has no reset state after CH34X_REQ_SERIAL_INIT) + TU_ASSERT (ch34x_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, ch34x_process_config, CONFIG_CH34X_COMPLETE),); + break; + + case CONFIG_CH34X_COMPLETE: + set_config_complete(p_cdc, idx, itf_num); + break; + + default: + TU_ASSERT (false,); + break; + } +} + +//------------- CH34x helper -------------// + +// calculate divisor and prescaler for baudrate, return it as 16-bit combined value +static uint16_t ch34x_get_divisor_prescaler(uint32_t baval) { + uint8_t a; + uint8_t b; + uint32_t c; + + TU_VERIFY(baval != 0 && baval <= 2000000, 0); + switch (baval) { + case 921600: + a = 0xf3; + b = 7; + break; + + case 307200: + a = 0xd9; + b = 7; + break; + + default: + if (baval > 6000000 / 255) { + b = 3; + c = 6000000; + } else if (baval > 750000 / 255) { + b = 2; + c = 750000; + } else if (baval > 93750 / 255) { + b = 1; + c = 93750; + } else { + b = 0; + c = 11719; + } + a = (uint8_t) (c / baval); + if (a == 0 || a == 0xFF) { + return 0; + } + if ((c / a - baval) > (baval - c / (a + 1))) { + a++; + } + a = (uint8_t) (256 - a); + break; + } + + // reg divisor = a, reg prescaler = b + // According to linux code we need to set bit 7 of UCHCOM_REG_BPS_PRE, + // otherwise the chip will buffer data. + return (uint16_t) ((uint16_t)a << 8 | 0x80 | b); +} + +// calculate lcr value from data coding +static uint8_t ch34x_get_lcr(uint8_t stop_bits, uint8_t parity, uint8_t data_bits) { + uint8_t lcr = CH34X_LCR_ENABLE_RX | CH34X_LCR_ENABLE_TX; + TU_VERIFY(data_bits >= 5 && data_bits <= 8, 0); + lcr |= (uint8_t) (data_bits - 5); + + switch(parity) { + case CDC_LINE_CODING_PARITY_NONE: + break; + + case CDC_LINE_CODING_PARITY_ODD: + lcr |= CH34X_LCR_ENABLE_PAR; + break; + + case CDC_LINE_CODING_PARITY_EVEN: + lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_PAR_EVEN; + break; + + case CDC_LINE_CODING_PARITY_MARK: + lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_MARK_SPACE; + break; + + case CDC_LINE_CODING_PARITY_SPACE: + lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_MARK_SPACE | CH34X_LCR_PAR_EVEN; + break; + + default: break; + } + + // 1.5 stop bits not supported + TU_VERIFY(stop_bits != CDC_LINE_CODING_STOP_BITS_1_5, 0); + if (stop_bits == CDC_LINE_CODING_STOP_BITS_2) { + lcr |= CH34X_LCR_STOP_BITS_2; + } + + return lcr; +} + + +#endif // CFG_TUH_CDC_CH34X + #endif diff --git a/src/class/cdc/cdc_host.h b/src/class/cdc/cdc_host.h index 19552f1ee..b63dd1530 100644 --- a/src/class/cdc/cdc_host.h +++ b/src/class/cdc/cdc_host.h @@ -44,7 +44,7 @@ // Set Line Coding on enumeration/mounted, value for cdc_line_coding_t //#ifndef CFG_TUH_CDC_LINE_CODING_ON_ENUM -//#define CFG_TUH_CDC_LINE_CODING_ON_ENUM { 115200, CDC_LINE_CONDING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } +//#define CFG_TUH_CDC_LINE_CODING_ON_ENUM { 115200, CDC_LINE_CODING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } //#endif // RX FIFO size @@ -148,8 +148,11 @@ bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_c // Request to set baudrate bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -// Request to Set Line Coding (ACM only) -// Should only use if you don't work with serial devices such as FTDI/CP210x +// Request to set data format +bool tuh_cdc_set_data_format(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + +// Request to Set Line Coding = baudrate + data format +// Note: only implemented by ACM and CH34x, not supported by FTDI and CP210x yet bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); // Request to Get Line Coding (ACM only) @@ -159,15 +162,13 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, // Connect by set both DTR, RTS TU_ATTR_ALWAYS_INLINE static inline -bool tuh_cdc_connect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +bool tuh_cdc_connect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { return tuh_cdc_set_control_line_state(idx, CDC_CONTROL_LINE_STATE_DTR | CDC_CONTROL_LINE_STATE_RTS, complete_cb, user_data); } // Disconnect by clear both DTR, RTS TU_ATTR_ALWAYS_INLINE static inline -bool tuh_cdc_disconnect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +bool tuh_cdc_disconnect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { return tuh_cdc_set_control_line_state(idx, 0x00, complete_cb, user_data); } @@ -191,7 +192,8 @@ TU_ATTR_WEAK extern void tuh_cdc_tx_complete_cb(uint8_t idx); //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -void cdch_init (void); +bool cdch_init (void); +bool cdch_deinit (void); bool cdch_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); bool cdch_set_config (uint8_t dev_addr, uint8_t itf_num); bool cdch_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); diff --git a/src/class/cdc/serial/ch34x.h b/src/class/cdc/serial/ch34x.h new file mode 100644 index 000000000..c18066f57 --- /dev/null +++ b/src/class/cdc/serial/ch34x.h @@ -0,0 +1,84 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Heiko Kuester + * + * 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 _CH34X_H_ +#define _CH34X_H_ + +// There is no official documentation for the CH34x (CH340, CH341) chips. Reference can be found +// - https://github.com/WCHSoftGroup/ch341ser_linux +// - https://github.com/torvalds/linux/blob/master/drivers/usb/serial/ch341.c +// - https://github.com/freebsd/freebsd-src/blob/main/sys/dev/usb/serial/uchcom.c + +// set line_coding @ enumeration +#ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM +#define CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X CFG_TUH_CDC_LINE_CODING_ON_ENUM +#else // this default is necessary to work properly +#define CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X { 9600, CDC_LINE_CONDING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } +#endif + +// USB requests +#define CH34X_REQ_READ_VERSION 0x5F // dec 95 +#define CH34X_REQ_WRITE_REG 0x9A // dec 154 +#define CH34X_REQ_READ_REG 0x95 // dec 149 +#define CH34X_REQ_SERIAL_INIT 0xA1 // dec 161 +#define CH34X_REQ_MODEM_CTRL 0xA4 // dev 164 + +// registers +#define CH34X_REG_BREAK 0x05 +#define CH34X_REG_PRESCALER 0x12 +#define CH34X_REG_DIVISOR 0x13 +#define CH34X_REG_LCR 0x18 +#define CH34X_REG_LCR2 0x25 +#define CH34X_REG_MCR_MSR 0x06 +#define CH34X_REG_MCR_MSR2 0x07 +#define CH34X_NBREAK_BITS 0x01 + +#define CH341_REG_0x0F 0x0F // undocumented register +#define CH341_REG_0x2C 0x2C // undocumented register +#define CH341_REG_0x27 0x27 // hardware flow control (cts/rts) + +#define CH34X_REG16_DIVISOR_PRESCALER TU_U16(CH34X_REG_DIVISOR, CH34X_REG_PRESCALER) +#define CH32X_REG16_LCR2_LCR TU_U16(CH34X_REG_LCR2, CH34X_REG_LCR) + +// modem control bits +#define CH34X_BIT_RTS ( 1 << 6 ) +#define CH34X_BIT_DTR ( 1 << 5 ) + +// line control bits +#define CH34X_LCR_ENABLE_RX 0x80 +#define CH34X_LCR_ENABLE_TX 0x40 +#define CH34X_LCR_MARK_SPACE 0x20 +#define CH34X_LCR_PAR_EVEN 0x10 +#define CH34X_LCR_ENABLE_PAR 0x08 +#define CH34X_LCR_PAR_MASK 0x38 // all parity bits +#define CH34X_LCR_STOP_BITS_2 0x04 +#define CH34X_LCR_CS8 0x03 +#define CH34X_LCR_CS7 0x02 +#define CH34X_LCR_CS6 0x01 +#define CH34X_LCR_CS5 0x00 +#define CH34X_LCR_CS_MASK 0x03 // all CSx bits + +#endif /* _CH34X_H_ */ diff --git a/src/class/cdc/serial/cp210x.h b/src/class/cdc/serial/cp210x.h index b01417092..2c749f522 100644 --- a/src/class/cdc/serial/cp210x.h +++ b/src/class/cdc/serial/cp210x.h @@ -29,8 +29,6 @@ // https://www.silabs.com/documents/public/application-notes/AN571.pdf #define TU_CP210X_VID 0x10C4 -#define TU_CP210X_PID_LIST \ - 0xEA60, 0xEA70 /* Config request codes */ #define CP210X_IFC_ENABLE 0x00 diff --git a/src/class/cdc/serial/ftdi_sio.h b/src/class/cdc/serial/ftdi_sio.h index 6916e4031..0825f0719 100644 --- a/src/class/cdc/serial/ftdi_sio.h +++ b/src/class/cdc/serial/ftdi_sio.h @@ -25,11 +25,8 @@ #ifndef TUSB_FTDI_SIO_H #define TUSB_FTDI_SIO_H -// VID/PID for matching FTDI devices +// VID for matching FTDI devices #define TU_FTDI_VID 0x0403 -#define TU_FTDI_PID_LIST \ - 0x6001, 0x6006, 0x6010, 0x6011, 0x6014, 0x6015, 0x8372, 0xFBFA, \ - 0xcd18 // Commands #define FTDI_SIO_RESET 0 /* Reset the port */ diff --git a/src/class/dfu/dfu_device.c b/src/class/dfu/dfu_device.c index bffdb8376..71e7ac2b3 100644 --- a/src/class/dfu/dfu_device.c +++ b/src/class/dfu/dfu_device.c @@ -37,6 +37,13 @@ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUD_DFU_LOG_LEVEL + #define CFG_TUD_DFU_LOG_LEVEL CFG_TUD_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUD_DFU_LOG_LEVEL, __VA_ARGS__) + //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ @@ -153,11 +160,14 @@ void dfu_moded_reset(uint8_t rhport) reset_state(); } -void dfu_moded_init(void) -{ +void dfu_moded_init(void) { dfu_moded_reset(0); } +bool dfu_moded_deinit(void) { + return true; +} + uint16_t dfu_moded_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len) { (void) rhport; @@ -205,7 +215,7 @@ bool dfu_moded_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_reque { TU_VERIFY(request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_INTERFACE); - TU_LOG2(" DFU State : %s, Status: %s\r\n", tu_lookup_find(&_dfu_state_table, _dfu_ctx.state), tu_lookup_find(&_dfu_status_table, _dfu_ctx.status)); + TU_LOG_DRV(" DFU State : %s, Status: %s\r\n", tu_lookup_find(&_dfu_state_table, _dfu_ctx.state), tu_lookup_find(&_dfu_status_table, _dfu_ctx.status)); if ( request->bmRequestType_bit.type == TUSB_REQ_TYPE_STANDARD ) { @@ -235,7 +245,7 @@ bool dfu_moded_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_reque } else if ( request->bmRequestType_bit.type == TUSB_REQ_TYPE_CLASS ) { - TU_LOG2(" DFU Request: %s\r\n", tu_lookup_find(&_dfu_request_table, request->bRequest)); + TU_LOG_DRV(" DFU Request: %s\r\n", tu_lookup_find(&_dfu_request_table, request->bRequest)); // Class request switch ( request->bRequest ) diff --git a/src/class/dfu/dfu_device.h b/src/class/dfu/dfu_device.h index fecf8596f..00c22ea8b 100644 --- a/src/class/dfu/dfu_device.h +++ b/src/class/dfu/dfu_device.h @@ -86,6 +86,7 @@ TU_ATTR_WEAK void tud_dfu_abort_cb(uint8_t alt); // Internal Class Driver API //--------------------------------------------------------------------+ void dfu_moded_init(void); +bool dfu_moded_deinit(void); void dfu_moded_reset(uint8_t rhport); uint16_t dfu_moded_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool dfu_moded_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/dfu/dfu_rt_device.c b/src/class/dfu/dfu_rt_device.c index 7b77b3f8f..3b801b787 100644 --- a/src/class/dfu/dfu_rt_device.c +++ b/src/class/dfu/dfu_rt_device.c @@ -37,6 +37,13 @@ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUD_DFU_RUNTIME_LOG_LEVEL + #define CFG_TUD_DFU_RUNTIME_LOG_LEVEL CFG_TUD_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUD_DFU_RUNTIME_LOG_LEVEL, __VA_ARGS__) + //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ @@ -44,8 +51,11 @@ //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void dfu_rtd_init(void) -{ +void dfu_rtd_init(void) { +} + +bool dfu_rtd_deinit(void) { + return true; } void dfu_rtd_reset(uint8_t rhport) @@ -99,7 +109,7 @@ bool dfu_rtd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request { case DFU_REQUEST_DETACH: { - TU_LOG2(" DFU RT Request: DETACH\r\n"); + TU_LOG_DRV(" DFU RT Request: DETACH\r\n"); tud_control_status(rhport, request); tud_dfu_runtime_reboot_to_dfu_cb(); } @@ -107,7 +117,7 @@ bool dfu_rtd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request case DFU_REQUEST_GETSTATUS: { - TU_LOG2(" DFU RT Request: GETSTATUS\r\n"); + TU_LOG_DRV(" DFU RT Request: GETSTATUS\r\n"); dfu_status_response_t resp; // Status = OK, Poll timeout is ignored during RT, State = APP_IDLE, IString = 0 TU_VERIFY(tu_memset_s(&resp, sizeof(resp), 0x00, sizeof(resp))==0); @@ -117,7 +127,7 @@ bool dfu_rtd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request default: { - TU_LOG2(" DFU RT Unexpected Request: %d\r\n", request->bRequest); + TU_LOG_DRV(" DFU RT Unexpected Request: %d\r\n", request->bRequest); return false; // stall unsupported request } } diff --git a/src/class/dfu/dfu_rt_device.h b/src/class/dfu/dfu_rt_device.h index babaa8214..67eb26d95 100644 --- a/src/class/dfu/dfu_rt_device.h +++ b/src/class/dfu/dfu_rt_device.h @@ -43,6 +43,7 @@ void tud_dfu_runtime_reboot_to_dfu_cb(void); // Internal Class Driver API //--------------------------------------------------------------------+ void dfu_rtd_init(void); +bool dfu_rtd_deinit(void); void dfu_rtd_reset(uint8_t rhport); uint16_t dfu_rtd_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool dfu_rtd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/hid/hid.h b/src/class/hid/hid.h index fbd3eef38..fcaab7a50 100644 --- a/src/class/hid/hid.h +++ b/src/class/hid/hid.h @@ -300,6 +300,19 @@ typedef struct TU_ATTR_PACKED int8_t pan; // using AC Pan } hid_mouse_report_t; + +// Absolute Mouse: same as the Standard (relative) Mouse Report but +// with int16_t instead of int8_t for X and Y coordinates. +typedef struct TU_ATTR_PACKED +{ + uint8_t buttons; /**< buttons mask for currently pressed buttons in the mouse. */ + int16_t x; /**< Current x position of the mouse. */ + int16_t y; /**< Current y position of the mouse. */ + int8_t wheel; /**< Current delta wheel movement on the mouse. */ + int8_t pan; // using AC Pan +} hid_abs_mouse_report_t; + + /// Standard Mouse Buttons Bitmap typedef enum { diff --git a/src/class/hid/hid_device.c b/src/class/hid/hid_device.c index 5637ea6b4..ada01582e 100644 --- a/src/class/hid/hid_device.c +++ b/src/class/hid/hid_device.c @@ -39,23 +39,23 @@ //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ -typedef struct -{ +typedef struct { uint8_t itf_num; uint8_t ep_in; - uint8_t ep_out; // optional Out endpoint - uint8_t itf_protocol; // Boot mouse or keyboard + uint8_t ep_out; // optional Out endpoint + uint8_t itf_protocol; // Boot mouse or keyboard - uint8_t protocol_mode; // Boot (0) or Report protocol (1) - uint8_t idle_rate; // up to application to handle idle rate uint16_t report_desc_len; + CFG_TUSB_MEM_ALIGN uint8_t protocol_mode; // Boot (0) or Report protocol (1) + CFG_TUSB_MEM_ALIGN uint8_t idle_rate; // up to application to handle idle rate CFG_TUSB_MEM_ALIGN uint8_t epin_buf[CFG_TUD_HID_EP_BUFSIZE]; CFG_TUSB_MEM_ALIGN uint8_t epout_buf[CFG_TUD_HID_EP_BUFSIZE]; + CFG_TUSB_MEM_ALIGN uint8_t ctrl_buf[CFG_TUD_HID_EP_BUFSIZE]; // TODO save hid descriptor since host can specifically request this after enumeration // Note: HID descriptor may be not available from application after enumeration - tusb_hid_descriptor_hid_t const * hid_descriptor; + tusb_hid_descriptor_hid_t const *hid_descriptor; } hidd_interface_t; CFG_TUD_MEM_SECTION tu_static hidd_interface_t _hidd_itf[CFG_TUD_HID]; @@ -63,12 +63,12 @@ CFG_TUD_MEM_SECTION tu_static hidd_interface_t _hidd_itf[CFG_TUD_HID]; /*------------- Helpers -------------*/ static inline uint8_t get_index_by_itfnum(uint8_t itf_num) { - for (uint8_t i=0; i < CFG_TUD_HID; i++ ) - { - if ( itf_num == _hidd_itf[i].itf_num ) return i; - } + for (uint8_t i = 0; i < CFG_TUD_HID; i++) { + if (itf_num == _hidd_itf[i].itf_num) + return i; + } - return 0xFF; + return 0xFF; } //--------------------------------------------------------------------+ @@ -81,37 +81,29 @@ bool tud_hid_n_ready(uint8_t instance) return tud_ready() && (ep_in != 0) && !usbd_edpt_busy(rhport, ep_in); } -bool tud_hid_n_report(uint8_t instance, uint8_t report_id, void const* report, uint16_t len) +bool tud_hid_n_report(uint8_t instance, uint8_t report_id, void const *report, uint16_t len) { uint8_t const rhport = 0; - hidd_interface_t * p_hid = &_hidd_itf[instance]; + hidd_interface_t *p_hid = &_hidd_itf[instance]; // claim endpoint - TU_VERIFY( usbd_edpt_claim(rhport, p_hid->ep_in) ); + TU_VERIFY(usbd_edpt_claim(rhport, p_hid->ep_in)); // prepare data - if (report_id) - { + if (report_id) { p_hid->epin_buf[0] = report_id; - TU_VERIFY(0 == tu_memcpy_s(p_hid->epin_buf+1, CFG_TUD_HID_EP_BUFSIZE-1, report, len)); + TU_VERIFY(0 == tu_memcpy_s(p_hid->epin_buf + 1, CFG_TUD_HID_EP_BUFSIZE - 1, report, len)); len++; - }else - { + } else { TU_VERIFY(0 == tu_memcpy_s(p_hid->epin_buf, CFG_TUD_HID_EP_BUFSIZE, report, len)); } return usbd_edpt_xfer(rhport, p_hid->ep_in, p_hid->epin_buf, len); } -uint8_t tud_hid_n_interface_protocol(uint8_t instance) -{ - return _hidd_itf[instance].itf_protocol; -} +uint8_t tud_hid_n_interface_protocol(uint8_t instance) { return _hidd_itf[instance].itf_protocol; } -uint8_t tud_hid_n_get_protocol(uint8_t instance) -{ - return _hidd_itf[instance].protocol_mode; -} +uint8_t tud_hid_n_get_protocol(uint8_t instance) { return _hidd_itf[instance].protocol_mode; } bool tud_hid_n_keyboard_report(uint8_t instance, uint8_t report_id, uint8_t modifier, uint8_t keycode[6]) { @@ -120,44 +112,51 @@ bool tud_hid_n_keyboard_report(uint8_t instance, uint8_t report_id, uint8_t modi report.modifier = modifier; report.reserved = 0; - if ( keycode ) - { + if (keycode) { memcpy(report.keycode, keycode, sizeof(report.keycode)); - }else - { + } else { tu_memclr(report.keycode, 6); } return tud_hid_n_report(instance, report_id, &report, sizeof(report)); } -bool tud_hid_n_mouse_report(uint8_t instance, uint8_t report_id, - uint8_t buttons, int8_t x, int8_t y, int8_t vertical, int8_t horizontal) +bool tud_hid_n_mouse_report(uint8_t instance, uint8_t report_id, uint8_t buttons, int8_t x, int8_t y, int8_t vertical, int8_t horizontal) { - hid_mouse_report_t report = - { + hid_mouse_report_t report = { .buttons = buttons, - .x = x, - .y = y, - .wheel = vertical, - .pan = horizontal + .x = x, + .y = y, + .wheel = vertical, + .pan = horizontal }; return tud_hid_n_report(instance, report_id, &report, sizeof(report)); } -bool tud_hid_n_gamepad_report(uint8_t instance, uint8_t report_id, - int8_t x, int8_t y, int8_t z, int8_t rz, int8_t rx, int8_t ry, uint8_t hat, uint32_t buttons) { - hid_gamepad_report_t report = - { - .x = x, - .y = y, - .z = z, - .rz = rz, - .rx = rx, - .ry = ry, - .hat = hat, +bool tud_hid_n_abs_mouse_report(uint8_t instance, uint8_t report_id, uint8_t buttons, int16_t x, int16_t y, int8_t vertical, int8_t horizontal) +{ + hid_abs_mouse_report_t report = { .buttons = buttons, + .x = x, + .y = y, + .wheel = vertical, + .pan = horizontal + }; + return tud_hid_n_report(instance, report_id, &report, sizeof(report)); +} + +bool tud_hid_n_gamepad_report(uint8_t instance, uint8_t report_id, int8_t x, int8_t y, int8_t z, int8_t rz, int8_t rx, int8_t ry, uint8_t hat, uint32_t buttons) +{ + hid_gamepad_report_t report = { + .x = x, + .y = y, + .z = z, + .rz = rz, + .rx = rx, + .ry = ry, + .hat = hat, + .buttons = buttons, }; return tud_hid_n_report(instance, report_id, &report, sizeof(report)); @@ -171,59 +170,59 @@ void hidd_init(void) hidd_reset(0); } +bool hidd_deinit(void) +{ + return true; +} + void hidd_reset(uint8_t rhport) { - (void) rhport; + (void)rhport; tu_memclr(_hidd_itf, sizeof(_hidd_itf)); } -uint16_t hidd_open(uint8_t rhport, tusb_desc_interface_t const * desc_itf, uint16_t max_len) - { +uint16_t hidd_open(uint8_t rhport, tusb_desc_interface_t const *desc_itf, uint16_t max_len) +{ TU_VERIFY(TUSB_CLASS_HID == desc_itf->bInterfaceClass, 0); // 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)); + 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)); TU_ASSERT(max_len >= drv_len, 0); // Find available interface - hidd_interface_t * p_hid = NULL; + hidd_interface_t *p_hid = NULL; uint8_t hid_id; - for(hid_id=0; hid_id<CFG_TUD_HID; hid_id++) - { - if ( _hidd_itf[hid_id].ep_in == 0 ) - { + for (hid_id = 0; hid_id < CFG_TUD_HID; hid_id++) { + if (_hidd_itf[hid_id].ep_in == 0) { p_hid = &_hidd_itf[hid_id]; break; } } TU_ASSERT(p_hid, 0); - uint8_t const *p_desc = (uint8_t const *) desc_itf; + uint8_t const *p_desc = (uint8_t const *)desc_itf; //------------- HID descriptor -------------// p_desc = tu_desc_next(p_desc); TU_ASSERT(HID_DESC_TYPE_HID == tu_desc_type(p_desc), 0); - p_hid->hid_descriptor = (tusb_hid_descriptor_hid_t const *) p_desc; + p_hid->hid_descriptor = (tusb_hid_descriptor_hid_t const *)p_desc; //------------- Endpoint Descriptor -------------// p_desc = tu_desc_next(p_desc); TU_ASSERT(usbd_open_edpt_pair(rhport, p_desc, desc_itf->bNumEndpoints, TUSB_XFER_INTERRUPT, &p_hid->ep_out, &p_hid->ep_in), 0); - if ( desc_itf->bInterfaceSubClass == HID_SUBCLASS_BOOT ) p_hid->itf_protocol = desc_itf->bInterfaceProtocol; + if (desc_itf->bInterfaceSubClass == HID_SUBCLASS_BOOT) + p_hid->itf_protocol = desc_itf->bInterfaceProtocol; p_hid->protocol_mode = HID_PROTOCOL_REPORT; // Per Specs: default is report mode - p_hid->itf_num = desc_itf->bInterfaceNumber; + p_hid->itf_num = desc_itf->bInterfaceNumber; // Use offsetof to avoid pointer to the odd/misaligned address - p_hid->report_desc_len = tu_unaligned_read16((uint8_t const*) p_hid->hid_descriptor + offsetof(tusb_hid_descriptor_hid_t, wReportLength)); + p_hid->report_desc_len = tu_unaligned_read16((uint8_t const *)p_hid->hid_descriptor + offsetof(tusb_hid_descriptor_hid_t, wReportLength)); // Prepare for output endpoint - if (p_hid->ep_out) - { - if ( !usbd_edpt_xfer(rhport, p_hid->ep_out, p_hid->epout_buf, sizeof(p_hid->epout_buf)) ) - { + if (p_hid->ep_out) { + if (!usbd_edpt_xfer(rhport, p_hid->ep_out, p_hid->epout_buf, sizeof(p_hid->epout_buf))) { TU_LOG_FAILED(); TU_BREAKPOINT(); } @@ -235,144 +234,120 @@ uint16_t hidd_open(uint8_t rhport, tusb_desc_interface_t const * desc_itf, uint1 // Invoked when a control transfer occurred on an interface of this class // Driver response accordingly to the request and the transfer stage (setup/data/ack) // return false to stall control endpoint (e.g unsupported request) -bool hidd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request) +bool hidd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const *request) { TU_VERIFY(request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_INTERFACE); - uint8_t const hid_itf = get_index_by_itfnum((uint8_t) request->wIndex); + uint8_t const hid_itf = get_index_by_itfnum((uint8_t)request->wIndex); TU_VERIFY(hid_itf < CFG_TUD_HID); - hidd_interface_t* p_hid = &_hidd_itf[hid_itf]; + hidd_interface_t *p_hid = &_hidd_itf[hid_itf]; - if (request->bmRequestType_bit.type == TUSB_REQ_TYPE_STANDARD) - { + if (request->bmRequestType_bit.type == TUSB_REQ_TYPE_STANDARD) { //------------- STD Request -------------// - if ( stage == CONTROL_STAGE_SETUP ) - { - uint8_t const desc_type = tu_u16_high(request->wValue); - //uint8_t const desc_index = tu_u16_low (request->wValue); + if (stage == CONTROL_STAGE_SETUP) { + uint8_t const desc_type = tu_u16_high(request->wValue); + // uint8_t const desc_index = tu_u16_low (request->wValue); - if (request->bRequest == TUSB_REQ_GET_DESCRIPTOR && desc_type == HID_DESC_TYPE_HID) - { + if (request->bRequest == TUSB_REQ_GET_DESCRIPTOR && desc_type == HID_DESC_TYPE_HID) { TU_VERIFY(p_hid->hid_descriptor); - TU_VERIFY(tud_control_xfer(rhport, request, (void*)(uintptr_t) p_hid->hid_descriptor, p_hid->hid_descriptor->bLength)); - } - else if (request->bRequest == TUSB_REQ_GET_DESCRIPTOR && desc_type == HID_DESC_TYPE_REPORT) - { - uint8_t const * desc_report = tud_hid_descriptor_report_cb(hid_itf); - tud_control_xfer(rhport, request, (void*)(uintptr_t) desc_report, p_hid->report_desc_len); - } - else - { + TU_VERIFY(tud_control_xfer(rhport, request, (void *)(uintptr_t)p_hid->hid_descriptor, p_hid->hid_descriptor->bLength)); + } else if (request->bRequest == TUSB_REQ_GET_DESCRIPTOR && desc_type == HID_DESC_TYPE_REPORT) { + uint8_t const *desc_report = tud_hid_descriptor_report_cb(hid_itf); + tud_control_xfer(rhport, request, (void *)(uintptr_t)desc_report, p_hid->report_desc_len); + } else { return false; // stall unsupported request } } - } - else if (request->bmRequestType_bit.type == TUSB_REQ_TYPE_CLASS) - { + } else if (request->bmRequestType_bit.type == TUSB_REQ_TYPE_CLASS) { //------------- Class Specific Request -------------// - switch( request->bRequest ) - { - case HID_REQ_CONTROL_GET_REPORT: - if ( stage == CONTROL_STAGE_SETUP ) - { - uint8_t const report_type = tu_u16_high(request->wValue); - uint8_t const report_id = tu_u16_low(request->wValue); + switch (request->bRequest) { + case HID_REQ_CONTROL_GET_REPORT: + if (stage == CONTROL_STAGE_SETUP) { + uint8_t const report_type = tu_u16_high(request->wValue); + uint8_t const report_id = tu_u16_low(request->wValue); - uint8_t* report_buf = p_hid->epin_buf; - uint16_t req_len = tu_min16(request->wLength, CFG_TUD_HID_EP_BUFSIZE); + uint8_t *report_buf = p_hid->ctrl_buf; + uint16_t req_len = tu_min16(request->wLength, CFG_TUD_HID_EP_BUFSIZE); - uint16_t xferlen = 0; + uint16_t xferlen = 0; - // If host request a specific Report ID, add ID to as 1 byte of response - if ( (report_id != HID_REPORT_TYPE_INVALID) && (req_len > 1) ) - { - *report_buf++ = report_id; - req_len--; + // If host request a specific Report ID, add ID to as 1 byte of response + if ((report_id != HID_REPORT_TYPE_INVALID) && (req_len > 1)) { + *report_buf++ = report_id; + req_len--; - xferlen++; - } + xferlen++; + } - xferlen += tud_hid_get_report_cb(hid_itf, report_id, (hid_report_type_t) report_type, report_buf, req_len); - TU_ASSERT( xferlen > 0 ); + xferlen += tud_hid_get_report_cb(hid_itf, report_id, (hid_report_type_t)report_type, report_buf, req_len); + TU_ASSERT(xferlen > 0); - tud_control_xfer(rhport, request, p_hid->epin_buf, xferlen); - } + tud_control_xfer(rhport, request, p_hid->ctrl_buf, xferlen); + } break; - case HID_REQ_CONTROL_SET_REPORT: - if ( stage == CONTROL_STAGE_SETUP ) - { - TU_VERIFY(request->wLength <= sizeof(p_hid->epout_buf)); - tud_control_xfer(rhport, request, p_hid->epout_buf, request->wLength); - } - else if ( stage == CONTROL_STAGE_ACK ) - { - uint8_t const report_type = tu_u16_high(request->wValue); - uint8_t const report_id = tu_u16_low(request->wValue); - - uint8_t const* report_buf = p_hid->epout_buf; - uint16_t report_len = tu_min16(request->wLength, CFG_TUD_HID_EP_BUFSIZE); + case HID_REQ_CONTROL_SET_REPORT: + if (stage == CONTROL_STAGE_SETUP) { + TU_VERIFY(request->wLength <= sizeof(p_hid->ctrl_buf)); + tud_control_xfer(rhport, request, p_hid->ctrl_buf, request->wLength); + } else if (stage == CONTROL_STAGE_ACK) { + uint8_t const report_type = tu_u16_high(request->wValue); + uint8_t const report_id = tu_u16_low(request->wValue); - // If host request a specific Report ID, extract report ID in buffer before invoking callback - if ( (report_id != HID_REPORT_TYPE_INVALID) && (report_len > 1) && (report_id == report_buf[0]) ) - { - report_buf++; - report_len--; - } + uint8_t const *report_buf = p_hid->ctrl_buf; + uint16_t report_len = tu_min16(request->wLength, CFG_TUD_HID_EP_BUFSIZE); - tud_hid_set_report_cb(hid_itf, report_id, (hid_report_type_t) report_type, report_buf, report_len); + // If host request a specific Report ID, extract report ID in buffer before invoking callback + if ((report_id != HID_REPORT_TYPE_INVALID) && (report_len > 1) && (report_id == report_buf[0])) { + report_buf++; + report_len--; } - break; - case HID_REQ_CONTROL_SET_IDLE: - if ( stage == CONTROL_STAGE_SETUP ) - { - p_hid->idle_rate = tu_u16_high(request->wValue); - if ( tud_hid_set_idle_cb ) - { - // stall request if callback return false - TU_VERIFY( tud_hid_set_idle_cb( hid_itf, p_hid->idle_rate) ); - } + tud_hid_set_report_cb(hid_itf, report_id, (hid_report_type_t)report_type, report_buf, report_len); + } + break; - tud_control_status(rhport, request); + case HID_REQ_CONTROL_SET_IDLE: + if (stage == CONTROL_STAGE_SETUP) { + p_hid->idle_rate = tu_u16_high(request->wValue); + if (tud_hid_set_idle_cb) { + // stall request if callback return false + TU_VERIFY(tud_hid_set_idle_cb(hid_itf, p_hid->idle_rate)); } + + tud_control_status(rhport, request); + } break; - case HID_REQ_CONTROL_GET_IDLE: - if ( stage == CONTROL_STAGE_SETUP ) - { - // TODO idle rate of report - tud_control_xfer(rhport, request, &p_hid->idle_rate, 1); - } + case HID_REQ_CONTROL_GET_IDLE: + if (stage == CONTROL_STAGE_SETUP) { + // TODO idle rate of report + tud_control_xfer(rhport, request, &p_hid->idle_rate, 1); + } break; - case HID_REQ_CONTROL_GET_PROTOCOL: - if ( stage == CONTROL_STAGE_SETUP ) - { - tud_control_xfer(rhport, request, &p_hid->protocol_mode, 1); - } + case HID_REQ_CONTROL_GET_PROTOCOL: + if (stage == CONTROL_STAGE_SETUP) { + tud_control_xfer(rhport, request, &p_hid->protocol_mode, 1); + } break; - case HID_REQ_CONTROL_SET_PROTOCOL: - if ( stage == CONTROL_STAGE_SETUP ) - { - tud_control_status(rhport, request); - } - else if ( stage == CONTROL_STAGE_ACK ) - { - p_hid->protocol_mode = (uint8_t) request->wValue; - if (tud_hid_set_protocol_cb) - { - tud_hid_set_protocol_cb(hid_itf, p_hid->protocol_mode); - } + case HID_REQ_CONTROL_SET_PROTOCOL: + if (stage == CONTROL_STAGE_SETUP) { + tud_control_status(rhport, request); + } else if (stage == CONTROL_STAGE_ACK) { + p_hid->protocol_mode = (uint8_t)request->wValue; + if (tud_hid_set_protocol_cb) { + tud_hid_set_protocol_cb(hid_itf, p_hid->protocol_mode); } + } break; - default: return false; // stall unsupported request + default: + return false; // stall unsupported request } - }else - { + } else { return false; // stall unsupported request } @@ -381,31 +356,43 @@ bool hidd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t bool hidd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { - (void) result; + (void)result; uint8_t instance = 0; - hidd_interface_t * p_hid = _hidd_itf; + hidd_interface_t *p_hid = _hidd_itf; // Identify which interface to use - for (instance = 0; instance < CFG_TUD_HID; instance++) - { + for (instance = 0; instance < CFG_TUD_HID; instance++) { p_hid = &_hidd_itf[instance]; - if ( (ep_addr == p_hid->ep_out) || (ep_addr == p_hid->ep_in) ) break; + if ((ep_addr == p_hid->ep_out) || (ep_addr == p_hid->ep_in)) + break; } TU_ASSERT(instance < CFG_TUD_HID); + // Check if there was a problem + if (XFER_RESULT_SUCCESS != result) { // Inform application about the issue + if (tud_hid_report_fail_cb) { + tud_hid_report_fail_cb(instance, ep_addr, (uint16_t)xferred_bytes); + } + + // Allow a new transfer to be received if issue happened on an OUT endpoint + if (ep_addr == p_hid->ep_out) { + // Prepare the OUT endpoint to be able to receive a new transfer + TU_ASSERT(usbd_edpt_xfer(rhport, p_hid->ep_out, p_hid->epout_buf, sizeof(p_hid->epout_buf))); + } + + return true; + } + // Sent report successfully - if (ep_addr == p_hid->ep_in) - { - if (tud_hid_report_complete_cb) - { - tud_hid_report_complete_cb(instance, p_hid->epin_buf, (uint16_t) xferred_bytes); + if (ep_addr == p_hid->ep_in) { + if (tud_hid_report_complete_cb) { + tud_hid_report_complete_cb(instance, p_hid->epin_buf, (uint16_t)xferred_bytes); } } - // Received report - else if (ep_addr == p_hid->ep_out) - { - tud_hid_set_report_cb(instance, 0, HID_REPORT_TYPE_INVALID, p_hid->epout_buf, (uint16_t) xferred_bytes); + // Received report successfully + else if (ep_addr == p_hid->ep_out) { + tud_hid_set_report_cb(instance, 0, HID_REPORT_TYPE_OUTPUT, p_hid->epout_buf, (uint16_t)xferred_bytes); TU_ASSERT(usbd_edpt_xfer(rhport, p_hid->ep_out, p_hid->epout_buf, sizeof(p_hid->epout_buf))); } diff --git a/src/class/hid/hid_device.h b/src/class/hid/hid_device.h index 17b24def1..7bdd53636 100644 --- a/src/class/hid/hid_device.h +++ b/src/class/hid/hid_device.h @@ -72,6 +72,16 @@ bool tud_hid_n_keyboard_report(uint8_t instance, uint8_t report_id, uint8_t modi // use template layout report as defined by hid_mouse_report_t bool tud_hid_n_mouse_report(uint8_t instance, uint8_t report_id, uint8_t buttons, int8_t x, int8_t y, int8_t vertical, int8_t horizontal); +// ABSOLUTE MOUSE: convenient helper to send absolute mouse report if application +// use template layout report as defined by hid_abs_mouse_report_t +bool tud_hid_n_abs_mouse_report(uint8_t instance, uint8_t report_id, uint8_t buttons, int16_t x, int16_t y, int8_t vertical, int8_t horizontal); + + +static inline bool tud_hid_abs_mouse_report(uint8_t report_id, uint8_t buttons, int16_t x, int16_t y, int8_t vertical, int8_t horizontal) +{ + return tud_hid_n_abs_mouse_report(0, report_id, buttons, x, y, vertical, horizontal); +} + // Gamepad: convenient helper to send gamepad report if application // use template layout report TUD_HID_REPORT_DESC_GAMEPAD bool tud_hid_n_gamepad_report(uint8_t instance, uint8_t report_id, int8_t x, int8_t y, int8_t z, int8_t rz, int8_t rx, int8_t ry, uint8_t hat, uint32_t buttons); @@ -118,6 +128,8 @@ TU_ATTR_WEAK bool tud_hid_set_idle_cb(uint8_t instance, uint8_t idle_rate); // Note: For composite reports, report[0] is report ID TU_ATTR_WEAK void tud_hid_report_complete_cb(uint8_t instance, uint8_t const* report, uint16_t len); +// Invoked when a transfer wasn't successful +TU_ATTR_WEAK void tud_hid_report_fail_cb(uint8_t instance, uint8_t ep_addr, uint16_t len); //--------------------------------------------------------------------+ // Inline Functions @@ -266,6 +278,55 @@ static inline bool tud_hid_gamepad_report(uint8_t report_id, int8_t x, int8_t y HID_COLLECTION_END , \ HID_COLLECTION_END \ +// Absolute Mouse Report Descriptor Template +#define TUD_HID_REPORT_DESC_ABSMOUSE(...) \ + HID_USAGE_PAGE ( HID_USAGE_PAGE_DESKTOP ) ,\ + HID_USAGE ( HID_USAGE_DESKTOP_MOUSE ) ,\ + HID_COLLECTION ( HID_COLLECTION_APPLICATION ) ,\ + /* Report ID if any */\ + __VA_ARGS__ \ + HID_USAGE ( HID_USAGE_DESKTOP_POINTER ) ,\ + HID_COLLECTION ( HID_COLLECTION_PHYSICAL ) ,\ + HID_USAGE_PAGE ( HID_USAGE_PAGE_BUTTON ) ,\ + HID_USAGE_MIN ( 1 ) ,\ + HID_USAGE_MAX ( 5 ) ,\ + HID_LOGICAL_MIN ( 0 ) ,\ + HID_LOGICAL_MAX ( 1 ) ,\ + /* Left, Right, Middle, Backward, Forward buttons */ \ + HID_REPORT_COUNT( 5 ) ,\ + HID_REPORT_SIZE ( 1 ) ,\ + HID_INPUT ( HID_DATA | HID_VARIABLE | HID_ABSOLUTE ) ,\ + /* 3 bit padding */ \ + HID_REPORT_COUNT( 1 ) ,\ + HID_REPORT_SIZE ( 3 ) ,\ + HID_INPUT ( HID_CONSTANT ) ,\ + HID_USAGE_PAGE ( HID_USAGE_PAGE_DESKTOP ) ,\ + /* X, Y absolute position [0, 32767] */ \ + HID_USAGE ( HID_USAGE_DESKTOP_X ) ,\ + HID_USAGE ( HID_USAGE_DESKTOP_Y ) ,\ + HID_LOGICAL_MIN ( 0x00 ) ,\ + HID_LOGICAL_MAX_N( 0x7FFF, 2 ) ,\ + HID_REPORT_SIZE ( 16 ) ,\ + HID_REPORT_COUNT ( 2 ) ,\ + HID_INPUT ( HID_DATA | HID_VARIABLE | HID_ABSOLUTE ) ,\ + /* Vertical wheel scroll [-127, 127] */ \ + HID_USAGE ( HID_USAGE_DESKTOP_WHEEL ) ,\ + HID_LOGICAL_MIN ( 0x81 ) ,\ + HID_LOGICAL_MAX ( 0x7f ) ,\ + HID_REPORT_COUNT( 1 ) ,\ + HID_REPORT_SIZE ( 8 ) ,\ + HID_INPUT ( HID_DATA | HID_VARIABLE | HID_RELATIVE ) ,\ + HID_USAGE_PAGE ( HID_USAGE_PAGE_CONSUMER ), \ + /* Horizontal wheel scroll [-127, 127] */ \ + HID_USAGE_N ( HID_USAGE_CONSUMER_AC_PAN, 2 ), \ + HID_LOGICAL_MIN ( 0x81 ), \ + HID_LOGICAL_MAX ( 0x7f ), \ + HID_REPORT_COUNT( 1 ), \ + HID_REPORT_SIZE ( 8 ), \ + HID_INPUT ( HID_DATA | HID_VARIABLE | HID_RELATIVE ), \ + HID_COLLECTION_END , \ + HID_COLLECTION_END \ + // Consumer Control Report Descriptor Template #define TUD_HID_REPORT_DESC_CONSUMER(...) \ HID_USAGE_PAGE ( HID_USAGE_PAGE_CONSUMER ) ,\ @@ -406,11 +467,13 @@ static inline bool tud_hid_gamepad_report(uint8_t report_id, int8_t x, int8_t y // Internal Class Driver API //--------------------------------------------------------------------+ void hidd_init (void); +bool hidd_deinit (void); void hidd_reset (uint8_t rhport); uint16_t hidd_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool hidd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); bool hidd_xfer_cb (uint8_t rhport, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); + #ifdef __cplusplus } #endif diff --git a/src/class/hid/hid_host.c b/src/class/hid/hid_host.c index 6abe298e5..115a8a4df 100644 --- a/src/class/hid/hid_host.c +++ b/src/class/hid/hid_host.c @@ -29,30 +29,32 @@ #if (CFG_TUH_ENABLED && CFG_TUH_HID) #include "host/usbh.h" -#include "host/usbh_classdriver.h" +#include "host/usbh_pvt.h" #include "hid_host.h" -// Debug level, TUSB_CFG_DEBUG must be at least this level for debug message -#define HIDH_DEBUG 2 -#define TU_LOG_DRV(...) TU_LOG(HIDH_DEBUG, __VA_ARGS__) +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUH_HID_LOG_LEVEL + #define CFG_TUH_HID_LOG_LEVEL CFG_TUH_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUH_HID_LOG_LEVEL, __VA_ARGS__) //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ - -typedef struct -{ +typedef struct { uint8_t daddr; uint8_t itf_num; uint8_t ep_in; uint8_t ep_out; + bool mounted; // Enumeration is complete uint8_t itf_protocol; // None, Keyboard, Mouse uint8_t protocol_mode; // Boot (0) or Report protocol (1) - uint8_t report_desc_type; + uint8_t report_desc_type; uint16_t report_desc_len; uint16_t epin_size; @@ -65,81 +67,62 @@ typedef struct CFG_TUH_MEM_SECTION tu_static hidh_interface_t _hidh_itf[CFG_TUH_HID]; +tu_static uint8_t _hidh_default_protocol = HID_PROTOCOL_BOOT; + //--------------------------------------------------------------------+ // Helper //--------------------------------------------------------------------+ - -TU_ATTR_ALWAYS_INLINE static inline -hidh_interface_t* get_hid_itf(uint8_t daddr, uint8_t idx) -{ +TU_ATTR_ALWAYS_INLINE static inline hidh_interface_t* get_hid_itf(uint8_t daddr, uint8_t idx) { TU_ASSERT(daddr > 0 && idx < CFG_TUH_HID, NULL); hidh_interface_t* p_hid = &_hidh_itf[idx]; return (p_hid->daddr == daddr) ? p_hid : NULL; } // Get instance ID by endpoint address -static uint8_t get_idx_by_epaddr(uint8_t daddr, uint8_t ep_addr) -{ - for ( uint8_t idx = 0; idx < CFG_TUH_HID; idx++ ) - { - hidh_interface_t const * p_hid = &_hidh_itf[idx]; - - if ( p_hid->daddr == daddr && - (p_hid->ep_in == ep_addr || p_hid->ep_out == ep_addr) ) - { +static uint8_t get_idx_by_epaddr(uint8_t daddr, uint8_t ep_addr) { + for (uint8_t idx = 0; idx < CFG_TUH_HID; idx++) { + hidh_interface_t const* p_hid = &_hidh_itf[idx]; + if (p_hid->daddr == daddr && + (p_hid->ep_in == ep_addr || p_hid->ep_out == ep_addr)) { return idx; } } - return TUSB_INDEX_INVALID_8; } -static hidh_interface_t* find_new_itf(void) -{ - for(uint8_t i=0; i<CFG_TUH_HID; i++) - { +static hidh_interface_t* find_new_itf(void) { + for (uint8_t i = 0; i < CFG_TUH_HID; i++) { if (_hidh_itf[i].daddr == 0) return &_hidh_itf[i]; } - return NULL; } //--------------------------------------------------------------------+ // Interface API //--------------------------------------------------------------------+ - -uint8_t tuh_hid_itf_get_count(uint8_t daddr) -{ +uint8_t tuh_hid_itf_get_count(uint8_t daddr) { uint8_t count = 0; - - for(uint8_t i=0; i<CFG_TUH_HID; i++) - { + for (uint8_t i = 0; i < CFG_TUH_HID; i++) { if (_hidh_itf[i].daddr == daddr) count++; } - return count; } -uint8_t tuh_hid_itf_get_total_count(void) -{ +uint8_t tuh_hid_itf_get_total_count(void) { uint8_t count = 0; - - for(uint8_t i=0; i<CFG_TUH_HID; i++) - { + for (uint8_t i = 0; i < CFG_TUH_HID; i++) { if (_hidh_itf[i].daddr != 0) count++; } - return count; } -bool tuh_hid_mounted(uint8_t daddr, uint8_t idx) -{ +bool tuh_hid_mounted(uint8_t daddr, uint8_t idx) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); - return p_hid != NULL; + TU_VERIFY(p_hid); + return p_hid->mounted; } -bool tuh_hid_itf_get_info(uint8_t daddr, uint8_t idx, tuh_itf_info_t* info) -{ +bool tuh_hid_itf_get_info(uint8_t daddr, uint8_t idx, tuh_itf_info_t* info) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); TU_VERIFY(p_hid && info); @@ -147,34 +130,30 @@ bool tuh_hid_itf_get_info(uint8_t daddr, uint8_t idx, tuh_itf_info_t* info) // re-construct descriptor tusb_desc_interface_t* desc = &info->desc; - desc->bLength = sizeof(tusb_desc_interface_t); - desc->bDescriptorType = TUSB_DESC_INTERFACE; + desc->bLength = sizeof(tusb_desc_interface_t); + desc->bDescriptorType = TUSB_DESC_INTERFACE; - desc->bInterfaceNumber = p_hid->itf_num; - desc->bAlternateSetting = 0; - desc->bNumEndpoints = (uint8_t) ((p_hid->ep_in ? 1u : 0u) + (p_hid->ep_out ? 1u : 0u)); - desc->bInterfaceClass = TUSB_CLASS_HID; + desc->bInterfaceNumber = p_hid->itf_num; + desc->bAlternateSetting = 0; + desc->bNumEndpoints = (uint8_t) ((p_hid->ep_in ? 1u : 0u) + (p_hid->ep_out ? 1u : 0u)); + desc->bInterfaceClass = TUSB_CLASS_HID; desc->bInterfaceSubClass = (p_hid->itf_protocol ? HID_SUBCLASS_BOOT : HID_SUBCLASS_NONE); desc->bInterfaceProtocol = p_hid->itf_protocol; - desc->iInterface = 0; // not used yet + desc->iInterface = 0; // not used yet return true; } -uint8_t tuh_hid_itf_get_index(uint8_t daddr, uint8_t itf_num) -{ - for ( uint8_t idx = 0; idx < CFG_TUH_HID; idx++ ) - { - hidh_interface_t const * p_hid = &_hidh_itf[idx]; - - if ( p_hid->daddr == daddr && p_hid->itf_num == itf_num) return idx; +uint8_t tuh_hid_itf_get_index(uint8_t daddr, uint8_t itf_num) { + for (uint8_t idx = 0; idx < CFG_TUH_HID; idx++) { + hidh_interface_t const* p_hid = &_hidh_itf[idx]; + if (p_hid->daddr == daddr && p_hid->itf_num == itf_num) return idx; } return TUSB_INDEX_INVALID_8; } -uint8_t tuh_hid_interface_protocol(uint8_t daddr, uint8_t idx) -{ +uint8_t tuh_hid_interface_protocol(uint8_t daddr, uint8_t idx) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); return p_hid ? p_hid->itf_protocol : 0; } @@ -182,150 +161,179 @@ uint8_t tuh_hid_interface_protocol(uint8_t daddr, uint8_t idx) //--------------------------------------------------------------------+ // Control Endpoint API //--------------------------------------------------------------------+ - -uint8_t tuh_hid_get_protocol(uint8_t daddr, uint8_t idx) -{ +uint8_t tuh_hid_get_protocol(uint8_t daddr, uint8_t idx) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); return p_hid ? p_hid->protocol_mode : 0; } -static void set_protocol_complete(tuh_xfer_t* xfer) -{ +static void set_protocol_complete(tuh_xfer_t* xfer) { uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); - uint8_t const daddr = xfer->daddr; - uint8_t const idx = tuh_hid_itf_get_index(daddr, itf_num); + uint8_t const daddr = xfer->daddr; + uint8_t const idx = tuh_hid_itf_get_index(daddr, itf_num); hidh_interface_t* p_hid = get_hid_itf(daddr, idx); - TU_VERIFY(p_hid, ); + TU_VERIFY(p_hid,); - if (XFER_RESULT_SUCCESS == xfer->result) - { + if (XFER_RESULT_SUCCESS == xfer->result) { p_hid->protocol_mode = (uint8_t) tu_le16toh(xfer->setup->wValue); } - if (tuh_hid_set_protocol_complete_cb) - { + if (tuh_hid_set_protocol_complete_cb) { tuh_hid_set_protocol_complete_cb(daddr, idx, p_hid->protocol_mode); } } -static bool _hidh_set_protocol(uint8_t daddr, uint8_t itf_num, uint8_t protocol, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +void tuh_hid_set_default_protocol(uint8_t protocol) { + _hidh_default_protocol = protocol; +} + +static bool _hidh_set_protocol(uint8_t daddr, uint8_t itf_num, uint8_t protocol, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { TU_LOG_DRV("HID Set Protocol = %d\r\n", protocol); - tusb_control_request_t const request = - { - .bmRequestType_bit = - { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_OUT - }, - .bRequest = HID_REQ_CONTROL_SET_PROTOCOL, - .wValue = protocol, - .wIndex = itf_num, - .wLength = 0 + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_OUT + }, + .bRequest = HID_REQ_CONTROL_SET_PROTOCOL, + .wValue = protocol, + .wIndex = itf_num, + .wLength = 0 }; - tuh_xfer_t xfer = - { - .daddr = daddr, - .ep_addr = 0, - .setup = &request, - .buffer = NULL, - .complete_cb = complete_cb, - .user_data = user_data + tuh_xfer_t xfer = { + .daddr = daddr, + .ep_addr = 0, + .setup = &request, + .buffer = NULL, + .complete_cb = complete_cb, + .user_data = user_data }; return tuh_control_xfer(&xfer); } -bool tuh_hid_set_protocol(uint8_t daddr, uint8_t idx, uint8_t protocol) -{ +bool tuh_hid_set_protocol(uint8_t daddr, uint8_t idx, uint8_t protocol) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); TU_VERIFY(p_hid && p_hid->itf_protocol != HID_ITF_PROTOCOL_NONE); return _hidh_set_protocol(daddr, p_hid->itf_num, protocol, set_protocol_complete, 0); } -static void set_report_complete(tuh_xfer_t* xfer) -{ +static void get_report_complete(tuh_xfer_t* xfer) { + TU_LOG_DRV("HID Get Report complete\r\n"); + + if (tuh_hid_get_report_complete_cb) { + uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); + uint8_t const idx = tuh_hid_itf_get_index(xfer->daddr, itf_num); + + uint8_t const report_type = tu_u16_high(xfer->setup->wValue); + uint8_t const report_id = tu_u16_low(xfer->setup->wValue); + + tuh_hid_get_report_complete_cb(xfer->daddr, idx, report_id, report_type, + (xfer->result == XFER_RESULT_SUCCESS) ? xfer->setup->wLength : 0); + } +} + +bool tuh_hid_get_report(uint8_t daddr, uint8_t idx, uint8_t report_id, uint8_t report_type, void* report, uint16_t len) { + hidh_interface_t* p_hid = get_hid_itf(daddr, idx); + TU_VERIFY(p_hid); + TU_LOG_DRV("HID Get Report: id = %u, type = %u, len = %u\r\n", report_id, report_type, len); + + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_IN + }, + .bRequest = HID_REQ_CONTROL_GET_REPORT, + .wValue = tu_htole16(tu_u16(report_type, report_id)), + .wIndex = tu_htole16((uint16_t) p_hid->itf_num), + .wLength = len + }; + + tuh_xfer_t xfer = { + .daddr = daddr, + .ep_addr = 0, + .setup = &request, + .buffer = report, + .complete_cb = get_report_complete, + .user_data = 0 + }; + + return tuh_control_xfer(&xfer); +} + +static void set_report_complete(tuh_xfer_t* xfer) { TU_LOG_DRV("HID Set Report complete\r\n"); - if (tuh_hid_set_report_complete_cb) - { + if (tuh_hid_set_report_complete_cb) { uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); - uint8_t const idx = tuh_hid_itf_get_index(xfer->daddr, itf_num); + uint8_t const idx = tuh_hid_itf_get_index(xfer->daddr, itf_num); uint8_t const report_type = tu_u16_high(xfer->setup->wValue); - uint8_t const report_id = tu_u16_low(xfer->setup->wValue); + uint8_t const report_id = tu_u16_low(xfer->setup->wValue); tuh_hid_set_report_complete_cb(xfer->daddr, idx, report_id, report_type, (xfer->result == XFER_RESULT_SUCCESS) ? xfer->setup->wLength : 0); } } -bool tuh_hid_set_report(uint8_t daddr, uint8_t idx, uint8_t report_id, uint8_t report_type, void* report, uint16_t len) -{ +bool tuh_hid_set_report(uint8_t daddr, uint8_t idx, uint8_t report_id, uint8_t report_type, void* report, uint16_t len) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); TU_VERIFY(p_hid); - TU_LOG_DRV("HID Set Report: id = %u, type = %u, len = %u\r\n", report_id, report_type, len); - tusb_control_request_t const request = - { - .bmRequestType_bit = - { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_OUT - }, - .bRequest = HID_REQ_CONTROL_SET_REPORT, - .wValue = tu_htole16(tu_u16(report_type, report_id)), - .wIndex = tu_htole16((uint16_t)p_hid->itf_num), - .wLength = len + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_OUT + }, + .bRequest = HID_REQ_CONTROL_SET_REPORT, + .wValue = tu_htole16(tu_u16(report_type, report_id)), + .wIndex = tu_htole16((uint16_t) p_hid->itf_num), + .wLength = len }; - tuh_xfer_t xfer = - { - .daddr = daddr, - .ep_addr = 0, - .setup = &request, - .buffer = report, - .complete_cb = set_report_complete, - .user_data = 0 + tuh_xfer_t xfer = { + .daddr = daddr, + .ep_addr = 0, + .setup = &request, + .buffer = report, + .complete_cb = set_report_complete, + .user_data = 0 }; return tuh_control_xfer(&xfer); } -static bool _hidh_set_idle(uint8_t daddr, uint8_t itf_num, uint16_t idle_rate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool _hidh_set_idle(uint8_t daddr, uint8_t itf_num, uint16_t idle_rate, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { // SET IDLE request, device can stall if not support this request TU_LOG_DRV("HID Set Idle \r\n"); - tusb_control_request_t const request = - { - .bmRequestType_bit = - { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_OUT - }, - .bRequest = HID_REQ_CONTROL_SET_IDLE, - .wValue = tu_htole16(idle_rate), - .wIndex = tu_htole16((uint16_t)itf_num), - .wLength = 0 + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_OUT + }, + .bRequest = HID_REQ_CONTROL_SET_IDLE, + .wValue = tu_htole16(idle_rate), + .wIndex = tu_htole16((uint16_t) itf_num), + .wLength = 0 }; - tuh_xfer_t xfer = - { - .daddr = daddr, - .ep_addr = 0, - .setup = &request, - .buffer = NULL, - .complete_cb = complete_cb, - .user_data = user_data + tuh_xfer_t xfer = { + .daddr = daddr, + .ep_addr = 0, + .setup = &request, + .buffer = NULL, + .complete_cb = complete_cb, + .user_data = user_data }; return tuh_control_xfer(&xfer); @@ -336,68 +344,60 @@ static bool _hidh_set_idle(uint8_t daddr, uint8_t itf_num, uint16_t idle_rate, t //--------------------------------------------------------------------+ // Check if HID interface is ready to receive report -bool tuh_hid_receive_ready(uint8_t dev_addr, uint8_t idx) -{ +bool tuh_hid_receive_ready(uint8_t dev_addr, uint8_t idx) { hidh_interface_t* p_hid = get_hid_itf(dev_addr, idx); TU_VERIFY(p_hid); - return !usbh_edpt_busy(dev_addr, p_hid->ep_in); } -bool tuh_hid_receive_report(uint8_t daddr, uint8_t idx) -{ +bool tuh_hid_receive_report(uint8_t daddr, uint8_t idx) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); TU_VERIFY(p_hid); // claim endpoint - TU_VERIFY( usbh_edpt_claim(daddr, p_hid->ep_in) ); + TU_VERIFY(usbh_edpt_claim(daddr, p_hid->ep_in)); - if ( !usbh_edpt_xfer(daddr, p_hid->ep_in, p_hid->epin_buf, p_hid->epin_size) ) - { + if (!usbh_edpt_xfer(daddr, p_hid->ep_in, p_hid->epin_buf, p_hid->epin_size)) { usbh_edpt_release(daddr, p_hid->ep_in); return false; } return true; } - -bool tuh_hid_send_ready(uint8_t dev_addr, uint8_t idx) -{ +bool tuh_hid_receive_abort(uint8_t dev_addr, uint8_t idx) { hidh_interface_t* p_hid = get_hid_itf(dev_addr, idx); TU_VERIFY(p_hid); + return tuh_edpt_abort_xfer(dev_addr, p_hid->ep_in); +} +bool tuh_hid_send_ready(uint8_t dev_addr, uint8_t idx) { + hidh_interface_t* p_hid = get_hid_itf(dev_addr, idx); + TU_VERIFY(p_hid); return !usbh_edpt_busy(dev_addr, p_hid->ep_out); } -bool tuh_hid_send_report(uint8_t daddr, uint8_t idx, uint8_t report_id, const void* report, uint16_t len) -{ +bool tuh_hid_send_report(uint8_t daddr, uint8_t idx, uint8_t report_id, const void* report, uint16_t len) { TU_LOG_DRV("HID Send Report %d\r\n", report_id); hidh_interface_t* p_hid = get_hid_itf(daddr, idx); TU_VERIFY(p_hid); - if (p_hid->ep_out == 0) - { + if (p_hid->ep_out == 0) { // This HID does not have an out endpoint (other than control) return false; - } - else if (len > CFG_TUH_HID_EPOUT_BUFSIZE || - (report_id != 0 && len > (CFG_TUH_HID_EPOUT_BUFSIZE - 1))) - { + } else if (len > CFG_TUH_HID_EPOUT_BUFSIZE || + (report_id != 0 && len > (CFG_TUH_HID_EPOUT_BUFSIZE - 1))) { // ep_out buffer is not large enough to hold contents return false; } // claim endpoint - TU_VERIFY( usbh_edpt_claim(daddr, p_hid->ep_out) ); + TU_VERIFY(usbh_edpt_claim(daddr, p_hid->ep_out)); - if (report_id == 0) - { + if (report_id == 0) { // No report ID in transmission memcpy(&p_hid->epout_buf[0], report, len); - } - else - { + } else { p_hid->epout_buf[0] = report_id; memcpy(&p_hid->epout_buf[1], report, len); ++len; // 1 more byte for report_id @@ -405,8 +405,7 @@ bool tuh_hid_send_report(uint8_t daddr, uint8_t idx, uint8_t report_id, const vo TU_LOG3_MEM(p_hid->epout_buf, len, 2); - if ( !usbh_edpt_xfer(daddr, p_hid->ep_out, p_hid->epout_buf, len) ) - { + if (!usbh_edpt_xfer(daddr, p_hid->ep_out, p_hid->epout_buf, len)) { usbh_edpt_release(daddr, p_hid->ep_out); return false; } @@ -417,13 +416,17 @@ bool tuh_hid_send_report(uint8_t daddr, uint8_t idx, uint8_t report_id, const vo //--------------------------------------------------------------------+ // USBH API //--------------------------------------------------------------------+ -void hidh_init(void) -{ +bool hidh_init(void) { + TU_LOG_DRV("sizeof(hidh_interface_t) = %u\r\n", sizeof(hidh_interface_t)); tu_memclr(_hidh_itf, sizeof(_hidh_itf)); + return true; } -bool hidh_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) -{ +bool hidh_deinit(void) { + return true; +} + +bool hidh_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { (void) result; uint8_t const dir = tu_edpt_dir(ep_addr); @@ -432,29 +435,26 @@ bool hidh_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t result, uint32_t hidh_interface_t* p_hid = get_hid_itf(daddr, idx); TU_VERIFY(p_hid); - if ( dir == TUSB_DIR_IN ) - { + if (dir == TUSB_DIR_IN) { TU_LOG_DRV(" Get Report callback (%u, %u)\r\n", daddr, idx); TU_LOG3_MEM(p_hid->epin_buf, xferred_bytes, 2); tuh_hid_report_received_cb(daddr, idx, p_hid->epin_buf, (uint16_t) xferred_bytes); - }else - { - if (tuh_hid_report_sent_cb) tuh_hid_report_sent_cb(daddr, idx, p_hid->epout_buf, (uint16_t) xferred_bytes); + } else { + if (tuh_hid_report_sent_cb) { + tuh_hid_report_sent_cb(daddr, idx, p_hid->epout_buf, (uint16_t) xferred_bytes); + } } return true; } -void hidh_close(uint8_t daddr) -{ - for(uint8_t i=0; i<CFG_TUH_HID; i++) - { +void hidh_close(uint8_t daddr) { + for (uint8_t i = 0; i < CFG_TUH_HID; i++) { hidh_interface_t* p_hid = &_hidh_itf[i]; - if (p_hid->daddr == daddr) - { + if (p_hid->daddr == daddr) { TU_LOG_DRV(" HIDh close addr = %u index = %u\r\n", daddr, i); - if(tuh_hid_umount_cb) tuh_hid_umount_cb(daddr, i); - p_hid->daddr = 0; + if (tuh_hid_umount_cb) tuh_hid_umount_cb(daddr, i); + tu_memclr(p_hid, sizeof(hidh_interface_t)); } } } @@ -463,25 +463,22 @@ void hidh_close(uint8_t daddr) // Enumeration //--------------------------------------------------------------------+ -bool hidh_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *desc_itf, uint16_t max_len) -{ +bool hidh_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const* desc_itf, uint16_t max_len) { (void) rhport; (void) max_len; TU_VERIFY(TUSB_CLASS_HID == desc_itf->bInterfaceClass); - TU_LOG_DRV("[%u] HID opening Interface %u\r\n", daddr, desc_itf->bInterfaceNumber); // 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)); TU_ASSERT(max_len >= drv_len); - - uint8_t const *p_desc = (uint8_t const *) desc_itf; + 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; + tusb_hid_descriptor_hid_t const* desc_hid = (tusb_hid_descriptor_hid_t const*) p_desc; TU_ASSERT(HID_DESC_TYPE_HID == desc_hid->bDescriptorType); hidh_interface_t* p_hid = find_new_itf(); @@ -490,38 +487,33 @@ bool hidh_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *desc_ //------------- Endpoint Descriptors -------------// p_desc = tu_desc_next(p_desc); - tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) 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++) - { + for (int i = 0; i < desc_itf->bNumEndpoints; i++) { TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType); - TU_ASSERT( tuh_edpt_open(daddr, desc_ep) ); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); - if(tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) - { - p_hid->ep_in = desc_ep->bEndpointAddress; + if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { + p_hid->ep_in = desc_ep->bEndpointAddress; p_hid->epin_size = tu_edpt_packet_size(desc_ep); - } - else - { - p_hid->ep_out = desc_ep->bEndpointAddress; + } else { + p_hid->ep_out = desc_ep->bEndpointAddress; p_hid->epout_size = tu_edpt_packet_size(desc_ep); } p_desc = tu_desc_next(p_desc); - desc_ep = (tusb_desc_endpoint_t const *) p_desc; + desc_ep = (tusb_desc_endpoint_t const*) p_desc; } - p_hid->itf_num = desc_itf->bInterfaceNumber; + p_hid->itf_num = desc_itf->bInterfaceNumber; // Assume bNumDescriptors = 1 p_hid->report_desc_type = desc_hid->bReportType; - p_hid->report_desc_len = tu_unaligned_read16(&desc_hid->wReportLength); + p_hid->report_desc_len = tu_unaligned_read16(&desc_hid->wReportLength); // Per HID Specs: default is Report protocol, though we will force Boot protocol when set_config - p_hid->protocol_mode = HID_PROTOCOL_BOOT; - if ( HID_SUBCLASS_BOOT == desc_itf->bInterfaceSubClass ) - { + p_hid->protocol_mode = _hidh_default_protocol; + if (HID_SUBCLASS_BOOT == desc_itf->bInterfaceSubClass) { p_hid->itf_protocol = desc_itf->bInterfaceProtocol; } @@ -542,15 +534,14 @@ enum { static void config_driver_mount_complete(uint8_t daddr, uint8_t idx, uint8_t const* desc_report, uint16_t desc_len); static void process_set_config(tuh_xfer_t* xfer); -bool hidh_set_config(uint8_t daddr, uint8_t itf_num) -{ +bool hidh_set_config(uint8_t daddr, uint8_t itf_num) { tusb_control_request_t request; request.wIndex = tu_htole16((uint16_t) itf_num); tuh_xfer_t xfer; - xfer.daddr = daddr; - xfer.result = XFER_RESULT_SUCCESS; - xfer.setup = &request; + xfer.daddr = daddr; + xfer.result = XFER_RESULT_SUCCESS; + xfer.setup = &request; xfer.user_data = CONFG_SET_IDLE; // fake request to kick-off the set config process @@ -559,71 +550,68 @@ bool hidh_set_config(uint8_t daddr, uint8_t itf_num) return true; } -static void process_set_config(tuh_xfer_t* xfer) -{ +static void process_set_config(tuh_xfer_t* xfer) { // Stall is a valid response for SET_IDLE, sometime SET_PROTOCOL as well // therefore we could ignore its result - if ( !(xfer->setup->bRequest == HID_REQ_CONTROL_SET_IDLE || - xfer->setup->bRequest == HID_REQ_CONTROL_SET_PROTOCOL) ) - { - TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS, ); + if (!(xfer->setup->bRequest == HID_REQ_CONTROL_SET_IDLE || + xfer->setup->bRequest == HID_REQ_CONTROL_SET_PROTOCOL)) { + TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS,); } uintptr_t const state = xfer->user_data; uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); - uint8_t const daddr = xfer->daddr; + uint8_t const daddr = xfer->daddr; - uint8_t const idx = tuh_hid_itf_get_index(daddr, itf_num); + uint8_t const idx = tuh_hid_itf_get_index(daddr, itf_num); hidh_interface_t* p_hid = get_hid_itf(daddr, idx); - TU_VERIFY(p_hid, ); + TU_VERIFY(p_hid,); - switch(state) - { - case CONFG_SET_IDLE: - { + switch (state) { + case CONFG_SET_IDLE: { // Idle rate = 0 mean only report when there is changes const uint16_t idle_rate = 0; - const uintptr_t next_state = (p_hid->itf_protocol != HID_ITF_PROTOCOL_NONE) ? CONFIG_SET_PROTOCOL : CONFIG_GET_REPORT_DESC; + const uintptr_t next_state = (p_hid->itf_protocol != HID_ITF_PROTOCOL_NONE) + ? CONFIG_SET_PROTOCOL : CONFIG_GET_REPORT_DESC; _hidh_set_idle(daddr, itf_num, idle_rate, process_set_config, next_state); + break; } - break; case CONFIG_SET_PROTOCOL: - _hidh_set_protocol(daddr, p_hid->itf_num, HID_PROTOCOL_BOOT, process_set_config, CONFIG_GET_REPORT_DESC); - break; + _hidh_set_protocol(daddr, p_hid->itf_num, _hidh_default_protocol, process_set_config, CONFIG_GET_REPORT_DESC); + break; case CONFIG_GET_REPORT_DESC: // Get Report Descriptor if possible // using usbh enumeration buffer since report descriptor can be very long - if( p_hid->report_desc_len > CFG_TUH_ENUMERATION_BUFSIZE ) - { + if (p_hid->report_desc_len > CFG_TUH_ENUMERATION_BUFSIZE) { TU_LOG_DRV("HID Skip Report Descriptor since it is too large %u bytes\r\n", p_hid->report_desc_len); // Driver is mounted without report descriptor config_driver_mount_complete(daddr, idx, NULL, 0); - }else - { - tuh_descriptor_get_hid_report(daddr, itf_num, p_hid->report_desc_type, 0, usbh_get_enum_buf(), p_hid->report_desc_len, process_set_config, CONFIG_COMPLETE); + } else { + tuh_descriptor_get_hid_report(daddr, itf_num, p_hid->report_desc_type, 0, + usbh_get_enum_buf(), p_hid->report_desc_len, + process_set_config, CONFIG_COMPLETE); } break; - case CONFIG_COMPLETE: - { + case CONFIG_COMPLETE: { uint8_t const* desc_report = usbh_get_enum_buf(); - uint16_t const desc_len = tu_le16toh(xfer->setup->wLength); + uint16_t const desc_len = tu_le16toh(xfer->setup->wLength); config_driver_mount_complete(daddr, idx, desc_report, desc_len); + break; } - break; - default: break; + default: + break; } } -static void config_driver_mount_complete(uint8_t daddr, uint8_t idx, uint8_t const* desc_report, uint16_t desc_len) -{ +static void config_driver_mount_complete(uint8_t daddr, uint8_t idx, uint8_t const* desc_report, uint16_t desc_len) { hidh_interface_t* p_hid = get_hid_itf(daddr, idx); - TU_VERIFY(p_hid, ); + TU_VERIFY(p_hid,); + p_hid->mounted = true; // enumeration is complete if (tuh_hid_mount_cb) tuh_hid_mount_cb(daddr, idx, desc_report, desc_len); @@ -636,21 +624,19 @@ static void config_driver_mount_complete(uint8_t daddr, uint8_t idx, uint8_t con // Report Descriptor Parser //--------------------------------------------------------------------+ -uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* report_info_arr, uint8_t arr_count, uint8_t const* desc_report, uint16_t desc_len) -{ +uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* report_info_arr, uint8_t arr_count, + uint8_t const* desc_report, uint16_t desc_len) { // Report Item 6.2.2.2 USB HID 1.11 - union TU_ATTR_PACKED - { + union TU_ATTR_PACKED { uint8_t byte; - struct TU_ATTR_PACKED - { - uint8_t size : 2; - uint8_t type : 2; - uint8_t tag : 4; + struct TU_ATTR_PACKED { + uint8_t size : 2; + uint8_t type : 2; + uint8_t tag : 4; }; } header; - tu_memclr(report_info_arr, arr_count*sizeof(tuh_hid_report_info_t)); + tu_memclr(report_info_arr, arr_count * sizeof(tuh_hid_report_info_t)); uint8_t report_num = 0; tuh_hid_report_info_t* info = report_info_arr; @@ -660,114 +646,105 @@ uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* report_info_arr, // uint8_t ri_report_size = 0; uint8_t ri_collection_depth = 0; - - while(desc_len && report_num < arr_count) - { + while (desc_len && report_num < arr_count) { header.byte = *desc_report++; desc_len--; - uint8_t const tag = header.tag; + uint8_t const tag = header.tag; uint8_t const type = header.type; uint8_t const size = header.size; uint8_t const data8 = desc_report[0]; TU_LOG(3, "tag = %d, type = %d, size = %d, data = ", tag, type, size); - for(uint32_t i=0; i<size; i++) TU_LOG(3, "%02X ", desc_report[i]); + for (uint32_t i = 0; i < size; i++) TU_LOG(3, "%02X ", desc_report[i]); TU_LOG(3, "\r\n"); - switch(type) - { + switch (type) { case RI_TYPE_MAIN: - switch (tag) - { + switch (tag) { case RI_MAIN_INPUT: break; case RI_MAIN_OUTPUT: break; case RI_MAIN_FEATURE: break; - case RI_MAIN_COLLECTION: ri_collection_depth++; - break; + break; case RI_MAIN_COLLECTION_END: ri_collection_depth--; - if (ri_collection_depth == 0) - { + if (ri_collection_depth == 0) { info++; report_num++; } - break; + break; - default: break; + default:break; } - break; + break; case RI_TYPE_GLOBAL: - switch(tag) - { + switch (tag) { case RI_GLOBAL_USAGE_PAGE: // only take in account the "usage page" before REPORT ID - if ( ri_collection_depth == 0 ) memcpy(&info->usage_page, desc_report, size); - break; + if (ri_collection_depth == 0) memcpy(&info->usage_page, desc_report, size); + break; - case RI_GLOBAL_LOGICAL_MIN : break; - case RI_GLOBAL_LOGICAL_MAX : break; - case RI_GLOBAL_PHYSICAL_MIN : break; - case RI_GLOBAL_PHYSICAL_MAX : break; + case RI_GLOBAL_LOGICAL_MIN: break; + case RI_GLOBAL_LOGICAL_MAX: break; + case RI_GLOBAL_PHYSICAL_MIN: break; + case RI_GLOBAL_PHYSICAL_MAX: break; case RI_GLOBAL_REPORT_ID: info->report_id = data8; - break; + break; case RI_GLOBAL_REPORT_SIZE: // ri_report_size = data8; - break; + break; case RI_GLOBAL_REPORT_COUNT: // ri_report_count = data8; - break; + break; - case RI_GLOBAL_UNIT_EXPONENT : break; - case RI_GLOBAL_UNIT : break; - case RI_GLOBAL_PUSH : break; - case RI_GLOBAL_POP : break; + case RI_GLOBAL_UNIT_EXPONENT: break; + case RI_GLOBAL_UNIT: break; + case RI_GLOBAL_PUSH: break; + case RI_GLOBAL_POP: break; default: break; } - break; + break; case RI_TYPE_LOCAL: - switch(tag) - { + switch (tag) { case RI_LOCAL_USAGE: // only take in account the "usage" before starting REPORT ID - if ( ri_collection_depth == 0 ) info->usage = data8; - break; + if (ri_collection_depth == 0) info->usage = data8; + break; - case RI_LOCAL_USAGE_MIN : break; - case RI_LOCAL_USAGE_MAX : break; - case RI_LOCAL_DESIGNATOR_INDEX : break; - case RI_LOCAL_DESIGNATOR_MIN : break; - case RI_LOCAL_DESIGNATOR_MAX : break; - case RI_LOCAL_STRING_INDEX : break; - case RI_LOCAL_STRING_MIN : break; - case RI_LOCAL_STRING_MAX : break; - case RI_LOCAL_DELIMITER : break; + case RI_LOCAL_USAGE_MIN: break; + case RI_LOCAL_USAGE_MAX: break; + case RI_LOCAL_DESIGNATOR_INDEX: break; + case RI_LOCAL_DESIGNATOR_MIN: break; + case RI_LOCAL_DESIGNATOR_MAX: break; + case RI_LOCAL_STRING_INDEX: break; + case RI_LOCAL_STRING_MIN: break; + case RI_LOCAL_STRING_MAX: break; + case RI_LOCAL_DELIMITER: break; default: break; } - break; + break; - // error + // error default: break; } desc_report += size; - desc_len -= size; + desc_len -= size; } - for ( uint8_t i = 0; i < report_num; i++ ) - { - info = report_info_arr+i; + for (uint8_t i = 0; i < report_num; i++) { + info = report_info_arr + i; TU_LOG_DRV("%u: id = %u, usage_page = %u, usage = %u\r\n", i, info->report_id, info->usage_page, info->usage); } diff --git a/src/class/hid/hid_host.h b/src/class/hid/hid_host.h index 08ad421d2..9681c704b 100644 --- a/src/class/hid/hid_host.h +++ b/src/class/hid/hid_host.h @@ -30,7 +30,7 @@ #include "hid.h" #ifdef __cplusplus - extern "C" { +extern "C" { #endif //--------------------------------------------------------------------+ @@ -47,10 +47,9 @@ #endif -typedef struct -{ - uint8_t report_id; - uint8_t usage; +typedef struct { + uint8_t report_id; + uint8_t usage; uint16_t usage_page; // TODO still use the endpoint size for now @@ -86,7 +85,8 @@ bool tuh_hid_mounted(uint8_t dev_addr, uint8_t idx); // Parse report descriptor into array of report_info struct and return number of reports. // For complicated report, application should write its own parser. -uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* reports_info_arr, uint8_t arr_count, uint8_t const* desc_report, uint16_t desc_len) TU_ATTR_UNUSED; +TU_ATTR_UNUSED uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* reports_info_arr, uint8_t arr_count, + uint8_t const* desc_report, uint16_t desc_len); //--------------------------------------------------------------------+ // Control Endpoint API @@ -97,13 +97,22 @@ uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* reports_info_arr, // Application can use set_protocol() to switch back to Report protocol. uint8_t tuh_hid_get_protocol(uint8_t dev_addr, uint8_t idx); +// Device by default is enumerated in Boot protocol for simplicity. Application +// can use this to modify the default protocol for next enumeration. +void tuh_hid_set_default_protocol(uint8_t protocol); + // Set protocol to HID_PROTOCOL_BOOT (0) or HID_PROTOCOL_REPORT (1) // This function is only supported by Boot interface (tuh_n_hid_interface_protocol() != NONE) bool tuh_hid_set_protocol(uint8_t dev_addr, uint8_t idx, uint8_t protocol); +// Get Report using control endpoint +// report_type is either Input, Output or Feature, (value from hid_report_type_t) +bool tuh_hid_get_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, void* report, uint16_t len); + // Set Report using control endpoint // report_type is either Input, Output or Feature, (value from hid_report_type_t) -bool tuh_hid_set_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, void* report, uint16_t len); +bool tuh_hid_set_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, + void* report, uint16_t len); //--------------------------------------------------------------------+ // Interrupt Endpoint API @@ -117,6 +126,9 @@ bool tuh_hid_receive_ready(uint8_t dev_addr, uint8_t idx); // - false if failed to queue the transfer e.g endpoint is busy bool tuh_hid_receive_report(uint8_t dev_addr, uint8_t idx); +// Abort receiving report on Interrupt Endpoint +bool tuh_hid_receive_abort(uint8_t dev_addr, uint8_t idx); + // Check if HID interface is ready to send report bool tuh_hid_send_ready(uint8_t dev_addr, uint8_t idx); @@ -145,6 +157,10 @@ void tuh_hid_report_received_cb(uint8_t dev_addr, uint8_t idx, uint8_t const* re // Invoked when sent report to device successfully via interrupt endpoint TU_ATTR_WEAK void tuh_hid_report_sent_cb(uint8_t dev_addr, uint8_t idx, uint8_t const* report, uint16_t len); +// Invoked when Get Report to device via either control endpoint +// len = 0 indicate there is error in the transfer e.g stalled response +TU_ATTR_WEAK void tuh_hid_get_report_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, uint16_t len); + // Invoked when Sent Report to device via either control endpoint // len = 0 indicate there is error in the transfer e.g stalled response TU_ATTR_WEAK void tuh_hid_set_report_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, uint16_t len); @@ -155,11 +171,12 @@ TU_ATTR_WEAK void tuh_hid_set_protocol_complete_cb(uint8_t dev_addr, uint8_t idx //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -void hidh_init (void); -bool hidh_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t max_len); -bool hidh_set_config (uint8_t dev_addr, uint8_t itf_num); -bool hidh_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); -void hidh_close (uint8_t dev_addr); +bool hidh_init(void); +bool hidh_deinit(void); +bool hidh_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const* desc_itf, uint16_t max_len); +bool hidh_set_config(uint8_t dev_addr, uint8_t itf_num); +bool hidh_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); +void hidh_close(uint8_t dev_addr); #ifdef __cplusplus } diff --git a/src/class/midi/midi_device.c b/src/class/midi/midi_device.c index 052372a93..42905ab0d 100644 --- a/src/class/midi/midi_device.c +++ b/src/class/midi/midi_device.c @@ -373,12 +373,10 @@ bool tud_midi_n_packet_write (uint8_t itf, uint8_t const packet[4]) //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void midid_init(void) -{ +void midid_init(void) { tu_memclr(_midid_itf, sizeof(_midid_itf)); - for(uint8_t i=0; i<CFG_TUD_MIDI; i++) - { + for (uint8_t i = 0; i < CFG_TUD_MIDI; i++) { midid_interface_t* midi = &_midid_itf[i]; // config fifo @@ -386,12 +384,38 @@ void midid_init(void) tu_fifo_config(&midi->tx_ff, midi->tx_ff_buf, CFG_TUD_MIDI_TX_BUFSIZE, 1, false); // OBVS. #if CFG_FIFO_MUTEX - tu_fifo_config_mutex(&midi->rx_ff, NULL, osal_mutex_create(&midi->rx_ff_mutex)); - tu_fifo_config_mutex(&midi->tx_ff, osal_mutex_create(&midi->tx_ff_mutex), NULL); + osal_mutex_t mutex_rd = osal_mutex_create(&midi->rx_ff_mutex); + osal_mutex_t mutex_wr = osal_mutex_create(&midi->tx_ff_mutex); + TU_ASSERT(mutex_wr != NULL && mutex_wr != NULL, ); + + tu_fifo_config_mutex(&midi->rx_ff, NULL, mutex_rd); + tu_fifo_config_mutex(&midi->tx_ff, mutex_wr, NULL); #endif } } +bool midid_deinit(void) { + #if CFG_FIFO_MUTEX + for(uint8_t i=0; i<CFG_TUD_MIDI; i++) { + midid_interface_t* midi = &_midid_itf[i]; + osal_mutex_t mutex_rd = midi->rx_ff.mutex_rd; + osal_mutex_t mutex_wr = midi->tx_ff.mutex_wr; + + if (mutex_rd) { + osal_mutex_delete(mutex_rd); + tu_fifo_config_mutex(&midi->rx_ff, NULL, NULL); + } + + if (mutex_wr) { + osal_mutex_delete(mutex_wr); + tu_fifo_config_mutex(&midi->tx_ff, NULL, NULL); + } + } + #endif + + return true; +} + void midid_reset(uint8_t rhport) { (void) rhport; diff --git a/src/class/midi/midi_device.h b/src/class/midi/midi_device.h index 1c6f996be..3e89cc0a3 100644 --- a/src/class/midi/midi_device.h +++ b/src/class/midi/midi_device.h @@ -158,6 +158,7 @@ static inline bool tud_midi_packet_write (uint8_t const packet[4]) // Internal Class Driver API //--------------------------------------------------------------------+ void midid_init (void); +bool midid_deinit (void); void midid_reset (uint8_t rhport); uint16_t midid_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool midid_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/msc/msc_device.c b/src/class/msc/msc_device.c index a602e9672..588fcaaca 100644 --- a/src/class/msc/msc_device.c +++ b/src/class/msc/msc_device.c @@ -36,7 +36,7 @@ // Level where CFG_TUSB_DEBUG must be at least for this driver is logged #ifndef CFG_TUD_MSC_LOG_LEVEL - #define CFG_TUD_MSC_LOG_LEVEL 2 + #define CFG_TUD_MSC_LOG_LEVEL CFG_TUD_LOG_LEVEL #endif #define TU_LOG_DRV(...) TU_LOG(CFG_TUD_MSC_LOG_LEVEL, __VA_ARGS__) @@ -203,7 +203,7 @@ uint8_t rdwr10_validate_cmd(msc_cbw_t const* cbw) //--------------------------------------------------------------------+ // Debug //--------------------------------------------------------------------+ -#if CFG_TUSB_DEBUG >= 2 +#if CFG_TUSB_DEBUG >= CFG_TUD_MSC_LOG_LEVEL TU_ATTR_UNUSED tu_static tu_lookup_entry_t const _msc_scsi_cmd_lookup[] = { @@ -251,11 +251,15 @@ static inline void set_sense_medium_not_present(uint8_t lun) //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void mscd_init(void) -{ +void mscd_init(void) { tu_memclr(&_mscd_itf, sizeof(mscd_interface_t)); } +bool mscd_deinit(void) { + // nothing to do + return true; +} + void mscd_reset(uint8_t rhport) { (void) rhport; diff --git a/src/class/msc/msc_device.h b/src/class/msc/msc_device.h index 72f95be06..4247a40bd 100644 --- a/src/class/msc/msc_device.h +++ b/src/class/msc/msc_device.h @@ -150,6 +150,7 @@ TU_ATTR_WEAK bool tud_msc_is_writable_cb(uint8_t lun); // Internal Class Driver API //--------------------------------------------------------------------+ void mscd_init (void); +bool mscd_deinit (void); void mscd_reset (uint8_t rhport); uint16_t mscd_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool mscd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * p_request); diff --git a/src/class/msc/msc_host.c b/src/class/msc/msc_host.c index d32c0adb0..ce6e7fb2d 100644 --- a/src/class/msc/msc_host.c +++ b/src/class/msc/msc_host.c @@ -29,27 +29,28 @@ #if CFG_TUH_ENABLED && CFG_TUH_MSC #include "host/usbh.h" -#include "host/usbh_classdriver.h" +#include "host/usbh_pvt.h" #include "msc_host.h" -// Debug level, TUSB_CFG_DEBUG must be at least this level for debug message -#define MSCH_DEBUG 2 -#define TU_LOG_MSCH(...) TU_LOG(MSCH_DEBUG, __VA_ARGS__) +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUH_MSC_LOG_LEVEL + #define CFG_TUH_MSC_LOG_LEVEL CFG_TUH_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUH_MSC_LOG_LEVEL, __VA_ARGS__) //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ -enum -{ +enum { MSC_STAGE_IDLE = 0, MSC_STAGE_CMD, MSC_STAGE_DATA, MSC_STAGE_STATUS, }; -typedef struct -{ +typedef struct { uint8_t itf_num; uint8_t ep_in; uint8_t ep_out; @@ -66,13 +67,13 @@ typedef struct //------------- SCSI -------------// uint8_t stage; - void* buffer; + void* buffer; tuh_msc_complete_cb_t complete_cb; uintptr_t complete_arg; CFG_TUH_MEM_ALIGN msc_cbw_t cbw; CFG_TUH_MEM_ALIGN msc_csw_t csw; -}msch_interface_t; +} msch_interface_t; CFG_TUH_MEM_SECTION static msch_interface_t _msch_itf[CFG_TUH_DEVICE_MAX]; @@ -83,40 +84,34 @@ static uint8_t _msch_buffer[sizeof(scsi_inquiry_resp_t)]; // FIXME potential nul reference TU_ATTR_ALWAYS_INLINE -static inline msch_interface_t* get_itf(uint8_t dev_addr) -{ - return &_msch_itf[dev_addr-1]; +static inline msch_interface_t* get_itf(uint8_t dev_addr) { + return &_msch_itf[dev_addr - 1]; } //--------------------------------------------------------------------+ // PUBLIC API //--------------------------------------------------------------------+ -uint8_t tuh_msc_get_maxlun(uint8_t dev_addr) -{ +uint8_t tuh_msc_get_maxlun(uint8_t dev_addr) { msch_interface_t* p_msc = get_itf(dev_addr); return p_msc->max_lun; } -uint32_t tuh_msc_get_block_count(uint8_t dev_addr, uint8_t lun) -{ +uint32_t tuh_msc_get_block_count(uint8_t dev_addr, uint8_t lun) { msch_interface_t* p_msc = get_itf(dev_addr); return p_msc->capacity[lun].block_count; } -uint32_t tuh_msc_get_block_size(uint8_t dev_addr, uint8_t lun) -{ +uint32_t tuh_msc_get_block_size(uint8_t dev_addr, uint8_t lun) { msch_interface_t* p_msc = get_itf(dev_addr); return p_msc->capacity[lun].block_size; } -bool tuh_msc_mounted(uint8_t dev_addr) -{ +bool tuh_msc_mounted(uint8_t dev_addr) { msch_interface_t* p_msc = get_itf(dev_addr); return p_msc->mounted; } -bool tuh_msc_ready(uint8_t dev_addr) -{ +bool tuh_msc_ready(uint8_t dev_addr) { msch_interface_t* p_msc = get_itf(dev_addr); return p_msc->mounted && !usbh_edpt_busy(dev_addr, p_msc->ep_in) && !usbh_edpt_busy(dev_addr, p_msc->ep_out); } @@ -124,20 +119,20 @@ bool tuh_msc_ready(uint8_t dev_addr) //--------------------------------------------------------------------+ // PUBLIC API: SCSI COMMAND //--------------------------------------------------------------------+ -static inline void cbw_init(msc_cbw_t *cbw, uint8_t lun) -{ +static inline void cbw_init(msc_cbw_t* cbw, uint8_t lun) { tu_memclr(cbw, sizeof(msc_cbw_t)); cbw->signature = MSC_CBW_SIGNATURE; cbw->tag = 0x54555342; // TUSB cbw->lun = lun; } -bool tuh_msc_scsi_command(uint8_t dev_addr, msc_cbw_t const* cbw, void* data, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ - msch_interface_t* p_msc = get_itf(dev_addr); +bool tuh_msc_scsi_command(uint8_t daddr, msc_cbw_t const* cbw, void* data, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { + msch_interface_t* p_msc = get_itf(daddr); TU_VERIFY(p_msc->configured); - // TODO claim endpoint + // claim endpoint + TU_VERIFY(usbh_edpt_claim(daddr, p_msc->ep_out)); p_msc->cbw = *cbw; p_msc->stage = MSC_STAGE_CMD; @@ -145,15 +140,18 @@ bool tuh_msc_scsi_command(uint8_t dev_addr, msc_cbw_t const* cbw, void* data, tu p_msc->complete_cb = complete_cb; p_msc->complete_arg = arg; - TU_ASSERT(usbh_edpt_xfer(dev_addr, p_msc->ep_out, (uint8_t*) &p_msc->cbw, sizeof(msc_cbw_t))); + if (!usbh_edpt_xfer(daddr, p_msc->ep_out, (uint8_t*) &p_msc->cbw, sizeof(msc_cbw_t))) { + usbh_edpt_release(daddr, p_msc->ep_out); + return false; + } return true; } -bool tuh_msc_read_capacity(uint8_t dev_addr, uint8_t lun, scsi_read_capacity10_resp_t* response, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ - msch_interface_t* p_msc = get_itf(dev_addr); - TU_VERIFY(p_msc->configured); +bool tuh_msc_read_capacity(uint8_t dev_addr, uint8_t lun, scsi_read_capacity10_resp_t* response, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { + msch_interface_t* p_msc = get_itf(dev_addr); + TU_VERIFY(p_msc->configured); msc_cbw_t cbw; cbw_init(&cbw, lun); @@ -166,8 +164,8 @@ bool tuh_msc_read_capacity(uint8_t dev_addr, uint8_t lun, scsi_read_capacity10_r return tuh_msc_scsi_command(dev_addr, &cbw, response, complete_cb, arg); } -bool tuh_msc_inquiry(uint8_t dev_addr, uint8_t lun, scsi_inquiry_resp_t* response, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ +bool tuh_msc_inquiry(uint8_t dev_addr, uint8_t lun, scsi_inquiry_resp_t* response, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { msch_interface_t* p_msc = get_itf(dev_addr); TU_VERIFY(p_msc->mounted); @@ -178,18 +176,16 @@ bool tuh_msc_inquiry(uint8_t dev_addr, uint8_t lun, scsi_inquiry_resp_t* respons cbw.dir = TUSB_DIR_IN_MASK; cbw.cmd_len = sizeof(scsi_inquiry_t); - scsi_inquiry_t const cmd_inquiry = - { - .cmd_code = SCSI_CMD_INQUIRY, - .alloc_length = sizeof(scsi_inquiry_resp_t) + scsi_inquiry_t const cmd_inquiry = { + .cmd_code = SCSI_CMD_INQUIRY, + .alloc_length = sizeof(scsi_inquiry_resp_t) }; memcpy(cbw.command, &cmd_inquiry, cbw.cmd_len); return tuh_msc_scsi_command(dev_addr, &cbw, response, complete_cb, arg); } -bool tuh_msc_test_unit_ready(uint8_t dev_addr, uint8_t lun, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ +bool tuh_msc_test_unit_ready(uint8_t dev_addr, uint8_t lun, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { msch_interface_t* p_msc = get_itf(dev_addr); TU_VERIFY(p_msc->configured); @@ -197,16 +193,16 @@ bool tuh_msc_test_unit_ready(uint8_t dev_addr, uint8_t lun, tuh_msc_complete_cb_ cbw_init(&cbw, lun); cbw.total_bytes = 0; - cbw.dir = TUSB_DIR_OUT; - cbw.cmd_len = sizeof(scsi_test_unit_ready_t); - cbw.command[0] = SCSI_CMD_TEST_UNIT_READY; - cbw.command[1] = lun; // according to wiki TODO need verification + cbw.dir = TUSB_DIR_OUT; + cbw.cmd_len = sizeof(scsi_test_unit_ready_t); + cbw.command[0] = SCSI_CMD_TEST_UNIT_READY; + cbw.command[1] = lun; // according to wiki TODO need verification return tuh_msc_scsi_command(dev_addr, &cbw, NULL, complete_cb, arg); } -bool tuh_msc_request_sense(uint8_t dev_addr, uint8_t lun, void *response, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ +bool tuh_msc_request_sense(uint8_t dev_addr, uint8_t lun, void* response, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { msc_cbw_t cbw; cbw_init(&cbw, lun); @@ -214,73 +210,64 @@ bool tuh_msc_request_sense(uint8_t dev_addr, uint8_t lun, void *response, tuh_ms cbw.dir = TUSB_DIR_IN_MASK; cbw.cmd_len = sizeof(scsi_request_sense_t); - scsi_request_sense_t const cmd_request_sense = - { - .cmd_code = SCSI_CMD_REQUEST_SENSE, - .alloc_length = 18 + scsi_request_sense_t const cmd_request_sense = { + .cmd_code = SCSI_CMD_REQUEST_SENSE, + .alloc_length = 18 }; - memcpy(cbw.command, &cmd_request_sense, cbw.cmd_len); return tuh_msc_scsi_command(dev_addr, &cbw, response, complete_cb, arg); } -bool tuh_msc_read10(uint8_t dev_addr, uint8_t lun, void * buffer, uint32_t lba, uint16_t block_count, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ +bool tuh_msc_read10(uint8_t dev_addr, uint8_t lun, void* buffer, uint32_t lba, uint16_t block_count, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { msch_interface_t* p_msc = get_itf(dev_addr); TU_VERIFY(p_msc->mounted); msc_cbw_t cbw; cbw_init(&cbw, lun); - cbw.total_bytes = block_count*p_msc->capacity[lun].block_size; - cbw.dir = TUSB_DIR_IN_MASK; - cbw.cmd_len = sizeof(scsi_read10_t); + cbw.total_bytes = block_count * p_msc->capacity[lun].block_size; + cbw.dir = TUSB_DIR_IN_MASK; + cbw.cmd_len = sizeof(scsi_read10_t); - scsi_read10_t const cmd_read10 = - { - .cmd_code = SCSI_CMD_READ_10, - .lba = tu_htonl(lba), - .block_count = tu_htons(block_count) + scsi_read10_t const cmd_read10 = { + .cmd_code = SCSI_CMD_READ_10, + .lba = tu_htonl(lba), + .block_count = tu_htons(block_count) }; - memcpy(cbw.command, &cmd_read10, cbw.cmd_len); return tuh_msc_scsi_command(dev_addr, &cbw, buffer, complete_cb, arg); } -bool tuh_msc_write10(uint8_t dev_addr, uint8_t lun, void const * buffer, uint32_t lba, uint16_t block_count, tuh_msc_complete_cb_t complete_cb, uintptr_t arg) -{ +bool tuh_msc_write10(uint8_t dev_addr, uint8_t lun, void const* buffer, uint32_t lba, uint16_t block_count, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg) { msch_interface_t* p_msc = get_itf(dev_addr); TU_VERIFY(p_msc->mounted); msc_cbw_t cbw; cbw_init(&cbw, lun); - cbw.total_bytes = block_count*p_msc->capacity[lun].block_size; + cbw.total_bytes = block_count * p_msc->capacity[lun].block_size; cbw.dir = TUSB_DIR_OUT; cbw.cmd_len = sizeof(scsi_write10_t); - scsi_write10_t const cmd_write10 = - { - .cmd_code = SCSI_CMD_WRITE_10, - .lba = tu_htonl(lba), - .block_count = tu_htons(block_count) + scsi_write10_t const cmd_write10 = { + .cmd_code = SCSI_CMD_WRITE_10, + .lba = tu_htonl(lba), + .block_count = tu_htons(block_count) }; - memcpy(cbw.command, &cmd_write10, cbw.cmd_len); - return tuh_msc_scsi_command(dev_addr, &cbw, (void*)(uintptr_t) buffer, complete_cb, arg); + return tuh_msc_scsi_command(dev_addr, &cbw, (void*) (uintptr_t) buffer, complete_cb, arg); } #if 0 // MSC interface Reset (not used now) -bool tuh_msc_reset(uint8_t dev_addr) -{ - tusb_control_request_t const new_request = - { - .bmRequestType_bit = - { +bool tuh_msc_reset(uint8_t dev_addr) { + tusb_control_request_t const new_request = { + .bmRequestType_bit = { .recipient = TUSB_REQ_RCPT_INTERFACE, .type = TUSB_REQ_TYPE_CLASS, .direction = TUSB_DIR_OUT @@ -297,79 +284,77 @@ bool tuh_msc_reset(uint8_t dev_addr) //--------------------------------------------------------------------+ // CLASS-USBH API //--------------------------------------------------------------------+ -void msch_init(void) -{ +bool msch_init(void) { + TU_LOG_DRV("sizeof(msch_interface_t) = %u\r\n", sizeof(msch_interface_t)); tu_memclr(_msch_itf, sizeof(_msch_itf)); + return true; +} + +bool msch_deinit(void) { + return true; } -void msch_close(uint8_t dev_addr) -{ - TU_VERIFY(dev_addr <= CFG_TUH_DEVICE_MAX, ); +void msch_close(uint8_t dev_addr) { + TU_VERIFY(dev_addr <= CFG_TUH_DEVICE_MAX,); msch_interface_t* p_msc = get_itf(dev_addr); - TU_VERIFY(p_msc->configured, ); + TU_VERIFY(p_msc->configured,); - TU_LOG_MSCH(" MSCh close addr = %d\r\n", dev_addr); + TU_LOG_DRV(" MSCh close addr = %d\r\n", dev_addr); // invoke Application Callback if (p_msc->mounted) { - if(tuh_msc_umount_cb) tuh_msc_umount_cb(dev_addr); + if (tuh_msc_umount_cb) tuh_msc_umount_cb(dev_addr); } tu_memclr(p_msc, sizeof(msch_interface_t)); } -bool msch_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes) -{ +bool msch_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes) { msch_interface_t* p_msc = get_itf(dev_addr); msc_cbw_t const * cbw = &p_msc->cbw; msc_csw_t * csw = &p_msc->csw; - switch (p_msc->stage) - { + switch (p_msc->stage) { case MSC_STAGE_CMD: // Must be Command Block - TU_ASSERT(ep_addr == p_msc->ep_out && event == XFER_RESULT_SUCCESS && xferred_bytes == sizeof(msc_cbw_t)); + TU_ASSERT(ep_addr == p_msc->ep_out && event == XFER_RESULT_SUCCESS && xferred_bytes == sizeof(msc_cbw_t)); - if ( cbw->total_bytes && p_msc->buffer ) - { + if (cbw->total_bytes && p_msc->buffer) { // Data stage if any p_msc->stage = MSC_STAGE_DATA; - uint8_t const ep_data = (cbw->dir & TUSB_DIR_IN_MASK) ? p_msc->ep_in : p_msc->ep_out; TU_ASSERT(usbh_edpt_xfer(dev_addr, ep_data, p_msc->buffer, (uint16_t) cbw->total_bytes)); - }else - { + } else { // Status stage p_msc->stage = MSC_STAGE_STATUS; TU_ASSERT(usbh_edpt_xfer(dev_addr, p_msc->ep_in, (uint8_t*) &p_msc->csw, (uint16_t) sizeof(msc_csw_t))); } - break; + break; case MSC_STAGE_DATA: // Status stage p_msc->stage = MSC_STAGE_STATUS; TU_ASSERT(usbh_edpt_xfer(dev_addr, p_msc->ep_in, (uint8_t*) &p_msc->csw, (uint16_t) sizeof(msc_csw_t))); - break; + break; case MSC_STAGE_STATUS: // SCSI op is complete p_msc->stage = MSC_STAGE_IDLE; - if (p_msc->complete_cb) - { - tuh_msc_complete_data_t const cb_data = - { - .cbw = cbw, - .csw = csw, - .scsi_data = p_msc->buffer, - .user_arg = p_msc->complete_arg + if (p_msc->complete_cb) { + tuh_msc_complete_data_t const cb_data = { + .cbw = cbw, + .csw = csw, + .scsi_data = p_msc->buffer, + .user_arg = p_msc->complete_arg }; p_msc->complete_cb(dev_addr, &cb_data); } - break; + break; - // unknown state - default: break; + // unknown state + default: + break; } return true; @@ -378,39 +363,35 @@ bool msch_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32 //--------------------------------------------------------------------+ // MSC Enumeration //--------------------------------------------------------------------+ - -static void config_get_maxlun_complete (tuh_xfer_t* xfer); -static bool config_test_unit_ready_complete(uint8_t dev_addr, tuh_msc_complete_data_t const * cb_data); +static void config_get_maxlun_complete(tuh_xfer_t* xfer); +static bool config_test_unit_ready_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data); static bool config_request_sense_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data); static bool config_read_capacity_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data); -bool msch_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t max_len) -{ +bool msch_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const* desc_itf, uint16_t max_len) { (void) rhport; TU_VERIFY (MSC_SUBCLASS_SCSI == desc_itf->bInterfaceSubClass && - MSC_PROTOCOL_BOT == desc_itf->bInterfaceProtocol); + MSC_PROTOCOL_BOT == desc_itf->bInterfaceProtocol); // msc driver length is fixed - uint16_t const drv_len = (uint16_t) (sizeof(tusb_desc_interface_t) + desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); + uint16_t const drv_len = (uint16_t) (sizeof(tusb_desc_interface_t) + + desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); TU_ASSERT(drv_len <= max_len); msch_interface_t* p_msc = get_itf(dev_addr); - tusb_desc_endpoint_t const * ep_desc = (tusb_desc_endpoint_t const *) tu_desc_next(desc_itf); + tusb_desc_endpoint_t const* ep_desc = (tusb_desc_endpoint_t const*) tu_desc_next(desc_itf); - for(uint32_t i=0; i<2; i++) - { + for (uint32_t i = 0; i < 2; i++) { TU_ASSERT(TUSB_DESC_ENDPOINT == ep_desc->bDescriptorType && TUSB_XFER_BULK == ep_desc->bmAttributes.xfer); TU_ASSERT(tuh_edpt_open(dev_addr, ep_desc)); - if ( tu_edpt_dir(ep_desc->bEndpointAddress) == TUSB_DIR_IN ) - { + if (TUSB_DIR_IN == tu_edpt_dir(ep_desc->bEndpointAddress)) { p_msc->ep_in = ep_desc->bEndpointAddress; - }else - { + } else { p_msc->ep_out = ep_desc->bEndpointAddress; } - ep_desc = (tusb_desc_endpoint_t const *) tu_desc_next(ep_desc); + ep_desc = (tusb_desc_endpoint_t const*) tu_desc_next(ep_desc); } p_msc->itf_num = desc_itf->bInterfaceNumber; @@ -418,45 +399,40 @@ bool msch_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *de return true; } -bool msch_set_config(uint8_t dev_addr, uint8_t itf_num) -{ +bool msch_set_config(uint8_t dev_addr, uint8_t itf_num) { msch_interface_t* p_msc = get_itf(dev_addr); TU_ASSERT(p_msc->itf_num == itf_num); p_msc->configured = true; //------------- Get Max Lun -------------// - TU_LOG_MSCH("MSC Get Max Lun\r\n"); - tusb_control_request_t const request = - { - .bmRequestType_bit = - { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_IN - }, - .bRequest = MSC_REQ_GET_MAX_LUN, - .wValue = 0, - .wIndex = itf_num, - .wLength = 1 + TU_LOG_DRV("MSC Get Max Lun\r\n"); + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_IN + }, + .bRequest = MSC_REQ_GET_MAX_LUN, + .wValue = 0, + .wIndex = itf_num, + .wLength = 1 }; - tuh_xfer_t xfer = - { - .daddr = dev_addr, - .ep_addr = 0, - .setup = &request, - .buffer = &p_msc->max_lun, - .complete_cb = config_get_maxlun_complete, - .user_data = 0 + tuh_xfer_t xfer = { + .daddr = dev_addr, + .ep_addr = 0, + .setup = &request, + .buffer = _msch_buffer, + .complete_cb = config_get_maxlun_complete, + .user_data = 0 }; TU_ASSERT(tuh_control_xfer(&xfer)); return true; } -static void config_get_maxlun_complete (tuh_xfer_t* xfer) -{ +static void config_get_maxlun_complete(tuh_xfer_t* xfer) { uint8_t const daddr = xfer->daddr; msch_interface_t* p_msc = get_itf(daddr); @@ -464,36 +440,35 @@ static void config_get_maxlun_complete (tuh_xfer_t* xfer) p_msc->max_lun = (XFER_RESULT_SUCCESS == xfer->result) ? _msch_buffer[0] : 0; p_msc->max_lun++; // MAX LUN is minus 1 by specs + TU_LOG_DRV(" Max LUN = %u\r\n", p_msc->max_lun); + // TODO multiple LUN support - TU_LOG_MSCH("SCSI Test Unit Ready\r\n"); + TU_LOG_DRV("SCSI Test Unit Ready\r\n"); uint8_t const lun = 0; tuh_msc_test_unit_ready(daddr, lun, config_test_unit_ready_complete, 0); } -static bool config_test_unit_ready_complete(uint8_t dev_addr, tuh_msc_complete_data_t const * cb_data) -{ +static bool config_test_unit_ready_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data) { msc_cbw_t const* cbw = cb_data->cbw; msc_csw_t const* csw = cb_data->csw; - if (csw->status == 0) - { + if (csw->status == 0) { // Unit is ready, read its capacity - TU_LOG_MSCH("SCSI Read Capacity\r\n"); - tuh_msc_read_capacity(dev_addr, cbw->lun, (scsi_read_capacity10_resp_t*) ((void*) _msch_buffer), config_read_capacity_complete, 0); - }else - { + TU_LOG_DRV("SCSI Read Capacity\r\n"); + tuh_msc_read_capacity(dev_addr, cbw->lun, (scsi_read_capacity10_resp_t*) ((void*) _msch_buffer), + config_read_capacity_complete, 0); + } else { // Note: During enumeration, some device fails Test Unit Ready and require a few retries // with Request Sense to start working !! // TODO limit number of retries - TU_LOG_MSCH("SCSI Request Sense\r\n"); + TU_LOG_DRV("SCSI Request Sense\r\n"); TU_ASSERT(tuh_msc_request_sense(dev_addr, cbw->lun, _msch_buffer, config_request_sense_complete, 0)); } return true; } -static bool config_request_sense_complete(uint8_t dev_addr, tuh_msc_complete_data_t const * cb_data) -{ +static bool config_request_sense_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data) { msc_cbw_t const* cbw = cb_data->cbw; msc_csw_t const* csw = cb_data->csw; @@ -502,8 +477,7 @@ static bool config_request_sense_complete(uint8_t dev_addr, tuh_msc_complete_dat return true; } -static bool config_read_capacity_complete(uint8_t dev_addr, tuh_msc_complete_data_t const * cb_data) -{ +static bool config_read_capacity_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data) { msc_cbw_t const* cbw = cb_data->cbw; msc_csw_t const* csw = cb_data->csw; diff --git a/src/class/msc/msc_host.h b/src/class/msc/msc_host.h index 6c0e5c9dd..9fda566d8 100644 --- a/src/class/msc/msc_host.h +++ b/src/class/msc/msc_host.h @@ -24,8 +24,8 @@ * This file is part of the TinyUSB stack. */ -#ifndef _TUSB_MSC_HOST_H_ -#define _TUSB_MSC_HOST_H_ +#ifndef TUSB_MSC_HOST_H_ +#define TUSB_MSC_HOST_H_ #include "msc.h" @@ -73,7 +73,7 @@ uint32_t tuh_msc_get_block_size(uint8_t dev_addr, uint8_t lun); // Perform a full SCSI command (cbw, data, csw) in non-blocking manner. // Complete callback is invoked when SCSI op is complete. // return true if success, false if there is already pending operation. -bool tuh_msc_scsi_command(uint8_t dev_addr, msc_cbw_t const* cbw, void* data, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_scsi_command(uint8_t daddr, msc_cbw_t const* cbw, void* data, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); // Perform SCSI Inquiry command // Complete callback is invoked when SCSI op is complete. @@ -113,7 +113,8 @@ TU_ATTR_WEAK void tuh_msc_umount_cb(uint8_t dev_addr); // Internal Class Driver API //--------------------------------------------------------------------+ -void msch_init (void); +bool msch_init (void); +bool msch_deinit (void); bool msch_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t max_len); bool msch_set_config (uint8_t dev_addr, uint8_t itf_num); void msch_close (uint8_t dev_addr); @@ -123,4 +124,4 @@ bool msch_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, ui } #endif -#endif /* _TUSB_MSC_HOST_H_ */ +#endif diff --git a/src/class/net/ecm_rndis_device.c b/src/class/net/ecm_rndis_device.c index 762425732..f7a5fd225 100644 --- a/src/class/net/ecm_rndis_device.c +++ b/src/class/net/ecm_rndis_device.c @@ -132,11 +132,14 @@ void netd_report(uint8_t *buf, uint16_t len) //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void netd_init(void) -{ +void netd_init(void) { tu_memclr(&_netd_itf, sizeof(_netd_itf)); } +bool netd_deinit(void) { + return true; +} + void netd_reset(uint8_t rhport) { (void) rhport; diff --git a/src/class/net/ncm.h b/src/class/net/ncm.h index 96ba11fbc..1b987fca0 100644 --- a/src/class/net/ncm.h +++ b/src/class/net/ncm.h @@ -2,6 +2,7 @@ * The MIT License (MIT) * * Copyright (c) 2021, Ha Thach (tinyusb.org) + * Copyright (c) 2024, Hardy Griech * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal @@ -24,22 +25,58 @@ * This file is part of the TinyUSB stack. */ - #ifndef _TUSB_NCM_H_ #define _TUSB_NCM_H_ #include "common/tusb_common.h" -#ifdef __cplusplus - extern "C" { +// NTB buffers size for reception side, must be >> MTU to avoid TCP retransmission (driver issue ?) +// Linux use 2048 as minimal size +#ifndef CFG_TUD_NCM_OUT_NTB_MAX_SIZE + #define CFG_TUD_NCM_OUT_NTB_MAX_SIZE 3200 #endif -// Table 4.3 Data Class Interface Protocol Codes -typedef enum -{ - NCM_DATA_PROTOCOL_NETWORK_TRANSFER_BLOCK = 0x01 -} ncm_data_interface_protocol_code_t; +// NTB buffers size for reception side, must be > MTU +// Linux use 2048 as minimal size +#ifndef CFG_TUD_NCM_IN_NTB_MAX_SIZE + #define CFG_TUD_NCM_IN_NTB_MAX_SIZE 3200 +#endif + +// Number of NTB buffers for reception side +// Depending on the configuration, this parameter could be increased with the cost of additional RAM requirements +// On Full-Speed (RP2040) : +// 1 - good performance +// 2 - up to 30% more performance with iperf with small packets +// >2 - no performance gain +// On High-Speed (STM32F7) : +// No performance gain +#ifndef CFG_TUD_NCM_OUT_NTB_N + #define CFG_TUD_NCM_OUT_NTB_N 1 +#endif +// Number of NTB buffers for transmission side +// Depending on the configuration, this parameter could be increased with the cost of additional RAM requirements +// On Full-Speed (RP2040) : +// 1 - good performance but SystemView shows lost events (on load test) +// 2 - up to 50% more performance with iperf with small packets, "tud_network_can_xmit: request blocked" +// happens from time to time with SystemView +// 3 - "tud_network_can_xmit: request blocked" never happens +// >3 - no performance gain +// On High-Speed (STM32F7) : +// No performance gain +#ifndef CFG_TUD_NCM_IN_NTB_N + #define CFG_TUD_NCM_IN_NTB_N 1 +#endif + +// How many datagrams it is allowed to put into an NTB for transmission side +#ifndef CFG_TUD_NCM_IN_MAX_DATAGRAMS_PER_NTB + #define CFG_TUD_NCM_IN_MAX_DATAGRAMS_PER_NTB 8 +#endif + +// This tells the host how many datagrams it is allowed to put into an NTB +#ifndef CFG_TUD_NCM_OUT_MAX_DATAGRAMS_PER_NTB + #define CFG_TUD_NCM_OUT_MAX_DATAGRAMS_PER_NTB 6 +#endif // Table 6.2 Class-Specific Request Codes for Network Control Model subclass typedef enum @@ -62,8 +99,65 @@ typedef enum NCM_SET_CRC_MODE = 0x8A, } ncm_request_code_t; -#ifdef __cplusplus - } -#endif +#define NTH16_SIGNATURE 0x484D434E +#define NDP16_SIGNATURE_NCM0 0x304D434E +#define NDP16_SIGNATURE_NCM1 0x314D434E + +typedef struct TU_ATTR_PACKED { + uint16_t wLength; + uint16_t bmNtbFormatsSupported; + uint32_t dwNtbInMaxSize; + uint16_t wNdbInDivisor; + uint16_t wNdbInPayloadRemainder; + uint16_t wNdbInAlignment; + uint16_t wReserved; + uint32_t dwNtbOutMaxSize; + uint16_t wNdbOutDivisor; + uint16_t wNdbOutPayloadRemainder; + uint16_t wNdbOutAlignment; + uint16_t wNtbOutMaxDatagrams; +} ntb_parameters_t; + +typedef struct TU_ATTR_PACKED { + uint32_t dwSignature; + uint16_t wHeaderLength; + uint16_t wSequence; + uint16_t wBlockLength; + uint16_t wNdpIndex; +} nth16_t; + +typedef struct TU_ATTR_PACKED { + uint16_t wDatagramIndex; + uint16_t wDatagramLength; +} ndp16_datagram_t; + +typedef struct TU_ATTR_PACKED { + uint32_t dwSignature; + uint16_t wLength; + uint16_t wNextNdpIndex; + //ndp16_datagram_t datagram[]; +} ndp16_t; + +typedef union TU_ATTR_PACKED { + struct { + nth16_t nth; + ndp16_t ndp; + ndp16_datagram_t ndp_datagram[CFG_TUD_NCM_IN_MAX_DATAGRAMS_PER_NTB + 1]; + }; + uint8_t data[CFG_TUD_NCM_IN_NTB_MAX_SIZE]; +} xmit_ntb_t; + +typedef union TU_ATTR_PACKED { + struct { + nth16_t nth; + // only the header is at a guaranteed position + }; + uint8_t data[CFG_TUD_NCM_OUT_NTB_MAX_SIZE]; +} recv_ntb_t; + +struct ncm_notify_t { + tusb_control_request_t header; + uint32_t downlink, uplink; +}; #endif diff --git a/src/class/net/ncm_device.c b/src/class/net/ncm_device.c index 611dc3348..4b237e4cf 100644 --- a/src/class/net/ncm_device.c +++ b/src/class/net/ncm_device.c @@ -1,9 +1,8 @@ /* * The MIT License (MIT) * - * Copyright (c) 2020 Jacob Berg Potter - * Copyright (c) 2020 Peter Lawrence * Copyright (c) 2019 Ha Thach (tinyusb.org) + * Copyright (c) 2024 Hardy Griech * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal @@ -26,486 +25,869 @@ * This file is part of the TinyUSB stack. */ +/** + * Small Glossary (from the spec) + * -------------- + * Datagram - A collection of bytes forming a single item of information, passed as a unit from source to destination. + * NCM - Network Control Model + * NDP - NCM Datagram Pointer: NTB structure that delineates Datagrams (typically Ethernet frames) within an NTB + * NTB - NCM Transfer Block: a data structure for efficient USB encapsulation of one or more datagrams + * Each NTB is designed to be a single USB transfer + * NTH - NTB Header: a data structure at the front of each NTB, which provides the information needed to validate + * the NTB and begin decoding + * + * Some explanations + * ----------------- + * - rhport is the USB port of the device, in most cases "0" + * - itf_data_alt if != 0 -> data xmit/recv are allowed (see spec) + * - ep_in IN endpoints take data from the device intended to go in to the host (the device transmits) + * - ep_out OUT endpoints send data out of the host to the device (the device receives) + */ + #include "tusb_option.h" -#if ( CFG_TUD_ENABLED && CFG_TUD_NCM ) +#if (CFG_TUD_ENABLED && CFG_TUD_NCM) + +#include <stdbool.h> +#include <stdint.h> +#include <stdio.h> #include "device/usbd.h" #include "device/usbd_pvt.h" + +#include "ncm.h" #include "net_device.h" -//--------------------------------------------------------------------+ -// MACRO CONSTANT TYPEDEF -//--------------------------------------------------------------------+ +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUD_NCM_LOG_LEVEL + #define CFG_TUD_NCM_LOG_LEVEL CFG_TUD_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUD_NCM_LOG_LEVEL, __VA_ARGS__) -#define NTH16_SIGNATURE 0x484D434E -#define NDP16_SIGNATURE_NCM0 0x304D434E -#define NDP16_SIGNATURE_NCM1 0x314D434E +// Alignment must be 4 +#define TUD_NCM_ALIGNMENT 4 +// calculate alignment of xmit datagrams within an NTB +#define XMIT_ALIGN_OFFSET(x) ((TUD_NCM_ALIGNMENT - ((x) & (TUD_NCM_ALIGNMENT - 1))) & (TUD_NCM_ALIGNMENT - 1)) -typedef struct TU_ATTR_PACKED -{ - uint16_t wLength; - uint16_t bmNtbFormatsSupported; - uint32_t dwNtbInMaxSize; - uint16_t wNdbInDivisor; - uint16_t wNdbInPayloadRemainder; - uint16_t wNdbInAlignment; - uint16_t wReserved; - uint32_t dwNtbOutMaxSize; - uint16_t wNdbOutDivisor; - uint16_t wNdbOutPayloadRemainder; - uint16_t wNdbOutAlignment; - uint16_t wNtbOutMaxDatagrams; -} ntb_parameters_t; +//----------------------------------------------------------------------------- +// +// Module global things +// +#define XMIT_NTB_N CFG_TUD_NCM_IN_NTB_N +#define RECV_NTB_N CFG_TUD_NCM_OUT_NTB_N -typedef struct TU_ATTR_PACKED -{ - uint32_t dwSignature; - uint16_t wHeaderLength; - uint16_t wSequence; - uint16_t wBlockLength; - uint16_t wNdpIndex; -} nth16_t; +typedef struct { + // general + uint8_t ep_in; // endpoint for outgoing datagrams (naming is a little bit confusing) + uint8_t ep_out; // endpoint for incoming datagrams (naming is a little bit confusing) + uint8_t ep_notif; // endpoint for notifications + uint8_t itf_num; // interface number + uint8_t itf_data_alt; // ==0 -> no endpoints, i.e. no network traffic, ==1 -> normal operation with two endpoints (spec, chapter 5.3) + uint8_t rhport; // storage of \a rhport because some callbacks are done without it -typedef struct TU_ATTR_PACKED -{ - uint16_t wDatagramIndex; - uint16_t wDatagramLength; -} ndp16_datagram_t; + // recv handling + CFG_TUSB_MEM_ALIGN recv_ntb_t recv_ntb[RECV_NTB_N]; // actual recv NTBs + recv_ntb_t *recv_free_ntb[RECV_NTB_N]; // free list of recv NTBs + recv_ntb_t *recv_ready_ntb[RECV_NTB_N]; // NTBs waiting for transmission to glue logic + recv_ntb_t *recv_tinyusb_ntb; // buffer for the running transfer TinyUSB -> driver + recv_ntb_t *recv_glue_ntb; // buffer for the running transfer driver -> glue logic + uint16_t recv_glue_ntb_datagram_ndx; // index into \a recv_glue_ntb_datagram -typedef struct TU_ATTR_PACKED -{ - uint32_t dwSignature; - uint16_t wLength; - uint16_t wNextNdpIndex; - ndp16_datagram_t datagram[]; -} ndp16_t; + // xmit handling + CFG_TUSB_MEM_ALIGN xmit_ntb_t xmit_ntb[XMIT_NTB_N]; // actual xmit NTBs + xmit_ntb_t *xmit_free_ntb[XMIT_NTB_N]; // free list of xmit NTBs + xmit_ntb_t *xmit_ready_ntb[XMIT_NTB_N]; // NTBs waiting for transmission to TinyUSB + xmit_ntb_t *xmit_tinyusb_ntb; // buffer for the running transfer driver -> TinyUSB + xmit_ntb_t *xmit_glue_ntb; // buffer for the running transfer glue logic -> driver + uint16_t xmit_sequence; // NTB sequence counter + uint16_t xmit_glue_ntb_datagram_ndx; // index into \a xmit_glue_ntb_datagram -typedef union TU_ATTR_PACKED { - struct { - nth16_t nth; - ndp16_t ndp; - }; - uint8_t data[CFG_TUD_NCM_IN_NTB_MAX_SIZE]; -} transmit_ntb_t; + // notification handling + enum { + NOTIFICATION_SPEED, + NOTIFICATION_CONNECTED, + NOTIFICATION_DONE + } notification_xmit_state; // state of notification transmission + bool notification_xmit_is_running; // notification is currently transmitted +} ncm_interface_t; -struct ecm_notify_struct -{ - tusb_control_request_t header; - uint32_t downlink, uplink; +CFG_TUSB_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static ncm_interface_t ncm_interface; + +/** + * This is the NTB parameter structure + * + * \attention + * We are lucky, that byte order is correct + */ +CFG_TUSB_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static const ntb_parameters_t ntb_parameters = { + .wLength = sizeof(ntb_parameters_t), + .bmNtbFormatsSupported = 0x01,// 16-bit NTB supported + .dwNtbInMaxSize = CFG_TUD_NCM_IN_NTB_MAX_SIZE, + .wNdbInDivisor = 1, + .wNdbInPayloadRemainder = 0, + .wNdbInAlignment = TUD_NCM_ALIGNMENT, + .wReserved = 0, + .dwNtbOutMaxSize = CFG_TUD_NCM_OUT_NTB_MAX_SIZE, + .wNdbOutDivisor = 1, + .wNdbOutPayloadRemainder = 0, + .wNdbOutAlignment = TUD_NCM_ALIGNMENT, + .wNtbOutMaxDatagrams = CFG_TUD_NCM_OUT_MAX_DATAGRAMS_PER_NTB, }; -typedef struct -{ - uint8_t itf_num; // Index number of Management Interface, +1 for Data Interface - uint8_t itf_data_alt; // Alternate setting of Data Interface. 0 : inactive, 1 : active +// Some confusing remarks about wNtbOutMaxDatagrams... +// ==1 -> SystemView packets/s goes up to 2000 and events are lost during startup +// ==0 -> SystemView runs fine, iperf shows in wireshark a lot of error +// ==6 -> SystemView runs fine, iperf also +// >6 -> iperf starts to show errors +// -> 6 seems to be the best value. Why? Don't know, perhaps only on my system? +// +// iperf: for MSS in 100 200 400 800 1200 1450 1500; do iperf -c 192.168.14.1 -e -i 1 -M $MSS -l 8192 -P 1; sleep 2; done +// sysview: SYSTICKS_PER_SEC=35000, IDLE_US=1000, PRINT_MOD=1000 +// - uint8_t ep_notif; - uint8_t ep_in; - uint8_t ep_out; +//----------------------------------------------------------------------------- +// +// everything about notifications +// +tu_static struct ncm_notify_t ncm_notify_connected = { + .header = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_IN}, + .bRequest = CDC_NOTIF_NETWORK_CONNECTION, + .wValue = 1 /* Connected */, + .wLength = 0, + }, +}; - const ndp16_t *ndp; - uint8_t num_datagrams, current_datagram_index; +tu_static struct ncm_notify_t ncm_notify_speed_change = { + .header = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_IN}, + .bRequest = CDC_NOTIF_CONNECTION_SPEED_CHANGE, + .wLength = 8, + }, + .downlink = TUD_OPT_HIGH_SPEED ? 480000000 : 12000000, + .uplink = TUD_OPT_HIGH_SPEED ? 480000000 : 12000000, +}; - enum { - REPORT_SPEED, - REPORT_CONNECTED, - REPORT_DONE - } report_state; - bool report_pending; +/** + * Transmit next notification to the host (if appropriate). + * Notifications are transferred to the host once during connection setup. + */ +static void notification_xmit(uint8_t rhport, bool force_next) { + TU_LOG_DRV("notification_xmit(%d, %d) - %d %d\n", force_next, rhport, ncm_interface.notification_xmit_state, ncm_interface.notification_xmit_is_running); - uint8_t current_ntb; // Index in transmit_ntb[] that is currently being filled with datagrams - uint8_t datagram_count; // Number of datagrams in transmit_ntb[current_ntb] - uint16_t next_datagram_offset; // Offset in transmit_ntb[current_ntb].data to place the next datagram - uint16_t ntb_in_size; // Maximum size of transmitted (IN to host) NTBs; initially CFG_TUD_NCM_IN_NTB_MAX_SIZE - uint8_t max_datagrams_per_ntb; // Maximum number of datagrams per NTB; initially CFG_TUD_NCM_MAX_DATAGRAMS_PER_NTB + if (!force_next && ncm_interface.notification_xmit_is_running) { + return; + } - uint16_t nth_sequence; // Sequence number counter for transmitted NTBs + if (ncm_interface.notification_xmit_state == NOTIFICATION_SPEED) { + TU_LOG_DRV(" NOTIFICATION_SPEED\n"); + ncm_notify_speed_change.header.wIndex = ncm_interface.itf_num; + usbd_edpt_xfer(rhport, ncm_interface.ep_notif, (uint8_t *) &ncm_notify_speed_change, sizeof(ncm_notify_speed_change)); + ncm_interface.notification_xmit_state = NOTIFICATION_CONNECTED; + ncm_interface.notification_xmit_is_running = true; + } else if (ncm_interface.notification_xmit_state == NOTIFICATION_CONNECTED) { + TU_LOG_DRV(" NOTIFICATION_CONNECTED\n"); + ncm_notify_connected.header.wIndex = ncm_interface.itf_num; + usbd_edpt_xfer(rhport, ncm_interface.ep_notif, (uint8_t *) &ncm_notify_connected, sizeof(ncm_notify_connected)); + ncm_interface.notification_xmit_state = NOTIFICATION_DONE; + ncm_interface.notification_xmit_is_running = true; + } else { + TU_LOG_DRV(" NOTIFICATION_FINISHED\n"); + } +} // notification_xmit - bool transferring; +//----------------------------------------------------------------------------- +// +// everything about packet transmission (driver -> TinyUSB) +// -} ncm_interface_t; +/** + * Put NTB into the transmitter free list. + */ +static void xmit_put_ntb_into_free_list(xmit_ntb_t *free_ntb) { + TU_LOG_DRV("xmit_put_ntb_into_free_list() - %p\n", ncm_interface.xmit_tinyusb_ntb); -//--------------------------------------------------------------------+ -// INTERNAL OBJECT & FUNCTION DECLARATION -//--------------------------------------------------------------------+ + if (free_ntb == NULL) { // can happen due to ZLPs + return; + } -CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static const ntb_parameters_t ntb_parameters = { - .wLength = sizeof(ntb_parameters_t), - .bmNtbFormatsSupported = 0x01, - .dwNtbInMaxSize = CFG_TUD_NCM_IN_NTB_MAX_SIZE, - .wNdbInDivisor = 4, - .wNdbInPayloadRemainder = 0, - .wNdbInAlignment = CFG_TUD_NCM_ALIGNMENT, - .wReserved = 0, - .dwNtbOutMaxSize = CFG_TUD_NCM_OUT_NTB_MAX_SIZE, - .wNdbOutDivisor = 4, - .wNdbOutPayloadRemainder = 0, - .wNdbOutAlignment = CFG_TUD_NCM_ALIGNMENT, - .wNtbOutMaxDatagrams = 0 -}; + for (int i = 0; i < XMIT_NTB_N; ++i) { + if (ncm_interface.xmit_free_ntb[i] == NULL) { + ncm_interface.xmit_free_ntb[i] = free_ntb; + return; + } + } + TU_LOG_DRV("(EE) xmit_put_ntb_into_free_list - no entry in free list\n");// this should not happen +} // xmit_put_ntb_into_free_list -CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static transmit_ntb_t transmit_ntb[2]; +/** + * Get an NTB from the free list + */ +static xmit_ntb_t *xmit_get_free_ntb(void) { + TU_LOG_DRV("xmit_get_free_ntb()\n"); -CFG_TUD_MEM_SECTION CFG_TUSB_MEM_ALIGN tu_static uint8_t receive_ntb[CFG_TUD_NCM_OUT_NTB_MAX_SIZE]; + for (int i = 0; i < XMIT_NTB_N; ++i) { + if (ncm_interface.xmit_free_ntb[i] != NULL) { + xmit_ntb_t *free = ncm_interface.xmit_free_ntb[i]; + ncm_interface.xmit_free_ntb[i] = NULL; + return free; + } + } + return NULL; +} // xmit_get_free_ntb -tu_static ncm_interface_t ncm_interface; +/** + * Put a filled NTB into the ready list + */ +static void xmit_put_ntb_into_ready_list(xmit_ntb_t *ready_ntb) { + TU_LOG_DRV("xmit_put_ntb_into_ready_list(%p) %d\n", ready_ntb, ready_ntb->nth.wBlockLength); -/* - * Set up the NTB state in ncm_interface to be ready to add datagrams. + for (int i = 0; i < XMIT_NTB_N; ++i) { + if (ncm_interface.xmit_ready_ntb[i] == NULL) { + ncm_interface.xmit_ready_ntb[i] = ready_ntb; + return; + } + } + TU_LOG_DRV("(EE) xmit_put_ntb_into_ready_list: ready list full\n");// this should not happen +} // xmit_put_ntb_into_ready_list + +/** + * Get the next NTB from the ready list (and remove it from the list). + * If the ready list is empty, return NULL. */ -static void ncm_prepare_for_tx(void) { - ncm_interface.datagram_count = 0; - // datagrams start after all the headers - ncm_interface.next_datagram_offset = sizeof(nth16_t) + sizeof(ndp16_t) - + ((CFG_TUD_NCM_MAX_DATAGRAMS_PER_NTB + 1) * sizeof(ndp16_datagram_t)); -} +static xmit_ntb_t *xmit_get_next_ready_ntb(void) { + xmit_ntb_t *r = NULL; -/* - * If not already transmitting, start sending the current NTB to the host and swap buffers - * to start filling the other one with datagrams. + r = ncm_interface.xmit_ready_ntb[0]; + memmove(ncm_interface.xmit_ready_ntb + 0, ncm_interface.xmit_ready_ntb + 1, sizeof(ncm_interface.xmit_ready_ntb) - sizeof(ncm_interface.xmit_ready_ntb[0])); + ncm_interface.xmit_ready_ntb[XMIT_NTB_N - 1] = NULL; + + TU_LOG_DRV("recv_get_next_ready_ntb: %p\n", r); + return r; +} // xmit_get_next_ready_ntb + +/** + * Transmit a ZLP if required + * + * \note + * Insertion of the ZLPs is a little bit different then described in the spec. + * But the below implementation actually works. Don't know if this is a spec + * or TinyUSB issue. + * + * \pre + * This must be called from netd_xfer_cb() so that ep_in is ready + */ +static bool xmit_insert_required_zlp(uint8_t rhport, uint32_t xferred_bytes) { + TU_LOG_DRV("xmit_insert_required_zlp(%d,%d)\n", rhport, xferred_bytes); + + if (xferred_bytes == 0 || xferred_bytes % CFG_TUD_NET_ENDPOINT_SIZE != 0) { + return false; + } + + TU_ASSERT(ncm_interface.itf_data_alt == 1, false); + TU_ASSERT(!usbd_edpt_busy(rhport, ncm_interface.ep_in), false); + + TU_LOG_DRV("xmit_insert_required_zlp! (%u)\n", (unsigned) xferred_bytes); + + // start transmission of the ZLP + usbd_edpt_xfer(rhport, ncm_interface.ep_in, NULL, 0); + + return true; +} // xmit_insert_required_zlp + +/** + * Start transmission if it there is a waiting packet and if can be done from interface side. */ -static void ncm_start_tx(void) { - if (ncm_interface.transferring) { +static void xmit_start_if_possible(uint8_t rhport) { + TU_LOG_DRV("xmit_start_if_possible()\n"); + + if (ncm_interface.xmit_tinyusb_ntb != NULL) { + TU_LOG_DRV(" !xmit_start_if_possible 1\n"); + return; + } + if (ncm_interface.itf_data_alt != 1) { + TU_LOG_DRV("(EE) !xmit_start_if_possible 2\n"); + return; + } + if (usbd_edpt_busy(rhport, ncm_interface.ep_in)) { + TU_LOG_DRV(" !xmit_start_if_possible 3\n"); return; } - transmit_ntb_t *ntb = &transmit_ntb[ncm_interface.current_ntb]; - size_t ntb_length = ncm_interface.next_datagram_offset; + ncm_interface.xmit_tinyusb_ntb = xmit_get_next_ready_ntb(); + if (ncm_interface.xmit_tinyusb_ntb == NULL) { + if (ncm_interface.xmit_glue_ntb == NULL || ncm_interface.xmit_glue_ntb_datagram_ndx == 0) { + // -> really nothing is waiting + return; + } + ncm_interface.xmit_tinyusb_ntb = ncm_interface.xmit_glue_ntb; + ncm_interface.xmit_glue_ntb = NULL; + } + + #if CFG_TUD_NCM_LOG_LEVEL >= 3 + { + uint16_t len = ncm_interface.xmit_tinyusb_ntb->nth.wBlockLength; + TU_LOG_BUF(3, ncm_interface.xmit_tinyusb_ntb->data[i], len); + } + #endif + + if (ncm_interface.xmit_glue_ntb_datagram_ndx != 1) { + TU_LOG_DRV(">> %d %d\n", ncm_interface.xmit_tinyusb_ntb->nth.wBlockLength, ncm_interface.xmit_glue_ntb_datagram_ndx); + } + + // Kick off an endpoint transfer + usbd_edpt_xfer(0, ncm_interface.ep_in, ncm_interface.xmit_tinyusb_ntb->data, ncm_interface.xmit_tinyusb_ntb->nth.wBlockLength); +} // xmit_start_if_possible + +/** + * check if a new datagram fits into the current NTB + */ +static bool xmit_requested_datagram_fits_into_current_ntb(uint16_t datagram_size) { + TU_LOG_DRV("xmit_requested_datagram_fits_into_current_ntb(%d) - %p %p\n", datagram_size, ncm_interface.xmit_tinyusb_ntb, ncm_interface.xmit_glue_ntb); + + if (ncm_interface.xmit_glue_ntb == NULL) { + return false; + } + if (ncm_interface.xmit_glue_ntb_datagram_ndx >= CFG_TUD_NCM_IN_MAX_DATAGRAMS_PER_NTB) { + return false; + } + if (ncm_interface.xmit_glue_ntb->nth.wBlockLength + datagram_size + XMIT_ALIGN_OFFSET(datagram_size) > CFG_TUD_NCM_OUT_NTB_MAX_SIZE) { + return false; + } + return true; +} // xmit_requested_datagram_fits_into_current_ntb + +/** + * Setup an NTB for the glue logic + */ +static bool xmit_setup_next_glue_ntb(void) { + TU_LOG_DRV("xmit_setup_next_glue_ntb - %p\n", ncm_interface.xmit_glue_ntb); + + if (ncm_interface.xmit_glue_ntb != NULL) { + // put NTB into waiting list (the new datagram did not fit in) + xmit_put_ntb_into_ready_list(ncm_interface.xmit_glue_ntb); + } + + ncm_interface.xmit_glue_ntb = xmit_get_free_ntb();// get next buffer (if any) + if (ncm_interface.xmit_glue_ntb == NULL) { + TU_LOG_DRV(" xmit_setup_next_glue_ntb - nothing free\n");// should happen rarely + return false; + } + + ncm_interface.xmit_glue_ntb_datagram_ndx = 0; + + xmit_ntb_t *ntb = ncm_interface.xmit_glue_ntb; // Fill in NTB header ntb->nth.dwSignature = NTH16_SIGNATURE; - ntb->nth.wHeaderLength = sizeof(nth16_t); - ntb->nth.wSequence = ncm_interface.nth_sequence++; - ntb->nth.wBlockLength = ntb_length; - ntb->nth.wNdpIndex = sizeof(nth16_t); + ntb->nth.wHeaderLength = sizeof(ntb->nth); + ntb->nth.wSequence = ncm_interface.xmit_sequence++; + ntb->nth.wBlockLength = sizeof(ntb->nth) + sizeof(ntb->ndp) + sizeof(ntb->ndp_datagram); + ntb->nth.wNdpIndex = sizeof(ntb->nth); // Fill in NDP16 header and terminator ntb->ndp.dwSignature = NDP16_SIGNATURE_NCM0; - ntb->ndp.wLength = sizeof(ndp16_t) + (ncm_interface.datagram_count + 1) * sizeof(ndp16_datagram_t); + ntb->ndp.wLength = sizeof(ntb->ndp) + sizeof(ntb->ndp_datagram); ntb->ndp.wNextNdpIndex = 0; - ntb->ndp.datagram[ncm_interface.datagram_count].wDatagramIndex = 0; - ntb->ndp.datagram[ncm_interface.datagram_count].wDatagramLength = 0; - // Kick off an endpoint transfer - usbd_edpt_xfer(0, ncm_interface.ep_in, ntb->data, ntb_length); - ncm_interface.transferring = true; - - // Swap to the other NTB and clear it out - ncm_interface.current_ntb = 1 - ncm_interface.current_ntb; - ncm_prepare_for_tx(); -} + memset(ntb->ndp_datagram, 0, sizeof(ntb->ndp_datagram)); + return true; +} // xmit_setup_next_glue_ntb -tu_static struct ecm_notify_struct ncm_notify_connected = -{ - .header = { - .bmRequestType_bit = { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_IN - }, - .bRequest = CDC_NOTIF_NETWORK_CONNECTION, - .wValue = 1 /* Connected */, - .wLength = 0, - }, -}; +//----------------------------------------------------------------------------- +// +// all the recv_*() stuff (TinyUSB -> driver -> glue logic) +// -tu_static struct ecm_notify_struct ncm_notify_speed_change = -{ - .header = { - .bmRequestType_bit = { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_IN - }, - .bRequest = CDC_NOTIF_CONNECTION_SPEED_CHANGE, - .wLength = 8, - }, - .downlink = 10000000, - .uplink = 10000000, -}; +/** + * Return pointer to an available receive buffer or NULL. + * Returned buffer (if any) has the size \a CFG_TUD_NCM_OUT_NTB_MAX_SIZE. + */ +static recv_ntb_t *recv_get_free_ntb(void) { + TU_LOG_DRV("recv_get_free_ntb()\n"); -void tud_network_recv_renew(void) -{ - if (!ncm_interface.num_datagrams) - { - usbd_edpt_xfer(0, ncm_interface.ep_out, receive_ntb, sizeof(receive_ntb)); - return; + for (int i = 0; i < RECV_NTB_N; ++i) { + if (ncm_interface.recv_free_ntb[i] != NULL) { + recv_ntb_t *free = ncm_interface.recv_free_ntb[i]; + ncm_interface.recv_free_ntb[i] = NULL; + return free; + } } + return NULL; +} // recv_get_free_ntb - const ndp16_t *ndp = ncm_interface.ndp; - const int i = ncm_interface.current_datagram_index; - ncm_interface.current_datagram_index++; - ncm_interface.num_datagrams--; +/** + * Get the next NTB from the ready list (and remove it from the list). + * If the ready list is empty, return NULL. + */ +static recv_ntb_t *recv_get_next_ready_ntb(void) { + recv_ntb_t *r = NULL; - tud_network_recv_cb(receive_ntb + ndp->datagram[i].wDatagramIndex, ndp->datagram[i].wDatagramLength); -} + r = ncm_interface.recv_ready_ntb[0]; + memmove(ncm_interface.recv_ready_ntb + 0, ncm_interface.recv_ready_ntb + 1, sizeof(ncm_interface.recv_ready_ntb) - sizeof(ncm_interface.recv_ready_ntb[0])); + ncm_interface.recv_ready_ntb[RECV_NTB_N - 1] = NULL; -//--------------------------------------------------------------------+ -// USBD Driver API -//--------------------------------------------------------------------+ + TU_LOG_DRV("recv_get_next_ready_ntb: %p\n", r); + return r; +} // recv_get_next_ready_ntb -void netd_init(void) -{ - tu_memclr(&ncm_interface, sizeof(ncm_interface)); - ncm_interface.ntb_in_size = CFG_TUD_NCM_IN_NTB_MAX_SIZE; - ncm_interface.max_datagrams_per_ntb = CFG_TUD_NCM_MAX_DATAGRAMS_PER_NTB; - ncm_prepare_for_tx(); -} +/** + * Put NTB into the receiver free list. + */ +static void recv_put_ntb_into_free_list(recv_ntb_t *free_ntb) { + TU_LOG_DRV("recv_put_ntb_into_free_list(%p)\n", free_ntb); -void netd_reset(uint8_t rhport) -{ - (void) rhport; + for (int i = 0; i < RECV_NTB_N; ++i) { + if (ncm_interface.recv_free_ntb[i] == NULL) { + ncm_interface.recv_free_ntb[i] = free_ntb; + return; + } + } + TU_LOG_DRV("(EE) recv_put_ntb_into_free_list - no entry in free list\n");// this should not happen +} // recv_put_ntb_into_free_list - netd_init(); -} +/** + * \a ready_ntb holds a validated NTB, + * put this buffer into the waiting list. + */ +static void recv_put_ntb_into_ready_list(recv_ntb_t *ready_ntb) { + TU_LOG_DRV("recv_put_ntb_into_ready_list(%p) %d\n", ready_ntb, ready_ntb->nth.wBlockLength); -uint16_t netd_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len) -{ - // confirm interface hasn't already been allocated - TU_ASSERT(0 == ncm_interface.ep_notif, 0); + for (int i = 0; i < RECV_NTB_N; ++i) { + if (ncm_interface.recv_ready_ntb[i] == NULL) { + ncm_interface.recv_ready_ntb[i] = ready_ntb; + return; + } + } + TU_LOG_DRV("(EE) recv_put_ntb_into_ready_list: ready list full\n");// this should not happen +} // recv_put_ntb_into_ready_list - //------------- Management Interface -------------// - ncm_interface.itf_num = itf_desc->bInterfaceNumber; +/** + * If possible, start a new reception TinyUSB -> driver. + */ +static void recv_try_to_start_new_reception(uint8_t rhport) { + TU_LOG_DRV("recv_try_to_start_new_reception(%d)\n", rhport); - uint16_t drv_len = sizeof(tusb_desc_interface_t); - uint8_t const * p_desc = tu_desc_next( itf_desc ); + if (ncm_interface.itf_data_alt != 1) { + return; + } + if (ncm_interface.recv_tinyusb_ntb != NULL) { + return; + } + if (usbd_edpt_busy(rhport, ncm_interface.ep_out)) { + return; + } - // Communication Functional Descriptors - while ( TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc) && drv_len <= max_len ) - { - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); + ncm_interface.recv_tinyusb_ntb = recv_get_free_ntb(); + if (ncm_interface.recv_tinyusb_ntb == NULL) { + return; } - // notification endpoint (if any) - if ( TUSB_DESC_ENDPOINT == tu_desc_type(p_desc) ) - { - TU_ASSERT( usbd_edpt_open(rhport, (tusb_desc_endpoint_t const *) p_desc), 0 ); + // initiate transfer + TU_LOG_DRV(" start reception\n"); + bool r = usbd_edpt_xfer(rhport, ncm_interface.ep_out, ncm_interface.recv_tinyusb_ntb->data, CFG_TUD_NCM_OUT_NTB_MAX_SIZE); + if (!r) { + recv_put_ntb_into_free_list(ncm_interface.recv_tinyusb_ntb); + ncm_interface.recv_tinyusb_ntb = NULL; + } +} // recv_try_to_start_new_reception - ncm_interface.ep_notif = ((tusb_desc_endpoint_t const *) p_desc)->bEndpointAddress; +/** + * Validate incoming datagram. + * \return true if valid + * + * \note + * \a ndp16->wNextNdpIndex != 0 is not supported + */ +static bool recv_validate_datagram(const recv_ntb_t *ntb, uint32_t len) { + const nth16_t *nth16 = &(ntb->nth); - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); + TU_LOG_DRV("recv_validate_datagram(%p, %d)\n", ntb, (int) len); + + // check header + if (nth16->wHeaderLength != sizeof(nth16_t)) { + TU_LOG_DRV("(EE) ill nth16 length: %d\n", nth16->wHeaderLength); + return false; + } + if (nth16->dwSignature != NTH16_SIGNATURE) { + TU_LOG_DRV("(EE) ill signature: 0x%08x\n", (unsigned) nth16->dwSignature); + return false; + } + if (len < sizeof(nth16_t) + sizeof(ndp16_t) + 2 * sizeof(ndp16_datagram_t)) { + TU_LOG_DRV("(EE) ill min len: %d\n", len); + return false; + } + if (nth16->wBlockLength > len) { + TU_LOG_DRV("(EE) ill block length: %d > %d\n", nth16->wBlockLength, len); + return false; + } + if (nth16->wBlockLength > CFG_TUD_NCM_OUT_NTB_MAX_SIZE) { + TU_LOG_DRV("(EE) ill block length2: %d > %d\n", nth16->wBlockLength, CFG_TUD_NCM_OUT_NTB_MAX_SIZE); + return false; + } + if (nth16->wNdpIndex < sizeof(nth16) || nth16->wNdpIndex > len - (sizeof(ndp16_t) + 2 * sizeof(ndp16_datagram_t))) { + TU_LOG_DRV("(EE) ill position of first ndp: %d (%d)\n", nth16->wNdpIndex, len); + return false; } - //------------- Data Interface -------------// - // - CDC-NCM data interface has 2 alternate settings - // - 0 : zero endpoints for inactive (default) - // - 1 : IN & OUT endpoints for transfer of NTBs - TU_ASSERT(TUSB_DESC_INTERFACE == tu_desc_type(p_desc), 0); + // check (first) NDP(16) + const ndp16_t *ndp16 = (const ndp16_t *) (ntb->data + nth16->wNdpIndex); - do - { - tusb_desc_interface_t const * data_itf_desc = (tusb_desc_interface_t const *) p_desc; - TU_ASSERT(TUSB_CLASS_CDC_DATA == data_itf_desc->bInterfaceClass, 0); + if (ndp16->wLength < sizeof(ndp16_t) + 2 * sizeof(ndp16_datagram_t)) { + TU_LOG_DRV("(EE) ill ndp16 length: %d\n", ndp16->wLength); + return false; + } + if (ndp16->dwSignature != NDP16_SIGNATURE_NCM0 && ndp16->dwSignature != NDP16_SIGNATURE_NCM1) { + TU_LOG_DRV("(EE) ill signature: 0x%08x\n", (unsigned) ndp16->dwSignature); + return false; + } + if (ndp16->wNextNdpIndex != 0) { + TU_LOG_DRV("(EE) cannot handle wNextNdpIndex!=0 (%d)\n", ndp16->wNextNdpIndex); + return false; + } - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); - } while((TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && (drv_len <= max_len)); + const ndp16_datagram_t *ndp16_datagram = (const ndp16_datagram_t *) (ntb->data + nth16->wNdpIndex + sizeof(ndp16_t)); + int ndx = 0; + uint16_t max_ndx = (uint16_t) ((ndp16->wLength - sizeof(ndp16_t)) / sizeof(ndp16_datagram_t)); - // Pair of endpoints - TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(p_desc), 0); + if (max_ndx > 2) { // number of datagrams in NTB > 1 + TU_LOG_DRV("<< %d (%d)\n", max_ndx - 1, ntb->nth.wBlockLength); + } + if (ndp16_datagram[max_ndx - 1].wDatagramIndex != 0 || ndp16_datagram[max_ndx - 1].wDatagramLength != 0) { + TU_LOG_DRV(" max_ndx != 0\n"); + return false; + } + while (ndp16_datagram[ndx].wDatagramIndex != 0 && ndp16_datagram[ndx].wDatagramLength != 0) { + TU_LOG_DRV(" << %d %d\n", ndp16_datagram[ndx].wDatagramIndex, ndp16_datagram[ndx].wDatagramLength); + if (ndp16_datagram[ndx].wDatagramIndex > len) { + TU_LOG_DRV("(EE) ill start of datagram[%d]: %d (%d)\n", ndx, ndp16_datagram[ndx].wDatagramIndex, len); + return false; + } + if (ndp16_datagram[ndx].wDatagramIndex + ndp16_datagram[ndx].wDatagramLength > len) { + TU_LOG_DRV("(EE) ill end of datagram[%d]: %d (%d)\n", ndx, ndp16_datagram[ndx].wDatagramIndex + ndp16_datagram[ndx].wDatagramLength, len); + return false; + } + ++ndx; + } - TU_ASSERT(usbd_open_edpt_pair(rhport, p_desc, 2, TUSB_XFER_BULK, &ncm_interface.ep_out, &ncm_interface.ep_in) ); + #if CFG_TUD_NCM_LOG_LEVEL >= 3 + TU_LOG_BUF(3, ntb->data[i], len); + #endif - drv_len += 2*sizeof(tusb_desc_endpoint_t); + // -> ntb contains a valid packet structure + // ok... I did not check for garbage within the datagram indices... + return true; +} // recv_validate_datagram - return drv_len; -} +/** + * Transfer the next (pending) datagram to the glue logic and return receive buffer if empty. + */ +static void recv_transfer_datagram_to_glue_logic(void) { + TU_LOG_DRV("recv_transfer_datagram_to_glue_logic()\n"); -static void ncm_report(void) -{ - uint8_t const rhport = 0; - if (ncm_interface.report_state == REPORT_SPEED) { - ncm_notify_speed_change.header.wIndex = ncm_interface.itf_num; - usbd_edpt_xfer(rhport, ncm_interface.ep_notif, (uint8_t *) &ncm_notify_speed_change, sizeof(ncm_notify_speed_change)); - ncm_interface.report_state = REPORT_CONNECTED; - ncm_interface.report_pending = true; - } else if (ncm_interface.report_state == REPORT_CONNECTED) { - ncm_notify_connected.header.wIndex = ncm_interface.itf_num; - usbd_edpt_xfer(rhport, ncm_interface.ep_notif, (uint8_t *) &ncm_notify_connected, sizeof(ncm_notify_connected)); - ncm_interface.report_state = REPORT_DONE; - ncm_interface.report_pending = true; + if (ncm_interface.recv_glue_ntb == NULL) { + ncm_interface.recv_glue_ntb = recv_get_next_ready_ntb(); + TU_LOG_DRV(" new buffer for glue logic: %p\n", ncm_interface.recv_glue_ntb); + ncm_interface.recv_glue_ntb_datagram_ndx = 0; } -} -TU_ATTR_WEAK void tud_network_link_state_cb(bool state) -{ - (void)state; -} + if (ncm_interface.recv_glue_ntb != NULL) { + const ndp16_datagram_t *ndp16_datagram = (ndp16_datagram_t *) (ncm_interface.recv_glue_ntb->data + ncm_interface.recv_glue_ntb->nth.wNdpIndex + sizeof(ndp16_t)); -// Handle class control request -// return false to stall control endpoint (e.g unsupported request) -bool netd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request) -{ - if ( stage != CONTROL_STAGE_SETUP ) return true; + if (ndp16_datagram[ncm_interface.recv_glue_ntb_datagram_ndx].wDatagramIndex == 0) { + TU_LOG_DRV("(EE) SOMETHING WENT WRONG 1\n"); + } else if (ndp16_datagram[ncm_interface.recv_glue_ntb_datagram_ndx].wDatagramLength == 0) { + TU_LOG_DRV("(EE) SOMETHING WENT WRONG 2\n"); + } else { + uint16_t datagramIndex = ndp16_datagram[ncm_interface.recv_glue_ntb_datagram_ndx].wDatagramIndex; + uint16_t datagramLength = ndp16_datagram[ncm_interface.recv_glue_ntb_datagram_ndx].wDatagramLength; - switch ( request->bmRequestType_bit.type ) - { - case TUSB_REQ_TYPE_STANDARD: - switch ( request->bRequest ) - { - case TUSB_REQ_GET_INTERFACE: - { - uint8_t const req_itfnum = (uint8_t) request->wIndex; - TU_VERIFY(ncm_interface.itf_num + 1 == req_itfnum); + TU_LOG_DRV(" recv[%d] - %d %d\n", ncm_interface.recv_glue_ntb_datagram_ndx, datagramIndex, datagramLength); + if (tud_network_recv_cb(ncm_interface.recv_glue_ntb->data + datagramIndex, datagramLength)) { + // send datagram successfully to glue logic + TU_LOG_DRV(" OK\n"); + datagramIndex = ndp16_datagram[ncm_interface.recv_glue_ntb_datagram_ndx + 1].wDatagramIndex; + datagramLength = ndp16_datagram[ncm_interface.recv_glue_ntb_datagram_ndx + 1].wDatagramLength; - tud_control_xfer(rhport, request, &ncm_interface.itf_data_alt, 1); + if (datagramIndex != 0 && datagramLength != 0) { + // -> next datagram + ++ncm_interface.recv_glue_ntb_datagram_ndx; + } else { + // end of datagrams reached + recv_put_ntb_into_free_list(ncm_interface.recv_glue_ntb); + ncm_interface.recv_glue_ntb = NULL; } - break; + } + } + } +} // recv_transfer_datagram_to_glue_logic - case TUSB_REQ_SET_INTERFACE: - { - uint8_t const req_itfnum = (uint8_t) request->wIndex; - uint8_t const req_alt = (uint8_t) request->wValue; +//----------------------------------------------------------------------------- +// +// all the tud_network_*() stuff (glue logic -> driver) +// - // Only valid for Data Interface with Alternate is either 0 or 1 - TU_VERIFY(ncm_interface.itf_num + 1 == req_itfnum && req_alt < 2); +/** + * Check if the glue logic is allowed to call tud_network_xmit(). + * This function also fetches a next buffer if required, so that tud_network_xmit() is ready for copy + * and transmission operation. + */ +bool tud_network_can_xmit(uint16_t size) { + TU_LOG_DRV("tud_network_can_xmit(%d)\n", size); - if (req_alt != ncm_interface.itf_data_alt) { - ncm_interface.itf_data_alt = req_alt; + TU_ASSERT(size <= CFG_TUD_NCM_OUT_NTB_MAX_SIZE - (sizeof(nth16_t) + sizeof(ndp16_t) + 2 * sizeof(ndp16_datagram_t)), false); - if (ncm_interface.itf_data_alt) { - if (!usbd_edpt_busy(rhport, ncm_interface.ep_out)) { - tud_network_recv_renew(); // prepare for incoming datagrams - } - if (!ncm_interface.report_pending) { - ncm_report(); - } - } + if (xmit_requested_datagram_fits_into_current_ntb(size) || xmit_setup_next_glue_ntb()) { + // -> everything is fine + return true; + } + xmit_start_if_possible(ncm_interface.rhport); + TU_LOG_DRV("(II) tud_network_can_xmit: request blocked\n");// could happen if all xmit buffers are full (but should happen rarely) + return false; +} // tud_network_can_xmit - tud_network_link_state_cb(ncm_interface.itf_data_alt); - } +/** + * Put a datagram into a waiting NTB. + * If currently no transmission is started, then initiate transmission. + */ +void tud_network_xmit(void *ref, uint16_t arg) { + TU_LOG_DRV("tud_network_xmit(%p, %d)\n", ref, arg); - tud_control_status(rhport, request); - } - break; + if (ncm_interface.xmit_glue_ntb == NULL) { + TU_LOG_DRV("(EE) tud_network_xmit: no buffer\n");// must not happen (really) + return; + } - // unsupported request - default: return false; - } - break; + xmit_ntb_t *ntb = ncm_interface.xmit_glue_ntb; - case TUSB_REQ_TYPE_CLASS: - TU_VERIFY (ncm_interface.itf_num == request->wIndex); + // copy new datagram to the end of the current NTB + uint16_t size = tud_network_xmit_cb(ntb->data + ntb->nth.wBlockLength, ref, arg); - if (NCM_GET_NTB_PARAMETERS == request->bRequest) - { - tud_control_xfer(rhport, request, (void*)(uintptr_t) &ntb_parameters, sizeof(ntb_parameters)); - } + // correct NTB internals + ntb->ndp_datagram[ncm_interface.xmit_glue_ntb_datagram_ndx].wDatagramIndex = ntb->nth.wBlockLength; + ntb->ndp_datagram[ncm_interface.xmit_glue_ntb_datagram_ndx].wDatagramLength = size; + ncm_interface.xmit_glue_ntb_datagram_ndx += 1; - break; + ntb->nth.wBlockLength += (uint16_t) (size + XMIT_ALIGN_OFFSET(size)); - // unsupported request - default: return false; + if (ntb->nth.wBlockLength > CFG_TUD_NCM_OUT_NTB_MAX_SIZE) { + TU_LOG_DRV("(EE) tud_network_xmit: buffer overflow\n"); // must not happen (really) + return; } - return true; -} + xmit_start_if_possible(ncm_interface.rhport); +} // tud_network_xmit -static void handle_incoming_datagram(uint32_t len) -{ - uint32_t size = len; +/** + * Keep the receive logic busy and transfer pending packets to the glue logic. + */ +void tud_network_recv_renew(void) { + TU_LOG_DRV("tud_network_recv_renew()\n"); - if (len == 0) { - return; - } + recv_transfer_datagram_to_glue_logic(); + recv_try_to_start_new_reception(ncm_interface.rhport); +} // tud_network_recv_renew - TU_ASSERT(size >= sizeof(nth16_t), ); +/** + * Same as tud_network_recv_renew() but knows \a rhport + */ +void tud_network_recv_renew_r(uint8_t rhport) { + TU_LOG_DRV("tud_network_recv_renew_r(%d)\n", rhport); - const nth16_t *hdr = (const nth16_t *)receive_ntb; - TU_ASSERT(hdr->dwSignature == NTH16_SIGNATURE, ); - TU_ASSERT(hdr->wNdpIndex >= sizeof(nth16_t) && (hdr->wNdpIndex + sizeof(ndp16_t)) <= len, ); + ncm_interface.rhport = rhport; + tud_network_recv_renew(); +} // tud_network_recv_renew - const ndp16_t *ndp = (const ndp16_t *)(receive_ntb + hdr->wNdpIndex); - TU_ASSERT(ndp->dwSignature == NDP16_SIGNATURE_NCM0 || ndp->dwSignature == NDP16_SIGNATURE_NCM1, ); - TU_ASSERT(hdr->wNdpIndex + ndp->wLength <= len, ); +//----------------------------------------------------------------------------- +// +// all the netd_*() stuff (interface TinyUSB -> driver) +// +/** + * Initialize the driver data structures. + * Might be called several times. + */ +void netd_init(void) { + TU_LOG_DRV("netd_init()\n"); - int num_datagrams = (ndp->wLength - 12) / 4; - ncm_interface.current_datagram_index = 0; - ncm_interface.num_datagrams = 0; - ncm_interface.ndp = ndp; - for (int i = 0; i < num_datagrams && ndp->datagram[i].wDatagramIndex && ndp->datagram[i].wDatagramLength; i++) - { - ncm_interface.num_datagrams++; + memset(&ncm_interface, 0, sizeof(ncm_interface)); + + for (int i = 0; i < XMIT_NTB_N; ++i) { + ncm_interface.xmit_free_ntb[i] = ncm_interface.xmit_ntb + i; } + for (int i = 0; i < RECV_NTB_N; ++i) { + ncm_interface.recv_free_ntb[i] = ncm_interface.recv_ntb + i; + } +} // netd_init - tud_network_recv_renew(); +/** + * Deinit driver + */ +bool netd_deinit(void) { + return true; } -bool netd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) -{ +/** + * Resets the port. + * In this driver this is the same as netd_init() + */ +void netd_reset(uint8_t rhport) { (void) rhport; - (void) result; - /* new datagram receive_ntb */ - if (ep_addr == ncm_interface.ep_out ) - { - handle_incoming_datagram(xferred_bytes); - } + netd_init(); +} // netd_reset - /* data transmission finished */ - if (ep_addr == ncm_interface.ep_in ) - { - if (ncm_interface.transferring) { - ncm_interface.transferring = false; - } +/** + * Open the USB interface. + * - parse the USB descriptor \a TUD_CDC_NCM_DESCRIPTOR for itfnum and endpoints + * - a specific order of elements in the descriptor is tested. + * + * \note + * Actually all of the information could be read directly from \a itf_desc, because the + * structure and the values are well known. But we do it this way. + * + * \post + * - \a itf_num set + * - \a ep_notif, \a ep_in and \a ep_out are set + * - USB interface is open + */ +uint16_t netd_open(uint8_t rhport, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { + TU_ASSERT(ncm_interface.ep_notif == 0, 0);// assure that the interface is only opened once - // If there are datagrams queued up that we tried to send while this NTB was being emitted, send them now - if (ncm_interface.datagram_count && ncm_interface.itf_data_alt == 1) { - ncm_start_tx(); - } - } + ncm_interface.itf_num = itf_desc->bInterfaceNumber;// management interface - if (ep_addr == ncm_interface.ep_notif ) - { - ncm_interface.report_pending = false; - ncm_report(); + // skip the two first entries and the following TUSB_DESC_CS_INTERFACE entries + uint16_t drv_len = sizeof(tusb_desc_interface_t); + uint8_t const *p_desc = tu_desc_next(itf_desc); + while (tu_desc_type(p_desc) == TUSB_DESC_CS_INTERFACE && drv_len <= max_len) { + drv_len += tu_desc_len(p_desc); + p_desc = tu_desc_next(p_desc); } - return true; -} + // get notification endpoint + TU_ASSERT(tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT, 0); + TU_ASSERT(usbd_edpt_open(rhport, (tusb_desc_endpoint_t const *) p_desc), 0); + ncm_interface.ep_notif = ((tusb_desc_endpoint_t const *) p_desc)->bEndpointAddress; + drv_len += tu_desc_len(p_desc); + p_desc = tu_desc_next(p_desc); -// poll network driver for its ability to accept another packet to transmit -bool tud_network_can_xmit(uint16_t size) -{ - TU_VERIFY(ncm_interface.itf_data_alt == 1); + // skip the following TUSB_DESC_INTERFACE entries (which must be TUSB_CLASS_CDC_DATA) + while (tu_desc_type(p_desc) == TUSB_DESC_INTERFACE && drv_len <= max_len) { + tusb_desc_interface_t const *data_itf_desc = (tusb_desc_interface_t const *) p_desc; + TU_ASSERT(data_itf_desc->bInterfaceClass == TUSB_CLASS_CDC_DATA, 0); - if (ncm_interface.datagram_count >= ncm_interface.max_datagrams_per_ntb) { - TU_LOG2("NTB full [by count]\r\n"); - return false; + drv_len += tu_desc_len(p_desc); + p_desc = tu_desc_next(p_desc); } - size_t next_datagram_offset = ncm_interface.next_datagram_offset; - if (next_datagram_offset + size > ncm_interface.ntb_in_size) { - TU_LOG2("ntb full [by size]\r\n"); - return false; + // a TUSB_DESC_ENDPOINT (actually two) must follow, open these endpoints + TU_ASSERT(tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT, 0); + TU_ASSERT(usbd_open_edpt_pair(rhport, p_desc, 2, TUSB_XFER_BULK, &ncm_interface.ep_out, &ncm_interface.ep_in)); + drv_len += 2 * sizeof(tusb_desc_endpoint_t); + + return drv_len; +} // netd_open + +/** + * Handle TinyUSB requests to process transfer events. + */ +bool netd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { + (void) result; + + if (ep_addr == ncm_interface.ep_out) { + // new NTB received + // - make the NTB valid + // - if ready transfer datagrams to the glue logic for further processing + // - if there is a free receive buffer, initiate reception + if (!recv_validate_datagram(ncm_interface.recv_tinyusb_ntb, xferred_bytes)) { + // verification failed: ignore NTB and return it to free + TU_LOG_DRV("(EE) VALIDATION FAILED. WHAT CAN WE DO IN THIS CASE?\n"); + } else { + // packet ok -> put it into ready list + recv_put_ntb_into_ready_list(ncm_interface.recv_tinyusb_ntb); + } + ncm_interface.recv_tinyusb_ntb = NULL; + tud_network_recv_renew_r(rhport); + } else if (ep_addr == ncm_interface.ep_in) { + // transmission of an NTB finished + // - free the transmitted NTB buffer + // - insert ZLPs when necessary + // - if there is another transmit NTB waiting, try to start transmission + xmit_put_ntb_into_free_list(ncm_interface.xmit_tinyusb_ntb); + ncm_interface.xmit_tinyusb_ntb = NULL; + if (!xmit_insert_required_zlp(rhport, xferred_bytes)) { + xmit_start_if_possible(rhport); + } + } else if (ep_addr == ncm_interface.ep_notif) { + // next transfer on notification channel + notification_xmit(rhport, true); } return true; -} +} // netd_xfer_cb -void tud_network_xmit(void *ref, uint16_t arg) -{ - transmit_ntb_t *ntb = &transmit_ntb[ncm_interface.current_ntb]; - size_t next_datagram_offset = ncm_interface.next_datagram_offset; +/** + * Respond to TinyUSB control requests. + * At startup transmission of notification packets are done here. + */ +bool netd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const *request) { + if (stage != CONTROL_STAGE_SETUP) { + return true; + } - uint16_t size = tud_network_xmit_cb(ntb->data + next_datagram_offset, ref, arg); + switch (request->bmRequestType_bit.type) { + case TUSB_REQ_TYPE_STANDARD: - ntb->ndp.datagram[ncm_interface.datagram_count].wDatagramIndex = ncm_interface.next_datagram_offset; - ntb->ndp.datagram[ncm_interface.datagram_count].wDatagramLength = size; + switch (request->bRequest) { + case TUSB_REQ_GET_INTERFACE: { + TU_VERIFY(ncm_interface.itf_num + 1 == request->wIndex, false); - ncm_interface.datagram_count++; - next_datagram_offset += size; + tud_control_xfer(rhport, request, &ncm_interface.itf_data_alt, 1); + } break; - // round up so the next datagram is aligned correctly - next_datagram_offset += (CFG_TUD_NCM_ALIGNMENT - 1); - next_datagram_offset -= (next_datagram_offset % CFG_TUD_NCM_ALIGNMENT); + case TUSB_REQ_SET_INTERFACE: { + TU_VERIFY(ncm_interface.itf_num + 1 == request->wIndex && request->wValue < 2, false); - ncm_interface.next_datagram_offset = next_datagram_offset; + ncm_interface.itf_data_alt = (uint8_t) request->wValue; - ncm_start_tx(); -} + if (ncm_interface.itf_data_alt == 1) { + tud_network_recv_renew_r(rhport); + notification_xmit(rhport, false); + } + tud_control_status(rhport, request); + } break; -#endif + // unsupported request + default: + return false; + } + break; + + case TUSB_REQ_TYPE_CLASS: + TU_VERIFY(ncm_interface.itf_num == request->wIndex, false); + switch (request->bRequest) { + case NCM_GET_NTB_PARAMETERS: { + // transfer NTB parameters to host. + tud_control_xfer(rhport, request, (void *) (uintptr_t) &ntb_parameters, sizeof(ntb_parameters)); + } break; + + // unsupported request + default: + return false; + } + break; + // unsupported request + default: + return false; + } + + return true; +} // netd_control_xfer_cb + +#endif // ( CFG_TUD_ENABLED && CFG_TUD_NCM ) diff --git a/src/class/net/net_device.h b/src/class/net/net_device.h index 399916355..4c9a92f2d 100644 --- a/src/class/net/net_device.h +++ b/src/class/net/net_device.h @@ -28,14 +28,13 @@ #ifndef _TUSB_NET_DEVICE_H_ #define _TUSB_NET_DEVICE_H_ +#include <stdint.h> #include "class/cdc/cdc.h" #if CFG_TUD_ECM_RNDIS && CFG_TUD_NCM #error "Cannot enable both ECM_RNDIS and NCM network drivers" #endif -#include "ncm.h" - /* declared here, NOT in usb_descriptors.c, so that the driver can intelligently ZLP as needed */ #define CFG_TUD_NET_ENDPOINT_SIZE (TUD_OPT_HIGH_SPEED ? 512 : 64) @@ -44,21 +43,13 @@ #define CFG_TUD_NET_MTU 1514 #endif -#ifndef CFG_TUD_NCM_IN_NTB_MAX_SIZE -#define CFG_TUD_NCM_IN_NTB_MAX_SIZE 3200 -#endif - -#ifndef CFG_TUD_NCM_OUT_NTB_MAX_SIZE -#define CFG_TUD_NCM_OUT_NTB_MAX_SIZE 3200 -#endif -#ifndef CFG_TUD_NCM_MAX_DATAGRAMS_PER_NTB -#define CFG_TUD_NCM_MAX_DATAGRAMS_PER_NTB 8 -#endif +// Table 4.3 Data Class Interface Protocol Codes +typedef enum +{ + NCM_DATA_PROTOCOL_NETWORK_TRANSFER_BLOCK = 0x01 +} ncm_data_interface_protocol_code_t; -#ifndef CFG_TUD_NCM_ALIGNMENT -#define CFG_TUD_NCM_ALIGNMENT 4 -#endif #ifdef __cplusplus extern "C" { @@ -96,15 +87,11 @@ void tud_network_init_cb(void); // TODO removed later since it is not part of tinyusb stack extern uint8_t tud_network_mac_address[6]; -//------------- NCM -------------// - -// callback to client providing optional indication of internal state of network driver -void tud_network_link_state_cb(bool state); - //--------------------------------------------------------------------+ // INTERNAL USBD-CLASS DRIVER API //--------------------------------------------------------------------+ void netd_init (void); +bool netd_deinit (void); void netd_reset (uint8_t rhport); uint16_t netd_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool netd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/usbtmc/usbtmc.h b/src/class/usbtmc/usbtmc.h index 090ab3c4a..327de087c 100644 --- a/src/class/usbtmc/usbtmc.h +++ b/src/class/usbtmc/usbtmc.h @@ -184,6 +184,23 @@ typedef enum { } usmtmc_request_type_enum; typedef enum { + // The last and first valid bNotify1 for use by the USBTMC class specification. + USBTMC_bNOTIFY1_USBTMC_FIRST = 0x00, + USBTMC_bNOTIFY1_USBTMC_LAST = 0x3F, + + // The last and first valid bNotify1 for use by vendors. + USBTMC_bNOTIFY1_VENDOR_SPECIFIC_FIRST = 0x40, + USBTMC_bNOTIFY1_VENDOR_SPECIFIC_LAST = 0x7F, + + // The last and first valid bNotify1 for use by USBTMC subclass specifications. + USBTMC_bNOTIFY1_SUBCLASS_FIRST = 0x80, + USBTMC_bNOTIFY1_SUBCLASS_LAST = 0xFF, + + // From the USB488 Subclass Specification, Section 3.4. + USB488_bNOTIFY1_SRQ = 0x81, +} usbtmc_int_in_payload_format; + +typedef enum { USBTMC_STATUS_SUCCESS = 0x01, USBTMC_STATUS_PENDING = 0x02, USBTMC_STATUS_FAILED = 0x80, @@ -305,6 +322,14 @@ TU_VERIFY_STATIC(sizeof(usbtmc_read_stb_rsp_488_t) == 3u, "struct wrong length") typedef struct TU_ATTR_PACKED { + uint8_t bNotify1; // Must be USB488_bNOTIFY1_SRQ + uint8_t StatusByte; +} usbtmc_srq_interrupt_488_t; + +TU_VERIFY_STATIC(sizeof(usbtmc_srq_interrupt_488_t) == 2u, "struct wrong length"); + +typedef struct TU_ATTR_PACKED +{ struct TU_ATTR_PACKED { unsigned int bTag : 7; diff --git a/src/class/usbtmc/usbtmc_device.c b/src/class/usbtmc/usbtmc_device.c index 573654d58..129ff465d 100644 --- a/src/class/usbtmc/usbtmc_device.c +++ b/src/class/usbtmc/usbtmc_device.c @@ -86,6 +86,11 @@ tu_static char logMsg[150]; // imposes a minimum buffer size of 32 bytes. #define USBTMCD_BUFFER_SIZE (TUD_OPT_HIGH_SPEED ? 512 : 64) +// Interrupt endpoint buffer size, default to 2 bytes as USB488 specification. +#ifndef CFG_TUD_USBTMC_INT_EP_SIZE +#define CFG_TUD_USBTMC_INT_EP_SIZE 2 +#endif + /* * The state machine does not allow simultaneous reading and writing. This is * consistent with USBTMC. @@ -124,13 +129,15 @@ typedef struct uint8_t ep_bulk_in; uint8_t ep_bulk_out; uint8_t ep_int_in; + uint32_t ep_bulk_in_wMaxPacketSize; + uint32_t ep_bulk_out_wMaxPacketSize; // IN buffer is only used for first packet, not the remainder // in order to deal with prepending header CFG_TUSB_MEM_ALIGN uint8_t ep_bulk_in_buf[USBTMCD_BUFFER_SIZE]; - uint32_t ep_bulk_in_wMaxPacketSize; // OUT buffer receives one packet at a time CFG_TUSB_MEM_ALIGN uint8_t ep_bulk_out_buf[USBTMCD_BUFFER_SIZE]; - uint32_t ep_bulk_out_wMaxPacketSize; + // Buffer int msg to ensure alignment and placement correctness + CFG_TUSB_MEM_ALIGN uint8_t ep_int_in_buf[CFG_TUD_USBTMC_INT_EP_SIZE]; uint32_t transfer_size_remaining; // also used for requested length for bulk IN. uint32_t transfer_size_sent; // To keep track of data bytes that have been queued in FIFO (not header bytes) @@ -240,6 +247,19 @@ bool tud_usbtmc_transmit_dev_msg_data( return true; } +bool tud_usbtmc_transmit_notification_data(const void * data, size_t len) +{ +#ifndef NDEBUG + TU_ASSERT(len > 0); + TU_ASSERT(usbtmc_state.ep_int_in != 0); +#endif + TU_VERIFY(usbd_edpt_busy(usbtmc_state.rhport, usbtmc_state.ep_int_in)); + + TU_VERIFY(tu_memcpy_s(usbtmc_state.ep_int_in_buf, sizeof(usbtmc_state.ep_int_in_buf), data, len) == 0); + TU_VERIFY(usbd_edpt_xfer(usbtmc_state.rhport, usbtmc_state.ep_int_in, usbtmc_state.ep_int_in_buf, (uint16_t)len)); + return true; +} + void usbtmcd_init_cb(void) { usbtmc_state.capabilities = tud_usbtmc_get_capabilities_cb(); @@ -260,6 +280,13 @@ void usbtmcd_init_cb(void) usbtmcLock = osal_mutex_create(&usbtmcLockBuffer); } +bool usbtmcd_deinit(void) { + #if OSAL_MUTEX_REQUIRED + osal_mutex_delete(usbtmcLock); + #endif + return true; +} + uint16_t usbtmcd_open_cb(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len) { (void)rhport; @@ -353,7 +380,7 @@ uint16_t usbtmcd_open_cb(uint8_t rhport, tusb_desc_interface_t const * itf_desc, // processing a command (such as a clear). Returns true if it was // in the NAK state and successfully transitioned to the ACK wait // state. -bool tud_usbtmc_start_bus_read() +bool tud_usbtmc_start_bus_read(void) { usbtmcd_state_enum oldState = usbtmc_state.state; switch(oldState) @@ -540,9 +567,10 @@ bool usbtmcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint case STATE_TX_INITIATED: if(usbtmc_state.transfer_size_remaining >= sizeof(usbtmc_state.ep_bulk_in_buf)) { - // FIXME! This removes const below! + // Copy buffer to ensure alignment correctness + memcpy(usbtmc_state.ep_bulk_in_buf, usbtmc_state.devInBuffer, sizeof(usbtmc_state.ep_bulk_in_buf)); TU_VERIFY( usbd_edpt_xfer(rhport, usbtmc_state.ep_bulk_in, - (void*)(uintptr_t) usbtmc_state.devInBuffer, sizeof(usbtmc_state.ep_bulk_in_buf))); + usbtmc_state.ep_bulk_in_buf, sizeof(usbtmc_state.ep_bulk_in_buf))); usbtmc_state.devInBuffer += sizeof(usbtmc_state.ep_bulk_in_buf); usbtmc_state.transfer_size_remaining -= sizeof(usbtmc_state.ep_bulk_in_buf); usbtmc_state.transfer_size_sent += sizeof(usbtmc_state.ep_bulk_in_buf); @@ -578,7 +606,9 @@ bool usbtmcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint } } else if (ep_addr == usbtmc_state.ep_int_in) { - // Good? + if (tud_usbtmc_notification_complete_cb) { + TU_VERIFY(tud_usbtmc_notification_complete_cb()); + } return true; } return false; diff --git a/src/class/usbtmc/usbtmc_device.h b/src/class/usbtmc/usbtmc_device.h index c1298ddb8..b85ef12b5 100644 --- a/src/class/usbtmc/usbtmc_device.h +++ b/src/class/usbtmc/usbtmc_device.h @@ -73,6 +73,10 @@ bool tud_usbtmc_check_abort_bulk_in_cb(usbtmc_check_abort_bulk_rsp_t *rsp); bool tud_usbtmc_check_abort_bulk_out_cb(usbtmc_check_abort_bulk_rsp_t *rsp); bool tud_usbtmc_check_clear_cb(usbtmc_get_clear_status_rsp_t *rsp); +// The interrupt-IN endpoint buffer was transmitted to the host. Use +// tud_usbtmc_transmit_notification_data to send another notification. +TU_ATTR_WEAK bool tud_usbtmc_notification_complete_cb(void); + // Indicator pulse should be 0.5 to 1.0 seconds long TU_ATTR_WEAK bool tud_usbtmc_indicator_pulse_cb(tusb_control_request_t const * msg, uint8_t *tmcResult); @@ -82,31 +86,33 @@ TU_ATTR_WEAK bool tud_usbtmc_msg_trigger_cb(usbtmc_msg_generic_t* msg); //TU_ATTR_WEAK bool tud_usbtmc_app_go_to_local_cb(); #endif -/******************************************* - * Called from app - * - * We keep a reference to the buffer, so it MUST not change until the app is - * notified that the transfer is complete. - ******************************************/ - +// Called from app +// +// We keep a reference to the buffer, so it MUST not change until the app is +// notified that the transfer is complete. bool tud_usbtmc_transmit_dev_msg_data( const void * data, size_t len, bool endOfMessage, bool usingTermChar); +// Buffers a notification to be sent to the host. The data starts +// with the bNotify1 field, see the USBTMC Specification, Table 13. +// +// If the previous notification data has not yet been sent, this +// returns false. +// +// Requires an interrupt endpoint in the interface. +bool tud_usbtmc_transmit_notification_data(const void * data, size_t len); + bool tud_usbtmc_start_bus_read(void); /* "callbacks" from USB device core */ +void usbtmcd_init_cb(void); +bool usbtmcd_deinit(void); uint16_t usbtmcd_open_cb(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); void usbtmcd_reset_cb(uint8_t rhport); bool usbtmcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); bool usbtmcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); -void usbtmcd_init_cb(void); - -/************************************************************ - * USBTMC Descriptor Templates - *************************************************************/ - #endif /* CLASS_USBTMC_USBTMC_DEVICE_H_ */ diff --git a/src/class/vendor/vendor_device.c b/src/class/vendor/vendor_device.c index 389a29696..e87ce3997 100644 --- a/src/class/vendor/vendor_device.c +++ b/src/class/vendor/vendor_device.c @@ -49,10 +49,8 @@ typedef struct uint8_t rx_ff_buf[CFG_TUD_VENDOR_RX_BUFSIZE]; uint8_t tx_ff_buf[CFG_TUD_VENDOR_TX_BUFSIZE]; -#if CFG_FIFO_MUTEX - osal_mutex_def_t rx_ff_mutex; - osal_mutex_def_t tx_ff_mutex; -#endif + OSAL_MUTEX_DEF(rx_ff_mutex); + OSAL_MUTEX_DEF(tx_ff_mutex); // Endpoint Transfer buffer CFG_TUSB_MEM_ALIGN uint8_t epout_buf[CFG_TUD_VENDOR_EPSIZE]; @@ -171,23 +169,47 @@ uint32_t tud_vendor_n_write_available (uint8_t itf) //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void vendord_init(void) -{ +void vendord_init(void) { tu_memclr(_vendord_itf, sizeof(_vendord_itf)); - for(uint8_t i=0; i<CFG_TUD_VENDOR; i++) - { + for(uint8_t i=0; i<CFG_TUD_VENDOR; i++) { vendord_interface_t* p_itf = &_vendord_itf[i]; // config fifo tu_fifo_config(&p_itf->rx_ff, p_itf->rx_ff_buf, CFG_TUD_VENDOR_RX_BUFSIZE, 1, false); tu_fifo_config(&p_itf->tx_ff, p_itf->tx_ff_buf, CFG_TUD_VENDOR_TX_BUFSIZE, 1, false); -#if CFG_FIFO_MUTEX - tu_fifo_config_mutex(&p_itf->rx_ff, NULL, osal_mutex_create(&p_itf->rx_ff_mutex)); - tu_fifo_config_mutex(&p_itf->tx_ff, osal_mutex_create(&p_itf->tx_ff_mutex), NULL); -#endif + #if OSAL_MUTEX_REQUIRED + osal_mutex_t mutex_rd = osal_mutex_create(&p_itf->rx_ff_mutex); + osal_mutex_t mutex_wr = osal_mutex_create(&p_itf->tx_ff_mutex); + TU_ASSERT(mutex_rd && mutex_wr,); + + tu_fifo_config_mutex(&p_itf->rx_ff, NULL, mutex_rd); + tu_fifo_config_mutex(&p_itf->tx_ff, mutex_wr, NULL); + #endif + } +} + +bool vendord_deinit(void) { + #if OSAL_MUTEX_REQUIRED + for(uint8_t i=0; i<CFG_TUD_VENDOR; i++) { + vendord_interface_t* p_itf = &_vendord_itf[i]; + osal_mutex_t mutex_rd = p_itf->rx_ff.mutex_rd; + osal_mutex_t mutex_wr = p_itf->tx_ff.mutex_wr; + + if (mutex_rd) { + osal_mutex_delete(mutex_rd); + tu_fifo_config_mutex(&p_itf->rx_ff, NULL, NULL); + } + + if (mutex_wr) { + osal_mutex_delete(mutex_wr); + tu_fifo_config_mutex(&p_itf->tx_ff, NULL, NULL); + } } + #endif + + return true; } void vendord_reset(uint8_t rhport) diff --git a/src/class/vendor/vendor_device.h b/src/class/vendor/vendor_device.h index d239406b4..cd69ec7c6 100644 --- a/src/class/vendor/vendor_device.h +++ b/src/class/vendor/vendor_device.h @@ -139,6 +139,7 @@ static inline uint32_t tud_vendor_write_available (void) // Internal Class Driver API //--------------------------------------------------------------------+ void vendord_init(void); +bool vendord_deinit(void); void vendord_reset(uint8_t rhport); uint16_t vendord_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool vendord_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); diff --git a/src/class/video/video.h b/src/class/video/video.h index d9880c291..b8a9b6369 100644 --- a/src/class/video/video.h +++ b/src/class/video/video.h @@ -29,6 +29,10 @@ #include "common/tusb_common.h" +enum { + VIDEO_BCD_1_50 = 0x0150, +}; + // Table 3-19 Color Matching Descriptor typedef enum { VIDEO_COLOR_PRIMARIES_UNDEFINED = 0x00, @@ -156,22 +160,23 @@ typedef enum { /* A.9.1 VideoControl Interface Control Selectors */ typedef enum { VIDEO_VC_CTL_UNDEFINED = 0x00, - VIDEO_VC_CTL_VIDEO_POWER_MODE, - VIDEO_VC_CTL_REQUEST_ERROR_CODE, + VIDEO_VC_CTL_VIDEO_POWER_MODE, // 0x01 + VIDEO_VC_CTL_REQUEST_ERROR_CODE, // 0x02 } video_interface_control_selector_t; /* A.9.8 VideoStreaming Interface Control Selectors */ typedef enum { VIDEO_VS_CTL_UNDEFINED = 0x00, - VIDEO_VS_CTL_PROBE, - VIDEO_VS_CTL_COMMIT, - VIDEO_VS_CTL_STILL_PROBE, - VIDEO_VS_CTL_STILL_COMMIT, - VIDEO_VS_CTL_STILL_IMAGE_TRIGGER, - VIDEO_VS_CTL_STREAM_ERROR_CODE, - VIDEO_VS_CTL_GENERATE_KEY_FRAME, - VIDEO_VS_CTL_UPDATE_FRAME_SEGMENT, - VIDEO_VS_CTL_SYNCH_DELAY_CONTROL, + VIDEO_VS_CTL_PROBE, // 0x01 + VIDEO_VS_CTL_COMMIT, // 0x02 + VIDEO_VS_CTL_STILL_PROBE, // 0x03 + VIDEO_VS_CTL_STILL_COMMIT, // 0x04 + VIDEO_VS_CTL_STILL_IMAGE_TRIGGER, // 0x05 + VIDEO_VS_CTL_STREAM_ERROR_CODE, // 0x06 + VIDEO_VS_CTL_GENERATE_KEY_FRAME, // 0x07 + VIDEO_VS_CTL_UPDATE_FRAME_SEGMENT, // 0x08 + VIDEO_VS_CTL_SYNCH_DELAY_CONTROL, // 0x09 + } video_interface_streaming_selector_t; /* B. Terminal Types */ @@ -198,55 +203,98 @@ typedef enum { } video_terminal_type_t; //--------------------------------------------------------------------+ -// Descriptors +// Video Control (VC) Descriptors //--------------------------------------------------------------------+ /* 2.3.4.2 */ +#define tusb_desc_video_control_header_nitf_t(_nitf) \ + struct TU_ATTR_PACKED { \ + uint8_t bLength; \ + uint8_t bDescriptorType; \ + uint8_t bDescriptorSubType; \ + uint16_t bcdUVC; \ + uint16_t wTotalLength; \ + uint32_t dwClockFrequency; /* deprecated */ \ + uint8_t bInCollection; \ + uint8_t baInterfaceNr[_nitf]; \ + } + +typedef tusb_desc_video_control_header_nitf_t() tusb_desc_video_control_header_t; +typedef tusb_desc_video_control_header_nitf_t(1) tusb_desc_video_control_header_1itf_t; +typedef tusb_desc_video_control_header_nitf_t(2) tusb_desc_video_control_header_2itf_t; +typedef tusb_desc_video_control_header_nitf_t(3) tusb_desc_video_control_header_3itf_t; +typedef tusb_desc_video_control_header_nitf_t(4) tusb_desc_video_control_header_4itf_t; + typedef struct TU_ATTR_PACKED { uint8_t bLength; uint8_t bDescriptorType; uint8_t bDescriptorSubType; - uint16_t bcdUVC; - uint16_t wTotalLength; - uint32_t dwClockFrequency; - uint8_t bInCollection; - uint8_t baInterfaceNr[]; -} tusb_desc_cs_video_ctl_itf_hdr_t; + uint8_t bTerminalID; + uint16_t wTerminalType; + uint8_t bAssocTerminal; + uint8_t iTerminal; +} tusb_desc_video_control_input_terminal_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_control_input_terminal_t) == 8, "size is not correct"); -/* 2.4.3.3 */ typedef struct TU_ATTR_PACKED { - uint8_t bHeaderLength; - union { - uint8_t bmHeaderInfo; - struct { - uint8_t FrameID: 1; - uint8_t EndOfFrame: 1; - uint8_t PresentationTime: 1; - uint8_t SourceClockReference: 1; - uint8_t PayloadSpecific: 1; - uint8_t StillImage: 1; - uint8_t Error: 1; - uint8_t EndOfHeader: 1; - }; - }; -} tusb_video_payload_header_t; + uint8_t bLength; + uint8_t bDescriptorType; + uint8_t bDescriptorSubType; + uint8_t bTerminalID; + uint16_t wTerminalType; + uint8_t bAssocTerminal; + uint8_t bSourceID; + uint8_t iTerminal; +} tusb_desc_video_control_output_terminal_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_control_output_terminal_t) == 9, "size is not correct"); -/* 3.9.2.1 */ typedef struct TU_ATTR_PACKED { uint8_t bLength; uint8_t bDescriptorType; uint8_t bDescriptorSubType; - uint8_t bNumFormats; - uint16_t wTotalLength; - uint8_t bEndpointAddress; - uint8_t bmInfo; - uint8_t bTerminalLink; - uint8_t bStillCaptureMethod; - uint8_t bTriggerSupport; - uint8_t bTriggerUsage; + uint8_t bTerminalID; + uint16_t wTerminalType; + uint8_t bAssocTerminal; + uint8_t iTerminal; + + uint16_t wObjectiveFocalLengthMin; + uint16_t wObjectiveFocalLengthMax; + uint16_t wOcularFocalLength; uint8_t bControlSize; - uint8_t bmaControls[]; -} tusb_desc_cs_video_stm_itf_in_hdr_t; + uint8_t bmControls[3]; +} tusb_desc_video_control_camera_terminal_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_control_camera_terminal_t) == 18, "size is not correct"); + +//--------------------------------------------------------------------+ +// Video Streaming (VS) Descriptors +//--------------------------------------------------------------------+ + +/* 3.9.2.1 */ +#define tusb_desc_video_streaming_input_header_nbyte_t(_nb) \ + struct TU_ATTR_PACKED { \ + uint8_t bLength; \ + uint8_t bDescriptorType; \ + uint8_t bDescriptorSubType; \ + uint8_t bNumFormats; /* Number of video payload Format descriptors for this interface */ \ + uint16_t wTotalLength; \ + uint8_t bEndpointAddress; \ + uint8_t bmInfo; /* Bit 0: dynamic format change supported */ \ + uint8_t bTerminalLink; \ + uint8_t bStillCaptureMethod; \ + uint8_t bTriggerSupport; /* Hardware trigger supported */ \ + uint8_t bTriggerUsage; \ + uint8_t bControlSize; /* sizeof of each control item */ \ + uint8_t bmaControls[_nb]; \ + } + +typedef tusb_desc_video_streaming_input_header_nbyte_t() tusb_desc_video_streaming_input_header_t; +typedef tusb_desc_video_streaming_input_header_nbyte_t(1) tusb_desc_video_streaming_input_header_1byte_t; +typedef tusb_desc_video_streaming_input_header_nbyte_t(2) tusb_desc_video_streaming_input_header_2byte_t; +typedef tusb_desc_video_streaming_input_header_nbyte_t(3) tusb_desc_video_streaming_input_header_3byte_t; +typedef tusb_desc_video_streaming_input_header_nbyte_t(4) tusb_desc_video_streaming_input_header_4byte_t; /* 3.9.2.2 */ typedef struct TU_ATTR_PACKED { @@ -259,7 +307,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bTerminalLink; uint8_t bControlSize; uint8_t bmaControls[]; -} tusb_desc_cs_video_stm_itf_out_hdr_t; +} tusb_desc_video_streaming_output_header_t; typedef struct TU_ATTR_PACKED { uint8_t bLength; @@ -285,14 +333,33 @@ typedef struct TU_ATTR_PACKED { uint8_t bmaControls[]; } output; }; -} tusb_desc_cs_video_stm_itf_hdr_t; +} tusb_desc_video_streaming_inout_header_t; +// 3.9.2.6 Color Matching Descriptor +typedef struct TU_ATTR_PACKED { + uint8_t bLength; + uint8_t bDescriptorType; + uint8_t bDescriptorSubType; + uint8_t bColorPrimaries; + uint8_t bTransferCharacteristics; + uint8_t bMatrixCoefficients; +} tusb_desc_video_streaming_color_matching_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_streaming_color_matching_t) == 6, "size is not correct"); + +//--------------------------------------------------------------------+ +// Format and Frame Descriptor +// Note: bFormatIndex & bFrameIndex are 1-based index +//--------------------------------------------------------------------+ + +//------------- Uncompressed -------------// +// Uncompressed payload specs: 3.1.1 format descriptor typedef struct TU_ATTR_PACKED { uint8_t bLength; uint8_t bDescriptorType; uint8_t bDescriptorSubType; uint8_t bFormatIndex; - uint8_t bNumFrameDescriptors; + uint8_t bNumFrameDescriptors; // Number of frame descriptors for this format uint8_t guidFormat[16]; uint8_t bBitsPerPixel; uint8_t bDefaultFrameIndex; @@ -300,22 +367,69 @@ typedef struct TU_ATTR_PACKED { uint8_t bAspectRatioY; uint8_t bmInterlaceFlags; uint8_t bCopyProtect; -} tusb_desc_cs_video_fmt_uncompressed_t; +} tusb_desc_video_format_uncompressed_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_format_uncompressed_t) == 27, "size is not correct"); + +// Uncompressed payload specs: 3.1.2 frame descriptor +#define tusb_desc_video_frame_uncompressed_nint_t(_nint) \ + struct TU_ATTR_PACKED { \ + uint8_t bLength; \ + uint8_t bDescriptorType; \ + uint8_t bDescriptorSubType; \ + uint8_t bFrameIndex; \ + uint8_t bmCapabilities; \ + uint16_t wWidth; \ + uint16_t wHeight; \ + uint32_t dwMinBitRate; \ + uint32_t dwMaxBitRate; \ + uint32_t dwMaxVideoFrameBufferSize; /* deprecated in 1.5 */ \ + uint32_t dwDefaultFrameInterval; /* 100ns unit */\ + uint8_t bFrameIntervalType; \ + uint32_t dwFrameInterval[_nint]; \ + } +typedef tusb_desc_video_frame_uncompressed_nint_t() tusb_desc_video_frame_uncompressed_t; +typedef tusb_desc_video_frame_uncompressed_nint_t(1) tusb_desc_video_frame_uncompressed_1int_t; +typedef tusb_desc_video_frame_uncompressed_nint_t(2) tusb_desc_video_frame_uncompressed_2int_t; +typedef tusb_desc_video_frame_uncompressed_nint_t(3) tusb_desc_video_frame_uncompressed_3int_t; +typedef tusb_desc_video_frame_uncompressed_nint_t(4) tusb_desc_video_frame_uncompressed_4int_t; + +// continuous = 3 intervals: min, max, step +typedef tusb_desc_video_frame_uncompressed_3int_t tusb_desc_video_frame_uncompressed_continuous_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_frame_uncompressed_continuous_t) == 38, "size is not correct"); + +//------------- MJPEG -------------// +// MJPEG payload specs: 3.1.1 format descriptor typedef struct TU_ATTR_PACKED { uint8_t bLength; uint8_t bDescriptorType; uint8_t bDescriptorSubType; uint8_t bFormatIndex; uint8_t bNumFrameDescriptors; - uint8_t bmFlags; + uint8_t bmFlags; // Bit 0: fixed size samples (1 = yes) uint8_t bDefaultFrameIndex; uint8_t bAspectRatioX; uint8_t bAspectRatioY; uint8_t bmInterlaceFlags; uint8_t bCopyProtect; -} tusb_desc_cs_video_fmt_mjpeg_t; +} tusb_desc_video_format_mjpeg_t; + +TU_VERIFY_STATIC(sizeof(tusb_desc_video_format_mjpeg_t) == 11, "size is not correct"); + +// MJPEG payload specs: 3.1.2 frame descriptor (same as uncompressed) +typedef tusb_desc_video_frame_uncompressed_t tusb_desc_video_frame_mjpeg_t; +typedef tusb_desc_video_frame_uncompressed_1int_t tusb_desc_video_frame_mjpeg_1int_t; +typedef tusb_desc_video_frame_uncompressed_2int_t tusb_desc_video_frame_mjpeg_2int_t; +typedef tusb_desc_video_frame_uncompressed_3int_t tusb_desc_video_frame_mjpeg_3int_t; +typedef tusb_desc_video_frame_uncompressed_4int_t tusb_desc_video_frame_mjpeg_4int_t; + +// continuous = 3 intervals: min, max, step +typedef tusb_desc_video_frame_mjpeg_3int_t tusb_desc_video_frame_mjpeg_continuous_t; +//------------- DV -------------// +// DV payload specs: 3.1.1 typedef struct TU_ATTR_PACKED { uint8_t bLength; uint8_t bDescriptorType; @@ -323,8 +437,9 @@ typedef struct TU_ATTR_PACKED { uint8_t bFormatIndex; uint32_t dwMaxVideoFrameBufferSize; /* deprecated */ uint8_t bFormatType; -} tusb_desc_cs_video_fmt_dv_t; +} tusb_desc_video_format_dv_t; +// Frame Based payload specs: 3.1.1 typedef struct TU_ATTR_PACKED { uint8_t bLength; uint8_t bDescriptorType; @@ -339,25 +454,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bmInterlaceFlags; uint8_t bCopyProtect; uint8_t bVaribaleSize; -} tusb_desc_cs_video_fmt_frame_based_t; - -typedef struct TU_ATTR_PACKED { - uint8_t bLength; - uint8_t bDescriptorType; - uint8_t bDescriptorSubType; - uint8_t bFrameIndex; - uint8_t bmCapabilities; - uint16_t wWidth; - uint16_t wHeight; - uint32_t dwMinBitRate; - uint32_t dwMaxBitRate; - uint32_t dwMaxVideoFrameBufferSize; /* deprecated */ - uint32_t dwDefaultFrameInterval; - uint8_t bFrameIntervalType; - uint32_t dwFrameInterval[]; -} tusb_desc_cs_video_frm_uncompressed_t; - -typedef tusb_desc_cs_video_frm_uncompressed_t tusb_desc_cs_video_frm_mjpeg_t; +} tusb_desc_video_format_framebased_t; typedef struct TU_ATTR_PACKED { uint8_t bLength; @@ -373,12 +470,30 @@ typedef struct TU_ATTR_PACKED { uint8_t bFrameIntervalType; uint32_t dwBytesPerLine; uint32_t dwFrameInterval[]; -} tusb_desc_cs_video_frm_frame_based_t; +} tusb_desc_video_frame_framebased_t; //--------------------------------------------------------------------+ // Requests //--------------------------------------------------------------------+ +/* 2.4.3.3 */ +typedef struct TU_ATTR_PACKED { + uint8_t bHeaderLength; + union { + uint8_t bmHeaderInfo; + struct { + uint8_t FrameID: 1; + uint8_t EndOfFrame: 1; + uint8_t PresentationTime: 1; + uint8_t SourceClockReference: 1; + uint8_t PayloadSpecific: 1; + uint8_t StillImage: 1; + uint8_t Error: 1; + uint8_t EndOfHeader: 1; + }; + }; +} tusb_video_payload_header_t; + /* 4.3.1.1 */ typedef struct TU_ATTR_PACKED { union { @@ -537,7 +652,7 @@ TU_VERIFY_STATIC( sizeof(video_probe_and_commit_control_t) == 48, "size is not c /* Motion-JPEG 3.1.1 Table 3-2 and 3-4 */ #define TUD_VIDEO_DESC_CS_VS_FRM_MJPEG_DISC(_frmidx, _cap, _width, _height, _minbr, _maxbr, _maxfrmbufsz, _frminterval, ...) \ TUD_VIDEO_DESC_CS_VS_FRM_MJPEG_DISC_LEN + (TU_ARGS_NUM(__VA_ARGS__)) * 4, \ - TUSB_DESC_CS_INTERFACE, VIDEO_CS_VS_INTERFACE_FRAME_MJPEG, \ + TUSB_DESC_CS_INTERFACE, VIDEO_CS_ITF_VS_FRAME_MJPEG, \ _frmidx, _cap, U16_TO_U8S_LE(_width), U16_TO_U8S_LE(_height), U32_TO_U8S_LE(_minbr), U32_TO_U8S_LE(_maxbr), \ U32_TO_U8S_LE(_maxfrmbufsz), U32_TO_U8S_LE(_frminterval), (TU_ARGS_NUM(__VA_ARGS__)), __VA_ARGS__ diff --git a/src/class/video/video_device.c b/src/class/video/video_device.c index e6fadf41b..4218835aa 100644 --- a/src/class/video/video_device.c +++ b/src/class/video/video_device.c @@ -34,6 +34,13 @@ #include "video_device.h" +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUD_VIDEO_LOG_LEVEL + #define CFG_TUD_VIDEO_LOG_LEVEL CFG_TUD_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUD_VIDEO_LOG_LEVEL, __VA_ARGS__) + //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ @@ -43,17 +50,17 @@ typedef struct { tusb_desc_interface_t std; - tusb_desc_cs_video_ctl_itf_hdr_t ctl; + tusb_desc_video_control_header_t ctl; } tusb_desc_vc_itf_t; typedef struct { tusb_desc_interface_t std; - tusb_desc_cs_video_stm_itf_hdr_t stm; + tusb_desc_video_streaming_inout_header_t stm; } tusb_desc_vs_itf_t; typedef union { - tusb_desc_cs_video_ctl_itf_hdr_t ctl; - tusb_desc_cs_video_stm_itf_hdr_t stm; + tusb_desc_video_control_header_t ctl; + tusb_desc_video_streaming_inout_header_t stm; } tusb_desc_video_itf_hdr_t; typedef struct TU_ATTR_PACKED { @@ -71,9 +78,9 @@ typedef union { uint8_t bFormatIndex; uint8_t bNumFrameDescriptors; }; - tusb_desc_cs_video_fmt_uncompressed_t uncompressed; - tusb_desc_cs_video_fmt_mjpeg_t mjpeg; - tusb_desc_cs_video_fmt_frame_based_t frame_based; + tusb_desc_video_format_uncompressed_t uncompressed; + tusb_desc_video_format_mjpeg_t mjpeg; + tusb_desc_video_format_framebased_t frame_based; } tusb_desc_cs_video_fmt_t; typedef union { @@ -86,9 +93,9 @@ typedef union { uint16_t wWidth; uint16_t wHeight; }; - tusb_desc_cs_video_frm_uncompressed_t uncompressed; - tusb_desc_cs_video_frm_mjpeg_t mjpeg; - tusb_desc_cs_video_frm_frame_based_t frame_based; + tusb_desc_video_frame_uncompressed_t uncompressed; + tusb_desc_video_frame_mjpeg_t mjpeg; + tusb_desc_video_frame_framebased_t frame_based; } tusb_desc_cs_video_frm_t; /* video streaming interface */ @@ -107,6 +114,8 @@ typedef struct TU_ATTR_PACKED { uint32_t max_payload_transfer_size; uint8_t error_code;/* error code */ uint8_t state; /* 0:probing 1:committed 2:streaming */ + + video_probe_and_commit_control_t probe_commit_payload; /* Probe and Commit control */ /*------------- From this point, data is not cleared by bus reset -------------*/ CFG_TUSB_MEM_ALIGN uint8_t ep_buf[CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE]; /* EP transfer buffer for streaming */ } videod_streaming_interface_t; @@ -136,13 +145,65 @@ CFG_TUD_MEM_SECTION tu_static videod_streaming_interface_t _videod_streaming_itf tu_static uint8_t const _cap_get = 0x1u; /* support for GET */ tu_static uint8_t const _cap_get_set = 0x3u; /* support for GET and SET */ +//--------------------------------------------------------------------+ +// Debug +//--------------------------------------------------------------------+ +#if CFG_TUSB_DEBUG >= CFG_TUD_VIDEO_LOG_LEVEL + +static tu_lookup_entry_t const tu_lookup_video_request[] = { + {.key = VIDEO_REQUEST_UNDEFINED, .data = "Undefined"}, + {.key = VIDEO_REQUEST_SET_CUR, .data = "SetCur"}, + {.key = VIDEO_REQUEST_SET_CUR_ALL, .data = "SetCurAll"}, + {.key = VIDEO_REQUEST_GET_CUR, .data = "GetCur"}, + {.key = VIDEO_REQUEST_GET_MIN, .data = "GetMin"}, + {.key = VIDEO_REQUEST_GET_MAX, .data = "GetMax"}, + {.key = VIDEO_REQUEST_GET_RES, .data = "GetRes"}, + {.key = VIDEO_REQUEST_GET_LEN, .data = "GetLen"}, + {.key = VIDEO_REQUEST_GET_INFO, .data = "GetInfo"}, + {.key = VIDEO_REQUEST_GET_DEF, .data = "GetDef"}, + {.key = VIDEO_REQUEST_GET_CUR_ALL, .data = "GetCurAll"}, + {.key = VIDEO_REQUEST_GET_MIN_ALL, .data = "GetMinAll"}, + {.key = VIDEO_REQUEST_GET_MAX_ALL, .data = "GetMaxAll"}, + {.key = VIDEO_REQUEST_GET_RES_ALL, .data = "GetResAll"}, + {.key = VIDEO_REQUEST_GET_DEF_ALL, .data = "GetDefAll"}, +}; + +static tu_lookup_table_t const tu_table_video_request = { + .count = TU_ARRAY_SIZE(tu_lookup_video_request), + .items = tu_lookup_video_request +}; + +static char const* const tu_str_video_vc_control_selector[] = { + "Undefined", + "Video Power Mode", + "Request Error Code", +}; + +static char const* const tu_str_video_vs_control_selector[] = { + "Undefined", + "Probe", + "Commit", + "Still Probe", + "Still Commit", + "Still Image Trigger", + "Stream Error Code", + "Generate Key Frame", + "Update Frame Segment", + "Sync Delay", +}; + +#endif + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + /** Get interface number from the interface descriptor * * @param[in] desc interface descriptor * * @return bInterfaceNumber */ -static inline uint8_t _desc_itfnum(void const *desc) -{ +static inline uint8_t _desc_itfnum(void const *desc) { return ((uint8_t const*)desc)[2]; } @@ -151,8 +212,7 @@ static inline uint8_t _desc_itfnum(void const *desc) * @param[in] desc endpoint descriptor * * @return bEndpointAddress */ -static inline uint8_t _desc_ep_addr(void const *desc) -{ +static inline uint8_t _desc_ep_addr(void const *desc) { return ((uint8_t const*)desc)[2]; } @@ -162,8 +222,7 @@ static inline uint8_t _desc_ep_addr(void const *desc) * @param[in] stm_idx index number of streaming interface * * @return instance */ -static videod_streaming_interface_t* _get_instance_streaming(uint_fast8_t ctl_idx, uint_fast8_t stm_idx) -{ +static videod_streaming_interface_t* _get_instance_streaming(uint_fast8_t ctl_idx, uint_fast8_t stm_idx) { videod_interface_t *ctl = &_videod_itf[ctl_idx]; if (!ctl->beg) return NULL; videod_streaming_interface_t *stm = &_videod_streaming_itf[ctl->stm[stm_idx]]; @@ -171,13 +230,11 @@ static videod_streaming_interface_t* _get_instance_streaming(uint_fast8_t ctl_id return stm; } -static tusb_desc_vc_itf_t const* _get_desc_vc(videod_interface_t const *self) -{ +static tusb_desc_vc_itf_t const* _get_desc_vc(videod_interface_t const *self) { return (tusb_desc_vc_itf_t const *)(self->beg + self->cur); } -static tusb_desc_vs_itf_t const* _get_desc_vs(videod_streaming_interface_t const *self) -{ +static tusb_desc_vs_itf_t const* _get_desc_vs(videod_streaming_interface_t const *self) { if (!self->desc.cur) return NULL; uint8_t const *desc = _videod_itf[self->index_vc].beg; return (tusb_desc_vs_itf_t const*)(desc + self->desc.cur); @@ -191,8 +248,7 @@ static tusb_desc_vs_itf_t const* _get_desc_vs(videod_streaming_interface_t const * * @return The pointer for interface descriptor. * @retval end did not found interface descriptor */ -static void const* _find_desc(void const *beg, void const *end, uint_fast8_t desc_type) -{ +static void const* _find_desc(void const *beg, void const *end, uint_fast8_t desc_type) { void const *cur = beg; while ((cur < end) && (desc_type != tu_desc_type(cur))) { cur = tu_desc_next(cur); @@ -200,6 +256,24 @@ static void const* _find_desc(void const *beg, void const *end, uint_fast8_t des return cur; } +/** Find the first descriptor of two given types + * + * @param[in] beg The head of descriptor byte array. + * @param[in] end The tail of descriptor byte array. + * @param[in] desc_type_0 The first target descriptor type. + * @param[in] desc_type_1 The second target descriptor type. + * + * @return The pointer for interface descriptor. + * @retval end did not found interface descriptor */ +static void const* _find_desc_2_type(void const *beg, void const *end, uint_fast8_t desc_type_0, uint_fast8_t desc_type_1) +{ + void const *cur = beg; + while ((cur < end) && (desc_type_0 != tu_desc_type(cur)) && (desc_type_1 != tu_desc_type(cur))) { + cur = tu_desc_next(cur); + } + return cur; +} + /** Find the first descriptor specified by the arguments * * @param[in] beg The head of descriptor byte array. @@ -213,8 +287,7 @@ static void const* _find_desc(void const *beg, void const *end, uint_fast8_t des static void const* _find_desc_3(void const *beg, void const *end, uint_fast8_t desc_type, uint_fast8_t element_0, - uint_fast8_t element_1) -{ + uint_fast8_t element_1) { for (void const *cur = beg; cur < end; cur = _find_desc(cur, end, desc_type)) { uint8_t const *p = (uint8_t const *)cur; if ((p[2] == element_0) && (p[3] == element_1)) { @@ -226,19 +299,22 @@ static void const* _find_desc_3(void const *beg, void const *end, } /** Return the next interface descriptor which has another interface number. + * If there are multiple VC interfaces, there will be an IAD descriptor before + * the next interface descriptor. Check both the IAD descriptor and the interface + * descriptor. + * 3.1 Descriptor Layout Overview * * @param[in] beg The head of descriptor byte array. * @param[in] end The tail of descriptor byte array. * * @return The pointer for interface descriptor. * @retval end did not found interface descriptor */ -static void const* _next_desc_itf(void const *beg, void const *end) -{ +static void const* _next_desc_itf(void const *beg, void const *end) { void const *cur = beg; uint_fast8_t itfnum = ((tusb_desc_interface_t const*)cur)->bInterfaceNumber; while ((cur < end) && (itfnum == ((tusb_desc_interface_t const*)cur)->bInterfaceNumber)) { - cur = _find_desc(tu_desc_next(cur), end, TUSB_DESC_INTERFACE); + cur = _find_desc_2_type(tu_desc_next(cur), end, TUSB_DESC_INTERFACE, TUSB_DESC_INTERFACE_ASSOCIATION); } return cur; } @@ -384,8 +460,10 @@ static bool _update_streaming_parameters(videod_streaming_interface_t const *stm case VIDEO_CS_ITF_VS_FORMAT_UNCOMPRESSED: param->wCompQuality = 1; /* 1 to 10000 */ break; - case VIDEO_CS_ITF_VS_FORMAT_MJPEG: + + case VIDEO_CS_ITF_VS_FORMAT_MJPEG: break; + default: return false; } @@ -406,9 +484,11 @@ static bool _update_streaming_parameters(videod_streaming_interface_t const *stm case VIDEO_CS_ITF_VS_FORMAT_UNCOMPRESSED: frame_size = (uint_fast32_t)frm->wWidth * frm->wHeight * fmt->uncompressed.bBitsPerPixel / 8; break; + case VIDEO_CS_ITF_VS_FORMAT_MJPEG: frame_size = (uint_fast32_t)frm->wWidth * frm->wHeight * 16 / 8; /* YUV422 */ break; + default: break; } param->dwMaxVideoFrameSize = frame_size; @@ -427,8 +507,9 @@ static bool _update_streaming_parameters(videod_streaming_interface_t const *stm uint_fast32_t interval_ms = interval / 10000; TU_ASSERT(interval_ms); uint_fast32_t payload_size = (frame_size + interval_ms - 1) / interval_ms + 2; - if (CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE < payload_size) + if (CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE < payload_size) { payload_size = CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE; + } param->dwMaxPayloadTransferSize = payload_size; return true; } @@ -448,10 +529,12 @@ static bool _negotiate_streaming_parameters(videod_streaming_interface_t const * if (_get_desc_vs(stm)) param->bFormatIndex = _get_desc_vs(stm)->stm.bNumFormats; break; + case VIDEO_REQUEST_GET_MIN: case VIDEO_REQUEST_GET_DEF: param->bFormatIndex = 1; break; + default: return false; } /* Set the parameters determined by the format */ @@ -480,18 +563,22 @@ static bool _negotiate_streaming_parameters(videod_streaming_interface_t const * case VIDEO_REQUEST_GET_MAX: frmnum = fmt->bNumFrameDescriptors; break; + case VIDEO_REQUEST_GET_MIN: frmnum = 1; break; + case VIDEO_REQUEST_GET_DEF: switch (fmt->bDescriptorSubType) { - case VIDEO_CS_ITF_VS_FORMAT_UNCOMPRESSED: - frmnum = fmt->uncompressed.bDefaultFrameIndex; - break; - case VIDEO_CS_ITF_VS_FORMAT_MJPEG: - frmnum = fmt->mjpeg.bDefaultFrameIndex; - break; - default: return false; + case VIDEO_CS_ITF_VS_FORMAT_UNCOMPRESSED: + frmnum = fmt->uncompressed.bDefaultFrameIndex; + break; + + case VIDEO_CS_ITF_VS_FORMAT_MJPEG: + frmnum = fmt->mjpeg.bDefaultFrameIndex; + break; + + default: return false; } break; default: return false; @@ -504,9 +591,11 @@ static bool _negotiate_streaming_parameters(videod_streaming_interface_t const * case VIDEO_CS_ITF_VS_FORMAT_UNCOMPRESSED: frame_size = (uint_fast32_t)frm->wWidth * frm->wHeight * fmt->uncompressed.bBitsPerPixel / 8; break; + case VIDEO_CS_ITF_VS_FORMAT_MJPEG: frame_size = (uint_fast32_t)frm->wWidth * frm->wHeight * 16 / 8; /* YUV422 */ break; + default: return false; } param->dwMaxVideoFrameSize = frame_size; @@ -522,41 +611,43 @@ static bool _negotiate_streaming_parameters(videod_streaming_interface_t const * uint_fast32_t interval, interval_ms; switch (request) { - case VIDEO_REQUEST_GET_MAX: - { - uint_fast32_t min_interval, max_interval; - uint_fast8_t num_intervals = frm->uncompressed.bFrameIntervalType; - max_interval = num_intervals ? frm->uncompressed.dwFrameInterval[num_intervals - 1]: frm->uncompressed.dwFrameInterval[1]; - min_interval = frm->uncompressed.dwFrameInterval[0]; - interval = max_interval; - interval_ms = min_interval / 10000; - } + case VIDEO_REQUEST_GET_MAX: { + uint_fast32_t min_interval, max_interval; + uint_fast8_t num_intervals = frm->uncompressed.bFrameIntervalType; + max_interval = num_intervals ? frm->uncompressed.dwFrameInterval[num_intervals - 1]: frm->uncompressed.dwFrameInterval[1]; + min_interval = frm->uncompressed.dwFrameInterval[0]; + interval = max_interval; + interval_ms = min_interval / 10000; break; - case VIDEO_REQUEST_GET_MIN: - { - uint_fast32_t min_interval, max_interval; - uint_fast8_t num_intervals = frm->uncompressed.bFrameIntervalType; - max_interval = num_intervals ? frm->uncompressed.dwFrameInterval[num_intervals - 1]: frm->uncompressed.dwFrameInterval[1]; - min_interval = frm->uncompressed.dwFrameInterval[0]; - interval = min_interval; - interval_ms = max_interval / 10000; - } + } + + case VIDEO_REQUEST_GET_MIN: { + uint_fast32_t min_interval, max_interval; + uint_fast8_t num_intervals = frm->uncompressed.bFrameIntervalType; + max_interval = num_intervals ? frm->uncompressed.dwFrameInterval[num_intervals - 1]: frm->uncompressed.dwFrameInterval[1]; + min_interval = frm->uncompressed.dwFrameInterval[0]; + interval = min_interval; + interval_ms = max_interval / 10000; break; + } + case VIDEO_REQUEST_GET_DEF: interval = frm->uncompressed.dwDefaultFrameInterval; interval_ms = interval / 10000; break; - case VIDEO_REQUEST_GET_RES: - { - uint_fast8_t num_intervals = frm->uncompressed.bFrameIntervalType; - if (num_intervals) { - interval = 0; - } else { - interval = frm->uncompressed.dwFrameInterval[2]; - interval_ms = interval / 10000; - } + + case VIDEO_REQUEST_GET_RES: { + uint_fast8_t num_intervals = frm->uncompressed.bFrameIntervalType; + if (num_intervals) { + interval = 0; + interval_ms = 0; + } else { + interval = frm->uncompressed.dwFrameInterval[2]; + interval_ms = interval / 10000; } break; + } + default: return false; } param->dwFrameInterval = interval; @@ -570,8 +661,9 @@ static bool _negotiate_streaming_parameters(videod_streaming_interface_t const * } else { payload_size = (frame_size + interval_ms - 1) / interval_ms + 2; } - if (CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE < payload_size) + if (CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE < payload_size) { payload_size = CFG_TUD_VIDEO_STREAMING_EP_BUFSIZE; + } param->dwMaxPayloadTransferSize = payload_size; } return true; @@ -609,17 +701,17 @@ static bool _close_vc_itf(uint8_t rhport, videod_interface_t *self) * @param[in] altnum The target alternate setting number. */ static bool _open_vc_itf(uint8_t rhport, videod_interface_t *self, uint_fast8_t altnum) { - TU_LOG2(" open VC %d\n", altnum); + TU_LOG_DRV(" open VC %d\r\n", altnum); uint8_t const *beg = self->beg; uint8_t const *end = beg + self->len; /* The first descriptor is a video control interface descriptor. */ uint8_t const *cur = _find_desc_itf(beg, end, _desc_itfnum(beg), altnum); - TU_LOG2(" cur %d\n", cur - beg); + TU_LOG_DRV(" cur %d\r\n", cur - beg); TU_VERIFY(cur < end); tusb_desc_vc_itf_t const *vc = (tusb_desc_vc_itf_t const *)cur; - TU_LOG2(" bInCollection %d\n", vc->ctl.bInCollection); + TU_LOG_DRV(" bInCollection %d\r\n", vc->ctl.bInCollection); /* Support for up to 2 streaming interfaces only. */ TU_ASSERT(vc->ctl.bInCollection <= CFG_TUD_VIDEO_STREAMING); @@ -628,7 +720,7 @@ static bool _open_vc_itf(uint8_t rhport, videod_interface_t *self, uint_fast8_t /* Advance to the next descriptor after the class-specific VC interface header descriptor. */ cur += vc->std.bLength + vc->ctl.bLength; - TU_LOG2(" bNumEndpoints %d\n", vc->std.bNumEndpoints); + TU_LOG_DRV(" bNumEndpoints %d\r\n", vc->std.bNumEndpoints); /* Open the notification endpoint if it exist. */ if (vc->std.bNumEndpoints) { /* Support for 1 endpoint only. */ @@ -644,13 +736,11 @@ static bool _open_vc_itf(uint8_t rhport, videod_interface_t *self, uint_fast8_t return true; } -static bool _init_vs_configuration(videod_streaming_interface_t *stm) -{ +static bool _init_vs_configuration(videod_streaming_interface_t *stm) { /* initialize streaming settings */ stm->state = VS_STATE_PROBING; stm->max_payload_transfer_size = 0; - video_probe_and_commit_control_t *param = - (video_probe_and_commit_control_t *)&stm->ep_buf; + video_probe_and_commit_control_t *param = &stm->probe_commit_payload; tu_memclr(param, sizeof(*param)); return _update_streaming_parameters(stm, param); } @@ -662,18 +752,23 @@ static bool _init_vs_configuration(videod_streaming_interface_t *stm) static bool _open_vs_itf(uint8_t rhport, videod_streaming_interface_t *stm, uint_fast8_t altnum) { uint_fast8_t i; - TU_LOG2(" reopen VS %d\n", altnum); + TU_LOG_DRV(" reopen VS %d\r\n", altnum); uint8_t const *desc = _videod_itf[stm->index_vc].beg; +#ifndef TUP_DCD_EDPT_ISO_ALLOC /* Close endpoints of previous settings. */ for (i = 0; i < TU_ARRAY_SIZE(stm->desc.ep); ++i) { uint_fast16_t ofs_ep = stm->desc.ep[i]; if (!ofs_ep) break; - uint8_t ep_adr = _desc_ep_addr(desc + ofs_ep); - usbd_edpt_close(rhport, ep_adr); - stm->desc.ep[i] = 0; - TU_LOG2(" close EP%02x\n", ep_adr); + tusb_desc_endpoint_t const *ep = (tusb_desc_endpoint_t const*)(desc + ofs_ep); + /* Only ISO endpoints needs to be closed */ + if(ep->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) { + stm->desc.ep[i] = 0; + usbd_edpt_close(rhport, ep->bEndpointAddress); + TU_LOG_DRV(" close EP%02x\r\n", ep->bEndpointAddress); + } } +#endif /* clear transfer management information */ stm->buffer = NULL; @@ -698,23 +793,25 @@ static bool _open_vs_itf(uint8_t rhport, videod_streaming_interface_t *stm, uint TU_ASSERT(cur < end); tusb_desc_endpoint_t const *ep = (tusb_desc_endpoint_t const*)cur; uint_fast32_t max_size = stm->max_payload_transfer_size; - if (altnum) { - if ((TUSB_XFER_ISOCHRONOUS == ep->bmAttributes.xfer) && - (tu_edpt_packet_size(ep) < max_size)) { - /* FS must be less than or equal to max packet size */ - return false; - } + if (altnum && (TUSB_XFER_ISOCHRONOUS == ep->bmAttributes.xfer)) { + /* FS must be less than or equal to max packet size */ + TU_VERIFY (tu_edpt_packet_size(ep) >= max_size); +#ifdef TUP_DCD_EDPT_ISO_ALLOC + usbd_edpt_iso_activate(rhport, ep); +#else + TU_ASSERT(usbd_edpt_open(rhport, ep)); +#endif } else { TU_VERIFY(TUSB_XFER_BULK == ep->bmAttributes.xfer); + TU_ASSERT(usbd_edpt_open(rhport, ep)); } - TU_ASSERT(usbd_edpt_open(rhport, ep)); stm->desc.ep[i] = (uint16_t) (cur - desc); - TU_LOG2(" open EP%02x\n", _desc_ep_addr(cur)); + TU_LOG_DRV(" open EP%02x\r\n", _desc_ep_addr(cur)); } if (altnum) { stm->state = VS_STATE_STREAMING; } - TU_LOG2(" done\n"); + TU_LOG_DRV(" done\r\n"); return true; } @@ -727,6 +824,7 @@ static uint_fast16_t _prepare_in_payload(videod_streaming_interface_t *stm) if (hdr_len + remaining < pkt_len) { pkt_len = hdr_len + remaining; } + TU_ASSERT(pkt_len >= hdr_len); uint_fast16_t data_len = pkt_len - hdr_len; memcpy(&stm->ep_buf[hdr_len], stm->buffer + stm->offset, data_len); stm->offset += data_len; @@ -743,6 +841,7 @@ static int handle_video_ctl_std_req(uint8_t rhport, uint8_t stage, tusb_control_request_t const *request, uint_fast8_t ctl_idx) { + TU_LOG_DRV("\r\n"); switch (request->bRequest) { case TUSB_REQ_GET_INTERFACE: if (stage == CONTROL_STAGE_SETUP) @@ -780,7 +879,10 @@ static int handle_video_ctl_cs_req(uint8_t rhport, uint8_t stage, videod_interface_t *self = &_videod_itf[ctl_idx]; /* 4.2.1 Interface Control Request */ - switch (TU_U16_HIGH(request->wValue)) { + uint8_t const ctrl_sel = TU_U16_HIGH(request->wValue); + TU_LOG_DRV("%s_Control(%s)\r\n", tu_str_video_vc_control_selector[ctrl_sel], tu_lookup_find(&tu_table_video_request, request->bRequest)); + + switch (ctrl_sel) { case VIDEO_VC_CTL_VIDEO_POWER_MODE: switch (request->bRequest) { case VIDEO_REQUEST_SET_CUR: @@ -844,19 +946,19 @@ static int handle_video_ctl_req(uint8_t rhport, uint8_t stage, tusb_control_request_t const *request, uint_fast8_t ctl_idx) { - uint_fast8_t entity_id; switch (request->bmRequestType_bit.type) { case TUSB_REQ_TYPE_STANDARD: return handle_video_ctl_std_req(rhport, stage, request, ctl_idx); - case TUSB_REQ_TYPE_CLASS: - entity_id = TU_U16_HIGH(request->wIndex); + case TUSB_REQ_TYPE_CLASS: { + uint_fast8_t entity_id = TU_U16_HIGH(request->wIndex); if (!entity_id) { return handle_video_ctl_cs_req(rhport, stage, request, ctl_idx); } else { TU_VERIFY(_find_desc_entity(_get_desc_vc(&_videod_itf[ctl_idx]), entity_id), VIDEO_ERROR_INVALID_REQUEST); return VIDEO_ERROR_NONE; } + } default: return VIDEO_ERROR_INVALID_REQUEST; @@ -867,6 +969,7 @@ static int handle_video_stm_std_req(uint8_t rhport, uint8_t stage, tusb_control_request_t const *request, uint_fast8_t stm_idx) { + TU_LOG_DRV("\r\n"); videod_streaming_interface_t *self = &_videod_streaming_itf[stm_idx]; switch (request->bRequest) { case TUSB_REQ_GET_INTERFACE: @@ -882,8 +985,7 @@ static int handle_video_stm_std_req(uint8_t rhport, uint8_t stage, return VIDEO_ERROR_NONE; case TUSB_REQ_SET_INTERFACE: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(_open_vs_itf(rhport, self, request->wValue), VIDEO_ERROR_UNKNOWN); tud_control_status(rhport, request); } @@ -897,26 +999,26 @@ static int handle_video_stm_std_req(uint8_t rhport, uint8_t stage, static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, tusb_control_request_t const *request, - uint_fast8_t stm_idx) -{ + uint_fast8_t stm_idx) { (void)rhport; videod_streaming_interface_t *self = &_videod_streaming_itf[stm_idx]; + uint8_t const ctrl_sel = TU_U16_HIGH(request->wValue); + TU_LOG_DRV("%s_Control(%s)\r\n", tu_str_video_vs_control_selector[ctrl_sel], tu_lookup_find(&tu_table_video_request, request->bRequest)); + /* 4.2.1 Interface Control Request */ - switch (TU_U16_HIGH(request->wValue)) { + switch (ctrl_sel) { case VIDEO_VS_CTL_STREAM_ERROR_CODE: switch (request->bRequest) { case VIDEO_REQUEST_GET_CUR: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { /* TODO */ TU_VERIFY(tud_control_xfer(rhport, request, &self->error_code, sizeof(uint8_t)), VIDEO_ERROR_UNKNOWN); } return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_INFO: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(tud_control_xfer(rhport, request, (uint8_t*)(uintptr_t) &_cap_get, sizeof(_cap_get)), VIDEO_ERROR_UNKNOWN); } return VIDEO_ERROR_NONE; @@ -928,25 +1030,23 @@ static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, case VIDEO_VS_CTL_PROBE: if (self->state != VS_STATE_PROBING) { self->state = VS_STATE_PROBING; - _init_vs_configuration(self); } + switch (request->bRequest) { case VIDEO_REQUEST_SET_CUR: if (stage == CONTROL_STAGE_SETUP) { - TU_VERIFY(sizeof(video_probe_and_commit_control_t) >= request->wLength, VIDEO_ERROR_UNKNOWN); - TU_VERIFY(tud_control_xfer(rhport, request, self->ep_buf, sizeof(video_probe_and_commit_control_t)), + TU_VERIFY(tud_control_xfer(rhport, request, &self->probe_commit_payload, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); } else if (stage == CONTROL_STAGE_DATA) { - TU_VERIFY(_update_streaming_parameters(self, (video_probe_and_commit_control_t*)self->ep_buf), + TU_VERIFY(_update_streaming_parameters(self, &self->probe_commit_payload), VIDEO_ERROR_INVALID_VALUE_WITHIN_RANGE); } return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_CUR: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(request->wLength, VIDEO_ERROR_UNKNOWN); - TU_VERIFY(tud_control_xfer(rhport, request, self->ep_buf, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); + TU_VERIFY(tud_control_xfer(rhport, request, &self->probe_commit_payload, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); } return VIDEO_ERROR_NONE; @@ -954,19 +1054,16 @@ static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, case VIDEO_REQUEST_GET_MAX: case VIDEO_REQUEST_GET_RES: case VIDEO_REQUEST_GET_DEF: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(request->wLength, VIDEO_ERROR_UNKNOWN); - video_probe_and_commit_control_t tmp; - tmp = *(video_probe_and_commit_control_t*)&self->ep_buf; + video_probe_and_commit_control_t tmp = self->probe_commit_payload; TU_VERIFY(_negotiate_streaming_parameters(self, request->bRequest, &tmp), VIDEO_ERROR_INVALID_VALUE_WITHIN_RANGE); TU_VERIFY(tud_control_xfer(rhport, request, &tmp, sizeof(tmp)), VIDEO_ERROR_UNKNOWN); } return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_LEN: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(2 == request->wLength, VIDEO_ERROR_UNKNOWN); uint16_t len = sizeof(video_probe_and_commit_control_t); TU_VERIFY(tud_control_xfer(rhport, request, (uint8_t*)&len, sizeof(len)), VIDEO_ERROR_UNKNOWN); @@ -974,8 +1071,7 @@ static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_INFO: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(1 == request->wLength, VIDEO_ERROR_UNKNOWN); TU_VERIFY(tud_control_xfer(rhport, request, (uint8_t*)(uintptr_t)&_cap_get_set, sizeof(_cap_get_set)), VIDEO_ERROR_UNKNOWN); } @@ -989,10 +1085,9 @@ static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, switch (request->bRequest) { case VIDEO_REQUEST_SET_CUR: if (stage == CONTROL_STAGE_SETUP) { - TU_VERIFY(sizeof(video_probe_and_commit_control_t) >= request->wLength, VIDEO_ERROR_UNKNOWN); - TU_VERIFY(tud_control_xfer(rhport, request, self->ep_buf, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); + TU_VERIFY(tud_control_xfer(rhport, request, &self->probe_commit_payload, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); } else if (stage == CONTROL_STAGE_DATA) { - video_probe_and_commit_control_t *param = (video_probe_and_commit_control_t*)self->ep_buf; + video_probe_and_commit_control_t *param = &self->probe_commit_payload; TU_VERIFY(_update_streaming_parameters(self, param), VIDEO_ERROR_INVALID_VALUE_WITHIN_RANGE); /* Set the negotiated value */ self->max_payload_transfer_size = param->dwMaxPayloadTransferSize; @@ -1014,16 +1109,14 @@ static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_CUR: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(request->wLength, VIDEO_ERROR_UNKNOWN); - TU_VERIFY(tud_control_xfer(rhport, request, self->ep_buf, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); + TU_VERIFY(tud_control_xfer(rhport, request, &self->probe_commit_payload, sizeof(video_probe_and_commit_control_t)), VIDEO_ERROR_UNKNOWN); } return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_LEN: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(2 == request->wLength, VIDEO_ERROR_UNKNOWN); uint16_t len = sizeof(video_probe_and_commit_control_t); TU_VERIFY(tud_control_xfer(rhport, request, (uint8_t*)&len, sizeof(len)), VIDEO_ERROR_UNKNOWN); @@ -1031,8 +1124,7 @@ static int handle_video_stm_cs_req(uint8_t rhport, uint8_t stage, return VIDEO_ERROR_NONE; case VIDEO_REQUEST_GET_INFO: - if (stage == CONTROL_STAGE_SETUP) - { + if (stage == CONTROL_STAGE_SETUP) { TU_VERIFY(1 == request->wLength, VIDEO_ERROR_UNKNOWN); TU_VERIFY(tud_control_xfer(rhport, request, (uint8_t*)(uintptr_t) &_cap_get_set, sizeof(_cap_get_set)), VIDEO_ERROR_UNKNOWN); } @@ -1094,6 +1186,16 @@ bool tud_video_n_streaming(uint_fast8_t ctl_idx, uint_fast8_t stm_idx) videod_streaming_interface_t *stm = _get_instance_streaming(ctl_idx, stm_idx); if (!stm || !stm->desc.ep[0]) return false; if (stm->state == VS_STATE_PROBING) return false; + +#ifdef TUP_DCD_EDPT_ISO_ALLOC + uint8_t const *desc = _videod_itf[stm->index_vc].beg; + uint_fast16_t ofs_ep = stm->desc.ep[0]; + tusb_desc_endpoint_t const *ep = (tusb_desc_endpoint_t const*)(desc + ofs_ep); + if (ep->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) { + if (stm->state == VS_STATE_COMMITTED) return false; + } +#endif + return true; } @@ -1133,8 +1235,7 @@ bool tud_video_n_frame_xfer(uint_fast8_t ctl_idx, uint_fast8_t stm_idx, void *bu //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ -void videod_init(void) -{ +void videod_init(void) { for (uint_fast8_t i = 0; i < CFG_TUD_VIDEO; ++i) { videod_interface_t* ctl = &_videod_itf[i]; tu_memclr(ctl, sizeof(*ctl)); @@ -1145,8 +1246,11 @@ void videod_init(void) } } -void videod_reset(uint8_t rhport) -{ +bool videod_deinit(void) { + return true; +} + +void videod_reset(uint8_t rhport) { (void) rhport; for (uint_fast8_t i = 0; i < CFG_TUD_VIDEO; ++i) { videod_interface_t* ctl = &_videod_itf[i]; @@ -1158,8 +1262,7 @@ void videod_reset(uint8_t rhport) } } -uint16_t videod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len) -{ +uint16_t videod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len) { TU_VERIFY((TUSB_CLASS_VIDEO == itf_desc->bInterfaceClass) && (VIDEO_SUBCLASS_CONTROL == itf_desc->bInterfaceSubClass) && (VIDEO_ITF_PROTOCOL_15 == itf_desc->bInterfaceProtocol), 0); @@ -1201,12 +1304,30 @@ uint16_t videod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uin cur = _next_desc_itf(cur, end); stm->desc.end = (uint16_t) ((uintptr_t)cur - (uintptr_t)itf_desc); stm->state = VS_STATE_PROBING; +#ifdef TUP_DCD_EDPT_ISO_ALLOC + /* Allocate ISO endpoints */ + uint16_t ep_size = 0; + uint16_t ep_addr = 0; + uint8_t const *p_desc = (uint8_t const*)itf_desc + stm->desc.beg; + uint8_t const *p_desc_end = (uint8_t const*)itf_desc + stm->desc.end; + while (p_desc < p_desc_end) { + if (tu_desc_type(p_desc) == TUSB_DESC_ENDPOINT) { + tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) p_desc; + if (desc_ep->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) { + ep_addr = desc_ep->bEndpointAddress; + ep_size = TU_MAX(tu_edpt_packet_size(desc_ep), ep_size); + } + } + p_desc = tu_desc_next(p_desc); + } + if(ep_addr > 0 && ep_size > 0) usbd_edpt_iso_alloc(rhport, ep_addr, ep_size); +#endif if (0 == stm_idx && 1 == bInCollection) { /* If there is only one streaming interface and no alternate settings, * host may not issue set_interface so open the streaming interface here. */ uint8_t const *sbeg = (uint8_t const*)itf_desc + stm->desc.beg; uint8_t const *send = (uint8_t const*)itf_desc + stm->desc.end; - if (end == _find_desc_itf(sbeg, send, _desc_itfnum(sbeg), 1)) { + if (send == _find_desc_itf(sbeg, send, _desc_itfnum(sbeg), 1)) { TU_VERIFY(_open_vs_itf(rhport, stm, 0), 0); } } @@ -1218,8 +1339,7 @@ uint16_t videod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uin // Invoked when a control transfer occurred on an interface of this class // Driver response accordingly to the request and the transfer stage (setup/data/ack) // return false to stall control endpoint (e.g unsupported request) -bool videod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request) -{ +bool videod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request) { int err; TU_VERIFY(request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_INTERFACE); uint_fast8_t itfnum = tu_u16_low(request->wIndex); @@ -1232,6 +1352,7 @@ bool videod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_ } if (itf < CFG_TUD_VIDEO) { + TU_LOG_DRV(" VC[%d]: ", itf); err = handle_video_ctl_req(rhport, stage, request, itf); _videod_itf[itf].error_code = (uint8_t)err; if (err) return false; @@ -1247,6 +1368,7 @@ bool videod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_ } if (itf < CFG_TUD_VIDEO_STREAMING) { + TU_LOG_DRV(" VS[%d]: ", itf); err = handle_video_stm_req(rhport, stage, request, itf); _videod_streaming_itf[itf].error_code = (uint8_t)err; if (err) return false; @@ -1255,8 +1377,7 @@ bool videod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_ return false; } -bool videod_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) -{ +bool videod_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { (void)result; (void)xferred_bytes; /* find streaming handle */ diff --git a/src/class/video/video_device.h b/src/class/video/video_device.h index ee2fcb9d5..92930c013 100644 --- a/src/class/video/video_device.h +++ b/src/class/video/video_device.h @@ -85,6 +85,7 @@ TU_ATTR_WEAK int tud_video_commit_cb(uint_fast8_t ctl_idx, uint_fast8_t stm_idx, // INTERNAL USBD-CLASS DRIVER API //--------------------------------------------------------------------+ void videod_init (void); +bool videod_deinit (void); void videod_reset (uint8_t rhport); uint16_t videod_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool videod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); |
