Contract con_dex_v2_test8


Contract Code


  
1 I = importlib
2
3 # state = ForeignHash(
4 # foreign_contract="con_rocketswap_official_v1_1", foreign_name="state"
5 # )
6 # discount = ForeignHash(
7 # foreign_contract="con_rocketswap_official_v1_1", foreign_name="discount"
8 # )
9
10 token_interface = [
11 I.Func("transfer", args=("amount", "to")),
12 I.Func("approve", args=("amount", "to")),
13 I.Func("transfer_from", args=("amount", "to", "main_account")),
14 ]
15
16 base = Variable()
17 pairs = Hash()
18 prices = Hash(default_value=0)
19 lp_points = Hash(default_value=0)
20 reserves = Hash(default_value=[0, 0])
21 state = Hash()
22 staked_amount = Hash(default_value=0)
23 discount = Hash(default_value=1)
24
25 @construct
26 def init(base_contract: str):
27 base.set(base_contract)
28 state['FEE_PERCENTAGE'] = decimal('0.3') / 100
29 state['TOKEN_CONTRACT'] = 'con_rswp_lst001'
30 state['TOKEN_DISCOUNT'] = decimal('0.75')
31 state['BURN_PERCENTAGE'] = decimal('0.8')
32 state['BURN_ADDRESS'] = 'burn'
33 state['LOG_ACCURACY'] = decimal('1000000000.0') #The stamp difference for a higher number should be unnoticable
34 state['SYNC_ENABLED'] = True
35 state['MULTIPLIER'] = decimal('0.05')
36 state['DISCOUNT_FLOOR'] = decimal('0.505')
37
38 state['OWNER'] = ctx.caller
39
40 @export
41 def create_market(contract: str, base_amount: float = 0, token_amount: float = 0):
42 assert contract != base.get(), "Cannot create a market for the base token!"
43 assert pairs[contract] == None, "Market already exists!"
44 assert contract != state["TOKEN_CONTRACT"], "Only operator can create this market!"
45 assert base_amount > 0 and token_amount > 0, "Must provide base amount and token amount!"
46
47 base_token = I.import_module(base.get())
48 token = I.import_module(contract)
49 assert I.enforce_interface(base_token, token_interface), "Invalid token interface!"
50 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
51
52 real_base_amount = balance_difference(
53 base_token, ctx.caller, base.get(), base_amount
54 )
55
56 real_token_amount = balance_difference(
57 token, ctx.caller, contract, token_amount
58 )
59
60 prices[contract] = real_base_amount / real_token_amount
61 pairs[contract] = True
62 lp_points[contract, ctx.caller] = 100
63 lp_points[contract] = 100
64 reserves[contract] = [real_base_amount, real_token_amount]
65 return True
66
67
68 @export
69 def liquidity_balance_of(contract: str, account: str):
70 return lp_points[contract, account]
71
72
73 @export
74 def add_liquidity(contract: str, base_amount: float = 0):
75 assert pairs[contract] is True, "Market does not exist!"
76 assert base_amount > 0, "Must provide base amount!"
77 base_token = I.import_module(base.get())
78 token = I.import_module(contract)
79 assert I.enforce_interface(base_token, token_interface), "Invalid token interface!"
80 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
81
82 token_amount = base_amount / prices[contract]
83
84 real_base_amount = balance_difference(
85 base_token, ctx.caller, base.get(), base_amount
86 )
87
88 real_token_amount = balance_difference(
89 token, ctx.caller, contract, token_amount
90 )
91
92 total_lp_points = lp_points[contract]
93 base_reserve, token_reserve = reserves[contract]
94 points_per_base = total_lp_points / base_reserve
95 lp_to_mint = points_per_base * real_base_amount
96 lp_points[contract, ctx.caller] += lp_to_mint
97 lp_points[contract] += lp_to_mint
98 reserves[contract] = [
99 base_reserve + real_base_amount,
100 token_reserve + real_token_amount,
101 ]
102 return lp_to_mint
103
104
105 @export
106 def remove_liquidity(contract: str, amount: float = 0):
107 assert pairs[contract] is True, "Market does not exist!"
108 assert amount > 0, "Must be a positive LP point amount!"
109 assert lp_points[contract, ctx.caller] >= amount, "Not enough LP points to remove!"
110 base_token = I.import_module(base.get())
111 token = I.import_module(contract)
112 assert I.enforce_interface(base_token, token_interface), "Invalid token interface!"
113 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
114 lp_percentage = amount / lp_points[contract]
115 base_reserve, token_reserve = reserves[contract]
116 base_amount = base_reserve * lp_percentage
117 token_amount = token_reserve * lp_percentage
118 base_token.transfer(to=ctx.caller, amount=base_amount)
119 token.transfer(to=ctx.caller, amount=token_amount)
120 lp_points[contract, ctx.caller] -= amount
121 lp_points[contract] -= amount
122 assert lp_points[contract] > 1, "Not enough remaining liquidity!"
123 new_base_reserve = base_reserve - base_amount
124 new_token_reserve = token_reserve - token_amount
125 assert new_base_reserve > 0 and new_token_reserve > 0, "Not enough remaining liquidity!"
126 reserves[contract] = [new_base_reserve, new_token_reserve]
127 return base_amount, token_amount
128
129
130 @export
131 def transfer_liquidity(contract: str, to: str, amount: float):
132 assert amount > 0, "Must be a positive LP point amount!"
133 assert lp_points[contract, ctx.caller] >= amount, "Not enough LP points to transfer!"
134 lp_points[contract, ctx.caller] -= amount
135 lp_points[contract, to] += amount
136
137
138 # @export
139 # def approve_liquidity(
140 # contract: str, to: str, amount: float, ctx_to_signer: bool = False
141 # ):
142 # assert amount > 0, "Cannot send negative balances!"
143 # if ctx_to_signer is True:
144 # lp_points[contract, ctx.signer, to] += amount
145 # else:
146 # lp_points[contract, ctx.caller, to] += amount
147
148 @export
149 def approve_liquidity(contract: str, to: str, amount: float):
150 assert amount > 0, 'Cannot send negative balances!'
151 lp_points[contract, ctx.caller, to] += amount
152
153
154 @export
155 def transfer_liquidity_from(contract: str, to: str, main_account: str, amount: float):
156 assert amount > 0, "Cannot send negative balances!"
157 assert lp_points[contract, main_account, ctx.caller] >= amount, f"Not enough coins approved to send! You have {lp_points[main_account, ctx.caller]} and are trying to spend {amount}"
158 assert lp_points[contract, main_account] >= amount, "Not enough coins to send!"
159 lp_points[contract, main_account, ctx.caller] -= amount
160 lp_points[contract, main_account] -= amount
161 lp_points[contract, to] += amount
162
163
164 @export
165 def buy(
166 contract: str,
167 base_amount: float,
168 minimum_received: float = 0,
169 token_fees: bool = False,
170 ):
171 assert pairs[contract] is True, "Market does not exist!"
172 assert base_amount > 0, "Must provide base amount!"
173 base_token = I.import_module(base.get())
174 token = I.import_module(contract)
175 amm_token = I.import_module(state["TOKEN_CONTRACT"])
176 assert I.enforce_interface(base_token, token_interface), "Invalid token interface!"
177 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
178
179 if contract == state["TOKEN_CONTRACT"]:
180 real_base_amount = balance_difference(
181 base_token, ctx.caller, base.get(), base_amount
182 )
183
184 tokens_purchased = internal_buy(
185 contract=state["TOKEN_CONTRACT"], base_amount=real_base_amount
186 )
187
188 token.transfer(amount=tokens_purchased, to=ctx.caller)
189 return tokens_purchased
190
191 real_base_amount = balance_difference(
192 base_token, ctx.caller, base.get(), base_amount
193 )
194
195 base_reserve, token_reserve = reserves[contract]
196 k = base_reserve * token_reserve
197 new_base_reserve = base_reserve + real_base_amount
198 new_token_reserve = k / new_base_reserve
199 tokens_purchased = token_reserve - new_token_reserve
200 fee_percent = state["FEE_PERCENTAGE"] * discount[ctx.caller]
201 fee = tokens_purchased * fee_percent
202
203 if token_fees is True:
204 fee = fee * state["TOKEN_DISCOUNT"]
205 rswp_k = base_reserve * token_reserve
206 rswp_new_token_reserve = token_reserve + fee
207 rswp_new_base_reserve = rswp_k / rswp_new_token_reserve
208 rswp_base_purchased = base_reserve - rswp_new_base_reserve
209 rswp_base_purchased += rswp_base_purchased * fee_percent
210 rswp_base_reserve_2, rswp_token_reserve_2 = reserves[state["TOKEN_CONTRACT"]]
211 rswp_k_2 = rswp_base_reserve_2 * rswp_token_reserve_2
212 rswp_new_base_reserve_2 = rswp_base_reserve_2 + rswp_base_purchased
213 rswp_new_base_reserve_2 += rswp_base_purchased * fee_percent
214 rswp_new_token_reserve_2 = rswp_k_2 / rswp_new_base_reserve_2
215 sell_amount = rswp_token_reserve_2 - rswp_new_token_reserve_2
216 sell_amount_with_fee = sell_amount * state["BURN_PERCENTAGE"]
217 amm_token.transfer_from(
218 amount=sell_amount, to=ctx.this, main_account=ctx.caller
219 )
220 base_received = internal_sell(
221 contract=state["TOKEN_CONTRACT"], token_amount=sell_amount_with_fee
222 )
223 amm_token.transfer(
224 amount=sell_amount - sell_amount_with_fee, to=state["BURN_ADDRESS"]
225 )
226 token_received = internal_buy(contract=contract, base_amount=base_received)
227
228 new_base_reserve += (
229 reserves[contract][0] - base_reserve
230 )
231 new_token_reserve += (
232 reserves[contract][1] - token_reserve
233 )
234 new_token_reserve = new_token_reserve + token_received
235 else:
236 tokens_purchased = tokens_purchased - fee
237 burn_amount = internal_buy(
238 contract=state["TOKEN_CONTRACT"],
239 base_amount=internal_sell(
240 contract=contract, token_amount=fee - fee * state["BURN_PERCENTAGE"]
241 ),
242 )
243 new_base_reserve += reserves[contract][0] - base_reserve
244 new_token_reserve += reserves[contract][1] - token_reserve
245 new_token_reserve = new_token_reserve + fee * state["BURN_PERCENTAGE"]
246 amm_token.transfer(amount=burn_amount, to=state["BURN_ADDRESS"])
247
248 if minimum_received != None:
249 assert tokens_purchased >= minimum_received, f"Only {tokens_purchased} tokens can be purchased, which is less than your minimum, which is {minimum_received} tokens."
250 assert tokens_purchased > 0, "Token reserve error!"
251
252 token.transfer(amount=tokens_purchased, to=ctx.caller)
253 reserves[contract] = [new_base_reserve, new_token_reserve]
254 prices[contract] = new_base_reserve / new_token_reserve
255 return tokens_purchased
256
257
258 @export
259 def sell(
260 contract: str,
261 token_amount: float,
262 minimum_received: float = 0,
263 token_fees: bool = False,
264 ):
265 assert pairs[contract] is True, "Market does not exist!"
266 assert token_amount > 0, "Must provide base amount and token amount!"
267 base_token = I.import_module(base.get())
268 token = I.import_module(contract)
269 amm_token = I.import_module(state["TOKEN_CONTRACT"])
270 assert I.enforce_interface(base_token, token_interface), "Invalid token interface!"
271 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
272
273 if contract == state["TOKEN_CONTRACT"]:
274 real_token_amount = balance_difference(
275 token, ctx.caller, contract, token_amount
276 )
277
278 base_purchased = internal_sell(
279 contract=state["TOKEN_CONTRACT"], token_amount=real_token_amount
280 )
281 base_token.transfer(amount=base_purchased, to=ctx.caller)
282 return base_purchased
283
284 real_token_amount = balance_difference(
285 token, ctx.caller, contract, token_amount
286 )
287
288 base_reserve, token_reserve = reserves[contract]
289 k = base_reserve * token_reserve
290 new_token_reserve = token_reserve + real_token_amount
291 new_base_reserve = k / new_token_reserve
292 base_purchased = base_reserve - new_base_reserve
293 fee_percent = state["FEE_PERCENTAGE"] * discount[ctx.caller]
294 fee = base_purchased * fee_percent
295 if token_fees is True:
296 fee = fee * state["TOKEN_DISCOUNT"]
297 rswp_base_reserve, rswp_token_reserve = reserves[state["TOKEN_CONTRACT"]]
298 rswp_k = rswp_base_reserve * rswp_token_reserve
299 rswp_new_base_reserve = rswp_base_reserve + fee
300 rswp_new_base_reserve += fee * fee_percent
301 rswp_new_token_reserve = rswp_k / rswp_new_base_reserve
302 sell_amount = rswp_token_reserve - rswp_new_token_reserve
303 sell_amount_with_fee = sell_amount * state["BURN_PERCENTAGE"]
304 amm_token.transfer_from(
305 amount=sell_amount, to=ctx.this, main_account=ctx.caller
306 )
307 base_received = internal_sell(
308 contract=state["TOKEN_CONTRACT"], token_amount=sell_amount_with_fee
309 )
310 amm_token.transfer(
311 amount=sell_amount - sell_amount_with_fee, to=state["BURN_ADDRESS"]
312 )
313 new_base_reserve = new_base_reserve + base_received
314 else:
315 base_purchased = base_purchased - fee
316 burn_amount = fee - fee * state["BURN_PERCENTAGE"]
317 new_base_reserve = new_base_reserve + fee * state["BURN_PERCENTAGE"]
318 token_received = internal_buy(
319 contract=state["TOKEN_CONTRACT"], base_amount=burn_amount
320 )
321 amm_token.transfer(amount=token_received, to=state["BURN_ADDRESS"])
322 if minimum_received != None:
323 assert base_purchased >= minimum_received, f"Only {base_purchased} TAU can be purchased, which is less than your minimum, which is {minimum_received} TAU."
324 assert base_purchased > 0, "Token reserve error!"
325
326 base_token.transfer(amount=base_purchased, to=ctx.caller)
327 reserves[contract] = [new_base_reserve, new_token_reserve]
328 prices[contract] = new_base_reserve / new_token_reserve
329 return base_purchased
330
331
332 @export
333 def create_rswp_market(base_amount: float = 0, token_amount: float = 0):
334 assert ctx.caller == state["OWNER"], "Only owner can call this method!"
335 assert pairs[state["TOKEN_CONTRACT"]] is None, "Market already exists!"
336 assert base_amount > 0 and token_amount > 0, "Must provide base amount and token amount!"
337
338 base_token = I.import_module(base.get())
339 amm_token = I.import_module(state["TOKEN_CONTRACT"])
340 assert I.enforce_interface(base_token, token_interface), "Invalid token interface!"
341 base_token.transfer_from(amount=base_amount, to=ctx.this, main_account=ctx.caller)
342 amm_token.transfer_from(amount=token_amount, to=ctx.this, main_account=ctx.caller)
343 prices[state["TOKEN_CONTRACT"]] = base_amount / token_amount
344 pairs[state["TOKEN_CONTRACT"]] = True
345 lp_points[state["TOKEN_CONTRACT"], ctx.caller] = 100
346 lp_points[state["TOKEN_CONTRACT"]] = 100
347 reserves[state["TOKEN_CONTRACT"]] = [base_amount, token_amount]
348 return True
349
350
351 @export
352 def sync_reserves(contract: str):
353 assert state["SYNC_ENABLED"] is True, "Sync is not enabled!"
354
355 token_balance = ForeignHash(foreign_contract=contract, foreign_name="balances")
356 new_balance = token_balance[ctx.this]
357 assert new_balance > 0, "Cannot be a negative balance!"
358 reserves[contract][1] = new_balance
359 return new_balance
360
361
362 def balance_difference(token, caller, contract, amount):
363 token_balance = ForeignHash(foreign_contract=contract, foreign_name="balances")
364
365 v2_balance_1 = token_balance[ctx.this]
366
367 token.transfer_from(amount=amount, to=ctx.this, main_account=caller)
368
369 v2_balance_2 = token_balance[ctx.this]
370
371 real_amount = v2_balance_2 - v2_balance_1
372
373 return real_amount
374
375
376 def internal_buy(contract: str, base_amount: float):
377 assert pairs[contract] is True, "RSWP Market does not exist!"
378 if base_amount <= 0:
379 return 0
380 token = I.import_module(contract)
381 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
382
383 base_reserve, token_reserve = reserves[contract]
384 k = base_reserve * token_reserve
385 new_base_reserve = base_reserve + base_amount
386 new_token_reserve = k / new_base_reserve
387 tokens_purchased = token_reserve - new_token_reserve
388 fee = tokens_purchased * state["FEE_PERCENTAGE"]
389 tokens_purchased -= fee
390 new_token_reserve += fee
391 assert tokens_purchased > 0, "Token reserve error!"
392 reserves[contract] = [new_base_reserve, new_token_reserve]
393 prices[contract] = new_base_reserve / new_token_reserve
394 return tokens_purchased
395
396
397 def internal_sell(contract: str, token_amount: float):
398 assert pairs[contract] is True, "RSWP Market does not exist!"
399 if token_amount <= 0:
400 return 0
401 token = I.import_module(contract)
402 assert I.enforce_interface(token, token_interface), "Invalid token interface!"
403 base_reserve, token_reserve = reserves[contract]
404 k = base_reserve * token_reserve
405 new_token_reserve = token_reserve + token_amount
406 new_base_reserve = k / new_token_reserve
407 base_purchased = base_reserve - new_base_reserve
408 fee = base_purchased * state["FEE_PERCENTAGE"]
409 base_purchased -= fee
410 new_base_reserve += fee
411 assert base_purchased > 0, "Token reserve error!"
412 reserves[contract] = [new_base_reserve, new_token_reserve]
413 prices[contract] = new_base_reserve / new_token_reserve
414 return base_purchased
415

Byte Code

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