897 Hardware UTF Encoder/Decoder

897 : Hardware UTF Encoder/Decoder

Design render
  • Author: Rebecca G. Bettencourt
  • Description: Converts Unicode code points between UTF-8, UTF-16, and UTF-32.
  • GitHub repository
  • Clock: 0 Hz

How it works

This project contains hardware logic to convert between the UTF‑8, UTF‑16, and UTF‑32 encodings for Unicode text.

It will detect and raise an error signal on overlong encodings, out of range code point values, and invalid byte sequences.

(You can optionally disable range checking if you wish to use the original UTF‑8 spec that supports values up to 0x7FFFFFFF.)

Basic operation

  • In the initial state, all dedicated inputs should be set HIGH.
  • At any time, set /RESET (rst_n) LOW and pulse CLK to reset all inputs and outputs to initial state.
  • At any time, set /ROUT (input 0) LOW and pulse CLK to seek to the beginning of the output.
  • You can set ERRS or /PROPS (input 1) HIGH to get an error status on the dedicated outputs.
  • You can set ERRS or /PROPS (input 1) LOW to get character properties on the dedicated outputs.
  • You can set CHK (input 2) HIGH to raise an error signal when the code point value is out of range (≥0x110000).
  • You can set CHK (input 2) LOW to ignore out of range code point values and encode/decode values up to 0x7FFFFFFF.
  • You can set CBE (input 3) HIGH to specify big endian order for UTF‑32 and UTF‑16 input and output.
  • You can set CBE (input 3) LOW to specify little endian order for UTF‑32 and UTF‑16 input and output.

Inputting UTF‑32

  1. Set READ or /WRITE (input 4) LOW.
  2. Set /CIO (input 5, character I/O) LOW.
  3. Set bidirectional I/O to the first byte of the UTF‑32 word and pulse CLK.
  4. Set bidirectional I/O to the second byte of the UTF‑32 word and pulse CLK.
  5. Set bidirectional I/O to the third byte of the UTF‑32 word and pulse CLK.
  6. Set bidirectional I/O to the fourth byte of the UTF‑32 word and pulse CLK.
  7. Set /CIO (input 5, character I/O) HIGH.
  8. Set READ or /WRITE (input 4) HIGH.
  9. If READY (output 0) is HIGH and ERROR (output 5) is LOW, the input and output are both valid.
  10. If READY (output 0) is LOW or ERROR (output 5) is HIGH, the input was out of range (≥0x110000 or, if CHK is LOW, ≥0x80000000).

Inputting UTF‑16

  1. Set ERRS or /PROPS (input 1) LOW.
  2. Set READ or /WRITE (input 4) LOW.
  3. Set /UIO (input 6, UTF‑16 I/O) LOW.
  4. Set bidirectional I/O to the first byte of the first UTF‑16 word and pulse CLK.
  5. Set bidirectional I/O to the second byte of the first UTF‑16 word and pulse CLK.
  6. If HIGHCHAR (output 3) is LOW, skip to step 9.
  7. Set bidirectional I/O to the first byte of the second UTF‑16 word and pulse CLK.
  8. Set bidirectional I/O to the second byte of the second UTF‑16 word and pulse CLK.
  9. Set /UIO (input 6, UTF‑16 I/O) HIGH.
  10. Set READ or /WRITE (input 4) HIGH.
  11. Set ERRS or /PROPS (input 1) HIGH.
  12. If READY (output 0) is HIGH and ERROR (output 5) is LOW, the input and output are both valid.
  13. If RETRY (output 1) is HIGH, the first word was a high surrogate but the second word was not a low surrogate. The output will be the high surrogate only; the last word will need to be processed again.

Inputting UTF‑8

  1. Set READ or /WRITE (input 4) LOW.
  2. Set /BIO (input 7, byte I/O) LOW.
  3. Set bidirectional I/O to the current byte of the UTF‑8 sequence and pulse CLK.
  4. Repeat step 3 until READY (output 0) or ERROR (output 5) is HIGH.
  5. If READY (output 0) is HIGH and ERROR (output 5) is LOW, the input and output are both valid.
  6. If RETRY (output 1) is HIGH, the UTF‑8 sequence was truncated (not enough continuation bytes). The output will be the truncated sequence only; the last byte will need to be processed again.
  7. If INVALID (output 2) is HIGH, the UTF‑8 sequence was a single continuation byte or invalid byte (0xFE or 0xFF).
  8. If OVERLONG (output 3) is HIGH, the UTF‑8 sequence was an overlong encoding.
  9. If NONUNI (output 4) is HIGH, the UTF‑8 sequence was out of range (≥0x110000).

Outputting UTF‑32

  1. Set READ or /WRITE (input 4) HIGH.
  2. Set /CIO (input 5, character I/O) LOW.
  3. Pulse CLK and read the first byte of the UTF‑32 word from the bidirectional I/O.
  4. Pulse CLK and read the second byte of the UTF‑32 word from the bidirectional I/O.
  5. Pulse CLK and read the third byte of the UTF‑32 word from the bidirectional I/O.
  6. Pulse CLK and read the fourth byte of the UTF‑32 word from the bidirectional I/O.
  7. Set /CIO (input 5, character I/O) HIGH.
  8. If the UTF‑32 word is within range, the input and output are both valid.
  9. If the UTF‑32 word is not within range, then the input was either incomplete or invalid.

Outputting UTF‑16

  1. Set READ or /WRITE (input 4) HIGH.
  2. If UEOF (output 6) is HIGH, then the input was either incomplete or invalid.
  3. Set /UIO (input 6, UTF‑16 I/O) LOW.
  4. Pulse CLK and read the next byte of the UTF‑16 sequence from the bidirectional I/O.
  5. Repeat step 4 until UEOF (output 6) is HIGH.
  6. Set /UIO (input 6, UTF‑16 I/O) HIGH.

Outputting UTF‑8

  1. Set READ or /WRITE (input 4) HIGH.
  2. If BEOF (output 7) is HIGH, then the input was either incomplete or invalid.
  3. Set /BIO (input 7, byte I/O) LOW.
  4. Pulse CLK and read the next byte of the UTF‑8 sequence from the bidirectional I/O.
  5. Repeat step 4 until BEOF (output 7) is HIGH.
  6. Set /BIO (input 7, byte I/O) HIGH.

Error status

When ERRS or /PROPS (input 1) is HIGH, the dedicated outputs will be:

# Name Meaning
0 READY The input and output are complete sequences.
1 RETRY The previous input was invalid or the start of another sequence and was ignored. Process the output, reset, and try the previous input again.
2 INVALID The input and output are invalid.
3 OVERLONG The UTF‑8 input was an overlong sequence.
4 NONUNI The code point value is out of range (≥0x110000). (This is set independently of the CHK input; the CHK input only changes whether this counts as an error.)
5 ERROR Equivalent to (RETRY or INVALID or OVERLONG or (NONUNI and CHK)).

If all of these outputs are LOW, the accumulated input is incomplete and more input is required (underflow).

Character properties

When ERRS or /PROPS (input 1) is LOW, the dedicated outputs will be:

# Name Meaning
0 NORMAL The code point value is valid and not a C0 or C1 control character, surrogate, private use character, or noncharacter.
1 CONTROL The code point value is valid and a C0 or C1 control character (0x00-0x1F or 0x7F-0x9F).
2 SURROGATE The code point value is valid and a UTF‑16 surrogate (0xD800-0xDFFF).
3 HIGHCHAR The code point value is valid and either a high surrogate (0xD800-0xDBFF) or a non-BMP character (≥0x10000).
4 PRIVATE The code point value is valid and either a private use character (0xE000-0xF8FF, ≥0xF0000) or the high surrogate of a private use character (0xDB80-0xDBFF).
5 NONCHAR The code point value is valid and a noncharacter (0xFDD0-0xFDEF or the last two code points of any plane).

If all of these outputs are LOW, there is no valid code point in the output.

How to test

The test.py file covers a comprehensive set of test cases which are listed in a separate file to avoid bloating the TT09 manual.

External hardware

Any device that needs to process Unicode text.

IO

#InputOutputBidirectional
0/ROUTREADY; NORMALI/O LSB
1ERRS, /PROPSRETRY; CONTROLI/O
2CHKINVALID; SURROGATEI/O
3CBE, /CLEOVERLONG; HIGHCHARI/O
4READ, /WRITENONUNI; PRIVATEI/O
5/CIOERROR; NONCHARI/O
6/UIOUEOFI/O
7/BIOBEOFI/O MSB

Chip location

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tt_um_MichaelBell_hs_mul (8b10b decoder and multiplier) tt_um_rebeccargb_styler (Styler) tt_um_rebeccargb_vga_timing_experiments (VGA Timing Experiments) tt_um_rebeccargb_universal_decoder (Universal Binary to Segment Decoder) tt_um_rebeccargb_intercal_alu (INTERCAL ALU) tt_um_toivoh_pio_ram_emu_example (pio-ram-emulator example: Julia fractal) tt_um_2048_vga_game (2048 sliding tile puzzle game (VGA)) tt_um_tobimckellar_top (Simple PWM Module) tt_um_JesusMinguillon_freqSweep (freqSweep) tt_um_led_cipher (LED Bitserial Cipher) tt_um_wokwi_412367067047460865 (achasen workshop validation) tt_um_wokwi_412635532198550529 (tt09-pettit-wokproc-trainer) tt_um_my_elevator (Elevator Design) tt_um_wokwi_413387014781302785 (L display) tt_um_wokwi_413387348132056065 (S-R latch) tt_um_wokwi_413387032609197057 (Gabe's Big AND) tt_um_wokwi_413387015959903233 (Secret Code) tt_um_wokwi_413387076188030977 (joes-first-tiny-tapeout) tt_um_wokwi_413387481972305921 (Abey's 1st Chip Design) 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tt_um_wokwi_413872016164217857 (2bit adder) tt_um_alif (3 Neuron ALIF) tt_um_tiny_ternary_tapeout (T3 (Tiny Ternary Tapeout)) tt_um_snn_with_delays_paolaunisa (ChatGPT-generated Spiking Neural Network with Delays) tt_um_kmakise_sram (OpenRAM SRAM macro) tt_um_secA_11_nyancar_alanz23 (ece2204_4x4_mult) tt_um_arandomdev_fir_engine_top (FIREngine) tt_um_b_0_array_multiplier (Lab B Group 1 Array Multiplier) tt_um_b_2_array_multiplier (Array Multiplier) tt_um_b_6_array_multiplier (4x4 Array Multiplier) tt_um_multiplier (4x4 Array Multiplier) tt_um_b_12_array_multiplier (ECE2204 4x4 Array Multiplier) tt_um_wokwi_413686101237123073 (comparator) tt_um_B_14_array_multiplier (4x4 Array Multiplier) tt_um_secB_15_array_multiplier (Array Multiplier) tt_um_array_mult_joe_leighthardt (4 bit array multiplier) tt_um_carryskip_adder8 (8-bit carry-skip) tt_um_riscv_mini (RISC-V Mini) tt_um_CLA8 (8-bit Carry Look-Ahead Adder) tt_um_hybrid_adder (Hybrid_Adder_8bit) tt_um_C_1_4bit_multiplier (my_4bit_multiplier) tt_um_c_2_array_mult (4-bit-multiplier) tt_um_c7_array_mult (4-bit Multiplier) tt_um_4x4multiplier (4x4multiplier) tt_um_c13_array_mult (4-bit Multiplier) tt_um_arrayMultFajrSahana (4x4 Multiplier) tt_um_wokwi_413916532008126465 (tt09 kathyhtt ) tt_um_wokwi_413919522908184577 (TINY TAPE OUT) tt_um_wokwi_413923260134423553 (TinyTapeout1) tt_um_wokwi_413919531169918977 (FB GDS) tt_um_wokwi_413919794360480769 (Metastable Chip) tt_um_four_bit_multiplier_nasan016_npham2003 (4-bit Multiplier) tt_um_wokwi_413919484652961793 (halfadder+not) tt_um_wokwi_413918279810604033 (MuxLED) tt_um_wokwi_413919458626244609 (Jacks First Project) tt_um_wokwi_413919492911554561 (Half adder) tt_um_wokwi_413919972072132609 (Andrew Vo - Repository) tt_um_wokwi_413919970097662977 (Dipankar's first Wowki design) tt_um_wokwi_413923245817165825 (Hamad's design) tt_um_wokwi_413919502227108865 (Encoder) tt_um_wokwi_413923188546028545 (GDS) tt_um_wokwi_413920370058172417 (2 Bit Times 2 Bit Plus 4 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(OR gate) tt_um_wokwi_413920442846133249 (TinyTapeOut) tt_um_wokwi_413920033033205761 (Tiny Tapeout-Huerta) tt_um_wokwi_413923202390383617 (Light LED) tt_um_wokwi_413923150973445121 (Zero to Nine Display Count) tt_um_wokwi_413919565287453697 (APTT) tt_um_wokwi_413919777312727041 (Tahiti) tt_um_wokwi_413920089540972545 (Secret Initial) tt_um_wokwi_413919675346023425 (GJAA Design) tt_um_wokwi_413919847886104577 (Logic Gates) tt_um_wokwi_413921288682183681 (My First TinyTapeout) tt_um_wokwi_413919524873217025 (1st) tt_um_wokwi_413919454053401601 (JCB First WOKWI Design) tt_um_wokwi_413923045171059713 (Logic Gates 7-Segment Display) tt_um_wokwi_413919767806333953 (BadeTP) tt_um_wokwi_413919428470231041 (Lynn's TinyTapeout Design) tt_um_wokwi_413929752291913729 (project) tt_um_wokwi_413923521595851777 (Nathan's chip) tt_um_wokwi_413920340558577665 (Light) tt_um_uart_mvm_sys (Matmul System) tt_um_wokwi_413407859783959553 (Redco) tt_um_wokwi_413849515516143617 (Two PFD) tt_um_wokwi_413919454138338305 (Letter H) tt_um_wokwi_413960876763056129 (Binary to 7 Segment Display Decoder) tt_um_MichaelBell_hd_8b10b (8b10b decoder and multiplier) tt_um_program_counter_top_level (Test Design 1) tt_um_murmann_group (Decimation Filter for Incremental and Regular Delta-Sigma Modulators) tt_um_adder_accumulator_sathworld (adder-accumulator) tt_um_control_block (8-Bit CPU) tt_um_LFSR_Encrypt (LFSR Encrypter) tt_um_cdc_test (SkyKing Demo) tt_um_two_lif_stdp (Two LIF Neurons with STDP Learning) tt_um_underserved (ITS-RISCV) tt_um_mbkmicdec_ringosc (Time_Domain_Comparator_ITS) tt_um_znah_vga_ca (znah_vga_ca) tt_um_tim2305_adc_dac (tt_um_tim2305_adc_dac) tt_um_mikegoelzer_7segmentbyte (7-Segment Byte Display) tt_um_idann (Forward Pass Network for Simple ANN) tt_um_micro_tiles_container (Micro tile container) tt_um__kwr_lfsr__top (Multi-LFSR) tt_um_wokwi_413923639862662145 (xor gate with registered output ) tt_um_carryskip_adder9 (carry skip adder) tt_um_mroblesh (Frequency Encoder and Decoder) tt_um_wokwi_411379488132926465 (Semana UCU Verilog) tt_um_rejunity_atari2600 (Atari 2600) tt_um_rejunity_z80 (Zilog Z80) tt_um_b_8_array_multiplier (4 by 4 Array Multiplier) tt_um_C8_array_mult (4-bit multiplier) tt_um_tt09_array_multiplier (Array Multiplier) tt_um_array_mult_structural_sectionD_group3 (4-bit Array Multiplier) tt_um_d_4_array_multiplier (ECE-UY 2204 4x4 Array Multiplier) tt_um_couchand_cora16 (CORA-16) tt_um_secd_8_array_mult (array_multiplier) tt_um_kashmaster_carryskip (8-bit-CARRY_SKIP) tt_um_tiny_ternary_tapeout_csa (T3 (Tiny Ternary Tapeout) CSA ) tt_um_array_secD7 (Tiny Tapeout Group 7 Lab D) tt_um_chip4lyfe (Leaky Integrate Fire Neuron) tt_um_ronikant_jeremykam_tinyregisters (Tiny Registers) tt_um_c_4_4b_mult (4bit multiplier) tt_um_section_d_group_fifteen_array_mult_structural (ECE2204MultiplierProject) tt_um_VanceWiberg_top (Team 17's 8 bit DAC) tt_um_claudiotalarico_counter (4-bit up/down binary counter) tt_um_wokwi_413471588783557633 (TT Test) tt_um_gmejiamtz (Configurable Logic Block) tt_um_I2C (I2C and SPI) tt_um_perceptron_mtchun (Perceptron Neuron) tt_um_histogramming (Histogramming) tt_um_SarpHS_array_mult (4-bit Multiplier) tt_um_gfcwfzkm_scope_bfh_mht1_3 (Basic Oszilloscope and Signal Generator) tt_um_MichaelBell_rle_vga (RLE Video Player) tt_um_ece298a_8_bit_cpu_top (8-Bit CPU) tt_um_Coline3003_top (15 channels emission counter) tt_um_wokwi_414107691971107841 (Steven's Wokwi Test) tt_um_dlmiles_dffram32x8_2r1w (Tiny RAM DFF 2r1w) tt_um_urish_sic1 (SIC-1 8-bit SUBLEQ Single Instruction Computer) tt_um_Coline3003_spect_top (Spectrogram extractor, 2 channels) tt_um_c1_array_mult_structural (Lab C 4x4 Mult-Array) tt_um_CarrySelect8bit (carry_select) tt_um_koggestone_adder8 (test_friday2) tt_um_Rapoport (Perceptron) tt_um_cellular_alchemist (Hopfield Network with Izhikevich-type RS and FS Neurons) tt_um_wokwi_414120207283716097 (fulladder) tt_um_wokwi_414120357164073985 (2-Bit-Adder) tt_um_wokwi_414121442515858433 (Mini-Adder and Clock Divider) tt_um_wokwi_414121715329142785 (Sigma-Delta ADC) tt_um_wokwi_414120407679244289 (3bitFullAdder) tt_um_wokwi_414121532514097153 (TinyTapeout workshop - Wokwi 8 Bit LFSR) tt_um_wokwi_414120518107969537 (4 bit adder) tt_um_wokwi_414120696731857921 (Broken Two Bit Adder) tt_um_wokwi_414120263584922625 (8 bit LFSR) tt_um_wokwi_414121421011660801 (2_bit_7seg) tt_um_wokwi_414120404427608065 (7-seg display checker) tt_um_wokwi_414120472316644353 (tt09-4bit-adder-dhags) tt_um_wokwi_414120591467404289 (XorTree) tt_um_wokwi_414124872671308801 (Morse Code for J and R) tt_um_wokwi_414125777368065025 (Tiny_Tapeout_Adder!) tt_um_wokwi_414120492890759169 (Manchester Encoder) tt_um_wokwi_414120201832165377 (Odd or even) tt_um_wokwi_414125058137148417 (Adbe_Project) tt_um_wokwi_414120372939908097 (Full Adder) tt_um_wokwi_414120379026893825 (TT-Farhad) tt_um_wokwi_414120157271867393 (Four Bit Adder) tt_um_wokwi_414124843472659457 (2 bit adder) tt_um_wokwi_414120239772801025 (AND and NOT gate testing) tt_um_wokwi_414124597390729217 (Kanoa's first Wokwi deseign Tinytapeout 2024 Nonsense) tt_um_wokwi_414120415300298753 (add it) tt_um_wokwi_414117926152578049 (one) tt_um_wokwi_414120459831246849 (Full Adder) tt_um_wokwi_414117854728812545 (four flip flops) tt_um_wokwi_414120320168203265 (Tiny Tapeout 9 Template) tt_um_wokwi_414120583702696961 (half adder) tt_um_tinysynth (Tinysynth) tt_um_wokwi_414120349028170753 (LCA’s first Wokwi design) tt_um_wokwi_414120435997105153 (7-bit arbiter) tt_um_wokwi_414120378768943105 (Counter) tt_um_wokwi_414120800422397953 (Full adder Design) tt_um_wokwi_414118423095874561 (Vincent's First Design) tt_um_wokwi_414120248222232577 (A Tale of Two NCOs) tt_um_a1k0n_nyancat (VGA Nyan Cat) tt_um_tommythorn_workshop (Workshop demo) tt_um_lrc_stevej (LRC - Longitudinal Redundancy Check generator) tt_um_wokwi_414120202583995393 (print) tt_um_wokwi_414120500233937921 (hello) tt_um_wokwi_414120569974735873 (Full Adder) tt_um_wokwi_414120295047458817 (NAND-Equ) tt_um_wokwi_414120388391730177 (adder-tt09) tt_um_wokwi_414120414884012033 (Ripple counter) tt_um_wokwi_414120509472942081 (rand) tt_um_wokwi_414121555407659009 (rhTinyTapeout) tt_um_wokwi_414120432405727233 (chip) tt_um_wokwi_414122362169493505 (NAND Flip-Flop) tt_um_shifter (Shifter) tt_um_wokwi_414124428088683521 (seven) tt_um_wokwi_414120513895838721 (gatesoup) tt_um_wokwi_414120303651028993 (Tiny Tapeout 9 Template Version 1 Tata Luka) tt_um_wokwi_414122607025630209 (UART TX) tt_um_wokwi_414120368966850561 (my First WokWi Design) tt_um_wokwi_414120299211357185 (Tiny Tapeout 9) tt_um_schoeberl_test (tinydsp-lol) tt_um_anislam (Leaky integrate and fire spiking neural network) tt_um_wokwi_414126546375915521 (2-bit Full Adder) tt_um_wokwi_414174625969437697 (Name Speller) tt_um_wokwi_414127944900611073 (gta6) tt_um_ericsmi_mips (mips.sv) tt_um_systolicLif (Basic model for Systollic array implementation of LIF) tt_um_algofoogle_tt09_ring_osc2 (Verilog ring oscillator V2) tt_um_dff_mem (dff_mem) tt_um_nomuwill (16 Bit Izhikevich Neuron) tt_um_digital_clock_example (7-Segment Digital Desk Clock) tt_um_udxs (Basic Perceptron + ReLU) tt_um_matrix_mult (Basic Matrix-Vector Multiplication) tt_um_db_MAC (8 bit MAC Unit) tt_um_anas_7193 (Programmable PWM Generator) tt_um_flyingfish800 (Verilog test project) tt_um_project (Basic LIF Neuron) tt_um_lifn (Integrate-and-Fire Neuron Circuit) tt_um_wokwi_413921836641882113 (ovl abc chip) tt_um_mickey_pll (pll) tt_um_rejunity_e2m0_x_i8_matmul (E2M0 x INT8 Systolic Array) tt_um_michaelmcculloch_alu (Michaels Tiny Tapeout ALU) tt_um_dog_BILBO (8-bit CBILBO) tt_um_stochastic_integrator_tt9_CL123abc (Stochastic Integrator) tt_um_vga_clock (VGA clock) tt_um_z2a_rgb_mixer (RGB Mixer demo) tt_um_samkho_two_channel_square_wave_generator (TwoChannelSquareWaveGenerator) tt_um_mattvenn_r2r_dac_3v3 (Analog 8 bit 3.3v R2R DAC) tt_um_b_10_array_multiplier (Lab B Group 10 Array Multiplier) tt_um_urish_giant_ringosc (Giant Ring Oscillator (3853 inverters)) tt_um_htfab_caterpillar (Simon's Caterpillar) tt_um_anders_tt_6502 (tt6502) tt_um_wokwi_414123795172381697 (TinySnake) tt_um_oscillating_bones (Oscillating Bones) tt_um_r2r_dac (4-bit R2R DAC) tt_um_tinytinfoil_saradc_dac (Noise test for a CDAC capacitor chain) tt_um_purdue_socet_uart (SoCET UART) tt_um_rejunity_sn76489 (Classic 8-bit era Programmable Sound Generator SN76489) tt_um_rejunity_ay8913 (Classic 8-bit era Programmable Sound Generator AY-3-8913) tt_um_tommythorn_cgates (Cgates) tt_um_09eksdee (eksdee) tt_um_13hihi31_tdc (Time to Digital Converter) tt_um_rejunity_decoder (ternary, E1M0, E2M0 decoders) tt_um_analog_example (Digital OTA) tt_um_kailinsley (Dynamic Threshold Leaky Integrate-and-Fire) tt_um_C6_array_multiplier (tt09-C6-array-multiplier) tt_um_rejunity_vga_test01 (VGA Drop (audio/visual demo)) tt_um_wallento_4bit_toycpu (4-Bit Toy CPU) tt_um_warp (Warp) tt_um_algofoogle_tt09_ring_osc3 (Verilog ring oscillator V3) tt_um_kev_ma_matmult222 (2-bit 2x2 Matrix Multiplier) tt_um_wokwi_414041465275103233 (SK Test Workshop) tt_um_rejunity_vga_logo (VGA Tiny Logo (1 tile)) tt_um_toivoh_demo (Sequential Shadows [TT08 demo competition]) tt_um_liaf (A simple leaky integrate and fire neuron) tt_um_wokwi_413879612498222081 (Clocked Display) tt_um_wokwi_413919625901452289 (Encoder) tt_um_wokwi_413919442353385473 (Encoder) tt_um_wokwi_413919540668975105 (First Tapeout Chip - OCR) tt_um_wokwi_413918022277139457 (Half Adder) tt_um_wokwi_414120435095328769 (Kai's Death Adder) tt_um_wokwi_413919775044656129 (Kevin Project) tt_um_lif_network_MR (Leaky Neuron Network) tt_um_lsnn_hschweig (Neuromorphic Hardware for SNN LSTM) tt_um_wokwi_413387065963362305 (Project) tt_um_Nishanth_RISCV (RISCV Processor Design) tt_um_wokwi_413883347321632769 (Test_project) tt_um_KoushikCSN_RISCV (RISCV Processor Design) tt_um_wokwi_414120868401584129 (Tian TT9) tt_um_wokwi_414120391864616961 (Tiniest of tapeouts) tt_um_wokwi_414120458938907649 (Who knows what's happening Tiny Tapeout) tt_um_wokwi_413919833599252481 (YoshiTP) tt_um_wokwi_414118269335820289 (chip_fab) tt_um_wokwi_414121281003682817 (dummy) tt_um_wokwi_414124471705253889 (sarah's first chip) tt_um_ccu_goatgate (tiny cipher 4 bit key) tt_um_wokwi_414120526876163073 (2 input multiplexor) tt_um_lif_ZB (Tutorial: Simple LIF Neuron) Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available Available