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envelope-from=qemu-devel-bounces+importer=patchew.org@nongnu.org; helo=lists.gnu.org; Received-SPF: pass client-ip=2607:f8b0:4864:20::114a; envelope-from=3qPk7ZQwKCrsobcjiftufgbohpphmf.dpnrfnv-efwfmopohov.psh@flex--nabihestefan.bounces.google.com; helo=mail-yw1-x114a.google.com X-Spam_score_int: -95 X-Spam_score: -9.6 X-Spam_bar: --------- X-Spam_report: (-9.6 / 5.0 requ) BAYES_00=-1.9, DKIMWL_WL_MED=-0.001, DKIM_SIGNED=0.1, DKIM_VALID=-0.1, DKIM_VALID_AU=-0.1, DKIM_VALID_EF=-0.1, RCVD_IN_DNSWL_NONE=-0.0001, SPF_HELO_NONE=0.001, SPF_PASS=-0.001, USER_IN_DEF_DKIM_WL=-7.5 autolearn=ham autolearn_force=no X-Spam_action: no action X-BeenThere: qemu-devel@nongnu.org X-Mailman-Version: 2.1.29 Precedence: list List-Id: List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , Errors-To: qemu-devel-bounces+importer=patchew.org@nongnu.org Sender: qemu-devel-bounces+importer=patchew.org@nongnu.org X-ZohoMail-DKIM: pass (identity @google.com) X-ZM-MESSAGEID: 1698429434521100003 Content-Transfer-Encoding: quoted-printable Content-Type: text/plain; charset="utf-8" From: Nabih Estefan Diaz - Implementation of Transmit function for packets - Implementation for reading and writing from and to descriptors in memory for Tx NOTE: This function implements the steps detailed in the datasheet for transmitting messages from the GMAC. Change-Id: I5f6148eaf8548726a48db9d4a6d8796bb7ed12dc Signed-off-by: Nabih Estefan --- hw/net/npcm_gmac.c | 151 ++++++++++++++++++++++++++++++++++++++++++++ hw/net/trace-events | 1 - 2 files changed, 151 insertions(+), 1 deletion(-) diff --git a/hw/net/npcm_gmac.c b/hw/net/npcm_gmac.c index cd59ca5fd4..0098b00a49 100644 --- a/hw/net/npcm_gmac.c +++ b/hw/net/npcm_gmac.c @@ -267,6 +267,7 @@ static int gmac_write_tx_desc(dma_addr_t addr, struct N= PCMGMACTxDesc *desc) } return 0; } + static int gmac_rx_transfer_frame_to_buffer(uint32_t rx_buf_len, uint32_t *left_frame, uint32_t rx_buf_addr, @@ -488,6 +489,156 @@ static ssize_t gmac_receive(NetClientState *nc, const= uint8_t *buf, size_t len) gmac->regs[R_NPCM_DMA_HOST_RX_DESC] =3D desc_addr; return len; } + +static int gmac_tx_get_csum(uint32_t tdes1) +{ + uint32_t mask =3D TX_DESC_TDES1_CHKSM_INS_CTRL_MASK(tdes1); + int csum =3D 0; + + if (likely(mask > 0)) { + csum |=3D CSUM_IP; + } + if (likely(mask > 1)) { + csum |=3D CSUM_TCP | CSUM_UDP; + } + + return csum; +} + +static void gmac_try_send_next_packet(NPCMGMACState *gmac) +{ + /* + * Comments about steps refer to steps for + * transmitting in page 384 of datasheet + */ + uint16_t tx_buffer_size =3D 2048; + g_autofree uint8_t *tx_send_buffer =3D g_malloc(tx_buffer_size); + uint32_t desc_addr; + struct NPCMGMACTxDesc tx_desc; + uint32_t tx_buf_addr, tx_buf_len; + uint16_t length =3D 0; + uint8_t *buf =3D tx_send_buffer; + uint32_t prev_buf_size =3D 0; + int csum =3D 0; + + /* steps 1&2 */ + if (!gmac->regs[R_NPCM_DMA_HOST_TX_DESC]) { + gmac->regs[R_NPCM_DMA_HOST_TX_DESC] =3D + NPCM_DMA_HOST_TX_DESC_MASK(gmac->regs[R_NPCM_DMA_TX_BASE_ADDR]= ); + } + desc_addr =3D gmac->regs[R_NPCM_DMA_HOST_TX_DESC]; + + while (true) { + gmac_dma_set_state(gmac, NPCM_DMA_STATUS_TX_PROCESS_STATE_SHIFT, + NPCM_DMA_STATUS_TX_RUNNING_FETCHING_STATE); + if (gmac_read_tx_desc(desc_addr, &tx_desc)) { + qemu_log_mask(LOG_GUEST_ERROR, + "TX Descriptor @ 0x%x can't be read\n", + desc_addr); + return; + } + /* step 3 */ + + trace_npcm_gmac_packet_desc_read(DEVICE(gmac)->canonical_path, + desc_addr); + trace_npcm_gmac_debug_desc_data(DEVICE(gmac)->canonical_path, &tx_= desc, + tx_desc.tdes0, tx_desc.tdes1, tx_desc.tdes2, tx_desc.tdes3); + + /* 1 =3D DMA Owned, 0 =3D Software Owned */ + if (!(tx_desc.tdes0 & TX_DESC_TDES0_OWN)) { + qemu_log_mask(LOG_GUEST_ERROR, + "TX Descriptor @ 0x%x is owned by software\n", + desc_addr); + gmac->regs[R_NPCM_DMA_STATUS] |=3D NPCM_DMA_STATUS_TU; + gmac_dma_set_state(gmac, NPCM_DMA_STATUS_TX_PROCESS_STATE_SHIF= T, + NPCM_DMA_STATUS_TX_SUSPENDED_STATE); + gmac_update_irq(gmac); + return; + } + + gmac_dma_set_state(gmac, NPCM_DMA_STATUS_TX_PROCESS_STATE_SHIFT, + NPCM_DMA_STATUS_TX_RUNNING_READ_STATE); + /* Give the descriptor back regardless of what happens. */ + tx_desc.tdes0 &=3D ~TX_DESC_TDES0_OWN; + + if (tx_desc.tdes1 & TX_DESC_TDES1_FIRST_SEG_MASK) { + csum =3D gmac_tx_get_csum(tx_desc.tdes1); + } + + /* step 4 */ + tx_buf_addr =3D tx_desc.tdes2; + gmac->regs[R_NPCM_DMA_CUR_TX_BUF_ADDR] =3D tx_buf_addr; + tx_buf_len =3D TX_DESC_TDES1_BFFR1_SZ_MASK(tx_desc.tdes1); + buf =3D &tx_send_buffer[prev_buf_size]; + + if ((prev_buf_size + tx_buf_len) > sizeof(buf)) { + tx_buffer_size =3D prev_buf_size + tx_buf_len; + tx_send_buffer =3D g_realloc(tx_send_buffer, tx_buffer_size); + buf =3D &tx_send_buffer[prev_buf_size]; + } + + /* step 5 */ + if (dma_memory_read(&address_space_memory, tx_buf_addr, buf, + tx_buf_len, MEMTXATTRS_UNSPECIFIED)) { + qemu_log_mask(LOG_GUEST_ERROR, "%s: Failed to read packet @ 0x= %x\n", + __func__, tx_buf_addr); + return; + } + length +=3D tx_buf_len; + prev_buf_size +=3D tx_buf_len; + + /* If not chained we'll have a second buffer. */ + if (!(tx_desc.tdes1 & TX_DESC_TDES1_SEC_ADDR_CHND_MASK)) { + tx_buf_addr =3D tx_desc.tdes3; + gmac->regs[R_NPCM_DMA_CUR_TX_BUF_ADDR] =3D tx_buf_addr; + tx_buf_len =3D TX_DESC_TDES1_BFFR2_SZ_MASK(tx_desc.tdes1); + buf =3D &tx_send_buffer[prev_buf_size]; + + if ((prev_buf_size + tx_buf_len) > sizeof(buf)) { + tx_buffer_size =3D prev_buf_size + tx_buf_len; + tx_send_buffer =3D g_realloc(tx_send_buffer, tx_buffer_siz= e); + buf =3D &tx_send_buffer[prev_buf_size]; + } + + if (dma_memory_read(&address_space_memory, tx_buf_addr, buf, + tx_buf_len, MEMTXATTRS_UNSPECIFIED)) { + qemu_log_mask(LOG_GUEST_ERROR, + "%s: Failed to read packet @ 0x%x\n", + __func__, tx_buf_addr); + return; + } + length +=3D tx_buf_len; + prev_buf_size +=3D tx_buf_len; + } + if (tx_desc.tdes1 & TX_DESC_TDES1_LAST_SEG_MASK) { + net_checksum_calculate(tx_send_buffer, length, csum); + qemu_send_packet(qemu_get_queue(gmac->nic), tx_send_buffer, le= ngth); + trace_npcm_gmac_packet_sent(DEVICE(gmac)->canonical_path, leng= th); + buf =3D tx_send_buffer; + length =3D 0; + } + + /* step 6 */ + gmac_dma_set_state(gmac, NPCM_DMA_STATUS_TX_PROCESS_STATE_SHIFT, + NPCM_DMA_STATUS_TX_RUNNING_CLOSING_STATE); + gmac_write_tx_desc(desc_addr, &tx_desc); + if (tx_desc.tdes1 & TX_DESC_TDES1_TX_END_RING_MASK) { + desc_addr =3D gmac->regs[R_NPCM_DMA_TX_BASE_ADDR]; + } else if (tx_desc.tdes1 & TX_DESC_TDES1_SEC_ADDR_CHND_MASK) { + desc_addr =3D tx_desc.tdes3; + } else { + desc_addr +=3D sizeof(tx_desc); + } + gmac->regs[R_NPCM_DMA_HOST_TX_DESC] =3D desc_addr; + + /* step 7 */ + if (tx_desc.tdes1 & TX_DESC_TDES1_INTERR_COMP_MASK) { + gmac->regs[R_NPCM_DMA_STATUS] |=3D NPCM_DMA_STATUS_TI; + gmac_update_irq(gmac); + } + } +} + static void gmac_cleanup(NetClientState *nc) { /* Nothing to do yet. */ diff --git a/hw/net/trace-events b/hw/net/trace-events index 2843f1eaf8..b19b9ec2ad 100644 --- a/hw/net/trace-events +++ b/hw/net/trace-events @@ -477,7 +477,6 @@ npcm_gmac_packet_desc_read(const char* name, uint32_t d= esc_addr) "%s: attempting npcm_gmac_packet_receive(const char* name, uint32_t len) "%s: RX packet le= ngth: 0x%04" PRIX32 npcm_gmac_packet_receiving_buffer(const char* name, uint32_t buf_len, uint= 32_t rx_buf_addr) "%s: Receiving into Buffer size: 0x%04" PRIX32 " at addre= ss 0x%04" PRIX32 npcm_gmac_packet_received(const char* name, uint32_t len) "%s: Reception f= inished, packet left: 0x%04" PRIX32 -npcm_gmac_packet_transmit(const char* name, uint16_t len) "%s: TX transmis= sion start, packed length 0x%04" PRIX16 npcm_gmac_packet_sent(const char* name, uint16_t len) "%s: TX packet sent!= , length: 0x%04" PRIX16 npcm_gmac_debug_desc_data(const char* name, void* addr, uint32_t des0, uin= t32_t des1, uint32_t des2, uint32_t des3)"%s: Address: %p Descriptor 0: 0x%= 04" PRIX32 " Descriptor 1: 0x%04" PRIX32 "Descriptor 2: 0x%04" PRIX32 " Des= criptor 3: 0x%04" PRIX32 npcm_gmac_packet_tx_desc_data(const char* name, uint32_t tdes0, uint32_t t= des1) "%s: Tdes0: 0x%04" PRIX32 " Tdes1: 0x%04" PRIX32 --=20 2.42.0.820.g83a721a137-goog